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Adam Langley95c29f32014-06-20 12:00:00 -07001/* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com)
2 * All rights reserved.
3 *
4 * This package is an SSL implementation written
5 * by Eric Young (eay@cryptsoft.com).
6 * The implementation was written so as to conform with Netscapes SSL.
7 *
8 * This library is free for commercial and non-commercial use as long as
9 * the following conditions are aheared to. The following conditions
10 * apply to all code found in this distribution, be it the RC4, RSA,
11 * lhash, DES, etc., code; not just the SSL code. The SSL documentation
12 * included with this distribution is covered by the same copyright terms
13 * except that the holder is Tim Hudson (tjh@cryptsoft.com).
14 *
15 * Copyright remains Eric Young's, and as such any Copyright notices in
16 * the code are not to be removed.
17 * If this package is used in a product, Eric Young should be given attribution
18 * as the author of the parts of the library used.
19 * This can be in the form of a textual message at program startup or
20 * in documentation (online or textual) provided with the package.
21 *
22 * Redistribution and use in source and binary forms, with or without
23 * modification, are permitted provided that the following conditions
24 * are met:
25 * 1. Redistributions of source code must retain the copyright
26 * notice, this list of conditions and the following disclaimer.
27 * 2. Redistributions in binary form must reproduce the above copyright
28 * notice, this list of conditions and the following disclaimer in the
29 * documentation and/or other materials provided with the distribution.
30 * 3. All advertising materials mentioning features or use of this software
31 * must display the following acknowledgement:
32 * "This product includes cryptographic software written by
33 * Eric Young (eay@cryptsoft.com)"
34 * The word 'cryptographic' can be left out if the rouines from the library
35 * being used are not cryptographic related :-).
36 * 4. If you include any Windows specific code (or a derivative thereof) from
37 * the apps directory (application code) you must include an acknowledgement:
38 * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)"
39 *
40 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND
41 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
42 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
43 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
44 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
45 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
46 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
47 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
48 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
49 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
50 * SUCH DAMAGE.
51 *
52 * The licence and distribution terms for any publically available version or
53 * derivative of this code cannot be changed. i.e. this code cannot simply be
54 * copied and put under another distribution licence
55 * [including the GNU Public Licence.]
56 */
57/* ====================================================================
58 * Copyright (c) 1998-2007 The OpenSSL Project. All rights reserved.
59 *
60 * Redistribution and use in source and binary forms, with or without
61 * modification, are permitted provided that the following conditions
62 * are met:
63 *
64 * 1. Redistributions of source code must retain the above copyright
65 * notice, this list of conditions and the following disclaimer.
66 *
67 * 2. Redistributions in binary form must reproduce the above copyright
68 * notice, this list of conditions and the following disclaimer in
69 * the documentation and/or other materials provided with the
70 * distribution.
71 *
72 * 3. All advertising materials mentioning features or use of this
73 * software must display the following acknowledgment:
74 * "This product includes software developed by the OpenSSL Project
75 * for use in the OpenSSL Toolkit. (http://www.openssl.org/)"
76 *
77 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to
78 * endorse or promote products derived from this software without
79 * prior written permission. For written permission, please contact
80 * openssl-core@openssl.org.
81 *
82 * 5. Products derived from this software may not be called "OpenSSL"
83 * nor may "OpenSSL" appear in their names without prior written
84 * permission of the OpenSSL Project.
85 *
86 * 6. Redistributions of any form whatsoever must retain the following
87 * acknowledgment:
88 * "This product includes software developed by the OpenSSL Project
89 * for use in the OpenSSL Toolkit (http://www.openssl.org/)"
90 *
91 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY
92 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
93 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
94 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR
95 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
96 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
97 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
98 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
99 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
100 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
101 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
102 * OF THE POSSIBILITY OF SUCH DAMAGE.
103 * ====================================================================
104 *
105 * This product includes cryptographic software written by Eric Young
106 * (eay@cryptsoft.com). This product includes software written by Tim
107 * Hudson (tjh@cryptsoft.com).
108 *
109 */
110/* ====================================================================
111 * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED.
112 * ECC cipher suite support in OpenSSL originally developed by
113 * SUN MICROSYSTEMS, INC., and contributed to the OpenSSL project.
114 */
115/* ====================================================================
116 * Copyright 2005 Nokia. All rights reserved.
117 *
118 * The portions of the attached software ("Contribution") is developed by
119 * Nokia Corporation and is licensed pursuant to the OpenSSL open source
120 * license.
121 *
122 * The Contribution, originally written by Mika Kousa and Pasi Eronen of
123 * Nokia Corporation, consists of the "PSK" (Pre-Shared Key) ciphersuites
124 * support (see RFC 4279) to OpenSSL.
125 *
126 * No patent licenses or other rights except those expressly stated in
127 * the OpenSSL open source license shall be deemed granted or received
128 * expressly, by implication, estoppel, or otherwise.
129 *
130 * No assurances are provided by Nokia that the Contribution does not
131 * infringe the patent or other intellectual property rights of any third
132 * party or that the license provides you with all the necessary rights
133 * to make use of the Contribution.
134 *
135 * THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND. IN
136 * ADDITION TO THE DISCLAIMERS INCLUDED IN THE LICENSE, NOKIA
137 * SPECIFICALLY DISCLAIMS ANY LIABILITY FOR CLAIMS BROUGHT BY YOU OR ANY
138 * OTHER ENTITY BASED ON INFRINGEMENT OF INTELLECTUAL PROPERTY RIGHTS OR
139 * OTHERWISE.
140 */
141
142#ifndef HEADER_SSL_LOCL_H
143#define HEADER_SSL_LOCL_H
144
145#include <openssl/base.h>
146
147#include <errno.h>
148#include <stdlib.h>
149#include <string.h>
150#include <time.h>
151
Adam Langleyc9fb3752014-06-20 12:00:00 -0700152#include <openssl/aead.h>
Adam Langley95c29f32014-06-20 12:00:00 -0700153#include <openssl/bio.h>
154#include <openssl/buf.h>
155#include <openssl/dsa.h>
156#include <openssl/err.h>
157#include <openssl/rsa.h>
158#include <openssl/ssl.h>
159#include <openssl/stack.h>
160
161#undef PKCS1_CHECK
162
163#define c2l(c,l) (l = ((unsigned long)(*((c)++))) , \
164 l|=(((unsigned long)(*((c)++)))<< 8), \
165 l|=(((unsigned long)(*((c)++)))<<16), \
166 l|=(((unsigned long)(*((c)++)))<<24))
167
168/* NOTE - c is not incremented as per c2l */
169#define c2ln(c,l1,l2,n) { \
170 c+=n; \
171 l1=l2=0; \
172 switch (n) { \
173 case 8: l2 =((unsigned long)(*(--(c))))<<24; \
174 case 7: l2|=((unsigned long)(*(--(c))))<<16; \
175 case 6: l2|=((unsigned long)(*(--(c))))<< 8; \
176 case 5: l2|=((unsigned long)(*(--(c)))); \
177 case 4: l1 =((unsigned long)(*(--(c))))<<24; \
178 case 3: l1|=((unsigned long)(*(--(c))))<<16; \
179 case 2: l1|=((unsigned long)(*(--(c))))<< 8; \
180 case 1: l1|=((unsigned long)(*(--(c)))); \
181 } \
182 }
183
184#define l2c(l,c) (*((c)++)=(unsigned char)(((l) )&0xff), \
185 *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
186 *((c)++)=(unsigned char)(((l)>>16)&0xff), \
187 *((c)++)=(unsigned char)(((l)>>24)&0xff))
188
189#define n2l(c,l) (l =((unsigned long)(*((c)++)))<<24, \
190 l|=((unsigned long)(*((c)++)))<<16, \
191 l|=((unsigned long)(*((c)++)))<< 8, \
192 l|=((unsigned long)(*((c)++))))
193
194#define l2n(l,c) (*((c)++)=(unsigned char)(((l)>>24)&0xff), \
195 *((c)++)=(unsigned char)(((l)>>16)&0xff), \
196 *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
197 *((c)++)=(unsigned char)(((l) )&0xff))
198
199#define l2n6(l,c) (*((c)++)=(unsigned char)(((l)>>40)&0xff), \
200 *((c)++)=(unsigned char)(((l)>>32)&0xff), \
201 *((c)++)=(unsigned char)(((l)>>24)&0xff), \
202 *((c)++)=(unsigned char)(((l)>>16)&0xff), \
203 *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
204 *((c)++)=(unsigned char)(((l) )&0xff))
205
206#define l2n8(l,c) (*((c)++)=(unsigned char)(((l)>>56)&0xff), \
207 *((c)++)=(unsigned char)(((l)>>48)&0xff), \
208 *((c)++)=(unsigned char)(((l)>>40)&0xff), \
209 *((c)++)=(unsigned char)(((l)>>32)&0xff), \
210 *((c)++)=(unsigned char)(((l)>>24)&0xff), \
211 *((c)++)=(unsigned char)(((l)>>16)&0xff), \
212 *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
213 *((c)++)=(unsigned char)(((l) )&0xff))
214
215#define n2l6(c,l) (l =((BN_ULLONG)(*((c)++)))<<40, \
216 l|=((BN_ULLONG)(*((c)++)))<<32, \
217 l|=((BN_ULLONG)(*((c)++)))<<24, \
218 l|=((BN_ULLONG)(*((c)++)))<<16, \
219 l|=((BN_ULLONG)(*((c)++)))<< 8, \
220 l|=((BN_ULLONG)(*((c)++))))
221
222/* NOTE - c is not incremented as per l2c */
223#define l2cn(l1,l2,c,n) { \
224 c+=n; \
225 switch (n) { \
226 case 8: *(--(c))=(unsigned char)(((l2)>>24)&0xff); \
227 case 7: *(--(c))=(unsigned char)(((l2)>>16)&0xff); \
228 case 6: *(--(c))=(unsigned char)(((l2)>> 8)&0xff); \
229 case 5: *(--(c))=(unsigned char)(((l2) )&0xff); \
230 case 4: *(--(c))=(unsigned char)(((l1)>>24)&0xff); \
231 case 3: *(--(c))=(unsigned char)(((l1)>>16)&0xff); \
232 case 2: *(--(c))=(unsigned char)(((l1)>> 8)&0xff); \
233 case 1: *(--(c))=(unsigned char)(((l1) )&0xff); \
234 } \
235 }
236
237#define n2s(c,s) ((s=(((unsigned int)(c[0]))<< 8)| \
238 (((unsigned int)(c[1])) )),c+=2)
239#define s2n(s,c) ((c[0]=(unsigned char)(((s)>> 8)&0xff), \
240 c[1]=(unsigned char)(((s) )&0xff)),c+=2)
241
242#define n2l3(c,l) ((l =(((unsigned long)(c[0]))<<16)| \
243 (((unsigned long)(c[1]))<< 8)| \
244 (((unsigned long)(c[2])) )),c+=3)
245
246#define l2n3(l,c) ((c[0]=(unsigned char)(((l)>>16)&0xff), \
247 c[1]=(unsigned char)(((l)>> 8)&0xff), \
248 c[2]=(unsigned char)(((l) )&0xff)),c+=3)
249
250/* LOCAL STUFF */
251
252#define SSL_DECRYPT 0
253#define SSL_ENCRYPT 1
254
255#define TWO_BYTE_BIT 0x80
256#define SEC_ESC_BIT 0x40
257#define TWO_BYTE_MASK 0x7fff
258#define THREE_BYTE_MASK 0x3fff
259
260#define INC32(a) ((a)=((a)+1)&0xffffffffL)
261#define DEC32(a) ((a)=((a)-1)&0xffffffffL)
262#define MAX_MAC_SIZE 20 /* up from 16 for SSLv3 */
263
264/*
265 * Define the Bitmasks for SSL_CIPHER.algorithms.
266 * This bits are used packed as dense as possible. If new methods/ciphers
267 * etc will be added, the bits a likely to change, so this information
268 * is for internal library use only, even though SSL_CIPHER.algorithms
269 * can be publicly accessed.
270 * Use the according functions for cipher management instead.
271 *
272 * The bit mask handling in the selection and sorting scheme in
273 * ssl_create_cipher_list() has only limited capabilities, reflecting
274 * that the different entities within are mutually exclusive:
275 * ONLY ONE BIT PER MASK CAN BE SET AT A TIME.
276 */
277
278/* Bits for algorithm_mkey (key exchange algorithm) */
279#define SSL_kRSA 0x00000001L /* RSA key exchange */
280#define SSL_kDHr 0x00000002L /* DH cert, RSA CA cert */
281#define SSL_kDHd 0x00000004L /* DH cert, DSA CA cert */
282#define SSL_kEDH 0x00000008L /* tmp DH key no DH cert */
283#define SSL_kKRB5 0x00000010L /* Kerberos5 key exchange */
284#define SSL_kECDHr 0x00000020L /* ECDH cert, RSA CA cert */
285#define SSL_kECDHe 0x00000040L /* ECDH cert, ECDSA CA cert */
286#define SSL_kEECDH 0x00000080L /* ephemeral ECDH */
287#define SSL_kPSK 0x00000100L /* PSK */
288#define SSL_kGOST 0x00000200L /* GOST key exchange */
289#define SSL_kSRP 0x00000400L /* SRP */
290
291/* Bits for algorithm_auth (server authentication) */
292#define SSL_aRSA 0x00000001L /* RSA auth */
293#define SSL_aDSS 0x00000002L /* DSS auth */
294#define SSL_aNULL 0x00000004L /* no auth (i.e. use ADH or AECDH) */
295#define SSL_aDH 0x00000008L /* Fixed DH auth (kDHd or kDHr) */
296#define SSL_aECDH 0x00000010L /* Fixed ECDH auth (kECDHe or kECDHr) */
297#define SSL_aKRB5 0x00000020L /* KRB5 auth */
298#define SSL_aECDSA 0x00000040L /* ECDSA auth*/
299#define SSL_aPSK 0x00000080L /* PSK auth */
300#define SSL_aGOST94 0x00000100L /* GOST R 34.10-94 signature auth */
301#define SSL_aGOST01 0x00000200L /* GOST R 34.10-2001 signature auth */
302
303
304/* Bits for algorithm_enc (symmetric encryption) */
305#define SSL_DES 0x00000001L
306#define SSL_3DES 0x00000002L
307#define SSL_RC4 0x00000004L
308#define SSL_RC2 0x00000008L
309#define SSL_IDEA 0x00000010L
310#define SSL_eNULL 0x00000020L
311#define SSL_AES128 0x00000040L
312#define SSL_AES256 0x00000080L
313#define SSL_CAMELLIA128 0x00000100L
314#define SSL_CAMELLIA256 0x00000200L
315#define SSL_eGOST2814789CNT 0x00000400L
316#define SSL_SEED 0x00000800L
317#define SSL_AES128GCM 0x00001000L
318#define SSL_AES256GCM 0x00002000L
Adam Langleyde0b2022014-06-20 12:00:00 -0700319#define SSL_CHACHA20POLY1305 0x00004000L
Adam Langley95c29f32014-06-20 12:00:00 -0700320
321#define SSL_AES (SSL_AES128|SSL_AES256|SSL_AES128GCM|SSL_AES256GCM)
322#define SSL_CAMELLIA (SSL_CAMELLIA128|SSL_CAMELLIA256)
323
324
325/* Bits for algorithm_mac (symmetric authentication) */
326
327#define SSL_MD5 0x00000001L
328#define SSL_SHA1 0x00000002L
329#define SSL_GOST94 0x00000004L
330#define SSL_GOST89MAC 0x00000008L
331#define SSL_SHA256 0x00000010L
332#define SSL_SHA384 0x00000020L
333/* Not a real MAC, just an indication it is part of cipher */
334#define SSL_AEAD 0x00000040L
335
336/* Bits for algorithm_ssl (protocol version) */
337#define SSL_SSLV2 0x00000001L
338#define SSL_SSLV3 0x00000002L
339#define SSL_TLSV1 SSL_SSLV3 /* for now */
340#define SSL_TLSV1_2 0x00000004L
341
342
343/* Bits for algorithm2 (handshake digests and other extra flags) */
344
345#define SSL_HANDSHAKE_MAC_MD5 0x10
346#define SSL_HANDSHAKE_MAC_SHA 0x20
347#define SSL_HANDSHAKE_MAC_GOST94 0x40
348#define SSL_HANDSHAKE_MAC_SHA256 0x80
349#define SSL_HANDSHAKE_MAC_SHA384 0x100
350#define SSL_HANDSHAKE_MAC_DEFAULT (SSL_HANDSHAKE_MAC_MD5 | SSL_HANDSHAKE_MAC_SHA)
351
352/* When adding new digest in the ssl_ciph.c and increment SSM_MD_NUM_IDX
353 * make sure to update this constant too */
354#define SSL_MAX_DIGEST 6
355
356#define TLS1_PRF_DGST_MASK (0xff << TLS1_PRF_DGST_SHIFT)
357
358#define TLS1_PRF_DGST_SHIFT 10
359#define TLS1_PRF_MD5 (SSL_HANDSHAKE_MAC_MD5 << TLS1_PRF_DGST_SHIFT)
360#define TLS1_PRF_SHA1 (SSL_HANDSHAKE_MAC_SHA << TLS1_PRF_DGST_SHIFT)
361#define TLS1_PRF_SHA256 (SSL_HANDSHAKE_MAC_SHA256 << TLS1_PRF_DGST_SHIFT)
362#define TLS1_PRF_SHA384 (SSL_HANDSHAKE_MAC_SHA384 << TLS1_PRF_DGST_SHIFT)
363#define TLS1_PRF_GOST94 (SSL_HANDSHAKE_MAC_GOST94 << TLS1_PRF_DGST_SHIFT)
364#define TLS1_PRF (TLS1_PRF_MD5 | TLS1_PRF_SHA1)
365
366/* Stream MAC for GOST ciphersuites from cryptopro draft
367 * (currently this also goes into algorithm2) */
368#define TLS1_STREAM_MAC 0x04
369
Adam Langley1258b6a2014-06-20 12:00:00 -0700370#define TLSEXT_CHANNEL_ID_SIZE 128
Adam Langley95c29f32014-06-20 12:00:00 -0700371
Adam Langleyc9fb3752014-06-20 12:00:00 -0700372/* SSL_CIPHER_ALGORITHM2_AEAD is a flag in SSL_CIPHER.algorithm2 which
373 * indicates that the cipher is implemented via an EVP_AEAD. */
374#define SSL_CIPHER_ALGORITHM2_AEAD (1<<23)
375
376/* SSL_CIPHER_AEAD_FIXED_NONCE_LEN returns the number of bytes of fixed nonce
377 * for an SSL_CIPHER* with the SSL_CIPHER_ALGORITHM2_AEAD flag. */
378#define SSL_CIPHER_AEAD_FIXED_NONCE_LEN(ssl_cipher) \
379 (((ssl_cipher->algorithm2 >> 24) & 0xf)*2)
Adam Langley95c29f32014-06-20 12:00:00 -0700380
Adam Langleyde0b2022014-06-20 12:00:00 -0700381/* SSL_CIPHER_ALGORITHM2_VARIABLE_NONCE_INCLUDED_IN_RECORD is a flag in
382 * SSL_CIPHER.algorithm2 which indicates that the variable part of the nonce is
383 * included as a prefix of the record. (AES-GCM, for example, does with with an
384 * 8-byte variable nonce.) */
385#define SSL_CIPHER_ALGORITHM2_VARIABLE_NONCE_INCLUDED_IN_RECORD (1<<22)
386
Adam Langley95c29f32014-06-20 12:00:00 -0700387/*
388 * Export and cipher strength information. For each cipher we have to decide
389 * whether it is exportable or not. This information is likely to change
390 * over time, since the export control rules are no static technical issue.
391 *
392 * Independent of the export flag the cipher strength is sorted into classes.
393 * SSL_EXP40 was denoting the 40bit US export limit of past times, which now
394 * is at 56bit (SSL_EXP56). If the exportable cipher class is going to change
395 * again (eg. to 64bit) the use of "SSL_EXP*" becomes blurred even more,
396 * since SSL_EXP64 could be similar to SSL_LOW.
397 * For this reason SSL_MICRO and SSL_MINI macros are included to widen the
398 * namespace of SSL_LOW-SSL_HIGH to lower values. As development of speed
399 * and ciphers goes, another extension to SSL_SUPER and/or SSL_ULTRA would
400 * be possible.
401 */
402#define SSL_EXP_MASK 0x00000003L
403#define SSL_STRONG_MASK 0x000001fcL
404
405#define SSL_NOT_EXP 0x00000001L
406#define SSL_EXPORT 0x00000002L
407
408#define SSL_STRONG_NONE 0x00000004L
409#define SSL_EXP40 0x00000008L
410#define SSL_MICRO (SSL_EXP40)
411#define SSL_EXP56 0x00000010L
412#define SSL_MINI (SSL_EXP56)
413#define SSL_LOW 0x00000020L
414#define SSL_MEDIUM 0x00000040L
415#define SSL_HIGH 0x00000080L
416#define SSL_FIPS 0x00000100L
417
418/* we have used 000001ff - 23 bits left to go */
419
420/*
421 * Macros to check the export status and cipher strength for export ciphers.
422 * Even though the macros for EXPORT and EXPORT40/56 have similar names,
423 * their meaning is different:
424 * *_EXPORT macros check the 'exportable' status.
425 * *_EXPORT40/56 macros are used to check whether a certain cipher strength
426 * is given.
427 * Since the SSL_IS_EXPORT* and SSL_EXPORT* macros depend on the correct
428 * algorithm structure element to be passed (algorithms, algo_strength) and no
429 * typechecking can be done as they are all of type unsigned long, their
430 * direct usage is discouraged.
431 * Use the SSL_C_* macros instead.
432 */
433#define SSL_IS_EXPORT(a) ((a)&SSL_EXPORT)
434#define SSL_IS_EXPORT56(a) ((a)&SSL_EXP56)
435#define SSL_IS_EXPORT40(a) ((a)&SSL_EXP40)
436#define SSL_C_IS_EXPORT(c) SSL_IS_EXPORT((c)->algo_strength)
437#define SSL_C_IS_EXPORT56(c) SSL_IS_EXPORT56((c)->algo_strength)
438#define SSL_C_IS_EXPORT40(c) SSL_IS_EXPORT40((c)->algo_strength)
439
440#define SSL_EXPORT_KEYLENGTH(a,s) (SSL_IS_EXPORT40(s) ? 5 : \
441 (a) == SSL_DES ? 8 : 7)
442#define SSL_EXPORT_PKEYLENGTH(a) (SSL_IS_EXPORT40(a) ? 512 : 1024)
443#define SSL_C_EXPORT_KEYLENGTH(c) SSL_EXPORT_KEYLENGTH((c)->algorithm_enc, \
444 (c)->algo_strength)
445#define SSL_C_EXPORT_PKEYLENGTH(c) SSL_EXPORT_PKEYLENGTH((c)->algo_strength)
446
447/* Check if an SSL structure is using DTLS */
448#define SSL_IS_DTLS(s) (s->method->ssl3_enc->enc_flags & SSL_ENC_FLAG_DTLS)
449/* See if we need explicit IV */
450#define SSL_USE_EXPLICIT_IV(s) \
451 (s->method->ssl3_enc->enc_flags & SSL_ENC_FLAG_EXPLICIT_IV)
452/* See if we use signature algorithms extension
453 * and signature algorithm before signatures.
454 */
455#define SSL_USE_SIGALGS(s) \
456 (s->method->ssl3_enc->enc_flags & SSL_ENC_FLAG_SIGALGS)
457/* Allow TLS 1.2 ciphersuites: applies to DTLS 1.2 as well as TLS 1.2:
458 * may apply to others in future.
459 */
460#define SSL_USE_TLS1_2_CIPHERS(s) \
461 (s->method->ssl3_enc->enc_flags & SSL_ENC_FLAG_TLS1_2_CIPHERS)
462/* Determine if a client can use TLS 1.2 ciphersuites: can't rely on method
463 * flags because it may not be set to correct version yet.
464 */
465#define SSL_CLIENT_USE_TLS1_2_CIPHERS(s) \
466 ((SSL_IS_DTLS(s) && s->client_version <= DTLS1_2_VERSION) || \
467 (!SSL_IS_DTLS(s) && s->client_version >= TLS1_2_VERSION))
468
469/* Mostly for SSLv3 */
470#define SSL_PKEY_RSA_ENC 0
471#define SSL_PKEY_RSA_SIGN 1
472#define SSL_PKEY_DSA_SIGN 2
473#define SSL_PKEY_DH_RSA 3
474#define SSL_PKEY_DH_DSA 4
475#define SSL_PKEY_ECC 5
476#define SSL_PKEY_GOST94 6
477#define SSL_PKEY_GOST01 7
478#define SSL_PKEY_NUM 8
479
480/* SSL_kRSA <- RSA_ENC | (RSA_TMP & RSA_SIGN) |
481 * <- (EXPORT & (RSA_ENC | RSA_TMP) & RSA_SIGN)
482 * SSL_kDH <- DH_ENC & (RSA_ENC | RSA_SIGN | DSA_SIGN)
483 * SSL_kEDH <- RSA_ENC | RSA_SIGN | DSA_SIGN
484 * SSL_aRSA <- RSA_ENC | RSA_SIGN
485 * SSL_aDSS <- DSA_SIGN
486 */
487
488/*
489#define CERT_INVALID 0
490#define CERT_PUBLIC_KEY 1
491#define CERT_PRIVATE_KEY 2
492*/
493
Adam Langleyb2ce0582014-06-20 12:00:00 -0700494#define PENDING_SESSION -10000
495
Adam Langley95c29f32014-06-20 12:00:00 -0700496#ifndef OPENSSL_NO_EC
497/* From ECC-TLS draft, used in encoding the curve type in
498 * ECParameters
499 */
500#define EXPLICIT_PRIME_CURVE_TYPE 1
501#define EXPLICIT_CHAR2_CURVE_TYPE 2
502#define NAMED_CURVE_TYPE 3
503#endif /* OPENSSL_NO_EC */
504
505typedef struct cert_pkey_st
506 {
507 X509 *x509;
508 EVP_PKEY *privatekey;
509 /* Digest to use when signing */
510 const EVP_MD *digest;
511 /* Chain for this certificate */
512 STACK_OF(X509) *chain;
513#ifndef OPENSSL_NO_TLSEXT
514 /* authz/authz_length contain authz data for this certificate. The data
515 * is in wire format, specifically it's a series of records like:
516 * uint8_t authz_type; // (RFC 5878, AuthzDataFormat)
517 * uint16_t length;
518 * uint8_t data[length]; */
519 unsigned char *authz;
520 size_t authz_length;
521
522 /* serverinfo data for this certificate. The data is in TLS Extension
523 * wire format, specifically it's a series of records like:
524 * uint16_t extension_type; // (RFC 5246, 7.4.1.4, Extension)
525 * uint16_t length;
526 * uint8_t data[length]; */
527 unsigned char *serverinfo;
528 size_t serverinfo_length;
529#endif
530 /* Set if CERT_PKEY can be used with current SSL session: e.g.
531 * appropriate curve, signature algorithms etc. If zero it can't be
532 * used at all.
533 */
534 int valid_flags;
535 } CERT_PKEY;
536/* Retrieve Suite B flags */
537#define tls1_suiteb(s) (s->cert->cert_flags & SSL_CERT_FLAG_SUITEB_128_LOS)
538/* Uses to check strict mode: suite B modes are always strict */
539#define SSL_CERT_FLAGS_CHECK_TLS_STRICT \
540 (SSL_CERT_FLAG_SUITEB_128_LOS|SSL_CERT_FLAG_TLS_STRICT)
541
542typedef struct cert_st
543 {
544 /* Current active set */
545 CERT_PKEY *key; /* ALWAYS points to an element of the pkeys array
546 * Probably it would make more sense to store
547 * an index, not a pointer. */
548
549 /* For servers the following masks are for the key and auth
550 * algorithms that are supported by the certs below.
551 * For clients they are masks of *disabled* algorithms based
552 * on the current session.
553 */
554 int valid;
555 unsigned long mask_k;
556 unsigned long mask_a;
557 unsigned long export_mask_k;
558 unsigned long export_mask_a;
559 /* Client only */
560 unsigned long mask_ssl;
561#ifndef OPENSSL_NO_RSA
562 RSA *rsa_tmp;
563 RSA *(*rsa_tmp_cb)(SSL *ssl,int is_export,int keysize);
564#endif
565#ifndef OPENSSL_NO_DH
566 DH *dh_tmp;
567 DH *(*dh_tmp_cb)(SSL *ssl,int is_export,int keysize);
568#endif
569#ifndef OPENSSL_NO_ECDH
570 EC_KEY *ecdh_tmp;
571 /* Callback for generating ephemeral ECDH keys */
572 EC_KEY *(*ecdh_tmp_cb)(SSL *ssl,int is_export,int keysize);
573 /* Select ECDH parameters automatically */
574 int ecdh_tmp_auto;
575#endif
576 /* Flags related to certificates */
577 unsigned int cert_flags;
578 CERT_PKEY pkeys[SSL_PKEY_NUM];
579
580 /* Certificate types (received or sent) in certificate request
581 * message. On receive this is only set if number of certificate
582 * types exceeds SSL3_CT_NUMBER.
583 */
584 unsigned char *ctypes;
585 size_t ctype_num;
586
587 /* signature algorithms peer reports: e.g. supported signature
588 * algorithms extension for server or as part of a certificate
589 * request for client.
590 */
591 unsigned char *peer_sigalgs;
592 /* Size of above array */
593 size_t peer_sigalgslen;
594 /* suppported signature algorithms.
595 * When set on a client this is sent in the client hello as the
596 * supported signature algorithms extension. For servers
597 * it represents the signature algorithms we are willing to use.
598 */
599 unsigned char *conf_sigalgs;
600 /* Size of above array */
601 size_t conf_sigalgslen;
602 /* Client authentication signature algorithms, if not set then
603 * uses conf_sigalgs. On servers these will be the signature
604 * algorithms sent to the client in a cerificate request for TLS 1.2.
605 * On a client this represents the signature algortithms we are
606 * willing to use for client authentication.
607 */
608 unsigned char *client_sigalgs;
609 /* Size of above array */
610 size_t client_sigalgslen;
611 /* Signature algorithms shared by client and server: cached
612 * because these are used most often.
613 */
614 TLS_SIGALGS *shared_sigalgs;
615 size_t shared_sigalgslen;
616
617 /* Certificate setup callback: if set is called whenever a
618 * certificate may be required (client or server). the callback
619 * can then examine any appropriate parameters and setup any
620 * certificates required. This allows advanced applications
621 * to select certificates on the fly: for example based on
622 * supported signature algorithms or curves.
623 */
624 int (*cert_cb)(SSL *ssl, void *arg);
625 void *cert_cb_arg;
626
627 /* Optional X509_STORE for chain building or certificate validation
628 * If NULL the parent SSL_CTX store is used instead.
629 */
630 X509_STORE *chain_store;
631 X509_STORE *verify_store;
632
633 /* Raw values of the cipher list from a client */
634 unsigned char *ciphers_raw;
635 size_t ciphers_rawlen;
636
637 int references; /* >1 only if SSL_copy_session_id is used */
638 } CERT;
639
640
641typedef struct sess_cert_st
642 {
643 STACK_OF(X509) *cert_chain; /* as received from peer (not for SSL2) */
644
645 /* The 'peer_...' members are used only by clients. */
646 int peer_cert_type;
647
648 CERT_PKEY *peer_key; /* points to an element of peer_pkeys (never NULL!) */
649 CERT_PKEY peer_pkeys[SSL_PKEY_NUM];
650 /* Obviously we don't have the private keys of these,
651 * so maybe we shouldn't even use the CERT_PKEY type here. */
652
653#ifndef OPENSSL_NO_RSA
654 RSA *peer_rsa_tmp; /* not used for SSL 2 */
655#endif
656#ifndef OPENSSL_NO_DH
657 DH *peer_dh_tmp; /* not used for SSL 2 */
658#endif
659#ifndef OPENSSL_NO_ECDH
660 EC_KEY *peer_ecdh_tmp;
661#endif
662
663 int references; /* actually always 1 at the moment */
664 } SESS_CERT;
665/* Structure containing decoded values of signature algorithms extension */
666struct tls_sigalgs_st
667 {
668 /* NID of hash algorithm */
669 int hash_nid;
670 /* NID of signature algorithm */
671 int sign_nid;
672 /* Combined hash and signature NID */
673 int signandhash_nid;
674 /* Raw values used in extension */
675 unsigned char rsign;
676 unsigned char rhash;
677 };
678
679/*#define MAC_DEBUG */
680
681/*#define ERR_DEBUG */
682/*#define ABORT_DEBUG */
683/*#define PKT_DEBUG 1 */
684/*#define DES_DEBUG */
685/*#define DES_OFB_DEBUG */
686/*#define SSL_DEBUG */
687/*#define RSA_DEBUG */
688/*#define IDEA_DEBUG */
689
690#define FP_ICC (int (*)(const void *,const void *))
691#define ssl_put_cipher_by_char(ssl,ciph,ptr) \
692 ((ssl)->method->put_cipher_by_char((ciph),(ptr)))
693
694/* This is for the SSLv3/TLSv1.0 differences in crypto/hash stuff
695 * It is a bit of a mess of functions, but hell, think of it as
696 * an opaque structure :-) */
697typedef struct ssl3_enc_method
698 {
699 int (*enc)(SSL *, int);
700 int (*mac)(SSL *, unsigned char *, int);
701 int (*setup_key_block)(SSL *);
702 int (*generate_master_secret)(SSL *, unsigned char *, unsigned char *, int);
703 int (*change_cipher_state)(SSL *, int);
704 int (*final_finish_mac)(SSL *, const char *, int, unsigned char *);
705 int finish_mac_length;
706 int (*cert_verify_mac)(SSL *, int, unsigned char *);
707 const char *client_finished_label;
708 int client_finished_label_len;
709 const char *server_finished_label;
710 int server_finished_label_len;
711 int (*alert_value)(int);
712 int (*export_keying_material)(SSL *, unsigned char *, size_t,
713 const char *, size_t,
714 const unsigned char *, size_t,
715 int use_context);
716 /* Various flags indicating protocol version requirements */
717 unsigned int enc_flags;
718 /* Handshake header length */
719 unsigned int hhlen;
720 /* Set the handshake header */
721 void (*set_handshake_header)(SSL *s, int type, unsigned long len);
722 /* Write out handshake message */
723 int (*do_write)(SSL *s);
724 } SSL3_ENC_METHOD;
725
726#define SSL_HM_HEADER_LENGTH(s) s->method->ssl3_enc->hhlen
727#define ssl_handshake_start(s) \
728 (((unsigned char *)s->init_buf->data) + s->method->ssl3_enc->hhlen)
729#define ssl_set_handshake_header(s, htype, len) \
730 s->method->ssl3_enc->set_handshake_header(s, htype, len)
731#define ssl_do_write(s) s->method->ssl3_enc->do_write(s)
732
733/* Values for enc_flags */
734
735/* Uses explicit IV for CBC mode */
736#define SSL_ENC_FLAG_EXPLICIT_IV 0x1
737/* Uses signature algorithms extension */
738#define SSL_ENC_FLAG_SIGALGS 0x2
739/* Uses SHA256 default PRF */
740#define SSL_ENC_FLAG_SHA256_PRF 0x4
741/* Is DTLS */
742#define SSL_ENC_FLAG_DTLS 0x8
743/* Allow TLS 1.2 ciphersuites: applies to DTLS 1.2 as well as TLS 1.2:
744 * may apply to others in future.
745 */
746#define SSL_ENC_FLAG_TLS1_2_CIPHERS 0x10
747
Adam Langleyc9fb3752014-06-20 12:00:00 -0700748/* ssl_aead_ctx_st contains information about an AEAD that is being used to
749 * encrypt an SSL connection. */
750struct ssl_aead_ctx_st
751 {
752 EVP_AEAD_CTX ctx;
753 /* fixed_nonce contains any bytes of the nonce that are fixed for all
754 * records. */
755 unsigned char fixed_nonce[8];
756 unsigned char fixed_nonce_len, variable_nonce_len, tag_len;
Adam Langleyde0b2022014-06-20 12:00:00 -0700757 /* variable_nonce_included_in_record is non-zero if the variable nonce
758 * for a record is included as a prefix before the ciphertext. */
759 char variable_nonce_included_in_record;
Adam Langleyc9fb3752014-06-20 12:00:00 -0700760 };
761
Adam Langley95c29f32014-06-20 12:00:00 -0700762#ifndef OPENSSL_NO_COMP
763/* Used for holding the relevant compression methods loaded into SSL_CTX */
764typedef struct ssl3_comp_st
765 {
766 int comp_id; /* The identifier byte for this compression type */
767 char *name; /* Text name used for the compression type */
768 COMP_METHOD *method; /* The method :-) */
769 } SSL3_COMP;
770#endif
771
772#ifndef OPENSSL_NO_BUF_FREELISTS
773typedef struct ssl3_buf_freelist_st
774 {
775 size_t chunklen;
776 unsigned int len;
777 struct ssl3_buf_freelist_entry_st *head;
778 } SSL3_BUF_FREELIST;
779
780typedef struct ssl3_buf_freelist_entry_st
781 {
782 struct ssl3_buf_freelist_entry_st *next;
783 } SSL3_BUF_FREELIST_ENTRY;
784#endif
785
786extern SSL3_ENC_METHOD ssl3_undef_enc_method;
787extern const SSL_CIPHER ssl2_ciphers[];
788extern SSL_CIPHER ssl3_ciphers[];
789
790
791SSL_METHOD *ssl_bad_method(int ver);
792
793extern SSL3_ENC_METHOD TLSv1_enc_data;
794extern SSL3_ENC_METHOD TLSv1_1_enc_data;
795extern SSL3_ENC_METHOD TLSv1_2_enc_data;
796extern SSL3_ENC_METHOD SSLv3_enc_data;
797extern SSL3_ENC_METHOD DTLSv1_enc_data;
798extern SSL3_ENC_METHOD DTLSv1_2_enc_data;
799
800#define IMPLEMENT_tls_meth_func(version, func_name, s_accept, s_connect, \
801 s_get_meth, enc_data) \
802const SSL_METHOD *func_name(void) \
803 { \
804 static const SSL_METHOD func_name##_data= { \
805 version, \
806 tls1_new, \
807 tls1_clear, \
808 tls1_free, \
809 s_accept, \
810 s_connect, \
811 ssl3_read, \
812 ssl3_peek, \
813 ssl3_write, \
814 ssl3_shutdown, \
815 ssl3_renegotiate, \
816 ssl3_renegotiate_check, \
817 ssl3_get_message, \
818 ssl3_read_bytes, \
819 ssl3_write_bytes, \
820 ssl3_dispatch_alert, \
821 ssl3_ctrl, \
822 ssl3_ctx_ctrl, \
823 ssl3_get_cipher_by_char, \
824 ssl3_put_cipher_by_char, \
825 ssl3_pending, \
826 ssl3_num_ciphers, \
827 ssl3_get_cipher, \
828 s_get_meth, \
829 tls1_default_timeout, \
830 &enc_data, \
831 ssl_undefined_void_function, \
832 ssl3_callback_ctrl, \
833 ssl3_ctx_callback_ctrl, \
834 }; \
835 return &func_name##_data; \
836 }
837
838#define IMPLEMENT_ssl3_meth_func(func_name, s_accept, s_connect, s_get_meth) \
839const SSL_METHOD *func_name(void) \
840 { \
841 static const SSL_METHOD func_name##_data= { \
842 SSL3_VERSION, \
843 ssl3_new, \
844 ssl3_clear, \
845 ssl3_free, \
846 s_accept, \
847 s_connect, \
848 ssl3_read, \
849 ssl3_peek, \
850 ssl3_write, \
851 ssl3_shutdown, \
852 ssl3_renegotiate, \
853 ssl3_renegotiate_check, \
854 ssl3_get_message, \
855 ssl3_read_bytes, \
856 ssl3_write_bytes, \
857 ssl3_dispatch_alert, \
858 ssl3_ctrl, \
859 ssl3_ctx_ctrl, \
860 ssl3_get_cipher_by_char, \
861 ssl3_put_cipher_by_char, \
862 ssl3_pending, \
863 ssl3_num_ciphers, \
864 ssl3_get_cipher, \
865 s_get_meth, \
866 ssl3_default_timeout, \
867 &SSLv3_enc_data, \
868 ssl_undefined_void_function, \
869 ssl3_callback_ctrl, \
870 ssl3_ctx_callback_ctrl, \
871 }; \
872 return &func_name##_data; \
873 }
874
875#define IMPLEMENT_ssl23_meth_func(func_name, s_accept, s_connect, s_get_meth) \
876const SSL_METHOD *func_name(void) \
877 { \
878 static const SSL_METHOD func_name##_data= { \
879 TLS1_2_VERSION, \
880 tls1_new, \
881 tls1_clear, \
882 tls1_free, \
883 s_accept, \
884 s_connect, \
885 ssl23_read, \
886 ssl23_peek, \
887 ssl23_write, \
888 ssl_undefined_function, \
889 ssl_undefined_function, \
890 ssl_ok, \
891 ssl3_get_message, \
892 ssl3_read_bytes, \
893 ssl3_write_bytes, \
894 ssl3_dispatch_alert, \
895 ssl3_ctrl, \
896 ssl3_ctx_ctrl, \
897 ssl23_get_cipher_by_char, \
898 ssl23_put_cipher_by_char, \
899 ssl_undefined_const_function, \
900 ssl23_num_ciphers, \
901 ssl23_get_cipher, \
902 s_get_meth, \
903 ssl23_default_timeout, \
904 &TLSv1_2_enc_data, \
905 ssl_undefined_void_function, \
906 ssl3_callback_ctrl, \
907 ssl3_ctx_callback_ctrl, \
908 }; \
909 return &func_name##_data; \
910 }
911
912#define IMPLEMENT_ssl2_meth_func(func_name, s_accept, s_connect, s_get_meth) \
913const SSL_METHOD *func_name(void) \
914 { \
915 static const SSL_METHOD func_name##_data= { \
916 SSL2_VERSION, \
917 ssl2_new, /* local */ \
918 ssl2_clear, /* local */ \
919 ssl2_free, /* local */ \
920 s_accept, \
921 s_connect, \
922 ssl2_read, \
923 ssl2_peek, \
924 ssl2_write, \
925 ssl2_shutdown, \
926 ssl_ok, /* NULL - renegotiate */ \
927 ssl_ok, /* NULL - check renegotiate */ \
928 NULL, /* NULL - ssl_get_message */ \
929 NULL, /* NULL - ssl_get_record */ \
930 NULL, /* NULL - ssl_write_bytes */ \
931 NULL, /* NULL - dispatch_alert */ \
932 ssl2_ctrl, /* local */ \
933 ssl2_ctx_ctrl, /* local */ \
934 ssl2_get_cipher_by_char, \
935 ssl2_put_cipher_by_char, \
936 ssl2_pending, \
937 ssl2_num_ciphers, \
938 ssl2_get_cipher, \
939 s_get_meth, \
940 ssl2_default_timeout, \
941 &ssl3_undef_enc_method, \
942 ssl_undefined_void_function, \
943 ssl2_callback_ctrl, /* local */ \
944 ssl2_ctx_callback_ctrl, /* local */ \
945 }; \
946 return &func_name##_data; \
947 }
948
949#define IMPLEMENT_dtls1_meth_func(version, func_name, s_accept, s_connect, \
950 s_get_meth, enc_data) \
951const SSL_METHOD *func_name(void) \
952 { \
953 static const SSL_METHOD func_name##_data= { \
954 version, \
955 dtls1_new, \
956 dtls1_clear, \
957 dtls1_free, \
958 s_accept, \
959 s_connect, \
960 ssl3_read, \
961 ssl3_peek, \
962 ssl3_write, \
963 dtls1_shutdown, \
964 ssl3_renegotiate, \
965 ssl3_renegotiate_check, \
966 dtls1_get_message, \
967 dtls1_read_bytes, \
968 dtls1_write_app_data_bytes, \
969 dtls1_dispatch_alert, \
970 dtls1_ctrl, \
971 ssl3_ctx_ctrl, \
972 ssl3_get_cipher_by_char, \
973 ssl3_put_cipher_by_char, \
974 ssl3_pending, \
975 ssl3_num_ciphers, \
976 dtls1_get_cipher, \
977 s_get_meth, \
978 dtls1_default_timeout, \
979 &enc_data, \
980 ssl_undefined_void_function, \
981 ssl3_callback_ctrl, \
982 ssl3_ctx_callback_ctrl, \
983 }; \
984 return &func_name##_data; \
985 }
986
987void ssl_clear_cipher_ctx(SSL *s);
988int ssl_clear_bad_session(SSL *s);
989CERT *ssl_cert_new(void);
990CERT *ssl_cert_dup(CERT *cert);
991void ssl_cert_set_default_md(CERT *cert);
992int ssl_cert_inst(CERT **o);
993void ssl_cert_clear_certs(CERT *c);
994void ssl_cert_free(CERT *c);
995SESS_CERT *ssl_sess_cert_new(void);
996void ssl_sess_cert_free(SESS_CERT *sc);
997int ssl_set_peer_cert_type(SESS_CERT *c, int type);
998int ssl_get_new_session(SSL *s, int session);
999int ssl_get_prev_session(SSL *s, unsigned char *session,int len, const unsigned char *limit);
1000int ssl_cipher_id_cmp(const void *in_a, const void *in_b);
1001int ssl_cipher_ptr_id_cmp(const SSL_CIPHER **ap, const SSL_CIPHER **bp);
1002STACK_OF(SSL_CIPHER) *ssl_bytes_to_cipher_list(SSL *s,unsigned char *p,int num,
1003 STACK_OF(SSL_CIPHER) **skp);
1004int ssl_cipher_list_to_bytes(SSL *s,STACK_OF(SSL_CIPHER) *sk,unsigned char *p,
1005 int (*put_cb)(const SSL_CIPHER *, unsigned char *));
1006STACK_OF(SSL_CIPHER) *ssl_create_cipher_list(const SSL_METHOD *meth,
Adam Langley858a88d2014-06-20 12:00:00 -07001007 struct ssl_cipher_preference_list_st **pref,
Adam Langley95c29f32014-06-20 12:00:00 -07001008 STACK_OF(SSL_CIPHER) **sorted,
1009 const char *rule_str, CERT *c);
1010void ssl_update_cache(SSL *s, int mode);
Adam Langley858a88d2014-06-20 12:00:00 -07001011struct ssl_cipher_preference_list_st* ssl_cipher_preference_list_dup(
1012 struct ssl_cipher_preference_list_st *cipher_list);
1013void ssl_cipher_preference_list_free(
1014 struct ssl_cipher_preference_list_st *cipher_list);
1015struct ssl_cipher_preference_list_st* ssl_cipher_preference_list_from_ciphers(
1016 STACK_OF(SSL_CIPHER) *ciphers);
1017struct ssl_cipher_preference_list_st* ssl_get_cipher_preferences(SSL *s);
Adam Langleyc9fb3752014-06-20 12:00:00 -07001018int ssl_cipher_get_comp(const SSL_SESSION *s, SSL_COMP **comp);
1019int ssl_cipher_get_evp_aead(const SSL_SESSION *s, const EVP_AEAD **aead);
Adam Langley95c29f32014-06-20 12:00:00 -07001020int ssl_cipher_get_evp(const SSL_SESSION *s,const EVP_CIPHER **enc,
Adam Langleyc9fb3752014-06-20 12:00:00 -07001021 const EVP_MD **md,int *mac_pkey_type,int *mac_secret_size);
1022int ssl_get_handshake_digest(int i,long *mask,const EVP_MD **md);
Adam Langley95c29f32014-06-20 12:00:00 -07001023int ssl_get_handshake_digest(int i,long *mask,const EVP_MD **md);
1024int ssl_cipher_get_cert_index(const SSL_CIPHER *c);
1025const SSL_CIPHER *ssl_get_cipher_by_char(SSL *ssl, const unsigned char *ptr);
1026int ssl_cert_set0_chain(CERT *c, STACK_OF(X509) *chain);
1027int ssl_cert_set1_chain(CERT *c, STACK_OF(X509) *chain);
1028int ssl_cert_add0_chain_cert(CERT *c, X509 *x);
1029int ssl_cert_add1_chain_cert(CERT *c, X509 *x);
1030int ssl_cert_select_current(CERT *c, X509 *x);
1031void ssl_cert_set_cert_cb(CERT *c, int (*cb)(SSL *ssl, void *arg), void *arg);
1032
1033int ssl_verify_cert_chain(SSL *s,STACK_OF(X509) *sk);
1034int ssl_add_cert_chain(SSL *s, CERT_PKEY *cpk, unsigned long *l);
1035int ssl_build_cert_chain(CERT *c, X509_STORE *chain_store, int flags);
1036int ssl_cert_set_cert_store(CERT *c, X509_STORE *store, int chain, int ref);
1037int ssl_undefined_function(SSL *s);
1038int ssl_undefined_void_function(void);
1039int ssl_undefined_const_function(const SSL *s);
1040CERT_PKEY *ssl_get_server_send_pkey(const SSL *s);
1041#ifndef OPENSSL_NO_TLSEXT
1042unsigned char *ssl_get_authz_data(SSL *s, size_t *authz_length);
1043int ssl_get_server_cert_serverinfo(SSL *s, const unsigned char **serverinfo,
1044 size_t *serverinfo_length);
1045#endif
1046EVP_PKEY *ssl_get_sign_pkey(SSL *s,const SSL_CIPHER *c, const EVP_MD **pmd);
1047int ssl_cert_type(X509 *x,EVP_PKEY *pkey);
1048void ssl_set_cert_masks(CERT *c, const SSL_CIPHER *cipher);
1049STACK_OF(SSL_CIPHER) *ssl_get_ciphers_by_id(SSL *s);
1050int ssl_verify_alarm_type(long type);
1051void ssl_load_ciphers(void);
1052int ssl_fill_hello_random(SSL *s, int server, unsigned char *field, int len);
1053
1054int ssl2_enc_init(SSL *s, int client);
1055int ssl2_generate_key_material(SSL *s);
1056void ssl2_enc(SSL *s,int send_data);
1057void ssl2_mac(SSL *s,unsigned char *mac,int send_data);
1058const SSL_CIPHER *ssl2_get_cipher_by_char(const unsigned char *p);
1059int ssl2_put_cipher_by_char(const SSL_CIPHER *c,unsigned char *p);
1060int ssl2_part_read(SSL *s, unsigned long f, int i);
1061int ssl2_do_write(SSL *s);
1062int ssl2_set_certificate(SSL *s, int type, int len, const unsigned char *data);
1063void ssl2_return_error(SSL *s,int reason);
1064void ssl2_write_error(SSL *s);
1065int ssl2_num_ciphers(void);
1066const SSL_CIPHER *ssl2_get_cipher(unsigned int u);
1067int ssl2_new(SSL *s);
1068void ssl2_free(SSL *s);
1069int ssl2_accept(SSL *s);
1070int ssl2_connect(SSL *s);
1071int ssl2_read(SSL *s, void *buf, int len);
1072int ssl2_peek(SSL *s, void *buf, int len);
1073int ssl2_write(SSL *s, const void *buf, int len);
1074int ssl2_shutdown(SSL *s);
1075void ssl2_clear(SSL *s);
1076long ssl2_ctrl(SSL *s,int cmd, long larg, void *parg);
1077long ssl2_ctx_ctrl(SSL_CTX *s,int cmd, long larg, void *parg);
1078long ssl2_callback_ctrl(SSL *s,int cmd, void (*fp)(void));
1079long ssl2_ctx_callback_ctrl(SSL_CTX *s,int cmd, void (*fp)(void));
1080int ssl2_pending(const SSL *s);
1081long ssl2_default_timeout(void );
1082
1083const SSL_CIPHER *ssl3_get_cipher_by_char(const unsigned char *p);
1084int ssl3_put_cipher_by_char(const SSL_CIPHER *c,unsigned char *p);
1085void ssl3_init_finished_mac(SSL *s);
1086int ssl3_send_server_certificate(SSL *s);
1087int ssl3_send_newsession_ticket(SSL *s);
1088int ssl3_send_cert_status(SSL *s);
1089int ssl3_get_finished(SSL *s,int state_a,int state_b);
1090int ssl3_setup_key_block(SSL *s);
1091int ssl3_send_change_cipher_spec(SSL *s,int state_a,int state_b);
1092int ssl3_change_cipher_state(SSL *s,int which);
1093void ssl3_cleanup_key_block(SSL *s);
1094int ssl3_do_write(SSL *s,int type);
1095int ssl3_send_alert(SSL *s,int level, int desc);
1096int ssl3_generate_master_secret(SSL *s, unsigned char *out,
1097 unsigned char *p, int len);
1098int ssl3_get_req_cert_type(SSL *s,unsigned char *p);
1099long ssl3_get_message(SSL *s, int st1, int stn, int mt, long max, int *ok);
1100int ssl3_send_finished(SSL *s, int a, int b, const char *sender,int slen);
1101int ssl3_num_ciphers(void);
1102const SSL_CIPHER *ssl3_get_cipher(unsigned int u);
1103int ssl3_renegotiate(SSL *ssl);
1104int ssl3_renegotiate_check(SSL *ssl);
1105int ssl3_dispatch_alert(SSL *s);
1106int ssl3_read_bytes(SSL *s, int type, unsigned char *buf, int len, int peek);
1107int ssl3_write_bytes(SSL *s, int type, const void *buf, int len);
1108int ssl3_final_finish_mac(SSL *s, const char *sender, int slen,unsigned char *p);
1109int ssl3_cert_verify_mac(SSL *s, int md_nid, unsigned char *p);
1110void ssl3_finish_mac(SSL *s, const unsigned char *buf, int len);
1111int ssl3_enc(SSL *s, int send_data);
1112int n_ssl3_mac(SSL *ssl, unsigned char *md, int send_data);
1113void ssl3_free_digest_list(SSL *s);
1114unsigned long ssl3_output_cert_chain(SSL *s, CERT_PKEY *cpk);
1115SSL_CIPHER *ssl3_choose_cipher(SSL *ssl,STACK_OF(SSL_CIPHER) *clnt,
Adam Langley858a88d2014-06-20 12:00:00 -07001116 struct ssl_cipher_preference_list_st *srvr);
Adam Langley95c29f32014-06-20 12:00:00 -07001117int ssl3_setup_buffers(SSL *s);
1118int ssl3_setup_read_buffer(SSL *s);
1119int ssl3_setup_write_buffer(SSL *s);
1120int ssl3_release_read_buffer(SSL *s);
1121int ssl3_release_write_buffer(SSL *s);
1122int ssl3_digest_cached_records(SSL *s);
1123int ssl3_new(SSL *s);
1124void ssl3_free(SSL *s);
1125int ssl3_accept(SSL *s);
1126int ssl3_connect(SSL *s);
1127int ssl3_read(SSL *s, void *buf, int len);
1128int ssl3_peek(SSL *s, void *buf, int len);
1129int ssl3_write(SSL *s, const void *buf, int len);
1130int ssl3_shutdown(SSL *s);
1131void ssl3_clear(SSL *s);
1132long ssl3_ctrl(SSL *s,int cmd, long larg, void *parg);
1133long ssl3_ctx_ctrl(SSL_CTX *s,int cmd, long larg, void *parg);
1134long ssl3_callback_ctrl(SSL *s,int cmd, void (*fp)(void));
1135long ssl3_ctx_callback_ctrl(SSL_CTX *s,int cmd, void (*fp)(void));
1136int ssl3_pending(const SSL *s);
1137
1138void ssl3_record_sequence_update(unsigned char *seq);
1139int ssl3_do_change_cipher_spec(SSL *ssl);
1140long ssl3_default_timeout(void );
1141
1142void ssl3_set_handshake_header(SSL *s, int htype, unsigned long len);
1143int ssl3_handshake_write(SSL *s);
1144
1145int ssl23_num_ciphers(void );
1146const SSL_CIPHER *ssl23_get_cipher(unsigned int u);
1147int ssl23_read(SSL *s, void *buf, int len);
1148int ssl23_peek(SSL *s, void *buf, int len);
1149int ssl23_write(SSL *s, const void *buf, int len);
1150int ssl23_put_cipher_by_char(const SSL_CIPHER *c, unsigned char *p);
1151const SSL_CIPHER *ssl23_get_cipher_by_char(const unsigned char *p);
1152long ssl23_default_timeout(void );
1153
1154long tls1_default_timeout(void);
1155int dtls1_do_write(SSL *s,int type);
1156int ssl3_read_n(SSL *s, int n, int max, int extend);
1157int dtls1_read_bytes(SSL *s, int type, unsigned char *buf, int len, int peek);
1158int ssl3_do_compress(SSL *ssl);
1159int ssl3_do_uncompress(SSL *ssl);
1160int ssl3_write_pending(SSL *s, int type, const unsigned char *buf,
1161 unsigned int len);
1162unsigned char *dtls1_set_message_header(SSL *s,
1163 unsigned char *p, unsigned char mt, unsigned long len,
1164 unsigned long frag_off, unsigned long frag_len);
1165
1166int dtls1_write_app_data_bytes(SSL *s, int type, const void *buf, int len);
1167int dtls1_write_bytes(SSL *s, int type, const void *buf, int len);
1168
1169int dtls1_send_change_cipher_spec(SSL *s, int a, int b);
1170int dtls1_send_finished(SSL *s, int a, int b, const char *sender, int slen);
1171unsigned long dtls1_output_cert_chain(SSL *s, CERT_PKEY *cpk);
1172int dtls1_read_failed(SSL *s, int code);
1173int dtls1_buffer_message(SSL *s, int ccs);
1174int dtls1_retransmit_message(SSL *s, unsigned short seq,
1175 unsigned long frag_off, int *found);
1176int dtls1_get_queue_priority(unsigned short seq, int is_ccs);
1177int dtls1_retransmit_buffered_messages(SSL *s);
1178void dtls1_clear_record_buffer(SSL *s);
1179void dtls1_get_message_header(unsigned char *data, struct hm_header_st *msg_hdr);
1180void dtls1_get_ccs_header(unsigned char *data, struct ccs_header_st *ccs_hdr);
1181void dtls1_reset_seq_numbers(SSL *s, int rw);
1182long dtls1_default_timeout(void);
1183struct timeval* dtls1_get_timeout(SSL *s, struct timeval* timeleft);
1184int dtls1_check_timeout_num(SSL *s);
1185int dtls1_handle_timeout(SSL *s);
1186const SSL_CIPHER *dtls1_get_cipher(unsigned int u);
1187void dtls1_start_timer(SSL *s);
1188void dtls1_stop_timer(SSL *s);
1189int dtls1_is_timer_expired(SSL *s);
1190void dtls1_double_timeout(SSL *s);
1191int dtls1_send_newsession_ticket(SSL *s);
1192unsigned int dtls1_min_mtu(void);
1193
1194/* some client-only functions */
1195int ssl3_client_hello(SSL *s);
1196int ssl3_get_server_hello(SSL *s);
1197int ssl3_get_certificate_request(SSL *s);
1198int ssl3_get_new_session_ticket(SSL *s);
1199int ssl3_get_cert_status(SSL *s);
1200int ssl3_get_server_done(SSL *s);
1201int ssl3_send_client_verify(SSL *s);
1202int ssl3_send_client_certificate(SSL *s);
1203int ssl_do_client_cert_cb(SSL *s, X509 **px509, EVP_PKEY **ppkey);
1204int ssl3_send_client_key_exchange(SSL *s);
1205int ssl3_get_key_exchange(SSL *s);
1206int ssl3_get_server_certificate(SSL *s);
1207int ssl3_check_cert_and_algorithm(SSL *s);
1208#ifndef OPENSSL_NO_TLSEXT
1209int ssl3_check_finished(SSL *s);
1210# ifndef OPENSSL_NO_NEXTPROTONEG
1211int ssl3_send_next_proto(SSL *s);
Adam Langley1258b6a2014-06-20 12:00:00 -07001212int ssl3_send_channel_id(SSL *s);
Adam Langley95c29f32014-06-20 12:00:00 -07001213# endif
1214#endif
1215
1216int dtls1_client_hello(SSL *s);
1217
1218/* some server-only functions */
1219int ssl3_get_client_hello(SSL *s);
1220int ssl3_send_server_hello(SSL *s);
1221int ssl3_send_hello_request(SSL *s);
1222int ssl3_send_server_key_exchange(SSL *s);
1223int ssl3_send_certificate_request(SSL *s);
1224int ssl3_send_server_done(SSL *s);
1225int ssl3_check_client_hello(SSL *s);
1226int ssl3_get_client_certificate(SSL *s);
1227int ssl3_get_client_key_exchange(SSL *s);
1228int ssl3_get_cert_verify(SSL *s);
1229#ifndef OPENSSL_NO_NEXTPROTONEG
1230int ssl3_get_next_proto(SSL *s);
Adam Langley1258b6a2014-06-20 12:00:00 -07001231int ssl3_get_channel_id(SSL *s);
Adam Langley95c29f32014-06-20 12:00:00 -07001232#endif
1233
1234int ssl23_accept(SSL *s);
1235int ssl23_connect(SSL *s);
1236int ssl23_read_bytes(SSL *s, int n);
1237int ssl23_write_bytes(SSL *s);
1238
1239int tls1_new(SSL *s);
1240void tls1_free(SSL *s);
1241void tls1_clear(SSL *s);
1242long tls1_ctrl(SSL *s,int cmd, long larg, void *parg);
1243long tls1_callback_ctrl(SSL *s,int cmd, void (*fp)(void));
1244
1245int dtls1_new(SSL *s);
1246int dtls1_accept(SSL *s);
1247int dtls1_connect(SSL *s);
1248void dtls1_free(SSL *s);
1249void dtls1_clear(SSL *s);
1250long dtls1_ctrl(SSL *s,int cmd, long larg, void *parg);
1251int dtls1_shutdown(SSL *s);
1252
1253long dtls1_get_message(SSL *s, int st1, int stn, int mt, long max, int *ok);
1254int dtls1_get_record(SSL *s);
Adam Langley95c29f32014-06-20 12:00:00 -07001255int dtls1_dispatch_alert(SSL *s);
1256int dtls1_enc(SSL *s, int snd);
1257
1258int ssl_init_wbio_buffer(SSL *s, int push);
1259void ssl_free_wbio_buffer(SSL *s);
1260
1261int tls1_change_cipher_state(SSL *s, int which);
1262int tls1_setup_key_block(SSL *s);
1263int tls1_enc(SSL *s, int snd);
Adam Langley1258b6a2014-06-20 12:00:00 -07001264int tls1_handshake_digest(SSL *s, unsigned char *out, size_t out_len);
Adam Langley95c29f32014-06-20 12:00:00 -07001265int tls1_final_finish_mac(SSL *s,
1266 const char *str, int slen, unsigned char *p);
1267int tls1_cert_verify_mac(SSL *s, int md_nid, unsigned char *p);
1268int tls1_mac(SSL *ssl, unsigned char *md, int snd);
1269int tls1_generate_master_secret(SSL *s, unsigned char *out,
1270 unsigned char *p, int len);
1271int tls1_export_keying_material(SSL *s, unsigned char *out, size_t olen,
1272 const char *label, size_t llen,
1273 const unsigned char *p, size_t plen, int use_context);
1274int tls1_alert_code(int code);
1275int ssl3_alert_code(int code);
1276int ssl_ok(SSL *s);
1277
1278#ifndef OPENSSL_NO_ECDH
1279int ssl_check_srvr_ecc_cert_and_alg(X509 *x, SSL *s);
1280#endif
1281
1282SSL_COMP *ssl3_comp_find(STACK_OF(SSL_COMP) *sk, int n);
1283
1284#ifndef OPENSSL_NO_EC
1285int tls1_ec_curve_id2nid(int curve_id);
1286int tls1_ec_nid2curve_id(int nid);
1287int tls1_check_curve(SSL *s, const unsigned char *p, size_t len);
1288int tls1_shared_curve(SSL *s, int nmatch);
1289int tls1_set_curves(unsigned char **pext, size_t *pextlen,
1290 int *curves, size_t ncurves);
1291int tls1_set_curves_list(unsigned char **pext, size_t *pextlen,
1292 const char *str);
1293int tls1_check_ec_tmp_key(SSL *s, unsigned long id);
1294#endif /* OPENSSL_NO_EC */
1295
1296#ifndef OPENSSL_NO_TLSEXT
1297int tls1_shared_list(SSL *s,
1298 const unsigned char *l1, size_t l1len,
1299 const unsigned char *l2, size_t l2len,
1300 int nmatch);
1301unsigned char *ssl_add_clienthello_tlsext(SSL *s, unsigned char *p, unsigned char *limit);
1302unsigned char *ssl_add_serverhello_tlsext(SSL *s, unsigned char *p, unsigned char *limit);
1303int ssl_parse_clienthello_tlsext(SSL *s, unsigned char **data, unsigned char *d, int n);
1304int ssl_check_clienthello_tlsext_late(SSL *s);
1305int ssl_parse_serverhello_tlsext(SSL *s, unsigned char **data, unsigned char *d, int n);
1306int ssl_prepare_clienthello_tlsext(SSL *s);
1307int ssl_prepare_serverhello_tlsext(SSL *s);
1308
1309/* server only */
1310int tls1_send_server_supplemental_data(SSL *s);
1311/* client only */
1312int tls1_get_server_supplemental_data(SSL *s);
1313
1314#ifndef OPENSSL_NO_HEARTBEATS
1315int tls1_heartbeat(SSL *s);
1316int dtls1_heartbeat(SSL *s);
1317int tls1_process_heartbeat(SSL *s);
1318int dtls1_process_heartbeat(SSL *s);
1319#endif
1320
1321#ifdef OPENSSL_NO_SHA256
1322#define tlsext_tick_md EVP_sha1
1323#else
1324#define tlsext_tick_md EVP_sha256
1325#endif
1326int tls1_process_ticket(SSL *s, unsigned char *session_id, int len,
1327 const unsigned char *limit, SSL_SESSION **ret);
1328
1329int tls12_get_sigandhash(unsigned char *p, const EVP_PKEY *pk,
1330 const EVP_MD *md);
1331int tls12_get_sigid(const EVP_PKEY *pk);
1332const EVP_MD *tls12_get_hash(unsigned char hash_alg);
1333
Adam Langley1258b6a2014-06-20 12:00:00 -07001334int tls1_channel_id_hash(EVP_MD_CTX *ctx, SSL *s);
1335int tls1_record_handshake_hashes_for_channel_id(SSL *s);
1336
Adam Langley95c29f32014-06-20 12:00:00 -07001337int tls1_set_sigalgs_list(CERT *c, const char *str, int client);
1338int tls1_set_sigalgs(CERT *c, const int *salg, size_t salglen, int client);
1339int tls1_check_chain(SSL *s, X509 *x, EVP_PKEY *pk, STACK_OF(X509) *chain,
1340 int idx);
1341void tls1_set_cert_validity(SSL *s);
1342
1343#endif
Adam Langleyadb739e2014-06-20 12:00:00 -07001344
1345int ssl3_can_cutthrough(const SSL *s);
Adam Langley95c29f32014-06-20 12:00:00 -07001346EVP_MD_CTX* ssl_replace_hash(EVP_MD_CTX **hash,const EVP_MD *md) ;
1347void ssl_clear_hash_ctx(EVP_MD_CTX **hash);
1348int ssl_add_serverhello_renegotiate_ext(SSL *s, unsigned char *p, int *len,
1349 int maxlen);
1350int ssl_parse_serverhello_renegotiate_ext(SSL *s, unsigned char *d, int len,
1351 int *al);
1352int ssl_add_clienthello_renegotiate_ext(SSL *s, unsigned char *p, int *len,
1353 int maxlen);
1354int ssl_parse_clienthello_renegotiate_ext(SSL *s, unsigned char *d, int len,
1355 int *al);
1356long ssl_get_algorithm2(SSL *s);
1357int tls1_process_sigalgs(SSL *s, const unsigned char *data, int dsize);
1358size_t tls12_get_psigalgs(SSL *s, const unsigned char **psigs);
1359int tls12_check_peer_sigalg(const EVP_MD **pmd, SSL *s,
1360 const unsigned char *sig, EVP_PKEY *pkey);
1361void ssl_set_client_disabled(SSL *s);
1362
1363int ssl_add_clienthello_use_srtp_ext(SSL *s, unsigned char *p, int *len, int maxlen);
1364int ssl_parse_clienthello_use_srtp_ext(SSL *s, unsigned char *d, int len,int *al);
1365int ssl_add_serverhello_use_srtp_ext(SSL *s, unsigned char *p, int *len, int maxlen);
1366int ssl_parse_serverhello_use_srtp_ext(SSL *s, unsigned char *d, int len,int *al);
1367
1368/* s3_cbc.c */
1369void ssl3_cbc_copy_mac(unsigned char* out,
1370 const SSL3_RECORD *rec,
1371 unsigned md_size,unsigned orig_len);
1372int ssl3_cbc_remove_padding(const SSL* s,
1373 SSL3_RECORD *rec,
1374 unsigned block_size,
1375 unsigned mac_size);
1376int tls1_cbc_remove_padding(const SSL* s,
1377 SSL3_RECORD *rec,
1378 unsigned block_size,
1379 unsigned mac_size);
1380char ssl3_cbc_record_digest_supported(const EVP_MD_CTX *ctx);
1381void ssl3_cbc_digest_record(
1382 const EVP_MD_CTX *ctx,
1383 unsigned char* md_out,
1384 size_t* md_out_size,
1385 const unsigned char header[13],
1386 const unsigned char *data,
1387 size_t data_plus_mac_size,
1388 size_t data_plus_mac_plus_padding_size,
1389 const unsigned char *mac_secret,
1390 unsigned mac_secret_length,
1391 char is_sslv3);
1392
1393void tls_fips_digest_extra(
1394 const EVP_CIPHER_CTX *cipher_ctx, EVP_MD_CTX *mac_ctx,
1395 const unsigned char *data, size_t data_len, size_t orig_len);
1396
1397#endif