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Add the SSL_stateless() function
[thirdparty/openssl.git] / ssl / ssl_locl.h
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846e33c7 1/*
48e5119a 2 * Copyright 1995-2018 The OpenSSL Project Authors. All Rights Reserved.
aa8f3d76 3 * Copyright (c) 2002, Oracle and/or its affiliates. All rights reserved
c80149d9 4 * Copyright 2005 Nokia. All rights reserved.
5a4fbc69 5 *
846e33c7
RS
6 * Licensed under the OpenSSL license (the "License"). You may not use
7 * this file except in compliance with the License. You can obtain a copy
8 * in the file LICENSE in the source distribution or at
9 * https://www.openssl.org/source/license.html
5a4fbc69 10 */
846e33c7 11
d02b48c6 12#ifndef HEADER_SSL_LOCL_H
0f113f3e 13# define HEADER_SSL_LOCL_H
4cff10dc
P
14
15# include "e_os.h" /* struct timeval for DTLS */
0f113f3e
MC
16# include <stdlib.h>
17# include <time.h>
18# include <string.h>
19# include <errno.h>
d02b48c6 20
0f113f3e 21# include <openssl/buffer.h>
3c27208f 22# include <openssl/comp.h>
0f113f3e 23# include <openssl/bio.h>
3c27208f
RS
24# include <openssl/rsa.h>
25# include <openssl/dsa.h>
0f113f3e
MC
26# include <openssl/err.h>
27# include <openssl/ssl.h>
07bbc92c 28# include <openssl/async.h>
0f113f3e 29# include <openssl/symhacks.h>
3c27208f 30# include <openssl/ct.h>
a230b26e
EK
31# include "record/record.h"
32# include "statem/statem.h"
33# include "packet_locl.h"
34# include "internal/dane.h"
2f545ae4 35# include "internal/refcount.h"
52e1d7b1 36
0f113f3e
MC
37# ifdef OPENSSL_BUILD_SHLIBSSL
38# undef OPENSSL_EXTERN
39# define OPENSSL_EXTERN OPENSSL_EXPORT
40# endif
26da3e65 41
0f113f3e
MC
42# define c2l(c,l) (l = ((unsigned long)(*((c)++))) , \
43 l|=(((unsigned long)(*((c)++)))<< 8), \
44 l|=(((unsigned long)(*((c)++)))<<16), \
45 l|=(((unsigned long)(*((c)++)))<<24))
d02b48c6
RE
46
47/* NOTE - c is not incremented as per c2l */
0f113f3e
MC
48# define c2ln(c,l1,l2,n) { \
49 c+=n; \
50 l1=l2=0; \
51 switch (n) { \
52 case 8: l2 =((unsigned long)(*(--(c))))<<24; \
53 case 7: l2|=((unsigned long)(*(--(c))))<<16; \
54 case 6: l2|=((unsigned long)(*(--(c))))<< 8; \
55 case 5: l2|=((unsigned long)(*(--(c)))); \
56 case 4: l1 =((unsigned long)(*(--(c))))<<24; \
57 case 3: l1|=((unsigned long)(*(--(c))))<<16; \
58 case 2: l1|=((unsigned long)(*(--(c))))<< 8; \
59 case 1: l1|=((unsigned long)(*(--(c)))); \
60 } \
61 }
62
63# define l2c(l,c) (*((c)++)=(unsigned char)(((l) )&0xff), \
64 *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
65 *((c)++)=(unsigned char)(((l)>>16)&0xff), \
66 *((c)++)=(unsigned char)(((l)>>24)&0xff))
67
68# define n2l(c,l) (l =((unsigned long)(*((c)++)))<<24, \
69 l|=((unsigned long)(*((c)++)))<<16, \
70 l|=((unsigned long)(*((c)++)))<< 8, \
71 l|=((unsigned long)(*((c)++))))
72
31c34a3e
DW
73# define n2l8(c,l) (l =((uint64_t)(*((c)++)))<<56, \
74 l|=((uint64_t)(*((c)++)))<<48, \
75 l|=((uint64_t)(*((c)++)))<<40, \
76 l|=((uint64_t)(*((c)++)))<<32, \
77 l|=((uint64_t)(*((c)++)))<<24, \
78 l|=((uint64_t)(*((c)++)))<<16, \
79 l|=((uint64_t)(*((c)++)))<< 8, \
80 l|=((uint64_t)(*((c)++))))
81
82
0f113f3e
MC
83# define l2n(l,c) (*((c)++)=(unsigned char)(((l)>>24)&0xff), \
84 *((c)++)=(unsigned char)(((l)>>16)&0xff), \
85 *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
86 *((c)++)=(unsigned char)(((l) )&0xff))
87
88# define l2n6(l,c) (*((c)++)=(unsigned char)(((l)>>40)&0xff), \
89 *((c)++)=(unsigned char)(((l)>>32)&0xff), \
90 *((c)++)=(unsigned char)(((l)>>24)&0xff), \
91 *((c)++)=(unsigned char)(((l)>>16)&0xff), \
92 *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
93 *((c)++)=(unsigned char)(((l) )&0xff))
94
95# define l2n8(l,c) (*((c)++)=(unsigned char)(((l)>>56)&0xff), \
96 *((c)++)=(unsigned char)(((l)>>48)&0xff), \
97 *((c)++)=(unsigned char)(((l)>>40)&0xff), \
98 *((c)++)=(unsigned char)(((l)>>32)&0xff), \
99 *((c)++)=(unsigned char)(((l)>>24)&0xff), \
100 *((c)++)=(unsigned char)(((l)>>16)&0xff), \
101 *((c)++)=(unsigned char)(((l)>> 8)&0xff), \
102 *((c)++)=(unsigned char)(((l) )&0xff))
103
d02b48c6 104/* NOTE - c is not incremented as per l2c */
0f113f3e
MC
105# define l2cn(l1,l2,c,n) { \
106 c+=n; \
107 switch (n) { \
108 case 8: *(--(c))=(unsigned char)(((l2)>>24)&0xff); \
109 case 7: *(--(c))=(unsigned char)(((l2)>>16)&0xff); \
110 case 6: *(--(c))=(unsigned char)(((l2)>> 8)&0xff); \
111 case 5: *(--(c))=(unsigned char)(((l2) )&0xff); \
112 case 4: *(--(c))=(unsigned char)(((l1)>>24)&0xff); \
113 case 3: *(--(c))=(unsigned char)(((l1)>>16)&0xff); \
114 case 2: *(--(c))=(unsigned char)(((l1)>> 8)&0xff); \
115 case 1: *(--(c))=(unsigned char)(((l1) )&0xff); \
116 } \
117 }
118
d4450e4b
MC
119# define n2s(c,s) ((s=(((unsigned int)((c)[0]))<< 8)| \
120 (((unsigned int)((c)[1])) )),(c)+=2)
121# define s2n(s,c) (((c)[0]=(unsigned char)(((s)>> 8)&0xff), \
122 (c)[1]=(unsigned char)(((s) )&0xff)),(c)+=2)
123
124# define n2l3(c,l) ((l =(((unsigned long)((c)[0]))<<16)| \
125 (((unsigned long)((c)[1]))<< 8)| \
126 (((unsigned long)((c)[2])) )),(c)+=3)
127
128# define l2n3(l,c) (((c)[0]=(unsigned char)(((l)>>16)&0xff), \
129 (c)[1]=(unsigned char)(((l)>> 8)&0xff), \
130 (c)[2]=(unsigned char)(((l) )&0xff)),(c)+=3)
d02b48c6 131
a230b26e
EK
132/*
133 * DTLS version numbers are strange because they're inverted. Except for
134 * DTLS1_BAD_VER, which should be considered "lower" than the rest.
135 */
136# define dtls_ver_ordinal(v1) (((v1) == DTLS1_BAD_VER) ? 0xff00 : (v1))
137# define DTLS_VERSION_GT(v1, v2) (dtls_ver_ordinal(v1) < dtls_ver_ordinal(v2))
138# define DTLS_VERSION_GE(v1, v2) (dtls_ver_ordinal(v1) <= dtls_ver_ordinal(v2))
139# define DTLS_VERSION_LT(v1, v2) (dtls_ver_ordinal(v1) > dtls_ver_ordinal(v2))
140# define DTLS_VERSION_LE(v1, v2) (dtls_ver_ordinal(v1) >= dtls_ver_ordinal(v2))
7946ab33 141
d02b48c6 142
018e57c7
DSH
143/*
144 * Define the Bitmasks for SSL_CIPHER.algorithms.
145 * This bits are used packed as dense as possible. If new methods/ciphers
146 * etc will be added, the bits a likely to change, so this information
147 * is for internal library use only, even though SSL_CIPHER.algorithms
148 * can be publicly accessed.
149 * Use the according functions for cipher management instead.
150 *
657e60fa 151 * The bit mask handling in the selection and sorting scheme in
018e57c7 152 * ssl_create_cipher_list() has only limited capabilities, reflecting
657e60fa 153 * that the different entities within are mutually exclusive:
018e57c7
DSH
154 * ONLY ONE BIT PER MASK CAN BE SET AT A TIME.
155 */
52b8dad8
BM
156
157/* Bits for algorithm_mkey (key exchange algorithm) */
68d39f3c 158/* RSA key exchange */
36e79832 159# define SSL_kRSA 0x00000001U
68d39f3c 160/* tmp DH key no DH cert */
bc71f910 161# define SSL_kDHE 0x00000002U
68d39f3c 162/* synonym */
0f113f3e 163# define SSL_kEDH SSL_kDHE
68d39f3c 164/* ephemeral ECDH */
ce0c1f2b 165# define SSL_kECDHE 0x00000004U
68d39f3c 166/* synonym */
0f113f3e 167# define SSL_kEECDH SSL_kECDHE
68d39f3c 168/* PSK */
ce0c1f2b 169# define SSL_kPSK 0x00000008U
68d39f3c 170/* GOST key exchange */
ce0c1f2b 171# define SSL_kGOST 0x00000010U
68d39f3c 172/* SRP */
ce0c1f2b 173# define SSL_kSRP 0x00000020U
52b8dad8 174
ce0c1f2b
DSH
175# define SSL_kRSAPSK 0x00000040U
176# define SSL_kECDHEPSK 0x00000080U
177# define SSL_kDHEPSK 0x00000100U
64651d39
DSH
178
179/* all PSK */
180
a230b26e 181# define SSL_PSK (SSL_kPSK | SSL_kRSAPSK | SSL_kECDHEPSK | SSL_kDHEPSK)
64651d39 182
e5c4bf93
DSH
183/* Any appropriate key exchange algorithm (for TLS 1.3 ciphersuites) */
184# define SSL_kANY 0x00000000U
185
52b8dad8 186/* Bits for algorithm_auth (server authentication) */
68d39f3c 187/* RSA auth */
36e79832 188# define SSL_aRSA 0x00000001U
68d39f3c 189/* DSS auth */
36e79832 190# define SSL_aDSS 0x00000002U
68d39f3c 191/* no auth (i.e. use ADH or AECDH) */
36e79832 192# define SSL_aNULL 0x00000004U
68d39f3c 193/* ECDSA auth*/
ce0c1f2b 194# define SSL_aECDSA 0x00000008U
68d39f3c 195/* PSK auth */
ce0c1f2b 196# define SSL_aPSK 0x00000010U
68d39f3c 197/* GOST R 34.10-2001 signature auth */
ce0c1f2b 198# define SSL_aGOST01 0x00000020U
68d39f3c 199/* SRP auth */
ce0c1f2b 200# define SSL_aSRP 0x00000040U
e44380a9 201/* GOST R 34.10-2012 signature auth */
ce0c1f2b 202# define SSL_aGOST12 0x00000080U
e5c4bf93
DSH
203/* Any appropriate signature auth (for TLS 1.3 ciphersuites) */
204# define SSL_aANY 0x00000000U
e4fb8b47
DSH
205/* All bits requiring a certificate */
206#define SSL_aCERT \
207 (SSL_aRSA | SSL_aDSS | SSL_aECDSA | SSL_aGOST01 | SSL_aGOST12)
52b8dad8
BM
208
209/* Bits for algorithm_enc (symmetric encryption) */
36e79832
DSH
210# define SSL_DES 0x00000001U
211# define SSL_3DES 0x00000002U
212# define SSL_RC4 0x00000004U
213# define SSL_RC2 0x00000008U
214# define SSL_IDEA 0x00000010U
215# define SSL_eNULL 0x00000020U
216# define SSL_AES128 0x00000040U
217# define SSL_AES256 0x00000080U
218# define SSL_CAMELLIA128 0x00000100U
219# define SSL_CAMELLIA256 0x00000200U
220# define SSL_eGOST2814789CNT 0x00000400U
221# define SSL_SEED 0x00000800U
222# define SSL_AES128GCM 0x00001000U
223# define SSL_AES256GCM 0x00002000U
224# define SSL_AES128CCM 0x00004000U
225# define SSL_AES256CCM 0x00008000U
226# define SSL_AES128CCM8 0x00010000U
227# define SSL_AES256CCM8 0x00020000U
e44380a9 228# define SSL_eGOST2814789CNT12 0x00040000U
a76ba82c 229# define SSL_CHACHA20POLY1305 0x00080000U
bc326738
JS
230# define SSL_ARIA128GCM 0x00100000U
231# define SSL_ARIA256GCM 0x00200000U
0f113f3e 232
a556f342
EK
233# define SSL_AESGCM (SSL_AES128GCM | SSL_AES256GCM)
234# define SSL_AESCCM (SSL_AES128CCM | SSL_AES256CCM | SSL_AES128CCM8 | SSL_AES256CCM8)
235# define SSL_AES (SSL_AES128|SSL_AES256|SSL_AESGCM|SSL_AESCCM)
0f113f3e 236# define SSL_CAMELLIA (SSL_CAMELLIA128|SSL_CAMELLIA256)
1c37fd96 237# define SSL_CHACHA20 (SSL_CHACHA20POLY1305)
bc326738
JS
238# define SSL_ARIAGCM (SSL_ARIA128GCM | SSL_ARIA256GCM)
239# define SSL_ARIA (SSL_ARIAGCM)
52b8dad8
BM
240
241/* Bits for algorithm_mac (symmetric authentication) */
28dd49fa 242
36e79832
DSH
243# define SSL_MD5 0x00000001U
244# define SSL_SHA1 0x00000002U
245# define SSL_GOST94 0x00000004U
246# define SSL_GOST89MAC 0x00000008U
247# define SSL_SHA256 0x00000010U
248# define SSL_SHA384 0x00000020U
28dd49fa 249/* Not a real MAC, just an indication it is part of cipher */
36e79832 250# define SSL_AEAD 0x00000040U
e44380a9
DB
251# define SSL_GOST12_256 0x00000080U
252# define SSL_GOST89MAC12 0x00000100U
253# define SSL_GOST12_512 0x00000200U
52b8dad8 254
0f113f3e 255/*
e44380a9 256 * When adding new digest in the ssl_ciph.c and increment SSL_MD_NUM_IDX make
0f113f3e
MC
257 * sure to update this constant too
258 */
28ba2541
DSH
259
260# define SSL_MD_MD5_IDX 0
261# define SSL_MD_SHA1_IDX 1
262# define SSL_MD_GOST94_IDX 2
263# define SSL_MD_GOST89MAC_IDX 3
264# define SSL_MD_SHA256_IDX 4
265# define SSL_MD_SHA384_IDX 5
266# define SSL_MD_GOST12_256_IDX 6
267# define SSL_MD_GOST89MAC12_IDX 7
268# define SSL_MD_GOST12_512_IDX 8
269# define SSL_MD_MD5_SHA1_IDX 9
7afd2312
DSH
270# define SSL_MD_SHA224_IDX 10
271# define SSL_MD_SHA512_IDX 11
272# define SSL_MAX_DIGEST 12
28ba2541
DSH
273
274/* Bits for algorithm2 (handshake digests and other extra flags) */
275
276/* Bits 0-7 are handshake MAC */
277# define SSL_HANDSHAKE_MAC_MASK 0xFF
278# define SSL_HANDSHAKE_MAC_MD5_SHA1 SSL_MD_MD5_SHA1_IDX
279# define SSL_HANDSHAKE_MAC_SHA256 SSL_MD_SHA256_IDX
280# define SSL_HANDSHAKE_MAC_SHA384 SSL_MD_SHA384_IDX
281# define SSL_HANDSHAKE_MAC_GOST94 SSL_MD_GOST94_IDX
282# define SSL_HANDSHAKE_MAC_GOST12_256 SSL_MD_GOST12_256_IDX
283# define SSL_HANDSHAKE_MAC_GOST12_512 SSL_MD_GOST12_512_IDX
284# define SSL_HANDSHAKE_MAC_DEFAULT SSL_HANDSHAKE_MAC_MD5_SHA1
285
286/* Bits 8-15 bits are PRF */
287# define TLS1_PRF_DGST_SHIFT 8
288# define TLS1_PRF_SHA1_MD5 (SSL_MD_MD5_SHA1_IDX << TLS1_PRF_DGST_SHIFT)
289# define TLS1_PRF_SHA256 (SSL_MD_SHA256_IDX << TLS1_PRF_DGST_SHIFT)
290# define TLS1_PRF_SHA384 (SSL_MD_SHA384_IDX << TLS1_PRF_DGST_SHIFT)
291# define TLS1_PRF_GOST94 (SSL_MD_GOST94_IDX << TLS1_PRF_DGST_SHIFT)
292# define TLS1_PRF_GOST12_256 (SSL_MD_GOST12_256_IDX << TLS1_PRF_DGST_SHIFT)
293# define TLS1_PRF_GOST12_512 (SSL_MD_GOST12_512_IDX << TLS1_PRF_DGST_SHIFT)
294# define TLS1_PRF (SSL_MD_MD5_SHA1_IDX << TLS1_PRF_DGST_SHIFT)
761772d7 295
0f113f3e
MC
296/*
297 * Stream MAC for GOST ciphersuites from cryptopro draft (currently this also
298 * goes into algorithm2)
299 */
28ba2541 300# define TLS1_STREAM_MAC 0x10000
761772d7 301
88a9614b 302# define SSL_STRONG_MASK 0x0000001FU
361a1191 303# define SSL_DEFAULT_MASK 0X00000020U
c84f7f4a 304
361a1191
KR
305# define SSL_STRONG_NONE 0x00000001U
306# define SSL_LOW 0x00000002U
307# define SSL_MEDIUM 0x00000004U
308# define SSL_HIGH 0x00000008U
309# define SSL_FIPS 0x00000010U
310# define SSL_NOT_DEFAULT 0x00000020U
018e57c7 311
361a1191 312/* we have used 0000003f - 26 bits left to go */
d02b48c6 313
34f7245b
MC
314/* Flag used on OpenSSL ciphersuite ids to indicate they are for SSLv3+ */
315# define SSL3_CK_CIPHERSUITE_FLAG 0x03000000
316
890f2f8b 317/* Check if an SSL structure is using DTLS */
0f113f3e 318# define SSL_IS_DTLS(s) (s->method->ssl3_enc->enc_flags & SSL_ENC_FLAG_DTLS)
f2342b7a
MC
319
320/* Check if we are using TLSv1.3 */
c805f618
MC
321# define SSL_IS_TLS13(s) (!SSL_IS_DTLS(s) \
322 && (s)->method->version >= TLS1_3_VERSION \
323 && (s)->method->version != TLS_ANY_VERSION)
f2342b7a 324
49e7fe12 325# define SSL_TREAT_AS_TLS13(s) \
7b0a3ce0
MC
326 (SSL_IS_TLS13(s) || (s)->early_data_state == SSL_EARLY_DATA_CONNECTING \
327 || (s)->early_data_state == SSL_EARLY_DATA_CONNECT_RETRY \
328 || (s)->early_data_state == SSL_EARLY_DATA_WRITING \
758e05c5
MC
329 || (s)->early_data_state == SSL_EARLY_DATA_WRITE_RETRY \
330 || (s)->hello_retry_request == SSL_HRR_PENDING)
49e7fe12 331
fdd92367
MC
332# define SSL_IS_FIRST_HANDSHAKE(S) ((s)->s3->tmp.finish_md_len == 0 \
333 || (s)->s3->tmp.peer_finish_md_len == 0)
c7f47786 334
cbd64894 335/* See if we need explicit IV */
0f113f3e
MC
336# define SSL_USE_EXPLICIT_IV(s) \
337 (s->method->ssl3_enc->enc_flags & SSL_ENC_FLAG_EXPLICIT_IV)
338/*
339 * See if we use signature algorithms extension and signature algorithm
340 * before signatures.
cbd64894 341 */
0f113f3e
MC
342# define SSL_USE_SIGALGS(s) \
343 (s->method->ssl3_enc->enc_flags & SSL_ENC_FLAG_SIGALGS)
344/*
345 * Allow TLS 1.2 ciphersuites: applies to DTLS 1.2 as well as TLS 1.2: may
346 * apply to others in future.
4221c0dd 347 */
0f113f3e
MC
348# define SSL_USE_TLS1_2_CIPHERS(s) \
349 (s->method->ssl3_enc->enc_flags & SSL_ENC_FLAG_TLS1_2_CIPHERS)
350/*
351 * Determine if a client can use TLS 1.2 ciphersuites: can't rely on method
1e2d4cb0
DSH
352 * flags because it may not be set to correct version yet.
353 */
0f113f3e 354# define SSL_CLIENT_USE_TLS1_2_CIPHERS(s) \
4fa52141
VD
355 ((!SSL_IS_DTLS(s) && s->client_version >= TLS1_2_VERSION) || \
356 (SSL_IS_DTLS(s) && DTLS_VERSION_GE(s->client_version, DTLS1_2_VERSION)))
f7aa3185
DB
357/*
358 * Determine if a client should send signature algorithms extension:
359 * as with TLS1.2 cipher we can't rely on method flags.
360 */
361# define SSL_CLIENT_USE_SIGALGS(s) \
362 SSL_CLIENT_USE_TLS1_2_CIPHERS(s)
0f113f3e 363
cf72c757
F
364# define IS_MAX_FRAGMENT_LENGTH_EXT_VALID(value) \
365 (((value) >= TLSEXT_max_fragment_length_512) && \
366 ((value) <= TLSEXT_max_fragment_length_4096))
367# define USE_MAX_FRAGMENT_LENGTH_EXT(session) \
368 IS_MAX_FRAGMENT_LENGTH_EXT_VALID(session->ext.max_fragment_len_mode)
369# define GET_MAX_FRAGMENT_LENGTH(session) \
370 (512U << (session->ext.max_fragment_len_mode - 1))
371
28a31a0a
MC
372# define SSL_READ_ETM(s) (s->s3->flags & TLS1_FLAGS_ENCRYPT_THEN_MAC_READ)
373# define SSL_WRITE_ETM(s) (s->s3->flags & TLS1_FLAGS_ENCRYPT_THEN_MAC_WRITE)
5e3ff62c 374
d02b48c6 375/* Mostly for SSLv3 */
d0ff28f8 376# define SSL_PKEY_RSA 0
045d078a
DSH
377# define SSL_PKEY_RSA_PSS_SIGN 1
378# define SSL_PKEY_DSA_SIGN 2
379# define SSL_PKEY_ECC 3
380# define SSL_PKEY_GOST01 4
381# define SSL_PKEY_GOST12_256 5
382# define SSL_PKEY_GOST12_512 6
383# define SSL_PKEY_ED25519 7
384# define SSL_PKEY_NUM 8
e44380a9
DB
385/*
386 * Pseudo-constant. GOST cipher suites can use different certs for 1
387 * SSL_CIPHER. So let's see which one we have in fact.
388 */
389# define SSL_PKEY_GOST_EC SSL_PKEY_NUM+1
d02b48c6 390
1d97c843 391/*-
361a1191 392 * SSL_kRSA <- RSA_ENC
d02b48c6 393 * SSL_kDH <- DH_ENC & (RSA_ENC | RSA_SIGN | DSA_SIGN)
5a21cadb 394 * SSL_kDHE <- RSA_ENC | RSA_SIGN | DSA_SIGN
d02b48c6
RE
395 * SSL_aRSA <- RSA_ENC | RSA_SIGN
396 * SSL_aDSS <- DSA_SIGN
397 */
398
23a22b4c 399/*-
0f113f3e
MC
400#define CERT_INVALID 0
401#define CERT_PUBLIC_KEY 1
402#define CERT_PRIVATE_KEY 2
d02b48c6
RE
403*/
404
e9fa092e 405/* CipherSuite length. SSLv3 and all TLS versions. */
a230b26e 406# define TLS_CIPHER_LEN 2
b6ba4014
MC
407/* used to hold info on the particular ciphers used */
408struct ssl_cipher_st {
90d9e49a 409 uint32_t valid;
a230b26e 410 const char *name; /* text name */
bbb4ceb8 411 const char *stdname; /* RFC name */
a230b26e 412 uint32_t id; /* id, 4 bytes, first is version */
b6ba4014 413 /*
90d9e49a 414 * changed in 1.0.0: these four used to be portions of a single value
b6ba4014
MC
415 * 'algorithms'
416 */
a230b26e
EK
417 uint32_t algorithm_mkey; /* key exchange algorithm */
418 uint32_t algorithm_auth; /* server authentication */
419 uint32_t algorithm_enc; /* symmetric encryption */
420 uint32_t algorithm_mac; /* symmetric authentication */
421 int min_tls; /* minimum SSL/TLS protocol version */
422 int max_tls; /* maximum SSL/TLS protocol version */
423 int min_dtls; /* minimum DTLS protocol version */
424 int max_dtls; /* maximum DTLS protocol version */
425 uint32_t algo_strength; /* strength and export flags */
426 uint32_t algorithm2; /* Extra flags */
427 int32_t strength_bits; /* Number of bits really used */
428 uint32_t alg_bits; /* Number of bits for algorithm */
b6ba4014
MC
429};
430
87d9cafa 431/* Used to hold SSL/TLS functions */
b6ba4014
MC
432struct ssl_method_st {
433 int version;
4fa52141
VD
434 unsigned flags;
435 unsigned long mask;
b6ba4014 436 int (*ssl_new) (SSL *s);
b77f3ed1 437 int (*ssl_clear) (SSL *s);
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MC
438 void (*ssl_free) (SSL *s);
439 int (*ssl_accept) (SSL *s);
440 int (*ssl_connect) (SSL *s);
54105ddd
MC
441 int (*ssl_read) (SSL *s, void *buf, size_t len, size_t *readbytes);
442 int (*ssl_peek) (SSL *s, void *buf, size_t len, size_t *readbytes);
7ee8627f 443 int (*ssl_write) (SSL *s, const void *buf, size_t len, size_t *written);
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444 int (*ssl_shutdown) (SSL *s);
445 int (*ssl_renegotiate) (SSL *s);
c7f47786 446 int (*ssl_renegotiate_check) (SSL *s, int);
657da85e 447 int (*ssl_read_bytes) (SSL *s, int type, int *recvd_type,
eda75751 448 unsigned char *buf, size_t len, int peek,
54105ddd 449 size_t *readbytes);
7ee8627f
MC
450 int (*ssl_write_bytes) (SSL *s, int type, const void *buf_, size_t len,
451 size_t *written);
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452 int (*ssl_dispatch_alert) (SSL *s);
453 long (*ssl_ctrl) (SSL *s, int cmd, long larg, void *parg);
454 long (*ssl_ctx_ctrl) (SSL_CTX *ctx, int cmd, long larg, void *parg);
455 const SSL_CIPHER *(*get_cipher_by_char) (const unsigned char *ptr);
ae2f7b37 456 int (*put_cipher_by_char) (const SSL_CIPHER *cipher, WPACKET *pkt,
2c7b4dbc 457 size_t *len);
8b0e934a 458 size_t (*ssl_pending) (const SSL *s);
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MC
459 int (*num_ciphers) (void);
460 const SSL_CIPHER *(*get_cipher) (unsigned ncipher);
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MC
461 long (*get_timeout) (void);
462 const struct ssl3_enc_method *ssl3_enc; /* Extra SSLv3/TLS stuff */
463 int (*ssl_version) (void);
464 long (*ssl_callback_ctrl) (SSL *s, int cb_id, void (*fp) (void));
465 long (*ssl_ctx_callback_ctrl) (SSL_CTX *s, int cb_id, void (*fp) (void));
466};
467
468/*-
469 * Lets make this into an ASN.1 type structure as follows
470 * SSL_SESSION_ID ::= SEQUENCE {
471 * version INTEGER, -- structure version number
472 * SSLversion INTEGER, -- SSL version number
473 * Cipher OCTET STRING, -- the 3 byte cipher ID
474 * Session_ID OCTET STRING, -- the Session ID
475 * Master_key OCTET STRING, -- the master key
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MC
476 * Key_Arg [ 0 ] IMPLICIT OCTET STRING, -- the optional Key argument
477 * Time [ 1 ] EXPLICIT INTEGER, -- optional Start Time
478 * Timeout [ 2 ] EXPLICIT INTEGER, -- optional Timeout ins seconds
479 * Peer [ 3 ] EXPLICIT X509, -- optional Peer Certificate
480 * Session_ID_context [ 4 ] EXPLICIT OCTET STRING, -- the Session ID context
481 * Verify_result [ 5 ] EXPLICIT INTEGER, -- X509_V_... code for `Peer'
482 * HostName [ 6 ] EXPLICIT OCTET STRING, -- optional HostName from servername TLS extension
483 * PSK_identity_hint [ 7 ] EXPLICIT OCTET STRING, -- optional PSK identity hint
484 * PSK_identity [ 8 ] EXPLICIT OCTET STRING, -- optional PSK identity
485 * Ticket_lifetime_hint [9] EXPLICIT INTEGER, -- server's lifetime hint for session ticket
486 * Ticket [10] EXPLICIT OCTET STRING, -- session ticket (clients only)
487 * Compression_meth [11] EXPLICIT OCTET STRING, -- optional compression method
488 * SRP_username [ 12 ] EXPLICIT OCTET STRING -- optional SRP username
6f152a15 489 * flags [ 13 ] EXPLICIT INTEGER -- optional flags
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490 * }
491 * Look in ssl/ssl_asn1.c for more details
492 * I'm using EXPLICIT tags so I can read the damn things using asn1parse :-).
493 */
494struct ssl_session_st {
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EK
495 int ssl_version; /* what ssl version session info is being kept
496 * in here? */
8c1a5343 497 size_t master_key_length;
ec15acb6 498
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MC
499 /* TLSv1.3 early_secret used for external PSKs */
500 unsigned char early_secret[EVP_MAX_MD_SIZE];
ec15acb6
MC
501 /*
502 * For <=TLS1.2 this is the master_key. For TLS1.3 this is the resumption
503 * master secret
504 */
1a3392c8 505 unsigned char master_key[TLS13_MAX_RESUMPTION_MASTER_LENGTH];
b6ba4014 506 /* session_id - valid? */
ec60ccc1 507 size_t session_id_length;
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MC
508 unsigned char session_id[SSL_MAX_SSL_SESSION_ID_LENGTH];
509 /*
510 * this is used to determine whether the session is being reused in the
511 * appropriate context. It is up to the application to set this, via
512 * SSL_new
513 */
ec60ccc1 514 size_t sid_ctx_length;
b6ba4014 515 unsigned char sid_ctx[SSL_MAX_SID_CTX_LENGTH];
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MC
516# ifndef OPENSSL_NO_PSK
517 char *psk_identity_hint;
518 char *psk_identity;
519# endif
520 /*
521 * Used to indicate that session resumption is not allowed. Applications
522 * can also set this bit for a new session via not_resumable_session_cb
523 * to disable session caching and tickets.
524 */
525 int not_resumable;
a273c6ee 526 /* This is the cert and type for the other end. */
b6ba4014 527 X509 *peer;
a273c6ee 528 int peer_type;
fa7c2637 529 /* Certificate chain peer sent. */
c34b0f99 530 STACK_OF(X509) *peer_chain;
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531 /*
532 * when app_verify_callback accepts a session where the peer's
533 * certificate is not ok, we must remember the error for session reuse:
534 */
535 long verify_result; /* only for servers */
2f545ae4 536 CRYPTO_REF_COUNT references;
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537 long timeout;
538 long time;
539 unsigned int compress_meth; /* Need to lookup the method */
540 const SSL_CIPHER *cipher;
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541 unsigned long cipher_id; /* when ASN.1 loaded, this needs to be used to
542 * load the 'cipher' structure */
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543 STACK_OF(SSL_CIPHER) *ciphers; /* shared ciphers? */
544 CRYPTO_EX_DATA ex_data; /* application specific data */
545 /*
546 * These are used to make removal of session-ids more efficient and to
547 * implement a maximum cache size.
548 */
549 struct ssl_session_st *prev, *next;
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550
551 struct {
552 char *hostname;
e481f9b9 553# ifndef OPENSSL_NO_EC
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554 size_t ecpointformats_len;
555 unsigned char *ecpointformats; /* peer's list */
f9df0a77 556# endif /* OPENSSL_NO_EC */
aff8c126 557 size_t supportedgroups_len;
9e84a42d 558 uint16_t *supportedgroups; /* peer's list */
b6ba4014 559 /* RFC4507 info */
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560 unsigned char *tick; /* Session ticket */
561 size_t ticklen; /* Session ticket length */
562 /* Session lifetime hint in seconds */
563 unsigned long tick_lifetime_hint;
fc24f0bf 564 uint32_t tick_age_add;
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MC
565 unsigned char *tick_nonce;
566 size_t tick_nonce_len;
ec15acb6 567 int tick_identity;
5d5b3fba
MC
568 /* Max number of bytes that can be sent as early data */
569 uint32_t max_early_data;
f6370040
MC
570 /* The ALPN protocol selected for this session */
571 unsigned char *alpn_selected;
572 size_t alpn_selected_len;
cf72c757
F
573 /*
574 * Maximum Fragment Length as per RFC 4366.
575 * If this value does not contain RFC 4366 allowed values (1-4) then
576 * either the Maximum Fragment Length Negotiation failed or was not
577 * performed at all.
578 */
579 uint8_t max_fragment_len_mode;
aff8c126 580 } ext;
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581# ifndef OPENSSL_NO_SRP
582 char *srp_username;
583# endif
f7d53487 584 uint32_t flags;
16203f7b 585 CRYPTO_RWLOCK *lock;
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586};
587
6f152a15 588/* Extended master secret support */
a230b26e 589# define SSL_SESS_FLAG_EXTMS 0x1
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590
591# ifndef OPENSSL_NO_SRP
592
593typedef struct srp_ctx_st {
594 /* param for all the callbacks */
595 void *SRP_cb_arg;
596 /* set client Hello login callback */
597 int (*TLS_ext_srp_username_callback) (SSL *, int *, void *);
598 /* set SRP N/g param callback for verification */
599 int (*SRP_verify_param_callback) (SSL *, void *);
600 /* set SRP client passwd callback */
601 char *(*SRP_give_srp_client_pwd_callback) (SSL *, void *);
602 char *login;
603 BIGNUM *N, *g, *s, *B, *A;
604 BIGNUM *a, *b, *v;
605 char *info;
606 int strength;
607 unsigned long srp_Mask;
608} SRP_CTX;
609
610# endif
611
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MC
612typedef enum {
613 SSL_EARLY_DATA_NONE = 0,
614 SSL_EARLY_DATA_CONNECT_RETRY,
615 SSL_EARLY_DATA_CONNECTING,
616 SSL_EARLY_DATA_WRITE_RETRY,
617 SSL_EARLY_DATA_WRITING,
2a8db717 618 SSL_EARLY_DATA_WRITE_FLUSH,
09f28874 619 SSL_EARLY_DATA_UNAUTH_WRITING,
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MC
620 SSL_EARLY_DATA_FINISHED_WRITING,
621 SSL_EARLY_DATA_ACCEPT_RETRY,
622 SSL_EARLY_DATA_ACCEPTING,
623 SSL_EARLY_DATA_READ_RETRY,
624 SSL_EARLY_DATA_READING,
625 SSL_EARLY_DATA_FINISHED_READING
49e7fe12
MC
626} SSL_EARLY_DATA_STATE;
627
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MC
628/*
629 * We check that the amount of unreadable early data doesn't exceed
630 * max_early_data. max_early_data is given in plaintext bytes. However if it is
631 * unreadable then we only know the number of ciphertext bytes. We also don't
632 * know how much the overhead should be because it depends on the ciphersuite.
633 * We make a small allowance. We assume 5 records of actual data plus the end
634 * of early data alert record. Each record has a tag and a content type byte.
635 * The longest tag length we know of is EVP_GCM_TLS_TAG_LEN. We don't count the
636 * content of the alert record either which is 2 bytes.
637 */
638# define EARLY_DATA_CIPHERTEXT_OVERHEAD ((6 * (EVP_GCM_TLS_TAG_LEN + 1)) + 2)
639
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MC
640/*
641 * The allowance we have between the client's calculated ticket age and our own.
642 * We allow for 10 seconds (units are in ms). If a ticket is presented and the
643 * client's age calculation is different by more than this than our own then we
644 * do not allow that ticket for early_data.
645 */
646# define TICKET_AGE_ALLOWANCE (10 * 1000)
647
cb7a1f5f
BK
648#define MAX_COMPRESSIONS_SIZE 255
649
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650struct ssl_comp_st {
651 int id;
652 const char *name;
b6ba4014 653 COMP_METHOD *method;
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MC
654};
655
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656typedef struct raw_extension_st {
657 /* Raw packet data for the extension */
658 PACKET data;
659 /* Set to 1 if the extension is present or 0 otherwise */
660 int present;
661 /* Set to 1 if we have already parsed the extension or 0 otherwise */
662 int parsed;
663 /* The type of this extension, i.e. a TLSEXT_TYPE_* value */
664 unsigned int type;
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665 /* Track what order extensions are received in (0-based). */
666 size_t received_order;
cb7a1f5f
BK
667} RAW_EXTENSION;
668
669typedef struct {
670 unsigned int isv2;
671 unsigned int legacy_version;
672 unsigned char random[SSL3_RANDOM_SIZE];
673 size_t session_id_len;
674 unsigned char session_id[SSL_MAX_SSL_SESSION_ID_LENGTH];
675 size_t dtls_cookie_len;
676 unsigned char dtls_cookie[DTLS1_COOKIE_LENGTH];
677 PACKET ciphersuites;
678 size_t compressions_len;
679 unsigned char compressions[MAX_COMPRESSIONS_SIZE];
680 PACKET extensions;
681 size_t pre_proc_exts_len;
682 RAW_EXTENSION *pre_proc_exts;
683} CLIENTHELLO_MSG;
684
b186a592
MC
685/*
686 * Extension index values NOTE: Any updates to these defines should be mirrored
687 * with equivalent updates to ext_defs in extensions.c
688 */
689typedef enum tlsext_index_en {
690 TLSEXT_IDX_renegotiate,
691 TLSEXT_IDX_server_name,
cf72c757 692 TLSEXT_IDX_max_fragment_length,
b186a592
MC
693 TLSEXT_IDX_srp,
694 TLSEXT_IDX_ec_point_formats,
695 TLSEXT_IDX_supported_groups,
696 TLSEXT_IDX_session_ticket,
b186a592
MC
697 TLSEXT_IDX_status_request,
698 TLSEXT_IDX_next_proto_neg,
699 TLSEXT_IDX_application_layer_protocol_negotiation,
700 TLSEXT_IDX_use_srtp,
701 TLSEXT_IDX_encrypt_then_mac,
702 TLSEXT_IDX_signed_certificate_timestamp,
703 TLSEXT_IDX_extended_master_secret,
10ed1b72 704 TLSEXT_IDX_signature_algorithms,
b186a592
MC
705 TLSEXT_IDX_supported_versions,
706 TLSEXT_IDX_psk_kex_modes,
707 TLSEXT_IDX_key_share,
708 TLSEXT_IDX_cookie,
709 TLSEXT_IDX_cryptopro_bug,
710 TLSEXT_IDX_early_data,
711 TLSEXT_IDX_certificate_authorities,
712 TLSEXT_IDX_padding,
713 TLSEXT_IDX_psk,
714 /* Dummy index - must always be the last entry */
715 TLSEXT_IDX_num_builtins
716} TLSEXT_INDEX;
717
89d6aa10 718DEFINE_LHASH_OF(SSL_SESSION);
ce023e77
VD
719/* Needed in ssl_cert.c */
720DEFINE_LHASH_OF(X509_NAME);
f8e0a557 721
a230b26e 722# define TLSEXT_KEYNAME_LENGTH 16
d139723b 723
b6ba4014
MC
724struct ssl_ctx_st {
725 const SSL_METHOD *method;
726 STACK_OF(SSL_CIPHER) *cipher_list;
727 /* same as above but sorted for lookup */
728 STACK_OF(SSL_CIPHER) *cipher_list_by_id;
729 struct x509_store_st /* X509_STORE */ *cert_store;
730 LHASH_OF(SSL_SESSION) *sessions;
731 /*
732 * Most session-ids that will be cached, default is
733 * SSL_SESSION_CACHE_MAX_SIZE_DEFAULT. 0 is unlimited.
734 */
cb150cbc 735 size_t session_cache_size;
b6ba4014
MC
736 struct ssl_session_st *session_cache_head;
737 struct ssl_session_st *session_cache_tail;
738 /*
739 * This can have one of 2 values, ored together, SSL_SESS_CACHE_CLIENT,
740 * SSL_SESS_CACHE_SERVER, Default is SSL_SESSION_CACHE_SERVER, which
6aff543b 741 * means only SSL_accept will cache SSL_SESSIONS.
b6ba4014 742 */
f7d53487 743 uint32_t session_cache_mode;
b6ba4014
MC
744 /*
745 * If timeout is not 0, it is the default timeout value set when
746 * SSL_new() is called. This has been put in to make life easier to set
747 * things up
748 */
749 long session_timeout;
750 /*
751 * If this callback is not null, it will be called each time a session id
752 * is added to the cache. If this function returns 1, it means that the
753 * callback will do a SSL_SESSION_free() when it has finished using it.
754 * Otherwise, on 0, it means the callback has finished with it. If
755 * remove_session_cb is not null, it will be called when a session-id is
756 * removed from the cache. After the call, OpenSSL will
757 * SSL_SESSION_free() it.
758 */
759 int (*new_session_cb) (struct ssl_st *ssl, SSL_SESSION *sess);
760 void (*remove_session_cb) (struct ssl_ctx_st *ctx, SSL_SESSION *sess);
761 SSL_SESSION *(*get_session_cb) (struct ssl_st *ssl,
b6981744
EK
762 const unsigned char *data, int len,
763 int *copy);
b6ba4014
MC
764 struct {
765 int sess_connect; /* SSL new conn - started */
766 int sess_connect_renegotiate; /* SSL reneg - requested */
767 int sess_connect_good; /* SSL new conne/reneg - finished */
768 int sess_accept; /* SSL new accept - started */
769 int sess_accept_renegotiate; /* SSL reneg - requested */
770 int sess_accept_good; /* SSL accept/reneg - finished */
771 int sess_miss; /* session lookup misses */
772 int sess_timeout; /* reuse attempt on timeouted session */
773 int sess_cache_full; /* session removed due to full cache */
774 int sess_hit; /* session reuse actually done */
775 int sess_cb_hit; /* session-id that was not in the cache was
776 * passed back via the callback. This
a230b26e
EK
777 * indicates that the application is supplying
778 * session-id's from other processes - spooky
779 * :-) */
b6ba4014
MC
780 } stats;
781
2f545ae4 782 CRYPTO_REF_COUNT references;
b6ba4014
MC
783
784 /* if defined, these override the X509_verify_cert() calls */
785 int (*app_verify_callback) (X509_STORE_CTX *, void *);
786 void *app_verify_arg;
787 /*
788 * before OpenSSL 0.9.7, 'app_verify_arg' was ignored
789 * ('app_verify_callback' was called with just one argument)
790 */
791
792 /* Default password callback. */
793 pem_password_cb *default_passwd_callback;
794
795 /* Default password callback user data. */
796 void *default_passwd_callback_userdata;
797
798 /* get client cert callback */
799 int (*client_cert_cb) (SSL *ssl, X509 **x509, EVP_PKEY **pkey);
800
801 /* cookie generate callback */
802 int (*app_gen_cookie_cb) (SSL *ssl, unsigned char *cookie,
803 unsigned int *cookie_len);
804
805 /* verify cookie callback */
31011544 806 int (*app_verify_cookie_cb) (SSL *ssl, const unsigned char *cookie,
b6ba4014
MC
807 unsigned int cookie_len);
808
809 CRYPTO_EX_DATA ex_data;
810
811 const EVP_MD *md5; /* For SSLv3/TLSv1 'ssl3-md5' */
812 const EVP_MD *sha1; /* For SSLv3/TLSv1 'ssl3->sha1' */
813
814 STACK_OF(X509) *extra_certs;
815 STACK_OF(SSL_COMP) *comp_methods; /* stack of SSL_COMP, SSLv3/TLSv1 */
816
817 /* Default values used when no per-SSL value is defined follow */
818
819 /* used if SSL's info_callback is NULL */
820 void (*info_callback) (const SSL *ssl, int type, int val);
821
fa7c2637
DSH
822 /*
823 * What we put in certificate_authorities extension for TLS 1.3
824 * (ClientHello and CertificateRequest) or just client cert requests for
825 * earlier versions.
826 */
827 STACK_OF(X509_NAME) *ca_names;
b6ba4014
MC
828
829 /*
830 * Default values to use in SSL structures follow (these are copied by
831 * SSL_new)
832 */
833
f7d53487
DSH
834 uint32_t options;
835 uint32_t mode;
7946ab33
KR
836 int min_proto_version;
837 int max_proto_version;
12472b45 838 size_t max_cert_list;
b6ba4014
MC
839
840 struct cert_st /* CERT */ *cert;
841 int read_ahead;
842
843 /* callback that allows applications to peek at protocol messages */
844 void (*msg_callback) (int write_p, int version, int content_type,
845 const void *buf, size_t len, SSL *ssl, void *arg);
846 void *msg_callback_arg;
847
f7d53487 848 uint32_t verify_mode;
ec60ccc1 849 size_t sid_ctx_length;
b6ba4014
MC
850 unsigned char sid_ctx[SSL_MAX_SID_CTX_LENGTH];
851 /* called 'verify_callback' in the SSL */
852 int (*default_verify_callback) (int ok, X509_STORE_CTX *ctx);
853
854 /* Default generate session ID callback. */
855 GEN_SESSION_CB generate_session_id;
856
857 X509_VERIFY_PARAM *param;
858
859 int quiet_shutdown;
860
a230b26e
EK
861# ifndef OPENSSL_NO_CT
862 CTLOG_STORE *ctlog_store; /* CT Log Store */
ed29e82a 863 /*
a230b26e
EK
864 * Validates that the SCTs (Signed Certificate Timestamps) are sufficient.
865 * If they are not, the connection should be aborted.
866 */
43341433 867 ssl_ct_validation_cb ct_validation_callback;
ed29e82a 868 void *ct_validation_callback_arg;
a230b26e 869# endif
ed29e82a 870
d102d9df
MC
871 /*
872 * If we're using more than one pipeline how should we divide the data
873 * up between the pipes?
874 */
7ee8627f 875 size_t split_send_fragment;
b6ba4014
MC
876 /*
877 * Maximum amount of data to send in one fragment. actual record size can
878 * be more than this due to padding and MAC overheads.
879 */
7ee8627f 880 size_t max_send_fragment;
b6ba4014 881
d102d9df 882 /* Up to how many pipelines should we use? If 0 then 1 is assumed */
7ee8627f 883 size_t max_pipelines;
d102d9df 884
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MC
885 /* The default read buffer length to use (0 means not set) */
886 size_t default_read_buf_len;
887
a230b26e 888# ifndef OPENSSL_NO_ENGINE
b6ba4014
MC
889 /*
890 * Engine to pass requests for client certs to
891 */
892 ENGINE *client_cert_engine;
a230b26e 893# endif
b6ba4014 894
a9c0d8be
DB
895 /* ClientHello callback. Mostly for extensions, but not entirely. */
896 SSL_client_hello_cb_fn client_hello_cb;
897 void *client_hello_cb_arg;
6b1bb98f 898
aff8c126
RS
899 /* TLS extensions. */
900 struct {
901 /* TLS extensions servername callback */
902 int (*servername_cb) (SSL *, int *, void *);
903 void *servername_arg;
904 /* RFC 4507 session ticket keys */
905 unsigned char tick_key_name[TLSEXT_KEYNAME_LENGTH];
906 unsigned char tick_hmac_key[32];
907 unsigned char tick_aes_key[32];
908 /* Callback to support customisation of ticket key setting */
909 int (*ticket_key_cb) (SSL *ssl,
910 unsigned char *name, unsigned char *iv,
911 EVP_CIPHER_CTX *ectx, HMAC_CTX *hctx, int enc);
912
913 /* certificate status request info */
914 /* Callback for status request */
915 int (*status_cb) (SSL *ssl, void *arg);
916 void *status_arg;
917 /* ext status type used for CSR extension (OCSP Stapling) */
918 int status_type;
cf72c757
F
919 /* RFC 4366 Maximum Fragment Length Negotiation */
920 uint8_t max_fragment_len_mode;
b6ba4014 921
aff8c126
RS
922# ifndef OPENSSL_NO_EC
923 /* EC extension values inherited by SSL structure */
924 size_t ecpointformats_len;
925 unsigned char *ecpointformats;
926 size_t supportedgroups_len;
9e84a42d 927 uint16_t *supportedgroups;
aff8c126 928# endif /* OPENSSL_NO_EC */
b6ba4014 929
aff8c126
RS
930 /*
931 * ALPN information (we are in the process of transitioning from NPN to
932 * ALPN.)
933 */
b6ba4014
MC
934
935 /*-
936 * For a server, this contains a callback function that allows the
937 * server to select the protocol for the connection.
938 * out: on successful return, this must point to the raw protocol
939 * name (without the length prefix).
940 * outlen: on successful return, this contains the length of |*out|.
941 * in: points to the client's list of supported protocols in
942 * wire-format.
943 * inlen: the length of |in|.
944 */
aff8c126
RS
945 int (*alpn_select_cb) (SSL *s,
946 const unsigned char **out,
947 unsigned char *outlen,
948 const unsigned char *in,
949 unsigned int inlen, void *arg);
950 void *alpn_select_cb_arg;
b6ba4014 951
aff8c126
RS
952 /*
953 * For a client, this contains the list of supported protocols in wire
954 * format.
955 */
956 unsigned char *alpn;
957 size_t alpn_len;
958
e3bc1305 959# ifndef OPENSSL_NO_NEXTPROTONEG
aff8c126
RS
960 /* Next protocol negotiation information */
961
962 /*
963 * For a server, this contains a callback function by which the set of
964 * advertised protocols can be provided.
965 */
8cbfcc70 966 SSL_CTX_npn_advertised_cb_func npn_advertised_cb;
aff8c126
RS
967 void *npn_advertised_cb_arg;
968 /*
969 * For a client, this contains a callback function that selects the next
970 * protocol from the list provided by the server.
971 */
8cbfcc70 972 SSL_CTX_npn_select_cb_func npn_select_cb;
aff8c126
RS
973 void *npn_select_cb_arg;
974# endif
43054d3d
MC
975
976 unsigned char cookie_hmac_key[SHA256_DIGEST_LENGTH];
aff8c126
RS
977 } ext;
978
979# ifndef OPENSSL_NO_PSK
8cbfcc70
RS
980 SSL_psk_client_cb_func psk_client_callback;
981 SSL_psk_server_cb_func psk_server_callback;
aff8c126 982# endif
3a7c56b2 983 SSL_psk_find_session_cb_func psk_find_session_cb;
9368f865 984 SSL_psk_use_session_cb_func psk_use_session_cb;
aff8c126
RS
985
986# ifndef OPENSSL_NO_SRP
987 SRP_CTX srp_ctx; /* ctx for SRP authentication */
988# endif
b6ba4014 989
919ba009
VD
990 /* Shared DANE context */
991 struct dane_ctx_st dane;
992
b6ba4014
MC
993 /* SRTP profiles we are willing to do from RFC 5764 */
994 STACK_OF(SRTP_PROTECTION_PROFILE) *srtp_profiles;
b6ba4014
MC
995 /*
996 * Callback for disabling session caching and ticket support on a session
997 * basis, depending on the chosen cipher.
998 */
999 int (*not_resumable_session_cb) (SSL *ssl, int is_forward_secure);
ba261f71 1000
16203f7b 1001 CRYPTO_RWLOCK *lock;
2faa1b48
CB
1002
1003 /*
1004 * Callback for logging key material for use with debugging tools like
1005 * Wireshark. The callback should log `line` followed by a newline.
1006 */
1007 SSL_CTX_keylog_cb_func keylog_callback;
3fc8d856
MC
1008
1009 /* The maximum number of bytes that can be sent as early data */
1010 uint32_t max_early_data;
c649d10d
TS
1011
1012 /* TLS1.3 padding callback */
1013 size_t (*record_padding_cb)(SSL *s, int type, size_t len, void *arg);
1014 void *record_padding_arg;
1015 size_t block_padding;
b6ba4014
MC
1016};
1017
b6ba4014
MC
1018struct ssl_st {
1019 /*
1020 * protocol version (one of SSL2_VERSION, SSL3_VERSION, TLS1_VERSION,
1021 * DTLS1_VERSION)
1022 */
1023 int version;
b6ba4014
MC
1024 /* SSLv3 */
1025 const SSL_METHOD *method;
1026 /*
1027 * There are 2 BIO's even though they are normally both the same. This
1028 * is so data can be read and written to different handlers
1029 */
1030 /* used by SSL_read */
1031 BIO *rbio;
1032 /* used by SSL_write */
1033 BIO *wbio;
1034 /* used during session-id reuse to concatenate messages */
1035 BIO *bbio;
1036 /*
1037 * This holds a variable that indicates what we were doing when a 0 or -1
1038 * is returned. This is needed for non-blocking IO so we know what
1039 * request needs re-doing when in SSL_accept or SSL_connect
1040 */
1041 int rwstate;
b6ba4014
MC
1042 int (*handshake_func) (SSL *);
1043 /*
1044 * Imagine that here's a boolean member "init" that is switched as soon
1045 * as SSL_set_{accept/connect}_state is called for the first time, so
1046 * that "state" and "handshake_func" are properly initialized. But as
1047 * handshake_func is == 0 until then, we use this test instead of an
1048 * "init" member.
1049 */
23a635c0 1050 /* are we the server side? */
b6ba4014
MC
1051 int server;
1052 /*
1053 * Generate a new session or reuse an old one.
1054 * NB: For servers, the 'new' session may actually be a previously
1055 * cached session or even the previous session unless
1056 * SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION is set
1057 */
1058 int new_session;
1059 /* don't send shutdown packets */
1060 int quiet_shutdown;
1061 /* we have shut things down, 0x01 sent, 0x02 for received */
1062 int shutdown;
1063 /* where we are */
d6f1a6e9 1064 OSSL_STATEM statem;
49e7fe12 1065 SSL_EARLY_DATA_STATE early_data_state;
b6ba4014
MC
1066 BUF_MEM *init_buf; /* buffer used during init */
1067 void *init_msg; /* pointer to handshake message body, set by
1068 * ssl3_get_message() */
eda75751
MC
1069 size_t init_num; /* amount read/written */
1070 size_t init_off; /* amount read/written */
b6ba4014
MC
1071 struct ssl3_state_st *s3; /* SSLv3 variables */
1072 struct dtls1_state_st *d1; /* DTLSv1 variables */
b6ba4014
MC
1073 /* callback that allows applications to peek at protocol messages */
1074 void (*msg_callback) (int write_p, int version, int content_type,
1075 const void *buf, size_t len, SSL *ssl, void *arg);
1076 void *msg_callback_arg;
1077 int hit; /* reusing a previous session */
1078 X509_VERIFY_PARAM *param;
919ba009 1079 /* Per connection DANE state */
b9aec69a 1080 SSL_DANE dane;
b6ba4014
MC
1081 /* crypto */
1082 STACK_OF(SSL_CIPHER) *cipher_list;
1083 STACK_OF(SSL_CIPHER) *cipher_list_by_id;
1084 /*
1085 * These are the ones being used, the ones in SSL_SESSION are the ones to
1086 * be 'copied' into these ones
1087 */
f7d53487 1088 uint32_t mac_flags;
34574f19 1089 /*
ec15acb6
MC
1090 * The TLS1.3 secrets. The resumption master secret is stored in the
1091 * session.
34574f19
MC
1092 */
1093 unsigned char early_secret[EVP_MAX_MD_SIZE];
1094 unsigned char handshake_secret[EVP_MAX_MD_SIZE];
ec15acb6 1095 unsigned char master_secret[EVP_MAX_MD_SIZE];
6484776f
MC
1096 unsigned char client_finished_secret[EVP_MAX_MD_SIZE];
1097 unsigned char server_finished_secret[EVP_MAX_MD_SIZE];
ace081c1 1098 unsigned char server_finished_hash[EVP_MAX_MD_SIZE];
fe5e20fd 1099 unsigned char handshake_traffic_hash[EVP_MAX_MD_SIZE];
57389a32
MC
1100 unsigned char client_app_traffic_secret[EVP_MAX_MD_SIZE];
1101 unsigned char server_app_traffic_secret[EVP_MAX_MD_SIZE];
0ca8d1ec 1102 unsigned char exporter_master_secret[EVP_MAX_MD_SIZE];
b6ba4014 1103 EVP_CIPHER_CTX *enc_read_ctx; /* cryptographic state */
bebc0c7d 1104 unsigned char read_iv[EVP_MAX_IV_LENGTH]; /* TLSv1.3 static read IV */
b6ba4014 1105 EVP_MD_CTX *read_hash; /* used for mac generation */
9a555706 1106 COMP_CTX *compress; /* compression */
b6ba4014 1107 COMP_CTX *expand; /* uncompress */
b6ba4014 1108 EVP_CIPHER_CTX *enc_write_ctx; /* cryptographic state */
bebc0c7d 1109 unsigned char write_iv[EVP_MAX_IV_LENGTH]; /* TLSv1.3 static write IV */
b6ba4014 1110 EVP_MD_CTX *write_hash; /* used for mac generation */
82f992cb
MC
1111 /* Count of how many KeyUpdate messages we have received */
1112 unsigned int key_update_count;
b6ba4014
MC
1113 /* session info */
1114 /* client cert? */
1115 /* This is used to hold the server certificate used */
1116 struct cert_st /* CERT */ *cert;
2c5dfdc3
MC
1117
1118 /*
1119 * The hash of all messages prior to the CertificateVerify, and the length
1120 * of that hash.
1121 */
1122 unsigned char cert_verify_hash[EVP_MAX_MD_SIZE];
1123 size_t cert_verify_hash_len;
1124
7d061fce 1125 /* Flag to indicate whether we should send a HelloRetryRequest or not */
fc7129dc
MC
1126 enum {SSL_HRR_NONE = 0, SSL_HRR_PENDING, SSL_HRR_COMPLETE}
1127 hello_retry_request;
7d061fce 1128
b6ba4014
MC
1129 /*
1130 * the session_id_context is used to ensure sessions are only reused in
1131 * the appropriate context
1132 */
ec60ccc1 1133 size_t sid_ctx_length;
b6ba4014
MC
1134 unsigned char sid_ctx[SSL_MAX_SID_CTX_LENGTH];
1135 /* This can also be in the session once a session is established */
1136 SSL_SESSION *session;
9368f865
MC
1137 /* TLSv1.3 PSK session */
1138 SSL_SESSION *psksession;
add8d0e9
MC
1139 unsigned char *psksession_id;
1140 size_t psksession_id_len;
b6ba4014
MC
1141 /* Default generate session ID callback. */
1142 GEN_SESSION_CB generate_session_id;
a5816a5a
MC
1143 /*
1144 * The temporary TLSv1.3 session id. This isn't really a session id at all
1145 * but is a random value sent in the legacy session id field.
1146 */
1147 unsigned char tmp_session_id[SSL_MAX_SSL_SESSION_ID_LENGTH];
1148 size_t tmp_session_id_len;
b6ba4014
MC
1149 /* Used in SSL3 */
1150 /*
1151 * 0 don't care about verify failure.
1152 * 1 fail if verify fails
1153 */
f7d53487 1154 uint32_t verify_mode;
b6ba4014
MC
1155 /* fail if callback returns 0 */
1156 int (*verify_callback) (int ok, X509_STORE_CTX *ctx);
1157 /* optional informational callback */
1158 void (*info_callback) (const SSL *ssl, int type, int val);
1159 /* error bytes to be written */
1160 int error;
1161 /* actual code */
1162 int error_code;
a230b26e 1163# ifndef OPENSSL_NO_PSK
8cbfcc70
RS
1164 SSL_psk_client_cb_func psk_client_callback;
1165 SSL_psk_server_cb_func psk_server_callback;
a230b26e 1166# endif
3a7c56b2 1167 SSL_psk_find_session_cb_func psk_find_session_cb;
9368f865 1168 SSL_psk_use_session_cb_func psk_use_session_cb;
b6ba4014 1169 SSL_CTX *ctx;
696178ed
DSH
1170 /* Verified chain of peer */
1171 STACK_OF(X509) *verified_chain;
b6ba4014 1172 long verify_result;
696178ed 1173 /* extra application data */
b6ba4014
MC
1174 CRYPTO_EX_DATA ex_data;
1175 /* for server side, keep the list of CA_dn we can use */
fa7c2637 1176 STACK_OF(X509_NAME) *ca_names;
2f545ae4 1177 CRYPTO_REF_COUNT references;
b6ba4014 1178 /* protocol behaviour */
f7d53487 1179 uint32_t options;
b6ba4014 1180 /* API behaviour */
f7d53487 1181 uint32_t mode;
7946ab33
KR
1182 int min_proto_version;
1183 int max_proto_version;
12472b45 1184 size_t max_cert_list;
b6ba4014 1185 int first_packet;
7acb8b64
MC
1186 /*
1187 * What was passed in ClientHello.legacy_version. Used for RSA pre-master
1188 * secret and SSLv3/TLS (<=1.2) rollback check
1189 */
b6ba4014 1190 int client_version;
d102d9df
MC
1191 /*
1192 * If we're using more than one pipeline how should we divide the data
1193 * up between the pipes?
1194 */
7ee8627f 1195 size_t split_send_fragment;
d102d9df
MC
1196 /*
1197 * Maximum amount of data to send in one fragment. actual record size can
1198 * be more than this due to padding and MAC overheads.
1199 */
7ee8627f 1200 size_t max_send_fragment;
d102d9df 1201 /* Up to how many pipelines should we use? If 0 then 1 is assumed */
7ee8627f 1202 size_t max_pipelines;
aff8c126
RS
1203
1204 struct {
b186a592
MC
1205 /* Built-in extension flags */
1206 uint8_t extflags[TLSEXT_IDX_num_builtins];
aff8c126 1207 /* TLS extension debug callback */
1ed327f7
RS
1208 void (*debug_cb)(SSL *s, int client_server, int type,
1209 const unsigned char *data, int len, void *arg);
aff8c126
RS
1210 void *debug_arg;
1211 char *hostname;
1212 /* certificate status request info */
1213 /* Status type or -1 if no status type */
1214 int status_type;
1215 /* Raw extension data, if seen */
1216 unsigned char *scts;
1217 /* Length of raw extension data, if seen */
1218 uint16_t scts_len;
1219 /* Expect OCSP CertificateStatus message */
1220 int status_expected;
1221
1222 struct {
1223 /* OCSP status request only */
1224 STACK_OF(OCSP_RESPID) *ids;
1225 X509_EXTENSIONS *exts;
1226 /* OCSP response received or to be sent */
1227 unsigned char *resp;
1228 size_t resp_len;
1229 } ocsp;
1230
1231 /* RFC4507 session ticket expected to be received or sent */
1232 int ticket_expected;
1233# ifndef OPENSSL_NO_EC
1234 size_t ecpointformats_len;
1235 /* our list */
1236 unsigned char *ecpointformats;
f9df0a77 1237# endif /* OPENSSL_NO_EC */
aff8c126
RS
1238 size_t supportedgroups_len;
1239 /* our list */
9e84a42d 1240 uint16_t *supportedgroups;
aff8c126
RS
1241 /* TLS Session Ticket extension override */
1242 TLS_SESSION_TICKET_EXT *session_ticket;
1243 /* TLS Session Ticket extension callback */
1244 tls_session_ticket_ext_cb_fn session_ticket_cb;
1245 void *session_ticket_cb_arg;
1246 /* TLS pre-shared secret session resumption */
1247 tls_session_secret_cb_fn session_secret_cb;
1248 void *session_secret_cb_arg;
1249 /*
1250 * For a client, this contains the list of supported protocols in wire
1251 * format.
1252 */
1253 unsigned char *alpn;
1254 size_t alpn_len;
1255 /*
1256 * Next protocol negotiation. For the client, this is the protocol that
1257 * we sent in NextProtocol and is set when handling ServerHello
1258 * extensions. For a server, this is the client's selected_protocol from
1259 * NextProtocol and is set when handling the NextProtocol message, before
1260 * the Finished message.
1261 */
1262 unsigned char *npn;
1263 size_t npn_len;
b2f7e8c0 1264
4086b42b 1265 /* The available PSK key exchange modes */
b2f7e8c0 1266 int psk_kex_mode;
28a31a0a
MC
1267
1268 /* Set to one if we have negotiated ETM */
1269 int use_etm;
0a87d0ac 1270
1ea4d09a
MC
1271 /* Are we expecting to receive early data? */
1272 int early_data;
2c604cb9
MC
1273 /* Is the session suitable for early data? */
1274 int early_data_ok;
cfef5027
MC
1275
1276 /* May be sent by a server in HRR. Must be echoed back in ClientHello */
1277 unsigned char *tls13_cookie;
1278 size_t tls13_cookie_len;
cf72c757
F
1279 /*
1280 * Maximum Fragment Length as per RFC 4366.
1281 * If this member contains one of the allowed values (1-4)
1282 * then we should include Maximum Fragment Length Negotiation
1283 * extension in Client Hello.
1284 * Please note that value of this member does not have direct
1285 * effect. The actual (binding) value is stored in SSL_SESSION,
1286 * as this extension is optional on server side.
1287 */
1288 uint8_t max_fragment_len_mode;
aff8c126
RS
1289 } ext;
1290
a9c0d8be
DB
1291 /*
1292 * Parsed form of the ClientHello, kept around across client_hello_cb
1293 * calls.
1294 */
6b1bb98f
BK
1295 CLIENTHELLO_MSG *clienthello;
1296
b6ba4014
MC
1297 /*-
1298 * no further mod of servername
1299 * 0 : call the servername extension callback.
1300 * 1 : prepare 2, allow last ack just after in server callback.
1301 * 2 : don't call servername callback, no ack in server hello
1302 */
1303 int servername_done;
a230b26e 1304# ifndef OPENSSL_NO_CT
ed29e82a 1305 /*
a230b26e
EK
1306 * Validates that the SCTs (Signed Certificate Timestamps) are sufficient.
1307 * If they are not, the connection should be aborted.
1308 */
43341433 1309 ssl_ct_validation_cb ct_validation_callback;
48722ff5 1310 /* User-supplied argument that is passed to the ct_validation_callback */
ed29e82a
RP
1311 void *ct_validation_callback_arg;
1312 /*
1313 * Consolidated stack of SCTs from all sources.
1314 * Lazily populated by CT_get_peer_scts(SSL*)
1315 */
1316 STACK_OF(SCT) *scts;
ed29e82a
RP
1317 /* Have we attempted to find/parse SCTs yet? */
1318 int scts_parsed;
a230b26e 1319# endif
222da979 1320 SSL_CTX *session_ctx; /* initial ctx, used to store sessions */
b6ba4014
MC
1321 /* What we'll do */
1322 STACK_OF(SRTP_PROTECTION_PROFILE) *srtp_profiles;
1323 /* What's been chosen */
1324 SRTP_PROTECTION_PROFILE *srtp_profile;
b6ba4014
MC
1325 /*-
1326 * 1 if we are renegotiating.
1327 * 2 if we are a server and are inside a handshake
1328 * (i.e. not just sending a HelloRequest)
1329 */
1330 int renegotiate;
44c04a2e 1331 /* If sending a KeyUpdate is pending */
4fbfe86a 1332 int key_update;
a230b26e 1333# ifndef OPENSSL_NO_SRP
b6ba4014
MC
1334 /* ctx for SRP authentication */
1335 SRP_CTX srp_ctx;
a230b26e 1336# endif
b6ba4014
MC
1337 /*
1338 * Callback for disabling session caching and ticket support on a session
1339 * basis, depending on the chosen cipher.
1340 */
1341 int (*not_resumable_session_cb) (SSL *ssl, int is_forward_secure);
28d59af8 1342 RECORD_LAYER rlayer;
a974e64a
MC
1343 /* Default password callback. */
1344 pem_password_cb *default_passwd_callback;
a974e64a
MC
1345 /* Default password callback user data. */
1346 void *default_passwd_callback_userdata;
07bbc92c
MC
1347 /* Async Job info */
1348 ASYNC_JOB *job;
ff75a257 1349 ASYNC_WAIT_CTX *waitctx;
7ee8627f 1350 size_t asyncrw;
eda75751 1351
70ef40a0 1352 /* The maximum number of plaintext bytes that can be sent as early data */
3fc8d856 1353 uint32_t max_early_data;
70ef40a0
MC
1354 /*
1355 * The number of bytes of early data received so far. If we accepted early
1356 * data then this is a count of the plaintext bytes. If we rejected it then
1357 * this is a count of the ciphertext bytes.
1358 */
1359 uint32_t early_data_count;
3fc8d856 1360
c649d10d
TS
1361 /* TLS1.3 padding callback */
1362 size_t (*record_padding_cb)(SSL *s, int type, size_t len, void *arg);
1363 void *record_padding_arg;
1364 size_t block_padding;
1365
16203f7b 1366 CRYPTO_RWLOCK *lock;
ae3947de 1367 RAND_DRBG *drbg;
b6ba4014
MC
1368};
1369
f742cda8
DSH
1370/*
1371 * Structure containing table entry of values associated with the signature
1372 * algorithms (signature scheme) extension
1373*/
1374typedef struct sigalg_lookup_st {
1375 /* TLS 1.3 signature scheme name */
1376 const char *name;
1377 /* Raw value used in extension */
1378 uint16_t sigalg;
3d234c9e 1379 /* NID of hash algorithm or NID_undef if no hash */
f742cda8 1380 int hash;
3d234c9e 1381 /* Index of hash algorithm or -1 if no hash algorithm */
17ae384e 1382 int hash_idx;
f742cda8
DSH
1383 /* NID of signature algorithm */
1384 int sig;
17ae384e
DSH
1385 /* Index of signature algorithm */
1386 int sig_idx;
f742cda8
DSH
1387 /* Combined hash and signature NID, if any */
1388 int sigandhash;
1389 /* Required public key curve (ECDSA only) */
1390 int curve;
1391} SIGALG_LOOKUP;
1392
0e464d9d
DSH
1393typedef struct tls_group_info_st {
1394 int nid; /* Curve NID */
1395 int secbits; /* Bits of security (from SP800-57) */
1396 uint16_t flags; /* Flags: currently just group type */
1397} TLS_GROUP_INFO;
1398
1399/* flags values */
1400# define TLS_CURVE_TYPE 0x3 /* Mask for group type */
1401# define TLS_CURVE_PRIME 0x0
1402# define TLS_CURVE_CHAR2 0x1
1403# define TLS_CURVE_CUSTOM 0x2
1404
a497cf25
DSH
1405typedef struct cert_pkey_st CERT_PKEY;
1406
c04cd728
DSH
1407/*
1408 * Structure containing table entry of certificate info corresponding to
1409 * CERT_PKEY entries
1410 */
1411typedef struct {
1412 int nid; /* NID of pubic key algorithm */
1413 uint32_t amask; /* authmask corresponding to key type */
1414} SSL_CERT_LOOKUP;
1415
b6ba4014
MC
1416typedef struct ssl3_state_st {
1417 long flags;
b43d1cbb 1418 size_t read_mac_secret_size;
b6ba4014 1419 unsigned char read_mac_secret[EVP_MAX_MD_SIZE];
b43d1cbb 1420 size_t write_mac_secret_size;
b6ba4014
MC
1421 unsigned char write_mac_secret[EVP_MAX_MD_SIZE];
1422 unsigned char server_random[SSL3_RANDOM_SIZE];
1423 unsigned char client_random[SSL3_RANDOM_SIZE];
1424 /* flags for countermeasure against known-IV weakness */
1425 int need_empty_fragments;
1426 int empty_fragment_done;
b6ba4014
MC
1427 /* used during startup, digest all incoming/outgoing packets */
1428 BIO *handshake_buffer;
1429 /*
28ba2541
DSH
1430 * When handshake digest is determined, buffer is hashed and
1431 * freed and MD_CTX for the required digest is stored here.
b6ba4014 1432 */
28ba2541 1433 EVP_MD_CTX *handshake_dgst;
b6ba4014
MC
1434 /*
1435 * Set whenever an expected ChangeCipherSpec message is processed.
1436 * Unset when the peer's Finished message is received.
1437 * Unexpected ChangeCipherSpec messages trigger a fatal alert.
1438 */
1439 int change_cipher_spec;
1440 int warn_alert;
1441 int fatal_alert;
1442 /*
1443 * we allow one fatal and one warning alert to be outstanding, send close
1444 * alert via the warning alert
1445 */
1446 int alert_dispatch;
1447 unsigned char send_alert[2];
1448 /*
1449 * This flag is set when we should renegotiate ASAP, basically when there
1450 * is no more data in the read or write buffers
1451 */
1452 int renegotiate;
1453 int total_renegotiations;
1454 int num_renegotiations;
1455 int in_read_app_data;
1456 struct {
b6ba4014
MC
1457 /* actually only need to be 16+20 for SSLv3 and 12 for TLS */
1458 unsigned char finish_md[EVP_MAX_MD_SIZE * 2];
12472b45 1459 size_t finish_md_len;
b6ba4014 1460 unsigned char peer_finish_md[EVP_MAX_MD_SIZE * 2];
12472b45 1461 size_t peer_finish_md_len;
eda75751 1462 size_t message_size;
b6ba4014
MC
1463 int message_type;
1464 /* used to hold the new cipher we are going to use */
1465 const SSL_CIPHER *new_cipher;
a230b26e
EK
1466# if !defined(OPENSSL_NO_EC) || !defined(OPENSSL_NO_DH)
1467 EVP_PKEY *pkey; /* holds short lived DH/ECDH key */
1468# endif
b6ba4014
MC
1469 /* used for certificate requests */
1470 int cert_req;
75c13e78
DSH
1471 /* Certificate types in certificate request message. */
1472 uint8_t *ctype;
1473 size_t ctype_len;
fa7c2637
DSH
1474 /* Certificate authorities list peer sent */
1475 STACK_OF(X509_NAME) *peer_ca_names;
8c1a5343 1476 size_t key_block_length;
b6ba4014
MC
1477 unsigned char *key_block;
1478 const EVP_CIPHER *new_sym_enc;
1479 const EVP_MD *new_hash;
1480 int new_mac_pkey_type;
b43d1cbb 1481 size_t new_mac_secret_size;
a230b26e 1482# ifndef OPENSSL_NO_COMP
b6ba4014 1483 const SSL_COMP *new_compression;
a230b26e 1484# else
b6ba4014 1485 char *new_compression;
a230b26e 1486# endif
b6ba4014 1487 int cert_request;
76106e60
DSH
1488 /* Raw values of the cipher list from a client */
1489 unsigned char *ciphers_raw;
1490 size_t ciphers_rawlen;
1491 /* Temporary storage for premaster secret */
1492 unsigned char *pms;
1493 size_t pmslen;
a230b26e 1494# ifndef OPENSSL_NO_PSK
64651d39
DSH
1495 /* Temporary storage for PSK key */
1496 unsigned char *psk;
1497 size_t psklen;
a230b26e 1498# endif
93a77f9e
DSH
1499 /* Signature algorithm we actually use */
1500 const SIGALG_LOOKUP *sigalg;
a497cf25
DSH
1501 /* Pointer to certificate we use */
1502 CERT_PKEY *cert;
76106e60
DSH
1503 /*
1504 * signature algorithms peer reports: e.g. supported signature
1505 * algorithms extension for server or as part of a certificate
1506 * request for client.
1507 */
98c792d1 1508 uint16_t *peer_sigalgs;
76106e60
DSH
1509 /* Size of above array */
1510 size_t peer_sigalgslen;
46f4e1be 1511 /* Sigalg peer actually uses */
f742cda8 1512 const SIGALG_LOOKUP *peer_sigalg;
6383d316
DSH
1513 /*
1514 * Set if corresponding CERT_PKEY can be used with current
1515 * SSL session: e.g. appropriate curve, signature algorithms etc.
1516 * If zero it can't be used at all.
1517 */
f7d53487 1518 uint32_t valid_flags[SSL_PKEY_NUM];
4d69f9e6
DSH
1519 /*
1520 * For servers the following masks are for the key and auth algorithms
1521 * that are supported by the certs below. For clients they are masks of
1522 * *disabled* algorithms based on the current session.
1523 */
90d9e49a
DSH
1524 uint32_t mask_k;
1525 uint32_t mask_a;
3eb2aff4
KR
1526 /*
1527 * The following are used by the client to see if a cipher is allowed or
1528 * not. It contains the minimum and maximum version the client's using
1529 * based on what it knows so far.
1530 */
1531 int min_ver;
1532 int max_ver;
b6ba4014
MC
1533 } tmp;
1534
1535 /* Connection binding to prevent renegotiation attacks */
1536 unsigned char previous_client_finished[EVP_MAX_MD_SIZE];
12472b45 1537 size_t previous_client_finished_len;
b6ba4014 1538 unsigned char previous_server_finished[EVP_MAX_MD_SIZE];
12472b45 1539 size_t previous_server_finished_len;
b6ba4014
MC
1540 int send_connection_binding; /* TODOEKR */
1541
a230b26e 1542# ifndef OPENSSL_NO_NEXTPROTONEG
b6ba4014
MC
1543 /*
1544 * Set if we saw the Next Protocol Negotiation extension from our peer.
1545 */
aff8c126 1546 int npn_seen;
a230b26e 1547# endif
b6ba4014 1548
b6ba4014
MC
1549 /*
1550 * ALPN information (we are in the process of transitioning from NPN to
1551 * ALPN.)
1552 */
1553
1554 /*
1555 * In a server these point to the selected ALPN protocol after the
1556 * ClientHello has been processed. In a client these contain the protocol
1557 * that the server selected once the ServerHello has been processed.
1558 */
1559 unsigned char *alpn_selected;
817cd0d5
TS
1560 size_t alpn_selected_len;
1561 /* used by the server to know what options were proposed */
1562 unsigned char *alpn_proposed;
1563 size_t alpn_proposed_len;
1564 /* used by the client to know if it actually sent alpn */
1565 int alpn_sent;
b6ba4014 1566
a230b26e 1567# ifndef OPENSSL_NO_EC
b6ba4014
MC
1568 /*
1569 * This is set to true if we believe that this is a version of Safari
1570 * running on OS X 10.6 or newer. We wish to know this because Safari on
1571 * 10.8 .. 10.8.3 has broken ECDHE-ECDSA support.
1572 */
1573 char is_probably_safari;
a230b26e 1574# endif /* !OPENSSL_NO_EC */
8d92c1f8
DSH
1575
1576 /* For clients: peer temporary key */
fb79abe3 1577# if !defined(OPENSSL_NO_EC) || !defined(OPENSSL_NO_DH)
bcec3358 1578 /* The group_id for the DH/ECDH key */
9e84a42d 1579 uint16_t group_id;
61dd9f7a 1580 EVP_PKEY *peer_tmp;
8d92c1f8
DSH
1581# endif
1582
b6ba4014
MC
1583} SSL3_STATE;
1584
b6ba4014
MC
1585/* DTLS structures */
1586
a230b26e
EK
1587# ifndef OPENSSL_NO_SCTP
1588# define DTLS1_SCTP_AUTH_LABEL "EXPORTER_DTLS_OVER_SCTP"
1589# endif
b6ba4014
MC
1590
1591/* Max MTU overhead we know about so far is 40 for IPv6 + 8 for UDP */
a230b26e 1592# define DTLS1_MAX_MTU_OVERHEAD 48
b6ba4014 1593
e3d0dae7
MC
1594/*
1595 * Flag used in message reuse to indicate the buffer contains the record
436ad81f 1596 * header as well as the handshake message header.
e3d0dae7 1597 */
a230b26e 1598# define DTLS1_SKIP_RECORD_HEADER 2
e3d0dae7 1599
b6ba4014
MC
1600struct dtls1_retransmit_state {
1601 EVP_CIPHER_CTX *enc_write_ctx; /* cryptographic state */
1602 EVP_MD_CTX *write_hash; /* used for mac generation */
b6ba4014 1603 COMP_CTX *compress; /* compression */
b6ba4014
MC
1604 SSL_SESSION *session;
1605 unsigned short epoch;
1606};
1607
1608struct hm_header_st {
1609 unsigned char type;
7ee8627f 1610 size_t msg_len;
b6ba4014 1611 unsigned short seq;
7ee8627f
MC
1612 size_t frag_off;
1613 size_t frag_len;
b6ba4014
MC
1614 unsigned int is_ccs;
1615 struct dtls1_retransmit_state saved_retransmit_state;
1616};
1617
b6ba4014
MC
1618struct dtls1_timeout_st {
1619 /* Number of read timeouts so far */
1620 unsigned int read_timeouts;
1621 /* Number of write timeouts so far */
1622 unsigned int write_timeouts;
1623 /* Number of alerts received so far */
1624 unsigned int num_alerts;
1625};
1626
b6ba4014
MC
1627typedef struct hm_fragment_st {
1628 struct hm_header_st msg_header;
1629 unsigned char *fragment;
1630 unsigned char *reassembly;
1631} hm_fragment;
1632
cf2cede4
RS
1633typedef struct pqueue_st pqueue;
1634typedef struct pitem_st pitem;
1635
1636struct pitem_st {
1637 unsigned char priority[8]; /* 64-bit value in big-endian encoding */
1638 void *data;
1639 pitem *next;
1640};
1641
1642typedef struct pitem_st *piterator;
1643
1644pitem *pitem_new(unsigned char *prio64be, void *data);
1645void pitem_free(pitem *item);
a230b26e 1646pqueue *pqueue_new(void);
cf2cede4
RS
1647void pqueue_free(pqueue *pq);
1648pitem *pqueue_insert(pqueue *pq, pitem *item);
1649pitem *pqueue_peek(pqueue *pq);
1650pitem *pqueue_pop(pqueue *pq);
1651pitem *pqueue_find(pqueue *pq, unsigned char *prio64be);
1652pitem *pqueue_iterator(pqueue *pq);
1653pitem *pqueue_next(piterator *iter);
8b0e934a 1654size_t pqueue_size(pqueue *pq);
cf2cede4 1655
b6ba4014 1656typedef struct dtls1_state_st {
b6ba4014 1657 unsigned char cookie[DTLS1_COOKIE_LENGTH];
cb150cbc 1658 size_t cookie_len;
e27f234a 1659 unsigned int cookie_verified;
b6ba4014
MC
1660 /* handshake message numbers */
1661 unsigned short handshake_write_seq;
1662 unsigned short next_handshake_write_seq;
1663 unsigned short handshake_read_seq;
b6ba4014 1664 /* Buffered handshake messages */
cf2cede4 1665 pqueue *buffered_messages;
b6ba4014 1666 /* Buffered (sent) handshake records */
cf2cede4 1667 pqueue *sent_messages;
7ee8627f
MC
1668 size_t link_mtu; /* max on-the-wire DTLS packet size */
1669 size_t mtu; /* max DTLS packet size */
b6ba4014
MC
1670 struct hm_header_st w_msg_hdr;
1671 struct hm_header_st r_msg_hdr;
1672 struct dtls1_timeout_st timeout;
1673 /*
e72040c1 1674 * Indicates when the last handshake msg sent will timeout
b6ba4014
MC
1675 */
1676 struct timeval next_timeout;
1677 /* Timeout duration */
fa4b82cc
AH
1678 unsigned int timeout_duration_us;
1679
b6ba4014 1680 unsigned int retransmitting;
a230b26e 1681# ifndef OPENSSL_NO_SCTP
b6ba4014 1682 int shutdown_received;
a230b26e 1683# endif
fa4b82cc
AH
1684
1685 DTLS_timer_cb timer_cb;
1686
b6ba4014
MC
1687} DTLS1_STATE;
1688
0f113f3e
MC
1689# ifndef OPENSSL_NO_EC
1690/*
1691 * From ECC-TLS draft, used in encoding the curve type in ECParameters
ea262260 1692 */
0f113f3e
MC
1693# define EXPLICIT_PRIME_CURVE_TYPE 1
1694# define EXPLICIT_CHAR2_CURVE_TYPE 2
1695# define NAMED_CURVE_TYPE 3
1696# endif /* OPENSSL_NO_EC */
1697
a497cf25 1698struct cert_pkey_st {
0f113f3e
MC
1699 X509 *x509;
1700 EVP_PKEY *privatekey;
0f113f3e
MC
1701 /* Chain for this certificate */
1702 STACK_OF(X509) *chain;
50e735f9
MC
1703 /*-
1704 * serverinfo data for this certificate. The data is in TLS Extension
1705 * wire format, specifically it's a series of records like:
1706 * uint16_t extension_type; // (RFC 5246, 7.4.1.4, Extension)
1707 * uint16_t length;
1708 * uint8_t data[length];
1709 */
0f113f3e
MC
1710 unsigned char *serverinfo;
1711 size_t serverinfo_length;
a497cf25 1712};
2ea80354 1713/* Retrieve Suite B flags */
0f113f3e 1714# define tls1_suiteb(s) (s->cert->cert_flags & SSL_CERT_FLAG_SUITEB_128_LOS)
2ea80354 1715/* Uses to check strict mode: suite B modes are always strict */
0f113f3e
MC
1716# define SSL_CERT_FLAGS_CHECK_TLS_STRICT \
1717 (SSL_CERT_FLAG_SUITEB_128_LOS|SSL_CERT_FLAG_TLS_STRICT)
d02b48c6 1718
787d9ec7
MC
1719typedef enum {
1720 ENDPOINT_CLIENT = 0,
1721 ENDPOINT_SERVER,
1722 ENDPOINT_BOTH
1723} ENDPOINT;
1724
1725
b83294fe 1726typedef struct {
0f113f3e 1727 unsigned short ext_type;
787d9ec7 1728 ENDPOINT role;
43ae5eed
MC
1729 /* The context which this extension applies to */
1730 unsigned int context;
0f113f3e
MC
1731 /*
1732 * Per-connection flags relating to this extension type: not used if
1733 * part of an SSL_CTX structure.
1734 */
f7d53487 1735 uint32_t ext_flags;
cd17bb19
MC
1736 SSL_custom_ext_add_cb_ex add_cb;
1737 SSL_custom_ext_free_cb_ex free_cb;
0f113f3e 1738 void *add_arg;
cd17bb19 1739 SSL_custom_ext_parse_cb_ex parse_cb;
0f113f3e 1740 void *parse_arg;
ecf4d660 1741} custom_ext_method;
b83294fe 1742
28ea0a0c
DSH
1743/* ext_flags values */
1744
0f113f3e
MC
1745/*
1746 * Indicates an extension has been received. Used to check for unsolicited or
1747 * duplicate extensions.
28ea0a0c 1748 */
0f113f3e
MC
1749# define SSL_EXT_FLAG_RECEIVED 0x1
1750/*
1751 * Indicates an extension has been sent: used to enable sending of
1752 * corresponding ServerHello extension.
28ea0a0c 1753 */
0f113f3e 1754# define SSL_EXT_FLAG_SENT 0x2
28ea0a0c 1755
b83294fe 1756typedef struct {
0f113f3e
MC
1757 custom_ext_method *meths;
1758 size_t meths_count;
ecf4d660 1759} custom_ext_methods;
b83294fe 1760
0f113f3e
MC
1761typedef struct cert_st {
1762 /* Current active set */
1763 /*
1764 * ALWAYS points to an element of the pkeys array
1765 * Probably it would make more sense to store
1766 * an index, not a pointer.
1767 */
1768 CERT_PKEY *key;
0f113f3e 1769# ifndef OPENSSL_NO_DH
e2b420fd 1770 EVP_PKEY *dh_tmp;
0f113f3e
MC
1771 DH *(*dh_tmp_cb) (SSL *ssl, int is_export, int keysize);
1772 int dh_tmp_auto;
0f113f3e
MC
1773# endif
1774 /* Flags related to certificates */
f7d53487 1775 uint32_t cert_flags;
0f113f3e 1776 CERT_PKEY pkeys[SSL_PKEY_NUM];
75c13e78
DSH
1777 /* Custom certificate types sent in certificate request message. */
1778 uint8_t *ctype;
1779 size_t ctype_len;
0f113f3e 1780 /*
60250017 1781 * supported signature algorithms. When set on a client this is sent in
0f113f3e
MC
1782 * the client hello as the supported signature algorithms extension. For
1783 * servers it represents the signature algorithms we are willing to use.
1784 */
98c792d1 1785 uint16_t *conf_sigalgs;
0f113f3e
MC
1786 /* Size of above array */
1787 size_t conf_sigalgslen;
1788 /*
1789 * Client authentication signature algorithms, if not set then uses
1790 * conf_sigalgs. On servers these will be the signature algorithms sent
48722ff5
F
1791 * to the client in a certificate request for TLS 1.2. On a client this
1792 * represents the signature algorithms we are willing to use for client
0f113f3e
MC
1793 * authentication.
1794 */
98c792d1 1795 uint16_t *client_sigalgs;
0f113f3e
MC
1796 /* Size of above array */
1797 size_t client_sigalgslen;
1798 /*
1799 * Signature algorithms shared by client and server: cached because these
1800 * are used most often.
1801 */
4d43ee28 1802 const SIGALG_LOOKUP **shared_sigalgs;
0f113f3e
MC
1803 size_t shared_sigalgslen;
1804 /*
1805 * Certificate setup callback: if set is called whenever a certificate
1806 * may be required (client or server). the callback can then examine any
1807 * appropriate parameters and setup any certificates required. This
1808 * allows advanced applications to select certificates on the fly: for
1809 * example based on supported signature algorithms or curves.
1810 */
1811 int (*cert_cb) (SSL *ssl, void *arg);
1812 void *cert_cb_arg;
1813 /*
1814 * Optional X509_STORE for chain building or certificate validation If
1815 * NULL the parent SSL_CTX store is used instead.
1816 */
1817 X509_STORE *chain_store;
1818 X509_STORE *verify_store;
43ae5eed
MC
1819 /* Custom extensions */
1820 custom_ext_methods custext;
0f113f3e 1821 /* Security callback */
e4646a89 1822 int (*sec_cb) (const SSL *s, const SSL_CTX *ctx, int op, int bits, int nid,
0f113f3e
MC
1823 void *other, void *ex);
1824 /* Security level */
1825 int sec_level;
1826 void *sec_ex;
a230b26e 1827# ifndef OPENSSL_NO_PSK
df6da24b
DSH
1828 /* If not NULL psk identity hint to use for servers */
1829 char *psk_identity_hint;
a230b26e 1830# endif
2f545ae4 1831 CRYPTO_REF_COUNT references; /* >1 only if SSL_copy_session_id is used */
16203f7b 1832 CRYPTO_RWLOCK *lock;
0f113f3e
MC
1833} CERT;
1834
0f113f3e 1835# define FP_ICC (int (*)(const void *,const void *))
0f113f3e
MC
1836
1837/*
1838 * This is for the SSLv3/TLSv1.0 differences in crypto/hash stuff It is a bit
1839 * of a mess of functions, but hell, think of it as an opaque structure :-)
1840 */
1841typedef struct ssl3_enc_method {
72716e79 1842 int (*enc) (SSL *, SSL3_RECORD *, size_t, int);
d102d9df 1843 int (*mac) (SSL *, SSL3_RECORD *, unsigned char *, int);
0f113f3e
MC
1844 int (*setup_key_block) (SSL *);
1845 int (*generate_master_secret) (SSL *, unsigned char *, unsigned char *,
8c1a5343 1846 size_t, size_t *);
0f113f3e 1847 int (*change_cipher_state) (SSL *, int);
6db6bc5a 1848 size_t (*final_finish_mac) (SSL *, const char *, size_t, unsigned char *);
0f113f3e 1849 const char *client_finished_label;
8b0e934a 1850 size_t client_finished_label_len;
0f113f3e 1851 const char *server_finished_label;
8b0e934a 1852 size_t server_finished_label_len;
0f113f3e
MC
1853 int (*alert_value) (int);
1854 int (*export_keying_material) (SSL *, unsigned char *, size_t,
1855 const char *, size_t,
1856 const unsigned char *, size_t,
1857 int use_context);
1858 /* Various flags indicating protocol version requirements */
f7d53487 1859 uint32_t enc_flags;
0f113f3e 1860 /* Set the handshake header */
a29fa98c 1861 int (*set_handshake_header) (SSL *s, WPACKET *pkt, int type);
2c7b4dbc 1862 /* Close construction of the handshake message */
4a01c59f 1863 int (*close_construct_packet) (SSL *s, WPACKET *pkt, int htype);
0f113f3e
MC
1864 /* Write out handshake message */
1865 int (*do_write) (SSL *s);
1866} SSL3_ENC_METHOD;
1867
a29fa98c
MC
1868# define ssl_set_handshake_header(s, pkt, htype) \
1869 s->method->ssl3_enc->set_handshake_header((s), (pkt), (htype))
4a01c59f
MC
1870# define ssl_close_construct_packet(s, pkt, htype) \
1871 s->method->ssl3_enc->close_construct_packet((s), (pkt), (htype))
0f113f3e 1872# define ssl_do_write(s) s->method->ssl3_enc->do_write(s)
173e72e6
DSH
1873
1874/* Values for enc_flags */
1875
1876/* Uses explicit IV for CBC mode */
0f113f3e 1877# define SSL_ENC_FLAG_EXPLICIT_IV 0x1
173e72e6 1878/* Uses signature algorithms extension */
0f113f3e 1879# define SSL_ENC_FLAG_SIGALGS 0x2
cbd64894 1880/* Uses SHA256 default PRF */
0f113f3e 1881# define SSL_ENC_FLAG_SHA256_PRF 0x4
173e72e6 1882/* Is DTLS */
0f113f3e
MC
1883# define SSL_ENC_FLAG_DTLS 0x8
1884/*
1885 * Allow TLS 1.2 ciphersuites: applies to DTLS 1.2 as well as TLS 1.2: may
1886 * apply to others in future.
4221c0dd 1887 */
0f113f3e 1888# define SSL_ENC_FLAG_TLS1_2_CIPHERS 0x10
173e72e6 1889
0f113f3e 1890# ifndef OPENSSL_NO_COMP
651d0aff 1891/* Used for holding the relevant compression methods loaded into SSL_CTX */
0f113f3e
MC
1892typedef struct ssl3_comp_st {
1893 int comp_id; /* The identifier byte for this compression
1894 * type */
1895 char *name; /* Text name used for the compression type */
1896 COMP_METHOD *method; /* The method :-) */
1897} SSL3_COMP;
1898# endif
dfeab068 1899
f7f2a01d
MC
1900typedef enum downgrade_en {
1901 DOWNGRADE_NONE,
1902 DOWNGRADE_TO_1_2,
1903 DOWNGRADE_TO_1_1
1904} DOWNGRADE;
1905
cbb09544
MC
1906/*
1907 * Dummy status type for the status_type extension. Indicates no status type
1908 * set
1909 */
1910#define TLSEXT_STATUSTYPE_nothing -1
1911
703bcee0
MC
1912/* Sigalgs values */
1913#define TLSEXT_SIGALG_ecdsa_secp256r1_sha256 0x0403
1914#define TLSEXT_SIGALG_ecdsa_secp384r1_sha384 0x0503
1915#define TLSEXT_SIGALG_ecdsa_secp521r1_sha512 0x0603
d8311fc9 1916#define TLSEXT_SIGALG_ecdsa_sha224 0x0303
703bcee0
MC
1917#define TLSEXT_SIGALG_ecdsa_sha1 0x0203
1918#define TLSEXT_SIGALG_rsa_pss_sha256 0x0804
1919#define TLSEXT_SIGALG_rsa_pss_sha384 0x0805
1920#define TLSEXT_SIGALG_rsa_pss_sha512 0x0806
1921#define TLSEXT_SIGALG_rsa_pkcs1_sha256 0x0401
1922#define TLSEXT_SIGALG_rsa_pkcs1_sha384 0x0501
1923#define TLSEXT_SIGALG_rsa_pkcs1_sha512 0x0601
d8311fc9 1924#define TLSEXT_SIGALG_rsa_pkcs1_sha224 0x0301
703bcee0
MC
1925#define TLSEXT_SIGALG_rsa_pkcs1_sha1 0x0201
1926#define TLSEXT_SIGALG_dsa_sha256 0x0402
1927#define TLSEXT_SIGALG_dsa_sha384 0x0502
1928#define TLSEXT_SIGALG_dsa_sha512 0x0602
d8311fc9 1929#define TLSEXT_SIGALG_dsa_sha224 0x0302
703bcee0
MC
1930#define TLSEXT_SIGALG_dsa_sha1 0x0202
1931#define TLSEXT_SIGALG_gostr34102012_256_gostr34112012_256 0xeeee
1932#define TLSEXT_SIGALG_gostr34102012_512_gostr34112012_512 0xefef
1933#define TLSEXT_SIGALG_gostr34102001_gostr3411 0xeded
1934
3d234c9e
DSH
1935#define TLSEXT_SIGALG_ed25519 0x0807
1936
b2f7e8c0
MC
1937/* Known PSK key exchange modes */
1938#define TLSEXT_KEX_MODE_KE 0x00
1939#define TLSEXT_KEX_MODE_KE_DHE 0x01
1940
1941/*
1942 * Internal representations of key exchange modes
1943 */
1944#define TLSEXT_KEX_MODE_FLAG_NONE 0
1945#define TLSEXT_KEX_MODE_FLAG_KE 1
1946#define TLSEXT_KEX_MODE_FLAG_KE_DHE 2
1947
ec15acb6
MC
1948/* An invalid index into the TLSv1.3 PSK identities */
1949#define TLSEXT_PSK_BAD_IDENTITY -1
1950
f742cda8
DSH
1951#define SSL_USE_PSS(s) (s->s3->tmp.peer_sigalg != NULL && \
1952 s->s3->tmp.peer_sigalg->sig == EVP_PKEY_RSA_PSS)
fe3066ee 1953
703bcee0
MC
1954/* A dummy signature value not valid for TLSv1.2 signature algs */
1955#define TLSEXT_signature_rsa_pss 0x0101
1956
643a3580
MC
1957/* TLSv1.3 downgrade protection sentinel values */
1958extern const unsigned char tls11downgrade[8];
1959extern const unsigned char tls12downgrade[8];
703bcee0 1960
3ed449e9 1961extern SSL3_ENC_METHOD ssl3_undef_enc_method;
7d7d2cbc 1962
2b8fa1d5
KR
1963__owur const SSL_METHOD *ssl_bad_method(int ver);
1964__owur const SSL_METHOD *sslv3_method(void);
1965__owur const SSL_METHOD *sslv3_server_method(void);
1966__owur const SSL_METHOD *sslv3_client_method(void);
1967__owur const SSL_METHOD *tlsv1_method(void);
1968__owur const SSL_METHOD *tlsv1_server_method(void);
1969__owur const SSL_METHOD *tlsv1_client_method(void);
1970__owur const SSL_METHOD *tlsv1_1_method(void);
1971__owur const SSL_METHOD *tlsv1_1_server_method(void);
1972__owur const SSL_METHOD *tlsv1_1_client_method(void);
1973__owur const SSL_METHOD *tlsv1_2_method(void);
1974__owur const SSL_METHOD *tlsv1_2_server_method(void);
1975__owur const SSL_METHOD *tlsv1_2_client_method(void);
582a17d6
MC
1976__owur const SSL_METHOD *tlsv1_3_method(void);
1977__owur const SSL_METHOD *tlsv1_3_server_method(void);
1978__owur const SSL_METHOD *tlsv1_3_client_method(void);
2b8fa1d5
KR
1979__owur const SSL_METHOD *dtlsv1_method(void);
1980__owur const SSL_METHOD *dtlsv1_server_method(void);
1981__owur const SSL_METHOD *dtlsv1_client_method(void);
032924c4 1982__owur const SSL_METHOD *dtls_bad_ver_client_method(void);
2b8fa1d5
KR
1983__owur const SSL_METHOD *dtlsv1_2_method(void);
1984__owur const SSL_METHOD *dtlsv1_2_server_method(void);
1985__owur const SSL_METHOD *dtlsv1_2_client_method(void);
d02b48c6 1986
161e0a61
BL
1987extern const SSL3_ENC_METHOD TLSv1_enc_data;
1988extern const SSL3_ENC_METHOD TLSv1_1_enc_data;
1989extern const SSL3_ENC_METHOD TLSv1_2_enc_data;
582a17d6 1990extern const SSL3_ENC_METHOD TLSv1_3_enc_data;
8892ce77
BL
1991extern const SSL3_ENC_METHOD SSLv3_enc_data;
1992extern const SSL3_ENC_METHOD DTLSv1_enc_data;
1993extern const SSL3_ENC_METHOD DTLSv1_2_enc_data;
f3b656b2 1994
4fa52141
VD
1995/*
1996 * Flags for SSL methods
1997 */
a230b26e
EK
1998# define SSL_METHOD_NO_FIPS (1U<<0)
1999# define SSL_METHOD_NO_SUITEB (1U<<1)
4fa52141
VD
2000
2001# define IMPLEMENT_tls_meth_func(version, flags, mask, func_name, s_accept, \
ccae4a15 2002 s_connect, enc_data) \
4ebb342f 2003const SSL_METHOD *func_name(void) \
0f113f3e
MC
2004 { \
2005 static const SSL_METHOD func_name##_data= { \
2006 version, \
4fa52141
VD
2007 flags, \
2008 mask, \
0f113f3e
MC
2009 tls1_new, \
2010 tls1_clear, \
2011 tls1_free, \
2012 s_accept, \
2013 s_connect, \
2014 ssl3_read, \
2015 ssl3_peek, \
2016 ssl3_write, \
2017 ssl3_shutdown, \
2018 ssl3_renegotiate, \
2019 ssl3_renegotiate_check, \
0f113f3e
MC
2020 ssl3_read_bytes, \
2021 ssl3_write_bytes, \
2022 ssl3_dispatch_alert, \
2023 ssl3_ctrl, \
2024 ssl3_ctx_ctrl, \
2025 ssl3_get_cipher_by_char, \
2026 ssl3_put_cipher_by_char, \
2027 ssl3_pending, \
2028 ssl3_num_ciphers, \
2029 ssl3_get_cipher, \
0f113f3e
MC
2030 tls1_default_timeout, \
2031 &enc_data, \
2032 ssl_undefined_void_function, \
2033 ssl3_callback_ctrl, \
2034 ssl3_ctx_callback_ctrl, \
2035 }; \
2036 return &func_name##_data; \
2037 }
2038
ccae4a15 2039# define IMPLEMENT_ssl3_meth_func(func_name, s_accept, s_connect) \
4ebb342f 2040const SSL_METHOD *func_name(void) \
0f113f3e
MC
2041 { \
2042 static const SSL_METHOD func_name##_data= { \
2043 SSL3_VERSION, \
4fa52141
VD
2044 SSL_METHOD_NO_FIPS | SSL_METHOD_NO_SUITEB, \
2045 SSL_OP_NO_SSLv3, \
0f113f3e
MC
2046 ssl3_new, \
2047 ssl3_clear, \
2048 ssl3_free, \
2049 s_accept, \
2050 s_connect, \
2051 ssl3_read, \
2052 ssl3_peek, \
2053 ssl3_write, \
2054 ssl3_shutdown, \
2055 ssl3_renegotiate, \
2056 ssl3_renegotiate_check, \
0f113f3e
MC
2057 ssl3_read_bytes, \
2058 ssl3_write_bytes, \
2059 ssl3_dispatch_alert, \
2060 ssl3_ctrl, \
2061 ssl3_ctx_ctrl, \
2062 ssl3_get_cipher_by_char, \
2063 ssl3_put_cipher_by_char, \
2064 ssl3_pending, \
2065 ssl3_num_ciphers, \
2066 ssl3_get_cipher, \
0f113f3e
MC
2067 ssl3_default_timeout, \
2068 &SSLv3_enc_data, \
2069 ssl_undefined_void_function, \
2070 ssl3_callback_ctrl, \
2071 ssl3_ctx_callback_ctrl, \
2072 }; \
2073 return &func_name##_data; \
2074 }
2075
4fa52141 2076# define IMPLEMENT_dtls1_meth_func(version, flags, mask, func_name, s_accept, \
ccae4a15 2077 s_connect, enc_data) \
4ebb342f 2078const SSL_METHOD *func_name(void) \
0f113f3e
MC
2079 { \
2080 static const SSL_METHOD func_name##_data= { \
2081 version, \
4fa52141
VD
2082 flags, \
2083 mask, \
0f113f3e
MC
2084 dtls1_new, \
2085 dtls1_clear, \
2086 dtls1_free, \
2087 s_accept, \
2088 s_connect, \
2089 ssl3_read, \
2090 ssl3_peek, \
2091 ssl3_write, \
2092 dtls1_shutdown, \
2093 ssl3_renegotiate, \
2094 ssl3_renegotiate_check, \
0f113f3e
MC
2095 dtls1_read_bytes, \
2096 dtls1_write_app_data_bytes, \
2097 dtls1_dispatch_alert, \
2098 dtls1_ctrl, \
2099 ssl3_ctx_ctrl, \
2100 ssl3_get_cipher_by_char, \
2101 ssl3_put_cipher_by_char, \
2102 ssl3_pending, \
2103 ssl3_num_ciphers, \
ca3895f0 2104 ssl3_get_cipher, \
0f113f3e
MC
2105 dtls1_default_timeout, \
2106 &enc_data, \
2107 ssl_undefined_void_function, \
2108 ssl3_callback_ctrl, \
2109 ssl3_ctx_callback_ctrl, \
2110 }; \
2111 return &func_name##_data; \
2112 }
2113
2114struct openssl_ssl_test_functions {
46417569 2115 int (*p_ssl_init_wbio_buffer) (SSL *s);
0f113f3e 2116 int (*p_ssl3_setup_buffers) (SSL *s);
0f113f3e
MC
2117};
2118
3eb2aff4 2119const char *ssl_protocol_to_string(int version);
7d650072 2120
4020c0b3
DSH
2121/* Returns true if certificate and private key for 'idx' are present */
2122static ossl_inline int ssl_has_cert(const SSL *s, int idx)
2123{
2124 if (idx < 0 || idx >= SSL_PKEY_NUM)
2125 return 0;
2126 return s->cert->pkeys[idx].x509 != NULL
2127 && s->cert->pkeys[idx].privatekey != NULL;
2128}
2129
ff6d20a6
DSH
2130static ossl_inline void tls1_get_peer_groups(SSL *s, const uint16_t **pgroups,
2131 size_t *pgroupslen)
2132{
2133 *pgroups = s->session->ext.supportedgroups;
2134 *pgroupslen = s->session->ext.supportedgroups_len;
2135}
2136
0f113f3e 2137# ifndef OPENSSL_UNIT_TEST
e0fc7961 2138
4ee7d3f9
KR
2139__owur int ssl_read_internal(SSL *s, void *buf, size_t num, size_t *readbytes);
2140__owur int ssl_write_internal(SSL *s, const void *buf, size_t num, size_t *written);
d02b48c6
RE
2141void ssl_clear_cipher_ctx(SSL *s);
2142int ssl_clear_bad_session(SSL *s);
4bcdb4a6
MC
2143__owur CERT *ssl_cert_new(void);
2144__owur CERT *ssl_cert_dup(CERT *cert);
a5ee80b9 2145void ssl_cert_clear_certs(CERT *c);
d02b48c6 2146void ssl_cert_free(CERT *c);
a84e5c9a 2147__owur int ssl_generate_session_id(SSL *s, SSL_SESSION *ss);
4bcdb4a6 2148__owur int ssl_get_new_session(SSL *s, int session);
f63a17d6 2149__owur int ssl_get_prev_session(SSL *s, CLIENTHELLO_MSG *hello);
98ece4ee 2150__owur SSL_SESSION *ssl_session_dup(SSL_SESSION *src, int ticket);
4bcdb4a6 2151__owur int ssl_cipher_id_cmp(const SSL_CIPHER *a, const SSL_CIPHER *b);
0f113f3e 2152DECLARE_OBJ_BSEARCH_GLOBAL_CMP_FN(SSL_CIPHER, SSL_CIPHER, ssl_cipher_id);
4bcdb4a6 2153__owur int ssl_cipher_ptr_id_cmp(const SSL_CIPHER *const *ap,
a230b26e 2154 const SSL_CIPHER *const *bp);
4bcdb4a6 2155__owur STACK_OF(SSL_CIPHER) *ssl_create_cipher_list(const SSL_METHOD *meth,
a230b26e
EK
2156 STACK_OF(SSL_CIPHER) **pref,
2157 STACK_OF(SSL_CIPHER)
2158 **sorted,
2159 const char *rule_str,
2160 CERT *c);
f63a17d6 2161__owur int ssl_cache_cipherlist(SSL *s, PACKET *cipher_suites, int sslv2format);
90134d98
BK
2162__owur int bytes_to_cipher_list(SSL *s, PACKET *cipher_suites,
2163 STACK_OF(SSL_CIPHER) **skp,
2164 STACK_OF(SSL_CIPHER) **scsvs, int sslv2format,
f63a17d6 2165 int fatal);
d02b48c6 2166void ssl_update_cache(SSL *s, int mode);
4bcdb4a6 2167__owur int ssl_cipher_get_evp(const SSL_SESSION *s, const EVP_CIPHER **enc,
a230b26e 2168 const EVP_MD **md, int *mac_pkey_type,
8c1a5343 2169 size_t *mac_secret_size, SSL_COMP **comp,
a230b26e 2170 int use_etm);
045bd047
DW
2171__owur int ssl_cipher_get_overhead(const SSL_CIPHER *c, size_t *mac_overhead,
2172 size_t *int_overhead, size_t *blocksize,
2173 size_t *ext_overhead);
c04cd728 2174__owur int ssl_cert_is_disabled(size_t idx);
a230b26e 2175__owur const SSL_CIPHER *ssl_get_cipher_by_char(SSL *ssl,
60d685d1
BK
2176 const unsigned char *ptr,
2177 int all);
4bcdb4a6
MC
2178__owur int ssl_cert_set0_chain(SSL *s, SSL_CTX *ctx, STACK_OF(X509) *chain);
2179__owur int ssl_cert_set1_chain(SSL *s, SSL_CTX *ctx, STACK_OF(X509) *chain);
2180__owur int ssl_cert_add0_chain_cert(SSL *s, SSL_CTX *ctx, X509 *x);
2181__owur int ssl_cert_add1_chain_cert(SSL *s, SSL_CTX *ctx, X509 *x);
2182__owur int ssl_cert_select_current(CERT *c, X509 *x);
2183__owur int ssl_cert_set_current(CERT *c, long arg);
a230b26e 2184void ssl_cert_set_cert_cb(CERT *c, int (*cb) (SSL *ssl, void *arg), void *arg);
f71c6e52 2185
4bcdb4a6 2186__owur int ssl_verify_cert_chain(SSL *s, STACK_OF(X509) *sk);
4bcdb4a6 2187__owur int ssl_build_cert_chain(SSL *s, SSL_CTX *ctx, int flags);
a230b26e
EK
2188__owur int ssl_cert_set_cert_store(CERT *c, X509_STORE *store, int chain,
2189 int ref);
b362ccab 2190
ae3947de 2191__owur int ssl_randbytes(SSL *s, unsigned char *buf, size_t num);
e4646a89 2192__owur int ssl_security(const SSL *s, int op, int bits, int nid, void *other);
a230b26e
EK
2193__owur int ssl_ctx_security(const SSL_CTX *ctx, int op, int bits, int nid,
2194 void *other);
b362ccab 2195
c04cd728
DSH
2196__owur const SSL_CERT_LOOKUP *ssl_cert_lookup_by_pkey(const EVP_PKEY *pk,
2197 size_t *pidx);
2198__owur const SSL_CERT_LOOKUP *ssl_cert_lookup_by_idx(size_t idx);
2199
d02b48c6 2200int ssl_undefined_function(SSL *s);
4bcdb4a6
MC
2201__owur int ssl_undefined_void_function(void);
2202__owur int ssl_undefined_const_function(const SSL *s);
a230b26e
EK
2203__owur int ssl_get_server_cert_serverinfo(SSL *s,
2204 const unsigned char **serverinfo,
2205 size_t *serverinfo_length);
2cf28d61 2206void ssl_set_masks(SSL *s);
4bcdb4a6
MC
2207__owur STACK_OF(SSL_CIPHER) *ssl_get_ciphers_by_id(SSL *s);
2208__owur int ssl_verify_alarm_type(long type);
748f2546 2209void ssl_sort_cipher_list(void);
380a522f 2210int ssl_load_ciphers(void);
a230b26e 2211__owur int ssl_fill_hello_random(SSL *s, int server, unsigned char *field,
f7f2a01d 2212 size_t len, DOWNGRADE dgrd);
57b272b0
DSH
2213__owur int ssl_generate_master_secret(SSL *s, unsigned char *pms, size_t pmslen,
2214 int free_pms);
0a699a07 2215__owur EVP_PKEY *ssl_generate_pkey(EVP_PKEY *pm);
0f1e51ea
MC
2216__owur int ssl_derive(SSL *s, EVP_PKEY *privkey, EVP_PKEY *pubkey,
2217 int genmaster);
6c4e6670 2218__owur EVP_PKEY *ssl_dh_to_pkey(DH *dh);
cf72c757
F
2219__owur unsigned int ssl_get_max_send_fragment(const SSL *ssl);
2220__owur unsigned int ssl_get_split_send_fragment(const SSL *ssl);
d02b48c6 2221
ec15acb6 2222__owur const SSL_CIPHER *ssl3_get_cipher_by_id(uint32_t id);
bbb4ceb8 2223__owur const SSL_CIPHER *ssl3_get_cipher_by_std_name(const char *stdname);
4bcdb4a6 2224__owur const SSL_CIPHER *ssl3_get_cipher_by_char(const unsigned char *p);
ae2f7b37 2225__owur int ssl3_put_cipher_by_char(const SSL_CIPHER *c, WPACKET *pkt,
2c7b4dbc 2226 size_t *len);
2c4a056f 2227int ssl3_init_finished_mac(SSL *s);
4bcdb4a6 2228__owur int ssl3_setup_key_block(SSL *s);
4bcdb4a6 2229__owur int ssl3_change_cipher_state(SSL *s, int which);
d02b48c6 2230void ssl3_cleanup_key_block(SSL *s);
4bcdb4a6 2231__owur int ssl3_do_write(SSL *s, int type);
0f113f3e 2232int ssl3_send_alert(SSL *s, int level, int desc);
4bcdb4a6 2233__owur int ssl3_generate_master_secret(SSL *s, unsigned char *out,
8c1a5343
MC
2234 unsigned char *p, size_t len,
2235 size_t *secret_size);
28ff8ef3 2236__owur int ssl3_get_req_cert_type(SSL *s, WPACKET *pkt);
4bcdb4a6
MC
2237__owur int ssl3_num_ciphers(void);
2238__owur const SSL_CIPHER *ssl3_get_cipher(unsigned int u);
0f113f3e 2239int ssl3_renegotiate(SSL *ssl);
c7f47786 2240int ssl3_renegotiate_check(SSL *ssl, int initok);
4bcdb4a6 2241__owur int ssl3_dispatch_alert(SSL *s);
6db6bc5a 2242__owur size_t ssl3_final_finish_mac(SSL *s, const char *sender, size_t slen,
12472b45 2243 unsigned char *p);
7ee8627f 2244__owur int ssl3_finish_mac(SSL *s, const unsigned char *buf, size_t len);
81025661 2245void ssl3_free_digest_list(SSL *s);
7cea05dc 2246__owur unsigned long ssl3_output_cert_chain(SSL *s, WPACKET *pkt,
f63a17d6 2247 CERT_PKEY *cpk);
4a640fb6
DSH
2248__owur const SSL_CIPHER *ssl3_choose_cipher(SSL *ssl,
2249 STACK_OF(SSL_CIPHER) *clnt,
2250 STACK_OF(SSL_CIPHER) *srvr);
124037fd 2251__owur int ssl3_digest_cached_records(SSL *s, int keep);
4bcdb4a6 2252__owur int ssl3_new(SSL *s);
0f113f3e 2253void ssl3_free(SSL *s);
54105ddd
MC
2254__owur int ssl3_read(SSL *s, void *buf, size_t len, size_t *readbytes);
2255__owur int ssl3_peek(SSL *s, void *buf, size_t len, size_t *readbytes);
7ee8627f 2256__owur int ssl3_write(SSL *s, const void *buf, size_t len, size_t *written);
4bcdb4a6 2257__owur int ssl3_shutdown(SSL *s);
b77f3ed1 2258int ssl3_clear(SSL *s);
4bcdb4a6
MC
2259__owur long ssl3_ctrl(SSL *s, int cmd, long larg, void *parg);
2260__owur long ssl3_ctx_ctrl(SSL_CTX *s, int cmd, long larg, void *parg);
2261__owur long ssl3_callback_ctrl(SSL *s, int cmd, void (*fp) (void));
2262__owur long ssl3_ctx_callback_ctrl(SSL_CTX *s, int cmd, void (*fp) (void));
d02b48c6 2263
4bcdb4a6
MC
2264__owur int ssl3_do_change_cipher_spec(SSL *ssl);
2265__owur long ssl3_default_timeout(void);
f3b656b2 2266
a29fa98c 2267__owur int ssl3_set_handshake_header(SSL *s, WPACKET *pkt, int htype);
4a01c59f 2268__owur int tls_close_construct_packet(SSL *s, WPACKET *pkt, int htype);
c7f47786 2269__owur int tls_setup_handshake(SSL *s);
a29fa98c 2270__owur int dtls1_set_handshake_header(SSL *s, WPACKET *pkt, int htype);
4a01c59f 2271__owur int dtls1_close_construct_packet(SSL *s, WPACKET *pkt, int htype);
4bcdb4a6
MC
2272__owur int ssl3_handshake_write(SSL *s);
2273
4bcdb4a6
MC
2274__owur int ssl_allow_compression(SSL *s);
2275
ccae4a15
FI
2276__owur int ssl_version_supported(const SSL *s, int version);
2277
4fa52141
VD
2278__owur int ssl_set_client_hello_version(SSL *s);
2279__owur int ssl_check_version_downgrade(SSL *s);
2280__owur int ssl_set_version_bound(int method_version, int version, int *bound);
f7f2a01d
MC
2281__owur int ssl_choose_server_version(SSL *s, CLIENTHELLO_MSG *hello,
2282 DOWNGRADE *dgrd);
88050dd1
MC
2283__owur int ssl_choose_client_version(SSL *s, int version,
2284 RAW_EXTENSION *extensions);
38a73150 2285int ssl_get_min_max_version(const SSL *s, int *min_version, int *max_version);
4fa52141 2286
4bcdb4a6
MC
2287__owur long tls1_default_timeout(void);
2288__owur int dtls1_do_write(SSL *s, int type);
4bcdb4a6 2289void dtls1_set_message_header(SSL *s,
a773b52a 2290 unsigned char mt,
d736bc1a
MC
2291 size_t len,
2292 size_t frag_off, size_t frag_len);
4bcdb4a6 2293
7ee8627f
MC
2294int dtls1_write_app_data_bytes(SSL *s, int type, const void *buf_, size_t len,
2295 size_t *written);
4bcdb4a6 2296
4bcdb4a6
MC
2297__owur int dtls1_read_failed(SSL *s, int code);
2298__owur int dtls1_buffer_message(SSL *s, int ccs);
a773b52a 2299__owur int dtls1_retransmit_message(SSL *s, unsigned short seq, int *found);
4bcdb4a6 2300__owur int dtls1_get_queue_priority(unsigned short seq, int is_ccs);
17dd65e6 2301int dtls1_retransmit_buffered_messages(SSL *s);
f5c7f5df
MC
2302void dtls1_clear_received_buffer(SSL *s);
2303void dtls1_clear_sent_buffer(SSL *s);
0f113f3e
MC
2304void dtls1_get_message_header(unsigned char *data,
2305 struct hm_header_st *msg_hdr);
4bcdb4a6
MC
2306__owur long dtls1_default_timeout(void);
2307__owur struct timeval *dtls1_get_timeout(SSL *s, struct timeval *timeleft);
2308__owur int dtls1_check_timeout_num(SSL *s);
2309__owur int dtls1_handle_timeout(SSL *s);
9289f21b
DSH
2310void dtls1_start_timer(SSL *s);
2311void dtls1_stop_timer(SSL *s);
4bcdb4a6 2312__owur int dtls1_is_timer_expired(SSL *s);
9289f21b 2313void dtls1_double_timeout(SSL *s);
c536b6be 2314__owur int dtls_raw_hello_verify_request(WPACKET *pkt, unsigned char *cookie,
cb150cbc 2315 size_t cookie_len);
7ee8627f 2316__owur size_t dtls1_min_mtu(SSL *s);
8a35dbb6 2317void dtls1_hm_fragment_free(hm_fragment *frag);
8ba708e5 2318__owur int dtls1_query_mtu(SSL *s);
480506bd 2319
4bcdb4a6 2320__owur int tls1_new(SSL *s);
58964a49 2321void tls1_free(SSL *s);
b77f3ed1 2322int tls1_clear(SSL *s);
58964a49 2323
4bcdb4a6 2324__owur int dtls1_new(SSL *s);
36d16f8e 2325void dtls1_free(SSL *s);
b77f3ed1 2326int dtls1_clear(SSL *s);
0f113f3e 2327long dtls1_ctrl(SSL *s, int cmd, long larg, void *parg);
4bcdb4a6 2328__owur int dtls1_shutdown(SSL *s);
36d16f8e 2329
4bcdb4a6 2330__owur int dtls1_dispatch_alert(SSL *s);
36d16f8e 2331
46417569 2332__owur int ssl_init_wbio_buffer(SSL *s);
b77f3ed1 2333int ssl_free_wbio_buffer(SSL *s);
58964a49 2334
4bcdb4a6
MC
2335__owur int tls1_change_cipher_state(SSL *s, int which);
2336__owur int tls1_setup_key_block(SSL *s);
6db6bc5a 2337__owur size_t tls1_final_finish_mac(SSL *s, const char *str, size_t slen,
12472b45 2338 unsigned char *p);
4bcdb4a6 2339__owur int tls1_generate_master_secret(SSL *s, unsigned char *out,
8c1a5343
MC
2340 unsigned char *p, size_t len,
2341 size_t *secret_size);
92760c21
MC
2342__owur int tls13_setup_key_block(SSL *s);
2343__owur size_t tls13_final_finish_mac(SSL *s, const char *str, size_t slen,
2344 unsigned char *p);
0d9824c1 2345__owur int tls13_change_cipher_state(SSL *s, int which);
c2fd15f6 2346__owur int tls13_update_key(SSL *s, int send);
ec15acb6
MC
2347__owur int tls13_hkdf_expand(SSL *s, const EVP_MD *md,
2348 const unsigned char *secret,
ace081c1 2349 const unsigned char *label, size_t labellen,
a19ae67d 2350 const unsigned char *data, size_t datalen,
ace081c1 2351 unsigned char *out, size_t outlen);
d49e23ec
MC
2352__owur int tls13_derive_key(SSL *s, const EVP_MD *md,
2353 const unsigned char *secret, unsigned char *key,
2354 size_t keylen);
2355__owur int tls13_derive_iv(SSL *s, const EVP_MD *md,
2356 const unsigned char *secret, unsigned char *iv,
2357 size_t ivlen);
ec15acb6
MC
2358__owur int tls13_derive_finishedkey(SSL *s, const EVP_MD *md,
2359 const unsigned char *secret,
2360 unsigned char *fin, size_t finlen);
2361int tls13_generate_secret(SSL *s, const EVP_MD *md,
2362 const unsigned char *prevsecret,
2363 const unsigned char *insecret,
2364 size_t insecretlen,
2365 unsigned char *outsecret);
34574f19
MC
2366__owur int tls13_generate_handshake_secret(SSL *s,
2367 const unsigned char *insecret,
2368 size_t insecretlen);
2369__owur int tls13_generate_master_secret(SSL *s, unsigned char *out,
2370 unsigned char *prev, size_t prevlen,
2371 size_t *secret_size);
4bcdb4a6 2372__owur int tls1_export_keying_material(SSL *s, unsigned char *out, size_t olen,
a230b26e
EK
2373 const char *label, size_t llen,
2374 const unsigned char *p, size_t plen,
2375 int use_context);
0ca8d1ec
MC
2376__owur int tls13_export_keying_material(SSL *s, unsigned char *out, size_t olen,
2377 const char *label, size_t llen,
2378 const unsigned char *context,
2379 size_t contextlen, int use_context);
4bcdb4a6 2380__owur int tls1_alert_code(int code);
04904312 2381__owur int tls13_alert_code(int code);
4bcdb4a6 2382__owur int ssl3_alert_code(int code);
58964a49 2383
10bf4fc2 2384# ifndef OPENSSL_NO_EC
4bcdb4a6 2385__owur int ssl_check_srvr_ecc_cert_and_alg(X509 *x, SSL *s);
0f113f3e 2386# endif
41fdcfa7 2387
f73e07cf 2388SSL_COMP *ssl3_comp_find(STACK_OF(SSL_COMP) *sk, int n);
413c4f45 2389
0f113f3e 2390# ifndef OPENSSL_NO_EC
0dd7ba24 2391
43b95d73 2392__owur const TLS_GROUP_INFO *tls1_group_id_lookup(uint16_t curve_id);
6447e818 2393__owur int tls1_check_group_id(SSL *s, uint16_t group_id);
8841154a 2394__owur uint16_t tls1_shared_group(SSL *s, int nmatch);
9e84a42d 2395__owur int tls1_set_groups(uint16_t **pext, size_t *pextlen,
a230b26e 2396 int *curves, size_t ncurves);
9e84a42d 2397__owur int tls1_set_groups_list(uint16_t **pext, size_t *pextlen,
a230b26e 2398 const char *str);
7da160b0
MC
2399void tls1_get_formatlist(SSL *s, const unsigned char **pformats,
2400 size_t *num_formats);
4bcdb4a6 2401__owur int tls1_check_ec_tmp_key(SSL *s, unsigned long id);
f63a17d6 2402__owur EVP_PKEY *ssl_generate_pkey_group(SSL *s, uint16_t id);
612f9d22 2403__owur EVP_PKEY *ssl_generate_param_group(uint16_t id);
0f113f3e 2404# endif /* OPENSSL_NO_EC */
33273721 2405
9e84a42d 2406__owur int tls_curve_allowed(SSL *s, uint16_t curve, int op);
ff6d20a6
DSH
2407void tls1_get_supported_groups(SSL *s, const uint16_t **pgroups,
2408 size_t *pgroupslen);
6b473aca 2409
4bcdb4a6 2410__owur int tls1_set_server_sigalgs(SSL *s);
ddf6ec00
MC
2411
2412/* Return codes for tls_get_ticket_from_client() and tls_decrypt_ticket() */
2413typedef enum ticket_en {
40f805ad 2414 /* fatal error, malloc failure */
ddf6ec00 2415 TICKET_FATAL_ERR_MALLOC,
40f805ad 2416 /* fatal error, either from parsing or decrypting the ticket */
ddf6ec00 2417 TICKET_FATAL_ERR_OTHER,
40f805ad 2418 /* No ticket present */
ddf6ec00 2419 TICKET_NONE,
40f805ad 2420 /* Empty ticket present */
ddf6ec00 2421 TICKET_EMPTY,
40f805ad 2422 /* the ticket couldn't be decrypted */
ddf6ec00 2423 TICKET_NO_DECRYPT,
40f805ad 2424 /* a ticket was successfully decrypted */
ddf6ec00 2425 TICKET_SUCCESS,
44e69951 2426 /* same as above but the ticket needs to be renewed */
ddf6ec00
MC
2427 TICKET_SUCCESS_RENEW
2428} TICKET_RETURN;
2429
2430__owur TICKET_RETURN tls_get_ticket_from_client(SSL *s, CLIENTHELLO_MSG *hello,
2431 SSL_SESSION **ret);
2432__owur TICKET_RETURN tls_decrypt_ticket(SSL *s, const unsigned char *etick,
2433 size_t eticklen,
2434 const unsigned char *sess_id,
2435 size_t sesslen, SSL_SESSION **psess);
1053a6e2 2436
7da160b0 2437__owur int tls_use_ticket(SSL *s);
a2f9200f 2438
90d9e49a 2439void ssl_set_sig_mask(uint32_t *pmask_a, SSL *s, int op);
a2f9200f 2440
4bcdb4a6 2441__owur int tls1_set_sigalgs_list(CERT *c, const char *str, int client);
a230b26e
EK
2442__owur int tls1_set_sigalgs(CERT *c, const int *salg, size_t salglen,
2443 int client);
17dd65e6 2444int tls1_check_chain(SSL *s, X509 *x, EVP_PKEY *pk, STACK_OF(X509) *chain,
0f113f3e 2445 int idx);
d61ff83b 2446void tls1_set_cert_validity(SSL *s);
0f229cce 2447
a230b26e 2448# ifndef OPENSSL_NO_CT
4d482ee2 2449__owur int ssl_validate_ct(SSL *s);
a230b26e 2450# endif
ed29e82a 2451
0f113f3e 2452# ifndef OPENSSL_NO_DH
4bcdb4a6 2453__owur DH *ssl_get_auto_dh(SSL *s);
0f113f3e 2454# endif
b362ccab 2455
4bcdb4a6 2456__owur int ssl_security_cert(SSL *s, SSL_CTX *ctx, X509 *x, int vfy, int is_ee);
a230b26e
EK
2457__owur int ssl_security_cert_chain(SSL *s, STACK_OF(X509) *sk, X509 *ex,
2458 int vfy);
b362ccab 2459
f63a17d6 2460int tls_choose_sigalg(SSL *s, int fatalerrs);
93a77f9e 2461
4bcdb4a6 2462__owur EVP_MD_CTX *ssl_replace_hash(EVP_MD_CTX **hash, const EVP_MD *md);
b948e2c5 2463void ssl_clear_hash_ctx(EVP_MD_CTX **hash);
4bcdb4a6 2464__owur long ssl_get_algorithm2(SSL *s);
ae2f7b37 2465__owur int tls12_copy_sigalgs(SSL *s, WPACKET *pkt,
98c792d1 2466 const uint16_t *psig, size_t psiglen);
9e84a42d 2467__owur int tls1_save_u16(PACKET *pkt, uint16_t **pdest, size_t *pdestlen);
703bcee0 2468__owur int tls1_save_sigalgs(SSL *s, PACKET *pkt);
4bcdb4a6 2469__owur int tls1_process_sigalgs(SSL *s);
0972bc5c 2470__owur int tls1_set_peer_legacy_sigalg(SSL *s, const EVP_PKEY *pkey);
168067b6 2471__owur int tls1_lookup_md(const SIGALG_LOOKUP *lu, const EVP_MD **pmd);
98c792d1 2472__owur size_t tls12_get_psigalgs(SSL *s, int sent, const uint16_t **psigs);
f742cda8 2473__owur int tls12_check_peer_sigalg(SSL *s, uint16_t, EVP_PKEY *pkey);
b7bfe69b 2474void ssl_set_client_disabled(SSL *s);
8af91fd9 2475__owur int ssl_cipher_disabled(SSL *s, const SSL_CIPHER *c, int op, int echde);
1c78c43b 2476
8c1a5343
MC
2477__owur int ssl_handshake_hash(SSL *s, unsigned char *out, size_t outlen,
2478 size_t *hashlen);
152fbc28 2479__owur const EVP_MD *ssl_md(int idx);
28ba2541
DSH
2480__owur const EVP_MD *ssl_handshake_md(SSL *s);
2481__owur const EVP_MD *ssl_prf_md(SSL *s);
48fbcbac 2482
2faa1b48
CB
2483/*
2484 * ssl_log_rsa_client_key_exchange logs |premaster| to the SSL_CTX associated
2485 * with |ssl|, if logging is enabled. It returns one on success and zero on
2486 * failure. The entry is identified by the first 8 bytes of
2487 * |encrypted_premaster|.
2488 */
2489__owur int ssl_log_rsa_client_key_exchange(SSL *ssl,
2490 const uint8_t *encrypted_premaster,
2491 size_t encrypted_premaster_len,
2492 const uint8_t *premaster,
2493 size_t premaster_len);
2494
2c7bd692
CB
2495/*
2496 * ssl_log_secret logs |secret| to the SSL_CTX associated with |ssl|, if
2497 * logging is available. It returns one on success and zero on failure. It tags
2498 * the entry with |label|.
2faa1b48 2499 */
2c7bd692
CB
2500__owur int ssl_log_secret(SSL *ssl, const char *label,
2501 const uint8_t *secret, size_t secret_len);
2502
2503#define MASTER_SECRET_LABEL "CLIENT_RANDOM"
d49e23ec 2504#define CLIENT_EARLY_LABEL "CLIENT_EARLY_TRAFFIC_SECRET"
2c7bd692
CB
2505#define CLIENT_HANDSHAKE_LABEL "CLIENT_HANDSHAKE_TRAFFIC_SECRET"
2506#define SERVER_HANDSHAKE_LABEL "SERVER_HANDSHAKE_TRAFFIC_SECRET"
2507#define CLIENT_APPLICATION_LABEL "CLIENT_TRAFFIC_SECRET_0"
2508#define SERVER_APPLICATION_LABEL "SERVER_TRAFFIC_SECRET_0"
2faa1b48 2509
2acc020b 2510/* s3_cbc.c */
4bcdb4a6 2511__owur char ssl3_cbc_record_digest_supported(const EVP_MD_CTX *ctx);
5f3d93e4
MC
2512__owur int ssl3_cbc_digest_record(const EVP_MD_CTX *ctx,
2513 unsigned char *md_out,
2514 size_t *md_out_size,
2515 const unsigned char header[13],
2516 const unsigned char *data,
2517 size_t data_plus_mac_size,
2518 size_t data_plus_mac_plus_padding_size,
2519 const unsigned char *mac_secret,
d0e7c31d 2520 size_t mac_secret_length, char is_sslv3);
0f113f3e 2521
57b272b0
DSH
2522__owur int srp_generate_server_master_secret(SSL *s);
2523__owur int srp_generate_client_master_secret(SSL *s);
a2c2e000 2524__owur int srp_verify_server_param(SSL *s);
0989790b 2525
43ae5eed
MC
2526/* statem/extensions_cust.c */
2527
787d9ec7
MC
2528custom_ext_method *custom_ext_find(const custom_ext_methods *exts,
2529 ENDPOINT role, unsigned int ext_type,
2530 size_t *idx);
ecf4d660 2531
28ea0a0c
DSH
2532void custom_ext_init(custom_ext_methods *meths);
2533
43ae5eed 2534__owur int custom_ext_parse(SSL *s, unsigned int context, unsigned int ext_type,
a230b26e 2535 const unsigned char *ext_data, size_t ext_size,
f63a17d6 2536 X509 *x, size_t chainidx);
43ae5eed 2537__owur int custom_ext_add(SSL *s, int context, WPACKET *pkt, X509 *x,
f63a17d6 2538 size_t chainidx, int maxversion);
a230b26e
EK
2539
2540__owur int custom_exts_copy(custom_ext_methods *dst,
2541 const custom_ext_methods *src);
21181889
MC
2542__owur int custom_exts_copy_flags(custom_ext_methods *dst,
2543 const custom_ext_methods *src);
ecf4d660
DSH
2544void custom_exts_free(custom_ext_methods *exts);
2545
b3599dbb 2546void ssl_comp_free_compression_methods_int(void);
03b0e735 2547
4ee7d3f9 2548# else /* OPENSSL_UNIT_TEST */
e0fc7961 2549
0f113f3e
MC
2550# define ssl_init_wbio_buffer SSL_test_functions()->p_ssl_init_wbio_buffer
2551# define ssl3_setup_buffers SSL_test_functions()->p_ssl3_setup_buffers
c4e6fb15 2552
0f113f3e 2553# endif
e0fc7961 2554#endif