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[openssl.git] / ssl / t1_enc.c
1 /* ssl/t1_enc.c */
2 /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
3  * All rights reserved.
4  *
5  * This package is an SSL implementation written
6  * by Eric Young (eay@cryptsoft.com).
7  * The implementation was written so as to conform with Netscapes SSL.
8  * 
9  * This library is free for commercial and non-commercial use as long as
10  * the following conditions are aheared to.  The following conditions
11  * apply to all code found in this distribution, be it the RC4, RSA,
12  * lhash, DES, etc., code; not just the SSL code.  The SSL documentation
13  * included with this distribution is covered by the same copyright terms
14  * except that the holder is Tim Hudson (tjh@cryptsoft.com).
15  * 
16  * Copyright remains Eric Young's, and as such any Copyright notices in
17  * the code are not to be removed.
18  * If this package is used in a product, Eric Young should be given attribution
19  * as the author of the parts of the library used.
20  * This can be in the form of a textual message at program startup or
21  * in documentation (online or textual) provided with the package.
22  * 
23  * Redistribution and use in source and binary forms, with or without
24  * modification, are permitted provided that the following conditions
25  * are met:
26  * 1. Redistributions of source code must retain the copyright
27  *    notice, this list of conditions and the following disclaimer.
28  * 2. Redistributions in binary form must reproduce the above copyright
29  *    notice, this list of conditions and the following disclaimer in the
30  *    documentation and/or other materials provided with the distribution.
31  * 3. All advertising materials mentioning features or use of this software
32  *    must display the following acknowledgement:
33  *    "This product includes cryptographic software written by
34  *     Eric Young (eay@cryptsoft.com)"
35  *    The word 'cryptographic' can be left out if the rouines from the library
36  *    being used are not cryptographic related :-).
37  * 4. If you include any Windows specific code (or a derivative thereof) from 
38  *    the apps directory (application code) you must include an acknowledgement:
39  *    "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
40  * 
41  * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
42  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
43  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
44  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
45  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
46  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
47  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
48  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
49  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
50  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
51  * SUCH DAMAGE.
52  * 
53  * The licence and distribution terms for any publically available version or
54  * derivative of this code cannot be changed.  i.e. this code cannot simply be
55  * copied and put under another distribution licence
56  * [including the GNU Public Licence.]
57  */
58
59 #include <stdio.h>
60 #include "evp.h"
61 #include "hmac.h"
62 #include "ssl_locl.h"
63
64 static void tls1_P_hash(md,sec,sec_len,seed,seed_len,out,olen)
65 EVP_MD *md;
66 unsigned char *sec;
67 int sec_len;
68 unsigned char *seed;
69 int seed_len;
70 unsigned char *out;
71 int olen;
72         {
73         int chunk,n;
74         unsigned int j;
75         HMAC_CTX ctx;
76         HMAC_CTX ctx_tmp;
77         unsigned char A1[HMAC_MAX_MD_CBLOCK];
78         unsigned int A1_len;
79         
80         chunk=EVP_MD_size(md);
81
82         HMAC_Init(&ctx,sec,sec_len,md);
83         HMAC_Update(&ctx,seed,seed_len);
84         HMAC_Final(&ctx,A1,&A1_len);
85
86         n=0;
87         for (;;)
88                 {
89                 HMAC_Init(&ctx,NULL,0,NULL); /* re-init */
90                 HMAC_Update(&ctx,A1,A1_len);
91                 memcpy(&ctx_tmp,&ctx,sizeof(ctx)); /* Copy for A2 */ /* not needed for last one */
92                 HMAC_Update(&ctx,seed,seed_len);
93
94                 if (olen > chunk)
95                         {
96                         HMAC_Final(&ctx,out,&j);
97                         out+=j;
98                         olen-=j;
99                         HMAC_Final(&ctx_tmp,A1,&A1_len); /* calc the next A1 value */
100                         }
101                 else    /* last one */
102                         {
103                         HMAC_Final(&ctx,A1,&A1_len);
104                         memcpy(out,A1,olen);
105                         break;
106                         }
107                 }
108         HMAC_cleanup(&ctx);
109         HMAC_cleanup(&ctx_tmp);
110         memset(A1,0,sizeof(A1));
111         }
112
113 static void tls1_PRF(md5,sha1,label,label_len,sec,slen,out1,out2,olen)
114 EVP_MD *md5;
115 EVP_MD *sha1;
116 unsigned char *label;
117 int label_len;
118 unsigned char *sec;
119 int slen;
120 unsigned char *out1;
121 unsigned char *out2;
122 int olen;
123         {
124         int len,i;
125         unsigned char *S1,*S2;
126
127         len=slen/2;
128         S1=sec;
129         S2= &(sec[len]);
130         len+=(slen&1); /* add for odd, make longer */
131
132         
133         tls1_P_hash(md5 ,S1,len,label,label_len,out1,olen);
134         tls1_P_hash(sha1,S2,len,label,label_len,out2,olen);
135
136         for (i=0; i<olen; i++)
137                 out1[i]^=out2[i];
138         }
139
140 static void tls1_generate_key_block(s,km,tmp,num)
141 SSL *s;
142 unsigned char *km,*tmp;
143 int num;
144         {
145         unsigned char *p;
146         unsigned char buf[SSL3_RANDOM_SIZE*2+
147                 TLS_MD_MAX_CONST_SIZE];
148         p=buf;
149
150         memcpy(p,TLS_MD_KEY_EXPANSION_CONST,
151                 TLS_MD_KEY_EXPANSION_CONST_SIZE);
152         p+=TLS_MD_KEY_EXPANSION_CONST_SIZE;
153         memcpy(p,s->s3->server_random,SSL3_RANDOM_SIZE);
154         p+=SSL3_RANDOM_SIZE;
155         memcpy(p,s->s3->client_random,SSL3_RANDOM_SIZE);
156         p+=SSL3_RANDOM_SIZE;
157
158         tls1_PRF(s->ctx->md5,s->ctx->sha1,buf,(int)(p-buf),
159                 s->session->master_key,s->session->master_key_length,
160                 km,tmp,num);
161         }
162
163 int tls1_change_cipher_state(s,which)
164 SSL *s;
165 int which;
166         {
167         unsigned char *p,*key_block,*mac_secret;
168         unsigned char *exp_label,buf[TLS_MD_MAX_CONST_SIZE+
169                 SSL3_RANDOM_SIZE*2];
170         unsigned char tmp1[EVP_MAX_KEY_LENGTH];
171         unsigned char tmp2[EVP_MAX_KEY_LENGTH];
172         unsigned char iv1[EVP_MAX_IV_LENGTH*2];
173         unsigned char iv2[EVP_MAX_IV_LENGTH*2];
174         unsigned char *ms,*key,*iv,*er1,*er2;
175         int client_write;
176         EVP_CIPHER_CTX *dd;
177         EVP_CIPHER *c;
178         COMP_METHOD *comp;
179         EVP_MD *m;
180         int exp,n,i,j,k,exp_label_len;
181
182         exp=(s->s3->tmp.new_cipher->algorithms & SSL_EXPORT)?1:0;
183         c=s->s3->tmp.new_sym_enc;
184         m=s->s3->tmp.new_hash;
185         comp=s->s3->tmp.new_compression;
186         key_block=s->s3->tmp.key_block;
187
188         if (which & SSL3_CC_READ)
189                 {
190                 if ((s->enc_read_ctx == NULL) &&
191                         ((s->enc_read_ctx=(EVP_CIPHER_CTX *)
192                         Malloc(sizeof(EVP_CIPHER_CTX))) == NULL))
193                         goto err;
194                 dd= s->enc_read_ctx;
195                 s->read_hash=m;
196                 if (s->expand != NULL)
197                         {
198                         COMP_CTX_free(s->expand);
199                         s->expand=NULL;
200                         }
201                 if (comp != NULL)
202                         {
203                         s->expand=COMP_CTX_new(comp);
204                         if (s->expand == NULL)
205                                 {
206                                 SSLerr(SSL_F_TLS1_CHANGE_CIPHER_STATE,SSL_R_COMPRESSION_LIBRARY_ERROR);
207                                 goto err2;
208                                 }
209                         s->s3->rrec.comp=(unsigned char *)
210                                 Malloc(SSL3_RT_MAX_ENCRYPTED_LENGTH);
211                         if (s->s3->rrec.comp == NULL)
212                                 goto err;
213                         }
214                 memset(&(s->s3->read_sequence[0]),0,8);
215                 mac_secret= &(s->s3->read_mac_secret[0]);
216                 }
217         else
218                 {
219                 if ((s->enc_write_ctx == NULL) &&
220                         ((s->enc_write_ctx=(EVP_CIPHER_CTX *)
221                         Malloc(sizeof(EVP_CIPHER_CTX))) == NULL))
222                         goto err;
223                 dd= s->enc_write_ctx;
224                 s->write_hash=m;
225                 if (s->compress != NULL)
226                         {
227                         COMP_CTX_free(s->compress);
228                         s->compress=NULL;
229                         }
230                 if (comp != NULL)
231                         {
232                         s->compress=COMP_CTX_new(comp);
233                         if (s->compress == NULL)
234                                 {
235                                 SSLerr(SSL_F_TLS1_CHANGE_CIPHER_STATE,SSL_R_COMPRESSION_LIBRARY_ERROR);
236                                 goto err2;
237                                 }
238                         }
239                 memset(&(s->s3->write_sequence[0]),0,8);
240                 mac_secret= &(s->s3->write_mac_secret[0]);
241                 }
242
243         EVP_CIPHER_CTX_init(dd);
244
245         p=s->s3->tmp.key_block;
246         i=EVP_MD_size(m);
247         j=(exp)?5:EVP_CIPHER_key_length(c);
248         k=EVP_CIPHER_iv_length(c);
249         er1= &(s->s3->client_random[0]);
250         er2= &(s->s3->server_random[0]);
251         if (    (which == SSL3_CHANGE_CIPHER_CLIENT_WRITE) ||
252                 (which == SSL3_CHANGE_CIPHER_SERVER_READ))
253                 {
254                 ms=  &(p[ 0]); n=i+i;
255                 key= &(p[ n]); n+=j+j;
256                 iv=  &(p[ n]); n+=k+k;
257                 exp_label=(unsigned char *)TLS_MD_CLIENT_WRITE_KEY_CONST;
258                 exp_label_len=TLS_MD_CLIENT_WRITE_KEY_CONST_SIZE;
259                 client_write=1;
260                 }
261         else
262                 {
263                 n=i;
264                 ms=  &(p[ n]); n+=i+j;
265                 key= &(p[ n]); n+=j+k;
266                 iv=  &(p[ n]); n+=k;
267                 exp_label=(unsigned char *)TLS_MD_SERVER_WRITE_KEY_CONST;
268                 exp_label_len=TLS_MD_SERVER_WRITE_KEY_CONST_SIZE;
269                 client_write=0;
270                 }
271
272         if (n > s->s3->tmp.key_block_length)
273                 {
274                 SSLerr(SSL_F_TLS1_CHANGE_CIPHER_STATE,SSL_R_INTERNAL_ERROR);
275                 goto err2;
276                 }
277
278         memcpy(mac_secret,ms,i);
279 #ifdef TLS_DEBUG
280 printf("which = %04X\nmac key=",which);
281 { int z; for (z=0; z<i; z++) printf("%02X%c",ms[z],((z+1)%16)?' ':'\n'); }
282 #endif
283         if (exp)
284                 {
285                 /* In here I set both the read and write key/iv to the
286                  * same value since only the correct one will be used :-).
287                  */
288                 p=buf;
289                 memcpy(p,exp_label,exp_label_len);
290                 p+=exp_label_len;
291                 memcpy(p,s->s3->client_random,SSL3_RANDOM_SIZE);
292                 p+=SSL3_RANDOM_SIZE;
293                 memcpy(p,s->s3->server_random,SSL3_RANDOM_SIZE);
294                 p+=SSL3_RANDOM_SIZE;
295                 tls1_PRF(s->ctx->md5,s->ctx->sha1,buf,(int)(p-buf),key,j,
296                         tmp1,tmp2,EVP_CIPHER_key_length(c));
297                 key=tmp1;
298
299                 if (k > 0)
300                         {
301                         p=buf;
302                         memcpy(p,TLS_MD_IV_BLOCK_CONST,
303                                 TLS_MD_IV_BLOCK_CONST_SIZE);
304                         p+=TLS_MD_IV_BLOCK_CONST_SIZE;
305                         memcpy(p,s->s3->client_random,SSL3_RANDOM_SIZE);
306                         p+=SSL3_RANDOM_SIZE;
307                         memcpy(p,s->s3->server_random,SSL3_RANDOM_SIZE);
308                         p+=SSL3_RANDOM_SIZE;
309                         tls1_PRF(s->ctx->md5,s->ctx->sha1,
310                                 buf,(int)(p-buf),"",0,iv1,iv2,k*2);
311                         if (client_write)
312                                 iv=iv1;
313                         else
314                                 iv= &(iv1[k]);
315                         }
316                 }
317
318         s->session->key_arg_length=0;
319
320         EVP_CipherInit(dd,c,key,iv,(which & SSL3_CC_WRITE));
321 #ifdef TLS_DEBUG
322 printf("which = %04X\nkey=",which);
323 { int z; for (z=0; z<EVP_CIPHER_key_length(c); z++) printf("%02X%c",key[z],((z+1)%16)?' ':'\n'); }
324 printf("\niv=");
325 { int z; for (z=0; z<k; z++) printf("%02X%c",iv[z],((z+1)%16)?' ':'\n'); }
326 printf("\n");
327 #endif
328
329         memset(tmp1,0,sizeof(tmp1));
330         memset(tmp2,0,sizeof(tmp1));
331         memset(iv1,0,sizeof(iv1));
332         memset(iv2,0,sizeof(iv2));
333         return(1);
334 err:
335         SSLerr(SSL_F_TLS1_CHANGE_CIPHER_STATE,ERR_R_MALLOC_FAILURE);
336 err2:
337         return(0);
338         }
339
340 int tls1_setup_key_block(s)
341 SSL *s;
342         {
343         unsigned char *p1,*p2;
344         EVP_CIPHER *c;
345         EVP_MD *hash;
346         int num,exp;
347
348         if (s->s3->tmp.key_block_length != 0)
349                 return(1);
350
351         if (!ssl_cipher_get_evp(s->session->cipher,&c,&hash))
352                 {
353                 SSLerr(SSL_F_TLS1_SETUP_KEY_BLOCK,SSL_R_CIPHER_OR_HASH_UNAVAILABLE);
354                 return(0);
355                 }
356
357         s->s3->tmp.new_sym_enc=c;
358         s->s3->tmp.new_hash=hash;
359
360         exp=(s->session->cipher->algorithms & SSL_EXPORT)?1:0;
361
362         num=EVP_CIPHER_key_length(c)+EVP_MD_size(hash)+EVP_CIPHER_iv_length(c);
363         num*=2;
364
365         ssl3_cleanup_key_block(s);
366
367         if ((p1=(unsigned char *)Malloc(num)) == NULL)
368                 goto err;
369         if ((p2=(unsigned char *)Malloc(num)) == NULL)
370                 goto err;
371
372         s->s3->tmp.key_block_length=num;
373         s->s3->tmp.key_block=p1;
374
375
376 #ifdef TLS_DEBUG
377 printf("client random\n");
378 { int z; for (z=0; z<SSL3_RANDOM_SIZE; z++) printf("%02X%c",s->s3->client_random[z],((z+1)%16)?' ':'\n'); }
379 printf("server random\n");
380 { int z; for (z=0; z<SSL3_RANDOM_SIZE; z++) printf("%02X%c",s->s3->server_random[z],((z+1)%16)?' ':'\n'); }
381 printf("pre-master\n");
382 { int z; for (z=0; z<s->session->master_key_length; z++) printf("%02X%c",s->session->master_key[z],((z+1)%16)?' ':'\n'); }
383 #endif
384         tls1_generate_key_block(s,p1,p2,num);
385         memset(p2,0,num);
386         Free(p2);
387 #ifdef TLS_DEBUG
388 printf("\nkey block\n");
389 { int z; for (z=0; z<num; z++) printf("%02X%c",p1[z],((z+1)%16)?' ':'\n'); }
390 #endif
391
392         return(1);
393 err:
394         SSLerr(SSL_F_TLS1_SETUP_KEY_BLOCK,ERR_R_MALLOC_FAILURE);
395         return(0);
396         }
397
398 int tls1_enc(s,send)
399 SSL *s;
400 int send;
401         {
402         SSL3_RECORD *rec;
403         EVP_CIPHER_CTX *ds;
404         unsigned long l;
405         int bs,i,ii,j,k,n=0;
406         EVP_CIPHER *enc;
407
408         if (send)
409                 {
410                 if (s->write_hash != NULL)
411                         n=EVP_MD_size(s->write_hash);
412                 ds=s->enc_write_ctx;
413                 rec= &(s->s3->wrec);
414                 if (s->enc_write_ctx == NULL)
415                         enc=NULL;
416                 else
417                         enc=EVP_CIPHER_CTX_cipher(s->enc_write_ctx);
418                 }
419         else
420                 {
421                 if (s->read_hash != NULL)
422                         n=EVP_MD_size(s->read_hash);
423                 ds=s->enc_read_ctx;
424                 rec= &(s->s3->rrec);
425                 if (s->enc_read_ctx == NULL)
426                         enc=NULL;
427                 else
428                         enc=EVP_CIPHER_CTX_cipher(s->enc_read_ctx);
429                 }
430
431         if ((s->session == NULL) || (ds == NULL) ||
432                 (enc == NULL))
433                 {
434                 memcpy(rec->data,rec->input,rec->length);
435                 rec->input=rec->data;
436                 }
437         else
438                 {
439                 l=rec->length;
440                 bs=EVP_CIPHER_block_size(ds->cipher);
441
442                 if ((bs != 1) && send)
443                         {
444                         i=bs-((int)l%bs);
445
446                         /* Add weird padding of upto 256 bytes */
447
448                         /* we need to add 'i' padding bytes of value j */
449                         j=i-1;
450                         if (s->options & SSL_OP_TLS_BLOCK_PADDING_BUG)
451                                 {
452                                 if (s->s3->flags & TLS1_FLAGS_TLS_PADDING_BUG)
453                                         j++;
454                                 }
455                         for (k=(int)l; k<(int)(l+i); k++)
456                                 rec->input[k]=j;
457                         l+=i;
458                         rec->length+=i;
459                         }
460
461                 EVP_Cipher(ds,rec->data,rec->input,l);
462
463                 if ((bs != 1) && !send)
464                         {
465                         ii=i=rec->data[l-1];
466                         i++;
467                         if (s->options&SSL_OP_TLS_BLOCK_PADDING_BUG)
468                                 {
469                                 /* First packet is even in size, so check */
470                                 if ((memcmp(s->s3->read_sequence,
471                                         "\0\0\0\0\0\0\0\0",8) == 0) && !(ii & 1))
472                                         s->s3->flags|=TLS1_FLAGS_TLS_PADDING_BUG;
473                                 if (s->s3->flags & TLS1_FLAGS_TLS_PADDING_BUG)
474                                         i--;
475                                 }
476                         if (i > (int)rec->length)
477                                 {
478                                 SSLerr(SSL_F_TLS1_ENC,SSL_R_BLOCK_CIPHER_PAD_IS_WRONG);
479                                 ssl3_send_alert(s,SSL3_AL_FATAL,SSL_AD_DECRYPTION_FAILED);
480                                 return(0);
481                                 }
482                         for (j=(int)(l-i); j<(int)l; j++)
483                                 {
484                                 if (rec->data[j] != ii)
485                                         {
486                                         SSLerr(SSL_F_TLS1_ENC,SSL_R_DECRYPTION_FAILED);
487                                         ssl3_send_alert(s,SSL3_AL_FATAL,SSL_AD_DECRYPTION_FAILED);
488                                         return(0);
489                                         }
490                                 }
491                         rec->length-=i;
492                         }
493                 }
494         return(1);
495         }
496
497 int tls1_cert_verify_mac(s,in_ctx,out)
498 SSL *s;
499 EVP_MD_CTX *in_ctx;
500 unsigned char *out;
501         {
502         unsigned int ret;
503         EVP_MD_CTX ctx;
504
505         memcpy(&ctx,in_ctx,sizeof(EVP_MD_CTX));
506         EVP_DigestFinal(&ctx,out,&ret);
507         return((int)ret);
508         }
509
510 int tls1_final_finish_mac(s,in1_ctx,in2_ctx,str,slen,out)
511 SSL *s;
512 EVP_MD_CTX *in1_ctx,*in2_ctx;
513 unsigned char *str;
514 int slen;
515 unsigned char *out;
516         {
517         unsigned int i;
518         EVP_MD_CTX ctx;
519         unsigned char buf[TLS_MD_MAX_CONST_SIZE+MD5_DIGEST_LENGTH+SHA_DIGEST_LENGTH];
520         unsigned char *q,buf2[12];
521
522         q=buf;
523         memcpy(q,str,slen);
524         q+=slen;
525
526         memcpy(&ctx,in1_ctx,sizeof(EVP_MD_CTX));
527         EVP_DigestFinal(&ctx,q,&i);
528         q+=i;
529         memcpy(&ctx,in2_ctx,sizeof(EVP_MD_CTX));
530         EVP_DigestFinal(&ctx,q,&i);
531         q+=i;
532
533         tls1_PRF(s->ctx->md5,s->ctx->sha1,buf,(int)(q-buf),
534                 s->session->master_key,s->session->master_key_length,
535                 out,buf2,12);
536         memset(&ctx,0,sizeof(EVP_MD_CTX));
537
538         return((int)12);
539         }
540
541 int tls1_mac(ssl,md,send)
542 SSL *ssl;
543 unsigned char *md;
544 int send;
545         {
546         SSL3_RECORD *rec;
547         unsigned char *mac_sec,*seq;
548         EVP_MD *hash;
549         unsigned int md_size;
550         int i;
551         HMAC_CTX hmac;
552         unsigned char buf[5]; 
553
554         if (send)
555                 {
556                 rec= &(ssl->s3->wrec);
557                 mac_sec= &(ssl->s3->write_mac_secret[0]);
558                 seq= &(ssl->s3->write_sequence[0]);
559                 hash=ssl->write_hash;
560                 }
561         else
562                 {
563                 rec= &(ssl->s3->rrec);
564                 mac_sec= &(ssl->s3->read_mac_secret[0]);
565                 seq= &(ssl->s3->read_sequence[0]);
566                 hash=ssl->read_hash;
567                 }
568
569         md_size=EVP_MD_size(hash);
570
571         buf[0]=rec->type;
572         buf[1]=TLS1_VERSION_MAJOR;
573         buf[2]=TLS1_VERSION_MINOR;
574         buf[3]=rec->length>>8;
575         buf[4]=rec->length&0xff;
576
577         /* I should fix this up TLS TLS TLS TLS TLS XXXXXXXX */
578         HMAC_Init(&hmac,mac_sec,EVP_MD_size(hash),hash);
579         HMAC_Update(&hmac,seq,8);
580         HMAC_Update(&hmac,buf,5);
581         HMAC_Update(&hmac,rec->input,rec->length);
582         HMAC_Final(&hmac,md,&md_size);
583
584 #ifdef TLS_DEBUG
585 printf("sec=");
586 {unsigned int z; for (z=0; z<md_size; z++) printf("%02X ",mac_sec[z]); printf("\n"); }
587 printf("seq=");
588 {int z; for (z=0; z<8; z++) printf("%02X ",seq[z]); printf("\n"); }
589 printf("buf=");
590 {int z; for (z=0; z<5; z++) printf("%02X ",buf[z]); printf("\n"); }
591 printf("rec=");
592 {unsigned int z; for (z=0; z<rec->length; z++) printf("%02X ",buf[z]); printf("\n"); }
593 #endif
594
595         for (i=7; i>=0; i--)
596                 if (++seq[i]) break; 
597
598 #ifdef TLS_DEBUG
599 {unsigned int z; for (z=0; z<md_size; z++) printf("%02X ",md[z]); printf("\n"); }
600 #endif
601         return(md_size);
602         }
603
604 int tls1_generate_master_secret(s,out,p,len)
605 SSL *s;
606 unsigned char *out;
607 unsigned char *p;
608 int len;
609         {
610         unsigned char buf[SSL3_RANDOM_SIZE*2+TLS_MD_MASTER_SECRET_CONST_SIZE];
611         unsigned char buff[SSL_MAX_MASTER_KEY_LENGTH];
612
613         /* Setup the stuff to munge */
614         memcpy(buf,TLS_MD_MASTER_SECRET_CONST,
615                 TLS_MD_MASTER_SECRET_CONST_SIZE);
616         memcpy(&(buf[TLS_MD_MASTER_SECRET_CONST_SIZE]),
617                 s->s3->client_random,SSL3_RANDOM_SIZE);
618         memcpy(&(buf[SSL3_RANDOM_SIZE+TLS_MD_MASTER_SECRET_CONST_SIZE]),
619                 s->s3->server_random,SSL3_RANDOM_SIZE);
620         tls1_PRF(s->ctx->md5,s->ctx->sha1,
621                 buf,TLS_MD_MASTER_SECRET_CONST_SIZE+SSL3_RANDOM_SIZE*2,p,len,
622                 s->session->master_key,buff,SSL3_MASTER_SECRET_SIZE);
623         return(SSL3_MASTER_SECRET_SIZE);
624         }
625
626 int tls1_alert_code(code)
627 int code;
628         {
629         switch (code)
630                 {
631         case SSL_AD_CLOSE_NOTIFY:       return(SSL3_AD_CLOSE_NOTIFY);
632         case SSL_AD_UNEXPECTED_MESSAGE: return(SSL3_AD_UNEXPECTED_MESSAGE);
633         case SSL_AD_BAD_RECORD_MAC:     return(SSL3_AD_BAD_RECORD_MAC);
634         case SSL_AD_DECRYPTION_FAILED:  return(TLS1_AD_DECRYPTION_FAILED);
635         case SSL_AD_RECORD_OVERFLOW:    return(TLS1_AD_RECORD_OVERFLOW);
636         case SSL_AD_DECOMPRESSION_FAILURE:return(SSL3_AD_DECOMPRESSION_FAILURE);
637         case SSL_AD_HANDSHAKE_FAILURE:  return(SSL3_AD_HANDSHAKE_FAILURE);
638         case SSL_AD_NO_CERTIFICATE:     return(-1);
639         case SSL_AD_BAD_CERTIFICATE:    return(SSL3_AD_BAD_CERTIFICATE);
640         case SSL_AD_UNSUPPORTED_CERTIFICATE:return(SSL3_AD_UNSUPPORTED_CERTIFICATE);
641         case SSL_AD_CERTIFICATE_REVOKED:return(SSL3_AD_CERTIFICATE_REVOKED);
642         case SSL_AD_CERTIFICATE_EXPIRED:return(SSL3_AD_CERTIFICATE_EXPIRED);
643         case SSL_AD_CERTIFICATE_UNKNOWN:return(SSL3_AD_CERTIFICATE_UNKNOWN);
644         case SSL_AD_ILLEGAL_PARAMETER:  return(SSL3_AD_ILLEGAL_PARAMETER);
645         case SSL_AD_UNKNOWN_CA:         return(TLS1_AD_UNKNOWN_CA);
646         case SSL_AD_ACCESS_DENIED:      return(TLS1_AD_ACCESS_DENIED);
647         case SSL_AD_DECODE_ERROR:       return(TLS1_AD_DECODE_ERROR);
648         case SSL_AD_DECRYPT_ERROR:      return(TLS1_AD_DECRYPT_ERROR);
649         case SSL_AD_EXPORT_RESTRICION:  return(TLS1_AD_EXPORT_RESTRICION);
650         case SSL_AD_PROTOCOL_VERSION:   return(TLS1_AD_PROTOCOL_VERSION);
651         case SSL_AD_INSUFFICIENT_SECURITY:return(TLS1_AD_INSUFFICIENT_SECURITY);
652         case SSL_AD_INTERNAL_ERROR:     return(TLS1_AD_INTERNAL_ERROR);
653         case SSL_AD_USER_CANCLED:       return(TLS1_AD_USER_CANCLED);
654         case SSL_AD_NO_RENEGOTIATION:   return(TLS1_AD_NO_RENEGOTIATION);
655         default:                        return(-1);
656                 }
657         }
658