]> andersk Git - openssh.git/blame - key.c
- stevesk@cvs.openbsd.org 2006/07/22 19:08:54
[openssh.git] / key.c
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c1cb7bae 1/* $OpenBSD: key.c,v 1.64 2006/03/25 13:17:02 djm Exp $ */
4fe2af09 2/*
bcbf86ec 3 * read_bignum():
4 * Copyright (c) 1995 Tatu Ylonen <ylo@cs.hut.fi>, Espoo, Finland
5 *
6 * As far as I am concerned, the code I have written for this software
7 * can be used freely for any purpose. Any derived versions of this
8 * software must be clearly marked as such, and if the derived work is
9 * incompatible with the protocol description in the RFC file, it must be
10 * called by a name other than "ssh" or "Secure Shell".
11 *
12 *
a96070d4 13 * Copyright (c) 2000, 2001 Markus Friedl. All rights reserved.
4fe2af09 14 *
15 * Redistribution and use in source and binary forms, with or without
16 * modification, are permitted provided that the following conditions
17 * are met:
18 * 1. Redistributions of source code must retain the above copyright
19 * notice, this list of conditions and the following disclaimer.
20 * 2. Redistributions in binary form must reproduce the above copyright
21 * notice, this list of conditions and the following disclaimer in the
22 * documentation and/or other materials provided with the distribution.
4fe2af09 23 *
24 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
25 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
26 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
27 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
28 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
29 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
30 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
31 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
32 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
33 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
34 */
4fe2af09 35#include "includes.h"
42f11eb2 36
4fe2af09 37#include <openssl/evp.h>
42f11eb2 38
4fe2af09 39#include "xmalloc.h"
40#include "key.h"
fa08c86b 41#include "rsa.h"
a306f2dd 42#include "uuencode.h"
fa08c86b 43#include "buffer.h"
44#include "bufaux.h"
42f11eb2 45#include "log.h"
4fe2af09 46
47Key *
48key_new(int type)
49{
50 Key *k;
51 RSA *rsa;
52 DSA *dsa;
52e3daed 53 k = xcalloc(1, sizeof(*k));
4fe2af09 54 k->type = type;
a306f2dd 55 k->dsa = NULL;
56 k->rsa = NULL;
4fe2af09 57 switch (k->type) {
fa08c86b 58 case KEY_RSA1:
4fe2af09 59 case KEY_RSA:
b775c6f2 60 if ((rsa = RSA_new()) == NULL)
61 fatal("key_new: RSA_new failed");
62 if ((rsa->n = BN_new()) == NULL)
63 fatal("key_new: BN_new failed");
64 if ((rsa->e = BN_new()) == NULL)
65 fatal("key_new: BN_new failed");
4fe2af09 66 k->rsa = rsa;
67 break;
68 case KEY_DSA:
b775c6f2 69 if ((dsa = DSA_new()) == NULL)
70 fatal("key_new: DSA_new failed");
71 if ((dsa->p = BN_new()) == NULL)
72 fatal("key_new: BN_new failed");
73 if ((dsa->q = BN_new()) == NULL)
74 fatal("key_new: BN_new failed");
75 if ((dsa->g = BN_new()) == NULL)
76 fatal("key_new: BN_new failed");
77 if ((dsa->pub_key = BN_new()) == NULL)
78 fatal("key_new: BN_new failed");
4fe2af09 79 k->dsa = dsa;
80 break;
fa08c86b 81 case KEY_UNSPEC:
4fe2af09 82 break;
83 default:
84 fatal("key_new: bad key type %d", k->type);
85 break;
86 }
87 return k;
88}
3ddc795d 89
fa08c86b 90Key *
91key_new_private(int type)
92{
93 Key *k = key_new(type);
94 switch (k->type) {
95 case KEY_RSA1:
96 case KEY_RSA:
b775c6f2 97 if ((k->rsa->d = BN_new()) == NULL)
98 fatal("key_new_private: BN_new failed");
99 if ((k->rsa->iqmp = BN_new()) == NULL)
100 fatal("key_new_private: BN_new failed");
101 if ((k->rsa->q = BN_new()) == NULL)
102 fatal("key_new_private: BN_new failed");
103 if ((k->rsa->p = BN_new()) == NULL)
104 fatal("key_new_private: BN_new failed");
105 if ((k->rsa->dmq1 = BN_new()) == NULL)
106 fatal("key_new_private: BN_new failed");
107 if ((k->rsa->dmp1 = BN_new()) == NULL)
108 fatal("key_new_private: BN_new failed");
fa08c86b 109 break;
110 case KEY_DSA:
b775c6f2 111 if ((k->dsa->priv_key = BN_new()) == NULL)
112 fatal("key_new_private: BN_new failed");
fa08c86b 113 break;
114 case KEY_UNSPEC:
115 break;
116 default:
117 break;
118 }
119 return k;
120}
3ddc795d 121
4fe2af09 122void
123key_free(Key *k)
124{
7016f7cf 125 if (k == NULL)
353d48db 126 fatal("key_free: key is NULL");
4fe2af09 127 switch (k->type) {
fa08c86b 128 case KEY_RSA1:
4fe2af09 129 case KEY_RSA:
130 if (k->rsa != NULL)
131 RSA_free(k->rsa);
132 k->rsa = NULL;
133 break;
134 case KEY_DSA:
135 if (k->dsa != NULL)
136 DSA_free(k->dsa);
137 k->dsa = NULL;
138 break;
fa08c86b 139 case KEY_UNSPEC:
140 break;
4fe2af09 141 default:
142 fatal("key_free: bad key type %d", k->type);
143 break;
144 }
145 xfree(k);
146}
b6c7b7b7 147
4fe2af09 148int
b6c7b7b7 149key_equal(const Key *a, const Key *b)
4fe2af09 150{
151 if (a == NULL || b == NULL || a->type != b->type)
152 return 0;
153 switch (a->type) {
fa08c86b 154 case KEY_RSA1:
4fe2af09 155 case KEY_RSA:
156 return a->rsa != NULL && b->rsa != NULL &&
157 BN_cmp(a->rsa->e, b->rsa->e) == 0 &&
158 BN_cmp(a->rsa->n, b->rsa->n) == 0;
4fe2af09 159 case KEY_DSA:
160 return a->dsa != NULL && b->dsa != NULL &&
161 BN_cmp(a->dsa->p, b->dsa->p) == 0 &&
162 BN_cmp(a->dsa->q, b->dsa->q) == 0 &&
163 BN_cmp(a->dsa->g, b->dsa->g) == 0 &&
164 BN_cmp(a->dsa->pub_key, b->dsa->pub_key) == 0;
4fe2af09 165 default:
a306f2dd 166 fatal("key_equal: bad key type %d", a->type);
4fe2af09 167 break;
168 }
169 return 0;
170}
171
21289cd0 172u_char*
b6c7b7b7 173key_fingerprint_raw(const Key *k, enum fp_type dgst_type,
174 u_int *dgst_raw_length)
4fe2af09 175{
714954dc 176 const EVP_MD *md = NULL;
79c9ac1b 177 EVP_MD_CTX ctx;
1e3b8b07 178 u_char *blob = NULL;
301e8e5b 179 u_char *retval = NULL;
c66f9d0e 180 u_int len = 0;
a306f2dd 181 int nlen, elen;
4fe2af09 182
301e8e5b 183 *dgst_raw_length = 0;
184
79c9ac1b 185 switch (dgst_type) {
186 case SSH_FP_MD5:
187 md = EVP_md5();
188 break;
189 case SSH_FP_SHA1:
190 md = EVP_sha1();
191 break;
192 default:
193 fatal("key_fingerprint_raw: bad digest type %d",
194 dgst_type);
195 }
4fe2af09 196 switch (k->type) {
fa08c86b 197 case KEY_RSA1:
4fe2af09 198 nlen = BN_num_bytes(k->rsa->n);
199 elen = BN_num_bytes(k->rsa->e);
200 len = nlen + elen;
a306f2dd 201 blob = xmalloc(len);
202 BN_bn2bin(k->rsa->n, blob);
203 BN_bn2bin(k->rsa->e, blob + nlen);
4fe2af09 204 break;
205 case KEY_DSA:
fa08c86b 206 case KEY_RSA:
207 key_to_blob(k, &blob, &len);
208 break;
209 case KEY_UNSPEC:
210 return retval;
4fe2af09 211 default:
301e8e5b 212 fatal("key_fingerprint_raw: bad key type %d", k->type);
4fe2af09 213 break;
214 }
a306f2dd 215 if (blob != NULL) {
301e8e5b 216 retval = xmalloc(EVP_MAX_MD_SIZE);
74fc9186 217 EVP_DigestInit(&ctx, md);
218 EVP_DigestUpdate(&ctx, blob, len);
a209a158 219 EVP_DigestFinal(&ctx, retval, dgst_raw_length);
a306f2dd 220 memset(blob, 0, len);
221 xfree(blob);
301e8e5b 222 } else {
223 fatal("key_fingerprint_raw: blob is null");
4fe2af09 224 }
225 return retval;
226}
227
343288b8 228static char *
229key_fingerprint_hex(u_char *dgst_raw, u_int dgst_raw_len)
301e8e5b 230{
231 char *retval;
2ceb8101 232 u_int i;
301e8e5b 233
52e3daed 234 retval = xcalloc(1, dgst_raw_len * 3 + 1);
184eed6a 235 for (i = 0; i < dgst_raw_len; i++) {
301e8e5b 236 char hex[4];
237 snprintf(hex, sizeof(hex), "%02x:", dgst_raw[i]);
956b0f56 238 strlcat(retval, hex, dgst_raw_len * 3 + 1);
301e8e5b 239 }
956b0f56 240
241 /* Remove the trailing ':' character */
301e8e5b 242 retval[(dgst_raw_len * 3) - 1] = '\0';
243 return retval;
244}
245
343288b8 246static char *
247key_fingerprint_bubblebabble(u_char *dgst_raw, u_int dgst_raw_len)
301e8e5b 248{
249 char vowels[] = { 'a', 'e', 'i', 'o', 'u', 'y' };
250 char consonants[] = { 'b', 'c', 'd', 'f', 'g', 'h', 'k', 'l', 'm',
251 'n', 'p', 'r', 's', 't', 'v', 'z', 'x' };
08345971 252 u_int i, j = 0, rounds, seed = 1;
301e8e5b 253 char *retval;
254
255 rounds = (dgst_raw_len / 2) + 1;
52e3daed 256 retval = xcalloc((rounds * 6), sizeof(char));
08345971 257 retval[j++] = 'x';
258 for (i = 0; i < rounds; i++) {
301e8e5b 259 u_int idx0, idx1, idx2, idx3, idx4;
08345971 260 if ((i + 1 < rounds) || (dgst_raw_len % 2 != 0)) {
261 idx0 = (((((u_int)(dgst_raw[2 * i])) >> 6) & 3) +
301e8e5b 262 seed) % 6;
08345971 263 idx1 = (((u_int)(dgst_raw[2 * i])) >> 2) & 15;
264 idx2 = ((((u_int)(dgst_raw[2 * i])) & 3) +
301e8e5b 265 (seed / 6)) % 6;
08345971 266 retval[j++] = vowels[idx0];
267 retval[j++] = consonants[idx1];
268 retval[j++] = vowels[idx2];
269 if ((i + 1) < rounds) {
270 idx3 = (((u_int)(dgst_raw[(2 * i) + 1])) >> 4) & 15;
271 idx4 = (((u_int)(dgst_raw[(2 * i) + 1]))) & 15;
272 retval[j++] = consonants[idx3];
273 retval[j++] = '-';
274 retval[j++] = consonants[idx4];
301e8e5b 275 seed = ((seed * 5) +
08345971 276 ((((u_int)(dgst_raw[2 * i])) * 7) +
277 ((u_int)(dgst_raw[(2 * i) + 1])))) % 36;
301e8e5b 278 }
279 } else {
280 idx0 = seed % 6;
281 idx1 = 16;
282 idx2 = seed / 6;
08345971 283 retval[j++] = vowels[idx0];
284 retval[j++] = consonants[idx1];
285 retval[j++] = vowels[idx2];
301e8e5b 286 }
287 }
08345971 288 retval[j++] = 'x';
289 retval[j++] = '\0';
301e8e5b 290 return retval;
291}
292
343288b8 293char *
b6c7b7b7 294key_fingerprint(const Key *k, enum fp_type dgst_type, enum fp_rep dgst_rep)
301e8e5b 295{
cd332296 296 char *retval = NULL;
301e8e5b 297 u_char *dgst_raw;
a209a158 298 u_int dgst_raw_len;
184eed6a 299
301e8e5b 300 dgst_raw = key_fingerprint_raw(k, dgst_type, &dgst_raw_len);
301 if (!dgst_raw)
22138a36 302 fatal("key_fingerprint: null from key_fingerprint_raw()");
6aacefa7 303 switch (dgst_rep) {
301e8e5b 304 case SSH_FP_HEX:
305 retval = key_fingerprint_hex(dgst_raw, dgst_raw_len);
306 break;
307 case SSH_FP_BUBBLEBABBLE:
308 retval = key_fingerprint_bubblebabble(dgst_raw, dgst_raw_len);
309 break;
310 default:
311 fatal("key_fingerprint_ex: bad digest representation %d",
312 dgst_rep);
313 break;
314 }
315 memset(dgst_raw, 0, dgst_raw_len);
316 xfree(dgst_raw);
317 return retval;
318}
319
4fe2af09 320/*
321 * Reads a multiple-precision integer in decimal from the buffer, and advances
322 * the pointer. The integer must already be initialized. This function is
323 * permitted to modify the buffer. This leaves *cpp to point just beyond the
324 * last processed (and maybe modified) character. Note that this may modify
325 * the buffer containing the number.
326 */
396c147e 327static int
4fe2af09 328read_bignum(char **cpp, BIGNUM * value)
329{
330 char *cp = *cpp;
331 int old;
332
333 /* Skip any leading whitespace. */
334 for (; *cp == ' ' || *cp == '\t'; cp++)
335 ;
336
337 /* Check that it begins with a decimal digit. */
338 if (*cp < '0' || *cp > '9')
339 return 0;
340
341 /* Save starting position. */
342 *cpp = cp;
343
344 /* Move forward until all decimal digits skipped. */
345 for (; *cp >= '0' && *cp <= '9'; cp++)
346 ;
347
348 /* Save the old terminating character, and replace it by \0. */
349 old = *cp;
350 *cp = 0;
351
352 /* Parse the number. */
353 if (BN_dec2bn(&value, *cpp) == 0)
354 return 0;
355
356 /* Restore old terminating character. */
357 *cp = old;
358
359 /* Move beyond the number and return success. */
360 *cpp = cp;
361 return 1;
362}
3ddc795d 363
396c147e 364static int
4fe2af09 365write_bignum(FILE *f, BIGNUM *num)
366{
367 char *buf = BN_bn2dec(num);
368 if (buf == NULL) {
369 error("write_bignum: BN_bn2dec() failed");
370 return 0;
371 }
372 fprintf(f, " %s", buf);
c48c32c1 373 OPENSSL_free(buf);
4fe2af09 374 return 1;
375}
fa08c86b 376
cb8c7bad 377/* returns 1 ok, -1 error */
fa08c86b 378int
a306f2dd 379key_read(Key *ret, char **cpp)
4fe2af09 380{
a306f2dd 381 Key *k;
fa08c86b 382 int success = -1;
383 char *cp, *space;
384 int len, n, type;
385 u_int bits;
1e3b8b07 386 u_char *blob;
a306f2dd 387
388 cp = *cpp;
389
6aacefa7 390 switch (ret->type) {
fa08c86b 391 case KEY_RSA1:
a306f2dd 392 /* Get number of bits. */
393 if (*cp < '0' || *cp > '9')
fa08c86b 394 return -1; /* Bad bit count... */
a306f2dd 395 for (bits = 0; *cp >= '0' && *cp <= '9'; cp++)
396 bits = 10 * bits + *cp - '0';
4fe2af09 397 if (bits == 0)
fa08c86b 398 return -1;
a306f2dd 399 *cpp = cp;
4fe2af09 400 /* Get public exponent, public modulus. */
401 if (!read_bignum(cpp, ret->rsa->e))
fa08c86b 402 return -1;
4fe2af09 403 if (!read_bignum(cpp, ret->rsa->n))
fa08c86b 404 return -1;
405 success = 1;
4fe2af09 406 break;
fa08c86b 407 case KEY_UNSPEC:
408 case KEY_RSA:
4fe2af09 409 case KEY_DSA:
fa08c86b 410 space = strchr(cp, ' ');
411 if (space == NULL) {
79cfe67c 412 debug3("key_read: missing whitespace");
fa08c86b 413 return -1;
414 }
415 *space = '\0';
416 type = key_type_from_name(cp);
417 *space = ' ';
418 if (type == KEY_UNSPEC) {
79cfe67c 419 debug3("key_read: missing keytype");
fa08c86b 420 return -1;
421 }
422 cp = space+1;
423 if (*cp == '\0') {
424 debug3("key_read: short string");
425 return -1;
426 }
427 if (ret->type == KEY_UNSPEC) {
428 ret->type = type;
429 } else if (ret->type != type) {
430 /* is a key, but different type */
431 debug3("key_read: type mismatch");
cb8c7bad 432 return -1;
fa08c86b 433 }
a306f2dd 434 len = 2*strlen(cp);
435 blob = xmalloc(len);
436 n = uudecode(cp, blob, len);
1d1ffb87 437 if (n < 0) {
71276795 438 error("key_read: uudecode %s failed", cp);
2f98d223 439 xfree(blob);
fa08c86b 440 return -1;
1d1ffb87 441 }
a27002e5 442 k = key_from_blob(blob, (u_int)n);
2f98d223 443 xfree(blob);
71276795 444 if (k == NULL) {
fa08c86b 445 error("key_read: key_from_blob %s failed", cp);
446 return -1;
71276795 447 }
fa08c86b 448 if (k->type != type) {
449 error("key_read: type mismatch: encoding error");
450 key_free(k);
451 return -1;
452 }
453/*XXXX*/
454 if (ret->type == KEY_RSA) {
455 if (ret->rsa != NULL)
456 RSA_free(ret->rsa);
457 ret->rsa = k->rsa;
458 k->rsa = NULL;
459 success = 1;
460#ifdef DEBUG_PK
461 RSA_print_fp(stderr, ret->rsa, 8);
462#endif
463 } else {
464 if (ret->dsa != NULL)
465 DSA_free(ret->dsa);
466 ret->dsa = k->dsa;
467 k->dsa = NULL;
468 success = 1;
469#ifdef DEBUG_PK
470 DSA_print_fp(stderr, ret->dsa, 8);
471#endif
472 }
473/*XXXX*/
2f98d223 474 key_free(k);
fa08c86b 475 if (success != 1)
476 break;
71276795 477 /* advance cp: skip whitespace and data */
478 while (*cp == ' ' || *cp == '\t')
479 cp++;
480 while (*cp != '\0' && *cp != ' ' && *cp != '\t')
481 cp++;
482 *cpp = cp;
4fe2af09 483 break;
484 default:
a306f2dd 485 fatal("key_read: bad key type: %d", ret->type);
4fe2af09 486 break;
487 }
fa08c86b 488 return success;
4fe2af09 489}
3ddc795d 490
4fe2af09 491int
b6c7b7b7 492key_write(const Key *key, FILE *f)
4fe2af09 493{
c66f9d0e 494 int n, success = 0;
495 u_int len, bits = 0;
661e45a0 496 u_char *blob;
497 char *uu;
4fe2af09 498
fa08c86b 499 if (key->type == KEY_RSA1 && key->rsa != NULL) {
4fe2af09 500 /* size of modulus 'n' */
501 bits = BN_num_bits(key->rsa->n);
502 fprintf(f, "%u", bits);
503 if (write_bignum(f, key->rsa->e) &&
504 write_bignum(f, key->rsa->n)) {
505 success = 1;
506 } else {
507 error("key_write: failed for RSA key");
508 }
fa08c86b 509 } else if ((key->type == KEY_DSA && key->dsa != NULL) ||
510 (key->type == KEY_RSA && key->rsa != NULL)) {
fa08c86b 511 key_to_blob(key, &blob, &len);
a306f2dd 512 uu = xmalloc(2*len);
1d1ffb87 513 n = uuencode(blob, len, uu, 2*len);
514 if (n > 0) {
fa08c86b 515 fprintf(f, "%s %s", key_ssh_name(key), uu);
1d1ffb87 516 success = 1;
517 }
a306f2dd 518 xfree(blob);
519 xfree(uu);
4fe2af09 520 }
521 return success;
522}
3ddc795d 523
b6c7b7b7 524const char *
525key_type(const Key *k)
1d1ffb87 526{
527 switch (k->type) {
fa08c86b 528 case KEY_RSA1:
529 return "RSA1";
1d1ffb87 530 case KEY_RSA:
531 return "RSA";
1d1ffb87 532 case KEY_DSA:
533 return "DSA";
1d1ffb87 534 }
535 return "unknown";
536}
3ddc795d 537
b6c7b7b7 538const char *
539key_ssh_name(const Key *k)
fa08c86b 540{
541 switch (k->type) {
542 case KEY_RSA:
543 return "ssh-rsa";
fa08c86b 544 case KEY_DSA:
545 return "ssh-dss";
fa08c86b 546 }
547 return "ssh-unknown";
548}
3ddc795d 549
fa08c86b 550u_int
b6c7b7b7 551key_size(const Key *k)
6aacefa7 552{
2e73a022 553 switch (k->type) {
fa08c86b 554 case KEY_RSA1:
2e73a022 555 case KEY_RSA:
556 return BN_num_bits(k->rsa->n);
2e73a022 557 case KEY_DSA:
558 return BN_num_bits(k->dsa->p);
2e73a022 559 }
560 return 0;
561}
fa08c86b 562
396c147e 563static RSA *
1e3b8b07 564rsa_generate_private_key(u_int bits)
fa08c86b 565{
2b87da3b 566 RSA *private;
5ef36928 567
2b87da3b 568 private = RSA_generate_key(bits, 35, NULL, NULL);
569 if (private == NULL)
570 fatal("rsa_generate_private_key: key generation failed.");
571 return private;
fa08c86b 572}
573
396c147e 574static DSA*
1e3b8b07 575dsa_generate_private_key(u_int bits)
fa08c86b 576{
577 DSA *private = DSA_generate_parameters(bits, NULL, 0, NULL, NULL, NULL, NULL);
5ef36928 578
fa08c86b 579 if (private == NULL)
580 fatal("dsa_generate_private_key: DSA_generate_parameters failed");
581 if (!DSA_generate_key(private))
2b87da3b 582 fatal("dsa_generate_private_key: DSA_generate_key failed.");
583 if (private == NULL)
584 fatal("dsa_generate_private_key: NULL.");
fa08c86b 585 return private;
586}
587
588Key *
1e3b8b07 589key_generate(int type, u_int bits)
fa08c86b 590{
591 Key *k = key_new(KEY_UNSPEC);
592 switch (type) {
2b87da3b 593 case KEY_DSA:
fa08c86b 594 k->dsa = dsa_generate_private_key(bits);
595 break;
596 case KEY_RSA:
597 case KEY_RSA1:
598 k->rsa = rsa_generate_private_key(bits);
599 break;
600 default:
2b87da3b 601 fatal("key_generate: unknown type %d", type);
fa08c86b 602 }
2b87da3b 603 k->type = type;
fa08c86b 604 return k;
605}
606
607Key *
b6c7b7b7 608key_from_private(const Key *k)
fa08c86b 609{
610 Key *n = NULL;
611 switch (k->type) {
2b87da3b 612 case KEY_DSA:
fa08c86b 613 n = key_new(k->type);
614 BN_copy(n->dsa->p, k->dsa->p);
615 BN_copy(n->dsa->q, k->dsa->q);
616 BN_copy(n->dsa->g, k->dsa->g);
617 BN_copy(n->dsa->pub_key, k->dsa->pub_key);
618 break;
619 case KEY_RSA:
620 case KEY_RSA1:
621 n = key_new(k->type);
622 BN_copy(n->rsa->n, k->rsa->n);
623 BN_copy(n->rsa->e, k->rsa->e);
624 break;
625 default:
2b87da3b 626 fatal("key_from_private: unknown type %d", k->type);
fa08c86b 627 break;
628 }
629 return n;
630}
631
632int
633key_type_from_name(char *name)
634{
6aacefa7 635 if (strcmp(name, "rsa1") == 0) {
fa08c86b 636 return KEY_RSA1;
6aacefa7 637 } else if (strcmp(name, "rsa") == 0) {
fa08c86b 638 return KEY_RSA;
6aacefa7 639 } else if (strcmp(name, "dsa") == 0) {
fa08c86b 640 return KEY_DSA;
6aacefa7 641 } else if (strcmp(name, "ssh-rsa") == 0) {
fa08c86b 642 return KEY_RSA;
6aacefa7 643 } else if (strcmp(name, "ssh-dss") == 0) {
fa08c86b 644 return KEY_DSA;
645 }
539af7f5 646 debug2("key_type_from_name: unknown key type '%s'", name);
fa08c86b 647 return KEY_UNSPEC;
648}
649
e961a8f9 650int
651key_names_valid2(const char *names)
652{
653 char *s, *cp, *p;
654
655 if (names == NULL || strcmp(names, "") == 0)
656 return 0;
657 s = cp = xstrdup(names);
658 for ((p = strsep(&cp, ",")); p && *p != '\0';
184eed6a 659 (p = strsep(&cp, ","))) {
e961a8f9 660 switch (key_type_from_name(p)) {
661 case KEY_RSA1:
662 case KEY_UNSPEC:
663 xfree(s);
664 return 0;
665 }
666 }
667 debug3("key names ok: [%s]", names);
668 xfree(s);
669 return 1;
670}
671
fa08c86b 672Key *
b6c7b7b7 673key_from_blob(const u_char *blob, u_int blen)
fa08c86b 674{
675 Buffer b;
fa08c86b 676 int rlen, type;
63488674 677 char *ktype = NULL;
fa08c86b 678 Key *key = NULL;
679
680#ifdef DEBUG_PK
681 dump_base64(stderr, blob, blen);
682#endif
683 buffer_init(&b);
684 buffer_append(&b, blob, blen);
63488674 685 if ((ktype = buffer_get_string_ret(&b, NULL)) == NULL) {
686 error("key_from_blob: can't read key type");
687 goto out;
688 }
689
fa08c86b 690 type = key_type_from_name(ktype);
691
6aacefa7 692 switch (type) {
fa08c86b 693 case KEY_RSA:
694 key = key_new(type);
63488674 695 if (buffer_get_bignum2_ret(&b, key->rsa->e) == -1 ||
696 buffer_get_bignum2_ret(&b, key->rsa->n) == -1) {
697 error("key_from_blob: can't read rsa key");
698 key_free(key);
699 key = NULL;
700 goto out;
701 }
fa08c86b 702#ifdef DEBUG_PK
703 RSA_print_fp(stderr, key->rsa, 8);
704#endif
705 break;
706 case KEY_DSA:
707 key = key_new(type);
63488674 708 if (buffer_get_bignum2_ret(&b, key->dsa->p) == -1 ||
709 buffer_get_bignum2_ret(&b, key->dsa->q) == -1 ||
710 buffer_get_bignum2_ret(&b, key->dsa->g) == -1 ||
711 buffer_get_bignum2_ret(&b, key->dsa->pub_key) == -1) {
712 error("key_from_blob: can't read dsa key");
713 key_free(key);
714 key = NULL;
715 goto out;
716 }
fa08c86b 717#ifdef DEBUG_PK
718 DSA_print_fp(stderr, key->dsa, 8);
719#endif
720 break;
721 case KEY_UNSPEC:
722 key = key_new(type);
723 break;
724 default:
725 error("key_from_blob: cannot handle type %s", ktype);
63488674 726 goto out;
fa08c86b 727 }
728 rlen = buffer_len(&b);
729 if (key != NULL && rlen != 0)
730 error("key_from_blob: remaining bytes in key blob %d", rlen);
63488674 731 out:
732 if (ktype != NULL)
733 xfree(ktype);
fa08c86b 734 buffer_free(&b);
735 return key;
736}
737
738int
b6c7b7b7 739key_to_blob(const Key *key, u_char **blobp, u_int *lenp)
fa08c86b 740{
741 Buffer b;
742 int len;
fa08c86b 743
744 if (key == NULL) {
745 error("key_to_blob: key == NULL");
746 return 0;
747 }
748 buffer_init(&b);
6aacefa7 749 switch (key->type) {
fa08c86b 750 case KEY_DSA:
751 buffer_put_cstring(&b, key_ssh_name(key));
752 buffer_put_bignum2(&b, key->dsa->p);
753 buffer_put_bignum2(&b, key->dsa->q);
754 buffer_put_bignum2(&b, key->dsa->g);
755 buffer_put_bignum2(&b, key->dsa->pub_key);
756 break;
757 case KEY_RSA:
758 buffer_put_cstring(&b, key_ssh_name(key));
fa08c86b 759 buffer_put_bignum2(&b, key->rsa->e);
b5c334cc 760 buffer_put_bignum2(&b, key->rsa->n);
fa08c86b 761 break;
762 default:
f7436b8c 763 error("key_to_blob: unsupported key type %d", key->type);
764 buffer_free(&b);
765 return 0;
fa08c86b 766 }
767 len = buffer_len(&b);
fa08c86b 768 if (lenp != NULL)
769 *lenp = len;
eb9f2fab 770 if (blobp != NULL) {
771 *blobp = xmalloc(len);
772 memcpy(*blobp, buffer_ptr(&b), len);
773 }
774 memset(buffer_ptr(&b), 0, len);
775 buffer_free(&b);
fa08c86b 776 return len;
777}
778
779int
780key_sign(
b6c7b7b7 781 const Key *key,
c66f9d0e 782 u_char **sigp, u_int *lenp,
b6c7b7b7 783 const u_char *data, u_int datalen)
fa08c86b 784{
6aacefa7 785 switch (key->type) {
fa08c86b 786 case KEY_DSA:
787 return ssh_dss_sign(key, sigp, lenp, data, datalen);
fa08c86b 788 case KEY_RSA:
789 return ssh_rsa_sign(key, sigp, lenp, data, datalen);
fa08c86b 790 default:
d77347cc 791 error("key_sign: invalid key type %d", key->type);
fa08c86b 792 return -1;
fa08c86b 793 }
794}
795
3ed81c99 796/*
797 * key_verify returns 1 for a correct signature, 0 for an incorrect signature
798 * and -1 on error.
799 */
fa08c86b 800int
801key_verify(
b6c7b7b7 802 const Key *key,
803 const u_char *signature, u_int signaturelen,
804 const u_char *data, u_int datalen)
fa08c86b 805{
c10d042a 806 if (signaturelen == 0)
807 return -1;
808
6aacefa7 809 switch (key->type) {
fa08c86b 810 case KEY_DSA:
811 return ssh_dss_verify(key, signature, signaturelen, data, datalen);
fa08c86b 812 case KEY_RSA:
813 return ssh_rsa_verify(key, signature, signaturelen, data, datalen);
fa08c86b 814 default:
d77347cc 815 error("key_verify: invalid key type %d", key->type);
fa08c86b 816 return -1;
fa08c86b 817 }
818}
d0074658 819
820/* Converts a private to a public key */
d0074658 821Key *
b6c7b7b7 822key_demote(const Key *k)
d0074658 823{
824 Key *pk;
762715ce 825
52e3daed 826 pk = xcalloc(1, sizeof(*pk));
d0074658 827 pk->type = k->type;
828 pk->flags = k->flags;
829 pk->dsa = NULL;
830 pk->rsa = NULL;
831
832 switch (k->type) {
833 case KEY_RSA1:
834 case KEY_RSA:
835 if ((pk->rsa = RSA_new()) == NULL)
836 fatal("key_demote: RSA_new failed");
837 if ((pk->rsa->e = BN_dup(k->rsa->e)) == NULL)
838 fatal("key_demote: BN_dup failed");
839 if ((pk->rsa->n = BN_dup(k->rsa->n)) == NULL)
840 fatal("key_demote: BN_dup failed");
841 break;
842 case KEY_DSA:
843 if ((pk->dsa = DSA_new()) == NULL)
844 fatal("key_demote: DSA_new failed");
845 if ((pk->dsa->p = BN_dup(k->dsa->p)) == NULL)
846 fatal("key_demote: BN_dup failed");
847 if ((pk->dsa->q = BN_dup(k->dsa->q)) == NULL)
848 fatal("key_demote: BN_dup failed");
849 if ((pk->dsa->g = BN_dup(k->dsa->g)) == NULL)
850 fatal("key_demote: BN_dup failed");
851 if ((pk->dsa->pub_key = BN_dup(k->dsa->pub_key)) == NULL)
852 fatal("key_demote: BN_dup failed");
853 break;
854 default:
855 fatal("key_free: bad key type %d", k->type);
856 break;
857 }
858
859 return (pk);
860}
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