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Revision: 1.50
Committed: Fri Mar 18 01:53:05 2005 UTC (19 years, 2 months ago) by pcg
Content type: text/plain
Branch: MAIN
CVS Tags: rel-1_8
Changes since 1.49: +0 -2 lines
Log Message:
*** empty log message ***

File Contents

# Content
1 /*
2 connection.C -- manage a single connection
3 Copyright (C) 2003-2005 Marc Lehmann <gvpe@schmorp.de>
4
5 This file is part of GVPE.
6
7 GVPE is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with gvpe; if not, write to the Free Software
19 Foundation, Inc. 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
20 */
21
22 #include "config.h"
23
24 #include <cassert>
25
26 #include <list>
27
28 #include <openssl/rand.h>
29 #include <openssl/evp.h>
30 #include <openssl/rsa.h>
31 #include <openssl/err.h>
32
33 #include "conf.h"
34 #include "slog.h"
35 #include "device.h"
36 #include "vpn.h"
37 #include "connection.h"
38
39 #include "netcompat.h"
40
41 #if !HAVE_RAND_PSEUDO_BYTES
42 # define RAND_pseudo_bytes RAND_bytes
43 #endif
44
45 #define MAGIC "vped\xbd\xc6\xdb\x82" // 8 bytes of magic
46
47 #define ULTRA_FAST 1
48 #define HLOG 15
49 #include "lzf/lzf.h"
50 #include "lzf/lzf_c.c"
51 #include "lzf/lzf_d.c"
52
53 struct crypto_ctx
54 {
55 EVP_CIPHER_CTX cctx;
56 HMAC_CTX hctx;
57
58 crypto_ctx (const rsachallenge &challenge, int enc);
59 ~crypto_ctx ();
60 };
61
62 crypto_ctx::crypto_ctx (const rsachallenge &challenge, int enc)
63 {
64 EVP_CIPHER_CTX_init (&cctx);
65 require (EVP_CipherInit_ex (&cctx, CIPHER, 0, &challenge[CHG_CIPHER_KEY], 0, enc));
66 HMAC_CTX_init (&hctx);
67 HMAC_Init_ex (&hctx, &challenge[CHG_HMAC_KEY], HMAC_KEYLEN, DIGEST, 0);
68 }
69
70 crypto_ctx::~crypto_ctx ()
71 {
72 require (EVP_CIPHER_CTX_cleanup (&cctx));
73 HMAC_CTX_cleanup (&hctx);
74 }
75
76 static void
77 rsa_hash (const rsaid &id, const rsachallenge &chg, rsaresponse &h)
78 {
79 EVP_MD_CTX ctx;
80
81 EVP_MD_CTX_init (&ctx);
82 require (EVP_DigestInit (&ctx, RSA_HASH));
83 require (EVP_DigestUpdate(&ctx, &chg, sizeof chg));
84 require (EVP_DigestUpdate(&ctx, &id, sizeof id));
85 require (EVP_DigestFinal (&ctx, (unsigned char *)&h, 0));
86 EVP_MD_CTX_cleanup (&ctx);
87 }
88
89 struct rsa_entry {
90 tstamp expire;
91 rsaid id;
92 rsachallenge chg;
93 };
94
95 struct rsa_cache : list<rsa_entry>
96 {
97 void cleaner_cb (time_watcher &w); time_watcher cleaner;
98
99 bool find (const rsaid &id, rsachallenge &chg)
100 {
101 for (iterator i = begin (); i != end (); ++i)
102 {
103 if (!memcmp (&id, &i->id, sizeof id) && i->expire > NOW)
104 {
105 memcpy (&chg, &i->chg, sizeof chg);
106
107 erase (i);
108 return true;
109 }
110 }
111
112 if (cleaner.at < NOW)
113 cleaner.start (NOW + RSA_TTL);
114
115 return false;
116 }
117
118 void gen (rsaid &id, rsachallenge &chg)
119 {
120 rsa_entry e;
121
122 RAND_bytes ((unsigned char *)&id, sizeof id);
123 RAND_bytes ((unsigned char *)&chg, sizeof chg);
124
125 e.expire = NOW + RSA_TTL;
126 e.id = id;
127 memcpy (&e.chg, &chg, sizeof chg);
128
129 push_back (e);
130
131 if (cleaner.at < NOW)
132 cleaner.start (NOW + RSA_TTL);
133 }
134
135 rsa_cache ()
136 : cleaner (this, &rsa_cache::cleaner_cb)
137 { }
138
139 } rsa_cache;
140
141 void rsa_cache::cleaner_cb (time_watcher &w)
142 {
143 if (!empty ())
144 {
145 w.start (NOW + RSA_TTL);
146
147 for (iterator i = begin (); i != end (); )
148 if (i->expire <= NOW)
149 i = erase (i);
150 else
151 ++i;
152 }
153 }
154
155 //////////////////////////////////////////////////////////////////////////////
156
157 void pkt_queue::put (net_packet *p)
158 {
159 if (queue[i])
160 {
161 delete queue[i];
162 j = (j + 1) % QUEUEDEPTH;
163 }
164
165 queue[i] = p;
166
167 i = (i + 1) % QUEUEDEPTH;
168 }
169
170 net_packet *pkt_queue::get ()
171 {
172 net_packet *p = queue[j];
173
174 if (p)
175 {
176 queue[j] = 0;
177 j = (j + 1) % QUEUEDEPTH;
178 }
179
180 return p;
181 }
182
183 pkt_queue::pkt_queue ()
184 {
185 memset (queue, 0, sizeof (queue));
186 i = 0;
187 j = 0;
188 }
189
190 pkt_queue::~pkt_queue ()
191 {
192 for (i = QUEUEDEPTH; --i > 0; )
193 delete queue[i];
194 }
195
196 struct net_rateinfo {
197 u32 host;
198 double pcnt, diff;
199 tstamp last;
200 };
201
202 // only do action once every x seconds per host whole allowing bursts.
203 // this implementation ("splay list" ;) is inefficient,
204 // but low on resources.
205 struct net_rate_limiter : list<net_rateinfo>
206 {
207 # define NRL_ALPHA (1. - 1. / 600.) // allow bursts
208 # define NRL_CUTOFF 10. // one event every CUTOFF seconds
209 # define NRL_EXPIRE (NRL_CUTOFF * 30.) // expire entries after this time
210 # define NRL_MAXDIF (NRL_CUTOFF * (1. / (1. - NRL_ALPHA))) // maximum diff /count value
211
212 bool can (const sockinfo &si) { return can((u32)si.host); }
213 bool can (u32 host);
214 };
215
216 net_rate_limiter auth_rate_limiter, reset_rate_limiter;
217
218 bool net_rate_limiter::can (u32 host)
219 {
220 iterator i;
221
222 for (i = begin (); i != end (); )
223 if (i->host == host)
224 break;
225 else if (i->last < NOW - NRL_EXPIRE)
226 i = erase (i);
227 else
228 i++;
229
230 if (i == end ())
231 {
232 net_rateinfo ri;
233
234 ri.host = host;
235 ri.pcnt = 1.;
236 ri.diff = NRL_MAXDIF;
237 ri.last = NOW;
238
239 push_front (ri);
240
241 return true;
242 }
243 else
244 {
245 net_rateinfo ri (*i);
246 erase (i);
247
248 ri.pcnt = ri.pcnt * NRL_ALPHA;
249 ri.diff = ri.diff * NRL_ALPHA + (NOW - ri.last);
250
251 ri.last = NOW;
252
253 double dif = ri.diff / ri.pcnt;
254
255 bool send = dif > NRL_CUTOFF;
256
257 if (dif > NRL_MAXDIF)
258 {
259 ri.pcnt = 1.;
260 ri.diff = NRL_MAXDIF;
261 }
262 else if (send)
263 ri.pcnt++;
264
265 push_front (ri);
266
267 return send;
268 }
269 }
270
271 /////////////////////////////////////////////////////////////////////////////
272
273 unsigned char hmac_packet::hmac_digest[EVP_MAX_MD_SIZE];
274
275 void hmac_packet::hmac_gen (crypto_ctx *ctx)
276 {
277 unsigned int xlen;
278
279 HMAC_CTX *hctx = &ctx->hctx;
280
281 HMAC_Init_ex (hctx, 0, 0, 0, 0);
282 HMAC_Update (hctx, ((unsigned char *) this) + sizeof (hmac_packet),
283 len - sizeof (hmac_packet));
284 HMAC_Final (hctx, (unsigned char *) &hmac_digest, &xlen);
285 }
286
287 void
288 hmac_packet::hmac_set (crypto_ctx *ctx)
289 {
290 hmac_gen (ctx);
291
292 memcpy (hmac, hmac_digest, HMACLENGTH);
293 }
294
295 bool
296 hmac_packet::hmac_chk (crypto_ctx *ctx)
297 {
298 hmac_gen (ctx);
299
300 return !memcmp (hmac, hmac_digest, HMACLENGTH);
301 }
302
303 void vpn_packet::set_hdr (ptype type_, unsigned int dst)
304 {
305 type = type_;
306
307 int src = THISNODE->id;
308
309 src1 = src;
310 srcdst = ((src >> 8) << 4) | (dst >> 8);
311 dst1 = dst;
312 }
313
314 #define MAXVPNDATA (MAX_MTU - 6 - 6)
315 #define DATAHDR (sizeof (u32) + RAND_SIZE)
316
317 struct vpndata_packet : vpn_packet
318 {
319 u8 data[MAXVPNDATA + DATAHDR]; // seqno
320
321 void setup (connection *conn, int dst, u8 *d, u32 len, u32 seqno);
322 tap_packet *unpack (connection *conn, u32 &seqno);
323 private:
324
325 const u32 data_hdr_size () const
326 {
327 return sizeof (vpndata_packet) - sizeof (net_packet) - MAXVPNDATA - DATAHDR;
328 }
329 };
330
331 void
332 vpndata_packet::setup (connection *conn, int dst, u8 *d, u32 l, u32 seqno)
333 {
334 EVP_CIPHER_CTX *cctx = &conn->octx->cctx;
335 int outl = 0, outl2;
336 ptype type = PT_DATA_UNCOMPRESSED;
337
338 #if ENABLE_COMPRESSION
339 u8 cdata[MAX_MTU];
340
341 if (conn->features & ENABLE_COMPRESSION)
342 {
343 u32 cl = lzf_compress (d, l, cdata + 2, (l - 2) & ~7);
344
345 if (cl)
346 {
347 type = PT_DATA_COMPRESSED;
348 d = cdata;
349 l = cl + 2;
350
351 d[0] = cl >> 8;
352 d[1] = cl;
353 }
354 }
355 #endif
356
357 require (EVP_EncryptInit_ex (cctx, 0, 0, 0, 0));
358
359 struct {
360 #if RAND_SIZE
361 u8 rnd[RAND_SIZE];
362 #endif
363 u32 seqno;
364 } datahdr;
365
366 datahdr.seqno = ntohl (seqno);
367 #if RAND_SIZE
368 RAND_pseudo_bytes ((unsigned char *) datahdr.rnd, RAND_SIZE);
369 #endif
370
371 require (EVP_EncryptUpdate (cctx,
372 (unsigned char *) data + outl, &outl2,
373 (unsigned char *) &datahdr, DATAHDR));
374 outl += outl2;
375
376 require (EVP_EncryptUpdate (cctx,
377 (unsigned char *) data + outl, &outl2,
378 (unsigned char *) d, l));
379 outl += outl2;
380
381 require (EVP_EncryptFinal_ex (cctx, (unsigned char *) data + outl, &outl2));
382 outl += outl2;
383
384 len = outl + data_hdr_size ();
385
386 set_hdr (type, dst);
387
388 hmac_set (conn->octx);
389 }
390
391 tap_packet *
392 vpndata_packet::unpack (connection *conn, u32 &seqno)
393 {
394 EVP_CIPHER_CTX *cctx = &conn->ictx->cctx;
395 int outl = 0, outl2;
396 tap_packet *p = new tap_packet;
397 u8 *d;
398 u32 l = len - data_hdr_size ();
399
400 require (EVP_DecryptInit_ex (cctx, 0, 0, 0, 0));
401
402 #if ENABLE_COMPRESSION
403 u8 cdata[MAX_MTU];
404
405 if (type == PT_DATA_COMPRESSED)
406 d = cdata;
407 else
408 #endif
409 d = &(*p)[6 + 6 - DATAHDR];
410
411 /* this overwrites part of the src mac, but we fix that later */
412 require (EVP_DecryptUpdate (cctx,
413 d, &outl2,
414 (unsigned char *)&data, len - data_hdr_size ()));
415 outl += outl2;
416
417 require (EVP_DecryptFinal_ex (cctx, (unsigned char *)d + outl, &outl2));
418 outl += outl2;
419
420 seqno = ntohl (*(u32 *)(d + RAND_SIZE));
421
422 id2mac (dst () ? dst() : THISNODE->id, p->dst);
423 id2mac (src (), p->src);
424
425 #if ENABLE_COMPRESSION
426 if (type == PT_DATA_COMPRESSED)
427 {
428 u32 cl = (d[DATAHDR] << 8) | d[DATAHDR + 1];
429
430 p->len = lzf_decompress (d + DATAHDR + 2, cl < MAX_MTU ? cl : 0,
431 &(*p)[6 + 6], MAX_MTU)
432 + 6 + 6;
433 }
434 else
435 p->len = outl + (6 + 6 - DATAHDR);
436 #endif
437
438 return p;
439 }
440
441 struct ping_packet : vpn_packet
442 {
443 void setup (int dst, ptype type)
444 {
445 set_hdr (type, dst);
446 len = sizeof (*this) - sizeof (net_packet);
447 }
448 };
449
450 struct config_packet : vpn_packet
451 {
452 // actually, hmaclen cannot be checked because the hmac
453 // field comes before this data, so peers with other
454 // hmacs simply will not work.
455 u8 prot_major, prot_minor, randsize, hmaclen;
456 u8 flags, challengelen, features, pad3;
457 u32 cipher_nid, digest_nid, hmac_nid;
458
459 void setup (ptype type, int dst);
460 bool chk_config () const;
461
462 static u8 get_features ()
463 {
464 u8 f = 0;
465 #if ENABLE_COMPRESSION
466 f |= FEATURE_COMPRESSION;
467 #endif
468 #if ENABLE_ROHC
469 f |= FEATURE_ROHC;
470 #endif
471 return f;
472 }
473 };
474
475 void config_packet::setup (ptype type, int dst)
476 {
477 prot_major = PROTOCOL_MAJOR;
478 prot_minor = PROTOCOL_MINOR;
479 randsize = RAND_SIZE;
480 hmaclen = HMACLENGTH;
481 flags = 0;
482 challengelen = sizeof (rsachallenge);
483 features = get_features ();
484
485 cipher_nid = htonl (EVP_CIPHER_nid (CIPHER));
486 digest_nid = htonl (EVP_MD_type (RSA_HASH));
487 hmac_nid = htonl (EVP_MD_type (DIGEST));
488
489 len = sizeof (*this) - sizeof (net_packet);
490 set_hdr (type, dst);
491 }
492
493 bool config_packet::chk_config () const
494 {
495 if (prot_major != PROTOCOL_MAJOR)
496 slog (L_WARN, _("major version mismatch (remote %d <=> local %d)"), prot_major, PROTOCOL_MAJOR);
497 else if (randsize != RAND_SIZE)
498 slog (L_WARN, _("rand size mismatch (remote %d <=> local %d)"), randsize, RAND_SIZE);
499 else if (hmaclen != HMACLENGTH)
500 slog (L_WARN, _("hmac length mismatch (remote %d <=> local %d)"), hmaclen, HMACLENGTH);
501 else if (challengelen != sizeof (rsachallenge))
502 slog (L_WARN, _("challenge length mismatch (remote %d <=> local %d)"), challengelen, sizeof (rsachallenge));
503 else if (cipher_nid != htonl (EVP_CIPHER_nid (CIPHER)))
504 slog (L_WARN, _("cipher mismatch (remote %x <=> local %x)"), ntohl (cipher_nid), EVP_CIPHER_nid (CIPHER));
505 else if (digest_nid != htonl (EVP_MD_type (RSA_HASH)))
506 slog (L_WARN, _("digest mismatch (remote %x <=> local %x)"), ntohl (digest_nid), EVP_MD_type (RSA_HASH));
507 else if (hmac_nid != htonl (EVP_MD_type (DIGEST)))
508 slog (L_WARN, _("hmac mismatch (remote %x <=> local %x)"), ntohl (hmac_nid), EVP_MD_type (DIGEST));
509 else
510 return true;
511
512 return false;
513 }
514
515 struct auth_req_packet : config_packet
516 {
517 char magic[8];
518 u8 initiate; // false if this is just an automatic reply
519 u8 protocols; // supported protocols (will be patched on forward)
520 u8 pad2, pad3;
521 rsaid id;
522 rsaencrdata encr;
523
524 auth_req_packet (int dst, bool initiate_, u8 protocols_)
525 {
526 config_packet::setup (PT_AUTH_REQ, dst);
527 strncpy (magic, MAGIC, 8);
528 initiate = !!initiate_;
529 protocols = protocols_;
530
531 len = sizeof (*this) - sizeof (net_packet);
532 }
533 };
534
535 struct auth_res_packet : config_packet
536 {
537 rsaid id;
538 u8 pad1, pad2, pad3;
539 u8 response_len; // encrypted length
540 rsaresponse response;
541
542 auth_res_packet (int dst)
543 {
544 config_packet::setup (PT_AUTH_RES, dst);
545
546 len = sizeof (*this) - sizeof (net_packet);
547 }
548 };
549
550 struct connect_req_packet : vpn_packet
551 {
552 u8 id, protocols;
553 u8 pad1, pad2;
554
555 connect_req_packet (int dst, int id_, u8 protocols_)
556 : id(id_)
557 , protocols(protocols_)
558 {
559 set_hdr (PT_CONNECT_REQ, dst);
560 len = sizeof (*this) - sizeof (net_packet);
561 }
562 };
563
564 struct connect_info_packet : vpn_packet
565 {
566 u8 id, protocols;
567 u8 pad1, pad2;
568 sockinfo si;
569
570 connect_info_packet (int dst, int id_, const sockinfo &si_, u8 protocols_)
571 : id(id_)
572 , protocols(protocols_)
573 , si(si_)
574 {
575 set_hdr (PT_CONNECT_INFO, dst);
576
577 len = sizeof (*this) - sizeof (net_packet);
578 }
579 };
580
581 /////////////////////////////////////////////////////////////////////////////
582
583 void
584 connection::connection_established ()
585 {
586 if (ictx && octx)
587 {
588 connectmode = conf->connectmode;
589
590 // make sure rekeying timeouts are slightly asymmetric
591 rekey.start (NOW + ::conf.rekey
592 + (conf->id > THISNODE->id ? 10 : 0));
593 keepalive.start (NOW + ::conf.keepalive);
594
595 // send queued packets
596 if (ictx && octx)
597 {
598 while (tap_packet *p = (tap_packet *)data_queue.get ())
599 {
600 send_data_packet (p);
601 delete p;
602 }
603
604 while (vpn_packet *p = (vpn_packet *)vpn_queue.get ())
605 {
606 send_vpn_packet (p, si, IPTOS_RELIABILITY);
607 delete p;
608 }
609 }
610 }
611 else
612 {
613 retry_cnt = 0;
614 establish_connection.start (NOW + 5);
615 keepalive.stop ();
616 rekey.stop ();
617 }
618 }
619
620 void
621 connection::reset_si ()
622 {
623 protocol = best_protocol (THISNODE->protocols & conf->protocols);
624
625 // mask out protocols we cannot establish
626 if (!conf->udp_port) protocol &= ~PROT_UDPv4;
627 if (!conf->tcp_port) protocol &= ~PROT_TCPv4;
628 if (!conf->dns_port) protocol &= ~PROT_DNSv4;
629
630 si.set (conf, protocol);
631 }
632
633 // ensure sockinfo is valid, forward if necessary
634 const sockinfo &
635 connection::forward_si (const sockinfo &si) const
636 {
637 if (!si.valid ())
638 {
639 connection *r = vpn->find_router ();
640
641 if (r)
642 {
643 slog (L_DEBUG, _("%s: no common protocol, trying indirectly through %s (%s)"),
644 conf->nodename, r->conf->nodename, (const char *)r->si);
645 return r->si;
646 }
647 else
648 slog (L_DEBUG, _("%s: node unreachable, no common protocol"),
649 conf->nodename);
650 }
651
652 return si;
653 }
654
655 void
656 connection::send_vpn_packet (vpn_packet *pkt, const sockinfo &si, int tos)
657 {
658 if (!vpn->send_vpn_packet (pkt, si, tos))
659 reset_connection ();
660 }
661
662 void
663 connection::send_ping (const sockinfo &si, u8 pong)
664 {
665 ping_packet *pkt = new ping_packet;
666
667 pkt->setup (conf->id, pong ? ping_packet::PT_PONG : ping_packet::PT_PING);
668 send_vpn_packet (pkt, si, IPTOS_LOWDELAY);
669
670 delete pkt;
671 }
672
673 void
674 connection::send_reset (const sockinfo &si)
675 {
676 if (reset_rate_limiter.can (si) && connectmode != conf_node::C_DISABLED)
677 {
678 config_packet *pkt = new config_packet;
679
680 pkt->setup (vpn_packet::PT_RESET, conf->id);
681 send_vpn_packet (pkt, si, IPTOS_MINCOST);
682
683 delete pkt;
684 }
685 }
686
687 void
688 connection::send_auth_request (const sockinfo &si, bool initiate)
689 {
690 auth_req_packet *pkt = new auth_req_packet (conf->id, initiate, THISNODE->protocols);
691
692 rsachallenge chg;
693 rsa_cache.gen (pkt->id, chg);
694 rsa_encrypt (conf->rsa_key, chg, pkt->encr);
695
696 slog (L_TRACE, ">>%d PT_AUTH_REQ [%s]", conf->id, (const char *)si);
697
698 send_vpn_packet (pkt, si, IPTOS_RELIABILITY | IPTOS_LOWDELAY); // rsa is very very costly
699
700 delete pkt;
701 }
702
703 void
704 connection::send_auth_response (const sockinfo &si, const rsaid &id, const rsachallenge &chg)
705 {
706 auth_res_packet *pkt = new auth_res_packet (conf->id);
707
708 pkt->id = id;
709
710 rsa_hash (id, chg, pkt->response);
711
712 pkt->hmac_set (octx);
713
714 slog (L_TRACE, ">>%d PT_AUTH_RES [%s]", conf->id, (const char *)si);
715
716 send_vpn_packet (pkt, si, IPTOS_RELIABILITY); // rsa is very very costly
717
718 delete pkt;
719 }
720
721 void
722 connection::send_connect_info (int rid, const sockinfo &rsi, u8 rprotocols)
723 {
724 slog (L_TRACE, ">>%d PT_CONNECT_INFO(%d,%s)\n",
725 conf->id, rid, (const char *)rsi);
726
727 connect_info_packet *r = new connect_info_packet (conf->id, rid, rsi, rprotocols);
728
729 r->hmac_set (octx);
730 send_vpn_packet (r, si);
731
732 delete r;
733 }
734
735 void
736 connection::establish_connection_cb (time_watcher &w)
737 {
738 if (!ictx
739 && conf != THISNODE
740 && connectmode != conf_node::C_NEVER
741 && connectmode != conf_node::C_DISABLED
742 && NOW > w.at)
743 {
744 w.at = TSTAMP_MAX; // first disable this watcher in case of recursion
745
746 double retry_int = double (retry_cnt & 3
747 ? (retry_cnt & 3) + 1
748 : 1 << (retry_cnt >> 2));
749
750 reset_si ();
751
752 bool slow = si.prot & PROT_SLOW;
753
754 if (si.prot && !si.host)
755 vpn->send_connect_request (conf->id);
756 else
757 {
758 const sockinfo &dsi = forward_si (si);
759
760 slow = slow || (dsi.prot & PROT_SLOW);
761
762 if (dsi.valid () && auth_rate_limiter.can (dsi))
763 {
764 if (retry_cnt < 4)
765 send_auth_request (dsi, true);
766 else
767 send_ping (dsi, 0);
768 }
769 }
770
771 retry_int *= slow ? 8. : 0.7;
772
773 if (retry_int < conf->max_retry)
774 retry_cnt++;
775 else
776 retry_int = conf->max_retry;
777
778 w.start (NOW + retry_int);
779 }
780 }
781
782 void
783 connection::reset_connection ()
784 {
785 if (ictx && octx)
786 {
787 slog (L_INFO, _("%s(%s): connection lost"),
788 conf->nodename, (const char *)si);
789
790 if (::conf.script_node_down)
791 run_script (run_script_cb (this, &connection::script_node_down), false);
792 }
793
794 delete ictx; ictx = 0;
795 delete octx; octx = 0;
796 #if ENABLE_DNS
797 dnsv4_reset_connection ();
798 #endif
799
800 si.host = 0;
801
802 last_activity = 0;
803 retry_cnt = 0;
804
805 rekey.stop ();
806 keepalive.stop ();
807 establish_connection.stop ();
808 }
809
810 void
811 connection::shutdown ()
812 {
813 if (ictx && octx)
814 send_reset (si);
815
816 reset_connection ();
817 }
818
819 void
820 connection::rekey_cb (time_watcher &w)
821 {
822 reset_connection ();
823 establish_connection ();
824 }
825
826 void
827 connection::send_data_packet (tap_packet *pkt)
828 {
829 vpndata_packet *p = new vpndata_packet;
830 int tos = 0;
831
832 // I am not hilarious about peeking into packets, but so be it.
833 if (conf->inherit_tos && pkt->is_ipv4 ())
834 tos = (*pkt)[15] & IPTOS_TOS_MASK;
835
836 p->setup (this, conf->id, &((*pkt)[6 + 6]), pkt->len - 6 - 6, ++oseqno); // skip 2 macs
837 send_vpn_packet (p, si, tos);
838
839 delete p;
840
841 if (oseqno > MAX_SEQNO)
842 rekey ();
843 }
844
845 void
846 connection::inject_data_packet (tap_packet *pkt, bool broadcast/*TODO DDD*/)
847 {
848 if (ictx && octx)
849 send_data_packet (pkt);
850 else
851 {
852 if (!broadcast)//DDDD
853 data_queue.put (new tap_packet (*pkt));
854
855 establish_connection ();
856 }
857 }
858
859 void connection::inject_vpn_packet (vpn_packet *pkt, int tos)
860 {
861 if (ictx && octx)
862 send_vpn_packet (pkt, si, tos);
863 else
864 {
865 vpn_queue.put ((vpn_packet *)new data_packet (*(data_packet *)pkt));
866
867 establish_connection ();
868 }
869 }
870
871 void
872 connection::recv_vpn_packet (vpn_packet *pkt, const sockinfo &rsi)
873 {
874 last_activity = NOW;
875
876 slog (L_NOISE, "<<%d received packet type %d from %d to %d",
877 conf->id, pkt->typ (), pkt->src (), pkt->dst ());
878
879 switch (pkt->typ ())
880 {
881 case vpn_packet::PT_PING:
882 // we send pings instead of auth packets after some retries,
883 // so reset the retry counter and establish a connection
884 // when we receive a ping.
885 if (!ictx)
886 {
887 if (auth_rate_limiter.can (rsi))
888 send_auth_request (rsi, true);
889 }
890 else
891 send_ping (rsi, 1); // pong
892
893 break;
894
895 case vpn_packet::PT_PONG:
896 break;
897
898 case vpn_packet::PT_RESET:
899 {
900 reset_connection ();
901
902 config_packet *p = (config_packet *) pkt;
903
904 if (!p->chk_config ())
905 {
906 slog (L_WARN, _("%s(%s): protocol mismatch, disabling node"),
907 conf->nodename, (const char *)rsi);
908 connectmode = conf_node::C_DISABLED;
909 }
910 else if (connectmode == conf_node::C_ALWAYS)
911 establish_connection ();
912 }
913 break;
914
915 case vpn_packet::PT_AUTH_REQ:
916 if (auth_rate_limiter.can (rsi))
917 {
918 auth_req_packet *p = (auth_req_packet *) pkt;
919
920 slog (L_TRACE, "<<%d PT_AUTH_REQ(%d)", conf->id, p->initiate);
921
922 if (p->chk_config () && !strncmp (p->magic, MAGIC, 8))
923 {
924 if (p->prot_minor != PROTOCOL_MINOR)
925 slog (L_INFO, _("%s(%s): protocol minor version mismatch: ours is %d, %s's is %d."),
926 conf->nodename, (const char *)rsi,
927 PROTOCOL_MINOR, conf->nodename, p->prot_minor);
928
929 if (p->initiate)
930 send_auth_request (rsi, false);
931
932 rsachallenge k;
933
934 if (!rsa_decrypt (::conf.rsa_key, p->encr, k))
935 {
936 slog (L_ERR, _("%s(%s): challenge illegal or corrupted (%s). mismatched key or config file?"),
937 conf->nodename, (const char *)rsi, ERR_error_string (ERR_get_error (), 0));
938 break;
939 }
940 else
941 {
942 delete octx;
943
944 octx = new crypto_ctx (k, 1);
945 oseqno = ntohl (*(u32 *)&k[CHG_SEQNO]) & 0x7fffffff;
946
947 conf->protocols = p->protocols;
948 features = p->features & config_packet::get_features ();
949
950 send_auth_response (rsi, p->id, k);
951
952 connection_established ();
953
954 break;
955 }
956 }
957 else
958 slog (L_WARN, _("%s(%s): protocol mismatch"),
959 conf->nodename, (const char *)rsi);
960
961 send_reset (rsi);
962 }
963
964 break;
965
966 case vpn_packet::PT_AUTH_RES:
967 {
968 auth_res_packet *p = (auth_res_packet *) pkt;
969
970 slog (L_TRACE, "<<%d PT_AUTH_RES", conf->id);
971
972 if (p->chk_config ())
973 {
974 if (p->prot_minor != PROTOCOL_MINOR)
975 slog (L_INFO, _("%s(%s): protocol minor version mismatch: ours is %d, %s's is %d."),
976 conf->nodename, (const char *)rsi,
977 PROTOCOL_MINOR, conf->nodename, p->prot_minor);
978
979 rsachallenge chg;
980
981 if (!rsa_cache.find (p->id, chg))
982 {
983 slog (L_ERR, _("%s(%s): unrequested auth response ignored"),
984 conf->nodename, (const char *)rsi);
985 break;
986 }
987 else
988 {
989 crypto_ctx *cctx = new crypto_ctx (chg, 0);
990
991 if (!p->hmac_chk (cctx))
992 {
993 slog (L_ERR, _("%s(%s): hmac authentication error on auth response, received invalid packet\n"
994 "could be an attack, or just corruption or a synchronization error"),
995 conf->nodename, (const char *)rsi);
996 break;
997 }
998 else
999 {
1000 rsaresponse h;
1001
1002 rsa_hash (p->id, chg, h);
1003
1004 if (!memcmp ((u8 *)&h, (u8 *)p->response, sizeof h))
1005 {
1006 prot_minor = p->prot_minor;
1007
1008 delete ictx; ictx = cctx;
1009
1010 iseqno.reset (ntohl (*(u32 *)&chg[CHG_SEQNO]) & 0x7fffffff); // at least 2**31 sequence numbers are valid
1011
1012 si = rsi;
1013 protocol = rsi.prot;
1014
1015 connection_established ();
1016
1017 slog (L_INFO, _("%s(%s): connection established, protocol version %d.%d"),
1018 conf->nodename, (const char *)rsi,
1019 p->prot_major, p->prot_minor);
1020
1021 if (::conf.script_node_up)
1022 run_script (run_script_cb (this, &connection::script_node_up), false);
1023
1024 break;
1025 }
1026 else
1027 slog (L_ERR, _("%s(%s): sent and received challenge do not match"),
1028 conf->nodename, (const char *)rsi);
1029 }
1030
1031 delete cctx;
1032 }
1033 }
1034 }
1035
1036 send_reset (rsi);
1037 break;
1038
1039 case vpn_packet::PT_DATA_COMPRESSED:
1040 #if !ENABLE_COMPRESSION
1041 send_reset (rsi);
1042 break;
1043 #endif
1044
1045 case vpn_packet::PT_DATA_UNCOMPRESSED:
1046
1047 if (ictx && octx)
1048 {
1049 vpndata_packet *p = (vpndata_packet *)pkt;
1050
1051 if (!p->hmac_chk (ictx))
1052 slog (L_ERR, _("%s(%s): hmac authentication error, received invalid packet\n"
1053 "could be an attack, or just corruption or a synchronization error"),
1054 conf->nodename, (const char *)rsi);
1055 else
1056 {
1057 u32 seqno;
1058 tap_packet *d = p->unpack (this, seqno);
1059
1060 if (iseqno.recv_ok (seqno))
1061 {
1062 vpn->tap->send (d);
1063
1064 if (si != rsi)
1065 {
1066 // fast re-sync on connection changes, useful especially for tcp/ip
1067 si = rsi;
1068
1069 slog (L_INFO, _("%s(%s): socket address changed to %s"),
1070 conf->nodename, (const char *)si, (const char *)rsi);
1071 }
1072 }
1073
1074 delete d;
1075 break;
1076 }
1077 }
1078
1079 send_reset (rsi);
1080 break;
1081
1082 case vpn_packet::PT_CONNECT_REQ:
1083 if (ictx && octx && rsi == si && pkt->hmac_chk (ictx))
1084 {
1085 connect_req_packet *p = (connect_req_packet *) pkt;
1086
1087 assert (p->id > 0 && p->id <= vpn->conns.size ()); // hmac-auth does not mean we accept anything
1088 connection *c = vpn->conns[p->id - 1];
1089 conf->protocols = p->protocols;
1090
1091 slog (L_TRACE, "<<%d PT_CONNECT_REQ(%d) [%d]\n",
1092 conf->id, p->id, c->ictx && c->octx);
1093
1094 if (c->ictx && c->octx)
1095 {
1096 // send connect_info packets to both sides, in case one is
1097 // behind a nat firewall (or both ;)
1098 c->send_connect_info (conf->id, si, conf->protocols);
1099 send_connect_info (c->conf->id, c->si, c->conf->protocols);
1100 }
1101 else
1102 c->establish_connection ();
1103 }
1104
1105 break;
1106
1107 case vpn_packet::PT_CONNECT_INFO:
1108 if (ictx && octx && rsi == si && pkt->hmac_chk (ictx))
1109 {
1110 connect_info_packet *p = (connect_info_packet *)pkt;
1111
1112 if (p->id > 0 && p->id <= vpn->conns.size ()) // hmac-auth does not mean we accept anything
1113 {
1114 connection *c = vpn->conns[p->id - 1];
1115
1116 c->conf->protocols = p->protocols;
1117 protocol = best_protocol (c->conf->protocols & THISNODE->protocols & p->si.supported_protocols (c->conf));
1118 p->si.upgrade_protocol (protocol, c->conf);
1119
1120 slog (L_TRACE, "<<%d PT_CONNECT_INFO(%d,%s) (%d)",
1121 conf->id, p->id, (const char *)p->si, !c->ictx && !c->octx);
1122
1123 const sockinfo &dsi = forward_si (p->si);
1124
1125 if (dsi.valid ())
1126 c->send_auth_request (dsi, true);
1127 }
1128 }
1129
1130 break;
1131
1132 default:
1133 send_reset (rsi);
1134 break;
1135 }
1136 }
1137
1138 void connection::keepalive_cb (time_watcher &w)
1139 {
1140 if (NOW >= last_activity + ::conf.keepalive + 30)
1141 {
1142 reset_connection ();
1143 establish_connection ();
1144 }
1145 else if (NOW < last_activity + ::conf.keepalive)
1146 w.start (last_activity + ::conf.keepalive);
1147 else if (conf->connectmode != conf_node::C_ONDEMAND
1148 || THISNODE->connectmode != conf_node::C_ONDEMAND)
1149 {
1150 send_ping (si);
1151 w.start (NOW + 5);
1152 }
1153 else if (NOW < last_activity + ::conf.keepalive + 10)
1154 // hold ondemand connections implicitly a few seconds longer
1155 // should delete octx, though, or something like that ;)
1156 w.start (last_activity + ::conf.keepalive + 10);
1157 else
1158 reset_connection ();
1159 }
1160
1161 void connection::send_connect_request (int id)
1162 {
1163 connect_req_packet *p = new connect_req_packet (conf->id, id, conf->protocols);
1164
1165 slog (L_TRACE, ">>%d PT_CONNECT_REQ(%d)", conf->id, id);
1166 p->hmac_set (octx);
1167 send_vpn_packet (p, si);
1168
1169 delete p;
1170 }
1171
1172 void connection::script_node ()
1173 {
1174 vpn->script_if_up ();
1175
1176 char *env;
1177 asprintf (&env, "DESTID=%d", conf->id); putenv (env);
1178 asprintf (&env, "DESTNODE=%s", conf->nodename); putenv (env);
1179 asprintf (&env, "DESTIP=%s", si.ntoa ()); putenv (env);
1180 asprintf (&env, "DESTPORT=%d", ntohs (si.port)); putenv (env);
1181 }
1182
1183 const char *connection::script_node_up ()
1184 {
1185 script_node ();
1186
1187 putenv ("STATE=up");
1188
1189 return ::conf.script_node_up ? ::conf.script_node_up : "node-up";
1190 }
1191
1192 const char *connection::script_node_down ()
1193 {
1194 script_node ();
1195
1196 putenv ("STATE=down");
1197
1198 return ::conf.script_node_up ? ::conf.script_node_down : "node-down";
1199 }
1200
1201 connection::connection (struct vpn *vpn, conf_node *conf)
1202 : vpn(vpn), conf(conf)
1203 , rekey (this, &connection::rekey_cb)
1204 , keepalive (this, &connection::keepalive_cb)
1205 , establish_connection (this, &connection::establish_connection_cb)
1206 #if ENABLE_DNS
1207 , dns (0)
1208 #endif
1209 {
1210 octx = ictx = 0;
1211 retry_cnt = 0;
1212
1213 if (!conf->protocols) // make sure some protocol is enabled
1214 conf->protocols = PROT_UDPv4;
1215
1216 connectmode = conf_node::C_ALWAYS; // initial setting
1217 reset_connection ();
1218 }
1219
1220 connection::~connection ()
1221 {
1222 shutdown ();
1223 }
1224
1225 void connection_init ()
1226 {
1227 auth_rate_limiter.clear ();
1228 reset_rate_limiter.clear ();
1229 }
1230