/src/openssl30/ssl/s3_enc.c
Line | Count | Source |
1 | | /* |
2 | | * Copyright 1995-2021 The OpenSSL Project Authors. All Rights Reserved. |
3 | | * Copyright 2005 Nokia. All rights reserved. |
4 | | * |
5 | | * Licensed under the Apache License 2.0 (the "License"). You may not use |
6 | | * this file except in compliance with the License. You can obtain a copy |
7 | | * in the file LICENSE in the source distribution or at |
8 | | * https://www.openssl.org/source/license.html |
9 | | */ |
10 | | |
11 | | #include <stdio.h> |
12 | | #include "ssl_local.h" |
13 | | #include <openssl/evp.h> |
14 | | #include <openssl/md5.h> |
15 | | #include <openssl/core_names.h> |
16 | | #include "internal/cryptlib.h" |
17 | | |
18 | | static int ssl3_generate_key_block(SSL *s, unsigned char *km, int num) |
19 | 0 | { |
20 | 0 | const EVP_MD *md5 = NULL, *sha1 = NULL; |
21 | 0 | EVP_MD_CTX *m5; |
22 | 0 | EVP_MD_CTX *s1; |
23 | 0 | unsigned char buf[16], smd[SHA_DIGEST_LENGTH]; |
24 | 0 | unsigned char c = 'A'; |
25 | 0 | unsigned int i, k; |
26 | 0 | int ret = 0; |
27 | |
|
28 | | #ifdef CHARSET_EBCDIC |
29 | | c = os_toascii[c]; /* 'A' in ASCII */ |
30 | | #endif |
31 | 0 | k = 0; |
32 | 0 | md5 = ssl_evp_md_fetch(s->ctx->libctx, NID_md5, s->ctx->propq); |
33 | 0 | sha1 = ssl_evp_md_fetch(s->ctx->libctx, NID_sha1, s->ctx->propq); |
34 | 0 | m5 = EVP_MD_CTX_new(); |
35 | 0 | s1 = EVP_MD_CTX_new(); |
36 | 0 | if (md5 == NULL || sha1 == NULL || m5 == NULL || s1 == NULL) { |
37 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
38 | 0 | goto err; |
39 | 0 | } |
40 | 0 | for (i = 0; (int)i < num; i += MD5_DIGEST_LENGTH) { |
41 | 0 | k++; |
42 | 0 | if (k > sizeof(buf)) { |
43 | | /* bug: 'buf' is too small for this ciphersuite */ |
44 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
45 | 0 | goto err; |
46 | 0 | } |
47 | | |
48 | 0 | memset(buf, c, k); |
49 | 0 | c++; |
50 | 0 | if (!EVP_DigestInit_ex(s1, sha1, NULL) |
51 | 0 | || !EVP_DigestUpdate(s1, buf, k) |
52 | 0 | || !EVP_DigestUpdate(s1, s->session->master_key, |
53 | 0 | s->session->master_key_length) |
54 | 0 | || !EVP_DigestUpdate(s1, s->s3.server_random, SSL3_RANDOM_SIZE) |
55 | 0 | || !EVP_DigestUpdate(s1, s->s3.client_random, SSL3_RANDOM_SIZE) |
56 | 0 | || !EVP_DigestFinal_ex(s1, smd, NULL) |
57 | 0 | || !EVP_DigestInit_ex(m5, md5, NULL) |
58 | 0 | || !EVP_DigestUpdate(m5, s->session->master_key, |
59 | 0 | s->session->master_key_length) |
60 | 0 | || !EVP_DigestUpdate(m5, smd, SHA_DIGEST_LENGTH)) { |
61 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
62 | 0 | goto err; |
63 | 0 | } |
64 | 0 | if ((int)(i + MD5_DIGEST_LENGTH) > num) { |
65 | 0 | if (!EVP_DigestFinal_ex(m5, smd, NULL)) { |
66 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
67 | 0 | goto err; |
68 | 0 | } |
69 | 0 | memcpy(km, smd, (num - i)); |
70 | 0 | } else { |
71 | 0 | if (!EVP_DigestFinal_ex(m5, km, NULL)) { |
72 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
73 | 0 | goto err; |
74 | 0 | } |
75 | 0 | } |
76 | | |
77 | 0 | km += MD5_DIGEST_LENGTH; |
78 | 0 | } |
79 | 0 | OPENSSL_cleanse(smd, sizeof(smd)); |
80 | 0 | ret = 1; |
81 | 0 | err: |
82 | 0 | EVP_MD_CTX_free(m5); |
83 | 0 | EVP_MD_CTX_free(s1); |
84 | 0 | ssl_evp_md_free(md5); |
85 | 0 | ssl_evp_md_free(sha1); |
86 | 0 | return ret; |
87 | 0 | } |
88 | | |
89 | | int ssl3_change_cipher_state(SSL *s, int which) |
90 | 0 | { |
91 | 0 | unsigned char *p, *mac_secret; |
92 | 0 | unsigned char *ms, *key, *iv; |
93 | 0 | EVP_CIPHER_CTX *dd; |
94 | 0 | const EVP_CIPHER *c; |
95 | 0 | #ifndef OPENSSL_NO_COMP |
96 | 0 | COMP_METHOD *comp; |
97 | 0 | #endif |
98 | 0 | const EVP_MD *m; |
99 | 0 | int mdi; |
100 | 0 | size_t n, i, j, k, cl; |
101 | 0 | int reuse_dd = 0; |
102 | |
|
103 | 0 | c = s->s3.tmp.new_sym_enc; |
104 | 0 | m = s->s3.tmp.new_hash; |
105 | | /* m == NULL will lead to a crash later */ |
106 | 0 | if (!ossl_assert(m != NULL)) { |
107 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
108 | 0 | goto err; |
109 | 0 | } |
110 | 0 | #ifndef OPENSSL_NO_COMP |
111 | 0 | if (s->s3.tmp.new_compression == NULL) |
112 | 0 | comp = NULL; |
113 | 0 | else |
114 | 0 | comp = s->s3.tmp.new_compression->method; |
115 | 0 | #endif |
116 | |
|
117 | 0 | if (which & SSL3_CC_READ) { |
118 | 0 | if (s->enc_read_ctx != NULL) { |
119 | 0 | reuse_dd = 1; |
120 | 0 | } else if ((s->enc_read_ctx = EVP_CIPHER_CTX_new()) == NULL) { |
121 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
122 | 0 | goto err; |
123 | 0 | } else { |
124 | | /* |
125 | | * make sure it's initialised in case we exit later with an error |
126 | | */ |
127 | 0 | EVP_CIPHER_CTX_reset(s->enc_read_ctx); |
128 | 0 | } |
129 | 0 | dd = s->enc_read_ctx; |
130 | |
|
131 | 0 | if (ssl_replace_hash(&s->read_hash, m) == NULL) { |
132 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
133 | 0 | goto err; |
134 | 0 | } |
135 | 0 | #ifndef OPENSSL_NO_COMP |
136 | | /* COMPRESS */ |
137 | 0 | COMP_CTX_free(s->expand); |
138 | 0 | s->expand = NULL; |
139 | 0 | if (comp != NULL) { |
140 | 0 | s->expand = COMP_CTX_new(comp); |
141 | 0 | if (s->expand == NULL) { |
142 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, |
143 | 0 | SSL_R_COMPRESSION_LIBRARY_ERROR); |
144 | 0 | goto err; |
145 | 0 | } |
146 | 0 | } |
147 | 0 | #endif |
148 | 0 | RECORD_LAYER_reset_read_sequence(&s->rlayer); |
149 | 0 | mac_secret = &(s->s3.read_mac_secret[0]); |
150 | 0 | } else { |
151 | 0 | s->statem.enc_write_state = ENC_WRITE_STATE_INVALID; |
152 | 0 | if (s->enc_write_ctx != NULL) { |
153 | 0 | reuse_dd = 1; |
154 | 0 | } else if ((s->enc_write_ctx = EVP_CIPHER_CTX_new()) == NULL) { |
155 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
156 | 0 | goto err; |
157 | 0 | } else { |
158 | | /* |
159 | | * make sure it's initialised in case we exit later with an error |
160 | | */ |
161 | 0 | EVP_CIPHER_CTX_reset(s->enc_write_ctx); |
162 | 0 | } |
163 | 0 | dd = s->enc_write_ctx; |
164 | 0 | if (ssl_replace_hash(&s->write_hash, m) == NULL) { |
165 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
166 | 0 | goto err; |
167 | 0 | } |
168 | 0 | #ifndef OPENSSL_NO_COMP |
169 | | /* COMPRESS */ |
170 | 0 | COMP_CTX_free(s->compress); |
171 | 0 | s->compress = NULL; |
172 | 0 | if (comp != NULL) { |
173 | 0 | s->compress = COMP_CTX_new(comp); |
174 | 0 | if (s->compress == NULL) { |
175 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, |
176 | 0 | SSL_R_COMPRESSION_LIBRARY_ERROR); |
177 | 0 | goto err; |
178 | 0 | } |
179 | 0 | } |
180 | 0 | #endif |
181 | 0 | RECORD_LAYER_reset_write_sequence(&s->rlayer); |
182 | 0 | mac_secret = &(s->s3.write_mac_secret[0]); |
183 | 0 | } |
184 | | |
185 | 0 | if (reuse_dd) |
186 | 0 | EVP_CIPHER_CTX_reset(dd); |
187 | |
|
188 | 0 | p = s->s3.tmp.key_block; |
189 | 0 | mdi = EVP_MD_get_size(m); |
190 | 0 | if (mdi < 0) { |
191 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
192 | 0 | goto err; |
193 | 0 | } |
194 | 0 | i = mdi; |
195 | 0 | cl = EVP_CIPHER_get_key_length(c); |
196 | 0 | j = cl; |
197 | 0 | k = EVP_CIPHER_get_iv_length(c); |
198 | 0 | if ((which == SSL3_CHANGE_CIPHER_CLIENT_WRITE) || (which == SSL3_CHANGE_CIPHER_SERVER_READ)) { |
199 | 0 | ms = &(p[0]); |
200 | 0 | n = i + i; |
201 | 0 | key = &(p[n]); |
202 | 0 | n += j + j; |
203 | 0 | iv = &(p[n]); |
204 | 0 | n += k + k; |
205 | 0 | } else { |
206 | 0 | n = i; |
207 | 0 | ms = &(p[n]); |
208 | 0 | n += i + j; |
209 | 0 | key = &(p[n]); |
210 | 0 | n += j + k; |
211 | 0 | iv = &(p[n]); |
212 | 0 | n += k; |
213 | 0 | } |
214 | |
|
215 | 0 | if (n > s->s3.tmp.key_block_length) { |
216 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
217 | 0 | goto err; |
218 | 0 | } |
219 | | |
220 | 0 | memcpy(mac_secret, ms, i); |
221 | |
|
222 | 0 | if (!EVP_CipherInit_ex(dd, c, NULL, key, iv, (which & SSL3_CC_WRITE))) { |
223 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
224 | 0 | goto err; |
225 | 0 | } |
226 | | |
227 | | /* |
228 | | * The cipher we actually ended up using in the EVP_CIPHER_CTX may be |
229 | | * different to that in c if we have an ENGINE in use |
230 | | */ |
231 | 0 | if (EVP_CIPHER_get0_provider(EVP_CIPHER_CTX_get0_cipher(dd)) != NULL |
232 | 0 | && !tls_provider_set_tls_params(s, dd, c, m)) { |
233 | | /* SSLfatal already called */ |
234 | 0 | goto err; |
235 | 0 | } |
236 | | |
237 | 0 | s->statem.enc_write_state = ENC_WRITE_STATE_VALID; |
238 | 0 | return 1; |
239 | 0 | err: |
240 | 0 | return 0; |
241 | 0 | } |
242 | | |
243 | | int ssl3_setup_key_block(SSL *s) |
244 | 0 | { |
245 | 0 | unsigned char *p; |
246 | 0 | const EVP_CIPHER *c; |
247 | 0 | const EVP_MD *hash; |
248 | 0 | int num; |
249 | 0 | int ret = 0; |
250 | 0 | SSL_COMP *comp; |
251 | |
|
252 | 0 | if (s->s3.tmp.key_block_length != 0) |
253 | 0 | return 1; |
254 | | |
255 | 0 | if (!ssl_cipher_get_evp(s->ctx, s->session, &c, &hash, NULL, NULL, &comp, |
256 | 0 | 0)) { |
257 | | /* Error is already recorded */ |
258 | 0 | SSLfatal_alert(s, SSL_AD_INTERNAL_ERROR); |
259 | 0 | return 0; |
260 | 0 | } |
261 | | |
262 | 0 | ssl_evp_cipher_free(s->s3.tmp.new_sym_enc); |
263 | 0 | s->s3.tmp.new_sym_enc = c; |
264 | 0 | ssl_evp_md_free(s->s3.tmp.new_hash); |
265 | 0 | s->s3.tmp.new_hash = hash; |
266 | | #ifdef OPENSSL_NO_COMP |
267 | | s->s3.tmp.new_compression = NULL; |
268 | | #else |
269 | 0 | s->s3.tmp.new_compression = comp; |
270 | 0 | #endif |
271 | |
|
272 | 0 | num = EVP_MD_get_size(hash); |
273 | 0 | if (num < 0) |
274 | 0 | return 0; |
275 | | |
276 | 0 | num = EVP_CIPHER_get_key_length(c) + num + EVP_CIPHER_get_iv_length(c); |
277 | 0 | num *= 2; |
278 | |
|
279 | 0 | ssl3_cleanup_key_block(s); |
280 | |
|
281 | 0 | if ((p = OPENSSL_malloc(num)) == NULL) { |
282 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
283 | 0 | return 0; |
284 | 0 | } |
285 | | |
286 | 0 | s->s3.tmp.key_block_length = num; |
287 | 0 | s->s3.tmp.key_block = p; |
288 | | |
289 | | /* Calls SSLfatal() as required */ |
290 | 0 | ret = ssl3_generate_key_block(s, p, num); |
291 | |
|
292 | 0 | if (!(s->options & SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS)) { |
293 | | /* |
294 | | * enable vulnerability countermeasure for CBC ciphers with known-IV |
295 | | * problem (http://www.openssl.org/~bodo/tls-cbc.txt) |
296 | | */ |
297 | 0 | s->s3.need_empty_fragments = 1; |
298 | |
|
299 | 0 | if (s->session->cipher != NULL) { |
300 | 0 | if (s->session->cipher->algorithm_enc == SSL_eNULL) |
301 | 0 | s->s3.need_empty_fragments = 0; |
302 | |
|
303 | 0 | if (s->session->cipher->algorithm_enc == SSL_RC4) |
304 | 0 | s->s3.need_empty_fragments = 0; |
305 | 0 | } |
306 | 0 | } |
307 | |
|
308 | 0 | return ret; |
309 | 0 | } |
310 | | |
311 | | void ssl3_cleanup_key_block(SSL *s) |
312 | 855k | { |
313 | 855k | OPENSSL_clear_free(s->s3.tmp.key_block, s->s3.tmp.key_block_length); |
314 | 855k | s->s3.tmp.key_block = NULL; |
315 | 855k | s->s3.tmp.key_block_length = 0; |
316 | 855k | } |
317 | | |
318 | | int ssl3_init_finished_mac(SSL *s) |
319 | 220k | { |
320 | 220k | BIO *buf = BIO_new(BIO_s_mem()); |
321 | | |
322 | 220k | if (buf == NULL) { |
323 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
324 | 0 | return 0; |
325 | 0 | } |
326 | 220k | ssl3_free_digest_list(s); |
327 | 220k | s->s3.handshake_buffer = buf; |
328 | 220k | (void)BIO_set_close(s->s3.handshake_buffer, BIO_CLOSE); |
329 | 220k | return 1; |
330 | 220k | } |
331 | | |
332 | | /* |
333 | | * Free digest list. Also frees handshake buffer since they are always freed |
334 | | * together. |
335 | | */ |
336 | | |
337 | | void ssl3_free_digest_list(SSL *s) |
338 | 1.03M | { |
339 | 1.03M | BIO_free(s->s3.handshake_buffer); |
340 | 1.03M | s->s3.handshake_buffer = NULL; |
341 | 1.03M | EVP_MD_CTX_free(s->s3.handshake_dgst); |
342 | 1.03M | s->s3.handshake_dgst = NULL; |
343 | 1.03M | } |
344 | | |
345 | | int ssl3_finish_mac(SSL *s, const unsigned char *buf, size_t len) |
346 | 650k | { |
347 | 650k | int ret; |
348 | | |
349 | 650k | if (s->s3.handshake_dgst == NULL) { |
350 | | /* Note: this writes to a memory BIO so a failure is a fatal error */ |
351 | 377k | if (len > INT_MAX) { |
352 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_OVERFLOW_ERROR); |
353 | 0 | return 0; |
354 | 0 | } |
355 | 377k | ret = BIO_write(s->s3.handshake_buffer, (void *)buf, (int)len); |
356 | 377k | if (ret <= 0 || ret != (int)len) { |
357 | 7 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
358 | 7 | return 0; |
359 | 7 | } |
360 | 377k | } else { |
361 | 272k | ret = EVP_DigestUpdate(s->s3.handshake_dgst, buf, len); |
362 | 272k | if (!ret) { |
363 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
364 | 0 | return 0; |
365 | 0 | } |
366 | 272k | } |
367 | 650k | return 1; |
368 | 650k | } |
369 | | |
370 | | int ssl3_digest_cached_records(SSL *s, int keep) |
371 | 217k | { |
372 | 217k | const EVP_MD *md; |
373 | 217k | long hdatalen; |
374 | 217k | void *hdata; |
375 | | |
376 | 217k | if (s->s3.handshake_dgst == NULL) { |
377 | 67.3k | hdatalen = BIO_get_mem_data(s->s3.handshake_buffer, &hdata); |
378 | 67.3k | if (hdatalen <= 0) { |
379 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_BAD_HANDSHAKE_LENGTH); |
380 | 0 | return 0; |
381 | 0 | } |
382 | | |
383 | 67.3k | s->s3.handshake_dgst = EVP_MD_CTX_new(); |
384 | 67.3k | if (s->s3.handshake_dgst == NULL) { |
385 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
386 | 0 | return 0; |
387 | 0 | } |
388 | | |
389 | 67.3k | md = ssl_handshake_md(s); |
390 | 67.3k | if (md == NULL) { |
391 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, |
392 | 0 | SSL_R_NO_SUITABLE_DIGEST_ALGORITHM); |
393 | 0 | return 0; |
394 | 0 | } |
395 | 67.3k | if (!EVP_DigestInit_ex(s->s3.handshake_dgst, md, NULL) |
396 | 67.3k | || !EVP_DigestUpdate(s->s3.handshake_dgst, hdata, hdatalen)) { |
397 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
398 | 0 | return 0; |
399 | 0 | } |
400 | 67.3k | } |
401 | 217k | if (keep == 0) { |
402 | 92.8k | BIO_free(s->s3.handshake_buffer); |
403 | 92.8k | s->s3.handshake_buffer = NULL; |
404 | 92.8k | } |
405 | | |
406 | 217k | return 1; |
407 | 217k | } |
408 | | |
409 | | void ssl3_digest_master_key_set_params(const SSL_SESSION *session, |
410 | | OSSL_PARAM params[]) |
411 | 0 | { |
412 | 0 | int n = 0; |
413 | 0 | params[n++] = OSSL_PARAM_construct_octet_string(OSSL_DIGEST_PARAM_SSL3_MS, |
414 | 0 | (void *)session->master_key, |
415 | 0 | session->master_key_length); |
416 | 0 | params[n++] = OSSL_PARAM_construct_end(); |
417 | 0 | } |
418 | | |
419 | | size_t ssl3_final_finish_mac(SSL *s, const char *sender, size_t len, |
420 | | unsigned char *p) |
421 | 0 | { |
422 | 0 | int ret; |
423 | 0 | EVP_MD_CTX *ctx = NULL; |
424 | |
|
425 | 0 | if (!ssl3_digest_cached_records(s, 0)) { |
426 | | /* SSLfatal() already called */ |
427 | 0 | return 0; |
428 | 0 | } |
429 | | |
430 | 0 | if (EVP_MD_CTX_get_type(s->s3.handshake_dgst) != NID_md5_sha1) { |
431 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, SSL_R_NO_REQUIRED_DIGEST); |
432 | 0 | return 0; |
433 | 0 | } |
434 | | |
435 | 0 | ctx = EVP_MD_CTX_new(); |
436 | 0 | if (ctx == NULL) { |
437 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
438 | 0 | return 0; |
439 | 0 | } |
440 | 0 | if (!EVP_MD_CTX_copy_ex(ctx, s->s3.handshake_dgst)) { |
441 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
442 | 0 | ret = 0; |
443 | 0 | goto err; |
444 | 0 | } |
445 | | |
446 | 0 | ret = EVP_MD_CTX_get_size(ctx); |
447 | 0 | if (ret < 0) { |
448 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
449 | 0 | ret = 0; |
450 | 0 | goto err; |
451 | 0 | } |
452 | | |
453 | 0 | if (sender != NULL) { |
454 | 0 | OSSL_PARAM digest_cmd_params[3]; |
455 | |
|
456 | 0 | ssl3_digest_master_key_set_params(s->session, digest_cmd_params); |
457 | |
|
458 | 0 | if (EVP_DigestUpdate(ctx, sender, len) <= 0 |
459 | 0 | || EVP_MD_CTX_set_params(ctx, digest_cmd_params) <= 0 |
460 | 0 | || EVP_DigestFinal_ex(ctx, p, NULL) <= 0) { |
461 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
462 | 0 | ret = 0; |
463 | 0 | } |
464 | 0 | } |
465 | |
|
466 | 0 | err: |
467 | 0 | EVP_MD_CTX_free(ctx); |
468 | |
|
469 | 0 | return ret; |
470 | 0 | } |
471 | | |
472 | | int ssl3_generate_master_secret(SSL *s, unsigned char *out, unsigned char *p, |
473 | | size_t len, size_t *secret_size) |
474 | 0 | { |
475 | 0 | static const unsigned char *salt[3] = { |
476 | 0 | #ifndef CHARSET_EBCDIC |
477 | 0 | (const unsigned char *)"A", |
478 | 0 | (const unsigned char *)"BB", |
479 | 0 | (const unsigned char *)"CCC", |
480 | | #else |
481 | | (const unsigned char *)"\x41", |
482 | | (const unsigned char *)"\x42\x42", |
483 | | (const unsigned char *)"\x43\x43\x43", |
484 | | #endif |
485 | 0 | }; |
486 | 0 | unsigned char buf[EVP_MAX_MD_SIZE]; |
487 | 0 | EVP_MD_CTX *ctx = EVP_MD_CTX_new(); |
488 | 0 | int i, ret = 1; |
489 | 0 | unsigned int n; |
490 | 0 | size_t ret_secret_size = 0; |
491 | |
|
492 | 0 | if (ctx == NULL) { |
493 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_MALLOC_FAILURE); |
494 | 0 | return 0; |
495 | 0 | } |
496 | 0 | for (i = 0; i < 3; i++) { |
497 | 0 | if (EVP_DigestInit_ex(ctx, s->ctx->sha1, NULL) <= 0 |
498 | 0 | || EVP_DigestUpdate(ctx, salt[i], |
499 | 0 | strlen((const char *)salt[i])) |
500 | 0 | <= 0 |
501 | 0 | || EVP_DigestUpdate(ctx, p, len) <= 0 |
502 | 0 | || EVP_DigestUpdate(ctx, &(s->s3.client_random[0]), |
503 | 0 | SSL3_RANDOM_SIZE) |
504 | 0 | <= 0 |
505 | 0 | || EVP_DigestUpdate(ctx, &(s->s3.server_random[0]), |
506 | 0 | SSL3_RANDOM_SIZE) |
507 | 0 | <= 0 |
508 | 0 | || EVP_DigestFinal_ex(ctx, buf, &n) <= 0 |
509 | 0 | || EVP_DigestInit_ex(ctx, s->ctx->md5, NULL) <= 0 |
510 | 0 | || EVP_DigestUpdate(ctx, p, len) <= 0 |
511 | 0 | || EVP_DigestUpdate(ctx, buf, n) <= 0 |
512 | 0 | || EVP_DigestFinal_ex(ctx, out, &n) <= 0) { |
513 | 0 | SSLfatal(s, SSL_AD_INTERNAL_ERROR, ERR_R_INTERNAL_ERROR); |
514 | 0 | ret = 0; |
515 | 0 | break; |
516 | 0 | } |
517 | 0 | out += n; |
518 | 0 | ret_secret_size += n; |
519 | 0 | } |
520 | 0 | EVP_MD_CTX_free(ctx); |
521 | |
|
522 | 0 | OPENSSL_cleanse(buf, sizeof(buf)); |
523 | 0 | if (ret) |
524 | 0 | *secret_size = ret_secret_size; |
525 | 0 | return ret; |
526 | 0 | } |
527 | | |
528 | | int ssl3_alert_code(int code) |
529 | 0 | { |
530 | 0 | switch (code) { |
531 | 0 | case SSL_AD_CLOSE_NOTIFY: |
532 | 0 | return SSL3_AD_CLOSE_NOTIFY; |
533 | 0 | case SSL_AD_UNEXPECTED_MESSAGE: |
534 | 0 | return SSL3_AD_UNEXPECTED_MESSAGE; |
535 | 0 | case SSL_AD_BAD_RECORD_MAC: |
536 | 0 | return SSL3_AD_BAD_RECORD_MAC; |
537 | 0 | case SSL_AD_DECRYPTION_FAILED: |
538 | 0 | return SSL3_AD_BAD_RECORD_MAC; |
539 | 0 | case SSL_AD_RECORD_OVERFLOW: |
540 | 0 | return SSL3_AD_BAD_RECORD_MAC; |
541 | 0 | case SSL_AD_DECOMPRESSION_FAILURE: |
542 | 0 | return SSL3_AD_DECOMPRESSION_FAILURE; |
543 | 0 | case SSL_AD_HANDSHAKE_FAILURE: |
544 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
545 | 0 | case SSL_AD_NO_CERTIFICATE: |
546 | 0 | return SSL3_AD_NO_CERTIFICATE; |
547 | 0 | case SSL_AD_BAD_CERTIFICATE: |
548 | 0 | return SSL3_AD_BAD_CERTIFICATE; |
549 | 0 | case SSL_AD_UNSUPPORTED_CERTIFICATE: |
550 | 0 | return SSL3_AD_UNSUPPORTED_CERTIFICATE; |
551 | 0 | case SSL_AD_CERTIFICATE_REVOKED: |
552 | 0 | return SSL3_AD_CERTIFICATE_REVOKED; |
553 | 0 | case SSL_AD_CERTIFICATE_EXPIRED: |
554 | 0 | return SSL3_AD_CERTIFICATE_EXPIRED; |
555 | 0 | case SSL_AD_CERTIFICATE_UNKNOWN: |
556 | 0 | return SSL3_AD_CERTIFICATE_UNKNOWN; |
557 | 0 | case SSL_AD_ILLEGAL_PARAMETER: |
558 | 0 | return SSL3_AD_ILLEGAL_PARAMETER; |
559 | 0 | case SSL_AD_UNKNOWN_CA: |
560 | 0 | return SSL3_AD_BAD_CERTIFICATE; |
561 | 0 | case SSL_AD_ACCESS_DENIED: |
562 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
563 | 0 | case SSL_AD_DECODE_ERROR: |
564 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
565 | 0 | case SSL_AD_DECRYPT_ERROR: |
566 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
567 | 0 | case SSL_AD_EXPORT_RESTRICTION: |
568 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
569 | 0 | case SSL_AD_PROTOCOL_VERSION: |
570 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
571 | 0 | case SSL_AD_INSUFFICIENT_SECURITY: |
572 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
573 | 0 | case SSL_AD_INTERNAL_ERROR: |
574 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
575 | 0 | case SSL_AD_USER_CANCELLED: |
576 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
577 | 0 | case SSL_AD_NO_RENEGOTIATION: |
578 | 0 | return -1; /* Don't send it :-) */ |
579 | 0 | case SSL_AD_UNSUPPORTED_EXTENSION: |
580 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
581 | 0 | case SSL_AD_CERTIFICATE_UNOBTAINABLE: |
582 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
583 | 0 | case SSL_AD_UNRECOGNIZED_NAME: |
584 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
585 | 0 | case SSL_AD_BAD_CERTIFICATE_STATUS_RESPONSE: |
586 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
587 | 0 | case SSL_AD_BAD_CERTIFICATE_HASH_VALUE: |
588 | 0 | return SSL3_AD_HANDSHAKE_FAILURE; |
589 | 0 | case SSL_AD_UNKNOWN_PSK_IDENTITY: |
590 | 0 | return TLS1_AD_UNKNOWN_PSK_IDENTITY; |
591 | 0 | case SSL_AD_INAPPROPRIATE_FALLBACK: |
592 | 0 | return TLS1_AD_INAPPROPRIATE_FALLBACK; |
593 | 0 | case SSL_AD_NO_APPLICATION_PROTOCOL: |
594 | 0 | return TLS1_AD_NO_APPLICATION_PROTOCOL; |
595 | 0 | case SSL_AD_CERTIFICATE_REQUIRED: |
596 | 0 | return SSL_AD_HANDSHAKE_FAILURE; |
597 | 0 | case TLS13_AD_MISSING_EXTENSION: |
598 | 0 | return SSL_AD_HANDSHAKE_FAILURE; |
599 | 0 | default: |
600 | 0 | return -1; |
601 | 0 | } |
602 | 0 | } |