f41b66e2c7830387f0f6dc719059d2aa851cc325
[tripe] / server / peer.c
1 /* -*-c-*-
2 *
3 * Communication with the peer
4 *
5 * (c) 2001 Straylight/Edgeware
6 */
7
8 /*----- Licensing notice --------------------------------------------------*
9 *
10 * This file is part of Trivial IP Encryption (TrIPE).
11 *
12 * TrIPE is free software; you can redistribute it and/or modify
13 * it under the terms of the GNU General Public License as published by
14 * the Free Software Foundation; either version 2 of the License, or
15 * (at your option) any later version.
16 *
17 * TrIPE is distributed in the hope that it will be useful,
18 * but WITHOUT ANY WARRANTY; without even the implied warranty of
19 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 * GNU General Public License for more details.
21 *
22 * You should have received a copy of the GNU General Public License
23 * along with TrIPE; if not, write to the Free Software Foundation,
24 * Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
25 */
26
27 /*----- Header files ------------------------------------------------------*/
28
29 #include "tripe.h"
30
31 /*----- Static variables --------------------------------------------------*/
32
33 static sym_table byname;
34 static addrmap byaddr;
35 static sel_file sock;
36 static unsigned nmobile;
37
38 /*----- Tunnel table ------------------------------------------------------*/
39
40 const tunnel_ops *tunnels[] = {
41 #ifdef TUN_LINUX
42 &tun_linux,
43 #endif
44 #ifdef TUN_BSD
45 &tun_bsd,
46 #endif
47 #ifdef TUN_UNET
48 &tun_unet,
49 #endif
50 &tun_slip,
51 0
52 }, *tun_default;
53
54 /*----- Main code ---------------------------------------------------------*/
55
56 /* --- @p_pingtype@ --- *
57 *
58 * Arguments: @unsigned msg@ = message type
59 *
60 * Returns: String to describe the message.
61 */
62
63 static const char *p_pingtype(unsigned msg)
64 {
65 switch (msg & MSG_TYPEMASK) {
66 case MISC_PING:
67 case MISC_PONG:
68 return "transport-ping";
69 case MISC_EPING:
70 case MISC_EPONG:
71 return "encrypted-ping";
72 default:
73 abort();
74 }
75 }
76
77 /* --- @p_ponged@ --- *
78 *
79 * Arguments: @peer *p@ = peer packet arrived from
80 * @unsigned msg@ = message type
81 * @buf *b@ = buffer containing payload
82 *
83 * Returns: ---
84 *
85 * Use: Processes a ping response.
86 */
87
88 static void p_ponged(peer *p, unsigned msg, buf *b)
89 {
90 uint32 id;
91 const octet *magic;
92 ping *pg;
93
94 IF_TRACING(T_PEER, {
95 trace(T_PEER, "peer: received %s reply from %s",
96 p_pingtype(msg), p->spec.name);
97 trace_block(T_PACKET, "peer: ping contents", BBASE(b), BSZ(b));
98 })
99
100 if (buf_getu32(b, &id) ||
101 (magic = buf_get(b, sizeof(pg->magic))) == 0 ||
102 BLEFT(b)) {
103 a_warn("PEER", "?PEER", p, "malformed-%s", p_pingtype(msg), A_END);
104 return;
105 }
106
107 for (pg = p->pings; pg; pg = pg->next) {
108 if (pg->id == id)
109 goto found;
110 }
111 a_warn("PEER",
112 "?PEER", p,
113 "unexpected-%s", p_pingtype(msg),
114 "0x%08lx", (unsigned long)id,
115 A_END);
116 return;
117
118 found:
119 if (memcmp(magic, pg->magic, sizeof(pg->magic)) != 0) {
120 a_warn("PEER", "?PEER", p, "corrupt-%s", p_pingtype(msg), A_END);
121 return;
122 }
123 p_pingdone(pg, PING_OK);
124 }
125
126 /* --- @p_rxupdstats@ --- *
127 *
128 * Arguments: @peer *p@ = peer to update
129 * @size_t n@ = size of incoming packet
130 *
131 * Returns: ---
132 *
133 * Use: Updates the peer's incoming packet statistics.
134 */
135
136 static void p_rxupdstats(peer *p, size_t n)
137 {
138 p->st.t_last = time(0);
139 p->st.n_in++;
140 p->st.sz_in += n;
141 }
142
143 /* --- @p_encrypt@ --- *
144 *
145 * Arguments: @peer *p@ = peer to encrypt message to
146 * @int ty@ message type to send
147 * @buf *bin, *bout@ = input and output buffers
148 *
149 * Returns: ---
150 *
151 * Use: Convenience function for packet encryption. Forces
152 * renegotiation when necessary. Check for the output buffer
153 * being broken to find out whether the encryption was
154 * successful.
155 */
156
157 static int p_encrypt(peer *p, int ty, buf *bin, buf *bout)
158 {
159 int err = ksl_encrypt(&p->ks, ty, bin, bout);
160
161 if (err == KSERR_REGEN) {
162 kx_start(&p->kx, 1);
163 err = 0;
164 }
165 if (!BOK(bout))
166 err = -1;
167 return (err);
168 }
169
170 /* --- @p_decrypt@ --- *
171 *
172 * Arguments: @peer **pp@ = pointer to peer to decrypt message from
173 * @addr *a@ = address the packet arrived on
174 * @size_t n@ = size of original incoming packet
175 * @int ty@ = message type to expect
176 * @buf *bin, *bout@ = input and output buffers
177 *
178 * Returns: Zero on success; nonzero on error.
179 *
180 * Use: Convenience function for packet decryption. Reports errors
181 * and updates statistics appropriately.
182 *
183 * If @*pp@ is null on entry and there are mobile peers then we
184 * see if any of them can decrypt the packet. If so, we record
185 * @*a@ as the peer's new address and send a notification.
186 */
187
188 static int p_decrypt(peer **pp, addr *a, size_t n,
189 int ty, buf *bin, buf *bout)
190 {
191 peer *p;
192 peer_byaddr *pa;
193 int err = KSERR_DECRYPT;
194 unsigned f;
195
196 if (*pp) {
197 p = *pp;
198 T( trace(T_PEER, "peer: decrypting packet from known peer `%s'",
199 p_name(p)); )
200 err = ksl_decrypt(&p->ks, ty, bin, bout);
201 } else {
202 p = 0;
203 if (nmobile) {
204 T( trace(T_PEER, "peer: unknown source: trying mobile peers..."); )
205 FOREACH_PEER(q, {
206 if ((err = ksl_decrypt(&q->ks, ty, bin, bout)) == KSERR_DECRYPT) {
207 T( trace(T_PEER, "peer: peer `%s' failed to decrypt",
208 p_name(q)); )
209 continue;
210 } else {
211 p = *pp = q;
212 IF_TRACING(T_PEER, {
213 if (!err)
214 trace(T_PEER, "peer: peer `%s' reports success", p_name(p));
215 else {
216 trace(T_PEER, "peer: peer `%s' reports decryption error %d",
217 p_name(p), err);
218 }
219 })
220 break;
221 }
222 });
223 }
224 if (!p) {
225 a_warn("PEER", "-", "unexpected-source", "?ADDR", a, A_END);
226 return (-1);
227 }
228 if (!err) {
229 T( trace(T_PEER, "peer: updating address for `%s'", p_name(p)); )
230 p_rxupdstats(p, n);
231 pa = am_find(&byaddr, a, sizeof(peer_byaddr), &f); assert(!f);
232 am_remove(&byaddr, p->byaddr);
233 p->byaddr = pa;
234 pa->p = p;
235 p->spec.sa = *a;
236 a_notify("NEWADDR", "?PEER", p, "?ADDR", a, A_END);
237 }
238 }
239 if (err) {
240 if (p) p->st.n_reject++;
241 a_warn("PEER", "?PEER", p, "decrypt-failed",
242 "error-code", "%d", err, A_END);
243 return (-1);
244 }
245 if (!BOK(bout))
246 return (-1);
247 return (0);
248 }
249
250 /* --- @p_read@ --- *
251 *
252 * Arguments: @int fd@ = file descriptor to read from
253 * @unsigned mode@ = what happened
254 * @void *v@ = an uninteresting pointer
255 *
256 * Returns: ---
257 *
258 * Use: Reads a packet from somewhere.
259 */
260
261 static void p_read(int fd, unsigned mode, void *v)
262 {
263 peer *p = 0;
264 addr a;
265 size_t sz;
266 ssize_t n;
267 int ch;
268 buf b, bb;
269
270 /* --- Read the data --- */
271
272 TIMER;
273 sz = sizeof(addr);
274 n = recvfrom(fd, buf_i, sizeof(buf_i), 0, &a.sa, &sz);
275 if (n < 0) {
276 a_warn("PEER", "-", "socket-read-error", "?ERRNO", A_END);
277 return;
278 }
279
280 /* --- If the packet is a greeting, don't check peers --- */
281
282 if (n && buf_i[0] == (MSG_MISC | MISC_GREET)) {
283 IF_TRACING(T_PEER, {
284 trace(T_PEER, "peer: greeting received from INET %s %u",
285 inet_ntoa(a.sin.sin_addr),
286 (unsigned)ntohs(a.sin.sin_port));
287 trace_block(T_PACKET, "peer: greeting contents", buf_i, n);
288 })
289 buf_init(&b, buf_i, n);
290 buf_getbyte(&b);
291 if (c_check(&b) || BLEFT(&b)) {
292 a_warn("PEER", "-", "invalid-greeting", A_END);
293 return;
294 }
295 a_notify("GREET",
296 "?B64", buf_i + 1, (size_t)(n - 1),
297 "?ADDR", &a,
298 A_END);
299 return;
300 }
301
302 /* --- Find the appropriate peer --- *
303 *
304 * At this stage, don't worry too much about whether we actually found it.
305 */
306
307 p = p_findbyaddr(&a);
308
309 IF_TRACING(T_PEER, {
310 if (p) {
311 trace(T_PEER,
312 "peer: packet received from `%s' from address INET %s %d",
313 p_name(p), inet_ntoa(a.sin.sin_addr), ntohs(a.sin.sin_port));
314 } else {
315 trace(T_PEER, "peer: packet received from unknown address INET %s %d",
316 inet_ntoa(a.sin.sin_addr), ntohs(a.sin.sin_port));
317 }
318 trace_block(T_PACKET, "peer: packet contents", buf_i, n);
319 })
320
321 /* --- Pick the packet apart --- */
322
323 if (p) p_rxupdstats(p, n);
324 buf_init(&b, buf_i, n);
325 if ((ch = buf_getbyte(&b)) < 0) {
326 a_warn("PEER", "?PEER", p, "bad-packet", "no-type", A_END);
327 return;
328 }
329 switch (ch & MSG_CATMASK) {
330 case MSG_PACKET:
331 if (ch & MSG_TYPEMASK) {
332 a_warn("PEER",
333 "?PEER", p,
334 "bad-packet",
335 "unknown-type", "0x%02x", ch,
336 A_END);
337 if (p) p->st.n_reject++;
338 return;
339 }
340 buf_init(&bb, buf_o, sizeof(buf_o));
341 if (p_decrypt(&p, &a, n, MSG_PACKET, &b, &bb))
342 return;
343 if (BOK(&bb)) {
344 p->st.n_ipin++;
345 p->st.sz_ipin += BSZ(&b);
346 p->t->ops->inject(p->t, &bb);
347 } else {
348 p->st.n_reject++;
349 a_warn("PEER", "?PEER", p, "packet-build-failed", A_END);
350 }
351 break;
352 case MSG_KEYEXCH:
353 if (!p) goto unexp;
354 kx_message(&p->kx, ch & MSG_TYPEMASK, &b);
355 break;
356 case MSG_MISC:
357 switch (ch & MSG_TYPEMASK) {
358 case MISC_NOP:
359 if (!p) goto unexp;
360 T( trace(T_PEER, "peer: received NOP packet"); )
361 break;
362 case MISC_PING:
363 if (!p) goto unexp;
364 buf_put(p_txstart(p, MSG_MISC | MISC_PONG), BCUR(&b), BLEFT(&b));
365 p_txend(p);
366 break;
367 case MISC_PONG:
368 if (!p) goto unexp;
369 p_ponged(p, MISC_PONG, &b);
370 break;
371 case MISC_EPING:
372 buf_init(&bb, buf_t, sizeof(buf_t));
373 if (p_decrypt(&p, &a, n, ch, &b, &bb))
374 return;
375 if (BOK(&bb)) {
376 buf_flip(&bb);
377 p_encrypt(p, MSG_MISC | MISC_EPONG, &bb,
378 p_txstart(p, MSG_MISC | MISC_EPONG));
379 p_txend(p);
380 }
381 break;
382 case MISC_EPONG:
383 buf_init(&bb, buf_t, sizeof(buf_t));
384 if (p_decrypt(&p, &a, n, ch, &b, &bb))
385 return;
386 if (BOK(&bb)) {
387 buf_flip(&bb);
388 p_ponged(p, MISC_EPONG, &bb);
389 }
390 break;
391 }
392 break;
393 default:
394 if (p) p->st.n_reject++;
395 a_warn("PEER",
396 "?PEER", p,
397 "bad-packet",
398 "unknown-category", "0x%02x", ch,
399 A_END);
400 break;
401 unexp:
402 a_warn("PEER", "-", "unexpected-source", "?ADDR", &a, A_END);
403 break;
404 }
405 }
406
407 /* --- @p_txstart@ --- *
408 *
409 * Arguments: @peer *p@ = pointer to peer block
410 * @unsigned msg@ = message type code
411 *
412 * Returns: A pointer to a buffer to write to.
413 *
414 * Use: Starts sending to a peer. Only one send can happen at a
415 * time.
416 */
417
418 buf *p_txstart(peer *p, unsigned msg)
419 {
420 buf_init(&p->b, buf_o, sizeof(buf_o));
421 buf_putbyte(&p->b, msg);
422 return (&p->b);
423 }
424
425 /* --- @p_txend@ --- *
426 *
427 * Arguments: @peer *p@ = pointer to peer block
428 *
429 * Returns: ---
430 *
431 * Use: Sends a packet to the peer.
432 */
433
434 static void p_setkatimer(peer *);
435
436 static int p_dotxend(peer *p)
437 {
438 if (!BOK(&p->b)) {
439 a_warn("PEER", "?PEER", p, "packet-build-failed", A_END);
440 return (0);
441 }
442 IF_TRACING(T_PEER, trace_block(T_PACKET, "peer: sending packet",
443 BBASE(&p->b), BLEN(&p->b)); )
444 if (sendto(sock.fd, BBASE(&p->b), BLEN(&p->b),
445 0, &p->spec.sa.sa, p->spec.sasz) < 0) {
446 a_warn("PEER", "?PEER", p, "socket-write-error", "?ERRNO", A_END);
447 return (0);
448 } else {
449 p->st.n_out++;
450 p->st.sz_out += BLEN(&p->b);
451 return (1);
452 }
453 }
454
455 void p_txend(peer *p)
456 {
457 if (p_dotxend(p) && p->spec.t_ka) {
458 sel_rmtimer(&p->tka);
459 p_setkatimer(p);
460 }
461 }
462
463 /* --- @p_pingwrite@ --- *
464 *
465 * Arguments: @ping *p@ = ping structure
466 * @buf *b@ = buffer to write in
467 *
468 * Returns: ---
469 *
470 * Use: Fills in a ping structure and writes the packet payload.
471 */
472
473 static void p_pingwrite(ping *p, buf *b)
474 {
475 static uint32 seq = 0;
476
477 p->id = U32(seq++);
478 GR_FILL(&rand_global, p->magic, sizeof(p->magic));
479 buf_putu32(b, p->id);
480 buf_put(b, p->magic, sizeof(p->magic));
481 }
482
483 /* --- @p_pingdone@ --- *
484 *
485 * Arguments: @ping *p@ = ping structure
486 * @int rc@ = return code to pass on
487 *
488 * Returns: ---
489 *
490 * Use: Disposes of a ping structure, maybe sending a notification.
491 */
492
493 void p_pingdone(ping *p, int rc)
494 {
495 if (p->prev) p->prev->next = p->next;
496 else p->p->pings = p->next;
497 if (p->next) p->next->prev = p->prev;
498 if (rc != PING_TIMEOUT) sel_rmtimer(&p->t);
499 T( trace(T_PEER, "peer: ping 0x%08lx done (rc = %d)",
500 (unsigned long)p->id, rc); )
501 if (rc >= 0) p->func(rc, p->arg);
502 }
503
504 /* --- @p_pingtimeout@ --- *
505 *
506 * Arguments: @struct timeval *now@ = the time now
507 * @void *pv@ = pointer to ping block
508 *
509 * Returns: ---
510 *
511 * Use: Called when a ping times out.
512 */
513
514 static void p_pingtimeout(struct timeval *now, void *pv)
515 {
516 ping *p = pv;
517
518 T( trace(T_PEER, "peer: ping 0x%08lx timed out", (unsigned long)p->id); )
519 p_pingdone(p, PING_TIMEOUT);
520 }
521
522 /* --- @p_pingsend@ --- *
523 *
524 * Arguments: @peer *p@ = destination peer
525 * @ping *pg@ = structure to fill in
526 * @unsigned type@ = message type
527 * @unsigned long timeout@ = how long to wait before giving up
528 * @void (*func)(int, void *)@ = callback function
529 * @void *arg@ = argument for callback
530 *
531 * Returns: Zero if successful, nonzero if it failed.
532 *
533 * Use: Sends a ping to a peer. Call @func@ with a nonzero argument
534 * if we get an answer within the timeout, or zero if no answer.
535 */
536
537 int p_pingsend(peer *p, ping *pg, unsigned type,
538 unsigned long timeout,
539 void (*func)(int, void *), void *arg)
540 {
541 buf *b, bb;
542 struct timeval tv;
543
544 switch (type) {
545 case MISC_PING:
546 pg->msg = MISC_PONG;
547 b = p_txstart(p, MSG_MISC | MISC_PING);
548 p_pingwrite(pg, b);
549 p_txend(p);
550 break;
551 case MISC_EPING:
552 pg->msg = MISC_EPONG;
553 b = p_txstart(p, MSG_MISC | MISC_EPING);
554 buf_init(&bb, buf_t, sizeof(buf_t));
555 p_pingwrite(pg, &bb);
556 buf_flip(&bb);
557 p_encrypt(p, MSG_MISC | MISC_EPING, &bb, b);
558 if (!BOK(b))
559 return (-1);
560 p_txend(p);
561 break;
562 default:
563 abort();
564 break;
565 }
566
567 pg->next = p->pings;
568 pg->prev = 0;
569 pg->p = p;
570 pg->func = func;
571 pg->arg = arg;
572 if (p->pings) p->pings->prev = pg;
573 p->pings = pg;
574 gettimeofday(&tv, 0);
575 tv.tv_sec += timeout;
576 sel_addtimer(&sel, &pg->t, &tv, p_pingtimeout, pg);
577 T( trace(T_PEER, "peer: send %s 0x%08lx to %s",
578 p_pingtype(type), (unsigned long)pg->id, p->spec.name); )
579 return (0);
580 }
581
582 /* --- @p_greet@ --- *
583 *
584 * Arguments: @peer *p@ = peer to send to
585 * @const void *c@ = pointer to challenge
586 * @size_t sz@ = size of challenge
587 *
588 * Returns: ---
589 *
590 * Use: Sends a greeting packet.
591 */
592
593 void p_greet(peer *p, const void *c, size_t sz)
594 {
595 buf *b = p_txstart(p, MSG_MISC | MISC_GREET);
596 buf_put(b, c, sz);
597 p_txend(p);
598 }
599
600 /* --- @p_tun@ --- *
601 *
602 * Arguments: @peer *p@ = pointer to peer block
603 * @buf *b@ = buffer containing incoming packet
604 *
605 * Returns: ---
606 *
607 * Use: Handles a packet which needs to be sent to a peer.
608 */
609
610 void p_tun(peer *p, buf *b)
611 {
612 buf *bb = p_txstart(p, MSG_PACKET);
613
614 TIMER;
615 p_encrypt(p, MSG_PACKET, b, bb);
616 if (BOK(bb) && BLEN(bb)) {
617 p->st.n_ipout++;
618 p->st.sz_ipout += BLEN(bb);
619 p_txend(p);
620 }
621 }
622
623 /* --- @p_keyreload@ --- *
624 *
625 * Arguments: ---
626 *
627 * Returns: ---
628 *
629 * Use: Forces a check of the daemon's keyring files.
630 */
631
632 void p_keyreload(void)
633 {
634 if (km_reload())
635 FOREACH_PEER(p, { kx_newkeys(&p->kx); });
636 }
637
638 /* --- @p_interval@ --- *
639 *
640 * Arguments: ---
641 *
642 * Returns: ---
643 *
644 * Use: Called periodically to do tidying.
645 */
646
647 void p_interval(void)
648 {
649 p_keyreload();
650 FOREACH_PEER(p, { ksl_prune(&p->ks); });
651 }
652
653 /* --- @p_stats@ --- *
654 *
655 * Arguments: @peer *p@ = pointer to a peer block
656 *
657 * Returns: A pointer to the peer's statistics.
658 */
659
660 stats *p_stats(peer *p) { return (&p->st); }
661
662 /* --- @p_ifname@ --- *
663 *
664 * Arguments: @peer *p@ = pointer to a peer block
665 *
666 * Returns: A pointer to the peer's interface name.
667 */
668
669 const char *p_ifname(peer *p) { return (p->ifname); }
670
671 /* --- @p_setifname@ --- *
672 *
673 * Arguments: @peer *p@ = pointer to a peer block
674 * @const char *name@ = pointer to the new name
675 *
676 * Returns: ---
677 *
678 * Use: Changes the name held for a peer's interface.
679 */
680
681 void p_setifname(peer *p, const char *name)
682 {
683 xfree(p->ifname);
684 p->ifname = xstrdup(name);
685 if (p->spec.tops->setifname)
686 p->spec.tops->setifname(p->t, name);
687 }
688
689 /* --- @p_addr@ --- *
690 *
691 * Arguments: @peer *p@ = pointer to a peer block
692 *
693 * Returns: A pointer to the peer's address.
694 */
695
696 const addr *p_addr(peer *p) { return (&p->spec.sa); }
697
698 /* --- @p_init@ --- *
699 *
700 * Arguments: @struct in_addr addr@ = address to bind to
701 * @unsigned port@ = port number to listen to
702 *
703 * Returns: ---
704 *
705 * Use: Initializes the peer system; creates the socket.
706 */
707
708 void p_init(struct in_addr addr, unsigned port)
709 {
710 int fd;
711 struct sockaddr_in sin;
712 int len = PKBUFSZ;
713
714 /* --- Note on socket buffer sizes --- *
715 *
716 * For some bizarre reason, Linux 2.2 (at least) doubles the socket buffer
717 * sizes I pass to @setsockopt@. I'm not putting special-case code here
718 * for Linux: BSD (at least TCPv2) does what I tell it rather than second-
719 * guessing me.
720 */
721
722 if ((fd = socket(PF_INET, SOCK_DGRAM, 0)) < 0)
723 die(EXIT_FAILURE, "socket creation failed: %s", strerror(errno));
724 BURN(sin);
725 sin.sin_family = AF_INET;
726 sin.sin_addr = addr;
727 sin.sin_port = htons(port);
728 if (bind(fd, (struct sockaddr *)&sin, sizeof(sin)))
729 die(EXIT_FAILURE, "bind failed: %s", strerror(errno));
730 if (setsockopt(fd, SOL_SOCKET, SO_RCVBUF, &len, sizeof(len)) ||
731 setsockopt(fd, SOL_SOCKET, SO_SNDBUF, &len, sizeof(len))) {
732 die(EXIT_FAILURE, "failed to set socket buffer sizes: %s",
733 strerror(errno));
734 }
735 fdflags(fd, O_NONBLOCK, O_NONBLOCK, FD_CLOEXEC, FD_CLOEXEC);
736 sel_initfile(&sel, &sock, fd, SEL_READ, p_read, 0);
737 sel_addfile(&sock);
738 T( trace(T_PEER, "peer: created socket"); )
739
740 sym_create(&byname);
741 am_create(&byaddr);
742 }
743
744 /* --- @p_port@ --- *
745 *
746 * Arguments: ---
747 *
748 * Returns: Port number used for socket.
749 */
750
751 unsigned p_port(void)
752 {
753 addr a;
754 size_t sz = sizeof(addr);
755
756 if (getsockname(sock.fd, &a.sa, &sz))
757 die(EXIT_FAILURE, "couldn't read port number: %s", strerror(errno));
758 assert(a.sa.sa_family == AF_INET);
759 return (ntohs(a.sin.sin_port));
760 }
761
762 /* --- @p_keepalive@ --- *
763 *
764 * Arguments: @struct timeval *now@ = the current time
765 * @void *pv@ = peer to wake up
766 *
767 * Returns: ---
768 *
769 * Use: Sends a keepalive ping message to its peer.
770 */
771
772 static void p_keepalive(struct timeval *now, void *pv)
773 {
774 peer *p = pv;
775 p_txstart(p, MSG_MISC | MISC_NOP); p_dotxend(p);
776 T( trace(T_PEER, "peer: sent keepalive to %s", p->spec.name); )
777 p_setkatimer(p);
778 }
779
780 /* --- @p_setkatimer@ --- *
781 *
782 * Arguments: @peer *p@ = peer to set
783 *
784 * Returns: ---
785 *
786 * Use: Resets the keepalive timer thing.
787 */
788
789 static void p_setkatimer(peer *p)
790 {
791 struct timeval tv;
792
793 if (!p->spec.t_ka)
794 return;
795 gettimeofday(&tv, 0);
796 tv.tv_sec += p->spec.t_ka;
797 sel_addtimer(&sel, &p->tka, &tv, p_keepalive, p);
798 }
799
800 /* --- @p_create@ --- *
801 *
802 * Arguments: @peerspec *spec@ = information about this peer
803 *
804 * Returns: Pointer to the peer block, or null if it failed.
805 *
806 * Use: Creates a new named peer block. No peer is actually attached
807 * by this point.
808 */
809
810 peer *p_create(peerspec *spec)
811 {
812 peer *p = CREATE(peer);
813 const tunnel_ops *tops = spec->tops;
814 int fd;
815 unsigned f;
816
817 p->byname = sym_find(&byname, spec->name, -1, sizeof(peer_byname), &f);
818 if (f) goto tidy_0;
819 p->byaddr = am_find(&byaddr, &spec->sa, sizeof(peer_byaddr), &f);
820 if (f) goto tidy_1;
821 p->byname->p = p->byaddr->p = p;
822
823 T( trace(T_PEER, "peer: creating new peer `%s'", spec->name); )
824 p->spec = *spec;
825 p->spec.name = (/*unconst*/ char *)SYM_NAME(p->byname);
826 if (spec->tag)
827 p->spec.tag = xstrdup(spec->tag);
828 p->ks = 0;
829 p->pings = 0;
830 p->ifname = 0;
831 memset(&p->st, 0, sizeof(stats));
832 p->st.t_start = time(0);
833 if (!(tops->flags & TUNF_PRIVOPEN))
834 fd = -1;
835 else if ((fd = ps_tunfd(tops, &p->ifname)) < 0)
836 goto tidy_2;
837 if ((p->t = tops->create(p, fd, &p->ifname)) == 0)
838 goto tidy_3;
839 T( trace(T_TUNNEL, "peer: attached interface %s to peer `%s'",
840 p->ifname, p_name(p)); )
841 p_setkatimer(p);
842 if (kx_init(&p->kx, p, &p->ks, p->spec.f & PSF_KXMASK))
843 goto tidy_4;
844 a_notify("ADD",
845 "?PEER", p,
846 "%s", p->ifname,
847 "?ADDR", &p->spec.sa,
848 A_END);
849 if (!(p->spec.f & KXF_CORK)) {
850 a_notify("KXSTART", "?PEER", p, A_END);
851 /* Couldn't tell anyone before */
852 }
853 if (p->spec.f & PSF_MOBILE) nmobile++;
854 return (p);
855
856 tidy_4:
857 if (spec->t_ka)
858 sel_rmtimer(&p->tka);
859 xfree(p->ifname);
860 p->t->ops->destroy(p->t);
861 tidy_3:
862 if (fd >= 0) close(fd);
863 tidy_2:
864 am_remove(&byaddr, p->byaddr);
865 if (p->spec.tag) xfree(p->spec.tag);
866 tidy_1:
867 sym_remove(&byname, p->byname);
868 tidy_0:
869 DESTROY(p);
870 return (0);
871 }
872
873 /* --- @p_name@ --- *
874 *
875 * Arguments: @peer *p@ = pointer to a peer block
876 *
877 * Returns: A pointer to the peer's name.
878 */
879
880 const char *p_name(peer *p)
881 { if (p) return (p->spec.name); else return ("-"); }
882
883 /* --- @p_tag@ --- *
884 *
885 * Arguments: @peer *p@ = pointer to a peer block
886 *
887 * Returns: A pointer to the peer's public key tag.
888 */
889
890 const char *p_tag(peer *p)
891 { return (p->spec.tag ? p->spec.tag : p->spec.name); }
892
893 /* --- @p_spec@ --- *
894 *
895 * Arguments: @peer *p@ = pointer to a peer block
896 *
897 * Returns: Pointer to the peer's specification
898 */
899
900 const peerspec *p_spec(peer *p) { return (&p->spec); }
901
902 /* --- @p_findbyaddr@ --- *
903 *
904 * Arguments: @const addr *a@ = address to look up
905 *
906 * Returns: Pointer to the peer block, or null if not found.
907 *
908 * Use: Finds a peer by address.
909 */
910
911 peer *p_findbyaddr(const addr *a)
912 {
913 peer_byaddr *pa;
914
915 if ((pa = am_find(&byaddr, a, 0, 0)) != 0) {
916 assert(pa->p);
917 return (pa->p);
918 }
919 return (0);
920 }
921
922 /* --- @p_find@ --- *
923 *
924 * Arguments: @const char *name@ = name to look up
925 *
926 * Returns: Pointer to the peer block, or null if not found.
927 *
928 * Use: Finds a peer by name.
929 */
930
931 peer *p_find(const char *name)
932 {
933 peer_byname *pn;
934
935 if ((pn = sym_find(&byname, name, -1, 0, 0)) != 0)
936 return (pn->p);
937 return (0);
938 }
939
940 /* --- @p_destroy@ --- *
941 *
942 * Arguments: @peer *p@ = pointer to a peer
943 *
944 * Returns: ---
945 *
946 * Use: Destroys a peer.
947 */
948
949 void p_destroy(peer *p)
950 {
951 ping *pg, *ppg;
952
953 T( trace(T_PEER, "peer: destroying peer `%s'", p->spec.name); )
954 a_notify("KILL", "%s", p->spec.name, A_END);
955 ksl_free(&p->ks);
956 kx_free(&p->kx);
957 if (p->spec.f & PSF_MOBILE)
958 nmobile--;
959 if (p->ifname)
960 xfree(p->ifname);
961 if (p->spec.tag)
962 xfree(p->spec.tag);
963 p->t->ops->destroy(p->t);
964 if (p->spec.t_ka)
965 sel_rmtimer(&p->tka);
966 for (pg = p->pings; pg; pg = ppg) {
967 ppg = pg->next;
968 p_pingdone(pg, PING_PEERDIED);
969 }
970 sym_remove(&byname, p->byname);
971 am_remove(&byaddr, p->byaddr);
972 DESTROY(p);
973 }
974
975 /* --- @p_mkiter@ --- *
976 *
977 * Arguments: @peer_iter *i@ = pointer to an iterator
978 *
979 * Returns: ---
980 *
981 * Use: Initializes the iterator.
982 */
983
984 void p_mkiter(peer_iter *i) { sym_mkiter(&i->i, &byname); }
985
986 /* --- @p_next@ --- *
987 *
988 * Arguments: @peer_iter *i@ = pointer to an iterator
989 *
990 * Returns: Next peer, or null if at the end.
991 *
992 * Use: Returns the next peer.
993 */
994
995 peer *p_next(peer_iter *i)
996 {
997 peer_byname *pn;
998
999 if ((pn = sym_next(&i->i)) == 0)
1000 return (0);
1001 return (pn->p);
1002 }
1003
1004 /*----- That's all, folks -------------------------------------------------*/