Run entire source base through GNU indent to tidy up the varying
[sgt/putty] / sshdss.c
1 #include <stdio.h>
2 #include <stdlib.h>
3 #include <assert.h>
4
5 #include "ssh.h"
6
7 #define GET_32BIT(cp) \
8 (((unsigned long)(unsigned char)(cp)[0] << 24) | \
9 ((unsigned long)(unsigned char)(cp)[1] << 16) | \
10 ((unsigned long)(unsigned char)(cp)[2] << 8) | \
11 ((unsigned long)(unsigned char)(cp)[3]))
12
13 #define PUT_32BIT(cp, value) { \
14 (cp)[0] = (unsigned char)((value) >> 24); \
15 (cp)[1] = (unsigned char)((value) >> 16); \
16 (cp)[2] = (unsigned char)((value) >> 8); \
17 (cp)[3] = (unsigned char)(value); }
18
19 #if 0
20 #define DEBUG_DSS
21 #else
22 #define diagbn(x,y)
23 #endif
24
25 static void getstring(char **data, int *datalen, char **p, int *length)
26 {
27 *p = NULL;
28 if (*datalen < 4)
29 return;
30 *length = GET_32BIT(*data);
31 *datalen -= 4;
32 *data += 4;
33 if (*datalen < *length)
34 return;
35 *p = *data;
36 *data += *length;
37 *datalen -= *length;
38 }
39 static Bignum getmp(char **data, int *datalen)
40 {
41 char *p;
42 int length;
43 Bignum b;
44
45 getstring(data, datalen, &p, &length);
46 if (!p)
47 return NULL;
48 if (p[0] & 0x80)
49 return NULL; /* negative mp */
50 b = bignum_from_bytes(p, length);
51 return b;
52 }
53
54 static Bignum get160(char **data, int *datalen)
55 {
56 Bignum b;
57
58 b = bignum_from_bytes(*data, 20);
59 *data += 20;
60 *datalen -= 20;
61
62 return b;
63 }
64
65 struct dss_key {
66 Bignum p, q, g, y;
67 };
68
69 static void *dss_newkey(char *data, int len)
70 {
71 char *p;
72 int slen;
73 struct dss_key *dss;
74
75 dss = smalloc(sizeof(struct dss_key));
76 if (!dss)
77 return NULL;
78 getstring(&data, &len, &p, &slen);
79
80 #ifdef DEBUG_DSS
81 {
82 int i;
83 printf("key:");
84 for (i = 0; i < len; i++)
85 printf(" %02x", (unsigned char) (data[i]));
86 printf("\n");
87 }
88 #endif
89
90 if (!p || memcmp(p, "ssh-dss", 7)) {
91 sfree(dss);
92 return NULL;
93 }
94 dss->p = getmp(&data, &len);
95 dss->q = getmp(&data, &len);
96 dss->g = getmp(&data, &len);
97 dss->y = getmp(&data, &len);
98
99 return dss;
100 }
101
102 static void dss_freekey(void *key)
103 {
104 struct dss_key *dss = (struct dss_key *) key;
105 freebn(dss->p);
106 freebn(dss->q);
107 freebn(dss->g);
108 freebn(dss->y);
109 sfree(dss);
110 }
111
112 static char *dss_fmtkey(void *key)
113 {
114 struct dss_key *dss = (struct dss_key *) key;
115 char *p;
116 int len, i, pos, nibbles;
117 static const char hex[] = "0123456789abcdef";
118 if (!dss->p)
119 return NULL;
120 len = 8 + 4 + 1; /* 4 x "0x", punctuation, \0 */
121 len += 4 * (bignum_bitcount(dss->p) + 15) / 16;
122 len += 4 * (bignum_bitcount(dss->q) + 15) / 16;
123 len += 4 * (bignum_bitcount(dss->g) + 15) / 16;
124 len += 4 * (bignum_bitcount(dss->y) + 15) / 16;
125 p = smalloc(len);
126 if (!p)
127 return NULL;
128
129 pos = 0;
130 pos += sprintf(p + pos, "0x");
131 nibbles = (3 + bignum_bitcount(dss->p)) / 4;
132 if (nibbles < 1)
133 nibbles = 1;
134 for (i = nibbles; i--;)
135 p[pos++] =
136 hex[(bignum_byte(dss->p, i / 2) >> (4 * (i % 2))) & 0xF];
137 pos += sprintf(p + pos, ",0x");
138 nibbles = (3 + bignum_bitcount(dss->q)) / 4;
139 if (nibbles < 1)
140 nibbles = 1;
141 for (i = nibbles; i--;)
142 p[pos++] =
143 hex[(bignum_byte(dss->q, i / 2) >> (4 * (i % 2))) & 0xF];
144 pos += sprintf(p + pos, ",0x");
145 nibbles = (3 + bignum_bitcount(dss->g)) / 4;
146 if (nibbles < 1)
147 nibbles = 1;
148 for (i = nibbles; i--;)
149 p[pos++] =
150 hex[(bignum_byte(dss->g, i / 2) >> (4 * (i % 2))) & 0xF];
151 pos += sprintf(p + pos, ",0x");
152 nibbles = (3 + bignum_bitcount(dss->y)) / 4;
153 if (nibbles < 1)
154 nibbles = 1;
155 for (i = nibbles; i--;)
156 p[pos++] =
157 hex[(bignum_byte(dss->y, i / 2) >> (4 * (i % 2))) & 0xF];
158 p[pos] = '\0';
159 return p;
160 }
161
162 static char *dss_fingerprint(void *key)
163 {
164 struct dss_key *dss = (struct dss_key *) key;
165 struct MD5Context md5c;
166 unsigned char digest[16], lenbuf[4];
167 char buffer[16 * 3 + 40];
168 char *ret;
169 int numlen, i;
170
171 MD5Init(&md5c);
172 MD5Update(&md5c, "\0\0\0\7ssh-dss", 11);
173
174 #define ADD_BIGNUM(bignum) \
175 numlen = (bignum_bitcount(bignum)+8)/8; \
176 PUT_32BIT(lenbuf, numlen); MD5Update(&md5c, lenbuf, 4); \
177 for (i = numlen; i-- ;) { \
178 unsigned char c = bignum_byte(bignum, i); \
179 MD5Update(&md5c, &c, 1); \
180 }
181 ADD_BIGNUM(dss->p);
182 ADD_BIGNUM(dss->q);
183 ADD_BIGNUM(dss->g);
184 ADD_BIGNUM(dss->y);
185 #undef ADD_BIGNUM
186
187 MD5Final(digest, &md5c);
188
189 sprintf(buffer, "ssh-dss %d ", bignum_bitcount(dss->p));
190 for (i = 0; i < 16; i++)
191 sprintf(buffer + strlen(buffer), "%s%02x", i ? ":" : "",
192 digest[i]);
193 ret = smalloc(strlen(buffer) + 1);
194 if (ret)
195 strcpy(ret, buffer);
196 return ret;
197 }
198
199 static int dss_verifysig(void *key, char *sig, int siglen,
200 char *data, int datalen)
201 {
202 struct dss_key *dss = (struct dss_key *) key;
203 char *p;
204 int slen;
205 char hash[20];
206 Bignum r, s, w, gu1p, yu2p, gu1yu2p, u1, u2, sha, v;
207 int ret;
208
209 if (!dss->p)
210 return 0;
211
212 #ifdef DEBUG_DSS
213 {
214 int i;
215 printf("sig:");
216 for (i = 0; i < siglen; i++)
217 printf(" %02x", (unsigned char) (sig[i]));
218 printf("\n");
219 }
220 #endif
221 /*
222 * Commercial SSH (2.0.13) and OpenSSH disagree over the format
223 * of a DSA signature. OpenSSH is in line with the IETF drafts:
224 * it uses a string "ssh-dss", followed by a 40-byte string
225 * containing two 160-bit integers end-to-end. Commercial SSH
226 * can't be bothered with the header bit, and considers a DSA
227 * signature blob to be _just_ the 40-byte string containing
228 * the two 160-bit integers. We tell them apart by measuring
229 * the length: length 40 means the commercial-SSH bug, anything
230 * else is assumed to be IETF-compliant.
231 */
232 if (siglen != 40) { /* bug not present; read admin fields */
233 getstring(&sig, &siglen, &p, &slen);
234 if (!p || slen != 7 || memcmp(p, "ssh-dss", 7)) {
235 return 0;
236 }
237 sig += 4, siglen -= 4; /* skip yet another length field */
238 }
239 diagbn("p=", dss->p);
240 diagbn("q=", dss->q);
241 diagbn("g=", dss->g);
242 diagbn("y=", dss->y);
243 r = get160(&sig, &siglen);
244 diagbn("r=", r);
245 s = get160(&sig, &siglen);
246 diagbn("s=", s);
247 if (!r || !s)
248 return 0;
249
250 /*
251 * Step 1. w <- s^-1 mod q.
252 */
253 w = modinv(s, dss->q);
254 diagbn("w=", w);
255
256 /*
257 * Step 2. u1 <- SHA(message) * w mod q.
258 */
259 SHA_Simple(data, datalen, hash);
260 p = hash;
261 slen = 20;
262 sha = get160(&p, &slen);
263 diagbn("sha=", sha);
264 u1 = modmul(sha, w, dss->q);
265 diagbn("u1=", u1);
266
267 /*
268 * Step 3. u2 <- r * w mod q.
269 */
270 u2 = modmul(r, w, dss->q);
271 diagbn("u2=", u2);
272
273 /*
274 * Step 4. v <- (g^u1 * y^u2 mod p) mod q.
275 */
276 gu1p = modpow(dss->g, u1, dss->p);
277 diagbn("gu1p=", gu1p);
278 yu2p = modpow(dss->y, u2, dss->p);
279 diagbn("yu2p=", yu2p);
280 gu1yu2p = modmul(gu1p, yu2p, dss->p);
281 diagbn("gu1yu2p=", gu1yu2p);
282 v = modmul(gu1yu2p, One, dss->q);
283 diagbn("gu1yu2q=v=", v);
284 diagbn("r=", r);
285
286 /*
287 * Step 5. v should now be equal to r.
288 */
289
290 ret = !bignum_cmp(v, r);
291
292 freebn(w);
293 freebn(sha);
294 freebn(gu1p);
295 freebn(yu2p);
296 freebn(gu1yu2p);
297 freebn(v);
298 freebn(r);
299 freebn(s);
300
301 return ret;
302 }
303
304 static unsigned char *dss_public_blob(void *key, int *len)
305 {
306 struct dss_key *dss = (struct dss_key *) key;
307 int plen, qlen, glen, ylen, bloblen;
308 int i;
309 unsigned char *blob, *p;
310
311 plen = (bignum_bitcount(dss->p) + 8) / 8;
312 qlen = (bignum_bitcount(dss->q) + 8) / 8;
313 glen = (bignum_bitcount(dss->g) + 8) / 8;
314 ylen = (bignum_bitcount(dss->y) + 8) / 8;
315
316 /*
317 * string "ssh-dss", mpint p, mpint q, mpint g, mpint y. Total
318 * 27 + sum of lengths. (five length fields, 20+7=27).
319 */
320 bloblen = 27 + plen + qlen + glen + ylen;
321 blob = smalloc(bloblen);
322 p = blob;
323 PUT_32BIT(p, 7);
324 p += 4;
325 memcpy(p, "ssh-dss", 7);
326 p += 7;
327 PUT_32BIT(p, plen);
328 p += 4;
329 for (i = plen; i--;)
330 *p++ = bignum_byte(dss->p, i);
331 PUT_32BIT(p, qlen);
332 p += 4;
333 for (i = qlen; i--;)
334 *p++ = bignum_byte(dss->q, i);
335 PUT_32BIT(p, glen);
336 p += 4;
337 for (i = glen; i--;)
338 *p++ = bignum_byte(dss->g, i);
339 PUT_32BIT(p, ylen);
340 p += 4;
341 for (i = ylen; i--;)
342 *p++ = bignum_byte(dss->y, i);
343 assert(p == blob + bloblen);
344 *len = bloblen;
345 return blob;
346 }
347
348 static unsigned char *dss_private_blob(void *key, int *len)
349 {
350 return NULL; /* can't handle DSS private keys */
351 }
352
353 static void *dss_createkey(unsigned char *pub_blob, int pub_len,
354 unsigned char *priv_blob, int priv_len)
355 {
356 return NULL; /* can't handle DSS private keys */
357 }
358
359 static void *dss_openssh_createkey(unsigned char **blob, int *len)
360 {
361 return NULL; /* can't handle DSS private keys */
362 }
363
364 static int dss_openssh_fmtkey(void *key, unsigned char *blob, int len)
365 {
366 return -1; /* can't handle DSS private keys */
367 }
368
369 unsigned char *dss_sign(void *key, char *data, int datalen, int *siglen)
370 {
371 return NULL; /* can't handle DSS private keys */
372 }
373
374 const struct ssh_signkey ssh_dss = {
375 dss_newkey,
376 dss_freekey,
377 dss_fmtkey,
378 dss_public_blob,
379 dss_private_blob,
380 dss_createkey,
381 dss_openssh_createkey,
382 dss_openssh_fmtkey,
383 dss_fingerprint,
384 dss_verifysig,
385 dss_sign,
386 "ssh-dss",
387 "dss"
388 };