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1 /* $NetBSD: print-ah.c,v 1.4 1996/05/20 00:41:16 fvdl Exp $ */
2
3 /*
4 * Copyright (c) 1988, 1989, 1990, 1991, 1992, 1993, 1994
5 * The Regents of the University of California. All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that: (1) source code distributions
9 * retain the above copyright notice and this paragraph in its entirety, (2)
10 * distributions including binary code include the above copyright notice and
11 * this paragraph in its entirety in the documentation or other materials
12 * provided with the distribution, and (3) all advertising materials mentioning
13 * features or use of this software display the following acknowledgement:
14 * ``This product includes software developed by the University of California,
15 * Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
16 * the University nor the names of its contributors may be used to endorse
17 * or promote products derived from this software without specific prior
18 * written permission.
19 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
20 * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
21 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
22 */
23
24 /* \summary: IPSEC Encapsulating Security Payload (ESP) printer */
25
26 #ifdef HAVE_CONFIG_H
27 #include <config.h>
28 #endif
29
30 #include "netdissect-stdinc.h"
31
32 #include <string.h>
33 #include <stdlib.h>
34
35 /* Any code in this file that depends on HAVE_LIBCRYPTO depends on
36 * HAVE_OPENSSL_EVP_H too. Undefining the former when the latter isn't defined
37 * is the simplest way of handling the dependency.
38 */
39 #ifdef HAVE_LIBCRYPTO
40 #ifdef HAVE_OPENSSL_EVP_H
41 #include <openssl/evp.h>
42 #else
43 #undef HAVE_LIBCRYPTO
44 #endif
45 #endif
46
47 #include "netdissect.h"
48 #include "strtoaddr.h"
49 #include "extract.h"
50
51 #include "ascii_strcasecmp.h"
52
53 #include "ip.h"
54 #include "ip6.h"
55
56 /*
57 * Copyright (C) 1995, 1996, 1997, and 1998 WIDE Project.
58 * All rights reserved.
59 *
60 * Redistribution and use in source and binary forms, with or without
61 * modification, are permitted provided that the following conditions
62 * are met:
63 * 1. Redistributions of source code must retain the above copyright
64 * notice, this list of conditions and the following disclaimer.
65 * 2. Redistributions in binary form must reproduce the above copyright
66 * notice, this list of conditions and the following disclaimer in the
67 * documentation and/or other materials provided with the distribution.
68 * 3. Neither the name of the project nor the names of its contributors
69 * may be used to endorse or promote products derived from this software
70 * without specific prior written permission.
71 *
72 * THIS SOFTWARE IS PROVIDED BY THE PROJECT AND CONTRIBUTORS ``AS IS'' AND
73 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
74 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
75 * ARE DISCLAIMED. IN NO EVENT SHALL THE PROJECT OR CONTRIBUTORS BE LIABLE
76 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
77 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
78 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
79 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
80 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
81 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
82 * SUCH DAMAGE.
83 */
84
85 /*
86 * RFC1827/2406 Encapsulated Security Payload.
87 */
88
89 struct newesp {
90 nd_uint32_t esp_spi; /* ESP */
91 nd_uint32_t esp_seq; /* Sequence number */
92 /*variable size*/ /* (IV and) Payload data */
93 /*variable size*/ /* padding */
94 /*8bit*/ /* pad size */
95 /*8bit*/ /* next header */
96 /*8bit*/ /* next header */
97 /*variable size, 32bit bound*/ /* Authentication data */
98 };
99
100 #ifdef HAVE_LIBCRYPTO
101 union inaddr_u {
102 struct in_addr in4;
103 struct in6_addr in6;
104 };
105 struct sa_list {
106 struct sa_list *next;
107 u_int daddr_version;
108 union inaddr_u daddr;
109 uint32_t spi; /* if == 0, then IKEv2 */
110 int initiator;
111 u_char spii[8]; /* for IKEv2 */
112 u_char spir[8];
113 const EVP_CIPHER *evp;
114 int ivlen;
115 int authlen;
116 u_char authsecret[256];
117 int authsecret_len;
118 u_char secret[256]; /* is that big enough for all secrets? */
119 int secretlen;
120 };
121
122 #ifndef HAVE_EVP_CIPHER_CTX_NEW
123 /*
124 * Allocate an EVP_CIPHER_CTX.
125 * Used if we have an older version of OpenSSL that doesn't provide
126 * routines to allocate and free them.
127 */
128 static EVP_CIPHER_CTX *
129 EVP_CIPHER_CTX_new(void)
130 {
131 EVP_CIPHER_CTX *ctx;
132
133 ctx = malloc(sizeof(*ctx));
134 if (ctx == NULL)
135 return (NULL);
136 memset(ctx, 0, sizeof(*ctx));
137 return (ctx);
138 }
139
140 static void
141 EVP_CIPHER_CTX_free(EVP_CIPHER_CTX *ctx)
142 {
143 EVP_CIPHER_CTX_cleanup(ctx);
144 free(ctx);
145 }
146 #endif
147
148 #ifdef HAVE_EVP_CIPHERINIT_EX
149 /*
150 * Initialize the cipher by calling EVP_CipherInit_ex(), because
151 * calling EVP_CipherInit() will reset the cipher context, clearing
152 * the cipher, so calling it twice, with the second call having a
153 * null cipher, will clear the already-set cipher. EVP_CipherInit_ex(),
154 * however, won't reset the cipher context, so you can use it to specify
155 * the IV oin a second call after a first call to EVP_CipherInit_ex()
156 * to set the cipher and the key.
157 *
158 * XXX - is there some reason why we need to make two calls?
159 */
160 static int
161 set_cipher_parameters(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,
162 const unsigned char *key,
163 const unsigned char *iv, int enc)
164 {
165 return EVP_CipherInit_ex(ctx, cipher, NULL, key, iv, enc);
166 }
167 #else
168 /*
169 * Initialize the cipher by calling EVP_CipherInit(), because we don't
170 * have EVP_CipherInit_ex(); we rely on it not trashing the context.
171 */
172 static int
173 set_cipher_parameters(EVP_CIPHER_CTX *ctx, const EVP_CIPHER *cipher,
174 const unsigned char *key,
175 const unsigned char *iv, int enc)
176 {
177 return EVP_CipherInit(ctx, cipher, key, iv, enc);
178 }
179 #endif
180
181 /*
182 * this will adjust ndo_packetp and ndo_snapend to new buffer!
183 */
184 USES_APPLE_DEPRECATED_API
185 int esp_print_decrypt_buffer_by_ikev2(netdissect_options *ndo,
186 int initiator,
187 const u_char spii[8],
188 const u_char spir[8],
189 const u_char *buf, const u_char *end)
190 {
191 struct sa_list *sa;
192 const u_char *iv;
193 unsigned int len;
194 EVP_CIPHER_CTX *ctx;
195 unsigned int block_size, output_buffer_size;
196 u_char *output_buffer;
197
198 /* initiator arg is any non-zero value */
199 if(initiator) initiator=1;
200
201 /* see if we can find the SA, and if so, decode it */
202 for (sa = ndo->ndo_sa_list_head; sa != NULL; sa = sa->next) {
203 if (sa->spi == 0
204 && initiator == sa->initiator
205 && memcmp(spii, sa->spii, 8) == 0
206 && memcmp(spir, sa->spir, 8) == 0)
207 break;
208 }
209
210 if(sa == NULL) return 0;
211 if(sa->evp == NULL) return 0;
212
213 /*
214 * remove authenticator, and see if we still have something to
215 * work with
216 */
217 end = end - sa->authlen;
218 iv = buf;
219 buf = buf + sa->ivlen;
220 len = end-buf;
221
222 if(end <= buf) return 0;
223
224 ctx = EVP_CIPHER_CTX_new();
225 if (ctx == NULL)
226 return 0;
227 if (set_cipher_parameters(ctx, sa->evp, sa->secret, NULL, 0) < 0)
228 (*ndo->ndo_warning)(ndo, "espkey init failed");
229 set_cipher_parameters(ctx, NULL, NULL, iv, 0);
230 /*
231 * Allocate a buffer for the decrypted data.
232 * The output buffer must be separate from the input buffer, and
233 * its size must be a multiple of the cipher block size.
234 */
235 block_size = (unsigned int)EVP_CIPHER_CTX_block_size(ctx);
236 output_buffer_size = len + (block_size - len % block_size);
237 output_buffer = (u_char *)malloc(output_buffer_size);
238 if (output_buffer == NULL) {
239 (*ndo->ndo_error)(ndo, S_ERR_ND_MEM_ALLOC,
240 "can't allocate memory for decryption buffer");
241 EVP_CIPHER_CTX_free(ctx);
242 return 0;
243 }
244 EVP_Cipher(ctx, output_buffer, buf, len);
245 EVP_CIPHER_CTX_free(ctx);
246
247 /*
248 * XXX - of course this is wrong, because buf is a const buffer,
249 * but changing this would require a more complicated fix.
250 */
251 memcpy(buf, output_buffer, len);
252 free(output_buffer);
253
254 ndo->ndo_packetp = buf;
255 ndo->ndo_snapend = end;
256
257 return 1;
258 }
259 USES_APPLE_RST
260
261 static void esp_print_addsa(netdissect_options *ndo,
262 struct sa_list *sa, int sa_def)
263 {
264 /* copy the "sa" */
265
266 struct sa_list *nsa;
267
268 nsa = (struct sa_list *)malloc(sizeof(struct sa_list));
269 if (nsa == NULL)
270 (*ndo->ndo_error)(ndo, S_ERR_ND_MEM_ALLOC,
271 "esp_print_addsa: malloc");
272
273 *nsa = *sa;
274
275 if (sa_def)
276 ndo->ndo_sa_default = nsa;
277
278 nsa->next = ndo->ndo_sa_list_head;
279 ndo->ndo_sa_list_head = nsa;
280 }
281
282
283 static u_int hexdigit(netdissect_options *ndo, char hex)
284 {
285 if (hex >= '0' && hex <= '9')
286 return (hex - '0');
287 else if (hex >= 'A' && hex <= 'F')
288 return (hex - 'A' + 10);
289 else if (hex >= 'a' && hex <= 'f')
290 return (hex - 'a' + 10);
291 else {
292 (*ndo->ndo_error)(ndo, S_ERR_ND_ESP_SECRET,
293 "invalid hex digit %c in espsecret\n", hex);
294 return 0;
295 }
296 }
297
298 static u_int hex2byte(netdissect_options *ndo, char *hexstring)
299 {
300 u_int byte;
301
302 byte = (hexdigit(ndo, hexstring[0]) << 4) + hexdigit(ndo, hexstring[1]);
303 return byte;
304 }
305
306 /*
307 * returns size of binary, 0 on failure.
308 */
309 static
310 int espprint_decode_hex(netdissect_options *ndo,
311 u_char *binbuf, unsigned int binbuf_len,
312 char *hex)
313 {
314 unsigned int len;
315 int i;
316
317 len = strlen(hex) / 2;
318
319 if (len > binbuf_len) {
320 (*ndo->ndo_warning)(ndo, "secret is too big: %u\n", len);
321 return 0;
322 }
323
324 i = 0;
325 while (hex[0] != '\0' && hex[1]!='\0') {
326 binbuf[i] = hex2byte(ndo, hex);
327 hex += 2;
328 i++;
329 }
330
331 return i;
332 }
333
334 /*
335 * decode the form: SPINUM@IP <tab> ALGONAME:0xsecret
336 */
337
338 USES_APPLE_DEPRECATED_API
339 static int
340 espprint_decode_encalgo(netdissect_options *ndo,
341 char *decode, struct sa_list *sa)
342 {
343 size_t i;
344 const EVP_CIPHER *evp;
345 int authlen = 0;
346 char *colon, *p;
347
348 colon = strchr(decode, ':');
349 if (colon == NULL) {
350 (*ndo->ndo_warning)(ndo, "failed to decode espsecret: %s\n", decode);
351 return 0;
352 }
353 *colon = '\0';
354
355 if (strlen(decode) > strlen("-hmac96") &&
356 !strcmp(decode + strlen(decode) - strlen("-hmac96"),
357 "-hmac96")) {
358 p = strstr(decode, "-hmac96");
359 *p = '\0';
360 authlen = 12;
361 }
362 if (strlen(decode) > strlen("-cbc") &&
363 !strcmp(decode + strlen(decode) - strlen("-cbc"), "-cbc")) {
364 p = strstr(decode, "-cbc");
365 *p = '\0';
366 }
367 evp = EVP_get_cipherbyname(decode);
368
369 if (!evp) {
370 (*ndo->ndo_warning)(ndo, "failed to find cipher algo %s\n", decode);
371 sa->evp = NULL;
372 sa->authlen = 0;
373 sa->ivlen = 0;
374 return 0;
375 }
376
377 sa->evp = evp;
378 sa->authlen = authlen;
379 sa->ivlen = EVP_CIPHER_iv_length(evp);
380
381 colon++;
382 if (colon[0] == '0' && colon[1] == 'x') {
383 /* decode some hex! */
384
385 colon += 2;
386 sa->secretlen = espprint_decode_hex(ndo, sa->secret, sizeof(sa->secret), colon);
387 if(sa->secretlen == 0) return 0;
388 } else {
389 i = strlen(colon);
390
391 if (i < sizeof(sa->secret)) {
392 memcpy(sa->secret, colon, i);
393 sa->secretlen = i;
394 } else {
395 memcpy(sa->secret, colon, sizeof(sa->secret));
396 sa->secretlen = sizeof(sa->secret);
397 }
398 }
399
400 return 1;
401 }
402 USES_APPLE_RST
403
404 /*
405 * for the moment, ignore the auth algorith, just hard code the authenticator
406 * length. Need to research how openssl looks up HMAC stuff.
407 */
408 static int
409 espprint_decode_authalgo(netdissect_options *ndo,
410 char *decode, struct sa_list *sa)
411 {
412 char *colon;
413
414 colon = strchr(decode, ':');
415 if (colon == NULL) {
416 (*ndo->ndo_warning)(ndo, "failed to decode espsecret: %s\n", decode);
417 return 0;
418 }
419 *colon = '\0';
420
421 if(ascii_strcasecmp(colon,"sha1") == 0 ||
422 ascii_strcasecmp(colon,"md5") == 0) {
423 sa->authlen = 12;
424 }
425 return 1;
426 }
427
428 static void esp_print_decode_ikeline(netdissect_options *ndo, char *line,
429 const char *file, int lineno)
430 {
431 /* it's an IKEv2 secret, store it instead */
432 struct sa_list sa1;
433
434 char *init;
435 char *icookie, *rcookie;
436 int ilen, rlen;
437 char *authkey;
438 char *enckey;
439
440 init = strsep(&line, " \t");
441 icookie = strsep(&line, " \t");
442 rcookie = strsep(&line, " \t");
443 authkey = strsep(&line, " \t");
444 enckey = strsep(&line, " \t");
445
446 /* if any fields are missing */
447 if(!init || !icookie || !rcookie || !authkey || !enckey) {
448 (*ndo->ndo_warning)(ndo, "print_esp: failed to find all fields for ikev2 at %s:%u",
449 file, lineno);
450
451 return;
452 }
453
454 ilen = strlen(icookie);
455 rlen = strlen(rcookie);
456
457 if((init[0]!='I' && init[0]!='R')
458 || icookie[0]!='0' || icookie[1]!='x'
459 || rcookie[0]!='0' || rcookie[1]!='x'
460 || ilen!=18
461 || rlen!=18) {
462 (*ndo->ndo_warning)(ndo, "print_esp: line %s:%u improperly formatted.",
463 file, lineno);
464
465 (*ndo->ndo_warning)(ndo, "init=%s icookie=%s(%u) rcookie=%s(%u)",
466 init, icookie, ilen, rcookie, rlen);
467
468 return;
469 }
470
471 sa1.spi = 0;
472 sa1.initiator = (init[0] == 'I');
473 if(espprint_decode_hex(ndo, sa1.spii, sizeof(sa1.spii), icookie+2)!=8)
474 return;
475
476 if(espprint_decode_hex(ndo, sa1.spir, sizeof(sa1.spir), rcookie+2)!=8)
477 return;
478
479 if(!espprint_decode_encalgo(ndo, enckey, &sa1)) return;
480
481 if(!espprint_decode_authalgo(ndo, authkey, &sa1)) return;
482
483 esp_print_addsa(ndo, &sa1, FALSE);
484 }
485
486 /*
487 *
488 * special form: file /name
489 * causes us to go read from this file instead.
490 *
491 */
492 static void esp_print_decode_onesecret(netdissect_options *ndo, char *line,
493 const char *file, int lineno)
494 {
495 struct sa_list sa1;
496 int sa_def;
497
498 char *spikey;
499 char *decode;
500
501 spikey = strsep(&line, " \t");
502 sa_def = 0;
503 memset(&sa1, 0, sizeof(struct sa_list));
504
505 /* if there is only one token, then it is an algo:key token */
506 if (line == NULL) {
507 decode = spikey;
508 spikey = NULL;
509 /* sa1.daddr.version = 0; */
510 /* memset(&sa1.daddr, 0, sizeof(sa1.daddr)); */
511 /* sa1.spi = 0; */
512 sa_def = 1;
513 } else
514 decode = line;
515
516 if (spikey && ascii_strcasecmp(spikey, "file") == 0) {
517 /* open file and read it */
518 FILE *secretfile;
519 char fileline[1024];
520 int subfile_lineno=0;
521 char *nl;
522 char *filename = line;
523
524 secretfile = fopen(filename, FOPEN_READ_TXT);
525 if (secretfile == NULL) {
526 (*ndo->ndo_error)(ndo, S_ERR_ND_OPEN_FILE,
527 "print_esp: can't open %s: %s\n",
528 filename, strerror(errno));
529 return;
530 }
531
532 while (fgets(fileline, sizeof(fileline)-1, secretfile) != NULL) {
533 subfile_lineno++;
534 /* remove newline from the line */
535 nl = strchr(fileline, '\n');
536 if (nl)
537 *nl = '\0';
538 if (fileline[0] == '#') continue;
539 if (fileline[0] == '\0') continue;
540
541 esp_print_decode_onesecret(ndo, fileline, filename, subfile_lineno);
542 }
543 fclose(secretfile);
544
545 return;
546 }
547
548 if (spikey && ascii_strcasecmp(spikey, "ikev2") == 0) {
549 esp_print_decode_ikeline(ndo, line, file, lineno);
550 return;
551 }
552
553 if (spikey) {
554
555 char *spistr, *foo;
556 uint32_t spino;
557
558 spistr = strsep(&spikey, "@");
559
560 spino = strtoul(spistr, &foo, 0);
561 if (spistr == foo || !spikey) {
562 (*ndo->ndo_warning)(ndo, "print_esp: failed to decode spi# %s\n", foo);
563 return;
564 }
565
566 sa1.spi = spino;
567
568 if (strtoaddr6(spikey, &sa1.daddr.in6) == 1) {
569 sa1.daddr_version = 6;
570 } else if (strtoaddr(spikey, &sa1.daddr.in4) == 1) {
571 sa1.daddr_version = 4;
572 } else {
573 (*ndo->ndo_warning)(ndo, "print_esp: can not decode IP# %s\n", spikey);
574 return;
575 }
576 }
577
578 if (decode) {
579 /* skip any blank spaces */
580 while (isspace((unsigned char)*decode))
581 decode++;
582
583 if(!espprint_decode_encalgo(ndo, decode, &sa1)) {
584 return;
585 }
586 }
587
588 esp_print_addsa(ndo, &sa1, sa_def);
589 }
590
591 USES_APPLE_DEPRECATED_API
592 static void esp_init(netdissect_options *ndo _U_)
593 {
594 /*
595 * 0.9.6 doesn't appear to define OPENSSL_API_COMPAT, so
596 * we check whether it's undefined or it's less than the
597 * value for 1.1.0.
598 */
599 #if !defined(OPENSSL_API_COMPAT) || OPENSSL_API_COMPAT < 0x10100000L
600 OpenSSL_add_all_algorithms();
601 #endif
602 EVP_add_cipher_alias(SN_des_ede3_cbc, "3des");
603 }
604 USES_APPLE_RST
605
606 void esp_print_decodesecret(netdissect_options *ndo)
607 {
608 char *line;
609 char *p;
610 static int initialized = 0;
611
612 if (!initialized) {
613 esp_init(ndo);
614 initialized = 1;
615 }
616
617 p = ndo->ndo_espsecret;
618
619 while (p && p[0] != '\0') {
620 /* pick out the first line or first thing until a comma */
621 if ((line = strsep(&p, "\n,")) == NULL) {
622 line = p;
623 p = NULL;
624 }
625
626 esp_print_decode_onesecret(ndo, line, "cmdline", 0);
627 }
628
629 ndo->ndo_espsecret = NULL;
630 }
631
632 #endif
633
634 #ifdef HAVE_LIBCRYPTO
635 USES_APPLE_DEPRECATED_API
636 #endif
637 int
638 esp_print(netdissect_options *ndo,
639 const u_char *bp, const int length, const u_char *bp2
640 #ifndef HAVE_LIBCRYPTO
641 _U_
642 #endif
643 ,
644 u_int *nhdr
645 #ifndef HAVE_LIBCRYPTO
646 _U_
647 #endif
648 ,
649 u_int *padlen
650 #ifndef HAVE_LIBCRYPTO
651 _U_
652 #endif
653 )
654 {
655 const struct newesp *esp;
656 const u_char *ep;
657 #ifdef HAVE_LIBCRYPTO
658 const struct ip *ip;
659 struct sa_list *sa = NULL;
660 const struct ip6_hdr *ip6 = NULL;
661 int advance;
662 int len;
663 u_char *secret;
664 int ivlen = 0;
665 const u_char *ivoff;
666 const u_char *p;
667 EVP_CIPHER_CTX *ctx;
668 unsigned int block_size, output_buffer_size;
669 u_char *output_buffer;
670 #endif
671
672 esp = (const struct newesp *)bp;
673
674 #ifdef HAVE_LIBCRYPTO
675 secret = NULL;
676 advance = 0;
677 #endif
678
679 #if 0
680 /* keep secret out of a register */
681 p = (u_char *)&secret;
682 #endif
683
684 /* 'ep' points to the end of available data. */
685 ep = ndo->ndo_snapend;
686
687 if ((const u_char *)(esp + 1) >= ep) {
688 ND_PRINT("[|ESP]");
689 goto fail;
690 }
691 ND_PRINT("ESP(spi=0x%08x", EXTRACT_BE_U_4(esp->esp_spi));
692 ND_PRINT(",seq=0x%x)", EXTRACT_BE_U_4(esp->esp_seq));
693 ND_PRINT(", length %u", length);
694
695 #ifndef HAVE_LIBCRYPTO
696 goto fail;
697 #else
698 /* initiailize SAs */
699 if (ndo->ndo_sa_list_head == NULL) {
700 if (!ndo->ndo_espsecret)
701 goto fail;
702
703 esp_print_decodesecret(ndo);
704 }
705
706 if (ndo->ndo_sa_list_head == NULL)
707 goto fail;
708
709 ip = (const struct ip *)bp2;
710 switch (IP_V(ip)) {
711 case 6:
712 ip6 = (const struct ip6_hdr *)bp2;
713 /* we do not attempt to decrypt jumbograms */
714 if (!EXTRACT_BE_U_2(ip6->ip6_plen))
715 goto fail;
716 /* if we can't get nexthdr, we do not need to decrypt it */
717 len = sizeof(struct ip6_hdr) + EXTRACT_BE_U_2(ip6->ip6_plen);
718
719 /* see if we can find the SA, and if so, decode it */
720 for (sa = ndo->ndo_sa_list_head; sa != NULL; sa = sa->next) {
721 if (sa->spi == EXTRACT_BE_U_4(esp->esp_spi) &&
722 sa->daddr_version == 6 &&
723 UNALIGNED_MEMCMP(&sa->daddr.in6, &ip6->ip6_dst,
724 sizeof(nd_ipv6)) == 0) {
725 break;
726 }
727 }
728 break;
729 case 4:
730 /* nexthdr & padding are in the last fragment */
731 if (EXTRACT_BE_U_2(ip->ip_off) & IP_MF)
732 goto fail;
733 len = EXTRACT_BE_U_2(ip->ip_len);
734
735 /* see if we can find the SA, and if so, decode it */
736 for (sa = ndo->ndo_sa_list_head; sa != NULL; sa = sa->next) {
737 if (sa->spi == EXTRACT_BE_U_4(esp->esp_spi) &&
738 sa->daddr_version == 4 &&
739 UNALIGNED_MEMCMP(&sa->daddr.in4, &ip->ip_dst,
740 sizeof(nd_ipv4)) == 0) {
741 break;
742 }
743 }
744 break;
745 default:
746 goto fail;
747 }
748
749 /* if we didn't find the specific one, then look for
750 * an unspecified one.
751 */
752 if (sa == NULL)
753 sa = ndo->ndo_sa_default;
754
755 /* if not found fail */
756 if (sa == NULL)
757 goto fail;
758
759 /* if we can't get nexthdr, we do not need to decrypt it */
760 if (ep - bp2 < len)
761 goto fail;
762 if (ep - bp2 > len) {
763 /* FCS included at end of frame (NetBSD 1.6 or later) */
764 ep = bp2 + len;
765 }
766
767 /* pointer to the IV, if there is one */
768 ivoff = (const u_char *)(esp + 1) + 0;
769 /* length of the IV, if there is one; 0, if there isn't */
770 ivlen = sa->ivlen;
771 secret = sa->secret;
772 ep = ep - sa->authlen;
773
774 if (sa->evp) {
775 ctx = EVP_CIPHER_CTX_new();
776 if (ctx != NULL) {
777 if (set_cipher_parameters(ctx, sa->evp, secret, NULL, 0) < 0)
778 (*ndo->ndo_warning)(ndo, "espkey init failed");
779
780 p = ivoff;
781 set_cipher_parameters(ctx, NULL, NULL, p, 0);
782 len = ep - (p + ivlen);
783
784 /*
785 * Allocate a buffer for the decrypted data.
786 * The output buffer must be separate from the
787 * input buffer, and its size must be a multiple
788 * of the cipher block size.
789 */
790 block_size = (unsigned int)EVP_CIPHER_CTX_block_size(ctx);
791 output_buffer_size = len + (block_size - len % block_size);
792 output_buffer = (u_char *)malloc(output_buffer_size);
793 if (output_buffer == NULL) {
794 (*ndo->ndo_error)(ndo, S_ERR_ND_MEM_ALLOC,
795 "esp_print: malloc decryption buffer");
796 EVP_CIPHER_CTX_free(ctx);
797 return -1;
798 }
799
800 EVP_Cipher(ctx, output_buffer, p + ivlen, len);
801 EVP_CIPHER_CTX_free(ctx);
802 /*
803 * XXX - of course this is wrong, because buf is a
804 * const buffer, but changing this would require a
805 * more complicated fix.
806 */
807 memcpy(p + ivlen, output_buffer, len);
808 free(output_buffer);
809 advance = ivoff - (const u_char *)esp + ivlen;
810 } else
811 advance = sizeof(struct newesp);
812 } else
813 advance = sizeof(struct newesp);
814
815 /* sanity check for pad length */
816 if (ep - bp < EXTRACT_U_1(ep - 2))
817 goto fail;
818
819 if (padlen)
820 *padlen = EXTRACT_U_1(ep - 2) + 2;
821
822 if (nhdr)
823 *nhdr = EXTRACT_U_1(ep - 1);
824
825 ND_PRINT(": ");
826 return advance;
827 #endif
828
829 fail:
830 return -1;
831 }
832 #ifdef HAVE_LIBCRYPTO
833 USES_APPLE_RST
834 #endif
835
836 /*
837 * Local Variables:
838 * c-style: whitesmith
839 * c-basic-offset: 8
840 * End:
841 */