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Revision: 1.102
Committed: Thu Jul 18 13:35:16 2013 UTC (10 years, 10 months ago) by root
Content type: text/plain
Branch: MAIN
Changes since 1.101: +23 -33 lines
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File Contents

# Content
1 /*
2 connection.C -- manage a single connection
3 Copyright (C) 2003-2008,2010,2011,2013 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 it
8 under the terms of the GNU General Public License as published by the
9 Free Software Foundation; either version 3 of the License, or (at your
10 option) any later version.
11
12 This program is distributed in the hope that it will be useful, but
13 WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General
15 Public License for more details.
16
17 You should have received a copy of the GNU General Public License along
18 with this program; if not, see <http://www.gnu.org/licenses/>.
19
20 Additional permission under GNU GPL version 3 section 7
21
22 If you modify this Program, or any covered work, by linking or
23 combining it with the OpenSSL project's OpenSSL library (or a modified
24 version of that library), containing parts covered by the terms of the
25 OpenSSL or SSLeay licenses, the licensors of this Program grant you
26 additional permission to convey the resulting work. Corresponding
27 Source for a non-source form of such a combination shall include the
28 source code for the parts of OpenSSL used as well as that of the
29 covered work.
30 */
31
32 #include "config.h"
33
34 #include <list>
35 #include <queue>
36 #include <utility>
37
38 #include <openssl/rand.h>
39 #include <openssl/evp.h>
40 #include <openssl/rsa.h>
41 #include <openssl/err.h>
42
43 #include "conf.h"
44 #include "slog.h"
45 #include "device.h"
46 #include "vpn.h"
47 #include "connection.h"
48 #include "hkdf.h"
49
50 #include "netcompat.h"
51
52 #define MAGIC "gvpe\xbd\xc6\xdb\x82" // 8 bytes of magic
53 #define MAGIC "HUHN\xbd\xc6\xdb\x82" // 8 bytes of magic//D
54
55 #define ULTRA_FAST 1
56 #define HLOG 15
57 #include "lzf/lzf.h"
58 #include "lzf/lzf_c.c"
59 #include "lzf/lzf_d.c"
60
61 //////////////////////////////////////////////////////////////////////////////
62
63 static std::queue< std::pair<run_script_cb *, const char *> > rs_queue;
64 static ev::child rs_child_ev;
65
66 namespace
67 {
68 void // c++ requires external linkage here, apparently :(
69 rs_child_cb (ev::child &w, int revents)
70 {
71 w.stop ();
72
73 if (rs_queue.empty ())
74 return;
75
76 pid_t pid = run_script (*rs_queue.front ().first, false);
77 if (pid)
78 {
79 w.set (pid);
80 w.start ();
81 }
82 else
83 slog (L_WARN, rs_queue.front ().second);
84
85 delete rs_queue.front ().first;
86 rs_queue.pop ();
87 }
88 };
89
90 // despite the fancy name, this is quite a hack
91 static void
92 run_script_queued (run_script_cb *cb, const char *warnmsg)
93 {
94 rs_queue.push (std::make_pair (cb, warnmsg));
95
96 if (!rs_child_ev.is_active ())
97 {
98 rs_child_ev.set<rs_child_cb> ();
99 rs_child_ev ();
100 }
101 }
102
103 //////////////////////////////////////////////////////////////////////////////
104
105 struct crypto_ctx
106 {
107 EVP_CIPHER_CTX cctx;
108 HMAC_CTX hctx;
109
110 crypto_ctx (const auth_data &auth1, const auth_data &auth2, const ecdh_key &a, const ecdh_key &b, int enc);
111 ~crypto_ctx ();
112 };
113
114 crypto_ctx::crypto_ctx (const auth_data &auth1, const auth_data &auth2, const ecdh_key &a, const ecdh_key &b, int enc)
115 {
116 ecdh_key s;
117
118 curve25519_combine (a, b, s);
119
120 {
121 u8 mac_key[MAC_KEYSIZE];
122 static const unsigned char mac_info[] = "gvpe mac key";
123
124 hkdf kdf (auth2.rsa.hkdf_salt, sizeof (auth2.rsa.hkdf_salt), HKDF_XTR_HASH ());
125 kdf.extract (auth1.rsa.mac_key, sizeof (auth1.rsa.mac_key));
126 kdf.extract (s, sizeof (s));
127 kdf.extract_done (HKDF_PRF_HASH ());
128 kdf.expand (mac_key, sizeof (mac_key), mac_info, sizeof (mac_info));
129
130 HMAC_CTX_init (&hctx);
131 require (HMAC_Init_ex (&hctx, mac_key, MAC_KEYSIZE, MAC_DIGEST (), 0));
132 }
133
134 {
135 u8 cipher_key[CIPHER_KEYSIZE];
136 static const unsigned char cipher_info[] = "gvpe cipher key";
137
138 hkdf kdf (auth2.rsa.hkdf_salt, sizeof (auth2.rsa.hkdf_salt), HKDF_XTR_HASH ());
139 kdf.extract (auth1.rsa.cipher_key, sizeof (auth1.rsa.cipher_key));
140 kdf.extract (s, sizeof (s));
141 kdf.extract_done (HKDF_PRF_HASH ());
142 kdf.expand (cipher_key, sizeof (cipher_key), cipher_info, sizeof (cipher_info));
143
144 EVP_CIPHER_CTX_init (&cctx);
145 require (EVP_CipherInit_ex (&cctx, CIPHER (), 0, cipher_key, 0, enc));
146 }
147 }
148
149 crypto_ctx::~crypto_ctx ()
150 {
151 require (EVP_CIPHER_CTX_cleanup (&cctx));
152 HMAC_CTX_cleanup (&hctx);
153 }
154
155 static inline void
156 auth_encrypt (RSA *key, const auth_data &auth, auth_encr &encr)
157 {
158 if (RSA_public_encrypt (sizeof (auth.rsa),
159 (unsigned char *)&auth.rsa, (unsigned char *)&encr.rsa,
160 key, RSA_PKCS1_OAEP_PADDING) < 0)
161 fatal ("RSA_public_encrypt error");
162
163 memcpy (&encr.ecdh, &auth.ecdh, sizeof (encr.ecdh));
164 }
165
166 static inline bool
167 auth_decrypt (RSA *key, const auth_encr &encr, auth_data &auth)
168 {
169 u8 rsa_decrypt[RSA_KEYLEN];
170
171 if (RSA_private_decrypt (sizeof (encr.rsa),
172 (const unsigned char *)&encr.rsa, (unsigned char *)rsa_decrypt,
173 key, RSA_PKCS1_OAEP_PADDING) != sizeof (auth.rsa))
174 return 0;
175
176 memcpy (&auth.rsa, rsa_decrypt, sizeof (auth.rsa));
177 memcpy (&auth.ecdh, &encr.ecdh, sizeof (auth.ecdh));
178
179 return 1;
180 }
181
182 static void
183 auth_hash (const auth_data &auth, auth_mac &mac)
184 {
185 HMAC_CTX ctx;
186
187 HMAC_CTX_init (&ctx);
188 require (HMAC_Init_ex (&ctx, auth.rsa.auth_key, sizeof (auth.rsa.auth_key), AUTH_DIGEST (), 0));
189 require (HMAC_Update (&ctx, (const unsigned char *)&auth, sizeof auth));
190 require (HMAC_Final (&ctx, (unsigned char *)&mac, 0));
191 HMAC_CTX_cleanup (&ctx);
192 }
193
194 void
195 connection::generate_auth_data ()
196 {
197 if (auth_expire < ev_now ())
198 {
199 // request data
200 rand_fill (snd_auth.rsa);
201 curve25519_generate (snd_ecdh_a, snd_auth.ecdh);
202 auth_hash (snd_auth, snd_auth_mac);
203
204 // eventual response data
205 curve25519_generate (rcv_ecdh_a, rcv_ecdh_b);
206 }
207
208 // every use prolongs the expiry
209 auth_expire = ev_now () + AUTH_TTL;
210 }
211
212 //////////////////////////////////////////////////////////////////////////////
213
214 pkt_queue::pkt_queue (double max_ttl, int max_queue)
215 : max_ttl (max_ttl), max_queue (max_queue)
216 {
217 queue = new pkt [max_queue];
218
219 i = 0;
220 j = 0;
221
222 expire.set<pkt_queue, &pkt_queue::expire_cb> (this);
223 }
224
225 pkt_queue::~pkt_queue ()
226 {
227 while (net_packet *p = get ())
228 delete p;
229
230 delete [] queue;
231 }
232
233 void
234 pkt_queue::expire_cb (ev::timer &w, int revents)
235 {
236 ev_tstamp expire = ev_now () - max_ttl;
237
238 for (;;)
239 {
240 if (empty ())
241 break;
242
243 double diff = queue[j].tstamp - expire;
244
245 if (diff >= 0.)
246 {
247 w.start (diff > 0.5 ? diff : 0.5);
248 break;
249 }
250
251 delete get ();
252 }
253 }
254
255 void
256 pkt_queue::put (net_packet *p)
257 {
258 ev_tstamp now = ev_now ();
259
260 // start expiry timer
261 if (empty ())
262 expire.start (max_ttl);
263
264 int ni = i + 1 == max_queue ? 0 : i + 1;
265
266 if (ni == j)
267 delete get ();
268
269 queue[i].pkt = p;
270 queue[i].tstamp = now;
271
272 i = ni;
273 }
274
275 net_packet *
276 pkt_queue::get ()
277 {
278 if (empty ())
279 return 0;
280
281 net_packet *p = queue[j].pkt;
282 queue[j].pkt = 0;
283
284 j = j + 1 == max_queue ? 0 : j + 1;
285
286 return p;
287 }
288
289 struct net_rateinfo
290 {
291 u32 host;
292 double pcnt, diff;
293 tstamp last;
294 };
295
296 // only do action once every x seconds per host whole allowing bursts.
297 // this implementation ("splay list" ;) is inefficient,
298 // but low on resources.
299 struct net_rate_limiter : list<net_rateinfo>
300 {
301 # define NRL_ALPHA (1. - 1. / 600.) // allow bursts
302 # define NRL_CUTOFF 10. // one event every CUTOFF seconds
303 # define NRL_EXPIRE (NRL_CUTOFF * 30.) // expire entries after this time
304 # define NRL_MAXDIF (NRL_CUTOFF * (1. / (1. - NRL_ALPHA))) // maximum diff /count value
305
306 bool can (const sockinfo &si) { return can((u32)si.host); }
307 bool can (u32 host);
308 };
309
310 static net_rate_limiter auth_rate_limiter, reset_rate_limiter;
311
312 bool
313 net_rate_limiter::can (u32 host)
314 {
315 iterator i;
316
317 for (i = begin (); i != end (); )
318 if (i->host == host)
319 break;
320 else if (i->last < ev_now () - NRL_EXPIRE)
321 i = erase (i);
322 else
323 i++;
324
325 if (i == end ())
326 {
327 net_rateinfo ri;
328
329 ri.host = host;
330 ri.pcnt = 1.;
331 ri.diff = NRL_MAXDIF;
332 ri.last = ev_now ();
333
334 push_front (ri);
335
336 return true;
337 }
338 else
339 {
340 net_rateinfo ri (*i);
341 erase (i);
342
343 ri.pcnt = ri.pcnt * NRL_ALPHA;
344 ri.diff = ri.diff * NRL_ALPHA + (ev_now () - ri.last);
345
346 ri.last = ev_now ();
347
348 double dif = ri.diff / ri.pcnt;
349
350 bool send = dif > NRL_CUTOFF;
351
352 if (dif > NRL_MAXDIF)
353 {
354 ri.pcnt = 1.;
355 ri.diff = NRL_MAXDIF;
356 }
357 else if (send)
358 ri.pcnt++;
359
360 push_front (ri);
361
362 return send;
363 }
364 }
365
366 /////////////////////////////////////////////////////////////////////////////
367
368 unsigned char hmac_packet::hmac_digest[EVP_MAX_MD_SIZE];
369
370 void
371 hmac_packet::hmac_gen (crypto_ctx *ctx)
372 {
373 unsigned int xlen;
374
375 HMAC_CTX *hctx = &ctx->hctx;
376
377 require (HMAC_Init_ex (hctx, 0, 0, 0, 0));
378 require (HMAC_Update (hctx, ((unsigned char *) this) + sizeof (hmac_packet),
379 len - sizeof (hmac_packet)));
380 require (HMAC_Final (hctx, (unsigned char *) &hmac_digest, &xlen));
381 }
382
383 void
384 hmac_packet::hmac_set (crypto_ctx *ctx)
385 {
386 hmac_gen (ctx);
387
388 memcpy (hmac, hmac_digest, HMACLENGTH);
389 }
390
391 bool
392 hmac_packet::hmac_chk (crypto_ctx *ctx)
393 {
394 hmac_gen (ctx);
395
396 return !memcmp (hmac, hmac_digest, HMACLENGTH);
397 }
398
399 void
400 vpn_packet::set_hdr (ptype type_, unsigned int dst)
401 {
402 type = type_;
403
404 int src = THISNODE->id;
405
406 src1 = src;
407 srcdst = ((src >> 8) << 4) | (dst >> 8);
408 dst1 = dst;
409 }
410
411 #define MAXVPNDATA (MAX_MTU - 6 - 6)
412 #define DATAHDR (sizeof (u32) + RAND_SIZE)
413
414 struct vpndata_packet : vpn_packet
415 {
416 u8 data[MAXVPNDATA + DATAHDR]; // seqno
417
418 void setup (connection *conn, int dst, u8 *d, u32 len, u32 seqno);
419 tap_packet *unpack (connection *conn, u32 &seqno);
420
421 private:
422 const u32 data_hdr_size () const
423 {
424 return sizeof (vpndata_packet) - sizeof (net_packet) - MAXVPNDATA - DATAHDR;
425 }
426 };
427
428 void
429 vpndata_packet::setup (connection *conn, int dst, u8 *d, u32 l, u32 seqno)
430 {
431 EVP_CIPHER_CTX *cctx = &conn->octx->cctx;
432 int outl = 0, outl2;
433 ptype type = PT_DATA_UNCOMPRESSED;
434
435 #if ENABLE_COMPRESSION
436 u8 cdata[MAX_MTU];
437
438 if (conn->features & FEATURE_COMPRESSION)
439 {
440 u32 cl = lzf_compress (d, l, cdata + 2, (l - 2) & ~7);
441
442 if (cl)
443 {
444 type = PT_DATA_COMPRESSED;
445 d = cdata;
446 l = cl + 2;
447
448 d[0] = cl >> 8;
449 d[1] = cl;
450 }
451 }
452 #endif
453
454 require (EVP_CipherInit_ex (cctx, 0, 0, 0, 0, 1));
455
456 struct {
457 #if RAND_SIZE
458 u8 rnd[RAND_SIZE];
459 #endif
460 u32 seqno;
461 } datahdr;
462
463 datahdr.seqno = ntohl (seqno);
464 #if RAND_SIZE
465 // NB: a constant (per session) random prefix
466 // is likely enough, but we don't take any chances.
467 conn->oiv.get (datahdr.rnd, RAND_SIZE);
468 #endif
469
470 require (EVP_EncryptUpdate (cctx,
471 (unsigned char *) data + outl, &outl2,
472 (unsigned char *) &datahdr, DATAHDR));
473 outl += outl2;
474
475 require (EVP_EncryptUpdate (cctx,
476 (unsigned char *) data + outl, &outl2,
477 (unsigned char *) d, l));
478 outl += outl2;
479
480 require (EVP_EncryptFinal_ex (cctx, (unsigned char *) data + outl, &outl2));
481 outl += outl2;
482
483 len = outl + data_hdr_size ();
484
485 set_hdr (type, dst);
486
487 hmac_set (conn->octx);
488 }
489
490 tap_packet *
491 vpndata_packet::unpack (connection *conn, u32 &seqno)
492 {
493 EVP_CIPHER_CTX *cctx = &conn->ictx->cctx;
494 int outl = 0, outl2;
495 tap_packet *p = new tap_packet;
496 u8 *d;
497 u32 l = len - data_hdr_size ();
498
499 require (EVP_CipherInit_ex (cctx, 0, 0, 0, 0, 0));
500
501 #if ENABLE_COMPRESSION
502 u8 cdata[MAX_MTU];
503
504 if (type == PT_DATA_COMPRESSED)
505 d = cdata;
506 else
507 #endif
508 d = &(*p)[6 + 6] - DATAHDR;
509
510 // we play do evil games with the struct layout atm.
511 // pending better solutions, we at least do some verification.
512 // this is fine, as we left ISO territory long ago.
513 require (DATAHDR <= 16);
514 require ((u8 *)(&p->len + 1) == &(*p)[0]);
515
516 // this can overwrite the len/dst/src fields
517 require (EVP_DecryptUpdate (cctx,
518 d, &outl2,
519 (unsigned char *)&data, len - data_hdr_size ()));
520 outl += outl2;
521
522 require (EVP_DecryptFinal_ex (cctx, (unsigned char *)d + outl, &outl2));
523 outl += outl2;
524
525 seqno = ntohl (*(u32 *)(d + RAND_SIZE));
526
527 id2mac (dst () ? dst() : THISNODE->id, p->dst);
528 id2mac (src (), p->src);
529
530 #if ENABLE_COMPRESSION
531 if (type == PT_DATA_COMPRESSED)
532 {
533 u32 cl = (d[DATAHDR] << 8) | d[DATAHDR + 1];
534
535 p->len = lzf_decompress (d + DATAHDR + 2, cl < MAX_MTU ? cl : 0,
536 &(*p)[6 + 6], MAX_MTU)
537 + 6 + 6;
538 }
539 else
540 p->len = outl + (6 + 6 - DATAHDR);
541 #endif
542
543 return p;
544 }
545
546 struct ping_packet : vpn_packet
547 {
548 void setup (int dst, ptype type)
549 {
550 set_hdr (type, dst);
551 len = sizeof (*this) - sizeof (net_packet);
552 }
553 };
554
555 struct config_packet : vpn_packet
556 {
557 u8 prot_major, prot_minor, randsize;
558 u8 flags, features, pad6, pad7, pad8;
559 u32 cipher_nid, mac_nid, auth_nid;
560
561 void setup (ptype type, int dst);
562 bool chk_config () const;
563
564 static u8 get_features ()
565 {
566 u8 f = 0;
567 #if ENABLE_COMPRESSION
568 f |= FEATURE_COMPRESSION;
569 #endif
570 #if ENABLE_ROHC
571 f |= FEATURE_ROHC;
572 #endif
573 #if ENABLE_BRIDGING
574 f |= FEATURE_BRIDGING;
575 #endif
576 return f;
577 }
578 };
579
580 void
581 config_packet::setup (ptype type, int dst)
582 {
583 prot_major = PROTOCOL_MAJOR;
584 prot_minor = PROTOCOL_MINOR;
585 randsize = RAND_SIZE;
586 flags = 0;
587 features = get_features ();
588
589 cipher_nid = htonl (EVP_CIPHER_nid (CIPHER ()));
590 mac_nid = htonl (EVP_MD_type (MAC_DIGEST ()));
591 auth_nid = htonl (EVP_MD_type (AUTH_DIGEST ()));
592
593 len = sizeof (*this) - sizeof (net_packet);
594 set_hdr (type, dst);
595 }
596
597 bool
598 config_packet::chk_config () const
599 {
600 if (prot_major != PROTOCOL_MAJOR)
601 slog (L_WARN, _("major version mismatch (remote %d <=> local %d)"), prot_major, PROTOCOL_MAJOR);
602 else if (randsize != RAND_SIZE)
603 slog (L_WARN, _("rand size mismatch (remote %d <=> local %d)"), randsize, RAND_SIZE);
604 else if (cipher_nid != htonl (EVP_CIPHER_nid (CIPHER ())))
605 slog (L_WARN, _("cipher algo mismatch (remote %x <=> local %x)"), ntohl (cipher_nid), EVP_CIPHER_nid (CIPHER ()));
606 else if (mac_nid != htonl (EVP_MD_type (MAC_DIGEST ())))
607 slog (L_WARN, _("mac algo mismatch (remote %x <=> local %x)"), ntohl (mac_nid), EVP_MD_type (MAC_DIGEST ()));
608 else if (auth_nid != htonl (EVP_MD_type (AUTH_DIGEST ())))
609 slog (L_WARN, _("auth algo mismatch (remote %x <=> local %x)"), ntohl (auth_nid), EVP_MD_type (AUTH_DIGEST ()));
610 else
611 return true;
612
613 return false;
614 }
615
616 struct auth_req_packet : config_packet // UNPROTECTED
617 {
618 char magic[8];
619 u8 initiate; // false if this is just an automatic reply
620 u8 protocols; // supported protocols (will be patched on forward)
621 u8 pad2, pad3;
622 auth_encr encr;
623
624 auth_req_packet (int dst, bool initiate_, u8 protocols_)
625 {
626 config_packet::setup (PT_AUTH_REQ, dst);
627 memcpy (magic, MAGIC, 8);
628 initiate = !!initiate_;
629 protocols = protocols_;
630
631 len = sizeof (*this) - sizeof (net_packet);
632 }
633 };
634
635 struct auth_res_packet : config_packet // UNPROTECTED
636 {
637 auth_response response;
638
639 auth_res_packet (int dst)
640 {
641 config_packet::setup (PT_AUTH_RES, dst);
642
643 len = sizeof (*this) - sizeof (net_packet);
644 }
645 };
646
647 struct connect_req_packet : vpn_packet
648 {
649 u8 id, protocols;
650 u8 pad1, pad2;
651
652 connect_req_packet (int dst, int id_, u8 protocols_)
653 : id(id_)
654 , protocols(protocols_)
655 {
656 set_hdr (PT_CONNECT_REQ, dst);
657 len = sizeof (*this) - sizeof (net_packet);
658 }
659 };
660
661 struct connect_info_packet : vpn_packet
662 {
663 u8 id, protocols;
664 u8 pad1, pad2;
665 sockinfo si;
666
667 connect_info_packet (int dst, int id_, const sockinfo &si_, u8 protocols_)
668 : id(id_)
669 , protocols(protocols_)
670 , si(si_)
671 {
672 set_hdr (PT_CONNECT_INFO, dst);
673
674 len = sizeof (*this) - sizeof (net_packet);
675 }
676 };
677
678 /////////////////////////////////////////////////////////////////////////////
679
680 void
681 connection::connection_established (const sockinfo &rsi)
682 {
683 if (!have_snd_auth || !have_rcv_auth)
684 return;
685
686 si = rsi;
687 protocol = rsi.prot;
688
689 slog (L_INFO, _("%s(%s): connection established (%s), protocol version %d.%d."),
690 conf->nodename, (const char *)rsi,
691 is_direct ? "direct" : "forwarded",
692 PROTOCOL_MAJOR, prot_minor);
693
694 if (::conf.script_node_up)
695 {
696 run_script_cb *cb = new run_script_cb;
697 cb->set<connection, &connection::script_node_up> (this);
698 run_script_queued (cb, _("node-up command execution failed, continuing."));
699 }
700
701 delete ictx; ictx = new crypto_ctx (rcv_auth, snd_auth, rcv_ecdh_a, rcv_auth.ecdh, 0);
702 iseqno.reset (ntohl (rcv_auth.rsa.seqno) & 0x7fffffff);
703
704 delete octx; octx = new crypto_ctx (snd_auth, rcv_auth, snd_ecdh_a, snd_ecdh_b , 1);
705 oseqno = ntohl (snd_auth.rsa.seqno) & 0x7fffffff;
706
707 oiv.reset ();
708
709 // make sure rekeying timeouts are slightly asymmetric
710 ev::tstamp rekey_interval = ::conf.rekey + (conf->id > THISNODE->id ? 10 : 0);
711 rekey.start (rekey_interval, rekey_interval);
712
713 keepalive.start (::conf.keepalive);
714
715 // send queued packets
716 if (ictx && octx)
717 {
718 while (tap_packet *p = (tap_packet *)data_queue.get ())
719 {
720 if (p->len) send_data_packet (p);
721 delete p;
722 }
723
724 while (vpn_packet *p = (vpn_packet *)vpn_queue.get ())
725 {
726 if (p->len) send_vpn_packet (p, si, IPTOS_RELIABILITY);
727 delete p;
728 }
729 }
730
731 vpn->connection_established (this);
732 }
733
734 void
735 connection::reset_si ()
736 {
737 if (vpn->can_direct (THISNODE, conf))
738 protocol = best_protocol (THISNODE->protocols & conf->connectable_protocols ());
739 else
740 {
741 slog (L_TRACE, _("%s: direct connection denied by config."), conf->nodename);
742 protocol = 0;
743 }
744
745 si.set (conf, protocol);
746
747 is_direct = si.valid ();
748 }
749
750 // ensure sockinfo is valid, forward if necessary
751 const sockinfo &
752 connection::forward_si (const sockinfo &si) const
753 {
754 if (!si.valid ())
755 {
756 connection *r = vpn->find_router_for (this);
757
758 if (r)
759 {
760 slog (L_DEBUG, _("%s: no common protocol, trying to route through %s."),
761 conf->nodename, r->conf->nodename);
762 return r->si;
763 }
764 else
765 slog (L_DEBUG, _("%s: node unreachable, no common protocol or no router available."),
766 conf->nodename);
767 }
768
769 return si;
770 }
771
772 void
773 connection::send_vpn_packet (vpn_packet *pkt, const sockinfo &si, int tos)
774 {
775 if (!vpn->send_vpn_packet (pkt, si, tos))
776 reset_connection ();
777 }
778
779 void
780 connection::send_ping (const sockinfo &si, u8 pong)
781 {
782 ping_packet *pkt = new ping_packet;
783
784 pkt->setup (conf->id, pong ? ping_packet::PT_PONG : ping_packet::PT_PING);
785
786 slog (L_TRACE, "%s << %s [%s]", conf->nodename, pong ? "PT_PONG" : "PT_PING", (const char *)si);
787 send_vpn_packet (pkt, si, IPTOS_LOWDELAY);
788
789 delete pkt;
790 }
791
792 void
793 connection::send_reset (const sockinfo &si)
794 {
795 if (reset_rate_limiter.can (si) && connectmode != conf_node::C_DISABLED)
796 {
797 config_packet *pkt = new config_packet;
798
799 pkt->setup (vpn_packet::PT_RESET, conf->id);
800 send_vpn_packet (pkt, si, IPTOS_MINCOST);
801
802 delete pkt;
803 }
804 }
805
806 void
807 connection::send_auth_request (const sockinfo &si, bool initiate)
808 {
809 auth_req_packet *pkt = new auth_req_packet (conf->id, initiate, THISNODE->protocols);
810
811 generate_auth_data ();
812 auth_encrypt (conf->rsa_key, snd_auth, pkt->encr);
813
814 slog (L_TRACE, "%s << PT_AUTH_REQ [%s]", conf->nodename, (const char *)si);
815 send_vpn_packet (pkt, si, IPTOS_RELIABILITY | IPTOS_LOWDELAY); // rsa is very very costly
816
817 delete pkt;
818 }
819
820 void
821 connection::send_auth_response (const sockinfo &si)
822 {
823 auth_res_packet *pkt = new auth_res_packet (conf->id);
824
825 auth_hash (rcv_auth, pkt->response.mac);
826 memcpy (pkt->response.ecdh, rcv_ecdh_b, sizeof (rcv_ecdh_b));
827
828 slog (L_TRACE, "%s << PT_AUTH_RES [%s]", conf->nodename, (const char *)si);
829 send_vpn_packet (pkt, si, IPTOS_RELIABILITY); // rsa is very very costly
830
831 delete pkt;
832 }
833
834 void
835 connection::send_connect_info (int rid, const sockinfo &rsi, u8 rprotocols)
836 {
837 slog (L_TRACE, "%s << PT_CONNECT_INFO(%s,%s,p%02x)", conf->nodename,
838 vpn->conns[rid - 1]->conf->nodename, (const char *)rsi,
839 conf->protocols);
840
841 connect_info_packet *r = new connect_info_packet (conf->id, rid, rsi, rprotocols);
842
843 r->hmac_set (octx);
844 send_vpn_packet (r, si);
845
846 delete r;
847 }
848
849 inline void
850 connection::establish_connection_cb (ev::timer &w, int revents)
851 {
852 if (!(ictx && octx)
853 && conf != THISNODE
854 && connectmode != conf_node::C_NEVER
855 && connectmode != conf_node::C_DISABLED
856 && !w.is_active ())
857 {
858 // a bit hacky, if ondemand, and packets are no longer queued, then reset the connection
859 // and stop trying. should probably be handled by a per-connection expire handler.
860 if (connectmode == conf_node::C_ONDEMAND && vpn_queue.empty () && data_queue.empty ())
861 {
862 reset_connection ();
863 return;
864 }
865
866 last_establish_attempt = ev_now ();
867
868 ev::tstamp retry_int = ev::tstamp (retry_cnt & 3
869 ? (retry_cnt & 3) + 1
870 : 1 << (retry_cnt >> 2));
871
872 reset_si ();
873
874 bool slow = si.prot & PROT_SLOW;
875
876 if (si.prot && !si.host && vpn->can_direct (THISNODE, conf))
877 {
878 /*TODO*/ /* start the timer so we don't recurse endlessly */
879 w.start (1);
880 vpn->send_connect_request (this);
881 }
882 else
883 {
884 if (si.valid ())
885 slog (L_DEBUG, _("%s: sending direct connection request to %s."),
886 conf->nodename, (const char *)si);
887
888 const sockinfo &dsi = forward_si (si);
889
890 slow = slow || (dsi.prot & PROT_SLOW);
891
892 if (dsi.valid () && auth_rate_limiter.can (dsi))
893 {
894 if (retry_cnt < 4)
895 send_auth_request (dsi, true);
896 else
897 send_ping (dsi, 0);
898 }
899 }
900
901 retry_int *= slow ? 8. : 0.9;
902
903 if (retry_int < conf->max_retry)
904 retry_cnt++;
905 else
906 retry_int = conf->max_retry;
907
908 w.start (retry_int);
909 }
910 }
911
912 void
913 connection::reset_connection ()
914 {
915 if (ictx && octx)
916 {
917 slog (L_INFO, _("%s(%s): connection lost"),
918 conf->nodename, (const char *)si);
919
920 if (::conf.script_node_down)
921 {
922 run_script_cb *cb = new run_script_cb;
923 cb->set<connection, &connection::script_node_down> (this);
924 run_script_queued (cb, _("node-down command execution failed, continuing."));
925 }
926 }
927
928 delete ictx; ictx = 0;
929 delete octx; octx = 0;
930
931 si.host = 0;
932
933 have_snd_auth = false;
934 have_rcv_auth = false;
935 auth_expire = 0.;
936
937 last_activity = 0.;
938 //last_si_change = 0.;
939 retry_cnt = 0;
940
941 rekey.stop ();
942 keepalive.stop ();
943 establish_connection.stop ();
944 }
945
946 void
947 connection::shutdown ()
948 {
949 if (ictx && octx)
950 send_reset (si);
951
952 reset_connection ();
953 }
954
955 // poor-man's rekeying
956 inline void
957 connection::rekey_cb (ev::timer &w, int revents)
958 {
959 reset_connection ();
960 establish_connection ();
961 }
962
963 void
964 connection::send_data_packet (tap_packet *pkt)
965 {
966 vpndata_packet *p = new vpndata_packet;
967 int tos = 0;
968
969 // I am not hilarious about peeking into packets, but so be it.
970 if (conf->inherit_tos && pkt->is_ipv4 ())
971 tos = (*pkt)[15] & IPTOS_TOS_MASK;
972
973 p->setup (this, conf->id, &((*pkt)[6 + 6]), pkt->len - 6 - 6, ++oseqno); // skip 2 macs
974 send_vpn_packet (p, si, tos);
975
976 delete p;
977
978 if (oseqno > MAX_SEQNO)
979 rekey ();
980 }
981
982 void
983 connection::post_inject_queue ()
984 {
985 // force a connection every now and when when packets are sent (max 1/s)
986 if (ev_now () - last_establish_attempt >= 0.95) // arbitrary
987 establish_connection.stop ();
988
989 establish_connection ();
990 }
991
992 void
993 connection::inject_data_packet (tap_packet *pkt)
994 {
995 if (ictx && octx)
996 send_data_packet (pkt);
997 else
998 {
999 data_queue.put (new tap_packet (*pkt));
1000 post_inject_queue ();
1001 }
1002 }
1003
1004 void
1005 connection::inject_vpn_packet (vpn_packet *pkt, int tos)
1006 {
1007 if (ictx && octx)
1008 send_vpn_packet (pkt, si, tos);
1009 else
1010 {
1011 vpn_queue.put ((vpn_packet *)new data_packet (*(data_packet *)pkt));
1012 post_inject_queue ();
1013 }
1014 }
1015
1016 void
1017 connection::recv_vpn_packet (vpn_packet *pkt, const sockinfo &rsi)
1018 {
1019 last_activity = ev_now ();
1020
1021 slog (L_NOISE, "%s >> received packet type %d from %d to %d.",
1022 conf->nodename, pkt->typ (), pkt->src (), pkt->dst ());
1023
1024 if (connectmode == conf_node::C_DISABLED)
1025 return;
1026
1027 switch (pkt->typ ())
1028 {
1029 case vpn_packet::PT_PING:
1030 slog (L_TRACE, "%s >> PT_PING", conf->nodename);
1031
1032 // we send pings instead of auth packets after some retries,
1033 // so reset the retry counter and establish a connection
1034 // when we receive a ping.
1035 if (!ictx)
1036 {
1037 if (auth_rate_limiter.can (rsi))
1038 send_auth_request (rsi, true);
1039 }
1040 else
1041 // we would love to change the socket address here, but ping's aren't
1042 // authenticated, so we best ignore it.
1043 send_ping (rsi, 1); // pong
1044
1045 break;
1046
1047 case vpn_packet::PT_PONG:
1048 slog (L_TRACE, "%s >> PT_PONG", conf->nodename);
1049
1050 // a PONG might mean that the other side doesn't really know
1051 // about our desire for communication.
1052 establish_connection ();
1053 break;
1054
1055 case vpn_packet::PT_RESET:
1056 {
1057 reset_connection ();
1058
1059 config_packet *p = (config_packet *) pkt;
1060
1061 if (!p->chk_config ())
1062 {
1063 slog (L_WARN, _("%s(%s): protocol mismatch, disabling node."),
1064 conf->nodename, (const char *)rsi);
1065 connectmode = conf_node::C_DISABLED;
1066 }
1067 else if (connectmode == conf_node::C_ALWAYS)
1068 establish_connection ();
1069 }
1070 break;
1071
1072 case vpn_packet::PT_AUTH_REQ:
1073 if (auth_rate_limiter.can (rsi))
1074 {
1075 auth_req_packet *p = (auth_req_packet *)pkt;
1076
1077 slog (L_TRACE, "%s >> PT_AUTH_REQ(%s,p%02x,f%02x)",
1078 conf->nodename, p->initiate ? "initiate" : "reply",
1079 p->protocols, p->features);
1080
1081 if (p->chk_config () && !memcmp (p->magic, MAGIC, 8))
1082 {
1083 if (p->prot_minor != PROTOCOL_MINOR)
1084 slog (L_INFO, _("%s(%s): protocol minor version mismatch: ours is %d, %s's is %d."),
1085 conf->nodename, (const char *)rsi,
1086 PROTOCOL_MINOR, conf->nodename, p->prot_minor);
1087
1088 if (p->initiate)
1089 send_auth_request (rsi, false);
1090
1091 auth_data auth;
1092
1093 if (!auth_decrypt (::conf.rsa_key, p->encr, auth))
1094 {
1095 slog (L_ERR, _("%s(%s): challenge illegal or corrupted (%s). mismatched key or config file?"),
1096 conf->nodename, (const char *)rsi, ERR_error_string (ERR_get_error (), 0));
1097 }
1098 else
1099 {
1100 bool chg = !have_rcv_auth || memcmp (&rcv_auth, &auth, sizeof auth);
1101
1102 rcv_auth = auth;
1103 have_rcv_auth = true;
1104
1105 send_auth_response (rsi);
1106
1107 if (chg)
1108 {
1109 conf->protocols = p->protocols;
1110 features = p->features & config_packet::get_features ();
1111
1112 connection_established (rsi);
1113 }
1114 }
1115
1116 break;
1117 }
1118 else
1119 slog (L_WARN, _("%s(%s): protocol mismatch."),
1120 conf->nodename, (const char *)rsi);
1121
1122 send_reset (rsi);
1123 }
1124
1125 break;
1126
1127 case vpn_packet::PT_AUTH_RES:
1128 {
1129 auth_res_packet *p = (auth_res_packet *)pkt;
1130
1131 slog (L_TRACE, "%s >> PT_AUTH_RES", conf->nodename);
1132
1133 if (p->chk_config ())
1134 {
1135 if (memcmp (&p->response.mac, snd_auth_mac, sizeof (snd_auth_mac)))
1136 {
1137 slog (L_ERR, _("%s(%s): unrequested or outdated auth response, ignoring."),
1138 conf->nodename, (const char *)rsi);
1139 }
1140 else if (!have_snd_auth)
1141 {
1142 if (p->prot_minor != PROTOCOL_MINOR)
1143 slog (L_INFO, _("%s(%s): protocol minor version mismatch: ours is %d, %s's is %d."),
1144 conf->nodename, (const char *)rsi,
1145 PROTOCOL_MINOR, conf->nodename, p->prot_minor);
1146
1147 prot_minor = p->prot_minor;
1148 memcpy (snd_ecdh_b, p->response.ecdh, sizeof (snd_ecdh_b));
1149
1150 have_snd_auth = true;
1151 connection_established (rsi);
1152 }
1153
1154 break;
1155 }
1156 }
1157
1158 send_reset (rsi);
1159 break;
1160
1161 case vpn_packet::PT_DATA_COMPRESSED:
1162 #if !ENABLE_COMPRESSION
1163 send_reset (rsi);
1164 break;
1165 #endif
1166
1167 case vpn_packet::PT_DATA_UNCOMPRESSED:
1168
1169 if (ictx && octx)
1170 {
1171 vpndata_packet *p = (vpndata_packet *)pkt;
1172
1173 if (!p->hmac_chk (ictx))
1174 slog (L_ERR, _("%s(%s): hmac authentication error, received invalid packet\n"
1175 "could be an attack, or just corruption or a synchronization error."),
1176 conf->nodename, (const char *)rsi);
1177 else
1178 {
1179 u32 seqno;
1180 tap_packet *d = p->unpack (this, seqno);
1181 int seqclass = iseqno.seqno_classify (seqno);
1182
1183 if (seqclass == 0) // ok
1184 {
1185 vpn->tap->send (d);
1186
1187 if (si != rsi)
1188 {
1189 // fast re-sync on source address changes, useful especially for tcp/ip
1190 //if (last_si_change < ev_now () + 5.)
1191 // {
1192 slog (L_INFO, _("%s(%s): changing socket address to %s."),
1193 conf->nodename, (const char *)si, (const char *)rsi);
1194
1195 si = rsi;
1196
1197 if (::conf.script_node_change)
1198 {
1199 run_script_cb *cb = new run_script_cb;
1200 cb->set<connection, &connection::script_node_change> (this);
1201 run_script_queued (cb, _("node-change command execution failed, continuing."));
1202 }
1203
1204 // }
1205 //else
1206 // slog (L_INFO, _("%s(%s): accepted packet from %s, not (yet) redirecting traffic."),
1207 // conf->nodename, (const char *)si, (const char *)rsi);
1208 }
1209 }
1210 else if (seqclass == 1) // far history
1211 slog (L_ERR, _("received very old packet (received %08lx, expected %08lx). "
1212 "possible replay attack, or just packet duplication/delay, ignoring."), seqno, iseqno.seq + 1);
1213 else if (seqclass == 2) // in-window duplicate, happens often on wireless
1214 slog (L_DEBUG, _("received recent duplicated packet (received %08lx, expected %08lx). "
1215 "possible replay attack, or just packet duplication, ignoring."), seqno, iseqno.seq + 1);
1216 else if (seqclass == 3) // reset
1217 {
1218 slog (L_ERR, _("received out-of-sync (far future) packet (received %08lx, expected %08lx). "
1219 "probably just massive packet loss, sending reset."), seqno, iseqno.seq + 1);
1220 send_reset (rsi);
1221 }
1222
1223 delete d;
1224 break;
1225 }
1226 }
1227
1228 send_reset (rsi);
1229 break;
1230
1231 case vpn_packet::PT_CONNECT_REQ:
1232 if (ictx && octx && rsi == si && pkt->hmac_chk (ictx))
1233 {
1234 connect_req_packet *p = (connect_req_packet *)pkt;
1235
1236 if (p->id > 0 && p->id <= vpn->conns.size ())
1237 {
1238 connection *c = vpn->conns[p->id - 1];
1239 conf->protocols = p->protocols;
1240
1241 slog (L_TRACE, "%s >> PT_CONNECT_REQ(%s,p%02x) [%d]",
1242 conf->nodename, vpn->conns[p->id - 1]->conf->nodename,
1243 p->protocols,
1244 c->ictx && c->octx);
1245
1246 if (c->ictx && c->octx)
1247 {
1248 // send connect_info packets to both sides, in case one is
1249 // behind a nat firewall (or both ;)
1250 c->send_connect_info (conf->id, si, conf->protocols);
1251 send_connect_info (c->conf->id, c->si, c->conf->protocols);
1252 }
1253 else
1254 c->establish_connection ();
1255 }
1256 else
1257 slog (L_WARN,
1258 _("received authenticated connection request from unknown node #%d, config file mismatch?"),
1259 p->id);
1260 }
1261
1262 break;
1263
1264 case vpn_packet::PT_CONNECT_INFO:
1265 if (ictx && octx && rsi == si && pkt->hmac_chk (ictx))
1266 {
1267 connect_info_packet *p = (connect_info_packet *)pkt;
1268
1269 if (p->id > 0 && p->id <= vpn->conns.size ())
1270 {
1271 connection *c = vpn->conns[p->id - 1];
1272
1273 c->conf->protocols = p->protocols;
1274 protocol = best_protocol (c->conf->protocols & THISNODE->protocols & p->si.supported_protocols (c->conf));
1275 p->si.upgrade_protocol (protocol, c->conf);
1276
1277 slog (L_TRACE, "%s >> PT_CONNECT_INFO(%s,%s,protocols=%02x,protocol=%02x,upgradable=%02x) [%d]",
1278 conf->nodename,
1279 vpn->conns[p->id - 1]->conf->nodename,
1280 (const char *)p->si,
1281 p->protocols,
1282 protocol,
1283 p->si.supported_protocols (c->conf),
1284 !c->ictx && !c->octx);
1285
1286 const sockinfo &dsi = forward_si (p->si);
1287
1288 if (dsi.valid ())
1289 c->send_auth_request (dsi, true);
1290 else
1291 slog (L_INFO, "connect info for %s received (%s), but still unable to contact.",
1292 vpn->conns[p->id - 1]->conf->nodename,
1293 (const char *)p->si);
1294 }
1295 else
1296 slog (L_WARN,
1297 _("received authenticated connection request from unknown node #%d, config file mismatch?"),
1298 p->id);
1299 }
1300
1301 break;
1302
1303 default:
1304 send_reset (rsi);
1305 break;
1306 }
1307 }
1308
1309 inline void
1310 connection::keepalive_cb (ev::timer &w, int revents)
1311 {
1312 ev_tstamp when = last_activity + ::conf.keepalive - ev::now ();
1313
1314 if (when >= 0)
1315 w.start (when);
1316 else if (when < -15)
1317 {
1318 reset_connection ();
1319 establish_connection ();
1320 }
1321 else if (conf->connectmode != conf_node::C_ONDEMAND
1322 || THISNODE->connectmode != conf_node::C_ONDEMAND)
1323 {
1324 w.start (3);
1325 send_ping (si);
1326 }
1327 else if (when >= -10)
1328 // hold ondemand connections implicitly a few seconds longer
1329 // should delete octx, though, or something like that ;)
1330 w.start (when + 10);
1331 else
1332 reset_connection ();
1333 }
1334
1335 void
1336 connection::send_connect_request (int id)
1337 {
1338 connect_req_packet *p = new connect_req_packet (conf->id, id, THISNODE->protocols);
1339
1340 slog (L_TRACE, "%s << PT_CONNECT_REQ(%s,p%02x)",
1341 conf->nodename, vpn->conns[id - 1]->conf->nodename,
1342 THISNODE->protocols);
1343 p->hmac_set (octx);
1344 send_vpn_packet (p, si);
1345
1346 delete p;
1347 }
1348
1349 void
1350 connection::script_init_env (const char *ext)
1351 {
1352 char *env;
1353 asprintf (&env, "IFUPDATA%s=%s", ext, conf->if_up_data); putenv (env);
1354 asprintf (&env, "NODENAME%s=%s", ext, conf->nodename); putenv (env);
1355 asprintf (&env, "MAC%s=%02x:%02x:%02x:%02x:%02x:%02x", ext,
1356 0xfe, 0xfd, 0x80, 0x00, conf->id >> 8,
1357 conf->id & 0xff); putenv (env);
1358 }
1359
1360 void
1361 connection::script_init_connect_env ()
1362 {
1363 vpn->script_init_env ();
1364
1365 char *env;
1366 asprintf (&env, "DESTID=%d", conf->id); putenv (env);
1367 asprintf (&env, "DESTSI=%s", (const char *)si); putenv (env);
1368 asprintf (&env, "DESTNODE=%s", conf->nodename); putenv (env);
1369 asprintf (&env, "DESTIP=%s", si.ntoa ()); putenv (env);
1370 asprintf (&env, "DESTPORT=%d", ntohs (si.port)); putenv (env);
1371 }
1372
1373 inline const char *
1374 connection::script_node_up ()
1375 {
1376 script_init_connect_env ();
1377
1378 putenv ((char *)"STATE=up");
1379
1380 char *filename;
1381 asprintf (&filename,
1382 "%s/%s",
1383 confbase,
1384 ::conf.script_node_up ? ::conf.script_node_up : "node-up");
1385
1386 return filename;
1387 }
1388
1389 inline const char *
1390 connection::script_node_change ()
1391 {
1392 script_init_connect_env ();
1393
1394 putenv ((char *)"STATE=change");
1395
1396 char *filename;
1397 asprintf (&filename,
1398 "%s/%s",
1399 confbase,
1400 ::conf.script_node_change ? ::conf.script_node_change : "node-change");
1401
1402 return filename;
1403 }
1404
1405 inline const char *
1406 connection::script_node_down ()
1407 {
1408 script_init_connect_env ();
1409
1410 putenv ((char *)"STATE=down");
1411
1412 char *filename;
1413 asprintf (&filename,
1414 "%s/%s",
1415 confbase,
1416 ::conf.script_node_down ? ::conf.script_node_down : "node-down");
1417
1418 return filename;
1419 }
1420
1421 connection::connection (struct vpn *vpn, conf_node *conf)
1422 : vpn(vpn), conf(conf),
1423 #if ENABLE_DNS
1424 dns (0),
1425 #endif
1426 data_queue(conf->max_ttl, conf->max_queue + 1),
1427 vpn_queue(conf->max_ttl, conf->max_queue + 1)
1428 {
1429 rekey .set<connection, &connection::rekey_cb > (this);
1430 keepalive .set<connection, &connection::keepalive_cb > (this);
1431 establish_connection.set<connection, &connection::establish_connection_cb> (this);
1432
1433 last_establish_attempt = 0.;
1434 octx = ictx = 0;
1435
1436 connectmode = conf->connectmode;
1437
1438 // queue a dummy packet to force an initial connection attempt
1439 if (connectmode != conf_node::C_ALWAYS && connectmode != conf_node::C_DISABLED)
1440 vpn_queue.put (new net_packet);
1441
1442 reset_connection ();
1443 }
1444
1445 connection::~connection ()
1446 {
1447 shutdown ();
1448 }
1449
1450 void
1451 connection_init ()
1452 {
1453 auth_rate_limiter.clear ();
1454 reset_rate_limiter.clear ();
1455 }
1456