1 /* ssl/ssl.h */ 2 /* Copyright (C) 1995-1998 Eric Young (eay@cryptsoft.com) 3 * All rights reserved. 4 * 5 * This package is an SSL implementation written 6 * by Eric Young (eay@cryptsoft.com). 7 * The implementation was written so as to conform with Netscapes SSL. 8 * 9 * This library is free for commercial and non-commercial use as long as 10 * the following conditions are aheared to. The following conditions 11 * apply to all code found in this distribution, be it the RC4, RSA, 12 * lhash, DES, etc., code; not just the SSL code. The SSL documentation 13 * included with this distribution is covered by the same copyright terms 14 * except that the holder is Tim Hudson (tjh@cryptsoft.com). 15 * 16 * Copyright remains Eric Young's, and as such any Copyright notices in 17 * the code are not to be removed. 18 * If this package is used in a product, Eric Young should be given attribution 19 * as the author of the parts of the library used. 20 * This can be in the form of a textual message at program startup or 21 * in documentation (online or textual) provided with the package. 22 * 23 * Redistribution and use in source and binary forms, with or without 24 * modification, are permitted provided that the following conditions 25 * are met: 26 * 1. Redistributions of source code must retain the copyright 27 * notice, this list of conditions and the following disclaimer. 28 * 2. Redistributions in binary form must reproduce the above copyright 29 * notice, this list of conditions and the following disclaimer in the 30 * documentation and/or other materials provided with the distribution. 31 * 3. All advertising materials mentioning features or use of this software 32 * must display the following acknowledgement: 33 * "This product includes cryptographic software written by 34 * Eric Young (eay@cryptsoft.com)" 35 * The word 'cryptographic' can be left out if the rouines from the library 36 * being used are not cryptographic related :-). 37 * 4. If you include any Windows specific code (or a derivative thereof) from 38 * the apps directory (application code) you must include an acknowledgement: 39 * "This product includes software written by Tim Hudson (tjh@cryptsoft.com)" 40 * 41 * THIS SOFTWARE IS PROVIDED BY ERIC YOUNG ``AS IS'' AND 42 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 43 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 44 * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE 45 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 46 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 47 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 48 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 49 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 50 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 51 * SUCH DAMAGE. 52 * 53 * The licence and distribution terms for any publically available version or 54 * derivative of this code cannot be changed. i.e. this code cannot simply be 55 * copied and put under another distribution licence 56 * [including the GNU Public Licence.] 57 */ 58 /* ==================================================================== 59 * Copyright (c) 1998-2007 The OpenSSL Project. All rights reserved. 60 * 61 * Redistribution and use in source and binary forms, with or without 62 * modification, are permitted provided that the following conditions 63 * are met: 64 * 65 * 1. Redistributions of source code must retain the above copyright 66 * notice, this list of conditions and the following disclaimer. 67 * 68 * 2. Redistributions in binary form must reproduce the above copyright 69 * notice, this list of conditions and the following disclaimer in 70 * the documentation and/or other materials provided with the 71 * distribution. 72 * 73 * 3. All advertising materials mentioning features or use of this 74 * software must display the following acknowledgment: 75 * "This product includes software developed by the OpenSSL Project 76 * for use in the OpenSSL Toolkit. (http://www.openssl.org/)" 77 * 78 * 4. The names "OpenSSL Toolkit" and "OpenSSL Project" must not be used to 79 * endorse or promote products derived from this software without 80 * prior written permission. For written permission, please contact 81 * openssl-core@openssl.org. 82 * 83 * 5. Products derived from this software may not be called "OpenSSL" 84 * nor may "OpenSSL" appear in their names without prior written 85 * permission of the OpenSSL Project. 86 * 87 * 6. Redistributions of any form whatsoever must retain the following 88 * acknowledgment: 89 * "This product includes software developed by the OpenSSL Project 90 * for use in the OpenSSL Toolkit (http://www.openssl.org/)" 91 * 92 * THIS SOFTWARE IS PROVIDED BY THE OpenSSL PROJECT ``AS IS'' AND ANY 93 * EXPRESSED OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 94 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR 95 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE OpenSSL PROJECT OR 96 * ITS CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 97 * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT 98 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 99 * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 100 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, 101 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) 102 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED 103 * OF THE POSSIBILITY OF SUCH DAMAGE. 104 * ==================================================================== 105 * 106 * This product includes cryptographic software written by Eric Young 107 * (eay@cryptsoft.com). This product includes software written by Tim 108 * Hudson (tjh@cryptsoft.com). 109 * 110 */ 111 /* ==================================================================== 112 * Copyright 2002 Sun Microsystems, Inc. ALL RIGHTS RESERVED. 113 * ECC cipher suite support in OpenSSL originally developed by 114 * SUN MICROSYSTEMS, INC., and contributed to the OpenSSL project. 115 */ 116 /* ==================================================================== 117 * Copyright 2005 Nokia. All rights reserved. 118 * 119 * The portions of the attached software ("Contribution") is developed by 120 * Nokia Corporation and is licensed pursuant to the OpenSSL open source 121 * license. 122 * 123 * The Contribution, originally written by Mika Kousa and Pasi Eronen of 124 * Nokia Corporation, consists of the "PSK" (Pre-Shared Key) ciphersuites 125 * support (see RFC 4279) to OpenSSL. 126 * 127 * No patent licenses or other rights except those expressly stated in 128 * the OpenSSL open source license shall be deemed granted or received 129 * expressly, by implication, estoppel, or otherwise. 130 * 131 * No assurances are provided by Nokia that the Contribution does not 132 * infringe the patent or other intellectual property rights of any third 133 * party or that the license provides you with all the necessary rights 134 * to make use of the Contribution. 135 * 136 * THE SOFTWARE IS PROVIDED "AS IS" WITHOUT WARRANTY OF ANY KIND. IN 137 * ADDITION TO THE DISCLAIMERS INCLUDED IN THE LICENSE, NOKIA 138 * SPECIFICALLY DISCLAIMS ANY LIABILITY FOR CLAIMS BROUGHT BY YOU OR ANY 139 * OTHER ENTITY BASED ON INFRINGEMENT OF INTELLECTUAL PROPERTY RIGHTS OR 140 * OTHERWISE. 141 */ 142 143 module deimos.openssl.ssl; 144 145 import deimos.openssl._d_util; 146 import deimos.openssl.opensslv; 147 148 import deimos.openssl.x509_vfy; // Needed for x509_store_st. 149 import deimos.openssl.ssl2; // Needed for SSL2_TXT_NULL_WITH_MD5, etc. 150 import deimos.openssl.ssl3; // Needed for SSL3_TXT_KRB5_DES_64_CBC_SHA, etc. 151 version (OPENSSL_NO_KRB5) {} else { 152 import deimos.openssl.kssl; // Needed for KSSL_CTX. 153 } 154 155 // Declare cert_st used multiple times below. 156 struct cert_st; 157 158 public import deimos.openssl.e_os2; 159 160 version(OPENSSL_NO_COMP) {} else { 161 public import deimos.openssl.comp; 162 } 163 version(OPENSSL_NO_BIO) {} else { 164 public import deimos.openssl.bio; 165 } 166 version (OPENSSL_NO_DEPRECATED) {} else { 167 version(OPENSSL_NO_X509) {} else { 168 public import deimos.openssl.x509; 169 } 170 public import deimos.openssl.crypto; 171 public import deimos.openssl.buffer; 172 } 173 public import deimos.openssl.lhash; // Needed for DECLARE_LHASH_OF. 174 public import deimos.openssl.pem; 175 public import deimos.openssl.hmac; 176 177 public import deimos.openssl.kssl; 178 public import deimos.openssl.safestack; 179 public import deimos.openssl.symhacks; 180 181 extern (C): 182 nothrow: 183 184 /* SSLeay version number for ASN.1 encoding of the session information */ 185 /* Version 0 - initial version 186 * Version 1 - added the optional peer certificate 187 */ 188 enum SSL_SESSION_ASN1_VERSION = 0x0001; 189 190 /* text strings for the ciphers */ 191 alias SSL2_TXT_NULL_WITH_MD5 SSL_TXT_NULL_WITH_MD5; 192 alias SSL2_TXT_RC4_128_WITH_MD5 SSL_TXT_RC4_128_WITH_MD5; 193 alias SSL2_TXT_RC4_128_EXPORT40_WITH_MD5 SSL_TXT_RC4_128_EXPORT40_WITH_MD5; 194 alias SSL2_TXT_RC2_128_CBC_WITH_MD5 SSL_TXT_RC2_128_CBC_WITH_MD5; 195 alias SSL2_TXT_RC2_128_CBC_EXPORT40_WITH_MD5 SSL_TXT_RC2_128_CBC_EXPORT40_WITH_MD5; 196 alias SSL2_TXT_IDEA_128_CBC_WITH_MD5 SSL_TXT_IDEA_128_CBC_WITH_MD5; 197 alias SSL2_TXT_DES_64_CBC_WITH_MD5 SSL_TXT_DES_64_CBC_WITH_MD5; 198 alias SSL2_TXT_DES_64_CBC_WITH_SHA SSL_TXT_DES_64_CBC_WITH_SHA; 199 alias SSL2_TXT_DES_192_EDE3_CBC_WITH_MD5 SSL_TXT_DES_192_EDE3_CBC_WITH_MD5; 200 alias SSL2_TXT_DES_192_EDE3_CBC_WITH_SHA SSL_TXT_DES_192_EDE3_CBC_WITH_SHA; 201 202 /* VRS Additional Kerberos5 entries 203 */ 204 alias SSL3_TXT_KRB5_DES_64_CBC_SHA SSL_TXT_KRB5_DES_64_CBC_SHA; 205 alias SSL3_TXT_KRB5_DES_192_CBC3_SHA SSL_TXT_KRB5_DES_192_CBC3_SHA; 206 alias SSL3_TXT_KRB5_RC4_128_SHA SSL_TXT_KRB5_RC4_128_SHA; 207 alias SSL3_TXT_KRB5_IDEA_128_CBC_SHA SSL_TXT_KRB5_IDEA_128_CBC_SHA; 208 alias SSL3_TXT_KRB5_DES_64_CBC_MD5 SSL_TXT_KRB5_DES_64_CBC_MD5; 209 alias SSL3_TXT_KRB5_DES_192_CBC3_MD5 SSL_TXT_KRB5_DES_192_CBC3_MD5; 210 alias SSL3_TXT_KRB5_RC4_128_MD5 SSL_TXT_KRB5_RC4_128_MD5; 211 alias SSL3_TXT_KRB5_IDEA_128_CBC_MD5 SSL_TXT_KRB5_IDEA_128_CBC_MD5; 212 213 alias SSL3_TXT_KRB5_DES_40_CBC_SHA SSL_TXT_KRB5_DES_40_CBC_SHA; 214 alias SSL3_TXT_KRB5_RC2_40_CBC_SHA SSL_TXT_KRB5_RC2_40_CBC_SHA; 215 alias SSL3_TXT_KRB5_RC4_40_SHA SSL_TXT_KRB5_RC4_40_SHA; 216 alias SSL3_TXT_KRB5_DES_40_CBC_MD5 SSL_TXT_KRB5_DES_40_CBC_MD5; 217 alias SSL3_TXT_KRB5_RC2_40_CBC_MD5 SSL_TXT_KRB5_RC2_40_CBC_MD5; 218 alias SSL3_TXT_KRB5_RC4_40_MD5 SSL_TXT_KRB5_RC4_40_MD5; 219 220 // Oversight in the original headers: Already defined above. 221 // alias SSL3_TXT_KRB5_DES_40_CBC_SHA SSL_TXT_KRB5_DES_40_CBC_SHA; 222 // alias SSL3_TXT_KRB5_DES_40_CBC_MD5 SSL_TXT_KRB5_DES_40_CBC_MD5; 223 // alias SSL3_TXT_KRB5_DES_64_CBC_SHA SSL_TXT_KRB5_DES_64_CBC_SHA; 224 // alias SSL3_TXT_KRB5_DES_64_CBC_MD5 SSL_TXT_KRB5_DES_64_CBC_MD5; 225 // alias SSL3_TXT_KRB5_DES_192_CBC3_SHA SSL_TXT_KRB5_DES_192_CBC3_SHA; 226 // alias SSL3_TXT_KRB5_DES_192_CBC3_MD5 SSL_TXT_KRB5_DES_192_CBC3_MD5; 227 enum SSL_MAX_KRB5_PRINCIPAL_LENGTH = 256; 228 229 enum SSL_MAX_SSL_SESSION_ID_LENGTH = 32; 230 enum SSL_MAX_SID_CTX_LENGTH = 32; 231 232 enum SSL_MIN_RSA_MODULUS_LENGTH_IN_BYTES = (512/8); 233 enum SSL_MAX_KEY_ARG_LENGTH = 8; 234 enum SSL_MAX_MASTER_KEY_LENGTH = 48; 235 236 237 /* These are used to specify which ciphers to use and not to use */ 238 239 enum SSL_TXT_EXP40 = "EXPORT40"; 240 enum SSL_TXT_EXP56 = "EXPORT56"; 241 enum SSL_TXT_LOW = "LOW"; 242 enum SSL_TXT_MEDIUM = "MEDIUM"; 243 enum SSL_TXT_HIGH = "HIGH"; 244 enum SSL_TXT_FIPS = "FIPS"; 245 246 enum SSL_TXT_kFZA = "kFZA"; /* unused! */ 247 enum SSL_TXT_aFZA = "aFZA"; /* unused! */ 248 enum SSL_TXT_eFZA = "eFZA"; /* unused! */ 249 enum SSL_TXT_FZA = "FZA"; /* unused! */ 250 251 enum SSL_TXT_aNULL = "aNULL"; 252 enum SSL_TXT_eNULL = "eNULL"; 253 enum SSL_TXT_NULL = "NULL"; 254 255 enum SSL_TXT_kRSA = "kRSA"; 256 enum SSL_TXT_kDHr = "kDHr"; /* no such ciphersuites supported! */ 257 enum SSL_TXT_kDHd = "kDHd"; /* no such ciphersuites supported! */ 258 enum SSL_TXT_kDH = "kDH"; /* no such ciphersuites supported! */ 259 enum SSL_TXT_kEDH = "kEDH"; 260 enum SSL_TXT_kKRB5 = "kKRB5"; 261 enum SSL_TXT_kECDHr = "kECDHr"; 262 enum SSL_TXT_kECDHe = "kECDHe"; 263 enum SSL_TXT_kECDH = "kECDH"; 264 enum SSL_TXT_kEECDH = "kEECDH"; 265 enum SSL_TXT_kPSK = "kPSK"; 266 enum SSL_TXT_kGOST = "kGOST"; 267 enum SSL_TXT_kSRP = "kSRP"; 268 269 enum SSL_TXT_aRSA = "aRSA"; 270 enum SSL_TXT_aDSS = "aDSS"; 271 enum SSL_TXT_aDH = "aDH"; /* no such ciphersuites supported! */ 272 enum SSL_TXT_aECDH = "aECDH"; 273 enum SSL_TXT_aKRB5 = "aKRB5"; 274 enum SSL_TXT_aECDSA = "aECDSA"; 275 enum SSL_TXT_aPSK = "aPSK"; 276 enum SSL_TXT_aGOST94 = "aGOST94"; 277 enum SSL_TXT_aGOST01 = "aGOST01"; 278 enum SSL_TXT_aGOST = "aGOST"; 279 280 enum SSL_TXT_DSS = "DSS"; 281 enum SSL_TXT_DH = "DH"; 282 enum SSL_TXT_EDH = "EDH"; /* same as "kEDH:-ADH" */ 283 enum SSL_TXT_ADH = "ADH"; 284 enum SSL_TXT_RSA = "RSA"; 285 enum SSL_TXT_ECDH = "ECDH"; 286 enum SSL_TXT_EECDH = "EECDH"; /* same as "kEECDH:-AECDH" */ 287 enum SSL_TXT_AECDH = "AECDH"; 288 enum SSL_TXT_ECDSA = "ECDSA"; 289 enum SSL_TXT_KRB5 = "KRB5"; 290 enum SSL_TXT_PSK = "PSK"; 291 enum SSL_TXT_SRP = "SRP"; 292 293 enum SSL_TXT_DES = "DES"; 294 enum SSL_TXT_3DES = "3DES"; 295 enum SSL_TXT_RC4 = "RC4"; 296 enum SSL_TXT_RC2 = "RC2"; 297 enum SSL_TXT_IDEA = "IDEA"; 298 enum SSL_TXT_SEED = "SEED"; 299 enum SSL_TXT_AES128 = "AES128"; 300 enum SSL_TXT_AES256 = "AES256"; 301 enum SSL_TXT_AES = "AES"; 302 enum SSL_TXT_AES_GCM = "AESGCM"; 303 enum SSL_TXT_CAMELLIA128 = "CAMELLIA128"; 304 enum SSL_TXT_CAMELLIA256 = "CAMELLIA256"; 305 enum SSL_TXT_CAMELLIA = "CAMELLIA"; 306 307 enum SSL_TXT_MD5 = "MD5"; 308 enum SSL_TXT_SHA1 = "SHA1"; 309 enum SSL_TXT_SHA = "SHA"; /* same as "SHA1" */ 310 enum SSL_TXT_GOST94 = "GOST94"; 311 enum SSL_TXT_GOST89MAC = "GOST89MAC"; 312 enum SSL_TXT_SHA256 = "SHA256"; 313 enum SSL_TXT_SHA384 = "SHA384"; 314 315 enum SSL_TXT_SSLV2 = "SSLv2"; 316 enum SSL_TXT_SSLV3 = "SSLv3"; 317 enum SSL_TXT_TLSV1 = "TLSv1"; 318 enum SSL_TXT_TLSV1_1 = "TLSv1.1"; 319 enum SSL_TXT_TLSV1_2 = "TLSv1.2"; 320 321 enum SSL_TXT_EXP = "EXP"; 322 enum SSL_TXT_EXPORT = "EXPORT"; 323 324 enum SSL_TXT_ALL = "ALL"; 325 326 /* 327 * COMPLEMENTOF* definitions. These identifiers are used to (de-select) 328 * ciphers normally not being used. 329 * Example: "RC4" will activate all ciphers using RC4 including ciphers 330 * without authentication, which would normally disabled by DEFAULT (due 331 * the "!ADH" being part of default). Therefore "RC4:!COMPLEMENTOFDEFAULT" 332 * will make sure that it is also disabled in the specific selection. 333 * COMPLEMENTOF* identifiers are portable between version_, as adjustments 334 * to the default cipher setup will also be included here. 335 * 336 * COMPLEMENTOFDEFAULT does not experience the same special treatment that 337 * DEFAULT gets, as only selection is being done and no sorting as needed 338 * for DEFAULT. 339 */ 340 enum SSL_TXT_CMPALL = "COMPLEMENTOFALL"; 341 enum SSL_TXT_CMPDEF = "COMPLEMENTOFDEFAULT"; 342 343 /* The following cipher list is used by default. 344 * It also is substituted when an application-defined cipher list string 345 * starts with 'DEFAULT'. */ 346 enum SSL_DEFAULT_CIPHER_LIST = "ALL:!aNULL:!eNULL:!SSLv2"; 347 /* As of OpenSSL 1.0.0, ssl_create_cipher_list() in ssl/ssl_ciph.c always 348 * starts with a reasonable order, and all we have to do for DEFAULT is 349 * throwing out anonymous and unencrypted ciphersuites! 350 * (The latter are not actually enabled by ALL, but "ALL:RSA" would enable 351 * some of them.) 352 */ 353 354 /* Used in SSL_set_shutdown()/SSL_get_shutdown(); */ 355 enum SSL_SENT_SHUTDOWN = 1; 356 enum SSL_RECEIVED_SHUTDOWN = 2; 357 358 extern (C): 359 nothrow: 360 361 version (OPENSSL_NO_RSA) { version = OPENSSL_NO_SSL2; } 362 version (OPENSSL_NO_MD5) { version = OPENSSL_NO_SSL2; } 363 364 alias X509_FILETYPE_ASN1 SSL_FILETYPE_ASN1; 365 alias X509_FILETYPE_PEM SSL_FILETYPE_PEM; 366 367 /* This is needed to stop compilers complaining about the 368 * 'ssl_st* ' function parameters used to prototype callbacks 369 * in SSL_CTX. */ 370 alias ssl_st* ssl_crock_st; 371 import deimos.openssl.tls1; 372 alias tls_session_ticket_ext_st TLS_SESSION_TICKET_EXT; 373 alias ssl_method_st SSL_METHOD; 374 alias ssl_cipher_st SSL_CIPHER; 375 alias ssl_session_st SSL_SESSION; 376 377 /+mixin DECLARE_STACK_OF(SSL_CIPHER);+/ 378 379 /* SRTP protection profiles for use with the use_srtp extension (RFC 5764)*/ 380 struct srtp_protection_profile_st 381 { 382 const(char)* name; 383 c_ulong id; 384 } 385 alias srtp_protection_profile_st SRTP_PROTECTION_PROFILE; 386 387 /+mixin DECLARE_STACK_OF(SRTP_PROTECTION_PROFILE);+/ 388 389 alias ExternC!(int function(SSL* s, const(ubyte)* data, int len, void* arg)) tls_session_ticket_ext_cb_fn; 390 alias ExternC!(int function(SSL* s, void* secret, int* secret_len, STACK_OF!(SSL_CIPHER) *peer_ciphers, SSL_CIPHER** cipher, void* arg)) tls_session_secret_cb_fn; 391 392 393 version(OPENSSL_NO_SSL_INTERN) {} else { 394 395 /* used to hold info on the particular ciphers used */ 396 struct ssl_cipher_st { 397 int valid; 398 const(char)* name; /* text name */ 399 c_ulong id; /* id, 4 bytes, first is version */ 400 401 /* changed in 0.9.9: these four used to be portions of a single value 'algorithms' */ 402 c_ulong algorithm_mkey; /* key exchange algorithm */ 403 c_ulong algorithm_auth; /* server authentication */ 404 c_ulong algorithm_enc; /* symmetric encryption */ 405 c_ulong algorithm_mac; /* symmetric authentication */ 406 c_ulong algorithm_ssl; /* (major) protocol version */ 407 408 c_ulong algo_strength; /* strength and export flags */ 409 c_ulong algorithm2; /* Extra flags */ 410 int strength_bits; /* Number of bits really used */ 411 int alg_bits; /* Number of bits for algorithm */ 412 } 413 414 415 /* Used to hold functions for SSLv2 or SSLv3/TLSv1 functions */ 416 struct ssl_method_st { 417 int version_; 418 ExternC!(int function(SSL* s)) ssl_new; 419 ExternC!(void function(SSL* s)) ssl_clear; 420 ExternC!(void function(SSL* s)) ssl_free; 421 ExternC!(int function(SSL* s)) ssl_accept; 422 ExternC!(int function(SSL* s)) ssl_connect; 423 ExternC!(int function(SSL* s,void* buf,int len)) ssl_read; 424 ExternC!(int function(SSL* s,void* buf,int len)) ssl_peek; 425 ExternC!(int function(SSL* s,const(void)* buf,int len)) ssl_write; 426 ExternC!(int function(SSL* s)) ssl_shutdown; 427 ExternC!(int function(SSL* s)) ssl_renegotiate; 428 ExternC!(int function(SSL* s)) ssl_renegotiate_check; 429 ExternC!(c_long function(SSL* s, int st1, int stn, int mt, c_long 430 max, int* ok)) ssl_get_message; 431 ExternC!(int function(SSL* s, int type, ubyte* buf, int len, 432 int peek)) ssl_read_bytes; 433 ExternC!(int function(SSL* s, int type, const(void)* buf_, int len)) ssl_write_bytes; 434 ExternC!(int function(SSL* s)) ssl_dispatch_alert; 435 ExternC!(c_long function(SSL* s,int cmd,c_long larg,void* parg)) ssl_ctrl; 436 ExternC!(c_long function(SSL_CTX* ctx,int cmd,c_long larg,void* parg)) ssl_ctx_ctrl; 437 const ExternC!(SSL_CIPHER* function(const(ubyte)* ptr)) get_cipher_by_char; 438 ExternC!(int function(const(SSL_CIPHER)* cipher,ubyte* ptr)) put_cipher_by_char; 439 ExternC!(int function(const(SSL)* s)) ssl_pending; 440 ExternC!(int function()) num_ciphers; 441 const ExternC!(SSL_CIPHER* function(uint ncipher)) get_cipher; 442 const ExternC!(ssl_method_st* function(int version_)) get_ssl_method; 443 ExternC!(c_long function()) get_timeout; 444 struct ssl3_enc_method; 445 ssl3_enc_method* ssl3_enc; /* Extra SSLv3/TLS stuff */ 446 ExternC!(int function()) ssl_version; 447 ExternC!(c_long function(SSL* s, int cb_id, ExternC!(void function()) fp)) ssl_callback_ctrl; 448 ExternC!(c_long function(SSL_CTX* s, int cb_id, ExternC!(void function()) fp)) ssl_ctx_callback_ctrl; 449 } 450 451 /* Lets make this into an ASN.1 type structure as follows 452 * SSL_SESSION_ID ::= SEQUENCE { 453 * version INTEGER, -- structure version number 454 * SSLversion INTEGER, -- SSL version number 455 * Cipher OCTET STRING, -- the 3 byte cipher ID 456 * Session_ID OCTET STRING, -- the Session ID 457 * Master_key OCTET STRING, -- the master key 458 * KRB5_principal OCTET STRING -- optional Kerberos principal 459 * Key_Arg [ 0 ] IMPLICIT OCTET STRING, -- the optional Key argument 460 * Time [ 1 ] EXPLICIT INTEGER, -- optional Start Time 461 * Timeout [ 2 ] EXPLICIT INTEGER, -- optional Timeout ins seconds 462 * Peer [ 3 ] EXPLICIT X509, -- optional Peer Certificate 463 * Session_ID_context [ 4 ] EXPLICIT OCTET STRING, -- the Session ID context 464 * Verify_result [ 5 ] EXPLICIT INTEGER, -- X509_V_... code for `Peer' 465 * HostName [ 6 ] EXPLICIT OCTET STRING, -- optional HostName from servername TLS extension 466 * PSK_identity_hint [ 7 ] EXPLICIT OCTET STRING, -- optional PSK identity hint 467 * PSK_identity [ 8 ] EXPLICIT OCTET STRING, -- optional PSK identity 468 * Ticket_lifetime_hint [9] EXPLICIT INTEGER, -- server's lifetime hint for session ticket 469 * Ticket [10] EXPLICIT OCTET STRING, -- session ticket (clients only) 470 * Compression_meth [11] EXPLICIT OCTET STRING, -- optional compression method 471 * SRP_username [ 12 ] EXPLICIT OCTET STRING -- optional SRP username 472 * } 473 * Look in ssl/ssl_asn1.c for more details 474 * I'm using EXPLICIT tags so I can read the damn things using asn1parse :-). 475 */ 476 struct ssl_session_st 477 { 478 int ssl_version; /* what ssl version session info is 479 * being kept in here? */ 480 481 /* only really used in SSLv2 */ 482 uint key_arg_length; 483 ubyte[SSL_MAX_KEY_ARG_LENGTH] key_arg; 484 int master_key_length; 485 ubyte[SSL_MAX_MASTER_KEY_LENGTH] master_key; 486 /* session_id - valid? */ 487 uint session_id_length; 488 ubyte[SSL_MAX_SSL_SESSION_ID_LENGTH] session_id; 489 /* this is used to determine whether the session is being reused in 490 * the appropriate context. It is up to the application to set this, 491 * via SSL_new */ 492 uint sid_ctx_length; 493 ubyte[SSL_MAX_SID_CTX_LENGTH] sid_ctx; 494 495 version(OPENSSL_NO_KRB5) {} else { 496 uint krb5_client_princ_len; 497 ubyte[SSL_MAX_KRB5_PRINCIPAL_LENGTH] krb5_client_princ; 498 } /* OPENSSL_NO_KRB5 */ 499 version(OPENSSL_NO_PSK) {} else { 500 char* psk_identity_hint; 501 char* psk_identity; 502 } 503 /* Used to indicate that session resumption is not allowed. 504 * Applications can also set this bit for a new session via 505 * not_resumable_session_cb to disable session caching and tickets. */ 506 int not_resumable; 507 508 /* The cert is the certificate used to establish this connection */ 509 struct sess_cert_st; 510 sess_cert_st /* SESS_CERT */ *sess_cert; 511 512 /* This is the cert for the other end. 513 * On clients, it will be the same as sess_cert->peer_key->x509 514 * (the latter is not enough as sess_cert is not retained 515 * in the external representation of sessions, see ssl_asn1.c). */ 516 X509* peer; 517 /* when app_verify_callback accepts a session where the peer's certificate 518 * is not ok, we must remember the error for session reuse: */ 519 c_long verify_result; /* only for servers */ 520 521 int references; 522 c_long timeout; 523 c_long time; 524 525 uint compress_meth; /* Need to lookup the method */ 526 527 const(SSL_CIPHER)* cipher; 528 c_ulong cipher_id; /* when ASN.1 loaded, this 529 * needs to be used to load 530 * the 'cipher' structure */ 531 532 STACK_OF!(SSL_CIPHER) *ciphers; /* shared ciphers? */ 533 534 CRYPTO_EX_DATA ex_data; /* application specific data */ 535 536 /* These are used to make removal of session-ids more 537 * efficient and to implement a maximum cache size. */ 538 ssl_session_st* prev,next; 539 version (OPENSSL_NO_TLSEXT) {} else { 540 char* tlsext_hostname; 541 version(OPENSSL_NO_EC) {} else { 542 size_t tlsext_ecpointformatlist_length; 543 ubyte* tlsext_ecpointformatlist; /* peer's list */ 544 size_t tlsext_ellipticcurvelist_length; 545 ubyte* tlsext_ellipticcurvelist; /* peer's list */ 546 } /* OPENSSL_NO_EC */ 547 /* RFC4507 info */ 548 ubyte* tlsext_tick; /* Session ticket */ 549 size_t tlsext_ticklen; /* Session ticket length */ 550 c_long tlsext_tick_lifetime_hint; /* Session lifetime hint in seconds */ 551 } 552 version(OPENSSL_NO_SRP) {} else { 553 char *srp_username; 554 } 555 } 556 557 } // OPENSSL_NO_SSL_INTERN 558 559 enum SSL_OP_MICROSOFT_SESS_ID_BUG = 0x00000001; 560 enum SSL_OP_NETSCAPE_CHALLENGE_BUG = 0x00000002; 561 /* Allow initial connection to servers that don't support RI */ 562 enum SSL_OP_LEGACY_SERVER_CONNECT = 0x00000004; 563 enum SSL_OP_NETSCAPE_REUSE_CIPHER_CHANGE_BUG = 0x00000008; 564 enum SSL_OP_SSLREF2_REUSE_CERT_TYPE_BUG = 0x00000010; 565 enum SSL_OP_MICROSOFT_BIG_SSLV3_BUFFER = 0x00000020; 566 enum SSL_OP_SAFARI_ECDHE_ECDSA_BUG = 0x00000040; 567 enum SSL_OP_SSLEAY_080_CLIENT_DH_BUG = 0x00000080; 568 enum SSL_OP_TLS_D5_BUG = 0x00000100; 569 enum SSL_OP_TLS_BLOCK_PADDING_BUG = 0x00000200; 570 571 /* Hasn't done anything since OpenSSL 0.9.7h, retained for compatibility */ 572 enum SSL_OP_MSIE_SSLV2_RSA_PADDING = 0x0; 573 574 /* Disable SSL 3.0/TLS 1.0 CBC vulnerability workaround that was added 575 * in OpenSSL 0.9.6d. Usually (depending on the application protocol) 576 * the workaround is not needed. Unfortunately some broken SSL/TLS 577 * implementations cannot handle it at all, which is why we include 578 * it in SSL_OP_ALL. */ 579 enum SSL_OP_DONT_INSERT_EMPTY_FRAGMENTS = 0x00000800; /* added in 0.9.6e */ 580 581 /* SSL_OP_ALL: various bug workarounds that should be rather harmless. 582 * This used to be 0x000FFFFFL before 0.9.7. */ 583 enum SSL_OP_ALL = 0x80000BFFL; 584 585 /* DTLS options */ 586 enum SSL_OP_NO_QUERY_MTU = 0x00001000; 587 /* Turn on Cookie Exchange (on relevant for servers) */ 588 enum SSL_OP_COOKIE_EXCHANGE = 0x00002000; 589 /* Don't use RFC4507 ticket extension */ 590 enum SSL_OP_NO_TICKET = 0x00004000; 591 /* Use Cisco's "speshul" version of DTLS_BAD_VER (as client) */ 592 enum SSL_OP_CISCO_ANYCONNECT = 0x00008000; 593 594 /* As server, disallow session resumption on renegotiation */ 595 enum SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION = 0x00010000; 596 /* Don't use compression even if supported */ 597 enum SSL_OP_NO_COMPRESSION = 0x00020000; 598 /* Permit unsafe legacy renegotiation */ 599 enum SSL_OP_ALLOW_UNSAFE_LEGACY_RENEGOTIATION = 0x00040000; 600 /* If set, always create a new key when using tmp_ecdh parameters */ 601 enum SSL_OP_SINGLE_ECDH_USE = 0x00080000; 602 /* If set, always create a new key when using tmp_dh parameters */ 603 enum SSL_OP_SINGLE_DH_USE = 0x00100000; 604 /* Set to always use the tmp_rsa key when doing RSA operations, 605 * even when this violates protocol specs */ 606 enum SSL_OP_EPHEMERAL_RSA = 0x00200000; 607 /* Set on servers to choose the cipher according to the server's 608 * preferences */ 609 enum SSL_OP_CIPHER_SERVER_PREFERENCE = 0x00400000; 610 /* If set, a server will allow a client to issue a SSLv3.0 version number 611 * as latest version supported in the premaster secret, even when TLSv1.0 612 * (version 3.1) was announced in the client hello. Normally this is 613 * forbidden to prevent version rollback attacks. */ 614 enum SSL_OP_TLS_ROLLBACK_BUG = 0x00800000; 615 616 enum SSL_OP_NO_SSLv2 = 0x01000000; 617 enum SSL_OP_NO_SSLv3 = 0x02000000; 618 enum SSL_OP_NO_TLSv1 = 0x04000000; 619 enum SSL_OP_NO_TLSv1_2 = 0x08000000L; 620 enum SSL_OP_NO_TLSv1_1 = 0x10000000L; 621 622 /* These next two were never actually used for anything since SSLeay 623 * zap so we have some more flags. 624 */ 625 /* The next flag deliberately changes the ciphertest, this is a check 626 * for the PKCS#1 attack */ 627 enum SSL_OP_PKCS1_CHECK_1 = 0x0; 628 enum SSL_OP_PKCS1_CHECK_2 = 0x0; 629 630 enum SSL_OP_NETSCAPE_CA_DN_BUG = 0x20000000; 631 enum SSL_OP_NETSCAPE_DEMO_CIPHER_CHANGE_BUG = 0x40000000; 632 /* Make server add server-hello extension from early version of 633 * cryptopro draft, when GOST ciphersuite is negotiated. 634 * Required for interoperability with CryptoPro CSP 3.x 635 */ 636 enum SSL_OP_CRYPTOPRO_TLSEXT_BUG = 0x80000000; 637 638 /* Allow SSL_write(..., n) to return r with 0 < r < n (i.e. report success 639 * when just a single record has been written): */ 640 enum SSL_MODE_ENABLE_PARTIAL_WRITE = 0x00000001; 641 /* Make it possible to retry SSL_write() with changed buffer location 642 * (buffer contents must stay the same!); this is not the default to avoid 643 * the misconception that non-blocking SSL_write() behaves like 644 * non-blocking write(): */ 645 enum SSL_MODE_ACCEPT_MOVING_WRITE_BUFFER = 0x00000002; 646 /* Never bother the application with retries if the transport 647 * is blocking: */ 648 enum SSL_MODE_AUTO_RETRY = 0x00000004; 649 /* Don't attempt to automatically build certificate chain */ 650 enum SSL_MODE_NO_AUTO_CHAIN = 0x00000008; 651 /* Save RAM by releasing read and write buffers when they're empty. (SSL3 and 652 * TLS only.) "Released" buffers are put onto a free-list in the context 653 * or just freed (depending on the context's setting for freelist_max_len). */ 654 enum SSL_MODE_RELEASE_BUFFERS = 0x00000010; 655 /* Send the current time in the Random fields of the ClientHello and 656 * ServerHello records for compatibility with hypothetical implementations 657 * that require it. 658 */ 659 enum SSL_MODE_SEND_CLIENTHELLO_TIME = 0x00000020L; 660 enum SSL_MODE_SEND_SERVERHELLO_TIME = 0x00000040L; 661 662 /* Note: SSL[_CTX]_set_{options,mode} use |= op on the previous value, 663 * they cannot be used to clear bits. */ 664 665 static if (OPENSSL_VERSION_AT_LEAST(1, 1, 0)) 666 { 667 static if (OPENSSL_VERSION_AT_LEAST(3, 0, 0)) 668 { 669 // The argument type for `SSL_[CTX_][gs]et_options was changed between 1.1.1 670 // and 3.0.0, from `c_long` to `uint64_t`. See below commit. 671 // https://github.com/openssl/openssl/commit/56bd17830f2d5855b533d923d4e0649d3ed61d11 672 private alias SSLOptionType = ulong; 673 } 674 else 675 { 676 // Note: Despite the manuals listing the return type (as well as parameter) 677 // as 'long', the `.h` was `unsigned long`. 678 private alias SSLOptionType = c_ulong; 679 } 680 SSLOptionType SSL_CTX_get_options(const SSL_CTX* ctx); 681 SSLOptionType SSL_get_options(const SSL* ssl); 682 SSLOptionType SSL_CTX_clear_options(SSL_CTX* ctx, SSLOptionType op); 683 SSLOptionType SSL_clear_options(SSL* ssl, SSLOptionType op); 684 SSLOptionType SSL_CTX_set_options(SSL_CTX* ctx, SSLOptionType op); 685 SSLOptionType SSL_set_options(SSL* ssl, SSLOptionType op); 686 } 687 else 688 { 689 // Before v1.1.0, those were macros. See below commit. 690 // https://github.com/openssl/openssl/commit/8106cb8b6d706079cbcabd4631f05e4526a316e1 691 private alias SSLOptionType = c_ulong; 692 693 SSLOptionType SSL_CTX_set_options()(SSL_CTX* ctx, SSLOptionType op) { 694 return SSL_CTX_ctrl(ctx, SSL_CTRL_OPTIONS, op, null); 695 } 696 SSLOptionType SSL_CTX_clear_options()(SSL_CTX* ctx, SSLOptionType op) { 697 return SSL_CTX_ctrl(ctx, SSL_CTRL_CLEAR_OPTIONS, op, null); 698 } 699 SSLOptionType SSL_CTX_get_options()(SSL_CTX* ctx) { 700 return SSL_CTX_ctrl(ctx, SSL_CTRL_OPTIONS, 0, null); 701 } 702 SSLOptionType SSL_set_options()(SSL* ssl, SSLOptionType op) { 703 return SSL_ctrl(ssl, SSL_CTRL_OPTIONS, op, null); 704 } 705 SSLOptionType SSL_clear_options()(SSL* ssl, SSLOptionType op) { 706 return SSL_ctrl(ssl, SSL_CTRL_CLEAR_OPTIONS, op, null); 707 } 708 SSLOptionType SSL_get_options()(SSL* ssl) { 709 return SSL_ctrl(ssl, SSL_CTRL_OPTIONS, 0, null); 710 } 711 } 712 713 auto SSL_CTX_set_mode()(SSL_CTX* ctx, SSLOptionType op) { 714 return SSL_CTX_ctrl(ctx,SSL_CTRL_MODE,op,null); 715 } 716 auto SSL_CTX_clear_mode()(SSL_CTX* ctx, SSLOptionType op) { 717 return SSL_CTX_ctrl(ctx,SSL_CTRL_CLEAR_MODE,op,null); 718 } 719 auto SSL_CTX_get_mode()(SSL_CTX* ctx) { 720 return SSL_CTX_ctrl(ctx,SSL_CTRL_MODE,0,null); 721 } 722 auto SSL_clear_mode()(SSL* ssl, SSLOptionType op) { 723 return SSL_ctrl(ssl,SSL_CTRL_CLEAR_MODE,op,null); 724 } 725 auto SSL_set_mode()(SSL* ssl, SSLOptionType op) { 726 return SSL_ctrl(ssl,SSL_CTRL_MODE,op,null); 727 } 728 auto SSL_get_mode()(SSL* ssl) { 729 return SSL_ctrl(ssl,SSL_CTRL_MODE,0,null); 730 } 731 auto SSL_set_mtu()(SSL* ssl, SSLOptionType mtu) { 732 return SSL_ctrl(ssl,SSL_CTRL_MTU,mtu,null); 733 } 734 735 auto SSL_get_secure_renegotiation_support()(SSL* ssl) { 736 return SSL_ctrl(ssl,SSL_CTRL_GET_RI_SUPPORT,0,null); 737 } 738 739 version(OPENSSL_NO_HEARTBEATS) {} else { 740 auto SSL_get_secure_renegotiation_support()(SSL* ssl) { 741 return SSL_ctrl(ssl,SSL_CTRL_TLS_EXT_SEND_HEARTBEAT,0,null); 742 } 743 } 744 745 void SSL_CTX_set_msg_callback(SSL_CTX* ctx, ExternC!(void function(int write_p, int version_, int content_type, const(void)* buf, size_t len, SSL* ssl, void* arg)) cb); 746 void SSL_set_msg_callback(SSL* ssl, ExternC!(void function(int write_p, int version_, int content_type, const(void)* buf, size_t len, SSL* ssl, void* arg)) cb); 747 auto SSL_CTX_set_msg_callback_arg()(SSL_CTX* ctx, void* arg) { 748 return SSL_CTX_ctrl(ctx, SSL_CTRL_SET_MSG_CALLBACK_ARG, 0, arg); 749 } 750 auto SSL_CTX_set_msg_callback_arg()(SSL* ssl, void* arg) { 751 return SSL_CTX_ctrl(ssl, SSL_CTRL_SET_MSG_CALLBACK_ARG, 0, arg); 752 } 753 754 version(OPENSSL_NO_SRP) {} else { 755 756 version(OPENSSL_NO_SSL_INTERN) {} else { 757 758 struct srp_ctx_st 759 { 760 /* param for all the callbacks */ 761 void *SRP_cb_arg; 762 /* set client Hello login callback */ 763 ExternC!(int function(SSL *, int *, void *)) TLS_ext_srp_username_callback; 764 /* set SRP N/g param callback for verification */ 765 ExternC!(int function(SSL *, void *)) SRP_verify_param_callback; 766 /* set SRP client passwd callback */ 767 ExternC!(char* function(SSL *, void *)) SRP_give_srp_client_pwd_callback; 768 769 char *login; 770 BIGNUM* N, g, s, B, A; 771 BIGNUM* a, b, v; 772 char* info; 773 int strength; 774 775 c_ulong srp_Mask; 776 } 777 alias srp_ctx_st SRP_CTX; 778 } 779 780 /* see tls_srp.c */ 781 int SSL_SRP_CTX_init(SSL *s); 782 int SSL_CTX_SRP_CTX_init(SSL_CTX *ctx); 783 int SSL_SRP_CTX_free(SSL *ctx); 784 int SSL_CTX_SRP_CTX_free(SSL_CTX *ctx); 785 int SSL_srp_server_param_with_username(SSL *s, int *ad); 786 int SRP_generate_server_master_secret(SSL *s,ubyte *master_key); 787 int SRP_Calc_A_param(SSL *s); 788 int SRP_generate_client_master_secret(SSL *s,ubyte *master_key); 789 790 } 791 792 version (Win32) { 793 enum SSL_MAX_CERT_LIST_DEFAULT = 1024*30; /* 30k max cert list :-) */ 794 } else { 795 enum SSL_MAX_CERT_LIST_DEFAULT = 1024*100; /* 100k max cert list :-) */ 796 } 797 798 enum SSL_SESSION_CACHE_MAX_SIZE_DEFAULT = (1024*20); 799 800 /* This callback type is used inside SSL_CTX, SSL, and in the functions that set 801 * them. It is used to override the generation of SSL/TLS session IDs in a 802 * server. Return value should be zero on an error, non-zero to proceed. Also, 803 * callbacks should themselves check if the id they generate is unique otherwise 804 * the SSL handshake will fail with an error - callbacks can do this using the 805 * 'ssl' value they're passed by; 806 * SSL_has_matching_session_id(ssl, id, *id_len) 807 * The length value passed in is set at the maximum size the session ID can be. 808 * In SSLv2 this is 16 bytes, whereas SSLv3/TLSv1 it is 32 bytes. The callback 809 * can alter this length to be less if desired, but under SSLv2 session IDs are 810 * supposed to be fixed at 16 bytes so the id will be padded after the callback 811 * returns in this case. It is also an error for the callback to set the size to 812 * zero. */ 813 alias ExternC!(int function(/+ FIXME: @@BUG7127@@ const+/ SSL* ssl, ubyte* id, 814 uint* id_len)) GEN_SESSION_CB; 815 816 alias ssl_comp_st SSL_COMP; 817 818 version(OPENSSL_NO_SSL_INTERN) { 819 struct ssl_comp_st; 820 } else { 821 struct ssl_comp_st 822 { 823 int id; 824 const(char)* name; 825 version(OPENSSL_NO_COMP) { 826 char* method; 827 } else { 828 COMP_METHOD* method; 829 } 830 } 831 832 /+mixin DECLARE_STACK_OF!(SSL_COMP);+/ 833 mixin DECLARE_LHASH_OF!(SSL_SESSION); 834 835 struct ssl_ctx_st 836 { 837 const(SSL_METHOD)* method; 838 839 STACK_OF!(SSL_CIPHER) *cipher_list; 840 /* same as above but sorted for lookup */ 841 STACK_OF!(SSL_CIPHER) *cipher_list_by_id; 842 843 x509_store_st /* X509_STORE */ *cert_store; 844 LHASH_OF!(SSL_SESSION) *sessions; 845 /* Most session-ids that will be cached, default is 846 * SSL_SESSION_CACHE_MAX_SIZE_DEFAULT. 0 is unlimited. */ 847 c_ulong session_cache_size; 848 ssl_session_st* session_cache_head; 849 ssl_session_st* session_cache_tail; 850 851 /* This can have one of 2 values, ored together, 852 * SSL_SESS_CACHE_CLIENT, 853 * SSL_SESS_CACHE_SERVER, 854 * Default is SSL_SESSION_CACHE_SERVER, which means only 855 * SSL_accept which cache SSL_SESSIONS. */ 856 int session_cache_mode; 857 858 /* If timeout is not 0, it is the default timeout value set 859 * when SSL_new() is called. This has been put in to make 860 * life easier to set things up */ 861 c_long session_timeout; 862 863 /* If this callback is not null, it will be called each 864 * time a session id is added to the cache. If this function 865 * returns 1, it means that the callback will do a 866 * SSL_SESSION_free() when it has finished using it. Otherwise, 867 * on 0, it means the callback has finished with it. 868 * If remove_session_cb is not null, it will be called when 869 * a session-id is removed from the cache. After the call, 870 * OpenSSL will SSL_SESSION_free() it. */ 871 ExternC!(int function(ssl_st* ssl,SSL_SESSION* sess)) new_session_cb; 872 ExternC!(void function(ssl_ctx_st* ctx,SSL_SESSION* sess)) remove_session_cb; 873 ExternC!(SSL_SESSION* function(ssl_st* ssl, 874 ubyte* data,int len,int* copy)) get_session_cb; 875 876 struct stats_ 877 { 878 int sess_connect; /* SSL new conn - started */ 879 int sess_connect_renegotiate;/* SSL reneg - requested */ 880 int sess_connect_good; /* SSL new conne/reneg - finished */ 881 int sess_accept; /* SSL new accept - started */ 882 int sess_accept_renegotiate;/* SSL reneg - requested */ 883 int sess_accept_good; /* SSL accept/reneg - finished */ 884 int sess_miss; /* session lookup misses */ 885 int sess_timeout; /* reuse attempt on timeouted session */ 886 int sess_cache_full; /* session removed due to full cache */ 887 int sess_hit; /* session reuse actually done */ 888 int sess_cb_hit; /* session-id that was not 889 * in the cache was 890 * passed back via the callback. This 891 * indicates that the application is 892 * supplying session-id's from other 893 * processes - spooky :-) */ 894 } 895 stats_ stats; 896 897 int references; 898 899 /* if defined, these override the X509_verify_cert() calls */ 900 ExternC!(int function(X509_STORE_CTX*, void*)) app_verify_callback; 901 void* app_verify_arg; 902 /* before OpenSSL 0.9.7, 'app_verify_arg' was ignored 903 * ('app_verify_callback' was called with just one argument) */ 904 905 /* Default password callback. */ 906 pem_password_cb* default_passwd_callback; 907 908 /* Default password callback user data. */ 909 void* default_passwd_callback_userdata; 910 911 /* get client cert callback */ 912 ExternC!(int function(SSL* ssl, X509** x509, EVP_PKEY** pkey)) client_cert_cb; 913 914 /* cookie generate callback */ 915 ExternC!(int function(SSL* ssl, ubyte* cookie, 916 uint* cookie_len)) app_gen_cookie_cb; 917 918 /* verify cookie callback */ 919 ExternC!(int function(SSL* ssl, ubyte* cookie, 920 uint cookie_len)) app_verify_cookie_cb; 921 922 CRYPTO_EX_DATA ex_data; 923 924 const(EVP_MD)* rsa_md5;/* For SSLv2 - name is 'ssl2-md5' */ 925 const(EVP_MD)* md5; /* For SSLv3/TLSv1 'ssl3-md5' */ 926 const(EVP_MD)* sha1; /* For SSLv3/TLSv1 'ssl3->sha1' */ 927 928 STACK_OF!(X509) *extra_certs; 929 STACK_OF!(SSL_COMP) *comp_methods; /* stack of SSL_COMP, SSLv3/TLSv1 */ 930 931 932 /* Default values used when no per-SSL value is defined follow */ 933 934 ExternC!(void function(const(SSL)* ssl,int type,int val)) info_callback; /* used if SSL's info_callback is NULL */ 935 936 /* what we put in client cert requests */ 937 STACK_OF!(X509_NAME) *client_CA; 938 939 940 /* Default values to use in SSL structures follow (these are copied by SSL_new) */ 941 942 SSLOptionType options; 943 c_ulong mode; 944 c_long max_cert_list; 945 946 cert_st /* CERT */ *cert; 947 int read_ahead; 948 949 /* callback that allows applications to peek at protocol messages */ 950 ExternC!(void function(int write_p, int version_, int content_type, const(void)* buf, size_t len, SSL* ssl, void* arg)) msg_callback; 951 void* msg_callback_arg; 952 953 int verify_mode; 954 uint sid_ctx_length; 955 ubyte[SSL_MAX_SID_CTX_LENGTH] sid_ctx; 956 ExternC!(int function(int ok,X509_STORE_CTX* ctx)) default_verify_callback; /* called 'verify_callback' in the SSL */ 957 958 /* Default generate session ID callback. */ 959 GEN_SESSION_CB generate_session_id; 960 961 X509_VERIFY_PARAM* param; 962 963 version (none) { 964 int purpose; /* Purpose setting */ 965 int trust; /* Trust setting */ 966 } 967 968 int quiet_shutdown; 969 970 /* Maximum amount of data to send in one fragment. 971 * actual record size can be more than this due to 972 * padding and MAC overheads. 973 */ 974 uint max_send_fragment; 975 976 version(OPENSSL_NO_ENGINE) {} else { 977 /* Engine to pass requests for client certs to 978 */ 979 ENGINE* client_cert_engine; 980 } 981 982 version(OPENSSL_NO_TLSEXT) {} else { 983 /* TLS extensions servername callback */ 984 ExternC!(int function(SSL*, int*, void*)) tlsext_servername_callback; 985 void* tlsext_servername_arg; 986 /* RFC 4507 session ticket keys */ 987 ubyte[16] tlsext_tick_key_name; 988 ubyte[16] tlsext_tick_hmac_key; 989 ubyte[16] tlsext_tick_aes_key; 990 /* Callback to support customisation of ticket key setting */ 991 ExternC!(int function(SSL* ssl, 992 ubyte* name, ubyte* iv, 993 EVP_CIPHER_CTX* ectx, 994 HMAC_CTX* hctx, int enc)) tlsext_ticket_key_cb; 995 996 /* certificate status request info */ 997 /* Callback for status request */ 998 ExternC!(int function(SSL* ssl, void* arg)) tlsext_status_cb; 999 void* tlsext_status_arg; 1000 1001 /* draft-rescorla-tls-opaque-prf-input-00.txt information */ 1002 ExternC!(int function(SSL*, void* peerinput, size_t len, void* arg)) tlsext_opaque_prf_input_callback; 1003 void* tlsext_opaque_prf_input_callback_arg; 1004 } 1005 1006 version(OPENSSL_NO_PSK) {} else { 1007 char* psk_identity_hint; 1008 ExternC!(uint function(SSL* ssl, const(char)* hint, char* identity, 1009 uint max_identity_len, ubyte* psk, 1010 uint max_psk_len)) psk_client_callback; 1011 ExternC!(uint function(SSL* ssl, const(char)* identity, 1012 ubyte* psk, uint max_psk_len)) psk_server_callback; 1013 } 1014 1015 version(OPENSSL_NO_BUF_FREELISTS) {} else { 1016 enum SSL_MAX_BUF_FREELIST_LEN_DEFAULT = 32; 1017 uint freelist_max_len; 1018 struct ssl3_buf_freelist_st; 1019 ssl3_buf_freelist_st* wbuf_freelist; 1020 ssl3_buf_freelist_st* rbuf_freelist; 1021 } 1022 version(OPENSSL_NO_SRP) {} else { 1023 SRP_CTX srp_ctx; /* ctx for SRP authentication */ 1024 } 1025 1026 version(OPENSSL_NO_TLSEXT) {} else { 1027 1028 version(OPENSSL_NO_NEXTPROTONEG) {} else { 1029 /* Next protocol negotiation information */ 1030 /* (for experimental NPN extension). */ 1031 1032 /* For a server, this contains a callback function by which the set of 1033 * advertised protocols can be provided. */ 1034 ExternC!(int function(SSL *s, const(ubyte)** buf, 1035 uint *len, void *arg)) next_protos_advertised_cb; 1036 void *next_protos_advertised_cb_arg; 1037 /* For a client, this contains a callback function that selects the 1038 * next protocol from the list provided by the server. */ 1039 ExternC!(int function(SSL *s, ubyte** out_, 1040 ubyte* outlen, 1041 const(ubyte)* in_, 1042 uint inlen, 1043 void *arg)) next_proto_select_cb; 1044 void *next_proto_select_cb_arg; 1045 } 1046 /* SRTP profiles we are willing to do from RFC 5764 */ 1047 STACK_OF!(SRTP_PROTECTION_PROFILE) *srtp_profiles; 1048 } 1049 } 1050 alias SSL_CTX = ssl_ctx_st; 1051 } 1052 1053 enum SSL_SESS_CACHE_OFF = 0x0000; 1054 enum SSL_SESS_CACHE_CLIENT = 0x0001; 1055 enum SSL_SESS_CACHE_SERVER = 0x0002; 1056 enum SSL_SESS_CACHE_BOTH = (SSL_SESS_CACHE_CLIENT|SSL_SESS_CACHE_SERVER); 1057 enum SSL_SESS_CACHE_NO_AUTO_CLEAR = 0x0080; 1058 /* enough comments already ... see SSL_CTX_set_session_cache_mode(3) */ 1059 enum SSL_SESS_CACHE_NO_INTERNAL_LOOKUP = 0x0100; 1060 enum SSL_SESS_CACHE_NO_INTERNAL_STORE = 0x0200; 1061 enum SSL_SESS_CACHE_NO_INTERNAL = (SSL_SESS_CACHE_NO_INTERNAL_LOOKUP|SSL_SESS_CACHE_NO_INTERNAL_STORE); 1062 1063 LHASH_OF!(SSL_SESSION) *SSL_CTX_sessions(SSL_CTX* ctx); 1064 auto SSL_CTX_sess_number()(SSL_CTX* ctx) { 1065 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_NUMBER,0,null); 1066 } 1067 auto SSL_CTX_sess_connect()(SSL_CTX* ctx) { 1068 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_CONNECT,0,null); 1069 } 1070 auto SSL_CTX_sess_connect_good()(SSL_CTX* ctx) { 1071 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_CONNECT_GOOD,0,null); 1072 } 1073 auto SSL_CTX_sess_connect_renegotiate()(SSL_CTX* ctx) { 1074 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_CONNECT_RENEGOTIATE,0,null); 1075 } 1076 auto SSL_CTX_sess_accept()(SSL_CTX* ctx) { 1077 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_ACCEPT,0,null); 1078 } 1079 auto SSL_CTX_sess_accept_renegotiate()(SSL_CTX* ctx) { 1080 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_ACCEPT_RENEGOTIATE,0,null); 1081 } 1082 auto SSL_CTX_sess_accept_good()(SSL_CTX* ctx) { 1083 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_ACCEPT_GOOD,0,null); 1084 } 1085 auto SSL_CTX_sess_hits()(SSL_CTX* ctx) { 1086 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_HIT,0,null); 1087 } 1088 auto SSL_CTX_sess_cb_hits()(SSL_CTX* ctx) { 1089 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_CB_HIT,0,null); 1090 } 1091 auto SSL_CTX_sess_misses()(SSL_CTX* ctx) { 1092 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_MISSES,0,null); 1093 } 1094 auto SSL_CTX_sess_timeouts()(SSL_CTX* ctx) { 1095 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_TIMEOUTS,0,null); 1096 } 1097 auto SSL_CTX_sess_cache_full()(SSL_CTX* ctx) { 1098 return SSL_CTX_ctrl(ctx,SSL_CTRL_SESS_CACHE_FULL,0,null); 1099 } 1100 1101 void SSL_CTX_sess_set_new_cb(SSL_CTX* ctx, ExternC!(int function(ssl_st* ssl,SSL_SESSION* sess)) new_session_cb); 1102 ExternC!(int function(ssl_st* ssl, SSL_SESSION* sess)) SSL_CTX_sess_get_new_cb(SSL_CTX* ctx); 1103 void SSL_CTX_sess_set_remove_cb(SSL_CTX* ctx, ExternC!(void function(ssl_ctx_st* ctx,SSL_SESSION* sess)) remove_session_cb); 1104 ExternC!(void function(ssl_st* ssl, SSL_SESSION* sess)) SSL_CTX_sess_get_remove_cb(SSL_CTX* ctx); 1105 void SSL_CTX_sess_set_get_cb(SSL_CTX* ctx, ExternC!(SSL_SESSION* function(ssl_st* ssl, ubyte* data,int len,int* copy)) get_session_cb); 1106 ExternC!(SSL_SESSION* function(ssl_st* ssl, ubyte* Data, int len, int* copy)) SSL_CTX_sess_get_get_cb(SSL_CTX* ctx); 1107 void SSL_CTX_set_info_callback(SSL_CTX* ctx, ExternC!(void function(const(SSL)* ssl,int type,int val)) cb); 1108 ExternC!(void function(const(SSL)* ssl,int type,int val)) SSL_CTX_get_info_callback(SSL_CTX* ctx); 1109 void SSL_CTX_set_client_cert_cb(SSL_CTX* ctx, ExternC!(int function(SSL* ssl, X509** x509, EVP_PKEY** pkey)) client_cert_cb); 1110 ExternC!(int function(SSL* ssl, X509** x509, EVP_PKEY** pkey)) SSL_CTX_get_client_cert_cb(SSL_CTX* ctx); 1111 version(OPENSSL_NO_ENGINE) {} else { 1112 int SSL_CTX_set_client_cert_engine(SSL_CTX* ctx, ENGINE* e); 1113 } 1114 void SSL_CTX_set_cookie_generate_cb(SSL_CTX* ctx, ExternC!(int function(SSL* ssl, ubyte* cookie, uint* cookie_len)) app_gen_cookie_cb); 1115 void SSL_CTX_set_cookie_verify_cb(SSL_CTX* ctx, ExternC!(int function(SSL* ssl, ubyte* cookie, uint cookie_len)) app_verify_cookie_cb); 1116 version(OPENSSL_NO_NEXTPROTONEG) {} else { 1117 void SSL_CTX_set_next_protos_advertised_cb(SSL_CTX *s, 1118 ExternC!(int function(SSL *ssl, 1119 const(ubyte)** out_, 1120 uint* outlen, 1121 void* arg)), 1122 void* arg); 1123 void SSL_CTX_set_next_proto_select_cb(SSL_CTX *s, 1124 ExternC!(int function(SSL *ssl, 1125 ubyte** out_, 1126 ubyte* outlen, 1127 const(ubyte)* in_, 1128 uint inlen, 1129 void *arg)), 1130 void *arg); 1131 1132 int SSL_select_next_proto(ubyte** out_, ubyte* outlen, 1133 const(ubyte)* in_, uint inlen, 1134 const(ubyte)* client, uint client_len); 1135 void SSL_get0_next_proto_negotiated(const SSL *s, 1136 const(ubyte)** data, uint *len); 1137 1138 enum OPENSSL_NPN_UNSUPPORTED = 0; 1139 enum OPENSSL_NPN_NEGOTIATED = 1; 1140 enum OPENSSL_NPN_NO_OVERLAP = 2; 1141 } 1142 1143 static if (OPENSSL_VERSION_AT_LEAST(1, 0, 2)) 1144 { 1145 int SSL_CTX_set_alpn_protos(SSL_CTX *ctx, const(ubyte)* protos, 1146 uint protos_len); 1147 int SSL_set_alpn_protos(SSL *ssl, const(ubyte)* protos, 1148 uint protos_len); 1149 void SSL_CTX_set_alpn_select_cb(SSL_CTX *ctx, 1150 ExternC!(int function(SSL *ssl, 1151 const(ubyte)** out_, 1152 ubyte* outlen, 1153 const(ubyte)* in_, 1154 uint inlen, 1155 void *arg)), 1156 void *arg); 1157 void SSL_get0_alpn_selected(const SSL *ssl, 1158 const(ubyte)** data, uint *len); 1159 } 1160 1161 version(OPENSSL_NO_PSK) {} else { 1162 /* the maximum length of the buffer given to callbacks containing the 1163 * resulting identity/psk */ 1164 enum PSK_MAX_IDENTITY_LEN = 128; 1165 enum PSK_MAX_PSK_LEN = 256; 1166 void SSL_CTX_set_psk_client_callback(SSL_CTX* ctx, 1167 ExternC!(uint function(SSL* ssl, const(char)* hint, 1168 char* identity, uint max_identity_len, ubyte* psk, 1169 uint max_psk_len)) psk_client_callback); 1170 void SSL_set_psk_client_callback(SSL* ssl, 1171 ExternC!(uint function(SSL* ssl, const(char)* hint, 1172 char* identity, uint max_identity_len, ubyte* psk, 1173 uint max_psk_len)) psk_client_callback); 1174 void SSL_CTX_set_psk_server_callback(SSL_CTX* ctx, 1175 ExternC!(uint function(SSL* ssl, const(char)* identity, 1176 ubyte* psk, uint max_psk_len)) psk_server_callback); 1177 void SSL_set_psk_server_callback(SSL* ssl, 1178 ExternC!(uint function(SSL* ssl, const(char)* identity, 1179 ubyte* psk, uint max_psk_len)) psk_server_callback); 1180 int SSL_CTX_use_psk_identity_hint(SSL_CTX* ctx, const(char)* identity_hint); 1181 int SSL_use_psk_identity_hint(SSL* s, const(char)* identity_hint); 1182 const(char)* SSL_get_psk_identity_hint(const(SSL)* s); 1183 const(char)* SSL_get_psk_identity(const(SSL)* s); 1184 } 1185 1186 enum SSL_NOTHING = 1; 1187 enum SSL_WRITING = 2; 1188 enum SSL_READING = 3; 1189 enum SSL_X509_LOOKUP = 4; 1190 1191 /* These will only be used when doing non-blocking IO */ 1192 auto SSL_want_nothing()(const(SSL)* s) { return (SSL_want(s) == SSL_NOTHING); } 1193 auto SSL_want_read()(const(SSL)* s) { return (SSL_want(s) == SSL_READING); } 1194 auto SSL_want_write()(const(SSL)* s) { return (SSL_want(s) == SSL_WRITING); } 1195 auto SSL_want_x509_lookup()(const(SSL)* s) { return (SSL_want(s) == SSL_X509_LOOKUP); } 1196 1197 enum SSL_MAC_FLAG_READ_MAC_STREAM = 1; 1198 enum SSL_MAC_FLAG_WRITE_MAC_STREAM = 2; 1199 1200 version(OPENSSL_NO_SSL_INTERN) {} else { 1201 1202 struct ssl_st 1203 { 1204 /* protocol version 1205 * (one of SSL2_VERSION, SSL3_VERSION, TLS1_VERSION, DTLS1_VERSION) 1206 */ 1207 int version_; 1208 int type; /* SSL_ST_CONNECT or SSL_ST_ACCEPT */ 1209 1210 const(SSL_METHOD)* method; /* SSLv3 */ 1211 1212 /* There are 2 BIO's even though they are normally both the 1213 * same. This is so data can be read and written to different 1214 * handlers */ 1215 1216 version(OPENSSL_NO_BIO) { 1217 char* rbio; /* used by SSL_read */ 1218 char* wbio; /* used by SSL_write */ 1219 char* bbio; 1220 } else { 1221 BIO* rbio; /* used by SSL_read */ 1222 BIO* wbio; /* used by SSL_write */ 1223 BIO* bbio; /* used during session-id reuse to concatenate 1224 * messages */ 1225 } 1226 /* This holds a variable that indicates what we were doing 1227 * when a 0 or -1 is returned. This is needed for 1228 * non-blocking IO so we know what request needs re-doing when 1229 * in SSL_accept or SSL_connect */ 1230 int rwstate; 1231 1232 /* true when we are actually in SSL_accept() or SSL_connect() */ 1233 int in_handshake; 1234 ExternC!(int function(SSL*)) handshake_func; 1235 1236 /* Imagine that here's a boolean member "init" that is 1237 * switched as soon as SSL_set_{accept/connect}_state 1238 * is called for the first time, so that "state" and 1239 * "handshake_func" are properly initialized. But as 1240 * handshake_func is == 0 until then, we use this 1241 * test instead of an "init" member. 1242 */ 1243 1244 int server; /* are we the server side? - mostly used by SSL_clear*/ 1245 1246 int new_session;/* Generate a new session or reuse an old one. 1247 * NB: For servers, the 'new' session may actually be a previously 1248 * cached session or even the previous session unless 1249 * SSL_OP_NO_SESSION_RESUMPTION_ON_RENEGOTIATION is set */ 1250 int quiet_shutdown;/* don't send shutdown packets */ 1251 int shutdown; /* we have shut things down, 0x01 sent, 0x02 1252 * for received */ 1253 int state; /* where we are */ 1254 int rstate; /* where we are when reading */ 1255 1256 BUF_MEM* init_buf; /* buffer used during init */ 1257 void* init_msg; /* pointer to handshake message body, set by ssl3_get_message() */ 1258 int init_num; /* amount read/written */ 1259 int init_off; /* amount read/written */ 1260 1261 /* used internally to point at a raw packet */ 1262 ubyte* packet; 1263 uint packet_length; 1264 1265 ssl2_state_st* s2; /* SSLv2 variables */ 1266 ssl3_state_st* s3; /* SSLv3 variables */ 1267 import deimos.openssl.dtls1; 1268 dtls1_state_st* d1; /* DTLSv1 variables */ 1269 1270 int read_ahead; /* Read as many input bytes as possible 1271 * (for non-blocking reads) */ 1272 1273 /* callback that allows applications to peek at protocol messages */ 1274 ExternC!(void function(int write_p, int version_, int content_type, const(void)* buf, size_t len, SSL* ssl, void* arg)) msg_callback; 1275 void* msg_callback_arg; 1276 1277 int hit; /* reusing a previous session */ 1278 1279 X509_VERIFY_PARAM* param; 1280 1281 version (none) { 1282 int purpose; /* Purpose setting */ 1283 int trust; /* Trust setting */ 1284 } 1285 1286 /* crypto */ 1287 STACK_OF!(SSL_CIPHER) *cipher_list; 1288 STACK_OF!(SSL_CIPHER) *cipher_list_by_id; 1289 1290 /* These are the ones being used, the ones in SSL_SESSION are 1291 * the ones to be 'copied' into these ones */ 1292 int mac_flags; 1293 EVP_CIPHER_CTX* enc_read_ctx; /* cryptographic state */ 1294 EVP_MD_CTX* read_hash; /* used for mac generation */ 1295 version(OPENSSL_NO_COMP) { 1296 char* expand; 1297 } else { 1298 COMP_CTX* expand; /* uncompress */ 1299 } 1300 1301 EVP_CIPHER_CTX* enc_write_ctx; /* cryptographic state */ 1302 EVP_MD_CTX* write_hash; /* used for mac generation */ 1303 version(OPENSSL_NO_COMP) { 1304 char* compress; 1305 } else { 1306 COMP_CTX* compress; /* compression */ 1307 } 1308 1309 /* session info */ 1310 1311 /* client cert? */ 1312 /* This is used to hold the server certificate used */ 1313 cert_st /* CERT */ *cert; 1314 1315 /* the session_id_context is used to ensure sessions are only reused 1316 * in the appropriate context */ 1317 uint sid_ctx_length; 1318 ubyte[SSL_MAX_SID_CTX_LENGTH] sid_ctx; 1319 1320 /* This can also be in the session once a session is established */ 1321 SSL_SESSION* session; 1322 1323 /* Default generate session ID callback. */ 1324 GEN_SESSION_CB generate_session_id; 1325 1326 /* Used in SSL2 and SSL3 */ 1327 int verify_mode; /* 0 don't care about verify failure. 1328 * 1 fail if verify fails */ 1329 ExternC!(int function(int ok,X509_STORE_CTX* ctx)) verify_callback; /* fail if callback returns 0 */ 1330 1331 ExternC!(void function(/+ FIXME: @@BUG7127@@ const+/ SSL* ssl,int type,int val)) info_callback; /* optional informational callback */ 1332 1333 int error; /* error bytes to be written */ 1334 int error_code; /* actual code */ 1335 1336 version(OPENSSL_NO_KRB5) {} else { 1337 KSSL_CTX* kssl_ctx; /* Kerberos 5 context */ 1338 } /* OPENSSL_NO_KRB5 */ 1339 1340 version(OPENSSL_NO_PSK) {} else { 1341 ExternC!(uint function(SSL* ssl, const(char)* hint, char* identity, 1342 uint max_identity_len, ubyte* psk, 1343 uint max_psk_len)) psk_client_callback; 1344 ExternC!(uint function(SSL* ssl, const(char)* identity, 1345 ubyte* psk, uint max_psk_len)) psk_server_callback; 1346 } 1347 1348 SSL_CTX* ctx; 1349 /* set this flag to 1 and a sleep(1) is put into all SSL_read() 1350 * and SSL_write() calls, good for nbio debuging :-) */ 1351 int debug_; 1352 1353 /* extra application data */ 1354 c_long verify_result; 1355 CRYPTO_EX_DATA ex_data; 1356 1357 /* for server side, keep the list of CA_dn we can use */ 1358 STACK_OF!(X509_NAME) *client_CA; 1359 1360 int references; 1361 SSLOptionType options; /* protocol behaviour */ 1362 c_ulong mode; /* API behaviour */ 1363 c_long max_cert_list; 1364 int first_packet; 1365 int client_version; /* what was passed, used for 1366 * SSLv3/TLS rollback check */ 1367 uint max_send_fragment; 1368 version(OPENSSL_NO_TLSEXT) { 1369 alias ctx session_ctx; 1370 } else { 1371 /* TLS extension debug callback */ 1372 ExternC!(void function(SSL* s, int client_server, int type, 1373 ubyte* data, int len, 1374 void* arg)) tlsext_debug_cb; 1375 void* tlsext_debug_arg; 1376 char* tlsext_hostname; 1377 int servername_done; /* no further mod of servername 1378 0 : call the servername extension callback. 1379 1 : prepare 2, allow last ack just after in server callback. 1380 2 : don't call servername callback, no ack in server hello 1381 */ 1382 /* certificate status request info */ 1383 /* Status type or -1 if no status type */ 1384 int tlsext_status_type; 1385 /* Expect OCSP CertificateStatus message */ 1386 int tlsext_status_expected; 1387 /* OCSP status request only */ 1388 STACK_OF!(OCSP_RESPID) *tlsext_ocsp_ids; 1389 X509_EXTENSIONS* tlsext_ocsp_exts; 1390 /* OCSP response received or to be sent */ 1391 ubyte* tlsext_ocsp_resp; 1392 int tlsext_ocsp_resplen; 1393 1394 /* RFC4507 session ticket expected to be received or sent */ 1395 int tlsext_ticket_expected; 1396 version(OPENSSL_NO_EC) {} else { 1397 size_t tlsext_ecpointformatlist_length; 1398 ubyte* tlsext_ecpointformatlist; /* our list */ 1399 size_t tlsext_ellipticcurvelist_length; 1400 ubyte* tlsext_ellipticcurvelist; /* our list */ 1401 } /* OPENSSL_NO_EC */ 1402 1403 /* draft-rescorla-tls-opaque-prf-input-00.txt information to be used for handshakes */ 1404 void* tlsext_opaque_prf_input; 1405 size_t tlsext_opaque_prf_input_len; 1406 1407 /* TLS Session Ticket extension override */ 1408 TLS_SESSION_TICKET_EXT* tlsext_session_ticket; 1409 1410 /* TLS Session Ticket extension callback */ 1411 tls_session_ticket_ext_cb_fn tls_session_ticket_ext_cb; 1412 void* tls_session_ticket_ext_cb_arg; 1413 1414 /* TLS pre-shared secret session resumption */ 1415 tls_session_secret_cb_fn tls_session_secret_cb; 1416 void* tls_session_secret_cb_arg; 1417 1418 SSL_CTX* initial_ctx; /* initial ctx, used to store sessions */ 1419 1420 version(OPENSSL_NO_NEXTPROTONEG) {} else { 1421 /* Next protocol negotiation. For the client, this is the protocol that 1422 * we sent in NextProtocol and is set when handling ServerHello 1423 * extensions. 1424 * 1425 * For a server, this is the client's selected_protocol from 1426 * NextProtocol and is set when handling the NextProtocol message, 1427 * before the Finished message. */ 1428 ubyte* next_proto_negotiated; 1429 ubyte next_proto_negotiated_len; 1430 } 1431 1432 alias initial_ctx session_ctx; 1433 1434 STACK_OF!(SRTP_PROTECTION_PROFILE)* srtp_profiles; /* What we'll do */ 1435 SRTP_PROTECTION_PROFILE* srtp_profile; /* What's been chosen */ 1436 1437 uint tlsext_heartbeat; /* Is use of the Heartbeat extension negotiated? 1438 0: disabled 1439 1: enabled 1440 2: enabled, but not allowed to send Requests 1441 */ 1442 uint tlsext_hb_pending; /* Indicates if a HeartbeatRequest is in flight */ 1443 uint tlsext_hb_seq; /* HeartbeatRequest sequence number */ 1444 } /* OPENSSL_NO_TLSEXT */ 1445 1446 int renegotiate;/* 1 if we are renegotiating. 1447 * 2 if we are a server and are inside a handshake 1448 * (i.e. not just sending a HelloRequest) */ 1449 1450 version(OPENSSL_NO_SRP) {} else { 1451 SRP_CTX srp_ctx; /* ctx for SRP authentication */ 1452 } 1453 } 1454 alias SSL = ssl_st; 1455 } 1456 1457 public import deimos.openssl.ssl2; 1458 public import deimos.openssl.ssl3; 1459 public import deimos.openssl.tls1; /* This is mostly sslv3 with a few tweaks */ 1460 public import deimos.openssl.dtls1; /* Datagram TLS */ 1461 public import deimos.openssl.ssl23; 1462 public import deimos.openssl.srtp; /* Support for the use_srtp extension */ 1463 1464 extern (C): 1465 nothrow: 1466 1467 /* compatibility */ 1468 auto SSL_set_app_data()(SSL* s, char* arg) { return (SSL_set_ex_data()(SSL* s,0,arg)); } 1469 auto SSL_get_app_data()(const(SSL)* s) { return (SSL_get_ex_data()(SSL* s,0)); } 1470 auto SSL_SESSION_set_app_data()(SSL_SESSION* s, char* a) { return (SSL_SESSION_set_ex_data()(SSL* s,0,a)); } 1471 auto SSL_SESSION_get_app_data()(const(SSL_SESSION)* s) { return (SSL_SESSION_get_ex_data()(SSL* s,0)); } 1472 auto SSL_CTX_get_app_data()(const(SSL_CTX)* ctx) { return (SSL_CTX_get_ex_data(ctx,0)); } 1473 auto SSL_CTX_set_app_data()(SSL_CTX* ctx, char* arg) { return (SSL_CTX_set_ex_data(ctx,0,arg)); } 1474 1475 /* 1476 * The valid handshake states (one for each type message sent and one for each 1477 * type of message received). There are also two "special" states: 1478 * TLS = TLS or DTLS state 1479 * DTLS = DTLS specific state 1480 * CR/SR = Client Read/Server Read 1481 * CW/SW = Client Write/Server Write 1482 * 1483 * The "special" states are: 1484 * TLS_ST_BEFORE = No handshake has been initiated yet 1485 * TLS_ST_OK = A handshake has been successfully completed 1486 */ 1487 enum 1488 { 1489 TLS_ST_BEFORE, 1490 TLS_ST_OK, 1491 DTLS_ST_CR_HELLO_VERIFY_REQUEST, 1492 TLS_ST_CR_SRVR_HELLO, 1493 TLS_ST_CR_CERT, 1494 TLS_ST_CR_CERT_STATUS, 1495 TLS_ST_CR_KEY_EXCH, 1496 TLS_ST_CR_CERT_REQ, 1497 TLS_ST_CR_SRVR_DONE, 1498 TLS_ST_CR_SESSION_TICKET, 1499 TLS_ST_CR_CHANGE, 1500 TLS_ST_CR_FINISHED, 1501 TLS_ST_CW_CLNT_HELLO, 1502 TLS_ST_CW_CERT, 1503 TLS_ST_CW_KEY_EXCH, 1504 TLS_ST_CW_CERT_VRFY, 1505 TLS_ST_CW_CHANGE, 1506 TLS_ST_CW_NEXT_PROTO, 1507 TLS_ST_CW_FINISHED, 1508 TLS_ST_SW_HELLO_REQ, 1509 TLS_ST_SR_CLNT_HELLO, 1510 DTLS_ST_SW_HELLO_VERIFY_REQUEST, 1511 TLS_ST_SW_SRVR_HELLO, 1512 TLS_ST_SW_CERT, 1513 TLS_ST_SW_KEY_EXCH, 1514 TLS_ST_SW_CERT_REQ, 1515 TLS_ST_SW_SRVR_DONE, 1516 TLS_ST_SR_CERT, 1517 TLS_ST_SR_KEY_EXCH, 1518 TLS_ST_SR_CERT_VRFY, 1519 TLS_ST_SR_NEXT_PROTO, 1520 TLS_ST_SR_CHANGE, 1521 TLS_ST_SR_FINISHED, 1522 TLS_ST_SW_SESSION_TICKET, 1523 TLS_ST_SW_CERT_STATUS, 1524 TLS_ST_SW_CHANGE, 1525 TLS_ST_SW_FINISHED 1526 } 1527 alias OSSL_HANDSHAKE_STATE = typeof(TLS_ST_BEFORE); 1528 1529 /* The following are the possible values for ssl->state are are 1530 * used to indicate where we are up to in the SSL connection establishment. 1531 * The macros that follow are about the only things you should need to use 1532 * and even then, only when using non-blocking IO. 1533 * It can also be useful to work out where you were when the connection 1534 * failed */ 1535 1536 enum SSL_ST_CONNECT = 0x1000; 1537 enum SSL_ST_ACCEPT = 0x2000; 1538 enum SSL_ST_MASK = 0x0FFF; 1539 enum SSL_ST_INIT = (SSL_ST_CONNECT|SSL_ST_ACCEPT); 1540 enum SSL_ST_BEFORE = 0x4000; 1541 enum SSL_ST_OK = 0x03; 1542 enum SSL_ST_RENEGOTIATE = (0x04|SSL_ST_INIT); 1543 1544 enum SSL_CB_LOOP = 0x01; 1545 enum SSL_CB_EXIT = 0x02; 1546 enum SSL_CB_READ = 0x04; 1547 enum SSL_CB_WRITE = 0x08; 1548 enum SSL_CB_ALERT = 0x4000; /* used in callback */ 1549 enum SSL_CB_READ_ALERT = (SSL_CB_ALERT|SSL_CB_READ); 1550 enum SSL_CB_WRITE_ALERT = (SSL_CB_ALERT|SSL_CB_WRITE); 1551 enum SSL_CB_ACCEPT_LOOP = (SSL_ST_ACCEPT|SSL_CB_LOOP); 1552 enum SSL_CB_ACCEPT_EXIT = (SSL_ST_ACCEPT|SSL_CB_EXIT); 1553 enum SSL_CB_CONNECT_LOOP = (SSL_ST_CONNECT|SSL_CB_LOOP); 1554 enum SSL_CB_CONNECT_EXIT = (SSL_ST_CONNECT|SSL_CB_EXIT); 1555 enum SSL_CB_HANDSHAKE_START = 0x10; 1556 enum SSL_CB_HANDSHAKE_DONE = 0x20; 1557 1558 /* Is the SSL_connection established? */ 1559 bool SSL_in_connect_init()(const(SSL)* a) { return SSL_in_init(a) && !SSL_is_server(a); } 1560 bool SSL_in_accept_init()(const(SSL)* a) { return SSL_in_init(a) && SSL_is_server(a); } 1561 int SSL_in_init(SSL *s); 1562 int SSL_in_before(SSL *s); 1563 int SSL_is_init_finished(SSL *s); 1564 1565 /* The following 2 states are kept in ssl->rstate when reads fail, 1566 * you should not need these */ 1567 enum SSL_ST_READ_HEADER = 0xF0; 1568 enum SSL_ST_READ_BODY = 0xF1; 1569 enum SSL_ST_READ_DONE = 0xF2; 1570 1571 /* Obtain latest Finished message 1572 * -- that we sent (SSL_get_finished) 1573 * -- that we expected from peer (SSL_get_peer_finished). 1574 * Returns length (0 == no Finished so far), copies up to 'count' bytes. */ 1575 size_t SSL_get_finished(const(SSL)* s, void* buf, size_t count); 1576 size_t SSL_get_peer_finished(const(SSL)* s, void* buf, size_t count); 1577 1578 /* use either SSL_VERIFY_NONE or SSL_VERIFY_PEER, the last 2 options 1579 * are 'ored' with SSL_VERIFY_PEER if they are desired */ 1580 enum SSL_VERIFY_NONE = 0x00; 1581 enum SSL_VERIFY_PEER = 0x01; 1582 enum SSL_VERIFY_FAIL_IF_NO_PEER_CERT = 0x02; 1583 enum SSL_VERIFY_CLIENT_ONCE = 0x04; 1584 1585 alias SSL_library_init OpenSSL_add_ssl_algorithms; 1586 alias SSL_library_init SSLeay_add_ssl_algorithms; 1587 1588 /* this is for backward compatibility */ 1589 //#if 0 /* NEW_SSLEAY */ 1590 //#define SSL_CTX_set_default_verify(a,b,c) SSL_CTX_set_verify(a,b,c) 1591 //#define SSL_set_pref_cipher(c,n) SSL_set_cipher_list(c,n) 1592 //#define SSL_add_session(a,b) SSL_CTX_add_session((a),(b)) 1593 //#define SSL_remove_session(a,b) SSL_CTX_remove_session((a),(b)) 1594 //#define SSL_flush_sessions(a,b) SSL_CTX_flush_sessions((a),(b)) 1595 //#endif 1596 /* More backward compatibility */ 1597 auto SSL_get_cipher()(const(SSL)* s) { 1598 return SSL_CIPHER_get_name(SSL_get_current_cipher(s)); 1599 } 1600 auto SSL_get_cipher_bits()(const(SSL)* s, int np) { 1601 return SSL_CIPHER_get_bits(SSL_get_current_cipher(s),np); 1602 } 1603 auto SSL_get_cipher_version()(const(SSL)* s) { 1604 return SSL_CIPHER_get_version(SSL_get_current_cipher(s)); 1605 } 1606 auto SSL_get_cipher_name()(const(SSL)* s) { 1607 return SSL_CIPHER_get_name(SSL_get_current_cipher(s)); 1608 } 1609 alias SSL_SESSION_get_time SSL_get_time; 1610 alias SSL_SESSION_set_time SSL_set_time; 1611 alias SSL_SESSION_get_timeout SSL_get_timeout; 1612 alias SSL_SESSION_set_timeout SSL_set_timeout; 1613 1614 auto d2i_SSL_SESSION_bio()(BIO* bp,SSL_SESSION** s_id) { 1615 return ASN1_d2i_bio_of!SSL_SESSION(&SSL_SESSION_new,&d2i_SSL_SESSION,bp,s_id); 1616 } 1617 auto i2d_SSL_SESSION_bio()(BIO* bp,SSL_SESSION** s_id) { 1618 return ASN1_i2d_bio_of!SSL_SESSION(&i2d_SSL_SESSION,bp,s_id); 1619 } 1620 1621 mixin(DECLARE_PEM_rw!("SSL_SESSION", "SSL_SESSION")()); 1622 1623 enum SSL_AD_REASON_OFFSET = 1000; /* offset to get SSL_R_... value from SSL_AD_... */ 1624 1625 /* These alert types are for SSLv3 and TLSv1 */ 1626 alias SSL3_AD_CLOSE_NOTIFY SSL_AD_CLOSE_NOTIFY; 1627 alias SSL3_AD_UNEXPECTED_MESSAGE SSL_AD_UNEXPECTED_MESSAGE; /* fatal */ 1628 alias SSL3_AD_BAD_RECORD_MAC SSL_AD_BAD_RECORD_MAC; /* fatal */ 1629 alias TLS1_AD_DECRYPTION_FAILED SSL_AD_DECRYPTION_FAILED; 1630 alias TLS1_AD_RECORD_OVERFLOW SSL_AD_RECORD_OVERFLOW; 1631 alias SSL3_AD_DECOMPRESSION_FAILURE SSL_AD_DECOMPRESSION_FAILURE;/* fatal */ 1632 alias SSL3_AD_HANDSHAKE_FAILURE SSL_AD_HANDSHAKE_FAILURE;/* fatal */ 1633 alias SSL3_AD_NO_CERTIFICATE SSL_AD_NO_CERTIFICATE; /* Not for TLS */ 1634 alias SSL3_AD_BAD_CERTIFICATE SSL_AD_BAD_CERTIFICATE; 1635 alias SSL3_AD_UNSUPPORTED_CERTIFICATE SSL_AD_UNSUPPORTED_CERTIFICATE; 1636 alias SSL3_AD_CERTIFICATE_REVOKED SSL_AD_CERTIFICATE_REVOKED; 1637 alias SSL3_AD_CERTIFICATE_EXPIRED SSL_AD_CERTIFICATE_EXPIRED; 1638 alias SSL3_AD_CERTIFICATE_UNKNOWN SSL_AD_CERTIFICATE_UNKNOWN; 1639 alias SSL3_AD_ILLEGAL_PARAMETER SSL_AD_ILLEGAL_PARAMETER; /* fatal */ 1640 alias TLS1_AD_UNKNOWN_CA SSL_AD_UNKNOWN_CA; /* fatal */ 1641 alias TLS1_AD_ACCESS_DENIED SSL_AD_ACCESS_DENIED; /* fatal */ 1642 alias TLS1_AD_DECODE_ERROR SSL_AD_DECODE_ERROR; /* fatal */ 1643 alias TLS1_AD_DECRYPT_ERROR SSL_AD_DECRYPT_ERROR; 1644 alias TLS1_AD_EXPORT_RESTRICTION SSL_AD_EXPORT_RESTRICTION;/* fatal */ 1645 alias TLS1_AD_PROTOCOL_VERSION SSL_AD_PROTOCOL_VERSION; /* fatal */ 1646 alias TLS1_AD_INSUFFICIENT_SECURITY SSL_AD_INSUFFICIENT_SECURITY;/* fatal */ 1647 alias TLS1_AD_INTERNAL_ERROR SSL_AD_INTERNAL_ERROR; /* fatal */ 1648 alias TLS1_AD_USER_CANCELLED SSL_AD_USER_CANCELLED; 1649 alias TLS1_AD_NO_RENEGOTIATION SSL_AD_NO_RENEGOTIATION; 1650 alias TLS1_AD_UNSUPPORTED_EXTENSION SSL_AD_UNSUPPORTED_EXTENSION; 1651 alias TLS1_AD_CERTIFICATE_UNOBTAINABLE SSL_AD_CERTIFICATE_UNOBTAINABLE; 1652 alias TLS1_AD_UNRECOGNIZED_NAME SSL_AD_UNRECOGNIZED_NAME; 1653 alias TLS1_AD_BAD_CERTIFICATE_STATUS_RESPONSE SSL_AD_BAD_CERTIFICATE_STATUS_RESPONSE; 1654 alias TLS1_AD_BAD_CERTIFICATE_HASH_VALUE SSL_AD_BAD_CERTIFICATE_HASH_VALUE; 1655 alias TLS1_AD_UNKNOWN_PSK_IDENTITY SSL_AD_UNKNOWN_PSK_IDENTITY; /* fatal */ 1656 1657 enum SSL_ERROR_NONE = 0; 1658 enum SSL_ERROR_SSL = 1; 1659 enum SSL_ERROR_WANT_READ = 2; 1660 enum SSL_ERROR_WANT_WRITE = 3; 1661 enum SSL_ERROR_WANT_X509_LOOKUP = 4; 1662 enum SSL_ERROR_SYSCALL = 5; /* look at error stack/return value/errno */ 1663 enum SSL_ERROR_ZERO_RETURN = 6; 1664 enum SSL_ERROR_WANT_CONNECT = 7; 1665 enum SSL_ERROR_WANT_ACCEPT = 8; 1666 1667 enum SSL_CTRL_NEED_TMP_RSA = 1; 1668 enum SSL_CTRL_SET_TMP_RSA = 2; 1669 enum SSL_CTRL_SET_TMP_DH = 3; 1670 enum SSL_CTRL_SET_TMP_ECDH = 4; 1671 enum SSL_CTRL_SET_TMP_RSA_CB = 5; 1672 enum SSL_CTRL_SET_TMP_DH_CB = 6; 1673 enum SSL_CTRL_SET_TMP_ECDH_CB = 7; 1674 1675 enum SSL_CTRL_GET_SESSION_REUSED = 8; 1676 enum SSL_CTRL_GET_CLIENT_CERT_REQUEST = 9; 1677 enum SSL_CTRL_GET_NUM_RENEGOTIATIONS = 10; 1678 enum SSL_CTRL_CLEAR_NUM_RENEGOTIATIONS = 11; 1679 enum SSL_CTRL_GET_TOTAL_RENEGOTIATIONS = 12; 1680 enum SSL_CTRL_GET_FLAGS = 13; 1681 enum SSL_CTRL_EXTRA_CHAIN_CERT = 14; 1682 1683 enum SSL_CTRL_SET_MSG_CALLBACK = 15; 1684 enum SSL_CTRL_SET_MSG_CALLBACK_ARG = 16; 1685 1686 /* only applies to datagram connections */ 1687 enum SSL_CTRL_SET_MTU = 17; 1688 /* Stats */ 1689 enum SSL_CTRL_SESS_NUMBER = 20; 1690 enum SSL_CTRL_SESS_CONNECT = 21; 1691 enum SSL_CTRL_SESS_CONNECT_GOOD = 22; 1692 enum SSL_CTRL_SESS_CONNECT_RENEGOTIATE = 23; 1693 enum SSL_CTRL_SESS_ACCEPT = 24; 1694 enum SSL_CTRL_SESS_ACCEPT_GOOD = 25; 1695 enum SSL_CTRL_SESS_ACCEPT_RENEGOTIATE = 26; 1696 enum SSL_CTRL_SESS_HIT = 27; 1697 enum SSL_CTRL_SESS_CB_HIT = 28; 1698 enum SSL_CTRL_SESS_MISSES = 29; 1699 enum SSL_CTRL_SESS_TIMEOUTS = 30; 1700 enum SSL_CTRL_SESS_CACHE_FULL = 31; 1701 enum SSL_CTRL_OPTIONS = 32; 1702 enum SSL_CTRL_MODE = 33; 1703 1704 enum SSL_CTRL_GET_READ_AHEAD = 40; 1705 enum SSL_CTRL_SET_READ_AHEAD = 41; 1706 enum SSL_CTRL_SET_SESS_CACHE_SIZE = 42; 1707 enum SSL_CTRL_GET_SESS_CACHE_SIZE = 43; 1708 enum SSL_CTRL_SET_SESS_CACHE_MODE = 44; 1709 enum SSL_CTRL_GET_SESS_CACHE_MODE = 45; 1710 1711 enum SSL_CTRL_GET_MAX_CERT_LIST = 50; 1712 enum SSL_CTRL_SET_MAX_CERT_LIST = 51; 1713 1714 enum SSL_CTRL_SET_MAX_SEND_FRAGMENT = 52; 1715 1716 /* see tls1.h for macros based on these */ 1717 version(OPENSSL_NO_TLSEXT) {} else { 1718 enum SSL_CTRL_SET_TLSEXT_SERVERNAME_CB = 53; 1719 enum SSL_CTRL_SET_TLSEXT_SERVERNAME_ARG = 54; 1720 enum SSL_CTRL_SET_TLSEXT_HOSTNAME = 55; 1721 enum SSL_CTRL_SET_TLSEXT_DEBUG_CB = 56; 1722 enum SSL_CTRL_SET_TLSEXT_DEBUG_ARG = 57; 1723 enum SSL_CTRL_GET_TLSEXT_TICKET_KEYS = 58; 1724 enum SSL_CTRL_SET_TLSEXT_TICKET_KEYS = 59; 1725 enum SSL_CTRL_SET_TLSEXT_OPAQUE_PRF_INPUT = 60; 1726 enum SSL_CTRL_SET_TLSEXT_OPAQUE_PRF_INPUT_CB = 61; 1727 enum SSL_CTRL_SET_TLSEXT_OPAQUE_PRF_INPUT_CB_ARG = 62; 1728 enum SSL_CTRL_SET_TLSEXT_STATUS_REQ_CB = 63; 1729 enum SSL_CTRL_SET_TLSEXT_STATUS_REQ_CB_ARG = 64; 1730 enum SSL_CTRL_SET_TLSEXT_STATUS_REQ_TYPE = 65; 1731 enum SSL_CTRL_GET_TLSEXT_STATUS_REQ_EXTS = 66; 1732 enum SSL_CTRL_SET_TLSEXT_STATUS_REQ_EXTS = 67; 1733 enum SSL_CTRL_GET_TLSEXT_STATUS_REQ_IDS = 68; 1734 enum SSL_CTRL_SET_TLSEXT_STATUS_REQ_IDS = 69; 1735 enum SSL_CTRL_GET_TLSEXT_STATUS_REQ_OCSP_RESP = 70; 1736 enum SSL_CTRL_SET_TLSEXT_STATUS_REQ_OCSP_RESP = 71; 1737 1738 enum SSL_CTRL_SET_TLSEXT_TICKET_KEY_CB = 72; 1739 1740 enum SSL_CTRL_SET_TLS_EXT_SRP_USERNAME_CB = 75; 1741 enum SSL_CTRL_SET_SRP_VERIFY_PARAM_CB = 76; 1742 enum SSL_CTRL_SET_SRP_GIVE_CLIENT_PWD_CB = 77; 1743 1744 enum SSL_CTRL_SET_SRP_ARG = 78; 1745 enum SSL_CTRL_SET_TLS_EXT_SRP_USERNAME = 79; 1746 enum SSL_CTRL_SET_TLS_EXT_SRP_STRENGTH = 80; 1747 enum SSL_CTRL_SET_TLS_EXT_SRP_PASSWORD = 81; 1748 version(OPENSSL_NO_HEARTBEATS) {} else { 1749 enum SSL_CTRL_TLS_EXT_SEND_HEARTBEAT = 85; 1750 enum SSL_CTRL_GET_TLS_EXT_HEARTBEAT_PENDING = 86; 1751 enum SSL_CTRL_SET_TLS_EXT_HEARTBEAT_NO_REQUESTS = 87; 1752 } 1753 } 1754 1755 enum DTLS_CTRL_GET_TIMEOUT = 73; 1756 enum DTLS_CTRL_HANDLE_TIMEOUT = 74; 1757 enum DTLS_CTRL_LISTEN = 75; 1758 1759 enum SSL_CTRL_GET_RI_SUPPORT = 76; 1760 enum SSL_CTRL_CLEAR_OPTIONS = 77; 1761 enum SSL_CTRL_CLEAR_MODE = 78; 1762 1763 enum SSL_CTRL_GET_EXTRA_CHAIN_CERTS = 82; 1764 enum SSL_CTRL_CLEAR_EXTRA_CHAIN_CERTS = 83; 1765 1766 auto DTLSv1_get_timeout()(SSL* ssl, void* arg) { 1767 return SSL_ctrl(ssl,DTLS_CTRL_GET_TIMEOUT,0,arg); 1768 } 1769 auto DTLSv1_handle_timeout()(SSL* ssl) { 1770 return SSL_ctrl(ssl,DTLS_CTRL_HANDLE_TIMEOUT,0,null); 1771 } 1772 auto DTLSv1_listen()(SSL* ssl, void* peer) { 1773 return SSL_ctrl(ssl,DTLS_CTRL_LISTEN,0,peer); 1774 } 1775 1776 auto SSL_session_reused()(SSL* ssl) { 1777 return SSL_ctrl(ssl,SSL_CTRL_GET_SESSION_REUSED,0,null); 1778 } 1779 auto SSL_session_reused()(SSL* ssl) { 1780 return SSL_ctrl(ssl,SSL_CTRL_GET_SESSION_REUSED,0,null); 1781 } 1782 auto SSL_num_renegotiations()(SSL* ssl) { 1783 return SSL_ctrl(ssl,SSL_CTRL_GET_NUM_RENEGOTIATIONS,0,null); 1784 } 1785 auto SSL_clear_num_renegotiations()(SSL* ssl) { 1786 return SSL_ctrl(ssl,SSL_CTRL_CLEAR_NUM_RENEGOTIATIONS,0,null); 1787 } 1788 auto SSL_total_renegotiations()(SSL* ssl) { 1789 return SSL_ctrl(ssl,SSL_CTRL_GET_TOTAL_RENEGOTIATIONS,0,null); 1790 } 1791 1792 auto SSL_CTX_need_tmp_RSA()(SSL_CTX* ctx) { 1793 return SSL_CTX_ctrl(ctx,SSL_CTRL_NEED_TMP_RSA,0,null); 1794 } 1795 auto SSL_CTX_set_tmp_rsa()(SSL_CTX* ctx, void* rsa) { 1796 return SSL_CTX_ctrl(ctx,SSL_CTRL_SET_TMP_RSA,0,rsa); 1797 } 1798 auto SSL_CTX_set_tmp_dh()(SSL_CTX* ctx, void* dh) { 1799 return SSL_CTX_ctrl(ctx,SSL_CTRL_SET_TMP_DH,0,dh); 1800 } 1801 auto SSL_CTX_set_tmp_ecdh()(SSL_CTX* ctx, void* ecdh) { 1802 return SSL_CTX_ctrl(ctx,SSL_CTRL_SET_TMP_ECDH,0,ecdh); 1803 } 1804 1805 auto SSL_need_tmp_RSA()(SSL* ssl) { 1806 return SSL_ctrl(ssl,SSL_CTRL_NEED_TMP_RSA,0,null); 1807 } 1808 auto SSL_set_tmp_rsa()(SSL* ssl, void* rsa) { 1809 return SSL_ctrl(ssl,SSL_CTRL_SET_TMP_RSA,0,rsa); 1810 } 1811 auto SSL_set_tmp_dh()(SSL* ssl, void* dh) { 1812 return SSL_ctrl(ssl,SSL_CTRL_SET_TMP_DH,0,dh); 1813 } 1814 auto SSL_set_tmp_ecdh()(SSL* ssl, void* ecdh) { 1815 return SSL_ctrl(ssl,SSL_CTRL_SET_TMP_ECDH,0,ecdh); 1816 } 1817 1818 auto SSL_CTX_add_extra_chain_cert()(SSL_CTX* ctx, void* x509) { 1819 return SSL_CTX_ctrl(ctx,SSL_CTRL_EXTRA_CHAIN_CERT,0,x509); 1820 } 1821 auto SSL_CTX_get_extra_chain_certs()(SSL_CTX* ctx, void* x509) { 1822 return SSL_CTX_ctrl(ctx,SSL_CTRL_GET_EXTRA_CHAIN_CERTS,0,px509); 1823 } 1824 auto SSL_CTX_clear_extra_chain_certs()(SSL_CTX* ctx, void* x509) { 1825 return SSL_CTX_ctrl(ctx,SSL_CTRL_CLEAR_EXTRA_CHAIN_CERTS,0,null); 1826 } 1827 1828 static if (OPENSSL_VERSION_AT_LEAST(1, 1, 0)) 1829 { 1830 enum SSL_CTRL_SET_MIN_PROTO_VERSION = 123; 1831 enum SSL_CTRL_SET_MAX_PROTO_VERSION = 124; 1832 1833 auto SSL_CTX_set_min_proto_version(SSL_CTX* ctx, int version_) { 1834 return SSL_CTX_ctrl(ctx, SSL_CTRL_SET_MIN_PROTO_VERSION, version_, null); 1835 } 1836 auto SSL_CTX_set_max_proto_version(SSL_CTX* ctx, int version_) { 1837 return SSL_CTX_ctrl(ctx, SSL_CTRL_SET_MAX_PROTO_VERSION, version_, null); 1838 } 1839 auto SSL_set_min_proto_version(SSL* s, int version_) { 1840 return SSL_ctrl(s, SSL_CTRL_SET_MIN_PROTO_VERSION, version_, null); 1841 } 1842 auto SSL_set_max_proto_version(SSL* s, int version_) { 1843 return SSL_ctrl(s, SSL_CTRL_SET_MAX_PROTO_VERSION, version_, null); 1844 } 1845 1846 static if (OPENSSL_VERSION_AT_LEAST(1, 1, 1)) 1847 { 1848 enum SSL_CTRL_GET_MIN_PROTO_VERSION = 130; 1849 enum SSL_CTRL_GET_MAX_PROTO_VERSION = 131; 1850 1851 auto SSL_CTX_get_min_proto_version(SSL_CTX* ctx) { 1852 return SSL_CTX_ctrl(ctx, SSL_CTRL_GET_MIN_PROTO_VERSION, 0, null); 1853 } 1854 auto SSL_CTX_get_max_proto_version(SSL_CTX* ctx) { 1855 return SSL_CTX_ctrl(ctx, SSL_CTRL_GET_MAX_PROTO_VERSION, 0, null); 1856 } 1857 auto SSL_get_min_proto_version(SSL* s) { 1858 return SSL_ctrl(s, SSL_CTRL_GET_MIN_PROTO_VERSION, 0, null); 1859 } 1860 auto SSL_get_max_proto_version(SSL* s) { 1861 return SSL_ctrl(s, SSL_CTRL_GET_MAX_PROTO_VERSION, 0, null); 1862 } 1863 } 1864 } 1865 1866 version(OPENSSL_NO_BIO) {} else { 1867 BIO_METHOD* BIO_f_ssl(); 1868 BIO* BIO_new_ssl(SSL_CTX* ctx,int client); 1869 BIO* BIO_new_ssl_connect(SSL_CTX* ctx); 1870 BIO* BIO_new_buffer_ssl_connect(SSL_CTX* ctx); 1871 int BIO_ssl_copy_session_id(BIO* to,BIO* from); 1872 void BIO_ssl_shutdown(BIO* ssl_bio); 1873 1874 } 1875 1876 int SSL_CTX_set_cipher_list(SSL_CTX*,const(char)* str); 1877 SSL_CTX* SSL_CTX_new(const(SSL_METHOD)* meth); 1878 void SSL_CTX_free(SSL_CTX*); 1879 c_long SSL_CTX_set_timeout(SSL_CTX* ctx,c_long t); 1880 c_long SSL_CTX_get_timeout(const(SSL_CTX)* ctx); 1881 X509_STORE* SSL_CTX_get_cert_store(const(SSL_CTX)*); 1882 void SSL_CTX_set_cert_store(SSL_CTX*,X509_STORE*); 1883 int SSL_want(const(SSL)* s); 1884 int SSL_clear(SSL* s); 1885 1886 void SSL_CTX_flush_sessions(SSL_CTX* ctx,c_long tm); 1887 1888 const(SSL_CIPHER)* SSL_get_current_cipher(const(SSL)* s); 1889 int SSL_CIPHER_get_bits(const(SSL_CIPHER)* c,int* alg_bits); 1890 char* SSL_CIPHER_get_version(const(SSL_CIPHER)* c); 1891 const(char)* SSL_CIPHER_get_name(const(SSL_CIPHER)* c); 1892 c_ulong SSL_CIPHER_get_id(const SSL_CIPHER *c); 1893 1894 int SSL_get_fd(const(SSL)* s); 1895 int SSL_get_rfd(const(SSL)* s); 1896 int SSL_get_wfd(const(SSL)* s); 1897 const(char)* SSL_get_cipher_list(const(SSL)* s,int n); 1898 char* SSL_get_shared_ciphers(const(SSL)* s, char* buf, int len); 1899 int SSL_get_read_ahead(const(SSL)* s); 1900 int SSL_pending(const(SSL)* s); 1901 version(OPENSSL_NO_SOCK) {} else { 1902 int SSL_set_fd(SSL* s, int fd); 1903 int SSL_set_rfd(SSL* s, int fd); 1904 int SSL_set_wfd(SSL* s, int fd); 1905 } 1906 version(OPENSSL_NO_BIO) {} else { 1907 void SSL_set_bio(SSL* s, BIO* rbio,BIO* wbio); 1908 BIO* SSL_get_rbio(const(SSL)* s); 1909 BIO* SSL_get_wbio(const(SSL)* s); 1910 } 1911 int SSL_set_cipher_list(SSL* s, const(char)* str); 1912 void SSL_set_read_ahead(SSL* s, int yes); 1913 int SSL_get_verify_mode(const(SSL)* s); 1914 int SSL_get_verify_depth(const(SSL)* s); 1915 int function(int,X509_STORE_CTX*) SSL_get_verify_callback(const(SSL)* s); 1916 void SSL_set_verify(SSL* s, int mode, 1917 ExternC!(int function(int ok,X509_STORE_CTX* ctx)) callback); 1918 void SSL_set_verify_depth(SSL* s, int depth); 1919 version(OPENSSL_NO_RSA) {} else { 1920 int SSL_use_RSAPrivateKey(SSL* ssl, RSA* rsa); 1921 } 1922 int SSL_use_RSAPrivateKey_ASN1(SSL* ssl, ubyte* d, c_long len); 1923 int SSL_use_PrivateKey(SSL* ssl, EVP_PKEY* pkey); 1924 int SSL_use_PrivateKey_ASN1(int pk,SSL* ssl, const(ubyte)* d, c_long len); 1925 int SSL_use_certificate(SSL* ssl, X509* x); 1926 int SSL_use_certificate_ASN1(SSL* ssl, const(ubyte)* d, int len); 1927 1928 version (OPENSSL_NO_STDIO) {} else { 1929 int SSL_use_RSAPrivateKey_file(SSL* ssl, const(char)* file, int type); 1930 int SSL_use_PrivateKey_file(SSL* ssl, const(char)* file, int type); 1931 int SSL_use_certificate_file(SSL* ssl, const(char)* file, int type); 1932 int SSL_CTX_use_RSAPrivateKey_file(SSL_CTX* ctx, const(char)* file, int type); 1933 int SSL_CTX_use_PrivateKey_file(SSL_CTX* ctx, const(char)* file, int type); 1934 int SSL_CTX_use_certificate_file(SSL_CTX* ctx, const(char)* file, int type); 1935 int SSL_CTX_use_certificate_chain_file(SSL_CTX* ctx, const(char)* file); /* PEM type */ 1936 STACK_OF!(X509_NAME) *SSL_load_client_CA_file(const(char)* file); 1937 int SSL_add_file_cert_subjects_to_stack(STACK_OF!(X509_NAME) *stackCAs, 1938 const(char)* file); 1939 //#ifndef OPENSSL_SYS_VMS 1940 //#ifndef OPENSSL_SYS_MACINTOSH_CLASSIC /* XXXXX: Better scheme needed! [was: #ifndef MAC_OS_pre_X] */ 1941 int SSL_add_dir_cert_subjects_to_stack(STACK_OF!(X509_NAME) *stackCAs, 1942 const(char)* dir); 1943 //#endif 1944 //#endif 1945 } 1946 1947 void SSL_load_error_strings(); 1948 const(char)* SSL_state_string(const(SSL)* s); 1949 const(char)* SSL_rstate_string(const(SSL)* s); 1950 const(char)* SSL_state_string_long(const(SSL)* s); 1951 const(char)* SSL_rstate_string_long(const(SSL)* s); 1952 c_long SSL_SESSION_get_time(const(SSL_SESSION)* s); 1953 c_long SSL_SESSION_set_time(SSL_SESSION* s, c_long t); 1954 c_long SSL_SESSION_get_timeout(const(SSL_SESSION)* s); 1955 c_long SSL_SESSION_set_timeout(SSL_SESSION* s, c_long t); 1956 void SSL_copy_session_id(SSL* to,const(SSL)* from); 1957 X509 *SSL_SESSION_get0_peer(SSL_SESSION *s); 1958 int SSL_SESSION_set1_id_context(SSL_SESSION *s,const(ubyte)* sid_ctx, 1959 uint sid_ctx_len); 1960 1961 SSL_SESSION* SSL_SESSION_new(); 1962 const(ubyte)* SSL_SESSION_get_id(const(SSL_SESSION)* s, 1963 uint* len); 1964 uint SSL_SESSION_get_compress_id(const SSL_SESSION *s); 1965 version(OPENSSL_NO_FP_API) {} else { 1966 int SSL_SESSION_print_fp(FILE* fp,const(SSL_SESSION)* ses); 1967 } 1968 version(OPENSSL_NO_BIO) {} else { 1969 int SSL_SESSION_print(BIO* fp,const(SSL_SESSION)* ses); 1970 } 1971 void SSL_SESSION_free(SSL_SESSION* ses); 1972 int i2d_SSL_SESSION(SSL_SESSION* in_,ubyte** pp); 1973 int SSL_set_session(SSL* to, SSL_SESSION* session); 1974 int SSL_CTX_add_session(SSL_CTX* s, SSL_SESSION* c); 1975 int SSL_CTX_remove_session(SSL_CTX*,SSL_SESSION* c); 1976 int SSL_CTX_set_generate_session_id(SSL_CTX*, GEN_SESSION_CB); 1977 int SSL_set_generate_session_id(SSL*, GEN_SESSION_CB); 1978 int SSL_has_matching_session_id(const(SSL)* ssl, const(ubyte)* id, 1979 uint id_len); 1980 SSL_SESSION* d2i_SSL_SESSION(SSL_SESSION** a,const(ubyte)** pp, 1981 c_long length); 1982 1983 //#ifdef HEADER_X509_H 1984 static if (OPENSSL_VERSION_BEFORE(3, 0, 0)) 1985 { 1986 X509* SSL_get_peer_certificate(const(SSL)* s); 1987 } 1988 else 1989 { 1990 X509* SSL_get0_peer_certificate(const(SSL)* s); 1991 X509* SSL_get1_peer_certificate(const(SSL)* s); 1992 alias SSL_get_peer_certificate = SSL_get1_peer_certificate; 1993 } 1994 //#endif 1995 1996 STACK_OF!(X509) *SSL_get_peer_cert_chain(const(SSL)* s); 1997 1998 int SSL_CTX_get_verify_mode(const(SSL_CTX)* ctx); 1999 int SSL_CTX_get_verify_depth(const(SSL_CTX)* ctx); 2000 ExternC!(int function(int,X509_STORE_CTX*)) SSL_CTX_get_verify_callback(const(SSL_CTX)* ctx); 2001 void SSL_CTX_set_verify(SSL_CTX* ctx,int mode, 2002 ExternC!(int function(int, X509_STORE_CTX*)) callback); 2003 void SSL_CTX_set_verify_depth(SSL_CTX* ctx,int depth); 2004 void SSL_CTX_set_cert_verify_callback(SSL_CTX* ctx, ExternC!(int function(X509_STORE_CTX*,void*)) cb, void* arg); 2005 version(OPENSSL_NO_RSA) {} else { 2006 int SSL_CTX_use_RSAPrivateKey(SSL_CTX* ctx, RSA* rsa); 2007 } 2008 int SSL_CTX_use_RSAPrivateKey_ASN1(SSL_CTX* ctx, const(ubyte)* d, c_long len); 2009 int SSL_CTX_use_PrivateKey(SSL_CTX* ctx, EVP_PKEY* pkey); 2010 int SSL_CTX_use_PrivateKey_ASN1(int pk,SSL_CTX* ctx, 2011 const(ubyte)* d, c_long len); 2012 int SSL_CTX_use_certificate(SSL_CTX* ctx, X509* x); 2013 int SSL_CTX_use_certificate_ASN1(SSL_CTX* ctx, int len, const(ubyte)* d); 2014 2015 void SSL_CTX_set_default_passwd_cb(SSL_CTX* ctx, pem_password_cb* cb); 2016 void SSL_CTX_set_default_passwd_cb_userdata(SSL_CTX* ctx, void* u); 2017 2018 int SSL_CTX_check_private_key(const(SSL_CTX)* ctx); 2019 int SSL_check_private_key(const(SSL)* ctx); 2020 2021 int SSL_CTX_set_session_id_context(SSL_CTX* ctx,const(ubyte)* sid_ctx, 2022 uint sid_ctx_len); 2023 2024 SSL* SSL_new(SSL_CTX* ctx); 2025 int SSL_set_session_id_context(SSL* ssl,const(ubyte)* sid_ctx, 2026 uint sid_ctx_len); 2027 2028 int SSL_CTX_set_purpose(SSL_CTX* s, int purpose); 2029 int SSL_set_purpose(SSL* s, int purpose); 2030 int SSL_CTX_set_trust(SSL_CTX* s, int trust); 2031 int SSL_set_trust(SSL* s, int trust); 2032 2033 int SSL_set1_host(SSL* s, const(char)* hostname); 2034 int SSL_add1_host(SSL* s, const(char)* hostname); 2035 const(char)* SSL_get0_peername(SSL* s); 2036 void SSL_set_hostflags(SSL* s, uint flags); 2037 2038 int SSL_CTX_set1_param(SSL_CTX* ctx, X509_VERIFY_PARAM* vpm); 2039 int SSL_set1_param(SSL* ssl, X509_VERIFY_PARAM* vpm); 2040 2041 version(OPENSSL_NO_SRP) {} else { 2042 int SSL_CTX_set_srp_username(SSL_CTX *ctx,char *name); 2043 int SSL_CTX_set_srp_password(SSL_CTX *ctx,char *password); 2044 int SSL_CTX_set_srp_strength(SSL_CTX *ctx, int strength); 2045 int SSL_CTX_set_srp_client_pwd_callback(SSL_CTX *ctx, 2046 ExternC!(char function(SSL *,void *)) cb); 2047 int SSL_CTX_set_srp_verify_param_callback(SSL_CTX *ctx, 2048 ExternC!(char function(SSL *,void *)) cb); 2049 int SSL_CTX_set_srp_username_callback(SSL_CTX *ctx, 2050 ExternC!(char function(SSL *,int *,void *)) cb); 2051 int SSL_CTX_set_srp_cb_arg(SSL_CTX *ctx, void *arg); 2052 2053 int SSL_set_srp_server_param(SSL *s, const BIGNUM *N, const BIGNUM *g, 2054 BIGNUM *sa, BIGNUM *v, char *info); 2055 int SSL_set_srp_server_param_pw(SSL *s, const char *user, const char *pass, 2056 const char *grp); 2057 2058 BIGNUM *SSL_get_srp_g(SSL *s); 2059 BIGNUM *SSL_get_srp_N(SSL *s); 2060 2061 char *SSL_get_srp_username(SSL *s); 2062 char *SSL_get_srp_userinfo(SSL *s); 2063 } 2064 2065 void SSL_free(SSL* ssl); 2066 int SSL_accept(SSL* ssl); 2067 int SSL_connect(SSL* ssl); 2068 int SSL_read(SSL* ssl,void* buf,int num); 2069 int SSL_peek(SSL* ssl,void* buf,int num); 2070 int SSL_write(SSL* ssl,const(void)* buf,int num); 2071 c_long SSL_ctrl(SSL* ssl,int cmd, c_long larg, void* parg); 2072 c_long SSL_callback_ctrl(SSL*, int, ExternC!(void function()) ); 2073 c_long SSL_CTX_ctrl(SSL_CTX* ctx,int cmd, c_long larg, void* parg); 2074 c_long SSL_CTX_callback_ctrl(SSL_CTX*, int, ExternC!(void function()) ); 2075 2076 int SSL_get_error(const(SSL)* s,int ret_code); 2077 const(char)* SSL_get_version(const(SSL)* s); 2078 2079 /* This sets the 'default' SSL version that SSL_new() will create */ 2080 int SSL_CTX_set_ssl_version(SSL_CTX* ctx, const(SSL_METHOD)* meth); 2081 2082 const(SSL_METHOD)* SSLv3_method(); /* SSLv3 */ 2083 const(SSL_METHOD)* SSLv3_server_method(); /* SSLv3 */ 2084 const(SSL_METHOD)* SSLv3_client_method(); /* SSLv3 */ 2085 2086 static if (OPENSSL_VERSION_BEFORE(1, 1, 0)) 2087 { 2088 const(SSL_METHOD)* SSLv23_method(); 2089 const(SSL_METHOD)* SSLv23_server_method(); 2090 const(SSL_METHOD)* SSLv23_client_method(); 2091 2092 /// Forward compatible alias 2093 alias TLS_method = SSLv23_method; 2094 alias TLS_server_method = SSLv23_server_method; 2095 alias TLS_client_method = SSLv23_server_method; 2096 } 2097 else 2098 { 2099 const(SSL_METHOD)* TLS_method(); /* handshake SSLv3 or later, negotiate to highest possible security */ 2100 const(SSL_METHOD)* TLS_server_method(); /* see above */ 2101 const(SSL_METHOD)* TLS_client_method(); /* see above */ 2102 } 2103 2104 const(SSL_METHOD)* TLSv1_method(); /* TLSv1.0 */ 2105 const(SSL_METHOD)* TLSv1_server_method(); /* TLSv1.0 */ 2106 const(SSL_METHOD)* TLSv1_client_method(); /* TLSv1.0 */ 2107 2108 const(SSL_METHOD)* TLSv1_1_method(); /* TLSv1.1 */ 2109 const(SSL_METHOD)* TLSv1_1_server_method(); /* TLSv1.1 */ 2110 const(SSL_METHOD)* TLSv1_1_client_method(); /* TLSv1.1 */ 2111 2112 const(SSL_METHOD)* TLSv1_2_method(); /* TLSv1.2 */ 2113 const(SSL_METHOD)* TLSv1_2_server_method(); /* TLSv1.2 */ 2114 const(SSL_METHOD)* TLSv1_2_client_method(); /* TLSv1.2 */ 2115 2116 const(SSL_METHOD)* DTLSv1_method(); /* DTLSv1.0 */ 2117 const(SSL_METHOD)* DTLSv1_server_method(); /* DTLSv1.0 */ 2118 const(SSL_METHOD)* DTLSv1_client_method(); /* DTLSv1.0 */ 2119 2120 STACK_OF!(SSL_CIPHER) *SSL_get_ciphers(const(SSL)* s); 2121 2122 int SSL_do_handshake(SSL* s); 2123 int SSL_renegotiate(SSL* s); 2124 int SSL_renegotiate_abbreviated(SSL *s); 2125 int SSL_renegotiate_pending(SSL* s); 2126 int SSL_shutdown(SSL* s); 2127 2128 const(SSL_METHOD)* SSL_get_ssl_method(SSL* s); 2129 int SSL_set_ssl_method(SSL* s, const(SSL_METHOD)* method); 2130 const(char)* SSL_alert_type_string_long(int value); 2131 const(char)* SSL_alert_type_string(int value); 2132 const(char)* SSL_alert_desc_string_long(int value); 2133 const(char)* SSL_alert_desc_string(int value); 2134 2135 void SSL_set_client_CA_list(SSL* s, STACK_OF!(X509_NAME) *name_list); 2136 void SSL_CTX_set_client_CA_list(SSL_CTX* ctx, STACK_OF!(X509_NAME) *name_list); 2137 STACK_OF!(X509_NAME) *SSL_get_client_CA_list(const(SSL)* s); 2138 STACK_OF!(X509_NAME) *SSL_CTX_get_client_CA_list(const(SSL_CTX)* s); 2139 int SSL_add_client_CA(SSL* ssl,X509* x); 2140 int SSL_CTX_add_client_CA(SSL_CTX* ctx,X509* x); 2141 2142 void SSL_set_connect_state(SSL* s); 2143 void SSL_set_accept_state(SSL* s); 2144 2145 c_long SSL_get_default_timeout(const(SSL)* s); 2146 2147 int SSL_library_init(); 2148 2149 char* SSL_CIPHER_description(const(SSL_CIPHER)*,char* buf,int size); 2150 STACK_OF!(X509_NAME) *SSL_dup_CA_list(STACK_OF!(X509_NAME) *sk); 2151 2152 SSL* SSL_dup(SSL* ssl); 2153 2154 X509* SSL_get_certificate(const(SSL)* ssl); 2155 /* EVP_PKEY */ evp_pkey_st* SSL_get_privatekey(SSL* ssl); 2156 2157 void SSL_CTX_set_quiet_shutdown(SSL_CTX* ctx,int mode); 2158 int SSL_CTX_get_quiet_shutdown(const(SSL_CTX)* ctx); 2159 void SSL_set_quiet_shutdown(SSL* ssl,int mode); 2160 int SSL_get_quiet_shutdown(const(SSL)* ssl); 2161 void SSL_set_shutdown(SSL* ssl,int mode); 2162 int SSL_get_shutdown(const(SSL)* ssl); 2163 int SSL_version(const(SSL)* ssl); 2164 int SSL_CTX_set_default_verify_paths(SSL_CTX* ctx); 2165 int SSL_CTX_load_verify_locations(SSL_CTX* ctx, const(char)* CAfile, 2166 const(char)* CApath); 2167 alias SSL_get_session SSL_get0_session; /* just peek at pointer */ 2168 SSL_SESSION* SSL_get_session(const(SSL)* ssl); 2169 SSL_SESSION* SSL_get1_session(SSL* ssl); /* obtain a reference count */ 2170 SSL_CTX* SSL_get_SSL_CTX(const(SSL)* ssl); 2171 SSL_CTX* SSL_set_SSL_CTX(SSL* ssl, SSL_CTX* ctx); 2172 void SSL_set_info_callback(SSL* ssl, 2173 ExternC!(void function(const(SSL)* ssl,int type,int val)) cb); 2174 ExternC!(void function(const(SSL)* ssl,int type,int val)) SSL_get_info_callback(const(SSL)* ssl); 2175 OSSL_HANDSHAKE_STATE SSL_get_state(const SSL *ssl); 2176 2177 void SSL_set_verify_result(SSL* ssl,c_long v); 2178 c_long SSL_get_verify_result(const(SSL)* ssl); 2179 2180 int SSL_set_ex_data(SSL* ssl,int idx,void* data); 2181 void* SSL_get_ex_data(const(SSL)* ssl,int idx); 2182 2183 static if (OPENSSL_VERSION_BEFORE(1, 1, 0)) 2184 { 2185 int SSL_get_ex_new_index(c_long argl, void* argp, CRYPTO_EX_new* new_func, 2186 CRYPTO_EX_dup* dup_func, CRYPTO_EX_free* free_func); 2187 int SSL_SESSION_get_ex_new_index(c_long argl, void* argp, CRYPTO_EX_new* new_func, 2188 CRYPTO_EX_dup* dup_func, CRYPTO_EX_free* free_func); 2189 int SSL_CTX_get_ex_new_index(c_long argl, void* argp, CRYPTO_EX_new* new_func, 2190 CRYPTO_EX_dup* dup_func, CRYPTO_EX_free* free_func); 2191 } 2192 else 2193 { 2194 auto SSL_get_ex_new_index () (c_long l, void* p, CRYPTO_EX_new* newf, 2195 CRYPTO_EX_dup* dupf, CRYPTO_EX_free* freef) 2196 { 2197 return CRYPTO_get_ex_new_index(CRYPTO_EX_INDEX_SSL, l, p, newf, dupf, freef); 2198 } 2199 2200 auto SSL_SESSION_get_ex_new_index () (c_long l, void* p, CRYPTO_EX_new* newf, 2201 CRYPTO_EX_dup* dupf, CRYPTO_EX_free* freef) 2202 { 2203 return CRYPTO_get_ex_new_index(CRYPTO_EX_INDEX_SSL_SESSION, l, p, newf, dupf, freef); 2204 } 2205 2206 auto SSL_CTX_get_ex_new_index () (c_long l, void* p, CRYPTO_EX_new* newf, 2207 CRYPTO_EX_dup* dupf, CRYPTO_EX_free* freef) 2208 { 2209 return CRYPTO_get_ex_new_index(CRYPTO_EX_INDEX_SSL_CTX, l, p, newf, dupf, freef); 2210 } 2211 } 2212 2213 int SSL_SESSION_set_ex_data(SSL_SESSION* ss,int idx,void* data); 2214 void* SSL_SESSION_get_ex_data(const(SSL_SESSION)* ss,int idx); 2215 2216 int SSL_CTX_set_ex_data(SSL_CTX* ssl,int idx,void* data); 2217 void* SSL_CTX_get_ex_data(const(SSL_CTX)* ssl,int idx); 2218 2219 int SSL_get_ex_data_X509_STORE_CTX_idx(); 2220 2221 auto SSL_CTX_sess_set_cache_size()(SSL_CTX* ctx, c_long t) { 2222 return SSL_CTX_ctrl(ctx,SSL_CTRL_SET_SESS_CACHE_SIZE,t,null); 2223 } 2224 auto SSL_CTX_sess_get_cache_size()(SSL_CTX* ctx) { 2225 return SSL_CTX_ctrl(ctx,SSL_CTRL_GET_SESS_CACHE_SIZE,0,null); 2226 } 2227 auto SSL_CTX_set_session_cache_mode()(SSL_CTX* ctx, c_long m) { 2228 return SSL_CTX_ctrl(ctx,SSL_CTRL_SET_SESS_CACHE_MODE,m,null); 2229 } 2230 auto SSL_CTX_get_session_cache_mode()(SSL_CTX* ctx) { 2231 return SSL_CTX_ctrl(ctx,SSL_CTRL_GET_SESS_CACHE_MODE,0,null); 2232 } 2233 2234 alias SSL_CTX_get_read_ahead SSL_CTX_get_default_read_ahead; 2235 alias SSL_CTX_set_read_ahead SSL_CTX_set_default_read_ahead; 2236 auto SSL_CTX_get_read_ahead()(SSL_CTX* ctx) { 2237 return SSL_CTX_ctrl(ctx,SSL_CTRL_GET_READ_AHEAD,0,null); 2238 } 2239 auto SSL_CTX_set_read_ahead()(SSL_CTX* ctx, c_long m) { 2240 return SSL_CTX_ctrl(ctx,SSL_CTRL_SET_READ_AHEAD,m,null); 2241 } 2242 auto SSL_CTX_get_max_cert_list()(SSL_CTX* ctx) { 2243 return SSL_CTX_ctrl(ctx,SSL_CTRL_GET_MAX_CERT_LIST,0,null); 2244 } 2245 auto SSL_CTX_set_max_cert_list()(SSL_CTX* ctx, c_long m) { 2246 return SSL_CTX_ctrl(ctx,SSL_CTRL_SET_MAX_CERT_LIST,m,null); 2247 } 2248 auto SSL_get_max_cert_list()(SSL* ssl) { 2249 SSL_ctrl(ssl,SSL_CTRL_GET_MAX_CERT_LIST,0,null); 2250 } 2251 auto SSL_set_max_cert_list()(SSL* ssl,c_long m) { 2252 SSL_ctrl(ssl,SSL_CTRL_SET_MAX_CERT_LIST,m,null); 2253 } 2254 2255 auto SSL_CTX_set_max_send_fragment()(SSL_CTX* ctx, c_long m) { 2256 return SSL_CTX_ctrl(ctx,SSL_CTRL_SET_MAX_SEND_FRAGMENT,m,null); 2257 } 2258 auto SSL_set_max_send_fragment()(SSL* ssl,m) { 2259 SSL_ctrl(ssl,SSL_CTRL_SET_MAX_SEND_FRAGMENT,m,null); 2260 } 2261 2262 /* NB: the keylength is only applicable when is_export is true */ 2263 version(OPENSSL_NO_RSA) {} else { 2264 void SSL_CTX_set_tmp_rsa_callback(SSL_CTX* ctx, 2265 ExternC!(RSA* function(SSL* ssl,int is_export, 2266 int keylength)) cb); 2267 2268 void SSL_set_tmp_rsa_callback(SSL* ssl, 2269 ExternC!(RSA* function(SSL* ssl,int is_export, 2270 int keylength)) cb); 2271 } 2272 version(OPENSSL_NO_DH) {} else { 2273 void SSL_CTX_set_tmp_dh_callback(SSL_CTX* ctx, 2274 ExternC!(DH* function(SSL* ssl,int is_export, 2275 int keylength)) dh); 2276 void SSL_set_tmp_dh_callback(SSL* ssl, 2277 ExternC!(DH* function(SSL* ssl,int is_export, 2278 int keylength)) dh); 2279 } 2280 version(OPENSSL_NO_ECDH) {} else { 2281 void SSL_CTX_set_tmp_ecdh_callback(SSL_CTX* ctx, 2282 ExternC!(EC_KEY* function(SSL* ssl,int is_export, 2283 int keylength)) ecdh); 2284 void SSL_set_tmp_ecdh_callback(SSL* ssl, 2285 ExternC!(EC_KEY* function(SSL* ssl,int is_export, 2286 int keylength)) ecdh); 2287 } 2288 2289 version(OPENSSL_NO_COMP) { 2290 const(void)* SSL_get_current_compression(SSL* s); 2291 const(void)* SSL_get_current_expansion(SSL* s); 2292 const(char)* SSL_COMP_get_name(const(void)* comp); 2293 void* SSL_COMP_get_compression_methods(); 2294 int SSL_COMP_add_compression_method(int id,void* cm); 2295 } else { 2296 const(COMP_METHOD)* SSL_get_current_compression(SSL* s); 2297 const(COMP_METHOD)* SSL_get_current_expansion(SSL* s); 2298 const(char)* SSL_COMP_get_name(const(COMP_METHOD)* comp); 2299 STACK_OF!(SSL_COMP) *SSL_COMP_get_compression_methods(); 2300 int SSL_COMP_add_compression_method(int id,COMP_METHOD* cm); 2301 } 2302 2303 /* TLS extensions functions */ 2304 int SSL_set_session_ticket_ext(SSL* s, void* ext_data, int ext_len); 2305 2306 int SSL_set_session_ticket_ext_cb(SSL* s, tls_session_ticket_ext_cb_fn cb, 2307 void* arg); 2308 2309 /* Pre-shared secret session resumption functions */ 2310 int SSL_set_session_secret_cb(SSL* s, tls_session_secret_cb_fn tls_session_secret_cb, void* arg); 2311 2312 void SSL_set_debug(SSL *s, int debug_); 2313 int SSL_cache_hit(SSL *s); 2314 2315 /* BEGIN ERROR CODES */ 2316 /* The following lines are auto generated by the script mkerr.pl. Any changes 2317 * made after this point may be overwritten when the script is next run. 2318 */ 2319 void ERR_load_SSL_strings(); 2320 2321 /* Error codes for the SSL functions. */ 2322 2323 /* Function codes. */ 2324 enum SSL_F_CLIENT_CERTIFICATE = 100; 2325 enum SSL_F_CLIENT_FINISHED = 167; 2326 enum SSL_F_CLIENT_HELLO = 101; 2327 enum SSL_F_CLIENT_MASTER_KEY = 102; 2328 enum SSL_F_D2I_SSL_SESSION = 103; 2329 enum SSL_F_DO_DTLS1_WRITE = 245; 2330 enum SSL_F_DO_SSL3_WRITE = 104; 2331 enum SSL_F_DTLS1_ACCEPT = 246; 2332 enum SSL_F_DTLS1_ADD_CERT_TO_BUF = 295; 2333 enum SSL_F_DTLS1_BUFFER_RECORD = 247; 2334 enum SSL_F_DTLS1_CHECK_TIMEOUT_NUM = 316; 2335 enum SSL_F_DTLS1_CLIENT_HELLO = 248; 2336 enum SSL_F_DTLS1_CONNECT = 249; 2337 enum SSL_F_DTLS1_ENC = 250; 2338 enum SSL_F_DTLS1_GET_HELLO_VERIFY = 251; 2339 enum SSL_F_DTLS1_GET_MESSAGE = 252; 2340 enum SSL_F_DTLS1_GET_MESSAGE_FRAGMENT = 253; 2341 enum SSL_F_DTLS1_GET_RECORD = 254; 2342 enum SSL_F_DTLS1_HANDLE_TIMEOUT = 297; 2343 enum SSL_F_DTLS1_HEARTBEAT = 305; 2344 enum SSL_F_DTLS1_OUTPUT_CERT_CHAIN = 255; 2345 enum SSL_F_DTLS1_PREPROCESS_FRAGMENT = 288; 2346 enum SSL_F_DTLS1_PROCESS_OUT_OF_SEQ_MESSAGE = 256; 2347 enum SSL_F_DTLS1_PROCESS_RECORD = 257; 2348 enum SSL_F_DTLS1_READ_BYTES = 258; 2349 enum SSL_F_DTLS1_READ_FAILED = 259; 2350 enum SSL_F_DTLS1_SEND_CERTIFICATE_REQUEST = 260; 2351 enum SSL_F_DTLS1_SEND_CLIENT_CERTIFICATE = 261; 2352 enum SSL_F_DTLS1_SEND_CLIENT_KEY_EXCHANGE = 262; 2353 enum SSL_F_DTLS1_SEND_CLIENT_VERIFY = 263; 2354 enum SSL_F_DTLS1_SEND_HELLO_VERIFY_REQUEST = 264; 2355 enum SSL_F_DTLS1_SEND_SERVER_CERTIFICATE = 265; 2356 enum SSL_F_DTLS1_SEND_SERVER_HELLO = 266; 2357 enum SSL_F_DTLS1_SEND_SERVER_KEY_EXCHANGE = 267; 2358 enum SSL_F_DTLS1_WRITE_APP_DATA_BYTES = 268; 2359 enum SSL_F_GET_CLIENT_FINISHED = 105; 2360 enum SSL_F_GET_CLIENT_HELLO = 106; 2361 enum SSL_F_GET_CLIENT_MASTER_KEY = 107; 2362 enum SSL_F_GET_SERVER_FINISHED = 108; 2363 enum SSL_F_GET_SERVER_HELLO = 109; 2364 enum SSL_F_GET_SERVER_VERIFY = 110; 2365 enum SSL_F_I2D_SSL_SESSION = 111; 2366 enum SSL_F_READ_N = 112; 2367 enum SSL_F_REQUEST_CERTIFICATE = 113; 2368 enum SSL_F_SERVER_FINISH = 239; 2369 enum SSL_F_SERVER_HELLO = 114; 2370 enum SSL_F_SERVER_VERIFY = 240; 2371 enum SSL_F_SSL23_ACCEPT = 115; 2372 enum SSL_F_SSL23_CLIENT_HELLO = 116; 2373 enum SSL_F_SSL23_CONNECT = 117; 2374 enum SSL_F_SSL23_GET_CLIENT_HELLO = 118; 2375 enum SSL_F_SSL23_GET_SERVER_HELLO = 119; 2376 enum SSL_F_SSL23_PEEK = 237; 2377 enum SSL_F_SSL23_READ = 120; 2378 enum SSL_F_SSL23_WRITE = 121; 2379 enum SSL_F_SSL2_ACCEPT = 122; 2380 enum SSL_F_SSL2_CONNECT = 123; 2381 enum SSL_F_SSL2_ENC_INIT = 124; 2382 enum SSL_F_SSL2_GENERATE_KEY_MATERIAL = 241; 2383 enum SSL_F_SSL2_PEEK = 234; 2384 enum SSL_F_SSL2_READ = 125; 2385 enum SSL_F_SSL2_READ_INTERNAL = 236; 2386 enum SSL_F_SSL2_SET_CERTIFICATE = 126; 2387 enum SSL_F_SSL2_WRITE = 127; 2388 enum SSL_F_SSL3_ACCEPT = 128; 2389 enum SSL_F_SSL3_ADD_CERT_TO_BUF = 296; 2390 enum SSL_F_SSL3_CALLBACK_CTRL = 233; 2391 enum SSL_F_SSL3_CHANGE_CIPHER_STATE = 129; 2392 enum SSL_F_SSL3_CHECK_CERT_AND_ALGORITHM = 130; 2393 enum SSL_F_SSL3_CHECK_CLIENT_HELLO = 304; 2394 enum SSL_F_SSL3_CLIENT_HELLO = 131; 2395 enum SSL_F_SSL3_CONNECT = 132; 2396 enum SSL_F_SSL3_CTRL = 213; 2397 enum SSL_F_SSL3_CTX_CTRL = 133; 2398 enum SSL_F_SSL3_DIGEST_CACHED_RECORDS = 293; 2399 enum SSL_F_SSL3_DO_CHANGE_CIPHER_SPEC = 292; 2400 enum SSL_F_SSL3_ENC = 134; 2401 enum SSL_F_SSL3_GENERATE_KEY_BLOCK = 238; 2402 enum SSL_F_SSL3_GET_CERTIFICATE_REQUEST = 135; 2403 enum SSL_F_SSL3_GET_CERT_STATUS = 289; 2404 enum SSL_F_SSL3_GET_CERT_VERIFY = 136; 2405 enum SSL_F_SSL3_GET_CLIENT_CERTIFICATE = 137; 2406 enum SSL_F_SSL3_GET_CLIENT_HELLO = 138; 2407 enum SSL_F_SSL3_GET_CLIENT_KEY_EXCHANGE = 139; 2408 enum SSL_F_SSL3_GET_FINISHED = 140; 2409 enum SSL_F_SSL3_GET_KEY_EXCHANGE = 141; 2410 enum SSL_F_SSL3_GET_MESSAGE = 142; 2411 enum SSL_F_SSL3_GET_NEW_SESSION_TICKET = 283; 2412 enum SSL_F_SSL3_GET_NEXT_PROTO = 306; 2413 enum SSL_F_SSL3_GET_RECORD = 143; 2414 enum SSL_F_SSL3_GET_SERVER_CERTIFICATE = 144; 2415 enum SSL_F_SSL3_GET_SERVER_DONE = 145; 2416 enum SSL_F_SSL3_GET_SERVER_HELLO = 146; 2417 enum SSL_F_SSL3_HANDSHAKE_MAC = 285; 2418 enum SSL_F_SSL3_NEW_SESSION_TICKET = 287; 2419 enum SSL_F_SSL3_OUTPUT_CERT_CHAIN = 147; 2420 enum SSL_F_SSL3_PEEK = 235; 2421 enum SSL_F_SSL3_READ_BYTES = 148; 2422 enum SSL_F_SSL3_READ_N = 149; 2423 enum SSL_F_SSL3_SEND_CERTIFICATE_REQUEST = 150; 2424 enum SSL_F_SSL3_SEND_CLIENT_CERTIFICATE = 151; 2425 enum SSL_F_SSL3_SEND_CLIENT_KEY_EXCHANGE = 152; 2426 enum SSL_F_SSL3_SEND_CLIENT_VERIFY = 153; 2427 enum SSL_F_SSL3_SEND_SERVER_CERTIFICATE = 154; 2428 enum SSL_F_SSL3_SEND_SERVER_HELLO = 242; 2429 enum SSL_F_SSL3_SEND_SERVER_KEY_EXCHANGE = 155; 2430 enum SSL_F_SSL3_SETUP_KEY_BLOCK = 157; 2431 enum SSL_F_SSL3_SETUP_READ_BUFFER = 156; 2432 enum SSL_F_SSL3_SETUP_WRITE_BUFFER = 291; 2433 enum SSL_F_SSL3_WRITE_BYTES = 158; 2434 enum SSL_F_SSL3_WRITE_PENDING = 159; 2435 enum SSL_F_SSL_ADD_CLIENTHELLO_RENEGOTIATE_EXT = 298; 2436 enum SSL_F_SSL_ADD_CLIENTHELLO_TLSEXT = 277; 2437 enum SSL_F_SSL_ADD_CLIENTHELLO_USE_SRTP_EXT = 307; 2438 enum SSL_F_SSL_ADD_DIR_CERT_SUBJECTS_TO_STACK = 215; 2439 enum SSL_F_SSL_ADD_FILE_CERT_SUBJECTS_TO_STACK = 216; 2440 enum SSL_F_SSL_ADD_SERVERHELLO_RENEGOTIATE_EXT = 299; 2441 enum SSL_F_SSL_ADD_SERVERHELLO_TLSEXT = 278; 2442 enum SSL_F_SSL_ADD_SERVERHELLO_USE_SRTP_EXT = 308; 2443 enum SSL_F_SSL_BAD_METHOD = 160; 2444 enum SSL_F_SSL_BYTES_TO_CIPHER_LIST = 161; 2445 enum SSL_F_SSL_CERT_DUP = 221; 2446 enum SSL_F_SSL_CERT_INST = 222; 2447 enum SSL_F_SSL_CERT_INSTANTIATE = 214; 2448 enum SSL_F_SSL_CERT_NEW = 162; 2449 enum SSL_F_SSL_CHECK_PRIVATE_KEY = 163; 2450 enum SSL_F_SSL_CHECK_SERVERHELLO_TLSEXT = 280; 2451 enum SSL_F_SSL_CHECK_SRVR_ECC_CERT_AND_ALG = 279; 2452 enum SSL_F_SSL_CIPHER_PROCESS_RULESTR = 230; 2453 enum SSL_F_SSL_CIPHER_STRENGTH_SORT = 231; 2454 enum SSL_F_SSL_CLEAR = 164; 2455 enum SSL_F_SSL_COMP_ADD_COMPRESSION_METHOD = 165; 2456 enum SSL_F_SSL_CREATE_CIPHER_LIST = 166; 2457 enum SSL_F_SSL_CTRL = 232; 2458 enum SSL_F_SSL_CTX_CHECK_PRIVATE_KEY = 168; 2459 enum SSL_F_SSL_CTX_MAKE_PROFILES = 309; 2460 enum SSL_F_SSL_CTX_NEW = 169; 2461 enum SSL_F_SSL_CTX_SET_ALPN_PROTOS = 343; 2462 enum SSL_F_SSL_CTX_SET_CIPHER_LIST = 269; 2463 enum SSL_F_SSL_CTX_SET_CLIENT_CERT_ENGINE = 290; 2464 enum SSL_F_SSL_CTX_SET_PURPOSE = 226; 2465 enum SSL_F_SSL_CTX_SET_SESSION_ID_CONTEXT = 219; 2466 enum SSL_F_SSL_CTX_SET_SSL_VERSION = 170; 2467 enum SSL_F_SSL_CTX_SET_TRUST = 229; 2468 enum SSL_F_SSL_CTX_USE_CERTIFICATE = 171; 2469 enum SSL_F_SSL_CTX_USE_CERTIFICATE_ASN1 = 172; 2470 enum SSL_F_SSL_CTX_USE_CERTIFICATE_CHAIN_FILE = 220; 2471 enum SSL_F_SSL_CTX_USE_CERTIFICATE_FILE = 173; 2472 enum SSL_F_SSL_CTX_USE_PRIVATEKEY = 174; 2473 enum SSL_F_SSL_CTX_USE_PRIVATEKEY_ASN1 = 175; 2474 enum SSL_F_SSL_CTX_USE_PRIVATEKEY_FILE = 176; 2475 enum SSL_F_SSL_CTX_USE_PSK_IDENTITY_HINT = 272; 2476 enum SSL_F_SSL_CTX_USE_RSAPRIVATEKEY = 177; 2477 enum SSL_F_SSL_CTX_USE_RSAPRIVATEKEY_ASN1 = 178; 2478 enum SSL_F_SSL_CTX_USE_RSAPRIVATEKEY_FILE = 179; 2479 enum SSL_F_SSL_DO_HANDSHAKE = 180; 2480 enum SSL_F_SSL_GET_NEW_SESSION = 181; 2481 enum SSL_F_SSL_GET_PREV_SESSION = 217; 2482 enum SSL_F_SSL_GET_SERVER_SEND_CERT = 182; 2483 enum SSL_F_SSL_GET_SERVER_SEND_PKEY = 317; 2484 enum SSL_F_SSL_GET_SIGN_PKEY = 183; 2485 enum SSL_F_SSL_INIT_WBIO_BUFFER = 184; 2486 enum SSL_F_SSL_LOAD_CLIENT_CA_FILE = 185; 2487 enum SSL_F_SSL_NEW = 186; 2488 enum SSL_F_SSL_PARSE_CLIENTHELLO_RENEGOTIATE_EXT = 300; 2489 enum SSL_F_SSL_PARSE_CLIENTHELLO_TLSEXT = 302; 2490 enum SSL_F_SSL_PARSE_CLIENTHELLO_USE_SRTP_EXT = 310; 2491 enum SSL_F_SSL_PARSE_SERVERHELLO_RENEGOTIATE_EXT = 301; 2492 enum SSL_F_SSL_PARSE_SERVERHELLO_TLSEXT = 303; 2493 enum SSL_F_SSL_PARSE_SERVERHELLO_USE_SRTP_EXT = 311; 2494 enum SSL_F_SSL_PEEK = 270; 2495 enum SSL_F_SSL_PREPARE_CLIENTHELLO_TLSEXT = 281; 2496 enum SSL_F_SSL_PREPARE_SERVERHELLO_TLSEXT = 282; 2497 enum SSL_F_SSL_READ = 223; 2498 enum SSL_F_SSL_RSA_PRIVATE_DECRYPT = 187; 2499 enum SSL_F_SSL_RSA_PUBLIC_ENCRYPT = 188; 2500 enum SSL_F_SSL_SESSION_NEW = 189; 2501 enum SSL_F_SSL_SESSION_PRINT_FP = 190; 2502 enum SSL_F_SSL_SESSION_SET1_ID_CONTEXT = 312; 2503 enum SSL_F_SSL_SESS_CERT_NEW = 225; 2504 enum SSL_F_SSL_SET_ALPN_PROTOS = 344; 2505 enum SSL_F_SSL_SET_CERT = 191; 2506 enum SSL_F_SSL_SET_CIPHER_LIST = 271; 2507 enum SSL_F_SSL_SET_FD = 192; 2508 enum SSL_F_SSL_SET_PKEY = 193; 2509 enum SSL_F_SSL_SET_PURPOSE = 227; 2510 enum SSL_F_SSL_SET_RFD = 194; 2511 enum SSL_F_SSL_SET_SESSION = 195; 2512 enum SSL_F_SSL_SET_SESSION_ID_CONTEXT = 218; 2513 enum SSL_F_SSL_SET_SESSION_TICKET_EXT = 294; 2514 enum SSL_F_SSL_SET_TRUST = 228; 2515 enum SSL_F_SSL_SET_WFD = 196; 2516 enum SSL_F_SSL_SHUTDOWN = 224; 2517 enum SSL_F_SSL_SRP_CTX_INIT = 313; 2518 enum SSL_F_SSL_UNDEFINED_CONST_FUNCTION = 243; 2519 enum SSL_F_SSL_UNDEFINED_FUNCTION = 197; 2520 enum SSL_F_SSL_UNDEFINED_VOID_FUNCTION = 244; 2521 enum SSL_F_SSL_USE_CERTIFICATE = 198; 2522 enum SSL_F_SSL_USE_CERTIFICATE_ASN1 = 199; 2523 enum SSL_F_SSL_USE_CERTIFICATE_FILE = 200; 2524 enum SSL_F_SSL_USE_PRIVATEKEY = 201; 2525 enum SSL_F_SSL_USE_PRIVATEKEY_ASN1 = 202; 2526 enum SSL_F_SSL_USE_PRIVATEKEY_FILE = 203; 2527 enum SSL_F_SSL_USE_PSK_IDENTITY_HINT = 273; 2528 enum SSL_F_SSL_USE_RSAPRIVATEKEY = 204; 2529 enum SSL_F_SSL_USE_RSAPRIVATEKEY_ASN1 = 205; 2530 enum SSL_F_SSL_USE_RSAPRIVATEKEY_FILE = 206; 2531 enum SSL_F_SSL_VERIFY_CERT_CHAIN = 207; 2532 enum SSL_F_SSL_WRITE = 208; 2533 enum SSL_F_TLS1_CERT_VERIFY_MAC = 286; 2534 enum SSL_F_TLS1_CHANGE_CIPHER_STATE = 209; 2535 enum SSL_F_TLS1_CHECK_SERVERHELLO_TLSEXT = 274; 2536 enum SSL_F_TLS1_ENC = 210; 2537 enum SSL_F_TLS1_EXPORT_KEYING_MATERIAL = 314; 2538 enum SSL_F_TLS1_HEARTBEAT = 315; 2539 enum SSL_F_TLS1_PREPARE_CLIENTHELLO_TLSEXT = 275; 2540 enum SSL_F_TLS1_PREPARE_SERVERHELLO_TLSEXT = 276; 2541 enum SSL_F_TLS1_PRF = 284; 2542 enum SSL_F_TLS1_SETUP_KEY_BLOCK = 211; 2543 enum SSL_F_WRITE_PENDING = 212; 2544 2545 /* Reason codes. */ 2546 enum SSL_R_APP_DATA_IN_HANDSHAKE = 100; 2547 enum SSL_R_ATTEMPT_TO_REUSE_SESSION_IN_DIFFERENT_CONTEXT = 272; 2548 enum SSL_R_BAD_ALERT_RECORD = 101; 2549 enum SSL_R_BAD_AUTHENTICATION_TYPE = 102; 2550 enum SSL_R_BAD_CHANGE_CIPHER_SPEC = 103; 2551 enum SSL_R_BAD_CHECKSUM = 104; 2552 enum SSL_R_BAD_DATA_RETURNED_BY_CALLBACK = 106; 2553 enum SSL_R_BAD_DECOMPRESSION = 107; 2554 enum SSL_R_BAD_DH_G_LENGTH = 108; 2555 enum SSL_R_BAD_DH_PUB_KEY_LENGTH = 109; 2556 enum SSL_R_BAD_DH_P_LENGTH = 110; 2557 enum SSL_R_BAD_DIGEST_LENGTH = 111; 2558 enum SSL_R_BAD_DSA_SIGNATURE = 112; 2559 enum SSL_R_BAD_ECC_CERT = 304; 2560 enum SSL_R_BAD_ECDSA_SIGNATURE = 305; 2561 enum SSL_R_BAD_ECPOINT = 306; 2562 enum SSL_R_BAD_HANDSHAKE_LENGTH = 332; 2563 enum SSL_R_BAD_HELLO_REQUEST = 105; 2564 enum SSL_R_BAD_LENGTH = 271; 2565 enum SSL_R_BAD_MAC_DECODE = 113; 2566 enum SSL_R_BAD_MAC_LENGTH = 333; 2567 enum SSL_R_BAD_MESSAGE_TYPE = 114; 2568 enum SSL_R_BAD_PACKET_LENGTH = 115; 2569 enum SSL_R_BAD_PROTOCOL_VERSION_NUMBER = 116; 2570 enum SSL_R_BAD_PSK_IDENTITY_HINT_LENGTH = 316; 2571 enum SSL_R_BAD_RESPONSE_ARGUMENT = 117; 2572 enum SSL_R_BAD_RSA_DECRYPT = 118; 2573 enum SSL_R_BAD_RSA_ENCRYPT = 119; 2574 enum SSL_R_BAD_RSA_E_LENGTH = 120; 2575 enum SSL_R_BAD_RSA_MODULUS_LENGTH = 121; 2576 enum SSL_R_BAD_RSA_SIGNATURE = 122; 2577 enum SSL_R_BAD_SIGNATURE = 123; 2578 enum SSL_R_BAD_SRP_A_LENGTH = 347; 2579 enum SSL_R_BAD_SRP_B_LENGTH = 348; 2580 enum SSL_R_BAD_SRP_G_LENGTH = 349; 2581 enum SSL_R_BAD_SRP_N_LENGTH = 350; 2582 enum SSL_R_BAD_SRP_S_LENGTH = 351; 2583 enum SSL_R_BAD_SRTP_MKI_VALUE = 352; 2584 enum SSL_R_BAD_SRTP_PROTECTION_PROFILE_LIST = 353; 2585 enum SSL_R_BAD_SSL_FILETYPE = 124; 2586 enum SSL_R_BAD_SSL_SESSION_ID_LENGTH = 125; 2587 enum SSL_R_BAD_STATE = 126; 2588 enum SSL_R_BAD_WRITE_RETRY = 127; 2589 enum SSL_R_BIO_NOT_SET = 128; 2590 enum SSL_R_BLOCK_CIPHER_PAD_IS_WRONG = 129; 2591 enum SSL_R_BN_LIB = 130; 2592 enum SSL_R_CA_DN_LENGTH_MISMATCH = 131; 2593 enum SSL_R_CA_DN_TOO_LONG = 132; 2594 enum SSL_R_CCS_RECEIVED_EARLY = 133; 2595 enum SSL_R_CERTIFICATE_VERIFY_FAILED = 134; 2596 enum SSL_R_CERT_LENGTH_MISMATCH = 135; 2597 enum SSL_R_CHALLENGE_IS_DIFFERENT = 136; 2598 enum SSL_R_CIPHER_CODE_WRONG_LENGTH = 137; 2599 enum SSL_R_CIPHER_OR_HASH_UNAVAILABLE = 138; 2600 enum SSL_R_CIPHER_TABLE_SRC_ERROR = 139; 2601 enum SSL_R_CLIENTHELLO_TLSEXT = 226; 2602 enum SSL_R_COMPRESSED_LENGTH_TOO_LONG = 140; 2603 enum SSL_R_COMPRESSION_DISABLED = 343; 2604 enum SSL_R_COMPRESSION_FAILURE = 141; 2605 enum SSL_R_COMPRESSION_ID_NOT_WITHIN_PRIVATE_RANGE = 307; 2606 enum SSL_R_COMPRESSION_LIBRARY_ERROR = 142; 2607 enum SSL_R_CONNECTION_ID_IS_DIFFERENT = 143; 2608 enum SSL_R_CONNECTION_TYPE_NOT_SET = 144; 2609 enum SSL_R_COOKIE_MISMATCH = 308; 2610 enum SSL_R_DATA_BETWEEN_CCS_AND_FINISHED = 145; 2611 enum SSL_R_DATA_LENGTH_TOO_LONG = 146; 2612 enum SSL_R_DECRYPTION_FAILED = 147; 2613 enum SSL_R_DECRYPTION_FAILED_OR_BAD_RECORD_MAC = 281; 2614 enum SSL_R_DH_PUBLIC_VALUE_LENGTH_IS_WRONG = 148; 2615 enum SSL_R_DIGEST_CHECK_FAILED = 149; 2616 enum SSL_R_DTLS_MESSAGE_TOO_BIG = 334; 2617 enum SSL_R_DUPLICATE_COMPRESSION_ID = 309; 2618 enum SSL_R_ECC_CERT_NOT_FOR_KEY_AGREEMENT = 317; 2619 enum SSL_R_ECC_CERT_NOT_FOR_SIGNING = 318; 2620 enum SSL_R_ECC_CERT_SHOULD_HAVE_RSA_SIGNATURE = 322; 2621 enum SSL_R_ECC_CERT_SHOULD_HAVE_SHA1_SIGNATURE = 323; 2622 enum SSL_R_ECGROUP_TOO_LARGE_FOR_CIPHER = 310; 2623 enum SSL_R_EMPTY_SRTP_PROTECTION_PROFILE_LIST = 354; 2624 enum SSL_R_ENCRYPTED_LENGTH_TOO_LONG = 150; 2625 enum SSL_R_ERROR_GENERATING_TMP_RSA_KEY = 282; 2626 enum SSL_R_ERROR_IN_RECEIVED_CIPHER_LIST = 151; 2627 enum SSL_R_EXCESSIVE_MESSAGE_SIZE = 152; 2628 enum SSL_R_EXTRA_DATA_IN_MESSAGE = 153; 2629 enum SSL_R_GOT_A_FIN_BEFORE_A_CCS = 154; 2630 enum SSL_R_GOT_NEXT_PROTO_BEFORE_A_CCS = 355; 2631 enum SSL_R_GOT_NEXT_PROTO_WITHOUT_EXTENSION = 356; 2632 enum SSL_R_HTTPS_PROXY_REQUEST = 155; 2633 enum SSL_R_HTTP_REQUEST = 156; 2634 enum SSL_R_ILLEGAL_PADDING = 283; 2635 enum SSL_R_INCONSISTENT_COMPRESSION = 340; 2636 enum SSL_R_INVALID_CHALLENGE_LENGTH = 158; 2637 enum SSL_R_INVALID_COMMAND = 280; 2638 enum SSL_R_INVALID_COMPRESSION_ALGORITHM = 341; 2639 enum SSL_R_INVALID_PURPOSE = 278; 2640 enum SSL_R_INVALID_SRP_USERNAME = 357; 2641 enum SSL_R_INVALID_STATUS_RESPONSE = 328; 2642 enum SSL_R_INVALID_TICKET_KEYS_LENGTH = 325; 2643 enum SSL_R_INVALID_TRUST = 279; 2644 enum SSL_R_KEY_ARG_TOO_LONG = 284; 2645 enum SSL_R_KRB5 = 285; 2646 enum SSL_R_KRB5_C_CC_PRINC = 286; 2647 enum SSL_R_KRB5_C_GET_CRED = 287; 2648 enum SSL_R_KRB5_C_INIT = 288; 2649 enum SSL_R_KRB5_C_MK_REQ = 289; 2650 enum SSL_R_KRB5_S_BAD_TICKET = 290; 2651 enum SSL_R_KRB5_S_INIT = 291; 2652 enum SSL_R_KRB5_S_RD_REQ = 292; 2653 enum SSL_R_KRB5_S_TKT_EXPIRED = 293; 2654 enum SSL_R_KRB5_S_TKT_NYV = 294; 2655 enum SSL_R_KRB5_S_TKT_SKEW = 295; 2656 enum SSL_R_LENGTH_MISMATCH = 159; 2657 enum SSL_R_LENGTH_TOO_SHORT = 160; 2658 enum SSL_R_LIBRARY_BUG = 274; 2659 enum SSL_R_LIBRARY_HAS_NO_CIPHERS = 161; 2660 enum SSL_R_MESSAGE_TOO_LONG = 296; 2661 enum SSL_R_MISSING_DH_DSA_CERT = 162; 2662 enum SSL_R_MISSING_DH_KEY = 163; 2663 enum SSL_R_MISSING_DH_RSA_CERT = 164; 2664 enum SSL_R_MISSING_DSA_SIGNING_CERT = 165; 2665 enum SSL_R_MISSING_EXPORT_TMP_DH_KEY = 166; 2666 enum SSL_R_MISSING_EXPORT_TMP_RSA_KEY = 167; 2667 enum SSL_R_MISSING_RSA_CERTIFICATE = 168; 2668 enum SSL_R_MISSING_RSA_ENCRYPTING_CERT = 169; 2669 enum SSL_R_MISSING_RSA_SIGNING_CERT = 170; 2670 enum SSL_R_MISSING_SRP_PARAM = 358; 2671 enum SSL_R_MISSING_TMP_DH_KEY = 171; 2672 enum SSL_R_MISSING_TMP_ECDH_KEY = 311; 2673 enum SSL_R_MISSING_TMP_RSA_KEY = 172; 2674 enum SSL_R_MISSING_TMP_RSA_PKEY = 173; 2675 enum SSL_R_MISSING_VERIFY_MESSAGE = 174; 2676 enum SSL_R_MULTIPLE_SGC_RESTARTS = 346; 2677 enum SSL_R_NON_SSLV2_INITIAL_PACKET = 175; 2678 enum SSL_R_NO_CERTIFICATES_RETURNED = 176; 2679 enum SSL_R_NO_CERTIFICATE_ASSIGNED = 177; 2680 enum SSL_R_NO_CERTIFICATE_RETURNED = 178; 2681 enum SSL_R_NO_CERTIFICATE_SET = 179; 2682 enum SSL_R_NO_CERTIFICATE_SPECIFIED = 180; 2683 enum SSL_R_NO_CIPHERS_AVAILABLE = 181; 2684 enum SSL_R_NO_CIPHERS_PASSED = 182; 2685 enum SSL_R_NO_CIPHERS_SPECIFIED = 183; 2686 enum SSL_R_NO_CIPHER_LIST = 184; 2687 enum SSL_R_NO_CIPHER_MATCH = 185; 2688 enum SSL_R_NO_CLIENT_CERT_METHOD = 331; 2689 enum SSL_R_NO_CLIENT_CERT_RECEIVED = 186; 2690 enum SSL_R_NO_COMPRESSION_SPECIFIED = 187; 2691 enum SSL_R_NO_GOST_CERTIFICATE_SENT_BY_PEER = 330; 2692 enum SSL_R_NO_METHOD_SPECIFIED = 188; 2693 enum SSL_R_NO_PRIVATEKEY = 189; 2694 enum SSL_R_NO_PRIVATE_KEY_ASSIGNED = 190; 2695 enum SSL_R_NO_PROTOCOLS_AVAILABLE = 191; 2696 enum SSL_R_NO_PUBLICKEY = 192; 2697 enum SSL_R_NO_RENEGOTIATION = 339; 2698 enum SSL_R_NO_REQUIRED_DIGEST = 324; 2699 enum SSL_R_NO_SHARED_CIPHER = 193; 2700 enum SSL_R_NO_SRTP_PROFILES = 359; 2701 enum SSL_R_NO_VERIFY_CALLBACK = 194; 2702 enum SSL_R_NULL_SSL_CTX = 195; 2703 enum SSL_R_NULL_SSL_METHOD_PASSED = 196; 2704 enum SSL_R_OLD_SESSION_CIPHER_NOT_RETURNED = 197; 2705 enum SSL_R_OLD_SESSION_COMPRESSION_ALGORITHM_NOT_RETURNED = 344; 2706 enum SSL_R_ONLY_TLS_ALLOWED_IN_FIPS_MODE = 297; 2707 enum SSL_R_OPAQUE_PRF_INPUT_TOO_LONG = 327; 2708 enum SSL_R_PACKET_LENGTH_TOO_LONG = 198; 2709 enum SSL_R_PARSE_TLSEXT = 227; 2710 enum SSL_R_PATH_TOO_LONG = 270; 2711 enum SSL_R_PEER_DID_NOT_RETURN_A_CERTIFICATE = 199; 2712 enum SSL_R_PEER_ERROR = 200; 2713 enum SSL_R_PEER_ERROR_CERTIFICATE = 201; 2714 enum SSL_R_PEER_ERROR_NO_CERTIFICATE = 202; 2715 enum SSL_R_PEER_ERROR_NO_CIPHER = 203; 2716 enum SSL_R_PEER_ERROR_UNSUPPORTED_CERTIFICATE_TYPE = 204; 2717 enum SSL_R_PRE_MAC_LENGTH_TOO_LONG = 205; 2718 enum SSL_R_PROBLEMS_MAPPING_CIPHER_FUNCTIONS = 206; 2719 enum SSL_R_PROTOCOL_IS_SHUTDOWN = 207; 2720 enum SSL_R_PSK_IDENTITY_NOT_FOUND = 223; 2721 enum SSL_R_PSK_NO_CLIENT_CB = 224; 2722 enum SSL_R_PSK_NO_SERVER_CB = 225; 2723 enum SSL_R_PUBLIC_KEY_ENCRYPT_ERROR = 208; 2724 enum SSL_R_PUBLIC_KEY_IS_NOT_RSA = 209; 2725 enum SSL_R_PUBLIC_KEY_NOT_RSA = 210; 2726 enum SSL_R_READ_BIO_NOT_SET = 211; 2727 enum SSL_R_READ_TIMEOUT_EXPIRED = 312; 2728 enum SSL_R_READ_WRONG_PACKET_TYPE = 212; 2729 enum SSL_R_RECORD_LENGTH_MISMATCH = 213; 2730 enum SSL_R_RECORD_TOO_LARGE = 214; 2731 enum SSL_R_RECORD_TOO_SMALL = 298; 2732 enum SSL_R_RENEGOTIATE_EXT_TOO_LONG = 335; 2733 enum SSL_R_RENEGOTIATION_ENCODING_ERR = 336; 2734 enum SSL_R_RENEGOTIATION_MISMATCH = 337; 2735 enum SSL_R_REQUIRED_CIPHER_MISSING = 215; 2736 enum SSL_R_REQUIRED_COMPRESSSION_ALGORITHM_MISSING = 342; 2737 enum SSL_R_REUSE_CERT_LENGTH_NOT_ZERO = 216; 2738 enum SSL_R_REUSE_CERT_TYPE_NOT_ZERO = 217; 2739 enum SSL_R_REUSE_CIPHER_LIST_NOT_ZERO = 218; 2740 enum SSL_R_SCSV_RECEIVED_WHEN_RENEGOTIATING = 345; 2741 enum SSL_R_SERVERHELLO_TLSEXT = 275; 2742 enum SSL_R_SESSION_ID_CONTEXT_UNINITIALIZED = 277; 2743 enum SSL_R_SHORT_READ = 219; 2744 enum SSL_R_SIGNATURE_ALGORITHMS_ERROR = 360; 2745 enum SSL_R_SIGNATURE_FOR_NON_SIGNING_CERTIFICATE = 220; 2746 enum SSL_R_SRP_A_CALC = 361; 2747 enum SSL_R_SRTP_COULD_NOT_ALLOCATE_PROFILES = 362; 2748 enum SSL_R_SRTP_PROTECTION_PROFILE_LIST_TOO_LONG = 363; 2749 enum SSL_R_SRTP_UNKNOWN_PROTECTION_PROFILE = 364; 2750 enum SSL_R_SSL23_DOING_SESSION_ID_REUSE = 221; 2751 enum SSL_R_SSL2_CONNECTION_ID_TOO_LONG = 299; 2752 enum SSL_R_SSL3_EXT_INVALID_ECPOINTFORMAT = 321; 2753 enum SSL_R_SSL3_EXT_INVALID_SERVERNAME = 319; 2754 enum SSL_R_SSL3_EXT_INVALID_SERVERNAME_TYPE = 320; 2755 enum SSL_R_SSL3_SESSION_ID_TOO_LONG = 300; 2756 enum SSL_R_SSL3_SESSION_ID_TOO_SHORT = 222; 2757 enum SSL_R_SSLV3_ALERT_BAD_CERTIFICATE = 1042; 2758 enum SSL_R_SSLV3_ALERT_BAD_RECORD_MAC = 1020; 2759 enum SSL_R_SSLV3_ALERT_CERTIFICATE_EXPIRED = 1045; 2760 enum SSL_R_SSLV3_ALERT_CERTIFICATE_REVOKED = 1044; 2761 enum SSL_R_SSLV3_ALERT_CERTIFICATE_UNKNOWN = 1046; 2762 enum SSL_R_SSLV3_ALERT_DECOMPRESSION_FAILURE = 1030; 2763 enum SSL_R_SSLV3_ALERT_HANDSHAKE_FAILURE = 1040; 2764 enum SSL_R_SSLV3_ALERT_ILLEGAL_PARAMETER = 1047; 2765 enum SSL_R_SSLV3_ALERT_NO_CERTIFICATE = 1041; 2766 enum SSL_R_SSLV3_ALERT_UNEXPECTED_MESSAGE = 1010; 2767 enum SSL_R_SSLV3_ALERT_UNSUPPORTED_CERTIFICATE = 1043; 2768 enum SSL_R_SSL_CTX_HAS_NO_DEFAULT_SSL_VERSION = 228; 2769 enum SSL_R_SSL_HANDSHAKE_FAILURE = 229; 2770 enum SSL_R_SSL_LIBRARY_HAS_NO_CIPHERS = 230; 2771 enum SSL_R_SSL_SESSION_ID_CALLBACK_FAILED = 301; 2772 enum SSL_R_SSL_SESSION_ID_CONFLICT = 302; 2773 enum SSL_R_SSL_SESSION_ID_CONTEXT_TOO_LONG = 273; 2774 enum SSL_R_SSL_SESSION_ID_HAS_BAD_LENGTH = 303; 2775 enum SSL_R_SSL_SESSION_ID_IS_DIFFERENT = 231; 2776 enum SSL_R_TLSV1_ALERT_ACCESS_DENIED = 1049; 2777 enum SSL_R_TLSV1_ALERT_DECODE_ERROR = 1050; 2778 enum SSL_R_TLSV1_ALERT_DECRYPTION_FAILED = 1021; 2779 enum SSL_R_TLSV1_ALERT_DECRYPT_ERROR = 1051; 2780 enum SSL_R_TLSV1_ALERT_EXPORT_RESTRICTION = 1060; 2781 enum SSL_R_TLSV1_ALERT_INSUFFICIENT_SECURITY = 1071; 2782 enum SSL_R_TLSV1_ALERT_INTERNAL_ERROR = 1080; 2783 enum SSL_R_TLSV1_ALERT_NO_RENEGOTIATION = 1100; 2784 enum SSL_R_TLSV1_ALERT_PROTOCOL_VERSION = 1070; 2785 enum SSL_R_TLSV1_ALERT_RECORD_OVERFLOW = 1022; 2786 enum SSL_R_TLSV1_ALERT_UNKNOWN_CA = 1048; 2787 enum SSL_R_TLSV1_ALERT_USER_CANCELLED = 1090; 2788 enum SSL_R_TLSV1_BAD_CERTIFICATE_HASH_VALUE = 1114; 2789 enum SSL_R_TLSV1_BAD_CERTIFICATE_STATUS_RESPONSE = 1113; 2790 enum SSL_R_TLSV1_CERTIFICATE_UNOBTAINABLE = 1111; 2791 enum SSL_R_TLSV1_UNRECOGNIZED_NAME = 1112; 2792 enum SSL_R_TLSV1_UNSUPPORTED_EXTENSION = 1110; 2793 enum SSL_R_TLS_CLIENT_CERT_REQ_WITH_ANON_CIPHER = 232; 2794 enum SSL_R_TLS_HEARTBEAT_PEER_DOESNT_ACCEPT = 365; 2795 enum SSL_R_TLS_HEARTBEAT_PENDING = 366; 2796 enum SSL_R_TLS_ILLEGAL_EXPORTER_LABEL = 367; 2797 enum SSL_R_TLS_INVALID_ECPOINTFORMAT_LIST = 157; 2798 enum SSL_R_TLS_PEER_DID_NOT_RESPOND_WITH_CERTIFICATE_LIST = 233; 2799 enum SSL_R_TLS_RSA_ENCRYPTED_VALUE_LENGTH_IS_WRONG = 234; 2800 enum SSL_R_TRIED_TO_USE_UNSUPPORTED_CIPHER = 235; 2801 enum SSL_R_UNABLE_TO_DECODE_DH_CERTS = 236; 2802 enum SSL_R_UNABLE_TO_DECODE_ECDH_CERTS = 313; 2803 enum SSL_R_UNABLE_TO_EXTRACT_PUBLIC_KEY = 237; 2804 enum SSL_R_UNABLE_TO_FIND_DH_PARAMETERS = 238; 2805 enum SSL_R_UNABLE_TO_FIND_ECDH_PARAMETERS = 314; 2806 enum SSL_R_UNABLE_TO_FIND_PUBLIC_KEY_PARAMETERS = 239; 2807 enum SSL_R_UNABLE_TO_FIND_SSL_METHOD = 240; 2808 enum SSL_R_UNABLE_TO_LOAD_SSL2_MD5_ROUTINES = 241; 2809 enum SSL_R_UNABLE_TO_LOAD_SSL3_MD5_ROUTINES = 242; 2810 enum SSL_R_UNABLE_TO_LOAD_SSL3_SHA1_ROUTINES = 243; 2811 enum SSL_R_UNEXPECTED_MESSAGE = 244; 2812 enum SSL_R_UNEXPECTED_RECORD = 245; 2813 enum SSL_R_UNINITIALIZED = 276; 2814 enum SSL_R_UNKNOWN_ALERT_TYPE = 246; 2815 enum SSL_R_UNKNOWN_CERTIFICATE_TYPE = 247; 2816 enum SSL_R_UNKNOWN_CIPHER_RETURNED = 248; 2817 enum SSL_R_UNKNOWN_CIPHER_TYPE = 249; 2818 enum SSL_R_UNKNOWN_DIGEST = 368; 2819 enum SSL_R_UNKNOWN_KEY_EXCHANGE_TYPE = 250; 2820 enum SSL_R_UNKNOWN_PKEY_TYPE = 251; 2821 enum SSL_R_UNKNOWN_PROTOCOL = 252; 2822 enum SSL_R_UNKNOWN_REMOTE_ERROR_TYPE = 253; 2823 enum SSL_R_UNKNOWN_SSL_VERSION = 254; 2824 enum SSL_R_UNKNOWN_STATE = 255; 2825 enum SSL_R_UNSAFE_LEGACY_RENEGOTIATION_DISABLED = 338; 2826 enum SSL_R_UNSUPPORTED_CIPHER = 256; 2827 enum SSL_R_UNSUPPORTED_COMPRESSION_ALGORITHM = 257; 2828 enum SSL_R_UNSUPPORTED_DIGEST_TYPE = 326; 2829 enum SSL_R_UNSUPPORTED_ELLIPTIC_CURVE = 315; 2830 enum SSL_R_UNSUPPORTED_PROTOCOL = 258; 2831 enum SSL_R_UNSUPPORTED_SSL_VERSION = 259; 2832 enum SSL_R_UNSUPPORTED_STATUS_TYPE = 329; 2833 enum SSL_R_USE_SRTP_NOT_NEGOTIATED = 369; 2834 enum SSL_R_WRITE_BIO_NOT_SET = 260; 2835 enum SSL_R_WRONG_CIPHER_RETURNED = 261; 2836 enum SSL_R_WRONG_MESSAGE_TYPE = 262; 2837 enum SSL_R_WRONG_NUMBER_OF_KEY_BITS = 263; 2838 enum SSL_R_WRONG_SIGNATURE_LENGTH = 264; 2839 enum SSL_R_WRONG_SIGNATURE_SIZE = 265; 2840 enum SSL_R_WRONG_SIGNATURE_TYPE = 370; 2841 enum SSL_R_WRONG_SSL_VERSION = 266; 2842 enum SSL_R_WRONG_VERSION_NUMBER = 267; 2843 enum SSL_R_X509_LIB = 268; 2844 enum SSL_R_X509_VERIFICATION_SETUP_PROBLEMS = 269;