kernel_ipsec_t.query_sa() additionally returns the number of processed packets
[strongswan.git] / src / libcharon / sa / child_sa.c
1 /*
2 * Copyright (C) 2006-2011 Tobias Brunner
3 * Copyright (C) 2005-2008 Martin Willi
4 * Copyright (C) 2006 Daniel Roethlisberger
5 * Copyright (C) 2005 Jan Hutter
6 * Hochschule fuer Technik Rapperswil
7 *
8 * This program is free software; you can redistribute it and/or modify it
9 * under the terms of the GNU General Public License as published by the
10 * Free Software Foundation; either version 2 of the License, or (at your
11 * option) any later version. See <http://www.fsf.org/copyleft/gpl.txt>.
12 *
13 * This program is distributed in the hope that it will be useful, but
14 * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
15 * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
16 * for more details.
17 */
18
19 #define _GNU_SOURCE
20 #include "child_sa.h"
21
22 #include <stdio.h>
23 #include <string.h>
24 #include <time.h>
25
26 #include <hydra.h>
27 #include <daemon.h>
28
29 ENUM(child_sa_state_names, CHILD_CREATED, CHILD_DESTROYING,
30 "CREATED",
31 "ROUTED",
32 "INSTALLING",
33 "INSTALLED",
34 "UPDATING",
35 "REKEYING",
36 "DELETING",
37 "DESTROYING",
38 );
39
40 typedef struct private_child_sa_t private_child_sa_t;
41
42 /**
43 * Private data of a child_sa_t object.
44 */
45 struct private_child_sa_t {
46 /**
47 * Public interface of child_sa_t.
48 */
49 child_sa_t public;
50
51 /**
52 * address of us
53 */
54 host_t *my_addr;
55
56 /**
57 * address of remote
58 */
59 host_t *other_addr;
60
61 /**
62 * our actually used SPI, 0 if unused
63 */
64 u_int32_t my_spi;
65
66 /**
67 * others used SPI, 0 if unused
68 */
69 u_int32_t other_spi;
70
71 /**
72 * our Compression Parameter Index (CPI) used, 0 if unused
73 */
74 u_int16_t my_cpi;
75
76 /**
77 * others Compression Parameter Index (CPI) used, 0 if unused
78 */
79 u_int16_t other_cpi;
80
81 /**
82 * List for local traffic selectors
83 */
84 linked_list_t *my_ts;
85
86 /**
87 * List for remote traffic selectors
88 */
89 linked_list_t *other_ts;
90
91 /**
92 * Protocol used to protect this SA, ESP|AH
93 */
94 protocol_id_t protocol;
95
96 /**
97 * reqid used for this child_sa
98 */
99 u_int32_t reqid;
100
101 /**
102 * inbound mark used for this child_sa
103 */
104 mark_t mark_in;
105
106 /**
107 * outbound mark used for this child_sa
108 */
109 mark_t mark_out;
110
111 /**
112 * absolute time when rekeying is scheduled
113 */
114 time_t rekey_time;
115
116 /**
117 * absolute time when the SA expires
118 */
119 time_t expire_time;
120
121 /**
122 * state of the CHILD_SA
123 */
124 child_sa_state_t state;
125
126 /**
127 * TRUE if this CHILD_SA is used to install trap policies
128 */
129 bool trap;
130
131 /**
132 * Specifies if UDP encapsulation is enabled (NAT traversal)
133 */
134 bool encap;
135
136 /**
137 * Specifies the IPComp transform used (IPCOMP_NONE if disabled)
138 */
139 ipcomp_transform_t ipcomp;
140
141 /**
142 * mode this SA uses, tunnel/transport
143 */
144 ipsec_mode_t mode;
145
146 /**
147 * Action to enforce if peer closes the CHILD_SA
148 */
149 action_t close_action;
150
151 /**
152 * Action to enforce if peer is considered dead
153 */
154 action_t dpd_action;
155
156 /**
157 * selected proposal
158 */
159 proposal_t *proposal;
160
161 /**
162 * config used to create this child
163 */
164 child_cfg_t *config;
165
166 /**
167 * time of last use in seconds (inbound)
168 */
169 u_int32_t my_usetime;
170
171 /**
172 * time of last use in seconds (outbound)
173 */
174 u_int32_t other_usetime;
175
176 /**
177 * last number of inbound bytes
178 */
179 u_int64_t my_usebytes;
180
181 /**
182 * last number of outbound bytes
183 */
184 u_int64_t other_usebytes;
185
186 /**
187 * last number of inbound packets
188 */
189 u_int64_t my_usepackets;
190
191 /**
192 * last number of outbound bytes
193 */
194 u_int64_t other_usepackets;
195 };
196
197 /**
198 * convert an IKEv2 specific protocol identifier to the IP protocol identifier.
199 */
200 static inline u_int8_t proto_ike2ip(protocol_id_t protocol)
201 {
202 switch (protocol)
203 {
204 case PROTO_ESP:
205 return IPPROTO_ESP;
206 case PROTO_AH:
207 return IPPROTO_AH;
208 default:
209 return protocol;
210 }
211 }
212
213 METHOD(child_sa_t, get_name, char*,
214 private_child_sa_t *this)
215 {
216 return this->config->get_name(this->config);
217 }
218
219 METHOD(child_sa_t, get_reqid, u_int32_t,
220 private_child_sa_t *this)
221 {
222 return this->reqid;
223 }
224
225 METHOD(child_sa_t, get_config, child_cfg_t*,
226 private_child_sa_t *this)
227 {
228 return this->config;
229 }
230
231 METHOD(child_sa_t, set_state, void,
232 private_child_sa_t *this, child_sa_state_t state)
233 {
234 charon->bus->child_state_change(charon->bus, &this->public, state);
235 this->state = state;
236 }
237
238 METHOD(child_sa_t, get_state, child_sa_state_t,
239 private_child_sa_t *this)
240 {
241 return this->state;
242 }
243
244 METHOD(child_sa_t, get_spi, u_int32_t,
245 private_child_sa_t *this, bool inbound)
246 {
247 return inbound ? this->my_spi : this->other_spi;
248 }
249
250 METHOD(child_sa_t, get_cpi, u_int16_t,
251 private_child_sa_t *this, bool inbound)
252 {
253 return inbound ? this->my_cpi : this->other_cpi;
254 }
255
256 METHOD(child_sa_t, get_protocol, protocol_id_t,
257 private_child_sa_t *this)
258 {
259 return this->protocol;
260 }
261
262 METHOD(child_sa_t, set_protocol, void,
263 private_child_sa_t *this, protocol_id_t protocol)
264 {
265 this->protocol = protocol;
266 }
267
268 METHOD(child_sa_t, get_mode, ipsec_mode_t,
269 private_child_sa_t *this)
270 {
271 return this->mode;
272 }
273
274 METHOD(child_sa_t, set_mode, void,
275 private_child_sa_t *this, ipsec_mode_t mode)
276 {
277 this->mode = mode;
278 }
279
280 METHOD(child_sa_t, has_encap, bool,
281 private_child_sa_t *this)
282 {
283 return this->encap;
284 }
285
286 METHOD(child_sa_t, get_ipcomp, ipcomp_transform_t,
287 private_child_sa_t *this)
288 {
289 return this->ipcomp;
290 }
291
292 METHOD(child_sa_t, set_ipcomp, void,
293 private_child_sa_t *this, ipcomp_transform_t ipcomp)
294 {
295 this->ipcomp = ipcomp;
296 }
297
298 METHOD(child_sa_t, set_close_action, void,
299 private_child_sa_t *this, action_t action)
300 {
301 this->close_action = action;
302 }
303
304 METHOD(child_sa_t, get_close_action, action_t,
305 private_child_sa_t *this)
306 {
307 return this->close_action;
308 }
309
310 METHOD(child_sa_t, set_dpd_action, void,
311 private_child_sa_t *this, action_t action)
312 {
313 this->dpd_action = action;
314 }
315
316 METHOD(child_sa_t, get_dpd_action, action_t,
317 private_child_sa_t *this)
318 {
319 return this->dpd_action;
320 }
321
322 METHOD(child_sa_t, get_proposal, proposal_t*,
323 private_child_sa_t *this)
324 {
325 return this->proposal;
326 }
327
328 METHOD(child_sa_t, set_proposal, void,
329 private_child_sa_t *this, proposal_t *proposal)
330 {
331 this->proposal = proposal->clone(proposal);
332 }
333
334 METHOD(child_sa_t, get_traffic_selectors, linked_list_t*,
335 private_child_sa_t *this, bool local)
336 {
337 return local ? this->my_ts : this->other_ts;
338 }
339
340 typedef struct policy_enumerator_t policy_enumerator_t;
341
342 /**
343 * Private policy enumerator
344 */
345 struct policy_enumerator_t {
346 /** implements enumerator_t */
347 enumerator_t public;
348 /** enumerator over own TS */
349 enumerator_t *mine;
350 /** enumerator over others TS */
351 enumerator_t *other;
352 /** list of others TS, to recreate enumerator */
353 linked_list_t *list;
354 /** currently enumerating TS for "me" side */
355 traffic_selector_t *ts;
356 };
357
358 METHOD(enumerator_t, policy_enumerate, bool,
359 policy_enumerator_t *this, traffic_selector_t **my_out,
360 traffic_selector_t **other_out)
361 {
362 traffic_selector_t *other_ts;
363
364 while (this->ts || this->mine->enumerate(this->mine, &this->ts))
365 {
366 if (!this->other->enumerate(this->other, &other_ts))
367 { /* end of others list, restart with new of mine */
368 this->other->destroy(this->other);
369 this->other = this->list->create_enumerator(this->list);
370 this->ts = NULL;
371 continue;
372 }
373 if (this->ts->get_type(this->ts) != other_ts->get_type(other_ts))
374 { /* family mismatch */
375 continue;
376 }
377 if (this->ts->get_protocol(this->ts) &&
378 other_ts->get_protocol(other_ts) &&
379 this->ts->get_protocol(this->ts) != other_ts->get_protocol(other_ts))
380 { /* protocol mismatch */
381 continue;
382 }
383 *my_out = this->ts;
384 *other_out = other_ts;
385 return TRUE;
386 }
387 return FALSE;
388 }
389
390 METHOD(enumerator_t, policy_destroy, void,
391 policy_enumerator_t *this)
392 {
393 this->mine->destroy(this->mine);
394 this->other->destroy(this->other);
395 free(this);
396 }
397
398 METHOD(child_sa_t, create_policy_enumerator, enumerator_t*,
399 private_child_sa_t *this)
400 {
401 policy_enumerator_t *e;
402
403 INIT(e,
404 .public = {
405 .enumerate = (void*)_policy_enumerate,
406 .destroy = _policy_destroy,
407 },
408 .mine = this->my_ts->create_enumerator(this->my_ts),
409 .other = this->other_ts->create_enumerator(this->other_ts),
410 .list = this->other_ts,
411 .ts = NULL,
412 );
413
414 return &e->public;
415 }
416
417 /**
418 * update the cached usebytes
419 * returns SUCCESS if the usebytes have changed, FAILED if not or no SPIs
420 * are available, and NOT_SUPPORTED if the kernel interface does not support
421 * querying the usebytes.
422 */
423 static status_t update_usebytes(private_child_sa_t *this, bool inbound)
424 {
425 status_t status = FAILED;
426 u_int64_t bytes, packets;
427
428 if (inbound)
429 {
430 if (this->my_spi)
431 {
432 status = hydra->kernel_interface->query_sa(hydra->kernel_interface,
433 this->other_addr, this->my_addr, this->my_spi,
434 proto_ike2ip(this->protocol), this->mark_in,
435 &bytes, &packets);
436 if (status == SUCCESS)
437 {
438 if (bytes > this->my_usebytes)
439 {
440 this->my_usebytes = bytes;
441 this->my_usepackets = packets;
442 return SUCCESS;
443 }
444 return FAILED;
445 }
446 }
447 }
448 else
449 {
450 if (this->other_spi)
451 {
452 status = hydra->kernel_interface->query_sa(hydra->kernel_interface,
453 this->my_addr, this->other_addr, this->other_spi,
454 proto_ike2ip(this->protocol), this->mark_out,
455 &bytes, &packets);
456 if (status == SUCCESS)
457 {
458 if (bytes > this->other_usebytes)
459 {
460 this->other_usebytes = bytes;
461 this->other_usepackets = packets;
462 return SUCCESS;
463 }
464 return FAILED;
465 }
466 }
467 }
468 return status;
469 }
470
471 /**
472 * updates the cached usetime
473 */
474 static void update_usetime(private_child_sa_t *this, bool inbound)
475 {
476 enumerator_t *enumerator;
477 traffic_selector_t *my_ts, *other_ts;
478 u_int32_t last_use = 0;
479
480 enumerator = create_policy_enumerator(this);
481 while (enumerator->enumerate(enumerator, &my_ts, &other_ts))
482 {
483 u_int32_t in, out, fwd;
484
485 if (inbound)
486 {
487 if (hydra->kernel_interface->query_policy(hydra->kernel_interface,
488 other_ts, my_ts, POLICY_IN, this->mark_in, &in) == SUCCESS)
489 {
490 last_use = max(last_use, in);
491 }
492 if (this->mode != MODE_TRANSPORT)
493 {
494 if (hydra->kernel_interface->query_policy(hydra->kernel_interface,
495 other_ts, my_ts, POLICY_FWD, this->mark_in, &fwd) == SUCCESS)
496 {
497 last_use = max(last_use, fwd);
498 }
499 }
500 }
501 else
502 {
503 if (hydra->kernel_interface->query_policy(hydra->kernel_interface,
504 my_ts, other_ts, POLICY_OUT, this->mark_out, &out) == SUCCESS)
505 {
506 last_use = max(last_use, out);
507 }
508 }
509 }
510 enumerator->destroy(enumerator);
511
512 if (last_use == 0)
513 {
514 return;
515 }
516 if (inbound)
517 {
518 this->my_usetime = last_use;
519 }
520 else
521 {
522 this->other_usetime = last_use;
523 }
524 }
525
526 METHOD(child_sa_t, get_usestats, void,
527 private_child_sa_t *this, bool inbound, time_t *time, u_int64_t *bytes)
528 {
529 if (update_usebytes(this, inbound) != FAILED)
530 {
531 /* there was traffic since last update or the kernel interface
532 * does not support querying the number of usebytes.
533 */
534 update_usetime(this, inbound);
535 }
536 if (time)
537 {
538 *time = inbound ? this->my_usetime : this->other_usetime;
539 }
540 if (bytes)
541 {
542 *bytes = inbound ? this->my_usebytes : this->other_usebytes;
543 }
544 }
545
546 METHOD(child_sa_t, get_mark, mark_t,
547 private_child_sa_t *this, bool inbound)
548 {
549 if (inbound)
550 {
551 return this->mark_in;
552 }
553 return this->mark_out;
554 }
555
556 METHOD(child_sa_t, get_lifetime, time_t,
557 private_child_sa_t *this, bool hard)
558 {
559 return hard ? this->expire_time : this->rekey_time;
560 }
561
562 METHOD(child_sa_t, alloc_spi, u_int32_t,
563 private_child_sa_t *this, protocol_id_t protocol)
564 {
565 if (hydra->kernel_interface->get_spi(hydra->kernel_interface,
566 this->other_addr, this->my_addr,
567 proto_ike2ip(protocol), this->reqid,
568 &this->my_spi) == SUCCESS)
569 {
570 return this->my_spi;
571 }
572 return 0;
573 }
574
575 METHOD(child_sa_t, alloc_cpi, u_int16_t,
576 private_child_sa_t *this)
577 {
578 if (hydra->kernel_interface->get_cpi(hydra->kernel_interface,
579 this->other_addr, this->my_addr,
580 this->reqid, &this->my_cpi) == SUCCESS)
581 {
582 return this->my_cpi;
583 }
584 return 0;
585 }
586
587 METHOD(child_sa_t, install, status_t,
588 private_child_sa_t *this, chunk_t encr, chunk_t integ, u_int32_t spi,
589 u_int16_t cpi, bool inbound, bool tfcv3, linked_list_t *my_ts,
590 linked_list_t *other_ts)
591 {
592 u_int16_t enc_alg = ENCR_UNDEFINED, int_alg = AUTH_UNDEFINED, size;
593 u_int16_t esn = NO_EXT_SEQ_NUMBERS;
594 traffic_selector_t *src_ts = NULL, *dst_ts = NULL;
595 time_t now;
596 lifetime_cfg_t *lifetime;
597 u_int32_t tfc = 0;
598 host_t *src, *dst;
599 status_t status;
600 bool update = FALSE;
601
602 /* now we have to decide which spi to use. Use self allocated, if "in",
603 * or the one in the proposal, if not "in" (others). Additionally,
604 * source and dest host switch depending on the role */
605 if (inbound)
606 {
607 dst = this->my_addr;
608 src = this->other_addr;
609 if (this->my_spi == spi)
610 { /* alloc_spi has been called, do an SA update */
611 update = TRUE;
612 }
613 this->my_spi = spi;
614 this->my_cpi = cpi;
615 }
616 else
617 {
618 src = this->my_addr;
619 dst = this->other_addr;
620 this->other_spi = spi;
621 this->other_cpi = cpi;
622
623 if (tfcv3)
624 {
625 tfc = this->config->get_tfc(this->config);
626 }
627 }
628
629 DBG2(DBG_CHD, "adding %s %N SA", inbound ? "inbound" : "outbound",
630 protocol_id_names, this->protocol);
631
632 /* send SA down to the kernel */
633 DBG2(DBG_CHD, " SPI 0x%.8x, src %H dst %H", ntohl(spi), src, dst);
634
635 this->proposal->get_algorithm(this->proposal, ENCRYPTION_ALGORITHM,
636 &enc_alg, &size);
637 this->proposal->get_algorithm(this->proposal, INTEGRITY_ALGORITHM,
638 &int_alg, &size);
639 this->proposal->get_algorithm(this->proposal, EXTENDED_SEQUENCE_NUMBERS,
640 &esn, NULL);
641
642 lifetime = this->config->get_lifetime(this->config);
643
644 now = time_monotonic(NULL);
645 if (lifetime->time.rekey)
646 {
647 if (this->rekey_time)
648 {
649 this->rekey_time = min(this->rekey_time, now + lifetime->time.rekey);
650 }
651 else
652 {
653 this->rekey_time = now + lifetime->time.rekey;
654 }
655 }
656 if (lifetime->time.life)
657 {
658 this->expire_time = now + lifetime->time.life;
659 }
660
661 if (!lifetime->time.jitter && !inbound)
662 { /* avoid triggering multiple rekey events */
663 lifetime->time.rekey = 0;
664 }
665
666 if (this->mode == MODE_BEET || this->mode == MODE_TRANSPORT)
667 {
668 /* BEET requires the bound address from the traffic selectors.
669 * TODO: We add just the first traffic selector for now, as the
670 * kernel accepts a single TS per SA only */
671 if (inbound)
672 {
673 my_ts->get_first(my_ts, (void**)&dst_ts);
674 other_ts->get_first(other_ts, (void**)&src_ts);
675 }
676 else
677 {
678 my_ts->get_first(my_ts, (void**)&src_ts);
679 other_ts->get_first(other_ts, (void**)&dst_ts);
680 }
681 }
682
683 status = hydra->kernel_interface->add_sa(hydra->kernel_interface,
684 src, dst, spi, proto_ike2ip(this->protocol), this->reqid,
685 inbound ? this->mark_in : this->mark_out, tfc,
686 lifetime, enc_alg, encr, int_alg, integ, this->mode,
687 this->ipcomp, cpi, this->encap, esn, update, src_ts, dst_ts);
688
689 free(lifetime);
690
691 return status;
692 }
693
694 /**
695 * Install 3 policies: out, in and forward
696 */
697 static status_t install_policies_internal(private_child_sa_t *this,
698 host_t *my_addr, host_t *other_addr, traffic_selector_t *my_ts,
699 traffic_selector_t *other_ts, ipsec_sa_cfg_t *my_sa,
700 ipsec_sa_cfg_t *other_sa, policy_type_t type, policy_priority_t priority)
701 {
702 status_t status = SUCCESS;
703 status |= hydra->kernel_interface->add_policy(hydra->kernel_interface,
704 my_addr, other_addr, my_ts, other_ts,
705 POLICY_OUT, type, other_sa,
706 this->mark_out, priority);
707
708 status |= hydra->kernel_interface->add_policy(hydra->kernel_interface,
709 other_addr, my_addr, other_ts, my_ts,
710 POLICY_IN, type, my_sa,
711 this->mark_in, priority);
712 if (this->mode != MODE_TRANSPORT)
713 {
714 status |= hydra->kernel_interface->add_policy(hydra->kernel_interface,
715 other_addr, my_addr, other_ts, my_ts,
716 POLICY_FWD, type, my_sa,
717 this->mark_in, priority);
718 }
719 return status;
720 }
721
722 /**
723 * Delete 3 policies: out, in and forward
724 */
725 static void del_policies_internal(private_child_sa_t *this,
726 traffic_selector_t *my_ts, traffic_selector_t *other_ts,
727 policy_priority_t priority)
728 {
729 hydra->kernel_interface->del_policy(hydra->kernel_interface,
730 my_ts, other_ts, POLICY_OUT, this->reqid,
731 this->mark_out, priority);
732 hydra->kernel_interface->del_policy(hydra->kernel_interface,
733 other_ts, my_ts, POLICY_IN, this->reqid,
734 this->mark_in, priority);
735 if (this->mode != MODE_TRANSPORT)
736 {
737 hydra->kernel_interface->del_policy(hydra->kernel_interface,
738 other_ts, my_ts, POLICY_FWD, this->reqid,
739 this->mark_in, priority);
740 }
741 }
742
743 METHOD(child_sa_t, add_policies, status_t,
744 private_child_sa_t *this, linked_list_t *my_ts_list,
745 linked_list_t *other_ts_list)
746 {
747 enumerator_t *enumerator;
748 traffic_selector_t *my_ts, *other_ts;
749 status_t status = SUCCESS;
750
751 /* apply traffic selectors */
752 enumerator = my_ts_list->create_enumerator(my_ts_list);
753 while (enumerator->enumerate(enumerator, &my_ts))
754 {
755 this->my_ts->insert_last(this->my_ts, my_ts->clone(my_ts));
756 }
757 enumerator->destroy(enumerator);
758 enumerator = other_ts_list->create_enumerator(other_ts_list);
759 while (enumerator->enumerate(enumerator, &other_ts))
760 {
761 this->other_ts->insert_last(this->other_ts, other_ts->clone(other_ts));
762 }
763 enumerator->destroy(enumerator);
764
765 if (this->config->install_policy(this->config))
766 {
767 policy_priority_t priority;
768 ipsec_sa_cfg_t my_sa = {
769 .mode = this->mode,
770 .reqid = this->reqid,
771 .ipcomp = {
772 .transform = this->ipcomp,
773 },
774 }, other_sa = my_sa;
775
776 my_sa.ipcomp.cpi = this->my_cpi;
777 other_sa.ipcomp.cpi = this->other_cpi;
778
779 if (this->protocol == PROTO_ESP)
780 {
781 my_sa.esp.use = TRUE;
782 my_sa.esp.spi = this->my_spi;
783 other_sa.esp.use = TRUE;
784 other_sa.esp.spi = this->other_spi;
785 }
786 else
787 {
788 my_sa.ah.use = TRUE;
789 my_sa.ah.spi = this->my_spi;
790 other_sa.ah.use = TRUE;
791 other_sa.ah.spi = this->other_spi;
792 }
793
794 /* if we're not in state CHILD_INSTALLING (i.e. if there is no SAD
795 * entry) we install a trap policy */
796 this->trap = this->state == CHILD_CREATED;
797 priority = this->trap ? POLICY_PRIORITY_ROUTED
798 : POLICY_PRIORITY_DEFAULT;
799
800 /* enumerate pairs of traffic selectors */
801 enumerator = create_policy_enumerator(this);
802 while (enumerator->enumerate(enumerator, &my_ts, &other_ts))
803 {
804 /* install outbound drop policy to avoid packets leaving unencrypted
805 * when updating policies */
806 if (priority == POLICY_PRIORITY_DEFAULT)
807 {
808 status |= install_policies_internal(this, this->my_addr,
809 this->other_addr, my_ts, other_ts,
810 &my_sa, &other_sa, POLICY_DROP,
811 POLICY_PRIORITY_FALLBACK);
812 }
813
814 /* install policies */
815 status |= install_policies_internal(this, this->my_addr,
816 this->other_addr, my_ts, other_ts,
817 &my_sa, &other_sa, POLICY_IPSEC, priority);
818
819 if (status != SUCCESS)
820 {
821 break;
822 }
823 }
824 enumerator->destroy(enumerator);
825 }
826
827 if (status == SUCCESS && this->trap)
828 {
829 set_state(this, CHILD_ROUTED);
830 }
831 return status;
832 }
833
834 /**
835 * Callback to reinstall a virtual IP
836 */
837 static void reinstall_vip(host_t *vip, host_t *me)
838 {
839 char *iface;
840
841 if (hydra->kernel_interface->get_interface(hydra->kernel_interface,
842 me, &iface))
843 {
844 hydra->kernel_interface->del_ip(hydra->kernel_interface, vip, -1, TRUE);
845 hydra->kernel_interface->add_ip(hydra->kernel_interface, vip, -1, iface);
846 free(iface);
847 }
848 }
849
850 METHOD(child_sa_t, update, status_t,
851 private_child_sa_t *this, host_t *me, host_t *other, linked_list_t *vips,
852 bool encap)
853 {
854 child_sa_state_t old;
855 bool transport_proxy_mode;
856
857 /* anything changed at all? */
858 if (me->equals(me, this->my_addr) &&
859 other->equals(other, this->other_addr) && this->encap == encap)
860 {
861 return SUCCESS;
862 }
863
864 old = this->state;
865 set_state(this, CHILD_UPDATING);
866 transport_proxy_mode = this->config->use_proxy_mode(this->config) &&
867 this->mode == MODE_TRANSPORT;
868
869 if (!transport_proxy_mode)
870 {
871 /* update our (initiator) SA */
872 if (this->my_spi)
873 {
874 if (hydra->kernel_interface->update_sa(hydra->kernel_interface,
875 this->my_spi, proto_ike2ip(this->protocol),
876 this->ipcomp != IPCOMP_NONE ? this->my_cpi : 0,
877 this->other_addr, this->my_addr, other, me,
878 this->encap, encap, this->mark_in) == NOT_SUPPORTED)
879 {
880 return NOT_SUPPORTED;
881 }
882 }
883
884 /* update his (responder) SA */
885 if (this->other_spi)
886 {
887 if (hydra->kernel_interface->update_sa(hydra->kernel_interface,
888 this->other_spi, proto_ike2ip(this->protocol),
889 this->ipcomp != IPCOMP_NONE ? this->other_cpi : 0,
890 this->my_addr, this->other_addr, me, other,
891 this->encap, encap, this->mark_out) == NOT_SUPPORTED)
892 {
893 return NOT_SUPPORTED;
894 }
895 }
896 }
897
898 if (this->config->install_policy(this->config))
899 {
900 ipsec_sa_cfg_t my_sa = {
901 .mode = this->mode,
902 .reqid = this->reqid,
903 .ipcomp = {
904 .transform = this->ipcomp,
905 },
906 }, other_sa = my_sa;
907
908 my_sa.ipcomp.cpi = this->my_cpi;
909 other_sa.ipcomp.cpi = this->other_cpi;
910
911 if (this->protocol == PROTO_ESP)
912 {
913 my_sa.esp.use = TRUE;
914 my_sa.esp.spi = this->my_spi;
915 other_sa.esp.use = TRUE;
916 other_sa.esp.spi = this->other_spi;
917 }
918 else
919 {
920 my_sa.ah.use = TRUE;
921 my_sa.ah.spi = this->my_spi;
922 other_sa.ah.use = TRUE;
923 other_sa.ah.spi = this->other_spi;
924 }
925
926 /* update policies */
927 if (!me->ip_equals(me, this->my_addr) ||
928 !other->ip_equals(other, this->other_addr))
929 {
930 enumerator_t *enumerator;
931 traffic_selector_t *my_ts, *other_ts;
932
933 /* always use high priorities, as hosts getting updated are INSTALLED */
934 enumerator = create_policy_enumerator(this);
935 while (enumerator->enumerate(enumerator, &my_ts, &other_ts))
936 {
937 traffic_selector_t *old_my_ts = NULL, *old_other_ts = NULL;
938 /* remove old policies first */
939 del_policies_internal(this, my_ts, other_ts,
940 POLICY_PRIORITY_DEFAULT);
941
942 /* check if we have to update a "dynamic" traffic selector */
943 if (!me->ip_equals(me, this->my_addr) &&
944 my_ts->is_host(my_ts, this->my_addr))
945 {
946 old_my_ts = my_ts->clone(my_ts);
947 my_ts->set_address(my_ts, me);
948 }
949 if (!other->ip_equals(other, this->other_addr) &&
950 other_ts->is_host(other_ts, this->other_addr))
951 {
952 old_other_ts = other_ts->clone(other_ts);
953 other_ts->set_address(other_ts, other);
954 }
955
956 /* we reinstall the virtual IP to handle interface roaming
957 * correctly */
958 vips->invoke_function(vips, (void*)reinstall_vip, me);
959
960 /* reinstall updated policies */
961 install_policies_internal(this, me, other, my_ts, other_ts,
962 &my_sa, &other_sa, POLICY_IPSEC,
963 POLICY_PRIORITY_DEFAULT);
964
965 /* update fallback policies after the new policy is in place */
966 if (old_my_ts || old_other_ts)
967 {
968 del_policies_internal(this, old_my_ts ?: my_ts,
969 old_other_ts ?: other_ts,
970 POLICY_PRIORITY_FALLBACK);
971 install_policies_internal(this, me, other, my_ts, other_ts,
972 &my_sa, &other_sa, POLICY_DROP,
973 POLICY_PRIORITY_FALLBACK);
974 DESTROY_IF(old_my_ts);
975 DESTROY_IF(old_other_ts);
976 }
977 }
978 enumerator->destroy(enumerator);
979 }
980 }
981
982 if (!transport_proxy_mode)
983 {
984 /* apply hosts */
985 if (!me->equals(me, this->my_addr))
986 {
987 this->my_addr->destroy(this->my_addr);
988 this->my_addr = me->clone(me);
989 }
990 if (!other->equals(other, this->other_addr))
991 {
992 this->other_addr->destroy(this->other_addr);
993 this->other_addr = other->clone(other);
994 }
995 }
996
997 this->encap = encap;
998 set_state(this, old);
999
1000 return SUCCESS;
1001 }
1002
1003 METHOD(child_sa_t, destroy, void,
1004 private_child_sa_t *this)
1005 {
1006 enumerator_t *enumerator;
1007 traffic_selector_t *my_ts, *other_ts;
1008 policy_priority_t priority;
1009
1010 priority = this->trap ? POLICY_PRIORITY_ROUTED : POLICY_PRIORITY_DEFAULT;
1011
1012 set_state(this, CHILD_DESTROYING);
1013
1014 /* delete SAs in the kernel, if they are set up */
1015 if (this->my_spi)
1016 {
1017 /* if CHILD was not established, use PROTO_ESP used during alloc_spi().
1018 * TODO: For AH support, we have to store protocol specific SPI.s */
1019 if (this->protocol == PROTO_NONE)
1020 {
1021 this->protocol = PROTO_ESP;
1022 }
1023 hydra->kernel_interface->del_sa(hydra->kernel_interface,
1024 this->other_addr, this->my_addr, this->my_spi,
1025 proto_ike2ip(this->protocol), this->my_cpi,
1026 this->mark_in);
1027 }
1028 if (this->other_spi)
1029 {
1030 hydra->kernel_interface->del_sa(hydra->kernel_interface,
1031 this->my_addr, this->other_addr, this->other_spi,
1032 proto_ike2ip(this->protocol), this->other_cpi,
1033 this->mark_out);
1034 }
1035
1036 if (this->config->install_policy(this->config))
1037 {
1038 /* delete all policies in the kernel */
1039 enumerator = create_policy_enumerator(this);
1040 while (enumerator->enumerate(enumerator, &my_ts, &other_ts))
1041 {
1042 del_policies_internal(this, my_ts, other_ts, priority);
1043 if (priority == POLICY_PRIORITY_DEFAULT)
1044 {
1045 del_policies_internal(this, my_ts, other_ts,
1046 POLICY_PRIORITY_FALLBACK);
1047 }
1048 }
1049 enumerator->destroy(enumerator);
1050 }
1051
1052 this->my_ts->destroy_offset(this->my_ts, offsetof(traffic_selector_t, destroy));
1053 this->other_ts->destroy_offset(this->other_ts, offsetof(traffic_selector_t, destroy));
1054 this->my_addr->destroy(this->my_addr);
1055 this->other_addr->destroy(this->other_addr);
1056 DESTROY_IF(this->proposal);
1057 this->config->destroy(this->config);
1058 free(this);
1059 }
1060
1061 /**
1062 * Described in header.
1063 */
1064 child_sa_t * child_sa_create(host_t *me, host_t* other,
1065 child_cfg_t *config, u_int32_t rekey, bool encap)
1066 {
1067 static u_int32_t reqid = 0;
1068 private_child_sa_t *this;
1069
1070 INIT(this,
1071 .public = {
1072 .get_name = _get_name,
1073 .get_reqid = _get_reqid,
1074 .get_config = _get_config,
1075 .get_state = _get_state,
1076 .set_state = _set_state,
1077 .get_spi = _get_spi,
1078 .get_cpi = _get_cpi,
1079 .get_protocol = _get_protocol,
1080 .set_protocol = _set_protocol,
1081 .get_mode = _get_mode,
1082 .set_mode = _set_mode,
1083 .get_proposal = _get_proposal,
1084 .set_proposal = _set_proposal,
1085 .get_lifetime = _get_lifetime,
1086 .get_usestats = _get_usestats,
1087 .get_mark = _get_mark,
1088 .has_encap = _has_encap,
1089 .get_ipcomp = _get_ipcomp,
1090 .set_ipcomp = _set_ipcomp,
1091 .get_close_action = _get_close_action,
1092 .set_close_action = _set_close_action,
1093 .get_dpd_action = _get_dpd_action,
1094 .set_dpd_action = _set_dpd_action,
1095 .alloc_spi = _alloc_spi,
1096 .alloc_cpi = _alloc_cpi,
1097 .install = _install,
1098 .update = _update,
1099 .add_policies = _add_policies,
1100 .get_traffic_selectors = _get_traffic_selectors,
1101 .create_policy_enumerator = _create_policy_enumerator,
1102 .destroy = _destroy,
1103 },
1104 .my_addr = me->clone(me),
1105 .other_addr = other->clone(other),
1106 .encap = encap,
1107 .ipcomp = IPCOMP_NONE,
1108 .state = CHILD_CREATED,
1109 .my_ts = linked_list_create(),
1110 .other_ts = linked_list_create(),
1111 .protocol = PROTO_NONE,
1112 .mode = MODE_TUNNEL,
1113 .close_action = config->get_close_action(config),
1114 .dpd_action = config->get_dpd_action(config),
1115 .reqid = config->get_reqid(config),
1116 .mark_in = config->get_mark(config, TRUE),
1117 .mark_out = config->get_mark(config, FALSE),
1118 );
1119
1120 this->config = config;
1121 config->get_ref(config);
1122
1123 if (!this->reqid)
1124 {
1125 /* reuse old reqid if we are rekeying an existing CHILD_SA */
1126 this->reqid = rekey ? rekey : ++reqid;
1127 }
1128
1129 if (this->mark_in.value == MARK_REQID)
1130 {
1131 this->mark_in.value = this->reqid;
1132 }
1133 if (this->mark_out.value == MARK_REQID)
1134 {
1135 this->mark_out.value = this->reqid;
1136 }
1137
1138 /* MIPv6 proxy transport mode sets SA endpoints to TS hosts */
1139 if (config->get_mode(config) == MODE_TRANSPORT &&
1140 config->use_proxy_mode(config))
1141 {
1142 ts_type_t type;
1143 int family;
1144 chunk_t addr;
1145 host_t *host;
1146 enumerator_t *enumerator;
1147 linked_list_t *my_ts_list, *other_ts_list, *list;
1148 traffic_selector_t *my_ts, *other_ts;
1149
1150 this->mode = MODE_TRANSPORT;
1151
1152 list = linked_list_create_with_items(me, NULL);
1153 my_ts_list = config->get_traffic_selectors(config, TRUE, NULL, list);
1154 list->destroy(list);
1155 enumerator = my_ts_list->create_enumerator(my_ts_list);
1156 if (enumerator->enumerate(enumerator, &my_ts))
1157 {
1158 if (my_ts->is_host(my_ts, NULL) &&
1159 !my_ts->is_host(my_ts, this->my_addr))
1160 {
1161 type = my_ts->get_type(my_ts);
1162 family = (type == TS_IPV4_ADDR_RANGE) ? AF_INET : AF_INET6;
1163 addr = my_ts->get_from_address(my_ts);
1164 host = host_create_from_chunk(family, addr, 0);
1165 free(addr.ptr);
1166 DBG1(DBG_CHD, "my address: %H is a transport mode proxy for %H",
1167 this->my_addr, host);
1168 this->my_addr->destroy(this->my_addr);
1169 this->my_addr = host;
1170 }
1171 }
1172 enumerator->destroy(enumerator);
1173 my_ts_list->destroy_offset(my_ts_list, offsetof(traffic_selector_t, destroy));
1174
1175 list = linked_list_create_with_items(other, NULL);
1176 other_ts_list = config->get_traffic_selectors(config, FALSE, NULL, list);
1177 list->destroy(list);
1178 enumerator = other_ts_list->create_enumerator(other_ts_list);
1179 if (enumerator->enumerate(enumerator, &other_ts))
1180 {
1181 if (other_ts->is_host(other_ts, NULL) &&
1182 !other_ts->is_host(other_ts, this->other_addr))
1183 {
1184 type = other_ts->get_type(other_ts);
1185 family = (type == TS_IPV4_ADDR_RANGE) ? AF_INET : AF_INET6;
1186 addr = other_ts->get_from_address(other_ts);
1187 host = host_create_from_chunk(family, addr, 0);
1188 free(addr.ptr);
1189 DBG1(DBG_CHD, "other address: %H is a transport mode proxy for %H",
1190 this->other_addr, host);
1191 this->other_addr->destroy(this->other_addr);
1192 this->other_addr = host;
1193 }
1194 }
1195 enumerator->destroy(enumerator);
1196 other_ts_list->destroy_offset(other_ts_list, offsetof(traffic_selector_t, destroy));
1197 }
1198
1199 return &this->public;
1200 }