site: Break out separate function for decrypting msg0
[secnet] / site.c
1 /* site.c - manage communication with a remote network site */
2
3 /* The 'site' code doesn't know anything about the structure of the
4 packets it's transmitting. In fact, under the new netlink
5 configuration scheme it doesn't need to know anything at all about
6 IP addresses, except how to contact its peer. This means it could
7 potentially be used to tunnel other protocols too (IPv6, IPX, plain
8 old Ethernet frames) if appropriate netlink code can be written
9 (and that ought not to be too hard, eg. using the TUN/TAP device to
10 pretend to be an Ethernet interface). */
11
12 /* At some point in the future the netlink code will be asked for
13 configuration information to go in the PING/PONG packets at the end
14 of the key exchange. */
15
16 #include "secnet.h"
17 #include <stdio.h>
18 #include <string.h>
19 #include <limits.h>
20 #include <assert.h>
21 #include <sys/socket.h>
22
23 #include <sys/mman.h>
24 #include "util.h"
25 #include "unaligned.h"
26 #include "magic.h"
27
28 #define SETUP_BUFFER_LEN 2048
29
30 #define DEFAULT_KEY_LIFETIME (3600*1000) /* [ms] */
31 #define DEFAULT_KEY_RENEGOTIATE_GAP (5*60*1000) /* [ms] */
32 #define DEFAULT_SETUP_RETRIES 5
33 #define DEFAULT_SETUP_RETRY_INTERVAL (2*1000) /* [ms] */
34 #define DEFAULT_WAIT_TIME (20*1000) /* [ms] */
35
36 #define DEFAULT_MOBILE_KEY_LIFETIME (2*24*3600*1000) /* [ms] */
37 #define DEFAULT_MOBILE_KEY_RENEGOTIATE_GAP (12*3600*1000) /* [ms] */
38 #define DEFAULT_MOBILE_SETUP_RETRIES 30
39 #define DEFAULT_MOBILE_SETUP_RETRY_INTERVAL (1*1000) /* [ms] */
40 #define DEFAULT_MOBILE_WAIT_TIME (10*1000) /* [ms] */
41
42 #define DEFAULT_MOBILE_PEER_EXPIRY (2*60) /* [s] */
43 #define DEFAULT_MOBILE_PEERS_MAX 3 /* send at most this many copies (default) */
44
45 /* Each site can be in one of several possible states. */
46
47 /* States:
48 SITE_STOP - nothing is allowed to happen; tunnel is down;
49 all session keys have been erased
50 -> SITE_RUN upon external instruction
51 SITE_RUN - site up, maybe with valid key
52 -> SITE_RESOLVE upon outgoing packet and no valid key
53 we start name resolution for the other end of the tunnel
54 -> SITE_SENTMSG2 upon valid incoming message 1 and suitable time
55 we send an appropriate message 2
56 SITE_RESOLVE - waiting for name resolution
57 -> SITE_SENTMSG1 upon successful resolution
58 we send an appropriate message 1
59 -> SITE_SENTMSG2 upon valid incoming message 1 (then abort resolution)
60 we abort resolution and
61 -> SITE_WAIT on timeout or resolution failure
62 SITE_SENTMSG1
63 -> SITE_SENTMSG2 upon valid incoming message 1 from higher priority end
64 -> SITE_SENTMSG3 upon valid incoming message 2
65 -> SITE_WAIT on timeout
66 SITE_SENTMSG2
67 -> SITE_SENTMSG4 upon valid incoming message 3
68 -> SITE_WAIT on timeout
69 SITE_SENTMSG3
70 -> SITE_SENTMSG5 upon valid incoming message 4
71 -> SITE_WAIT on timeout
72 SITE_SENTMSG4
73 -> SITE_RUN upon valid incoming message 5
74 -> SITE_WAIT on timeout
75 SITE_SENTMSG5
76 -> SITE_RUN upon valid incoming message 6
77 -> SITE_WAIT on timeout
78 SITE_WAIT - failed to establish key; do nothing for a while
79 -> SITE_RUN on timeout
80 */
81
82 #define SITE_STOP 0
83 #define SITE_RUN 1
84 #define SITE_RESOLVE 2
85 #define SITE_SENTMSG1 3
86 #define SITE_SENTMSG2 4
87 #define SITE_SENTMSG3 5
88 #define SITE_SENTMSG4 6
89 #define SITE_SENTMSG5 7
90 #define SITE_WAIT 8
91
92 static cstring_t state_name(uint32_t state)
93 {
94 switch (state) {
95 case 0: return "STOP";
96 case 1: return "RUN";
97 case 2: return "RESOLVE";
98 case 3: return "SENTMSG1";
99 case 4: return "SENTMSG2";
100 case 5: return "SENTMSG3";
101 case 6: return "SENTMSG4";
102 case 7: return "SENTMSG5";
103 case 8: return "WAIT";
104 default: return "*bad state*";
105 }
106 }
107
108 #define NONCELEN 8
109
110 #define LOG_UNEXPECTED 0x00000001
111 #define LOG_SETUP_INIT 0x00000002
112 #define LOG_SETUP_TIMEOUT 0x00000004
113 #define LOG_ACTIVATE_KEY 0x00000008
114 #define LOG_TIMEOUT_KEY 0x00000010
115 #define LOG_SEC 0x00000020
116 #define LOG_STATE 0x00000040
117 #define LOG_DROP 0x00000080
118 #define LOG_DUMP 0x00000100
119 #define LOG_ERROR 0x00000400
120 #define LOG_PEER_ADDRS 0x00000800
121
122 static struct flagstr log_event_table[]={
123 { "unexpected", LOG_UNEXPECTED },
124 { "setup-init", LOG_SETUP_INIT },
125 { "setup-timeout", LOG_SETUP_TIMEOUT },
126 { "activate-key", LOG_ACTIVATE_KEY },
127 { "timeout-key", LOG_TIMEOUT_KEY },
128 { "security", LOG_SEC },
129 { "state-change", LOG_STATE },
130 { "packet-drop", LOG_DROP },
131 { "dump-packets", LOG_DUMP },
132 { "errors", LOG_ERROR },
133 { "peer-addrs", LOG_PEER_ADDRS },
134 { "default", LOG_SETUP_INIT|LOG_SETUP_TIMEOUT|
135 LOG_ACTIVATE_KEY|LOG_TIMEOUT_KEY|LOG_SEC|LOG_ERROR },
136 { "all", 0xffffffff },
137 { NULL, 0 }
138 };
139
140
141 /***** TRANSPORT PEERS declarations *****/
142
143 /* Details of "mobile peer" semantics:
144
145 - We record mobile_peers_max peer address/port numbers ("peers")
146 for key setup, and separately mobile_peers_max for data
147 transfer. If these lists fill up, we retain the newest peers.
148 (For non-mobile peers we only record one of each.)
149
150 - Outgoing packets are sent to every recorded peer in the
151 applicable list.
152
153 - Data transfer peers are straightforward: whenever we successfully
154 process a data packet, we record the peer. Also, whenever we
155 successfully complete a key setup, we merge the key setup
156 peers into the data transfer peers.
157
158 (For "non-mobile" peers we simply copy the peer used for
159 successful key setup, and don't change the peer otherwise.)
160
161 - Key setup peers are slightly more complicated.
162
163 Whenever we receive and successfully process a key exchange
164 packet, we record the peer.
165
166 Whenever we try to initiate a key setup, we copy the list of data
167 transfer peers and use it for key setup. But we also look to see
168 if the config supplies an address and port number and if so we
169 add that as a key setup peer (possibly evicting one of the data
170 transfer peers we just copied).
171
172 (For "non-mobile" peers, if we if we have a configured peer
173 address and port, we always use that; otherwise if we have a
174 current data peer address we use that; otherwise we do not
175 attempt to initiate a key setup for lack of a peer address.)
176
177 "Record the peer" means
178 1. expire any peers last seen >120s ("mobile-peer-expiry") ago
179 2. add the peer of the just received packet to the applicable list
180 (possibly evicting older entries)
181 NB that we do not expire peers until an incoming packet arrives.
182
183 */
184
185 #define MAX_MOBILE_PEERS_MAX 5 /* send at most this many copies, compiled max */
186
187 typedef struct {
188 struct timeval last;
189 struct comm_addr addr;
190 } transport_peer;
191
192 typedef struct {
193 /* configuration information */
194 /* runtime information */
195 int npeers;
196 transport_peer peers[MAX_MOBILE_PEERS_MAX];
197 } transport_peers;
198
199 static void transport_peers_clear(struct site *st, transport_peers *peers);
200 static int transport_peers_valid(transport_peers *peers);
201 static void transport_peers_copy(struct site *st, transport_peers *dst,
202 const transport_peers *src);
203
204 static void transport_setup_msgok(struct site *st, const struct comm_addr *a);
205 static void transport_data_msgok(struct site *st, const struct comm_addr *a);
206 static bool_t transport_compute_setupinit_peers(struct site *st,
207 const struct comm_addr *configured_addr /* 0 if none or not found */);
208 static void transport_record_peer(struct site *st, transport_peers *peers,
209 const struct comm_addr *addr, const char *m);
210
211 static void transport_xmit(struct site *st, transport_peers *peers,
212 struct buffer_if *buf, bool_t candebug);
213
214 /***** END of transport peers declarations *****/
215
216
217 struct site {
218 closure_t cl;
219 struct site_if ops;
220 /* configuration information */
221 string_t localname;
222 string_t remotename;
223 bool_t peer_mobile; /* Mobile client support */
224 int32_t transport_peers_max;
225 string_t tunname; /* localname<->remotename by default, used in logs */
226 string_t address; /* DNS name for bootstrapping, optional */
227 int remoteport; /* Port for bootstrapping, optional */
228 struct netlink_if *netlink;
229 struct comm_if **comms;
230 int ncomms;
231 struct resolver_if *resolver;
232 struct log_if *log;
233 struct random_if *random;
234 struct rsaprivkey_if *privkey;
235 struct rsapubkey_if *pubkey;
236 struct transform_if *transform;
237 struct dh_if *dh;
238 struct hash_if *hash;
239
240 uint32_t index; /* Index of this site */
241 int32_t setup_retries; /* How many times to send setup packets */
242 int32_t setup_retry_interval; /* Initial timeout for setup packets */
243 int32_t wait_timeout; /* How long to wait if setup unsuccessful */
244 int32_t mobile_peer_expiry; /* How long to remember 2ary addresses */
245 int32_t key_lifetime; /* How long a key lasts once set up */
246 int32_t key_renegotiate_time; /* If we see traffic (or a keepalive)
247 after this time, initiate a new
248 key exchange */
249
250 uint8_t *setupsig; /* Expected signature of incoming MSG1 packets */
251 int32_t setupsiglen; /* Allows us to discard packets quickly if
252 they are not for us */
253 bool_t setup_priority; /* Do we have precedence if both sites emit
254 message 1 simultaneously? */
255 uint32_t log_events;
256
257 /* runtime information */
258 uint32_t state;
259 uint64_t now; /* Most recently seen time */
260
261 /* The currently established session */
262 uint32_t remote_session_id;
263 struct transform_inst_if *current_transform;
264 bool_t current_valid;
265 uint64_t current_key_timeout; /* End of life of current key */
266 uint64_t renegotiate_key_time; /* When we can negotiate a new key */
267 transport_peers peers; /* Current address(es) of peer for data traffic */
268
269 /* The current key setup protocol exchange. We can only be
270 involved in one of these at a time. There's a potential for
271 denial of service here (the attacker keeps sending a setup
272 packet; we keep trying to continue the exchange, and have to
273 timeout before we can listen for another setup packet); perhaps
274 we should keep a list of 'bad' sources for setup packets. */
275 uint32_t setup_session_id;
276 transport_peers setup_peers;
277 uint8_t localN[NONCELEN]; /* Nonces for key exchange */
278 uint8_t remoteN[NONCELEN];
279 struct buffer_if buffer; /* Current outgoing key exchange packet */
280 int32_t retries; /* Number of retries remaining */
281 uint64_t timeout; /* Timeout for current state */
282 uint8_t *dhsecret;
283 uint8_t *sharedsecret;
284 struct transform_inst_if *new_transform; /* For key setup/verify */
285 };
286
287 static void slog(struct site *st, uint32_t event, cstring_t msg, ...)
288 {
289 va_list ap;
290 char buf[240];
291 uint32_t class;
292
293 va_start(ap,msg);
294
295 if (event&st->log_events) {
296 switch(event) {
297 case LOG_UNEXPECTED: class=M_INFO; break;
298 case LOG_SETUP_INIT: class=M_INFO; break;
299 case LOG_SETUP_TIMEOUT: class=M_NOTICE; break;
300 case LOG_ACTIVATE_KEY: class=M_INFO; break;
301 case LOG_TIMEOUT_KEY: class=M_INFO; break;
302 case LOG_SEC: class=M_SECURITY; break;
303 case LOG_STATE: class=M_DEBUG; break;
304 case LOG_DROP: class=M_DEBUG; break;
305 case LOG_DUMP: class=M_DEBUG; break;
306 case LOG_ERROR: class=M_ERR; break;
307 case LOG_PEER_ADDRS: class=M_DEBUG; break;
308 default: class=M_ERR; break;
309 }
310
311 vsnprintf(buf,sizeof(buf),msg,ap);
312 st->log->log(st->log->st,class,"%s: %s",st->tunname,buf);
313 }
314 va_end(ap);
315 }
316
317 static void set_link_quality(struct site *st);
318 static void delete_key(struct site *st, cstring_t reason, uint32_t loglevel);
319 static bool_t initiate_key_setup(struct site *st, cstring_t reason);
320 static void enter_state_run(struct site *st);
321 static bool_t enter_state_resolve(struct site *st);
322 static bool_t enter_new_state(struct site *st,uint32_t next);
323 static void enter_state_wait(struct site *st);
324
325 #define CHECK_AVAIL(b,l) do { if ((b)->size<(l)) return False; } while(0)
326 #define CHECK_EMPTY(b) do { if ((b)->size!=0) return False; } while(0)
327 #define CHECK_TYPE(b,t) do { uint32_t type; \
328 CHECK_AVAIL((b),4); \
329 type=buf_unprepend_uint32((b)); \
330 if (type!=(t)) return False; } while(0)
331
332 struct msg {
333 uint8_t *hashstart;
334 uint32_t dest;
335 uint32_t source;
336 int32_t remlen;
337 uint8_t *remote;
338 int32_t loclen;
339 uint8_t *local;
340 uint8_t *nR;
341 uint8_t *nL;
342 int32_t pklen;
343 char *pk;
344 int32_t hashlen;
345 int32_t siglen;
346 char *sig;
347 };
348
349 /* Build any of msg1 to msg4. msg5 and msg6 are built from the inside
350 out using a transform of config data supplied by netlink */
351 static bool_t generate_msg(struct site *st, uint32_t type, cstring_t what)
352 {
353 void *hst;
354 uint8_t *hash;
355 string_t dhpub, sig;
356
357 st->retries=st->setup_retries;
358 BUF_ALLOC(&st->buffer,what);
359 buffer_init(&st->buffer,0);
360 buf_append_uint32(&st->buffer,
361 (type==LABEL_MSG1?0:st->setup_session_id));
362 buf_append_uint32(&st->buffer,st->index);
363 buf_append_uint32(&st->buffer,type);
364 buf_append_string(&st->buffer,st->localname);
365 buf_append_string(&st->buffer,st->remotename);
366 memcpy(buf_append(&st->buffer,NONCELEN),st->localN,NONCELEN);
367 if (type==LABEL_MSG1) return True;
368 memcpy(buf_append(&st->buffer,NONCELEN),st->remoteN,NONCELEN);
369 if (type==LABEL_MSG2) return True;
370
371 if (hacky_par_mid_failnow()) return False;
372
373 dhpub=st->dh->makepublic(st->dh->st,st->dhsecret,st->dh->len);
374 buf_append_string(&st->buffer,dhpub);
375 free(dhpub);
376 hash=safe_malloc(st->hash->len, "generate_msg");
377 hst=st->hash->init();
378 st->hash->update(hst,st->buffer.start,st->buffer.size);
379 st->hash->final(hst,hash);
380 sig=st->privkey->sign(st->privkey->st,hash,st->hash->len);
381 buf_append_string(&st->buffer,sig);
382 free(sig);
383 free(hash);
384 return True;
385 }
386
387 static bool_t unpick_msg(struct site *st, uint32_t type,
388 struct buffer_if *msg, struct msg *m)
389 {
390 m->hashstart=msg->start;
391 CHECK_AVAIL(msg,4);
392 m->dest=buf_unprepend_uint32(msg);
393 CHECK_AVAIL(msg,4);
394 m->source=buf_unprepend_uint32(msg);
395 CHECK_TYPE(msg,type);
396 CHECK_AVAIL(msg,2);
397 m->remlen=buf_unprepend_uint16(msg);
398 CHECK_AVAIL(msg,m->remlen);
399 m->remote=buf_unprepend(msg,m->remlen);
400 CHECK_AVAIL(msg,2);
401 m->loclen=buf_unprepend_uint16(msg);
402 CHECK_AVAIL(msg,m->loclen);
403 m->local=buf_unprepend(msg,m->loclen);
404 CHECK_AVAIL(msg,NONCELEN);
405 m->nR=buf_unprepend(msg,NONCELEN);
406 if (type==LABEL_MSG1) {
407 CHECK_EMPTY(msg);
408 return True;
409 }
410 CHECK_AVAIL(msg,NONCELEN);
411 m->nL=buf_unprepend(msg,NONCELEN);
412 if (type==LABEL_MSG2) {
413 CHECK_EMPTY(msg);
414 return True;
415 }
416 CHECK_AVAIL(msg,2);
417 m->pklen=buf_unprepend_uint16(msg);
418 CHECK_AVAIL(msg,m->pklen);
419 m->pk=buf_unprepend(msg,m->pklen);
420 m->hashlen=msg->start-m->hashstart;
421 CHECK_AVAIL(msg,2);
422 m->siglen=buf_unprepend_uint16(msg);
423 CHECK_AVAIL(msg,m->siglen);
424 m->sig=buf_unprepend(msg,m->siglen);
425 CHECK_EMPTY(msg);
426 return True;
427 }
428
429 static bool_t check_msg(struct site *st, uint32_t type, struct msg *m,
430 cstring_t *error)
431 {
432 if (type==LABEL_MSG1) return True;
433
434 /* Check that the site names and our nonce have been sent
435 back correctly, and then store our peer's nonce. */
436 if (memcmp(m->remote,st->remotename,strlen(st->remotename)!=0)) {
437 *error="wrong remote site name";
438 return False;
439 }
440 if (memcmp(m->local,st->localname,strlen(st->localname)!=0)) {
441 *error="wrong local site name";
442 return False;
443 }
444 if (memcmp(m->nL,st->localN,NONCELEN)!=0) {
445 *error="wrong locally-generated nonce";
446 return False;
447 }
448 if (type==LABEL_MSG2) return True;
449 if (memcmp(m->nR,st->remoteN,NONCELEN)!=0) {
450 *error="wrong remotely-generated nonce";
451 return False;
452 }
453 if (type==LABEL_MSG3) return True;
454 if (type==LABEL_MSG4) return True;
455 *error="unknown message type";
456 return False;
457 }
458
459 static bool_t generate_msg1(struct site *st)
460 {
461 st->random->generate(st->random->st,NONCELEN,st->localN);
462 return generate_msg(st,LABEL_MSG1,"site:MSG1");
463 }
464
465 static bool_t process_msg1(struct site *st, struct buffer_if *msg1,
466 const struct comm_addr *src)
467 {
468 struct msg m;
469
470 /* We've already determined we're in an appropriate state to
471 process an incoming MSG1, and that the MSG1 has correct values
472 of A and B. */
473
474 if (!unpick_msg(st,LABEL_MSG1,msg1,&m)) return False;
475
476 transport_record_peer(st,&st->setup_peers,src,"msg1");
477 st->setup_session_id=m.source;
478 memcpy(st->remoteN,m.nR,NONCELEN);
479 return True;
480 }
481
482 static bool_t generate_msg2(struct site *st)
483 {
484 st->random->generate(st->random->st,NONCELEN,st->localN);
485 return generate_msg(st,LABEL_MSG2,"site:MSG2");
486 }
487
488 static bool_t process_msg2(struct site *st, struct buffer_if *msg2,
489 const struct comm_addr *src)
490 {
491 struct msg m;
492 cstring_t err;
493
494 if (!unpick_msg(st,LABEL_MSG2,msg2,&m)) return False;
495 if (!check_msg(st,LABEL_MSG2,&m,&err)) {
496 slog(st,LOG_SEC,"msg2: %s",err);
497 return False;
498 }
499 st->setup_session_id=m.source;
500 memcpy(st->remoteN,m.nR,NONCELEN);
501 return True;
502 }
503
504 static bool_t generate_msg3(struct site *st)
505 {
506 /* Now we have our nonce and their nonce. Think of a secret key,
507 and create message number 3. */
508 st->random->generate(st->random->st,st->dh->len,st->dhsecret);
509 return generate_msg(st,LABEL_MSG3,"site:MSG3");
510 }
511
512 static bool_t process_msg3(struct site *st, struct buffer_if *msg3,
513 const struct comm_addr *src)
514 {
515 struct msg m;
516 uint8_t *hash;
517 void *hst;
518 cstring_t err;
519
520 if (!unpick_msg(st,LABEL_MSG3,msg3,&m)) return False;
521 if (!check_msg(st,LABEL_MSG3,&m,&err)) {
522 slog(st,LOG_SEC,"msg3: %s",err);
523 return False;
524 }
525
526 /* Check signature and store g^x mod m */
527 hash=safe_malloc(st->hash->len, "process_msg3");
528 hst=st->hash->init();
529 st->hash->update(hst,m.hashstart,m.hashlen);
530 st->hash->final(hst,hash);
531 /* Terminate signature with a '0' - cheating, but should be ok */
532 m.sig[m.siglen]=0;
533 if (!st->pubkey->check(st->pubkey->st,hash,st->hash->len,m.sig)) {
534 slog(st,LOG_SEC,"msg3 signature failed check!");
535 free(hash);
536 return False;
537 }
538 free(hash);
539
540 /* Terminate their DH public key with a '0' */
541 m.pk[m.pklen]=0;
542 /* Invent our DH secret key */
543 st->random->generate(st->random->st,st->dh->len,st->dhsecret);
544
545 /* Generate the shared key */
546 st->dh->makeshared(st->dh->st,st->dhsecret,st->dh->len,m.pk,
547 st->sharedsecret,st->transform->keylen);
548
549 /* Set up the transform */
550 st->new_transform->setkey(st->new_transform->st,st->sharedsecret,
551 st->transform->keylen);
552
553 return True;
554 }
555
556 static bool_t generate_msg4(struct site *st)
557 {
558 /* We have both nonces, their public key and our private key. Generate
559 our public key, sign it and send it to them. */
560 return generate_msg(st,LABEL_MSG4,"site:MSG4");
561 }
562
563 static bool_t process_msg4(struct site *st, struct buffer_if *msg4,
564 const struct comm_addr *src)
565 {
566 struct msg m;
567 uint8_t *hash;
568 void *hst;
569 cstring_t err;
570
571 if (!unpick_msg(st,LABEL_MSG4,msg4,&m)) return False;
572 if (!check_msg(st,LABEL_MSG4,&m,&err)) {
573 slog(st,LOG_SEC,"msg4: %s",err);
574 return False;
575 }
576
577 /* Check signature and store g^x mod m */
578 hash=safe_malloc(st->hash->len, "process_msg4");
579 hst=st->hash->init();
580 st->hash->update(hst,m.hashstart,m.hashlen);
581 st->hash->final(hst,hash);
582 /* Terminate signature with a '0' - cheating, but should be ok */
583 m.sig[m.siglen]=0;
584 if (!st->pubkey->check(st->pubkey->st,hash,st->hash->len,m.sig)) {
585 slog(st,LOG_SEC,"msg4 signature failed check!");
586 free(hash);
587 return False;
588 }
589 free(hash);
590
591 /* Terminate their DH public key with a '0' */
592 m.pk[m.pklen]=0;
593 /* Generate the shared key */
594 st->dh->makeshared(st->dh->st,st->dhsecret,st->dh->len,m.pk,
595 st->sharedsecret,st->transform->keylen);
596 /* Set up the transform */
597 st->new_transform->setkey(st->new_transform->st,st->sharedsecret,
598 st->transform->keylen);
599
600 return True;
601 }
602
603 struct msg0 {
604 uint32_t dest;
605 uint32_t source;
606 uint32_t type;
607 };
608
609 static bool_t unpick_msg0(struct site *st, struct buffer_if *msg0,
610 struct msg0 *m)
611 {
612 CHECK_AVAIL(msg0,4);
613 m->dest=buf_unprepend_uint32(msg0);
614 CHECK_AVAIL(msg0,4);
615 m->source=buf_unprepend_uint32(msg0);
616 CHECK_AVAIL(msg0,4);
617 m->type=buf_unprepend_uint32(msg0);
618 return True;
619 /* Leaves transformed part of buffer untouched */
620 }
621
622 static bool_t generate_msg5(struct site *st)
623 {
624 cstring_t transform_err;
625
626 BUF_ALLOC(&st->buffer,"site:MSG5");
627 /* We are going to add four words to the message */
628 buffer_init(&st->buffer,st->transform->max_start_pad+(4*4));
629 /* Give the netlink code an opportunity to put its own stuff in the
630 message (configuration information, etc.) */
631 buf_prepend_uint32(&st->buffer,LABEL_MSG5);
632 st->new_transform->forwards(st->new_transform->st,&st->buffer,
633 &transform_err);
634 buf_prepend_uint32(&st->buffer,LABEL_MSG5);
635 buf_prepend_uint32(&st->buffer,st->index);
636 buf_prepend_uint32(&st->buffer,st->setup_session_id);
637
638 st->retries=st->setup_retries;
639 return True;
640 }
641
642 static bool_t process_msg5(struct site *st, struct buffer_if *msg5,
643 const struct comm_addr *src)
644 {
645 struct msg0 m;
646 cstring_t transform_err;
647
648 if (!unpick_msg0(st,msg5,&m)) return False;
649
650 if (st->new_transform->reverse(st->new_transform->st,
651 msg5,&transform_err)) {
652 /* There's a problem */
653 slog(st,LOG_SEC,"process_msg5: transform: %s",transform_err);
654 return False;
655 }
656 /* Buffer should now contain untransformed PING packet data */
657 CHECK_AVAIL(msg5,4);
658 if (buf_unprepend_uint32(msg5)!=LABEL_MSG5) {
659 slog(st,LOG_SEC,"MSG5/PING packet contained wrong label");
660 return False;
661 }
662 /* Older versions of secnet used to write some config data here
663 * which we ignore. So we don't CHECK_EMPTY */
664 return True;
665 }
666
667 static bool_t generate_msg6(struct site *st)
668 {
669 cstring_t transform_err;
670
671 BUF_ALLOC(&st->buffer,"site:MSG6");
672 /* We are going to add four words to the message */
673 buffer_init(&st->buffer,st->transform->max_start_pad+(4*4));
674 /* Give the netlink code an opportunity to put its own stuff in the
675 message (configuration information, etc.) */
676 buf_prepend_uint32(&st->buffer,LABEL_MSG6);
677 st->new_transform->forwards(st->new_transform->st,&st->buffer,
678 &transform_err);
679 buf_prepend_uint32(&st->buffer,LABEL_MSG6);
680 buf_prepend_uint32(&st->buffer,st->index);
681 buf_prepend_uint32(&st->buffer,st->setup_session_id);
682
683 st->retries=1; /* Peer will retransmit MSG5 if this packet gets lost */
684 return True;
685 }
686
687 static bool_t process_msg6(struct site *st, struct buffer_if *msg6,
688 const struct comm_addr *src)
689 {
690 struct msg0 m;
691 cstring_t transform_err;
692
693 if (!unpick_msg0(st,msg6,&m)) return False;
694
695 if (st->new_transform->reverse(st->new_transform->st,
696 msg6,&transform_err)) {
697 /* There's a problem */
698 slog(st,LOG_SEC,"process_msg6: transform: %s",transform_err);
699 return False;
700 }
701 /* Buffer should now contain untransformed PING packet data */
702 CHECK_AVAIL(msg6,4);
703 if (buf_unprepend_uint32(msg6)!=LABEL_MSG6) {
704 slog(st,LOG_SEC,"MSG6/PONG packet contained invalid data");
705 return False;
706 }
707 /* Older versions of secnet used to write some config data here
708 * which we ignore. So we don't CHECK_EMPTY */
709 return True;
710 }
711
712 static bool_t decrypt_msg0(struct site *st, struct buffer_if *msg0)
713 {
714 cstring_t transform_err;
715 struct msg0 m;
716 uint32_t problem;
717
718 if (!st->current_valid) {
719 slog(st,LOG_DROP,"incoming message but no current key -> dropping");
720 initiate_key_setup(st,"incoming message but no current key");
721 return False;
722 }
723
724 if (!unpick_msg0(st,msg0,&m)) return False;
725
726 problem = st->current_transform->reverse(st->current_transform->st,
727 msg0,&transform_err);
728 if (!problem) return True;
729
730 slog(st,LOG_SEC,"transform: %s",transform_err);
731 initiate_key_setup(st,"incoming message would not decrypt");
732 return False;
733 }
734
735 static bool_t process_msg0(struct site *st, struct buffer_if *msg0,
736 const struct comm_addr *src)
737 {
738 uint32_t type;
739
740 if (!decrypt_msg0(st,msg0))
741 return False;
742
743 CHECK_AVAIL(msg0,4);
744 type=buf_unprepend_uint32(msg0);
745 switch(type) {
746 case LABEL_MSG7:
747 /* We must forget about the current session. */
748 delete_key(st,"request from peer",LOG_SEC);
749 return True;
750 case LABEL_MSG9:
751 /* Deliver to netlink layer */
752 st->netlink->deliver(st->netlink->st,msg0);
753 transport_data_msgok(st,src);
754 /* See whether we should start negotiating a new key */
755 if (st->now > st->renegotiate_key_time)
756 initiate_key_setup(st,"incoming packet in renegotiation window");
757 return True;
758 default:
759 slog(st,LOG_SEC,"incoming encrypted message of type %08x "
760 "(unknown)",type);
761 break;
762 }
763 return False;
764 }
765
766 static void dump_packet(struct site *st, struct buffer_if *buf,
767 const struct comm_addr *addr, bool_t incoming)
768 {
769 uint32_t dest=ntohl(*(uint32_t *)buf->start);
770 uint32_t source=ntohl(*(uint32_t *)(buf->start+4));
771 uint32_t msgtype=ntohl(*(uint32_t *)(buf->start+8));
772
773 if (st->log_events & LOG_DUMP)
774 slilog(st->log,M_DEBUG,"%s: %s: %08x<-%08x: %08x:",
775 st->tunname,incoming?"incoming":"outgoing",
776 dest,source,msgtype);
777 }
778
779 static uint32_t site_status(void *st)
780 {
781 return 0;
782 }
783
784 static bool_t send_msg(struct site *st)
785 {
786 if (st->retries>0) {
787 transport_xmit(st, &st->setup_peers, &st->buffer, True);
788 st->timeout=st->now+st->setup_retry_interval;
789 st->retries--;
790 return True;
791 } else {
792 slog(st,LOG_SETUP_TIMEOUT,"timed out sending key setup packet "
793 "(in state %s)",state_name(st->state));
794 enter_state_wait(st);
795 return False;
796 }
797 }
798
799 static void site_resolve_callback(void *sst, struct in_addr *address)
800 {
801 struct site *st=sst;
802 struct comm_addr ca_buf, *ca_use;
803
804 if (st->state!=SITE_RESOLVE) {
805 slog(st,LOG_UNEXPECTED,"site_resolve_callback called unexpectedly");
806 return;
807 }
808 if (address) {
809 FILLZERO(ca_buf);
810 ca_buf.comm=st->comms[0];
811 ca_buf.sin.sin_family=AF_INET;
812 ca_buf.sin.sin_port=htons(st->remoteport);
813 ca_buf.sin.sin_addr=*address;
814 ca_use=&ca_buf;
815 } else {
816 slog(st,LOG_ERROR,"resolution of %s failed",st->address);
817 ca_use=0;
818 }
819 if (transport_compute_setupinit_peers(st,ca_use)) {
820 enter_new_state(st,SITE_SENTMSG1);
821 } else {
822 /* Can't figure out who to try to to talk to */
823 slog(st,LOG_SETUP_INIT,"key exchange failed: cannot find peer address");
824 enter_state_run(st);
825 }
826 }
827
828 static bool_t initiate_key_setup(struct site *st, cstring_t reason)
829 {
830 if (st->state!=SITE_RUN) return False;
831 slog(st,LOG_SETUP_INIT,"initiating key exchange (%s)",reason);
832 if (st->address) {
833 slog(st,LOG_SETUP_INIT,"resolving peer address");
834 return enter_state_resolve(st);
835 } else if (transport_compute_setupinit_peers(st,0)) {
836 return enter_new_state(st,SITE_SENTMSG1);
837 }
838 slog(st,LOG_SETUP_INIT,"key exchange failed: no address for peer");
839 return False;
840 }
841
842 static void activate_new_key(struct site *st)
843 {
844 struct transform_inst_if *t;
845
846 /* We have two transform instances, which we swap between active
847 and setup */
848 t=st->current_transform;
849 st->current_transform=st->new_transform;
850 st->new_transform=t;
851
852 t->delkey(t->st);
853 st->timeout=0;
854 st->current_valid=True;
855 st->current_key_timeout=st->now+st->key_lifetime;
856 st->renegotiate_key_time=st->now+st->key_renegotiate_time;
857 transport_peers_copy(st,&st->peers,&st->setup_peers);
858 st->remote_session_id=st->setup_session_id;
859
860 slog(st,LOG_ACTIVATE_KEY,"new key activated");
861 enter_state_run(st);
862 }
863
864 static void delete_key(struct site *st, cstring_t reason, uint32_t loglevel)
865 {
866 if (st->current_valid) {
867 slog(st,loglevel,"session closed (%s)",reason);
868
869 st->current_valid=False;
870 st->current_transform->delkey(st->current_transform->st);
871 st->current_key_timeout=0;
872 set_link_quality(st);
873 }
874 }
875
876 static void state_assert(struct site *st, bool_t ok)
877 {
878 if (!ok) fatal("site:state_assert");
879 }
880
881 static void enter_state_stop(struct site *st)
882 {
883 st->state=SITE_STOP;
884 st->timeout=0;
885 delete_key(st,"entering state STOP",LOG_TIMEOUT_KEY);
886 st->new_transform->delkey(st->new_transform->st);
887 }
888
889 static void set_link_quality(struct site *st)
890 {
891 uint32_t quality;
892 if (st->current_valid)
893 quality=LINK_QUALITY_UP;
894 else if (st->state==SITE_WAIT || st->state==SITE_STOP)
895 quality=LINK_QUALITY_DOWN;
896 else if (st->address)
897 quality=LINK_QUALITY_DOWN_CURRENT_ADDRESS;
898 else if (transport_peers_valid(&st->peers))
899 quality=LINK_QUALITY_DOWN_STALE_ADDRESS;
900 else
901 quality=LINK_QUALITY_DOWN;
902
903 st->netlink->set_quality(st->netlink->st,quality);
904 }
905
906 static void enter_state_run(struct site *st)
907 {
908 slog(st,LOG_STATE,"entering state RUN");
909 st->state=SITE_RUN;
910 st->timeout=0;
911
912 st->setup_session_id=0;
913 transport_peers_clear(st,&st->setup_peers);
914 memset(st->localN,0,NONCELEN);
915 memset(st->remoteN,0,NONCELEN);
916 st->new_transform->delkey(st->new_transform->st);
917 memset(st->dhsecret,0,st->dh->len);
918 memset(st->sharedsecret,0,st->transform->keylen);
919 set_link_quality(st);
920 }
921
922 static bool_t enter_state_resolve(struct site *st)
923 {
924 state_assert(st,st->state==SITE_RUN);
925 slog(st,LOG_STATE,"entering state RESOLVE");
926 st->state=SITE_RESOLVE;
927 st->resolver->request(st->resolver->st,st->address,
928 site_resolve_callback,st);
929 return True;
930 }
931
932 static bool_t enter_new_state(struct site *st, uint32_t next)
933 {
934 bool_t (*gen)(struct site *st);
935 int r;
936
937 slog(st,LOG_STATE,"entering state %s",state_name(next));
938 switch(next) {
939 case SITE_SENTMSG1:
940 state_assert(st,st->state==SITE_RUN || st->state==SITE_RESOLVE);
941 gen=generate_msg1;
942 break;
943 case SITE_SENTMSG2:
944 state_assert(st,st->state==SITE_RUN || st->state==SITE_RESOLVE ||
945 st->state==SITE_SENTMSG1 || st->state==SITE_WAIT);
946 gen=generate_msg2;
947 break;
948 case SITE_SENTMSG3:
949 state_assert(st,st->state==SITE_SENTMSG1);
950 BUF_FREE(&st->buffer);
951 gen=generate_msg3;
952 break;
953 case SITE_SENTMSG4:
954 state_assert(st,st->state==SITE_SENTMSG2);
955 BUF_FREE(&st->buffer);
956 gen=generate_msg4;
957 break;
958 case SITE_SENTMSG5:
959 state_assert(st,st->state==SITE_SENTMSG3);
960 BUF_FREE(&st->buffer);
961 gen=generate_msg5;
962 break;
963 case SITE_RUN:
964 state_assert(st,st->state==SITE_SENTMSG4);
965 BUF_FREE(&st->buffer);
966 gen=generate_msg6;
967 break;
968 default:
969 gen=NULL;
970 fatal("enter_new_state(%s): invalid new state",state_name(next));
971 break;
972 }
973
974 if (hacky_par_start_failnow()) return False;
975
976 r= gen(st) && send_msg(st);
977
978 hacky_par_end(&r,
979 st->setup_retries, st->setup_retry_interval,
980 send_msg, st);
981
982 if (r) {
983 st->state=next;
984 if (next==SITE_RUN) {
985 BUF_FREE(&st->buffer); /* Never reused */
986 st->timeout=0; /* Never retransmit */
987 activate_new_key(st);
988 }
989 return True;
990 }
991 slog(st,LOG_ERROR,"error entering state %s",state_name(next));
992 st->buffer.free=False; /* Unconditionally use the buffer; it may be
993 in either state, and enter_state_wait() will
994 do a BUF_FREE() */
995 enter_state_wait(st);
996 return False;
997 }
998
999 /* msg7 tells our peer that we're about to forget our key */
1000 static bool_t send_msg7(struct site *st, cstring_t reason)
1001 {
1002 cstring_t transform_err;
1003
1004 if (st->current_valid && st->buffer.free
1005 && transport_peers_valid(&st->peers)) {
1006 BUF_ALLOC(&st->buffer,"site:MSG7");
1007 buffer_init(&st->buffer,st->transform->max_start_pad+(4*3));
1008 buf_append_uint32(&st->buffer,LABEL_MSG7);
1009 buf_append_string(&st->buffer,reason);
1010 st->current_transform->forwards(st->current_transform->st,
1011 &st->buffer, &transform_err);
1012 buf_prepend_uint32(&st->buffer,LABEL_MSG0);
1013 buf_prepend_uint32(&st->buffer,st->index);
1014 buf_prepend_uint32(&st->buffer,st->remote_session_id);
1015 transport_xmit(st,&st->peers,&st->buffer,True);
1016 BUF_FREE(&st->buffer);
1017 return True;
1018 }
1019 return False;
1020 }
1021
1022 /* We go into this state if our peer becomes uncommunicative. Similar to
1023 the "stop" state, we forget all session keys for a while, before
1024 re-entering the "run" state. */
1025 static void enter_state_wait(struct site *st)
1026 {
1027 slog(st,LOG_STATE,"entering state WAIT");
1028 st->timeout=st->now+st->wait_timeout;
1029 st->state=SITE_WAIT;
1030 set_link_quality(st);
1031 BUF_FREE(&st->buffer); /* will have had an outgoing packet in it */
1032 /* XXX Erase keys etc. */
1033 }
1034
1035 static inline void site_settimeout(uint64_t timeout, int *timeout_io)
1036 {
1037 if (timeout) {
1038 int64_t offset=timeout-*now;
1039 if (offset<0) offset=0;
1040 if (offset>INT_MAX) offset=INT_MAX;
1041 if (*timeout_io<0 || offset<*timeout_io)
1042 *timeout_io=offset;
1043 }
1044 }
1045
1046 static int site_beforepoll(void *sst, struct pollfd *fds, int *nfds_io,
1047 int *timeout_io)
1048 {
1049 struct site *st=sst;
1050
1051 *nfds_io=0; /* We don't use any file descriptors */
1052 st->now=*now;
1053
1054 /* Work out when our next timeout is. The earlier of 'timeout' or
1055 'current_key_timeout'. A stored value of '0' indicates no timeout
1056 active. */
1057 site_settimeout(st->timeout, timeout_io);
1058 site_settimeout(st->current_key_timeout, timeout_io);
1059
1060 return 0; /* success */
1061 }
1062
1063 /* NB site_afterpoll will be called before site_beforepoll is ever called */
1064 static void site_afterpoll(void *sst, struct pollfd *fds, int nfds)
1065 {
1066 struct site *st=sst;
1067
1068 st->now=*now;
1069 if (st->timeout && *now>st->timeout) {
1070 st->timeout=0;
1071 if (st->state>=SITE_SENTMSG1 && st->state<=SITE_SENTMSG5) {
1072 if (!hacky_par_start_failnow())
1073 send_msg(st);
1074 } else if (st->state==SITE_WAIT) {
1075 enter_state_run(st);
1076 } else {
1077 slog(st,LOG_ERROR,"site_afterpoll: unexpected timeout, state=%d",
1078 st->state);
1079 }
1080 }
1081 if (st->current_key_timeout && *now>st->current_key_timeout) {
1082 delete_key(st,"maximum key life exceeded",LOG_TIMEOUT_KEY);
1083 }
1084 }
1085
1086 /* This function is called by the netlink device to deliver packets
1087 intended for the remote network. The packet is in "raw" wire
1088 format, but is guaranteed to be word-aligned. */
1089 static void site_outgoing(void *sst, struct buffer_if *buf)
1090 {
1091 struct site *st=sst;
1092 cstring_t transform_err;
1093
1094 if (st->state==SITE_STOP) {
1095 BUF_FREE(buf);
1096 return;
1097 }
1098
1099 /* In all other states we consider delivering the packet if we have
1100 a valid key and a valid address to send it to. */
1101 if (st->current_valid && transport_peers_valid(&st->peers)) {
1102 /* Transform it and send it */
1103 if (buf->size>0) {
1104 buf_prepend_uint32(buf,LABEL_MSG9);
1105 st->current_transform->forwards(st->current_transform->st,
1106 buf, &transform_err);
1107 buf_prepend_uint32(buf,LABEL_MSG0);
1108 buf_prepend_uint32(buf,st->index);
1109 buf_prepend_uint32(buf,st->remote_session_id);
1110 transport_xmit(st,&st->peers,buf,False);
1111 }
1112 BUF_FREE(buf);
1113 return;
1114 }
1115
1116 slog(st,LOG_DROP,"discarding outgoing packet of size %d",buf->size);
1117 BUF_FREE(buf);
1118 initiate_key_setup(st,"outgoing packet");
1119 }
1120
1121 /* This function is called by the communication device to deliver
1122 packets from our peers. */
1123 static bool_t site_incoming(void *sst, struct buffer_if *buf,
1124 const struct comm_addr *source)
1125 {
1126 struct site *st=sst;
1127
1128 if (buf->size < 12) return False;
1129
1130 uint32_t dest=ntohl(*(uint32_t *)buf->start);
1131
1132 if (dest==0) {
1133 /* It could be for any site - it should have LABEL_MSG1 and
1134 might have our name and our peer's name in it */
1135 if (buf->size<(st->setupsiglen+8+NONCELEN)) return False;
1136 if (memcmp(buf->start+8,st->setupsig,st->setupsiglen)==0) {
1137 /* It's addressed to us. Decide what to do about it. */
1138 dump_packet(st,buf,source,True);
1139 if (st->state==SITE_RUN || st->state==SITE_RESOLVE ||
1140 st->state==SITE_WAIT) {
1141 /* We should definitely process it */
1142 if (process_msg1(st,buf,source)) {
1143 slog(st,LOG_SETUP_INIT,"key setup initiated by peer");
1144 enter_new_state(st,SITE_SENTMSG2);
1145 } else {
1146 slog(st,LOG_ERROR,"failed to process incoming msg1");
1147 }
1148 BUF_FREE(buf);
1149 return True;
1150 } else if (st->state==SITE_SENTMSG1) {
1151 /* We've just sent a message 1! They may have crossed on
1152 the wire. If we have priority then we ignore the
1153 incoming one, otherwise we process it as usual. */
1154 if (st->setup_priority) {
1155 BUF_FREE(buf);
1156 slog(st,LOG_DUMP,"crossed msg1s; we are higher "
1157 "priority => ignore incoming msg1");
1158 return True;
1159 } else {
1160 slog(st,LOG_DUMP,"crossed msg1s; we are lower "
1161 "priority => use incoming msg1");
1162 if (process_msg1(st,buf,source)) {
1163 BUF_FREE(&st->buffer); /* Free our old message 1 */
1164 enter_new_state(st,SITE_SENTMSG2);
1165 } else {
1166 slog(st,LOG_ERROR,"failed to process an incoming "
1167 "crossed msg1 (we have low priority)");
1168 }
1169 BUF_FREE(buf);
1170 return True;
1171 }
1172 }
1173 /* The message 1 was received at an unexpected stage of the
1174 key setup. XXX POLICY - what do we do? */
1175 slog(st,LOG_UNEXPECTED,"unexpected incoming message 1");
1176 BUF_FREE(buf);
1177 return True;
1178 }
1179 return False; /* Not for us. */
1180 }
1181 if (dest==st->index) {
1182 /* Explicitly addressed to us */
1183 uint32_t msgtype=ntohl(get_uint32(buf->start+8));
1184 if (msgtype!=LABEL_MSG0) dump_packet(st,buf,source,True);
1185 switch (msgtype) {
1186 case 0: /* NAK */
1187 /* If the source is our current peer then initiate a key setup,
1188 because our peer's forgotten the key */
1189 if (get_uint32(buf->start+4)==st->remote_session_id) {
1190 initiate_key_setup(st,"received a NAK");
1191 } else {
1192 slog(st,LOG_SEC,"bad incoming NAK");
1193 }
1194 break;
1195 case LABEL_MSG0:
1196 process_msg0(st,buf,source);
1197 break;
1198 case LABEL_MSG1:
1199 /* Setup packet: should not have been explicitly addressed
1200 to us */
1201 slog(st,LOG_SEC,"incoming explicitly addressed msg1");
1202 break;
1203 case LABEL_MSG2:
1204 /* Setup packet: expected only in state SENTMSG1 */
1205 if (st->state!=SITE_SENTMSG1) {
1206 slog(st,LOG_UNEXPECTED,"unexpected MSG2");
1207 } else if (process_msg2(st,buf,source)) {
1208 transport_setup_msgok(st,source);
1209 enter_new_state(st,SITE_SENTMSG3);
1210 } else {
1211 slog(st,LOG_SEC,"invalid MSG2");
1212 }
1213 break;
1214 case LABEL_MSG3:
1215 /* Setup packet: expected only in state SENTMSG2 */
1216 if (st->state!=SITE_SENTMSG2) {
1217 slog(st,LOG_UNEXPECTED,"unexpected MSG3");
1218 } else if (process_msg3(st,buf,source)) {
1219 transport_setup_msgok(st,source);
1220 enter_new_state(st,SITE_SENTMSG4);
1221 } else {
1222 slog(st,LOG_SEC,"invalid MSG3");
1223 }
1224 break;
1225 case LABEL_MSG4:
1226 /* Setup packet: expected only in state SENTMSG3 */
1227 if (st->state!=SITE_SENTMSG3) {
1228 slog(st,LOG_UNEXPECTED,"unexpected MSG4");
1229 } else if (process_msg4(st,buf,source)) {
1230 transport_setup_msgok(st,source);
1231 enter_new_state(st,SITE_SENTMSG5);
1232 } else {
1233 slog(st,LOG_SEC,"invalid MSG4");
1234 }
1235 break;
1236 case LABEL_MSG5:
1237 /* Setup packet: expected only in state SENTMSG4 */
1238 /* (may turn up in state RUN if our return MSG6 was lost
1239 and the new key has already been activated. In that
1240 case we should treat it as an ordinary PING packet. We
1241 can't pass it to process_msg5() because the
1242 new_transform will now be unkeyed. XXX) */
1243 if (st->state!=SITE_SENTMSG4) {
1244 slog(st,LOG_UNEXPECTED,"unexpected MSG5");
1245 } else if (process_msg5(st,buf,source)) {
1246 transport_setup_msgok(st,source);
1247 enter_new_state(st,SITE_RUN);
1248 } else {
1249 slog(st,LOG_SEC,"invalid MSG5");
1250 }
1251 break;
1252 case LABEL_MSG6:
1253 /* Setup packet: expected only in state SENTMSG5 */
1254 if (st->state!=SITE_SENTMSG5) {
1255 slog(st,LOG_UNEXPECTED,"unexpected MSG6");
1256 } else if (process_msg6(st,buf,source)) {
1257 BUF_FREE(&st->buffer); /* Free message 5 */
1258 transport_setup_msgok(st,source);
1259 activate_new_key(st);
1260 } else {
1261 slog(st,LOG_SEC,"invalid MSG6");
1262 }
1263 break;
1264 default:
1265 slog(st,LOG_SEC,"received message of unknown type 0x%08x",
1266 msgtype);
1267 break;
1268 }
1269 BUF_FREE(buf);
1270 return True;
1271 }
1272
1273 return False;
1274 }
1275
1276 static void site_control(void *vst, bool_t run)
1277 {
1278 struct site *st=vst;
1279 if (run) enter_state_run(st);
1280 else enter_state_stop(st);
1281 }
1282
1283 static void site_phase_hook(void *sst, uint32_t newphase)
1284 {
1285 struct site *st=sst;
1286
1287 /* The program is shutting down; tell our peer */
1288 send_msg7(st,"shutting down");
1289 }
1290
1291 static list_t *site_apply(closure_t *self, struct cloc loc, dict_t *context,
1292 list_t *args)
1293 {
1294 static uint32_t index_sequence;
1295 struct site *st;
1296 item_t *item;
1297 dict_t *dict;
1298 int i;
1299
1300 st=safe_malloc(sizeof(*st),"site_apply");
1301
1302 st->cl.description="site";
1303 st->cl.type=CL_SITE;
1304 st->cl.apply=NULL;
1305 st->cl.interface=&st->ops;
1306 st->ops.st=st;
1307 st->ops.control=site_control;
1308 st->ops.status=site_status;
1309
1310 /* First parameter must be a dict */
1311 item=list_elem(args,0);
1312 if (!item || item->type!=t_dict)
1313 cfgfatal(loc,"site","parameter must be a dictionary\n");
1314
1315 dict=item->data.dict;
1316 st->localname=dict_read_string(dict, "local-name", True, "site", loc);
1317 st->remotename=dict_read_string(dict, "name", True, "site", loc);
1318
1319 st->peer_mobile=dict_read_bool(dict,"mobile",False,"site",loc,False);
1320 bool_t local_mobile=
1321 dict_read_bool(dict,"local-mobile",False,"site",loc,False);
1322
1323 /* Sanity check (which also allows the 'sites' file to include
1324 site() closures for all sites including our own): refuse to
1325 talk to ourselves */
1326 if (strcmp(st->localname,st->remotename)==0) {
1327 Message(M_DEBUG,"site %s: local-name==name -> ignoring this site\n",
1328 st->localname);
1329 if (st->peer_mobile != local_mobile)
1330 cfgfatal(loc,"site","site %s's peer-mobile=%d"
1331 " but our local-mobile=%d\n",
1332 st->localname, st->peer_mobile, local_mobile);
1333 free(st);
1334 return NULL;
1335 }
1336 if (st->peer_mobile && local_mobile) {
1337 Message(M_WARNING,"site %s: site is mobile but so are we"
1338 " -> ignoring this site\n", st->remotename);
1339 free(st);
1340 return NULL;
1341 }
1342
1343 assert(index_sequence < 0xffffffffUL);
1344 st->index = ++index_sequence;
1345 st->netlink=find_cl_if(dict,"link",CL_NETLINK,True,"site",loc);
1346
1347 list_t *comms_cfg=dict_lookup(dict,"comm");
1348 if (!comms_cfg) cfgfatal(loc,"site","closure list \"comm\" not found\n");
1349 st->ncomms=list_length(comms_cfg);
1350 st->comms=safe_malloc_ary(sizeof(*st->comms),st->ncomms,"comms");
1351 assert(st->ncomms);
1352 for (i=0; i<st->ncomms; i++) {
1353 item_t *item=list_elem(comms_cfg,i);
1354 if (item->type!=t_closure)
1355 cfgfatal(loc,"site","comm is not a closure\n");
1356 closure_t *cl=item->data.closure;
1357 if (cl->type!=CL_COMM) cfgfatal(loc,"site","comm closure wrong type\n");
1358 st->comms[i]=cl->interface;
1359 }
1360
1361 st->resolver=find_cl_if(dict,"resolver",CL_RESOLVER,True,"site",loc);
1362 st->log=find_cl_if(dict,"log",CL_LOG,True,"site",loc);
1363 st->random=find_cl_if(dict,"random",CL_RANDOMSRC,True,"site",loc);
1364
1365 st->privkey=find_cl_if(dict,"local-key",CL_RSAPRIVKEY,True,"site",loc);
1366 st->address=dict_read_string(dict, "address", False, "site", loc);
1367 if (st->address)
1368 st->remoteport=dict_read_number(dict,"port",True,"site",loc,0);
1369 else st->remoteport=0;
1370 st->pubkey=find_cl_if(dict,"key",CL_RSAPUBKEY,True,"site",loc);
1371
1372 st->transform=
1373 find_cl_if(dict,"transform",CL_TRANSFORM,True,"site",loc);
1374
1375 st->dh=find_cl_if(dict,"dh",CL_DH,True,"site",loc);
1376 st->hash=find_cl_if(dict,"hash",CL_HASH,True,"site",loc);
1377
1378 #define DEFAULT(D) (st->peer_mobile || local_mobile \
1379 ? DEFAULT_MOBILE_##D : DEFAULT_##D)
1380 #define CFG_NUMBER(k,D) dict_read_number(dict,(k),False,"site",loc,DEFAULT(D));
1381
1382 st->key_lifetime= CFG_NUMBER("key-lifetime", KEY_LIFETIME);
1383 st->setup_retries= CFG_NUMBER("setup-retries", SETUP_RETRIES);
1384 st->setup_retry_interval= CFG_NUMBER("setup-timeout", SETUP_RETRY_INTERVAL);
1385 st->wait_timeout= CFG_NUMBER("wait-time", WAIT_TIME);
1386
1387 st->mobile_peer_expiry= dict_read_number(
1388 dict,"mobile-peer-expiry",False,"site",loc,DEFAULT_MOBILE_PEER_EXPIRY);
1389
1390 st->transport_peers_max= !st->peer_mobile ? 1 : dict_read_number(
1391 dict,"mobile-peers-max",False,"site",loc,DEFAULT_MOBILE_PEERS_MAX);
1392 if (st->transport_peers_max<1 ||
1393 st->transport_peers_max>=MAX_MOBILE_PEERS_MAX) {
1394 cfgfatal(loc,"site","mobile-peers-max must be in range 1.."
1395 STRING(MAX_MOBILE_PEERS_MAX) "\n");
1396 }
1397
1398 if (st->key_lifetime < DEFAULT(KEY_RENEGOTIATE_GAP)*2)
1399 st->key_renegotiate_time=st->key_lifetime/2;
1400 else
1401 st->key_renegotiate_time=st->key_lifetime-DEFAULT(KEY_RENEGOTIATE_GAP);
1402 st->key_renegotiate_time=dict_read_number(
1403 dict,"renegotiate-time",False,"site",loc,st->key_renegotiate_time);
1404 if (st->key_renegotiate_time > st->key_lifetime) {
1405 cfgfatal(loc,"site",
1406 "renegotiate-time must be less than key-lifetime\n");
1407 }
1408
1409 st->log_events=string_list_to_word(dict_lookup(dict,"log-events"),
1410 log_event_table,"site");
1411
1412 st->tunname=safe_malloc(strlen(st->localname)+strlen(st->remotename)+5,
1413 "site_apply");
1414 sprintf(st->tunname,"%s<->%s",st->localname,st->remotename);
1415
1416 /* The information we expect to see in incoming messages of type 1 */
1417 /* fixme: lots of unchecked overflows here, but the results are only
1418 corrupted packets rather than undefined behaviour */
1419 st->setupsiglen=strlen(st->remotename)+strlen(st->localname)+8;
1420 st->setupsig=safe_malloc(st->setupsiglen,"site_apply");
1421 put_uint32(st->setupsig+0,LABEL_MSG1);
1422 put_uint16(st->setupsig+4,strlen(st->remotename));
1423 memcpy(&st->setupsig[6],st->remotename,strlen(st->remotename));
1424 put_uint16(st->setupsig+(6+strlen(st->remotename)),strlen(st->localname));
1425 memcpy(&st->setupsig[8+strlen(st->remotename)],st->localname,
1426 strlen(st->localname));
1427 st->setup_priority=(strcmp(st->localname,st->remotename)>0);
1428
1429 buffer_new(&st->buffer,SETUP_BUFFER_LEN);
1430
1431 /* We are interested in poll(), but only for timeouts. We don't have
1432 any fds of our own. */
1433 register_for_poll(st, site_beforepoll, site_afterpoll, 0, "site");
1434 st->timeout=0;
1435
1436 st->current_valid=False;
1437 st->current_key_timeout=0;
1438 transport_peers_clear(st,&st->peers);
1439 transport_peers_clear(st,&st->setup_peers);
1440 /* XXX mlock these */
1441 st->dhsecret=safe_malloc(st->dh->len,"site:dhsecret");
1442 st->sharedsecret=safe_malloc(st->transform->keylen,"site:sharedsecret");
1443
1444 /* We need to compute some properties of our comms */
1445 #define COMPUTE_WORST(pad) \
1446 int worst_##pad=0; \
1447 for (i=0; i<st->ncomms; i++) { \
1448 int thispad=st->comms[i]->pad; \
1449 if (thispad > worst_##pad) \
1450 worst_##pad=thispad; \
1451 }
1452 COMPUTE_WORST(min_start_pad)
1453 COMPUTE_WORST(min_end_pad)
1454
1455 /* We need to register the remote networks with the netlink device */
1456 st->netlink->reg(st->netlink->st, site_outgoing, st,
1457 st->transform->max_start_pad+(4*4)+
1458 worst_min_start_pad,
1459 st->transform->max_end_pad+worst_min_end_pad);
1460
1461 for (i=0; i<st->ncomms; i++)
1462 st->comms[i]->request_notify(st->comms[i]->st, st, site_incoming);
1463
1464 st->current_transform=st->transform->create(st->transform->st);
1465 st->new_transform=st->transform->create(st->transform->st);
1466
1467 enter_state_stop(st);
1468
1469 add_hook(PHASE_SHUTDOWN,site_phase_hook,st);
1470
1471 return new_closure(&st->cl);
1472 }
1473
1474 void site_module(dict_t *dict)
1475 {
1476 add_closure(dict,"site",site_apply);
1477 }
1478
1479
1480 /***** TRANSPORT PEERS definitions *****/
1481
1482 static void transport_peers_debug(struct site *st, transport_peers *dst,
1483 const char *didwhat,
1484 int nargs, const struct comm_addr *args,
1485 size_t stride) {
1486 int i;
1487 char *argp;
1488
1489 if (!(st->log_events & LOG_PEER_ADDRS))
1490 return; /* an optimisation */
1491
1492 slog(st, LOG_PEER_ADDRS, "peers (%s) %s nargs=%d => npeers=%d",
1493 (dst==&st->peers ? "data" :
1494 dst==&st->setup_peers ? "setup" : "UNKNOWN"),
1495 didwhat, nargs, dst->npeers);
1496
1497 for (i=0, argp=(void*)args;
1498 i<nargs;
1499 i++, (argp+=stride?stride:sizeof(*args))) {
1500 const struct comm_addr *ca=(void*)argp;
1501 slog(st, LOG_PEER_ADDRS, " args: addrs[%d]=%s",
1502 i, ca->comm->addr_to_string(ca->comm->st,ca));
1503 }
1504 for (i=0; i<dst->npeers; i++) {
1505 struct timeval diff;
1506 timersub(tv_now,&dst->peers[i].last,&diff);
1507 const struct comm_addr *ca=&dst->peers[i].addr;
1508 slog(st, LOG_PEER_ADDRS, " peers: addrs[%d]=%s T-%ld.%06ld",
1509 i, ca->comm->addr_to_string(ca->comm->st,ca),
1510 (unsigned long)diff.tv_sec, (unsigned long)diff.tv_usec);
1511 }
1512 }
1513
1514 static int transport_peer_compar(const void *av, const void *bv) {
1515 const transport_peer *a=av;
1516 const transport_peer *b=bv;
1517 /* put most recent first in the array */
1518 if (timercmp(&a->last, &b->last, <)) return +1;
1519 if (timercmp(&a->last, &b->last, >)) return -11;
1520 return 0;
1521 }
1522
1523 static void transport_peers_expire(struct site *st, transport_peers *peers) {
1524 /* peers must be sorted first */
1525 int previous_peers=peers->npeers;
1526 struct timeval oldest;
1527 oldest.tv_sec = tv_now->tv_sec - st->mobile_peer_expiry;
1528 oldest.tv_usec = tv_now->tv_usec;
1529 while (peers->npeers>1 &&
1530 timercmp(&peers->peers[peers->npeers-1].last, &oldest, <))
1531 peers->npeers--;
1532 if (peers->npeers != previous_peers)
1533 transport_peers_debug(st,peers,"expire", 0,0,0);
1534 }
1535
1536 static void transport_record_peer(struct site *st, transport_peers *peers,
1537 const struct comm_addr *addr, const char *m) {
1538 int slot, changed=0;
1539
1540 for (slot=0; slot<peers->npeers; slot++)
1541 if (!memcmp(&peers->peers[slot].addr, addr, sizeof(*addr)))
1542 goto found;
1543
1544 changed=1;
1545 if (peers->npeers==st->transport_peers_max)
1546 slot=st->transport_peers_max;
1547 else
1548 slot=peers->npeers++;
1549
1550 found:
1551 peers->peers[slot].addr=*addr;
1552 peers->peers[slot].last=*tv_now;
1553
1554 if (peers->npeers>1)
1555 qsort(peers->peers, peers->npeers,
1556 sizeof(*peers->peers), transport_peer_compar);
1557
1558 if (changed || peers->npeers!=1)
1559 transport_peers_debug(st,peers,m, 1,addr,0);
1560 transport_peers_expire(st, peers);
1561 }
1562
1563 static bool_t transport_compute_setupinit_peers(struct site *st,
1564 const struct comm_addr *configured_addr /* 0 if none or not found */) {
1565
1566 if (!configured_addr && !transport_peers_valid(&st->peers))
1567 return False;
1568
1569 slog(st,LOG_SETUP_INIT,
1570 (!configured_addr ? "using only %d old peer address(es)"
1571 : "using configured address, and/or perhaps %d old peer address(es)"),
1572 st->peers);
1573
1574 /* Non-mobile peers havve st->peers.npeers==0 or ==1, since they
1575 * have transport_peers_max==1. The effect is that this code
1576 * always uses the configured address if supplied, or otherwise
1577 * the existing data peer if one exists; this is as desired. */
1578
1579 transport_peers_copy(st,&st->setup_peers,&st->peers);
1580
1581 if (configured_addr)
1582 transport_record_peer(st,&st->setup_peers,configured_addr,"setupinit");
1583
1584 assert(transport_peers_valid(&st->setup_peers));
1585 return True;
1586 }
1587
1588 static void transport_setup_msgok(struct site *st, const struct comm_addr *a) {
1589 if (st->peer_mobile)
1590 transport_record_peer(st,&st->setup_peers,a,"setupmsg");
1591 }
1592 static void transport_data_msgok(struct site *st, const struct comm_addr *a) {
1593 if (st->peer_mobile)
1594 transport_record_peer(st,&st->peers,a,"datamsg");
1595 }
1596
1597 static int transport_peers_valid(transport_peers *peers) {
1598 return peers->npeers;
1599 }
1600 static void transport_peers_clear(struct site *st, transport_peers *peers) {
1601 peers->npeers= 0;
1602 transport_peers_debug(st,peers,"clear",0,0,0);
1603 }
1604 static void transport_peers_copy(struct site *st, transport_peers *dst,
1605 const transport_peers *src) {
1606 dst->npeers=src->npeers;
1607 memcpy(dst->peers, src->peers, sizeof(*dst->peers) * dst->npeers);
1608 transport_peers_debug(st,dst,"copy",
1609 src->npeers, &src->peers->addr, sizeof(*src->peers));
1610 }
1611
1612 void transport_xmit(struct site *st, transport_peers *peers,
1613 struct buffer_if *buf, bool_t candebug) {
1614 int slot;
1615 transport_peers_expire(st, peers);
1616 for (slot=0; slot<peers->npeers; slot++) {
1617 transport_peer *peer=&peers->peers[slot];
1618 if (candebug)
1619 dump_packet(st, buf, &peer->addr, False);
1620 peer->addr.comm->sendmsg(peer->addr.comm->st, buf, &peer->addr);
1621 }
1622 }
1623
1624 /***** END of transport peers declarations *****/