blob: 96e160cd18ba10d405cb7b85d7e51da650c6f5dc [file] [log] [blame]
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -07001/*
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -08002 * TLS v1.0/v1.1/v1.2 server (RFC 2246, RFC 4346, RFC 5246)
3 * Copyright (c) 2006-2011, Jouni Malinen <j@w1.fi>
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -07004 *
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#include "includes.h"
16
17#include "common.h"
18#include "crypto/sha1.h"
19#include "crypto/tls.h"
20#include "tlsv1_common.h"
21#include "tlsv1_record.h"
22#include "tlsv1_server.h"
23#include "tlsv1_server_i.h"
24
25/* TODO:
26 * Support for a message fragmented across several records (RFC 2246, 6.2.1)
27 */
28
29
30void tlsv1_server_alert(struct tlsv1_server *conn, u8 level, u8 description)
31{
32 conn->alert_level = level;
33 conn->alert_description = description;
34}
35
36
37int tlsv1_server_derive_keys(struct tlsv1_server *conn,
38 const u8 *pre_master_secret,
39 size_t pre_master_secret_len)
40{
41 u8 seed[2 * TLS_RANDOM_LEN];
42 u8 key_block[TLS_MAX_KEY_BLOCK_LEN];
43 u8 *pos;
44 size_t key_block_len;
45
46 if (pre_master_secret) {
47 wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: pre_master_secret",
48 pre_master_secret, pre_master_secret_len);
49 os_memcpy(seed, conn->client_random, TLS_RANDOM_LEN);
50 os_memcpy(seed + TLS_RANDOM_LEN, conn->server_random,
51 TLS_RANDOM_LEN);
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -080052 if (tls_prf(conn->rl.tls_version,
53 pre_master_secret, pre_master_secret_len,
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -070054 "master secret", seed, 2 * TLS_RANDOM_LEN,
55 conn->master_secret, TLS_MASTER_SECRET_LEN)) {
56 wpa_printf(MSG_DEBUG, "TLSv1: Failed to derive "
57 "master_secret");
58 return -1;
59 }
60 wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: master_secret",
61 conn->master_secret, TLS_MASTER_SECRET_LEN);
62 }
63
64 os_memcpy(seed, conn->server_random, TLS_RANDOM_LEN);
65 os_memcpy(seed + TLS_RANDOM_LEN, conn->client_random, TLS_RANDOM_LEN);
66 key_block_len = 2 * (conn->rl.hash_size + conn->rl.key_material_len +
67 conn->rl.iv_size);
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -080068 if (tls_prf(conn->rl.tls_version,
69 conn->master_secret, TLS_MASTER_SECRET_LEN,
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -070070 "key expansion", seed, 2 * TLS_RANDOM_LEN,
71 key_block, key_block_len)) {
72 wpa_printf(MSG_DEBUG, "TLSv1: Failed to derive key_block");
73 return -1;
74 }
75 wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: key_block",
76 key_block, key_block_len);
77
78 pos = key_block;
79
80 /* client_write_MAC_secret */
81 os_memcpy(conn->rl.read_mac_secret, pos, conn->rl.hash_size);
82 pos += conn->rl.hash_size;
83 /* server_write_MAC_secret */
84 os_memcpy(conn->rl.write_mac_secret, pos, conn->rl.hash_size);
85 pos += conn->rl.hash_size;
86
87 /* client_write_key */
88 os_memcpy(conn->rl.read_key, pos, conn->rl.key_material_len);
89 pos += conn->rl.key_material_len;
90 /* server_write_key */
91 os_memcpy(conn->rl.write_key, pos, conn->rl.key_material_len);
92 pos += conn->rl.key_material_len;
93
94 /* client_write_IV */
95 os_memcpy(conn->rl.read_iv, pos, conn->rl.iv_size);
96 pos += conn->rl.iv_size;
97 /* server_write_IV */
98 os_memcpy(conn->rl.write_iv, pos, conn->rl.iv_size);
99 pos += conn->rl.iv_size;
100
101 return 0;
102}
103
104
105/**
106 * tlsv1_server_handshake - Process TLS handshake
107 * @conn: TLSv1 server connection data from tlsv1_server_init()
108 * @in_data: Input data from TLS peer
109 * @in_len: Input data length
110 * @out_len: Length of the output buffer.
111 * Returns: Pointer to output data, %NULL on failure
112 */
113u8 * tlsv1_server_handshake(struct tlsv1_server *conn,
114 const u8 *in_data, size_t in_len,
115 size_t *out_len)
116{
117 const u8 *pos, *end;
118 u8 *msg = NULL, *in_msg, *in_pos, *in_end, alert, ct;
119 size_t in_msg_len;
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800120 int used;
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700121
122 if (in_data == NULL || in_len == 0) {
123 wpa_printf(MSG_DEBUG, "TLSv1: No input data to server");
124 return NULL;
125 }
126
127 pos = in_data;
128 end = in_data + in_len;
129 in_msg = os_malloc(in_len);
130 if (in_msg == NULL)
131 return NULL;
132
133 /* Each received packet may include multiple records */
134 while (pos < end) {
135 in_msg_len = in_len;
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800136 used = tlsv1_record_receive(&conn->rl, pos, end - pos,
137 in_msg, &in_msg_len, &alert);
138 if (used < 0) {
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700139 wpa_printf(MSG_DEBUG, "TLSv1: Processing received "
140 "record failed");
141 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, alert);
142 goto failed;
143 }
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800144 if (used == 0) {
145 /* need more data */
146 wpa_printf(MSG_DEBUG, "TLSv1: Partial processing not "
147 "yet supported");
148 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, alert);
149 goto failed;
150 }
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700151 ct = pos[0];
152
153 in_pos = in_msg;
154 in_end = in_msg + in_msg_len;
155
156 /* Each received record may include multiple messages of the
157 * same ContentType. */
158 while (in_pos < in_end) {
159 in_msg_len = in_end - in_pos;
160 if (tlsv1_server_process_handshake(conn, ct, in_pos,
161 &in_msg_len) < 0)
162 goto failed;
163 in_pos += in_msg_len;
164 }
165
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800166 pos += used;
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700167 }
168
169 os_free(in_msg);
170 in_msg = NULL;
171
172 msg = tlsv1_server_handshake_write(conn, out_len);
173
174failed:
175 os_free(in_msg);
176 if (conn->alert_level) {
177 if (conn->state == FAILED) {
178 /* Avoid alert loops */
179 wpa_printf(MSG_DEBUG, "TLSv1: Drop alert loop");
180 os_free(msg);
181 return NULL;
182 }
183 conn->state = FAILED;
184 os_free(msg);
185 msg = tlsv1_server_send_alert(conn, conn->alert_level,
186 conn->alert_description,
187 out_len);
188 }
189
190 return msg;
191}
192
193
194/**
195 * tlsv1_server_encrypt - Encrypt data into TLS tunnel
196 * @conn: TLSv1 server connection data from tlsv1_server_init()
197 * @in_data: Pointer to plaintext data to be encrypted
198 * @in_len: Input buffer length
199 * @out_data: Pointer to output buffer (encrypted TLS data)
200 * @out_len: Maximum out_data length
201 * Returns: Number of bytes written to out_data, -1 on failure
202 *
203 * This function is used after TLS handshake has been completed successfully to
204 * send data in the encrypted tunnel.
205 */
206int tlsv1_server_encrypt(struct tlsv1_server *conn,
207 const u8 *in_data, size_t in_len,
208 u8 *out_data, size_t out_len)
209{
210 size_t rlen;
211
212 wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: Plaintext AppData",
213 in_data, in_len);
214
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700215 if (tlsv1_record_send(&conn->rl, TLS_CONTENT_TYPE_APPLICATION_DATA,
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800216 out_data, out_len, in_data, in_len, &rlen) < 0) {
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700217 wpa_printf(MSG_DEBUG, "TLSv1: Failed to create a record");
218 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL,
219 TLS_ALERT_INTERNAL_ERROR);
220 return -1;
221 }
222
223 return rlen;
224}
225
226
227/**
228 * tlsv1_server_decrypt - Decrypt data from TLS tunnel
229 * @conn: TLSv1 server connection data from tlsv1_server_init()
230 * @in_data: Pointer to input buffer (encrypted TLS data)
231 * @in_len: Input buffer length
232 * @out_data: Pointer to output buffer (decrypted data from TLS tunnel)
233 * @out_len: Maximum out_data length
234 * Returns: Number of bytes written to out_data, -1 on failure
235 *
236 * This function is used after TLS handshake has been completed successfully to
237 * receive data from the encrypted tunnel.
238 */
239int tlsv1_server_decrypt(struct tlsv1_server *conn,
240 const u8 *in_data, size_t in_len,
241 u8 *out_data, size_t out_len)
242{
243 const u8 *in_end, *pos;
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800244 int used;
245 u8 alert, *out_end, *out_pos, ct;
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700246 size_t olen;
247
248 pos = in_data;
249 in_end = in_data + in_len;
250 out_pos = out_data;
251 out_end = out_data + out_len;
252
253 while (pos < in_end) {
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800254 ct = pos[0];
255 olen = out_end - out_pos;
256 used = tlsv1_record_receive(&conn->rl, pos, in_end - pos,
257 out_pos, &olen, &alert);
258 if (used < 0) {
259 wpa_printf(MSG_DEBUG, "TLSv1: Record layer processing "
260 "failed");
261 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, alert);
262 return -1;
263 }
264 if (used == 0) {
265 /* need more data */
266 wpa_printf(MSG_DEBUG, "TLSv1: Partial processing not "
267 "yet supported");
268 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL, alert);
269 return -1;
270 }
271
272 if (ct == TLS_CONTENT_TYPE_ALERT) {
273 if (olen < 2) {
274 wpa_printf(MSG_DEBUG, "TLSv1: Alert "
275 "underflow");
276 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL,
277 TLS_ALERT_DECODE_ERROR);
278 return -1;
279 }
280 wpa_printf(MSG_DEBUG, "TLSv1: Received alert %d:%d",
281 out_pos[0], out_pos[1]);
282 if (out_pos[0] == TLS_ALERT_LEVEL_WARNING) {
283 /* Continue processing */
284 pos += used;
285 continue;
286 }
287
288 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL,
289 out_pos[1]);
290 return -1;
291 }
292
293 if (ct != TLS_CONTENT_TYPE_APPLICATION_DATA) {
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700294 wpa_printf(MSG_DEBUG, "TLSv1: Unexpected content type "
295 "0x%x", pos[0]);
296 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL,
297 TLS_ALERT_UNEXPECTED_MESSAGE);
298 return -1;
299 }
300
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700301 out_pos += olen;
302 if (out_pos > out_end) {
303 wpa_printf(MSG_DEBUG, "TLSv1: Buffer not large enough "
304 "for processing the received record");
305 tlsv1_server_alert(conn, TLS_ALERT_LEVEL_FATAL,
306 TLS_ALERT_INTERNAL_ERROR);
307 return -1;
308 }
309
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800310 pos += used;
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700311 }
312
313 return out_pos - out_data;
314}
315
316
317/**
318 * tlsv1_server_global_init - Initialize TLSv1 server
319 * Returns: 0 on success, -1 on failure
320 *
321 * This function must be called before using any other TLSv1 server functions.
322 */
323int tlsv1_server_global_init(void)
324{
325 return crypto_global_init();
326}
327
328
329/**
330 * tlsv1_server_global_deinit - Deinitialize TLSv1 server
331 *
332 * This function can be used to deinitialize the TLSv1 server that was
333 * initialized by calling tlsv1_server_global_init(). No TLSv1 server functions
334 * can be called after this before calling tlsv1_server_global_init() again.
335 */
336void tlsv1_server_global_deinit(void)
337{
338 crypto_global_deinit();
339}
340
341
342/**
343 * tlsv1_server_init - Initialize TLSv1 server connection
344 * @cred: Pointer to server credentials from tlsv1_server_cred_alloc()
345 * Returns: Pointer to TLSv1 server connection data or %NULL on failure
346 */
347struct tlsv1_server * tlsv1_server_init(struct tlsv1_credentials *cred)
348{
349 struct tlsv1_server *conn;
350 size_t count;
351 u16 *suites;
352
353 conn = os_zalloc(sizeof(*conn));
354 if (conn == NULL)
355 return NULL;
356
357 conn->cred = cred;
358
359 conn->state = CLIENT_HELLO;
360
361 if (tls_verify_hash_init(&conn->verify) < 0) {
362 wpa_printf(MSG_DEBUG, "TLSv1: Failed to initialize verify "
363 "hash");
364 os_free(conn);
365 return NULL;
366 }
367
368 count = 0;
369 suites = conn->cipher_suites;
370#ifndef CONFIG_CRYPTO_INTERNAL
371 suites[count++] = TLS_RSA_WITH_AES_256_CBC_SHA;
372#endif /* CONFIG_CRYPTO_INTERNAL */
373 suites[count++] = TLS_RSA_WITH_AES_128_CBC_SHA;
374 suites[count++] = TLS_RSA_WITH_3DES_EDE_CBC_SHA;
375 suites[count++] = TLS_RSA_WITH_RC4_128_SHA;
376 suites[count++] = TLS_RSA_WITH_RC4_128_MD5;
377 conn->num_cipher_suites = count;
378
379 return conn;
380}
381
382
383static void tlsv1_server_clear_data(struct tlsv1_server *conn)
384{
385 tlsv1_record_set_cipher_suite(&conn->rl, TLS_NULL_WITH_NULL_NULL);
386 tlsv1_record_change_write_cipher(&conn->rl);
387 tlsv1_record_change_read_cipher(&conn->rl);
388 tls_verify_hash_free(&conn->verify);
389
390 crypto_public_key_free(conn->client_rsa_key);
391 conn->client_rsa_key = NULL;
392
393 os_free(conn->session_ticket);
394 conn->session_ticket = NULL;
395 conn->session_ticket_len = 0;
396 conn->use_session_ticket = 0;
397
398 os_free(conn->dh_secret);
399 conn->dh_secret = NULL;
400 conn->dh_secret_len = 0;
401}
402
403
404/**
405 * tlsv1_server_deinit - Deinitialize TLSv1 server connection
406 * @conn: TLSv1 server connection data from tlsv1_server_init()
407 */
408void tlsv1_server_deinit(struct tlsv1_server *conn)
409{
410 tlsv1_server_clear_data(conn);
411 os_free(conn);
412}
413
414
415/**
416 * tlsv1_server_established - Check whether connection has been established
417 * @conn: TLSv1 server connection data from tlsv1_server_init()
418 * Returns: 1 if connection is established, 0 if not
419 */
420int tlsv1_server_established(struct tlsv1_server *conn)
421{
422 return conn->state == ESTABLISHED;
423}
424
425
426/**
427 * tlsv1_server_prf - Use TLS-PRF to derive keying material
428 * @conn: TLSv1 server connection data from tlsv1_server_init()
429 * @label: Label (e.g., description of the key) for PRF
430 * @server_random_first: seed is 0 = client_random|server_random,
431 * 1 = server_random|client_random
432 * @out: Buffer for output data from TLS-PRF
433 * @out_len: Length of the output buffer
434 * Returns: 0 on success, -1 on failure
435 */
436int tlsv1_server_prf(struct tlsv1_server *conn, const char *label,
437 int server_random_first, u8 *out, size_t out_len)
438{
439 u8 seed[2 * TLS_RANDOM_LEN];
440
441 if (conn->state != ESTABLISHED)
442 return -1;
443
444 if (server_random_first) {
445 os_memcpy(seed, conn->server_random, TLS_RANDOM_LEN);
446 os_memcpy(seed + TLS_RANDOM_LEN, conn->client_random,
447 TLS_RANDOM_LEN);
448 } else {
449 os_memcpy(seed, conn->client_random, TLS_RANDOM_LEN);
450 os_memcpy(seed + TLS_RANDOM_LEN, conn->server_random,
451 TLS_RANDOM_LEN);
452 }
453
Dmitry Shmidt1f69aa52012-01-24 16:10:04 -0800454 return tls_prf(conn->rl.tls_version,
455 conn->master_secret, TLS_MASTER_SECRET_LEN,
Dmitry Shmidt8d520ff2011-05-09 14:06:53 -0700456 label, seed, 2 * TLS_RANDOM_LEN, out, out_len);
457}
458
459
460/**
461 * tlsv1_server_get_cipher - Get current cipher name
462 * @conn: TLSv1 server connection data from tlsv1_server_init()
463 * @buf: Buffer for the cipher name
464 * @buflen: buf size
465 * Returns: 0 on success, -1 on failure
466 *
467 * Get the name of the currently used cipher.
468 */
469int tlsv1_server_get_cipher(struct tlsv1_server *conn, char *buf,
470 size_t buflen)
471{
472 char *cipher;
473
474 switch (conn->rl.cipher_suite) {
475 case TLS_RSA_WITH_RC4_128_MD5:
476 cipher = "RC4-MD5";
477 break;
478 case TLS_RSA_WITH_RC4_128_SHA:
479 cipher = "RC4-SHA";
480 break;
481 case TLS_RSA_WITH_DES_CBC_SHA:
482 cipher = "DES-CBC-SHA";
483 break;
484 case TLS_RSA_WITH_3DES_EDE_CBC_SHA:
485 cipher = "DES-CBC3-SHA";
486 break;
487 case TLS_DH_anon_WITH_AES_128_CBC_SHA:
488 cipher = "ADH-AES-128-SHA";
489 break;
490 case TLS_RSA_WITH_AES_256_CBC_SHA:
491 cipher = "AES-256-SHA";
492 break;
493 case TLS_RSA_WITH_AES_128_CBC_SHA:
494 cipher = "AES-128-SHA";
495 break;
496 default:
497 return -1;
498 }
499
500 if (os_strlcpy(buf, cipher, buflen) >= buflen)
501 return -1;
502 return 0;
503}
504
505
506/**
507 * tlsv1_server_shutdown - Shutdown TLS connection
508 * @conn: TLSv1 server connection data from tlsv1_server_init()
509 * Returns: 0 on success, -1 on failure
510 */
511int tlsv1_server_shutdown(struct tlsv1_server *conn)
512{
513 conn->state = CLIENT_HELLO;
514
515 if (tls_verify_hash_init(&conn->verify) < 0) {
516 wpa_printf(MSG_DEBUG, "TLSv1: Failed to re-initialize verify "
517 "hash");
518 return -1;
519 }
520
521 tlsv1_server_clear_data(conn);
522
523 return 0;
524}
525
526
527/**
528 * tlsv1_server_resumed - Was session resumption used
529 * @conn: TLSv1 server connection data from tlsv1_server_init()
530 * Returns: 1 if current session used session resumption, 0 if not
531 */
532int tlsv1_server_resumed(struct tlsv1_server *conn)
533{
534 return 0;
535}
536
537
538/**
539 * tlsv1_server_get_keys - Get master key and random data from TLS connection
540 * @conn: TLSv1 server connection data from tlsv1_server_init()
541 * @keys: Structure of key/random data (filled on success)
542 * Returns: 0 on success, -1 on failure
543 */
544int tlsv1_server_get_keys(struct tlsv1_server *conn, struct tls_keys *keys)
545{
546 os_memset(keys, 0, sizeof(*keys));
547 if (conn->state == CLIENT_HELLO)
548 return -1;
549
550 keys->client_random = conn->client_random;
551 keys->client_random_len = TLS_RANDOM_LEN;
552
553 if (conn->state != SERVER_HELLO) {
554 keys->server_random = conn->server_random;
555 keys->server_random_len = TLS_RANDOM_LEN;
556 keys->master_key = conn->master_secret;
557 keys->master_key_len = TLS_MASTER_SECRET_LEN;
558 }
559
560 return 0;
561}
562
563
564/**
565 * tlsv1_server_get_keyblock_size - Get TLS key_block size
566 * @conn: TLSv1 server connection data from tlsv1_server_init()
567 * Returns: Size of the key_block for the negotiated cipher suite or -1 on
568 * failure
569 */
570int tlsv1_server_get_keyblock_size(struct tlsv1_server *conn)
571{
572 if (conn->state == CLIENT_HELLO || conn->state == SERVER_HELLO)
573 return -1;
574
575 return 2 * (conn->rl.hash_size + conn->rl.key_material_len +
576 conn->rl.iv_size);
577}
578
579
580/**
581 * tlsv1_server_set_cipher_list - Configure acceptable cipher suites
582 * @conn: TLSv1 server connection data from tlsv1_server_init()
583 * @ciphers: Zero (TLS_CIPHER_NONE) terminated list of allowed ciphers
584 * (TLS_CIPHER_*).
585 * Returns: 0 on success, -1 on failure
586 */
587int tlsv1_server_set_cipher_list(struct tlsv1_server *conn, u8 *ciphers)
588{
589 size_t count;
590 u16 *suites;
591
592 /* TODO: implement proper configuration of cipher suites */
593 if (ciphers[0] == TLS_CIPHER_ANON_DH_AES128_SHA) {
594 count = 0;
595 suites = conn->cipher_suites;
596#ifndef CONFIG_CRYPTO_INTERNAL
597 suites[count++] = TLS_RSA_WITH_AES_256_CBC_SHA;
598#endif /* CONFIG_CRYPTO_INTERNAL */
599 suites[count++] = TLS_RSA_WITH_AES_128_CBC_SHA;
600 suites[count++] = TLS_RSA_WITH_3DES_EDE_CBC_SHA;
601 suites[count++] = TLS_RSA_WITH_RC4_128_SHA;
602 suites[count++] = TLS_RSA_WITH_RC4_128_MD5;
603#ifndef CONFIG_CRYPTO_INTERNAL
604 suites[count++] = TLS_DH_anon_WITH_AES_256_CBC_SHA;
605#endif /* CONFIG_CRYPTO_INTERNAL */
606 suites[count++] = TLS_DH_anon_WITH_AES_128_CBC_SHA;
607 suites[count++] = TLS_DH_anon_WITH_3DES_EDE_CBC_SHA;
608 suites[count++] = TLS_DH_anon_WITH_RC4_128_MD5;
609 suites[count++] = TLS_DH_anon_WITH_DES_CBC_SHA;
610 conn->num_cipher_suites = count;
611 }
612
613 return 0;
614}
615
616
617int tlsv1_server_set_verify(struct tlsv1_server *conn, int verify_peer)
618{
619 conn->verify_peer = verify_peer;
620 return 0;
621}
622
623
624void tlsv1_server_set_session_ticket_cb(struct tlsv1_server *conn,
625 tlsv1_server_session_ticket_cb cb,
626 void *ctx)
627{
628 wpa_printf(MSG_DEBUG, "TLSv1: SessionTicket callback set %p (ctx %p)",
629 cb, ctx);
630 conn->session_ticket_cb = cb;
631 conn->session_ticket_cb_ctx = ctx;
632}