tls.h revision 8d520ff1dc2da35cdca849e982051b86468016d8
1/* 2 * SSL/TLS interface definition 3 * Copyright (c) 2004-2010, Jouni Malinen <j@w1.fi> 4 * 5 * This program is free software; you can redistribute it and/or modify 6 * it under the terms of the GNU General Public License version 2 as 7 * published by the Free Software Foundation. 8 * 9 * Alternatively, this software may be distributed under the terms of BSD 10 * license. 11 * 12 * See README and COPYING for more details. 13 */ 14 15#ifndef TLS_H 16#define TLS_H 17 18struct tls_connection; 19 20struct tls_keys { 21 const u8 *master_key; /* TLS master secret */ 22 size_t master_key_len; 23 const u8 *client_random; 24 size_t client_random_len; 25 const u8 *server_random; 26 size_t server_random_len; 27 const u8 *inner_secret; /* TLS/IA inner secret */ 28 size_t inner_secret_len; 29}; 30 31enum tls_event { 32 TLS_CERT_CHAIN_FAILURE, 33 TLS_PEER_CERTIFICATE 34}; 35 36/* 37 * Note: These are used as identifier with external programs and as such, the 38 * values must not be changed. 39 */ 40enum tls_fail_reason { 41 TLS_FAIL_UNSPECIFIED = 0, 42 TLS_FAIL_UNTRUSTED = 1, 43 TLS_FAIL_REVOKED = 2, 44 TLS_FAIL_NOT_YET_VALID = 3, 45 TLS_FAIL_EXPIRED = 4, 46 TLS_FAIL_SUBJECT_MISMATCH = 5, 47 TLS_FAIL_ALTSUBJECT_MISMATCH = 6, 48 TLS_FAIL_BAD_CERTIFICATE = 7, 49 TLS_FAIL_SERVER_CHAIN_PROBE = 8 50}; 51 52union tls_event_data { 53 struct { 54 int depth; 55 const char *subject; 56 enum tls_fail_reason reason; 57 const char *reason_txt; 58 const struct wpabuf *cert; 59 } cert_fail; 60 61 struct { 62 int depth; 63 const char *subject; 64 const struct wpabuf *cert; 65 const u8 *hash; 66 size_t hash_len; 67 } peer_cert; 68}; 69 70struct tls_config { 71 const char *opensc_engine_path; 72 const char *pkcs11_engine_path; 73 const char *pkcs11_module_path; 74 int fips_mode; 75 76 void (*event_cb)(void *ctx, enum tls_event ev, 77 union tls_event_data *data); 78 void *cb_ctx; 79}; 80 81#define TLS_CONN_ALLOW_SIGN_RSA_MD5 BIT(0) 82#define TLS_CONN_DISABLE_TIME_CHECKS BIT(1) 83 84/** 85 * struct tls_connection_params - Parameters for TLS connection 86 * @ca_cert: File or reference name for CA X.509 certificate in PEM or DER 87 * format 88 * @ca_cert_blob: ca_cert as inlined data or %NULL if not used 89 * @ca_cert_blob_len: ca_cert_blob length 90 * @ca_path: Path to CA certificates (OpenSSL specific) 91 * @subject_match: String to match in the subject of the peer certificate or 92 * %NULL to allow all subjects 93 * @altsubject_match: String to match in the alternative subject of the peer 94 * certificate or %NULL to allow all alternative subjects 95 * @client_cert: File or reference name for client X.509 certificate in PEM or 96 * DER format 97 * @client_cert_blob: client_cert as inlined data or %NULL if not used 98 * @client_cert_blob_len: client_cert_blob length 99 * @private_key: File or reference name for client private key in PEM or DER 100 * format (traditional format (RSA PRIVATE KEY) or PKCS#8 (PRIVATE KEY) 101 * @private_key_blob: private_key as inlined data or %NULL if not used 102 * @private_key_blob_len: private_key_blob length 103 * @private_key_passwd: Passphrase for decrypted private key, %NULL if no 104 * passphrase is used. 105 * @dh_file: File name for DH/DSA data in PEM format, or %NULL if not used 106 * @dh_blob: dh_file as inlined data or %NULL if not used 107 * @dh_blob_len: dh_blob length 108 * @engine: 1 = use engine (e.g., a smartcard) for private key operations 109 * (this is OpenSSL specific for now) 110 * @engine_id: engine id string (this is OpenSSL specific for now) 111 * @ppin: pointer to the pin variable in the configuration 112 * (this is OpenSSL specific for now) 113 * @key_id: the private key's id when using engine (this is OpenSSL 114 * specific for now) 115 * @cert_id: the certificate's id when using engine 116 * @ca_cert_id: the CA certificate's id when using engine 117 * @tls_ia: Whether to enable TLS/IA (for EAP-TTLSv1) 118 * @flags: Parameter options (TLS_CONN_*) 119 * 120 * TLS connection parameters to be configured with tls_connection_set_params() 121 * and tls_global_set_params(). 122 * 123 * Certificates and private key can be configured either as a reference name 124 * (file path or reference to certificate store) or by providing the same data 125 * as a pointer to the data in memory. Only one option will be used for each 126 * field. 127 */ 128struct tls_connection_params { 129 const char *ca_cert; 130 const u8 *ca_cert_blob; 131 size_t ca_cert_blob_len; 132 const char *ca_path; 133 const char *subject_match; 134 const char *altsubject_match; 135 const char *client_cert; 136 const u8 *client_cert_blob; 137 size_t client_cert_blob_len; 138 const char *private_key; 139 const u8 *private_key_blob; 140 size_t private_key_blob_len; 141 const char *private_key_passwd; 142 const char *dh_file; 143 const u8 *dh_blob; 144 size_t dh_blob_len; 145 int tls_ia; 146 147 /* OpenSSL specific variables */ 148 int engine; 149 const char *engine_id; 150 const char *pin; 151 const char *key_id; 152 const char *cert_id; 153 const char *ca_cert_id; 154 155 unsigned int flags; 156}; 157 158 159/** 160 * tls_init - Initialize TLS library 161 * @conf: Configuration data for TLS library 162 * Returns: Context data to be used as tls_ctx in calls to other functions, 163 * or %NULL on failure. 164 * 165 * Called once during program startup and once for each RSN pre-authentication 166 * session. In other words, there can be two concurrent TLS contexts. If global 167 * library initialization is needed (i.e., one that is shared between both 168 * authentication types), the TLS library wrapper should maintain a reference 169 * counter and do global initialization only when moving from 0 to 1 reference. 170 */ 171void * tls_init(const struct tls_config *conf); 172 173/** 174 * tls_deinit - Deinitialize TLS library 175 * @tls_ctx: TLS context data from tls_init() 176 * 177 * Called once during program shutdown and once for each RSN pre-authentication 178 * session. If global library deinitialization is needed (i.e., one that is 179 * shared between both authentication types), the TLS library wrapper should 180 * maintain a reference counter and do global deinitialization only when moving 181 * from 1 to 0 references. 182 */ 183void tls_deinit(void *tls_ctx); 184 185/** 186 * tls_get_errors - Process pending errors 187 * @tls_ctx: TLS context data from tls_init() 188 * Returns: Number of found error, 0 if no errors detected. 189 * 190 * Process all pending TLS errors. 191 */ 192int tls_get_errors(void *tls_ctx); 193 194/** 195 * tls_connection_init - Initialize a new TLS connection 196 * @tls_ctx: TLS context data from tls_init() 197 * Returns: Connection context data, conn for other function calls 198 */ 199struct tls_connection * tls_connection_init(void *tls_ctx); 200 201/** 202 * tls_connection_deinit - Free TLS connection data 203 * @tls_ctx: TLS context data from tls_init() 204 * @conn: Connection context data from tls_connection_init() 205 * 206 * Release all resources allocated for TLS connection. 207 */ 208void tls_connection_deinit(void *tls_ctx, struct tls_connection *conn); 209 210/** 211 * tls_connection_established - Has the TLS connection been completed? 212 * @tls_ctx: TLS context data from tls_init() 213 * @conn: Connection context data from tls_connection_init() 214 * Returns: 1 if TLS connection has been completed, 0 if not. 215 */ 216int tls_connection_established(void *tls_ctx, struct tls_connection *conn); 217 218/** 219 * tls_connection_shutdown - Shutdown TLS connection 220 * @tls_ctx: TLS context data from tls_init() 221 * @conn: Connection context data from tls_connection_init() 222 * Returns: 0 on success, -1 on failure 223 * 224 * Shutdown current TLS connection without releasing all resources. New 225 * connection can be started by using the same conn without having to call 226 * tls_connection_init() or setting certificates etc. again. The new 227 * connection should try to use session resumption. 228 */ 229int tls_connection_shutdown(void *tls_ctx, struct tls_connection *conn); 230 231enum { 232 TLS_SET_PARAMS_ENGINE_PRV_VERIFY_FAILED = -3, 233 TLS_SET_PARAMS_ENGINE_PRV_INIT_FAILED = -2 234}; 235 236/** 237 * tls_connection_set_params - Set TLS connection parameters 238 * @tls_ctx: TLS context data from tls_init() 239 * @conn: Connection context data from tls_connection_init() 240 * @params: Connection parameters 241 * Returns: 0 on success, -1 on failure, 242 * TLS_SET_PARAMS_ENGINE_PRV_INIT_FAILED (-2) on possible PIN error causing 243 * PKCS#11 engine failure, or 244 * TLS_SET_PARAMS_ENGINE_PRV_VERIFY_FAILED (-3) on failure to verify the 245 * PKCS#11 engine private key. 246 */ 247int __must_check 248tls_connection_set_params(void *tls_ctx, struct tls_connection *conn, 249 const struct tls_connection_params *params); 250 251/** 252 * tls_global_set_params - Set TLS parameters for all TLS connection 253 * @tls_ctx: TLS context data from tls_init() 254 * @params: Global TLS parameters 255 * Returns: 0 on success, -1 on failure, 256 * TLS_SET_PARAMS_ENGINE_PRV_INIT_FAILED (-2) on possible PIN error causing 257 * PKCS#11 engine failure, or 258 * TLS_SET_PARAMS_ENGINE_PRV_VERIFY_FAILED (-3) on failure to verify the 259 * PKCS#11 engine private key. 260 */ 261int __must_check tls_global_set_params( 262 void *tls_ctx, const struct tls_connection_params *params); 263 264/** 265 * tls_global_set_verify - Set global certificate verification options 266 * @tls_ctx: TLS context data from tls_init() 267 * @check_crl: 0 = do not verify CRLs, 1 = verify CRL for the user certificate, 268 * 2 = verify CRL for all certificates 269 * Returns: 0 on success, -1 on failure 270 */ 271int __must_check tls_global_set_verify(void *tls_ctx, int check_crl); 272 273/** 274 * tls_connection_set_verify - Set certificate verification options 275 * @tls_ctx: TLS context data from tls_init() 276 * @conn: Connection context data from tls_connection_init() 277 * @verify_peer: 1 = verify peer certificate 278 * Returns: 0 on success, -1 on failure 279 */ 280int __must_check tls_connection_set_verify(void *tls_ctx, 281 struct tls_connection *conn, 282 int verify_peer); 283 284/** 285 * tls_connection_set_ia - Set TLS/IA parameters 286 * @tls_ctx: TLS context data from tls_init() 287 * @conn: Connection context data from tls_connection_init() 288 * @tls_ia: 1 = enable TLS/IA 289 * Returns: 0 on success, -1 on failure 290 * 291 * This function is used to configure TLS/IA in server mode where 292 * tls_connection_set_params() is not used. 293 */ 294int __must_check tls_connection_set_ia(void *tls_ctx, 295 struct tls_connection *conn, 296 int tls_ia); 297 298/** 299 * tls_connection_get_keys - Get master key and random data from TLS connection 300 * @tls_ctx: TLS context data from tls_init() 301 * @conn: Connection context data from tls_connection_init() 302 * @keys: Structure of key/random data (filled on success) 303 * Returns: 0 on success, -1 on failure 304 */ 305int __must_check tls_connection_get_keys(void *tls_ctx, 306 struct tls_connection *conn, 307 struct tls_keys *keys); 308 309/** 310 * tls_connection_prf - Use TLS-PRF to derive keying material 311 * @tls_ctx: TLS context data from tls_init() 312 * @conn: Connection context data from tls_connection_init() 313 * @label: Label (e.g., description of the key) for PRF 314 * @server_random_first: seed is 0 = client_random|server_random, 315 * 1 = server_random|client_random 316 * @out: Buffer for output data from TLS-PRF 317 * @out_len: Length of the output buffer 318 * Returns: 0 on success, -1 on failure 319 * 320 * This function is optional to implement if tls_connection_get_keys() provides 321 * access to master secret and server/client random values. If these values are 322 * not exported from the TLS library, tls_connection_prf() is required so that 323 * further keying material can be derived from the master secret. If not 324 * implemented, the function will still need to be defined, but it can just 325 * return -1. Example implementation of this function is in tls_prf() function 326 * when it is called with seed set to client_random|server_random (or 327 * server_random|client_random). 328 */ 329int __must_check tls_connection_prf(void *tls_ctx, 330 struct tls_connection *conn, 331 const char *label, 332 int server_random_first, 333 u8 *out, size_t out_len); 334 335/** 336 * tls_connection_handshake - Process TLS handshake (client side) 337 * @tls_ctx: TLS context data from tls_init() 338 * @conn: Connection context data from tls_connection_init() 339 * @in_data: Input data from TLS server 340 * @appl_data: Pointer to application data pointer, or %NULL if dropped 341 * Returns: Output data, %NULL on failure 342 * 343 * The caller is responsible for freeing the returned output data. If the final 344 * handshake message includes application data, this is decrypted and 345 * appl_data (if not %NULL) is set to point this data. The caller is 346 * responsible for freeing appl_data. 347 * 348 * This function is used during TLS handshake. The first call is done with 349 * in_data == %NULL and the library is expected to return ClientHello packet. 350 * This packet is then send to the server and a response from server is given 351 * to TLS library by calling this function again with in_data pointing to the 352 * TLS message from the server. 353 * 354 * If the TLS handshake fails, this function may return %NULL. However, if the 355 * TLS library has a TLS alert to send out, that should be returned as the 356 * output data. In this case, tls_connection_get_failed() must return failure 357 * (> 0). 358 * 359 * tls_connection_established() should return 1 once the TLS handshake has been 360 * completed successfully. 361 */ 362struct wpabuf * tls_connection_handshake(void *tls_ctx, 363 struct tls_connection *conn, 364 const struct wpabuf *in_data, 365 struct wpabuf **appl_data); 366 367/** 368 * tls_connection_server_handshake - Process TLS handshake (server side) 369 * @tls_ctx: TLS context data from tls_init() 370 * @conn: Connection context data from tls_connection_init() 371 * @in_data: Input data from TLS peer 372 * @appl_data: Pointer to application data pointer, or %NULL if dropped 373 * Returns: Output data, %NULL on failure 374 * 375 * The caller is responsible for freeing the returned output data. 376 */ 377struct wpabuf * tls_connection_server_handshake(void *tls_ctx, 378 struct tls_connection *conn, 379 const struct wpabuf *in_data, 380 struct wpabuf **appl_data); 381 382/** 383 * tls_connection_encrypt - Encrypt data into TLS tunnel 384 * @tls_ctx: TLS context data from tls_init() 385 * @conn: Connection context data from tls_connection_init() 386 * @in_data: Plaintext data to be encrypted 387 * Returns: Encrypted TLS data or %NULL on failure 388 * 389 * This function is used after TLS handshake has been completed successfully to 390 * send data in the encrypted tunnel. The caller is responsible for freeing the 391 * returned output data. 392 */ 393struct wpabuf * tls_connection_encrypt(void *tls_ctx, 394 struct tls_connection *conn, 395 const struct wpabuf *in_data); 396 397/** 398 * tls_connection_decrypt - Decrypt data from TLS tunnel 399 * @tls_ctx: TLS context data from tls_init() 400 * @conn: Connection context data from tls_connection_init() 401 * @in_data: Encrypted TLS data 402 * Returns: Decrypted TLS data or %NULL on failure 403 * 404 * This function is used after TLS handshake has been completed successfully to 405 * receive data from the encrypted tunnel. The caller is responsible for 406 * freeing the returned output data. 407 */ 408struct wpabuf * tls_connection_decrypt(void *tls_ctx, 409 struct tls_connection *conn, 410 const struct wpabuf *in_data); 411 412/** 413 * tls_connection_resumed - Was session resumption used 414 * @tls_ctx: TLS context data from tls_init() 415 * @conn: Connection context data from tls_connection_init() 416 * Returns: 1 if current session used session resumption, 0 if not 417 */ 418int tls_connection_resumed(void *tls_ctx, struct tls_connection *conn); 419 420enum { 421 TLS_CIPHER_NONE, 422 TLS_CIPHER_RC4_SHA /* 0x0005 */, 423 TLS_CIPHER_AES128_SHA /* 0x002f */, 424 TLS_CIPHER_RSA_DHE_AES128_SHA /* 0x0031 */, 425 TLS_CIPHER_ANON_DH_AES128_SHA /* 0x0034 */ 426}; 427 428/** 429 * tls_connection_set_cipher_list - Configure acceptable cipher suites 430 * @tls_ctx: TLS context data from tls_init() 431 * @conn: Connection context data from tls_connection_init() 432 * @ciphers: Zero (TLS_CIPHER_NONE) terminated list of allowed ciphers 433 * (TLS_CIPHER_*). 434 * Returns: 0 on success, -1 on failure 435 */ 436int __must_check tls_connection_set_cipher_list(void *tls_ctx, 437 struct tls_connection *conn, 438 u8 *ciphers); 439 440/** 441 * tls_get_cipher - Get current cipher name 442 * @tls_ctx: TLS context data from tls_init() 443 * @conn: Connection context data from tls_connection_init() 444 * @buf: Buffer for the cipher name 445 * @buflen: buf size 446 * Returns: 0 on success, -1 on failure 447 * 448 * Get the name of the currently used cipher. 449 */ 450int __must_check tls_get_cipher(void *tls_ctx, struct tls_connection *conn, 451 char *buf, size_t buflen); 452 453/** 454 * tls_connection_enable_workaround - Enable TLS workaround options 455 * @tls_ctx: TLS context data from tls_init() 456 * @conn: Connection context data from tls_connection_init() 457 * Returns: 0 on success, -1 on failure 458 * 459 * This function is used to enable connection-specific workaround options for 460 * buffer SSL/TLS implementations. 461 */ 462int __must_check tls_connection_enable_workaround(void *tls_ctx, 463 struct tls_connection *conn); 464 465/** 466 * tls_connection_client_hello_ext - Set TLS extension for ClientHello 467 * @tls_ctx: TLS context data from tls_init() 468 * @conn: Connection context data from tls_connection_init() 469 * @ext_type: Extension type 470 * @data: Extension payload (%NULL to remove extension) 471 * @data_len: Extension payload length 472 * Returns: 0 on success, -1 on failure 473 */ 474int __must_check tls_connection_client_hello_ext(void *tls_ctx, 475 struct tls_connection *conn, 476 int ext_type, const u8 *data, 477 size_t data_len); 478 479/** 480 * tls_connection_get_failed - Get connection failure status 481 * @tls_ctx: TLS context data from tls_init() 482 * @conn: Connection context data from tls_connection_init() 483 * 484 * Returns >0 if connection has failed, 0 if not. 485 */ 486int tls_connection_get_failed(void *tls_ctx, struct tls_connection *conn); 487 488/** 489 * tls_connection_get_read_alerts - Get connection read alert status 490 * @tls_ctx: TLS context data from tls_init() 491 * @conn: Connection context data from tls_connection_init() 492 * Returns: Number of times a fatal read (remote end reported error) has 493 * happened during this connection. 494 */ 495int tls_connection_get_read_alerts(void *tls_ctx, struct tls_connection *conn); 496 497/** 498 * tls_connection_get_write_alerts - Get connection write alert status 499 * @tls_ctx: TLS context data from tls_init() 500 * @conn: Connection context data from tls_connection_init() 501 * Returns: Number of times a fatal write (locally detected error) has happened 502 * during this connection. 503 */ 504int tls_connection_get_write_alerts(void *tls_ctx, 505 struct tls_connection *conn); 506 507/** 508 * tls_connection_get_keyblock_size - Get TLS key_block size 509 * @tls_ctx: TLS context data from tls_init() 510 * @conn: Connection context data from tls_connection_init() 511 * Returns: Size of the key_block for the negotiated cipher suite or -1 on 512 * failure 513 */ 514int tls_connection_get_keyblock_size(void *tls_ctx, 515 struct tls_connection *conn); 516 517#define TLS_CAPABILITY_IA 0x0001 /* TLS Inner Application (TLS/IA) */ 518/** 519 * tls_capabilities - Get supported TLS capabilities 520 * @tls_ctx: TLS context data from tls_init() 521 * Returns: Bit field of supported TLS capabilities (TLS_CAPABILITY_*) 522 */ 523unsigned int tls_capabilities(void *tls_ctx); 524 525/** 526 * tls_connection_ia_send_phase_finished - Send a TLS/IA PhaseFinished message 527 * @tls_ctx: TLS context data from tls_init() 528 * @conn: Connection context data from tls_connection_init() 529 * @final: 1 = FinalPhaseFinished, 0 = IntermediatePhaseFinished 530 * Returns: Encrypted TLS/IA data, %NULL on failure 531 * 532 * This function is used to send the TLS/IA end phase message, e.g., when the 533 * EAP server completes EAP-TTLSv1. 534 */ 535struct wpabuf * tls_connection_ia_send_phase_finished( 536 void *tls_ctx, struct tls_connection *conn, int final); 537 538/** 539 * tls_connection_ia_final_phase_finished - Has final phase been completed 540 * @tls_ctx: TLS context data from tls_init() 541 * @conn: Connection context data from tls_connection_init() 542 * Returns: 1 if valid FinalPhaseFinished has been received, 0 if not, or -1 543 * on failure 544 */ 545int __must_check tls_connection_ia_final_phase_finished( 546 void *tls_ctx, struct tls_connection *conn); 547 548/** 549 * tls_connection_ia_permute_inner_secret - Permute TLS/IA inner secret 550 * @tls_ctx: TLS context data from tls_init() 551 * @conn: Connection context data from tls_connection_init() 552 * @key: Session key material (session_key vectors with 2-octet length), or 553 * %NULL if no session key was generating in the current phase 554 * @key_len: Length of session key material 555 * Returns: 0 on success, -1 on failure 556 */ 557int __must_check tls_connection_ia_permute_inner_secret( 558 void *tls_ctx, struct tls_connection *conn, 559 const u8 *key, size_t key_len); 560 561typedef int (*tls_session_ticket_cb) 562(void *ctx, const u8 *ticket, size_t len, const u8 *client_random, 563 const u8 *server_random, u8 *master_secret); 564 565int __must_check tls_connection_set_session_ticket_cb( 566 void *tls_ctx, struct tls_connection *conn, 567 tls_session_ticket_cb cb, void *ctx); 568 569#endif /* TLS_H */ 570