cipher.c revision 57464
1/*
2 *
3 * cipher.c
4 *
5 * Author: Tatu Ylonen <ylo@cs.hut.fi>
6 *
7 * Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
8 *                    All rights reserved
9 *
10 * Created: Wed Apr 19 17:41:39 1995 ylo
11 *
12 * $FreeBSD: head/crypto/openssh/cipher.c 57464 2000-02-25 01:53:12Z green $
13 */
14
15#include "includes.h"
16RCSID("$Id: cipher.c,v 1.19 2000/02/22 15:19:29 markus Exp $");
17
18#include "ssh.h"
19#include "cipher.h"
20
21#include <openssl/md5.h>
22
23/*
24 * What kind of tripple DES are these 2 routines?
25 *
26 * Why is there a redundant initialization vector?
27 *
28 * If only iv3 was used, then, this would till effect have been
29 * outer-cbc. However, there is also a private iv1 == iv2 which
30 * perhaps makes differential analysis easier. On the other hand, the
31 * private iv1 probably makes the CRC-32 attack ineffective. This is a
32 * result of that there is no longer any known iv1 to use when
33 * choosing the X block.
34 */
35void
36SSH_3CBC_ENCRYPT(des_key_schedule ks1,
37		 des_key_schedule ks2, des_cblock * iv2,
38		 des_key_schedule ks3, des_cblock * iv3,
39		 unsigned char *dest, unsigned char *src,
40		 unsigned int len)
41{
42	des_cblock iv1;
43
44	memcpy(&iv1, iv2, 8);
45
46	des_cbc_encrypt(src, dest, len, ks1, &iv1, DES_ENCRYPT);
47	memcpy(&iv1, dest + len - 8, 8);
48
49	des_cbc_encrypt(dest, dest, len, ks2, iv2, DES_DECRYPT);
50	memcpy(iv2, &iv1, 8);	/* Note how iv1 == iv2 on entry and exit. */
51
52	des_cbc_encrypt(dest, dest, len, ks3, iv3, DES_ENCRYPT);
53	memcpy(iv3, dest + len - 8, 8);
54}
55
56void
57SSH_3CBC_DECRYPT(des_key_schedule ks1,
58		 des_key_schedule ks2, des_cblock * iv2,
59		 des_key_schedule ks3, des_cblock * iv3,
60		 unsigned char *dest, unsigned char *src,
61		 unsigned int len)
62{
63	des_cblock iv1;
64
65	memcpy(&iv1, iv2, 8);
66
67	des_cbc_encrypt(src, dest, len, ks3, iv3, DES_DECRYPT);
68	memcpy(iv3, src + len - 8, 8);
69
70	des_cbc_encrypt(dest, dest, len, ks2, iv2, DES_ENCRYPT);
71	memcpy(iv2, dest + len - 8, 8);
72
73	des_cbc_encrypt(dest, dest, len, ks1, &iv1, DES_DECRYPT);
74	/* memcpy(&iv1, iv2, 8); */
75	/* Note how iv1 == iv2 on entry and exit. */
76}
77
78/*
79 * SSH uses a variation on Blowfish, all bytes must be swapped before
80 * and after encryption/decryption. Thus the swap_bytes stuff (yuk).
81 */
82static void
83swap_bytes(const unsigned char *src, unsigned char *dst_, int n)
84{
85	/* dst must be properly aligned. */
86	u_int32_t *dst = (u_int32_t *) dst_;
87	union {
88		u_int32_t i;
89		char c[4];
90	} t;
91
92	/* Process 8 bytes every lap. */
93	for (n = n / 8; n > 0; n--) {
94		t.c[3] = *src++;
95		t.c[2] = *src++;
96		t.c[1] = *src++;
97		t.c[0] = *src++;
98		*dst++ = t.i;
99
100		t.c[3] = *src++;
101		t.c[2] = *src++;
102		t.c[1] = *src++;
103		t.c[0] = *src++;
104		*dst++ = t.i;
105	}
106}
107
108void (*cipher_attack_detected) (const char *fmt,...) = fatal;
109
110static inline void
111detect_cbc_attack(const unsigned char *src,
112		  unsigned int len)
113{
114	return;
115
116	log("CRC-32 CBC insertion attack detected");
117	cipher_attack_detected("CRC-32 CBC insertion attack detected");
118}
119
120/*
121 * Names of all encryption algorithms.
122 * These must match the numbers defined in cipher.h.
123 */
124static char *cipher_names[] =
125{
126	"none",
127	"idea",
128	"des",
129	"3des",
130	"tss",
131	"rc4",
132	"blowfish"
133};
134
135/*
136 * Returns a bit mask indicating which ciphers are supported by this
137 * implementation.  The bit mask has the corresponding bit set of each
138 * supported cipher.
139 */
140
141unsigned int
142cipher_mask()
143{
144	unsigned int mask = 0;
145	mask |= 1 << SSH_CIPHER_3DES;		/* Mandatory */
146	mask |= 1 << SSH_CIPHER_BLOWFISH;
147	return mask;
148}
149
150/* Returns the name of the cipher. */
151
152const char *
153cipher_name(int cipher)
154{
155	if (cipher < 0 || cipher >= sizeof(cipher_names) / sizeof(cipher_names[0]) ||
156	    cipher_names[cipher] == NULL)
157		fatal("cipher_name: bad cipher number: %d", cipher);
158	return cipher_names[cipher];
159}
160
161/*
162 * Parses the name of the cipher.  Returns the number of the corresponding
163 * cipher, or -1 on error.
164 */
165
166int
167cipher_number(const char *name)
168{
169	int i;
170	for (i = 0; i < sizeof(cipher_names) / sizeof(cipher_names[0]); i++)
171		if (strcmp(cipher_names[i], name) == 0 &&
172		    (cipher_mask() & (1 << i)))
173			return i;
174	return -1;
175}
176
177/*
178 * Selects the cipher, and keys if by computing the MD5 checksum of the
179 * passphrase and using the resulting 16 bytes as the key.
180 */
181
182void
183cipher_set_key_string(CipherContext *context, int cipher,
184		      const char *passphrase, int for_encryption)
185{
186	MD5_CTX md;
187	unsigned char digest[16];
188
189	MD5_Init(&md);
190	MD5_Update(&md, (const unsigned char *) passphrase, strlen(passphrase));
191	MD5_Final(digest, &md);
192
193	cipher_set_key(context, cipher, digest, 16, for_encryption);
194
195	memset(digest, 0, sizeof(digest));
196	memset(&md, 0, sizeof(md));
197}
198
199/* Selects the cipher to use and sets the key. */
200
201void
202cipher_set_key(CipherContext *context, int cipher,
203	       const unsigned char *key, int keylen, int for_encryption)
204{
205	unsigned char padded[32];
206
207	/* Set cipher type. */
208	context->type = cipher;
209
210	/* Get 32 bytes of key data.  Pad if necessary.  (So that code
211	   below does not need to worry about key size). */
212	memset(padded, 0, sizeof(padded));
213	memcpy(padded, key, keylen < sizeof(padded) ? keylen : sizeof(padded));
214
215	/* Initialize the initialization vector. */
216	switch (cipher) {
217	case SSH_CIPHER_NONE:
218		/*
219		 * Has to stay for authfile saving of private key with no
220		 * passphrase
221		 */
222		break;
223
224	case SSH_CIPHER_3DES:
225		/*
226		 * Note: the least significant bit of each byte of key is
227		 * parity, and must be ignored by the implementation.  16
228		 * bytes of key are used (first and last keys are the same).
229		 */
230		if (keylen < 16)
231			error("Key length %d is insufficient for 3DES.", keylen);
232		des_set_key((void *) padded, context->u.des3.key1);
233		des_set_key((void *) (padded + 8), context->u.des3.key2);
234		if (keylen <= 16)
235			des_set_key((void *) padded, context->u.des3.key3);
236		else
237			des_set_key((void *) (padded + 16), context->u.des3.key3);
238		memset(context->u.des3.iv2, 0, sizeof(context->u.des3.iv2));
239		memset(context->u.des3.iv3, 0, sizeof(context->u.des3.iv3));
240		break;
241
242	case SSH_CIPHER_BLOWFISH:
243		BF_set_key(&context->u.bf.key, keylen, padded);
244		memset(context->u.bf.iv, 0, 8);
245		break;
246
247	default:
248		fatal("cipher_set_key: unknown cipher: %s", cipher_name(cipher));
249	}
250	memset(padded, 0, sizeof(padded));
251}
252
253/* Encrypts data using the cipher. */
254
255void
256cipher_encrypt(CipherContext *context, unsigned char *dest,
257	       const unsigned char *src, unsigned int len)
258{
259	if ((len & 7) != 0)
260		fatal("cipher_encrypt: bad plaintext length %d", len);
261
262	switch (context->type) {
263	case SSH_CIPHER_NONE:
264		memcpy(dest, src, len);
265		break;
266
267	case SSH_CIPHER_3DES:
268		SSH_3CBC_ENCRYPT(context->u.des3.key1,
269				 context->u.des3.key2, &context->u.des3.iv2,
270				 context->u.des3.key3, &context->u.des3.iv3,
271				 dest, (unsigned char *) src, len);
272		break;
273
274	case SSH_CIPHER_BLOWFISH:
275		swap_bytes(src, dest, len);
276		BF_cbc_encrypt(dest, dest, len,
277		               &context->u.bf.key, context->u.bf.iv,
278			       BF_ENCRYPT);
279		swap_bytes(dest, dest, len);
280		break;
281
282	default:
283		fatal("cipher_encrypt: unknown cipher: %s", cipher_name(context->type));
284	}
285}
286
287/* Decrypts data using the cipher. */
288
289void
290cipher_decrypt(CipherContext *context, unsigned char *dest,
291	       const unsigned char *src, unsigned int len)
292{
293	if ((len & 7) != 0)
294		fatal("cipher_decrypt: bad ciphertext length %d", len);
295
296	switch (context->type) {
297	case SSH_CIPHER_NONE:
298		memcpy(dest, src, len);
299		break;
300
301	case SSH_CIPHER_3DES:
302		/* CRC-32 attack? */
303		SSH_3CBC_DECRYPT(context->u.des3.key1,
304				 context->u.des3.key2, &context->u.des3.iv2,
305				 context->u.des3.key3, &context->u.des3.iv3,
306				 dest, (unsigned char *) src, len);
307		break;
308
309	case SSH_CIPHER_BLOWFISH:
310		detect_cbc_attack(src, len);
311		swap_bytes(src, dest, len);
312		BF_cbc_encrypt((void *) dest, dest, len,
313			       &context->u.bf.key, context->u.bf.iv,
314			       BF_DECRYPT);
315		swap_bytes(dest, dest, len);
316		break;
317
318	default:
319		fatal("cipher_decrypt: unknown cipher: %s", cipher_name(context->type));
320	}
321}
322