xref: /freebsd/crypto/openssh/kex.c (revision 87569f75a91f298c52a71823c04d41cf53c88889)
1 /*
2  * Copyright (c) 2000, 2001 Markus Friedl.  All rights reserved.
3  *
4  * Redistribution and use in source and binary forms, with or without
5  * modification, are permitted provided that the following conditions
6  * are met:
7  * 1. Redistributions of source code must retain the above copyright
8  *    notice, this list of conditions and the following disclaimer.
9  * 2. Redistributions in binary form must reproduce the above copyright
10  *    notice, this list of conditions and the following disclaimer in the
11  *    documentation and/or other materials provided with the distribution.
12  *
13  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
14  * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
15  * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
16  * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
17  * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
18  * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
19  * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
20  * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
21  * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
22  * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
23  */
24 
25 #include "includes.h"
26 RCSID("$OpenBSD: kex.c,v 1.64 2005/07/25 11:59:39 markus Exp $");
27 
28 #include <openssl/crypto.h>
29 
30 #include "ssh2.h"
31 #include "xmalloc.h"
32 #include "buffer.h"
33 #include "bufaux.h"
34 #include "packet.h"
35 #include "compat.h"
36 #include "cipher.h"
37 #include "kex.h"
38 #include "key.h"
39 #include "log.h"
40 #include "mac.h"
41 #include "match.h"
42 #include "dispatch.h"
43 #include "monitor.h"
44 
45 #define KEX_COOKIE_LEN	16
46 
47 /* prototype */
48 static void kex_kexinit_finish(Kex *);
49 static void kex_choose_conf(Kex *);
50 
51 /* put algorithm proposal into buffer */
52 static void
53 kex_prop2buf(Buffer *b, char *proposal[PROPOSAL_MAX])
54 {
55 	u_int i;
56 
57 	buffer_clear(b);
58 	/*
59 	 * add a dummy cookie, the cookie will be overwritten by
60 	 * kex_send_kexinit(), each time a kexinit is set
61 	 */
62 	for (i = 0; i < KEX_COOKIE_LEN; i++)
63 		buffer_put_char(b, 0);
64 	for (i = 0; i < PROPOSAL_MAX; i++)
65 		buffer_put_cstring(b, proposal[i]);
66 	buffer_put_char(b, 0);			/* first_kex_packet_follows */
67 	buffer_put_int(b, 0);			/* uint32 reserved */
68 }
69 
70 /* parse buffer and return algorithm proposal */
71 static char **
72 kex_buf2prop(Buffer *raw, int *first_kex_follows)
73 {
74 	Buffer b;
75 	int i;
76 	char **proposal;
77 
78 	proposal = xmalloc(PROPOSAL_MAX * sizeof(char *));
79 
80 	buffer_init(&b);
81 	buffer_append(&b, buffer_ptr(raw), buffer_len(raw));
82 	/* skip cookie */
83 	for (i = 0; i < KEX_COOKIE_LEN; i++)
84 		buffer_get_char(&b);
85 	/* extract kex init proposal strings */
86 	for (i = 0; i < PROPOSAL_MAX; i++) {
87 		proposal[i] = buffer_get_string(&b,NULL);
88 		debug2("kex_parse_kexinit: %s", proposal[i]);
89 	}
90 	/* first kex follows / reserved */
91 	i = buffer_get_char(&b);
92 	if (first_kex_follows != NULL)
93 		*first_kex_follows = i;
94 	debug2("kex_parse_kexinit: first_kex_follows %d ", i);
95 	i = buffer_get_int(&b);
96 	debug2("kex_parse_kexinit: reserved %d ", i);
97 	buffer_free(&b);
98 	return proposal;
99 }
100 
101 static void
102 kex_prop_free(char **proposal)
103 {
104 	u_int i;
105 
106 	for (i = 0; i < PROPOSAL_MAX; i++)
107 		xfree(proposal[i]);
108 	xfree(proposal);
109 }
110 
111 static void
112 kex_protocol_error(int type, u_int32_t seq, void *ctxt)
113 {
114 	error("Hm, kex protocol error: type %d seq %u", type, seq);
115 }
116 
117 static void
118 kex_reset_dispatch(void)
119 {
120 	dispatch_range(SSH2_MSG_TRANSPORT_MIN,
121 	    SSH2_MSG_TRANSPORT_MAX, &kex_protocol_error);
122 	dispatch_set(SSH2_MSG_KEXINIT, &kex_input_kexinit);
123 }
124 
125 void
126 kex_finish(Kex *kex)
127 {
128 	kex_reset_dispatch();
129 
130 	packet_start(SSH2_MSG_NEWKEYS);
131 	packet_send();
132 	/* packet_write_wait(); */
133 	debug("SSH2_MSG_NEWKEYS sent");
134 
135 	debug("expecting SSH2_MSG_NEWKEYS");
136 	packet_read_expect(SSH2_MSG_NEWKEYS);
137 	packet_check_eom();
138 	debug("SSH2_MSG_NEWKEYS received");
139 
140 	kex->done = 1;
141 	buffer_clear(&kex->peer);
142 	/* buffer_clear(&kex->my); */
143 	kex->flags &= ~KEX_INIT_SENT;
144 	xfree(kex->name);
145 	kex->name = NULL;
146 }
147 
148 void
149 kex_send_kexinit(Kex *kex)
150 {
151 	u_int32_t rnd = 0;
152 	u_char *cookie;
153 	u_int i;
154 
155 	if (kex == NULL) {
156 		error("kex_send_kexinit: no kex, cannot rekey");
157 		return;
158 	}
159 	if (kex->flags & KEX_INIT_SENT) {
160 		debug("KEX_INIT_SENT");
161 		return;
162 	}
163 	kex->done = 0;
164 
165 	/* generate a random cookie */
166 	if (buffer_len(&kex->my) < KEX_COOKIE_LEN)
167 		fatal("kex_send_kexinit: kex proposal too short");
168 	cookie = buffer_ptr(&kex->my);
169 	for (i = 0; i < KEX_COOKIE_LEN; i++) {
170 		if (i % 4 == 0)
171 			rnd = arc4random();
172 		cookie[i] = rnd;
173 		rnd >>= 8;
174 	}
175 	packet_start(SSH2_MSG_KEXINIT);
176 	packet_put_raw(buffer_ptr(&kex->my), buffer_len(&kex->my));
177 	packet_send();
178 	debug("SSH2_MSG_KEXINIT sent");
179 	kex->flags |= KEX_INIT_SENT;
180 }
181 
182 void
183 kex_input_kexinit(int type, u_int32_t seq, void *ctxt)
184 {
185 	char *ptr;
186 	u_int i, dlen;
187 	Kex *kex = (Kex *)ctxt;
188 
189 	debug("SSH2_MSG_KEXINIT received");
190 	if (kex == NULL)
191 		fatal("kex_input_kexinit: no kex, cannot rekey");
192 
193 	ptr = packet_get_raw(&dlen);
194 	buffer_append(&kex->peer, ptr, dlen);
195 
196 	/* discard packet */
197 	for (i = 0; i < KEX_COOKIE_LEN; i++)
198 		packet_get_char();
199 	for (i = 0; i < PROPOSAL_MAX; i++)
200 		xfree(packet_get_string(NULL));
201 	(void) packet_get_char();
202 	(void) packet_get_int();
203 	packet_check_eom();
204 
205 	kex_kexinit_finish(kex);
206 }
207 
208 Kex *
209 kex_setup(char *proposal[PROPOSAL_MAX])
210 {
211 	Kex *kex;
212 
213 	kex = xmalloc(sizeof(*kex));
214 	memset(kex, 0, sizeof(*kex));
215 	buffer_init(&kex->peer);
216 	buffer_init(&kex->my);
217 	kex_prop2buf(&kex->my, proposal);
218 	kex->done = 0;
219 
220 	kex_send_kexinit(kex);					/* we start */
221 	kex_reset_dispatch();
222 
223 	return kex;
224 }
225 
226 static void
227 kex_kexinit_finish(Kex *kex)
228 {
229 	if (!(kex->flags & KEX_INIT_SENT))
230 		kex_send_kexinit(kex);
231 
232 	kex_choose_conf(kex);
233 
234 	if (kex->kex_type >= 0 && kex->kex_type < KEX_MAX &&
235 	    kex->kex[kex->kex_type] != NULL) {
236 		(kex->kex[kex->kex_type])(kex);
237 	} else {
238 		fatal("Unsupported key exchange %d", kex->kex_type);
239 	}
240 }
241 
242 static void
243 choose_enc(Enc *enc, char *client, char *server)
244 {
245 	char *name = match_list(client, server, NULL);
246 	if (name == NULL)
247 		fatal("no matching cipher found: client %s server %s", client, server);
248 	if ((enc->cipher = cipher_by_name(name)) == NULL)
249 		fatal("matching cipher is not supported: %s", name);
250 	enc->name = name;
251 	enc->enabled = 0;
252 	enc->iv = NULL;
253 	enc->key = NULL;
254 	enc->key_len = cipher_keylen(enc->cipher);
255 	enc->block_size = cipher_blocksize(enc->cipher);
256 }
257 static void
258 choose_mac(Mac *mac, char *client, char *server)
259 {
260 	char *name = match_list(client, server, NULL);
261 	if (name == NULL)
262 		fatal("no matching mac found: client %s server %s", client, server);
263 	if (mac_init(mac, name) < 0)
264 		fatal("unsupported mac %s", name);
265 	/* truncate the key */
266 	if (datafellows & SSH_BUG_HMAC)
267 		mac->key_len = 16;
268 	mac->name = name;
269 	mac->key = NULL;
270 	mac->enabled = 0;
271 }
272 static void
273 choose_comp(Comp *comp, char *client, char *server)
274 {
275 	char *name = match_list(client, server, NULL);
276 	if (name == NULL)
277 		fatal("no matching comp found: client %s server %s", client, server);
278 	if (strcmp(name, "zlib@openssh.com") == 0) {
279 		comp->type = COMP_DELAYED;
280 	} else if (strcmp(name, "zlib") == 0) {
281 		comp->type = COMP_ZLIB;
282 	} else if (strcmp(name, "none") == 0) {
283 		comp->type = COMP_NONE;
284 	} else {
285 		fatal("unsupported comp %s", name);
286 	}
287 	comp->name = name;
288 }
289 static void
290 choose_kex(Kex *k, char *client, char *server)
291 {
292 	k->name = match_list(client, server, NULL);
293 	if (k->name == NULL)
294 		fatal("no kex alg");
295 	if (strcmp(k->name, KEX_DH1) == 0) {
296 		k->kex_type = KEX_DH_GRP1_SHA1;
297 	} else if (strcmp(k->name, KEX_DH14) == 0) {
298 		k->kex_type = KEX_DH_GRP14_SHA1;
299 	} else if (strcmp(k->name, KEX_DHGEX) == 0) {
300 		k->kex_type = KEX_DH_GEX_SHA1;
301 	} else
302 		fatal("bad kex alg %s", k->name);
303 }
304 static void
305 choose_hostkeyalg(Kex *k, char *client, char *server)
306 {
307 	char *hostkeyalg = match_list(client, server, NULL);
308 	if (hostkeyalg == NULL)
309 		fatal("no hostkey alg");
310 	k->hostkey_type = key_type_from_name(hostkeyalg);
311 	if (k->hostkey_type == KEY_UNSPEC)
312 		fatal("bad hostkey alg '%s'", hostkeyalg);
313 	xfree(hostkeyalg);
314 }
315 
316 static int
317 proposals_match(char *my[PROPOSAL_MAX], char *peer[PROPOSAL_MAX])
318 {
319 	static int check[] = {
320 		PROPOSAL_KEX_ALGS, PROPOSAL_SERVER_HOST_KEY_ALGS, -1
321 	};
322 	int *idx;
323 	char *p;
324 
325 	for (idx = &check[0]; *idx != -1; idx++) {
326 		if ((p = strchr(my[*idx], ',')) != NULL)
327 			*p = '\0';
328 		if ((p = strchr(peer[*idx], ',')) != NULL)
329 			*p = '\0';
330 		if (strcmp(my[*idx], peer[*idx]) != 0) {
331 			debug2("proposal mismatch: my %s peer %s",
332 			    my[*idx], peer[*idx]);
333 			return (0);
334 		}
335 	}
336 	debug2("proposals match");
337 	return (1);
338 }
339 
340 static void
341 kex_choose_conf(Kex *kex)
342 {
343 	Newkeys *newkeys;
344 	char **my, **peer;
345 	char **cprop, **sprop;
346 	int nenc, nmac, ncomp;
347 	u_int mode, ctos, need;
348 	int first_kex_follows, type;
349 
350 	my   = kex_buf2prop(&kex->my, NULL);
351 	peer = kex_buf2prop(&kex->peer, &first_kex_follows);
352 
353 	if (kex->server) {
354 		cprop=peer;
355 		sprop=my;
356 	} else {
357 		cprop=my;
358 		sprop=peer;
359 	}
360 
361 	/* Algorithm Negotiation */
362 	for (mode = 0; mode < MODE_MAX; mode++) {
363 		newkeys = xmalloc(sizeof(*newkeys));
364 		memset(newkeys, 0, sizeof(*newkeys));
365 		kex->newkeys[mode] = newkeys;
366 		ctos = (!kex->server && mode == MODE_OUT) || (kex->server && mode == MODE_IN);
367 		nenc  = ctos ? PROPOSAL_ENC_ALGS_CTOS  : PROPOSAL_ENC_ALGS_STOC;
368 		nmac  = ctos ? PROPOSAL_MAC_ALGS_CTOS  : PROPOSAL_MAC_ALGS_STOC;
369 		ncomp = ctos ? PROPOSAL_COMP_ALGS_CTOS : PROPOSAL_COMP_ALGS_STOC;
370 		choose_enc (&newkeys->enc,  cprop[nenc],  sprop[nenc]);
371 		choose_mac (&newkeys->mac,  cprop[nmac],  sprop[nmac]);
372 		choose_comp(&newkeys->comp, cprop[ncomp], sprop[ncomp]);
373 		debug("kex: %s %s %s %s",
374 		    ctos ? "client->server" : "server->client",
375 		    newkeys->enc.name,
376 		    newkeys->mac.name,
377 		    newkeys->comp.name);
378 	}
379 	choose_kex(kex, cprop[PROPOSAL_KEX_ALGS], sprop[PROPOSAL_KEX_ALGS]);
380 	choose_hostkeyalg(kex, cprop[PROPOSAL_SERVER_HOST_KEY_ALGS],
381 	    sprop[PROPOSAL_SERVER_HOST_KEY_ALGS]);
382 	need = 0;
383 	for (mode = 0; mode < MODE_MAX; mode++) {
384 		newkeys = kex->newkeys[mode];
385 		if (need < newkeys->enc.key_len)
386 			need = newkeys->enc.key_len;
387 		if (need < newkeys->enc.block_size)
388 			need = newkeys->enc.block_size;
389 		if (need < newkeys->mac.key_len)
390 			need = newkeys->mac.key_len;
391 	}
392 	/* XXX need runden? */
393 	kex->we_need = need;
394 
395 	/* ignore the next message if the proposals do not match */
396 	if (first_kex_follows && !proposals_match(my, peer) &&
397 	    !(datafellows & SSH_BUG_FIRSTKEX)) {
398 		type = packet_read();
399 		debug2("skipping next packet (type %u)", type);
400 	}
401 
402 	kex_prop_free(my);
403 	kex_prop_free(peer);
404 }
405 
406 static u_char *
407 derive_key(Kex *kex, int id, u_int need, u_char *hash, BIGNUM *shared_secret)
408 {
409 	Buffer b;
410 	const EVP_MD *evp_md = EVP_sha1();
411 	EVP_MD_CTX md;
412 	char c = id;
413 	u_int have;
414 	int mdsz = EVP_MD_size(evp_md);
415 	u_char *digest;
416 
417 	if (mdsz < 0)
418 		fatal("derive_key: mdsz < 0");
419 	digest = xmalloc(roundup(need, mdsz));
420 
421 	buffer_init(&b);
422 	buffer_put_bignum2(&b, shared_secret);
423 
424 	/* K1 = HASH(K || H || "A" || session_id) */
425 	EVP_DigestInit(&md, evp_md);
426 	if (!(datafellows & SSH_BUG_DERIVEKEY))
427 		EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b));
428 	EVP_DigestUpdate(&md, hash, mdsz);
429 	EVP_DigestUpdate(&md, &c, 1);
430 	EVP_DigestUpdate(&md, kex->session_id, kex->session_id_len);
431 	EVP_DigestFinal(&md, digest, NULL);
432 
433 	/*
434 	 * expand key:
435 	 * Kn = HASH(K || H || K1 || K2 || ... || Kn-1)
436 	 * Key = K1 || K2 || ... || Kn
437 	 */
438 	for (have = mdsz; need > have; have += mdsz) {
439 		EVP_DigestInit(&md, evp_md);
440 		if (!(datafellows & SSH_BUG_DERIVEKEY))
441 			EVP_DigestUpdate(&md, buffer_ptr(&b), buffer_len(&b));
442 		EVP_DigestUpdate(&md, hash, mdsz);
443 		EVP_DigestUpdate(&md, digest, have);
444 		EVP_DigestFinal(&md, digest + have, NULL);
445 	}
446 	buffer_free(&b);
447 #ifdef DEBUG_KEX
448 	fprintf(stderr, "key '%c'== ", c);
449 	dump_digest("key", digest, need);
450 #endif
451 	return digest;
452 }
453 
454 Newkeys *current_keys[MODE_MAX];
455 
456 #define NKEYS	6
457 void
458 kex_derive_keys(Kex *kex, u_char *hash, BIGNUM *shared_secret)
459 {
460 	u_char *keys[NKEYS];
461 	u_int i, mode, ctos;
462 
463 	for (i = 0; i < NKEYS; i++)
464 		keys[i] = derive_key(kex, 'A'+i, kex->we_need, hash, shared_secret);
465 
466 	debug2("kex_derive_keys");
467 	for (mode = 0; mode < MODE_MAX; mode++) {
468 		current_keys[mode] = kex->newkeys[mode];
469 		kex->newkeys[mode] = NULL;
470 		ctos = (!kex->server && mode == MODE_OUT) || (kex->server && mode == MODE_IN);
471 		current_keys[mode]->enc.iv  = keys[ctos ? 0 : 1];
472 		current_keys[mode]->enc.key = keys[ctos ? 2 : 3];
473 		current_keys[mode]->mac.key = keys[ctos ? 4 : 5];
474 	}
475 }
476 
477 Newkeys *
478 kex_get_newkeys(int mode)
479 {
480 	Newkeys *ret;
481 
482 	ret = current_keys[mode];
483 	current_keys[mode] = NULL;
484 	return ret;
485 }
486 
487 void
488 derive_ssh1_session_id(BIGNUM *host_modulus, BIGNUM *server_modulus,
489     u_int8_t cookie[8], u_int8_t id[16])
490 {
491 	const EVP_MD *evp_md = EVP_md5();
492 	EVP_MD_CTX md;
493 	u_int8_t nbuf[2048], obuf[EVP_MAX_MD_SIZE];
494 	int len;
495 
496 	EVP_DigestInit(&md, evp_md);
497 
498 	len = BN_num_bytes(host_modulus);
499 	if (len < (512 / 8) || (u_int)len > sizeof(nbuf))
500 		fatal("%s: bad host modulus (len %d)", __func__, len);
501 	BN_bn2bin(host_modulus, nbuf);
502 	EVP_DigestUpdate(&md, nbuf, len);
503 
504 	len = BN_num_bytes(server_modulus);
505 	if (len < (512 / 8) || (u_int)len > sizeof(nbuf))
506 		fatal("%s: bad server modulus (len %d)", __func__, len);
507 	BN_bn2bin(server_modulus, nbuf);
508 	EVP_DigestUpdate(&md, nbuf, len);
509 
510 	EVP_DigestUpdate(&md, cookie, 8);
511 
512 	EVP_DigestFinal(&md, obuf, NULL);
513 	memcpy(id, obuf, 16);
514 
515 	memset(nbuf, 0, sizeof(nbuf));
516 	memset(obuf, 0, sizeof(obuf));
517 	memset(&md, 0, sizeof(md));
518 }
519 
520 #if defined(DEBUG_KEX) || defined(DEBUG_KEXDH)
521 void
522 dump_digest(char *msg, u_char *digest, int len)
523 {
524 	u_int i;
525 
526 	fprintf(stderr, "%s\n", msg);
527 	for (i = 0; i< len; i++) {
528 		fprintf(stderr, "%02x", digest[i]);
529 		if (i%32 == 31)
530 			fprintf(stderr, "\n");
531 		else if (i%8 == 7)
532 			fprintf(stderr, " ");
533 	}
534 	fprintf(stderr, "\n");
535 }
536 #endif
537