xref: /dragonfly/contrib/wpa_supplicant/src/tls/tlsv1_client.c (revision 3a84a4273475ed07d0ab1c2dfeffdfedef35d9cd)
1 /*
2  * TLS v1.0/v1.1/v1.2 client (RFC 2246, RFC 4346, RFC 5246)
3  * Copyright (c) 2006-2019, Jouni Malinen <j@w1.fi>
4  *
5  * This software may be distributed under the terms of the BSD license.
6  * See README for more details.
7  */
8 
9 #include "includes.h"
10 
11 #include "common.h"
12 #include "crypto/sha1.h"
13 #include "crypto/tls.h"
14 #include "x509v3.h"
15 #include "tlsv1_common.h"
16 #include "tlsv1_record.h"
17 #include "tlsv1_client.h"
18 #include "tlsv1_client_i.h"
19 
20 /* TODO:
21  * Support for a message fragmented across several records (RFC 2246, 6.2.1)
22  */
23 
24 
tls_alert(struct tlsv1_client * conn,u8 level,u8 description)25 void tls_alert(struct tlsv1_client *conn, u8 level, u8 description)
26 {
27           conn->alert_level = level;
28           conn->alert_description = description;
29 }
30 
31 
tlsv1_client_free_dh(struct tlsv1_client * conn)32 void tlsv1_client_free_dh(struct tlsv1_client *conn)
33 {
34           os_free(conn->dh_p);
35           os_free(conn->dh_g);
36           os_free(conn->dh_ys);
37           conn->dh_p = conn->dh_g = conn->dh_ys = NULL;
38 }
39 
40 
tls_derive_pre_master_secret(u8 * pre_master_secret)41 int tls_derive_pre_master_secret(u8 *pre_master_secret)
42 {
43           WPA_PUT_BE16(pre_master_secret, TLS_VERSION);
44           if (os_get_random(pre_master_secret + 2,
45                                 TLS_PRE_MASTER_SECRET_LEN - 2))
46                     return -1;
47           return 0;
48 }
49 
50 
tls_derive_keys(struct tlsv1_client * conn,const u8 * pre_master_secret,size_t pre_master_secret_len)51 int tls_derive_keys(struct tlsv1_client *conn,
52                         const u8 *pre_master_secret, size_t pre_master_secret_len)
53 {
54           u8 seed[2 * TLS_RANDOM_LEN];
55           u8 key_block[TLS_MAX_KEY_BLOCK_LEN];
56           u8 *pos;
57           size_t key_block_len;
58 
59           if (pre_master_secret) {
60                     wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: pre_master_secret",
61                                         pre_master_secret, pre_master_secret_len);
62                     os_memcpy(seed, conn->client_random, TLS_RANDOM_LEN);
63                     os_memcpy(seed + TLS_RANDOM_LEN, conn->server_random,
64                                 TLS_RANDOM_LEN);
65                     if (tls_prf(conn->rl.tls_version,
66                                   pre_master_secret, pre_master_secret_len,
67                                   "master secret", seed, 2 * TLS_RANDOM_LEN,
68                                   conn->master_secret, TLS_MASTER_SECRET_LEN)) {
69                               wpa_printf(MSG_DEBUG, "TLSv1: Failed to derive "
70                                            "master_secret");
71                               return -1;
72                     }
73                     wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: master_secret",
74                                         conn->master_secret, TLS_MASTER_SECRET_LEN);
75           }
76 
77           os_memcpy(seed, conn->server_random, TLS_RANDOM_LEN);
78           os_memcpy(seed + TLS_RANDOM_LEN, conn->client_random, TLS_RANDOM_LEN);
79           key_block_len = 2 * (conn->rl.hash_size + conn->rl.key_material_len);
80           if (conn->rl.tls_version == TLS_VERSION_1)
81                     key_block_len += 2 * conn->rl.iv_size;
82           if (tls_prf(conn->rl.tls_version,
83                         conn->master_secret, TLS_MASTER_SECRET_LEN,
84                         "key expansion", seed, 2 * TLS_RANDOM_LEN,
85                         key_block, key_block_len)) {
86                     wpa_printf(MSG_DEBUG, "TLSv1: Failed to derive key_block");
87                     return -1;
88           }
89           wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: key_block",
90                               key_block, key_block_len);
91 
92           pos = key_block;
93 
94           /* client_write_MAC_secret */
95           os_memcpy(conn->rl.write_mac_secret, pos, conn->rl.hash_size);
96           pos += conn->rl.hash_size;
97           /* server_write_MAC_secret */
98           os_memcpy(conn->rl.read_mac_secret, pos, conn->rl.hash_size);
99           pos += conn->rl.hash_size;
100 
101           /* client_write_key */
102           os_memcpy(conn->rl.write_key, pos, conn->rl.key_material_len);
103           pos += conn->rl.key_material_len;
104           /* server_write_key */
105           os_memcpy(conn->rl.read_key, pos, conn->rl.key_material_len);
106           pos += conn->rl.key_material_len;
107 
108           if (conn->rl.tls_version == TLS_VERSION_1) {
109                     /* client_write_IV */
110                     os_memcpy(conn->rl.write_iv, pos, conn->rl.iv_size);
111                     pos += conn->rl.iv_size;
112                     /* server_write_IV */
113                     os_memcpy(conn->rl.read_iv, pos, conn->rl.iv_size);
114           } else {
115                     /*
116                      * Use IV field to set the mask value for TLS v1.1. A fixed
117                      * mask of zero is used per the RFC 4346, 6.2.3.2 CBC Block
118                      * Cipher option 2a.
119                      */
120                     os_memset(conn->rl.write_iv, 0, conn->rl.iv_size);
121           }
122 
123           return 0;
124 }
125 
126 
127 /**
128  * tlsv1_client_handshake - Process TLS handshake
129  * @conn: TLSv1 client connection data from tlsv1_client_init()
130  * @in_data: Input data from TLS peer
131  * @in_len: Input data length
132  * @out_len: Length of the output buffer.
133  * @appl_data: Pointer to application data pointer, or %NULL if dropped
134  * @appl_data_len: Pointer to variable that is set to appl_data length
135  * @need_more_data: Set to 1 if more data would be needed to complete
136  *        processing
137  * Returns: Pointer to output data, %NULL on failure
138  */
tlsv1_client_handshake(struct tlsv1_client * conn,const u8 * in_data,size_t in_len,size_t * out_len,u8 ** appl_data,size_t * appl_data_len,int * need_more_data)139 u8 * tlsv1_client_handshake(struct tlsv1_client *conn,
140                                   const u8 *in_data, size_t in_len,
141                                   size_t *out_len, u8 **appl_data,
142                                   size_t *appl_data_len, int *need_more_data)
143 {
144           const u8 *pos, *end;
145           u8 *msg = NULL, *in_msg = NULL, *in_pos, *in_end, alert, ct;
146           size_t in_msg_len;
147           int no_appl_data;
148           int used;
149 
150           if (need_more_data)
151                     *need_more_data = 0;
152 
153           if (conn->state == CLIENT_HELLO) {
154                     if (in_len)
155                               return NULL;
156                     return tls_send_client_hello(conn, out_len);
157           }
158 
159           if (conn->partial_input) {
160                     if (wpabuf_resize(&conn->partial_input, in_len) < 0) {
161                               wpa_printf(MSG_DEBUG, "TLSv1: Failed to allocate "
162                                            "memory for pending record");
163                               tls_alert(conn, TLS_ALERT_LEVEL_FATAL,
164                                           TLS_ALERT_INTERNAL_ERROR);
165                               goto failed;
166                     }
167                     wpabuf_put_data(conn->partial_input, in_data, in_len);
168                     in_data = wpabuf_head(conn->partial_input);
169                     in_len = wpabuf_len(conn->partial_input);
170           }
171 
172           if (in_data == NULL || in_len == 0)
173                     return NULL;
174 
175           pos = in_data;
176           end = in_data + in_len;
177           in_msg = os_malloc(in_len);
178           if (in_msg == NULL)
179                     return NULL;
180 
181           /* Each received packet may include multiple records */
182           while (pos < end) {
183                     in_msg_len = in_len;
184                     used = tlsv1_record_receive(&conn->rl, pos, end - pos,
185                                                       in_msg, &in_msg_len, &alert);
186                     if (used < 0) {
187                               wpa_printf(MSG_DEBUG, "TLSv1: Processing received "
188                                            "record failed");
189                               tls_alert(conn, TLS_ALERT_LEVEL_FATAL, alert);
190                               goto failed;
191                     }
192                     if (used == 0) {
193                               struct wpabuf *partial;
194                               wpa_printf(MSG_DEBUG, "TLSv1: Need more data");
195                               partial = wpabuf_alloc_copy(pos, end - pos);
196                               wpabuf_free(conn->partial_input);
197                               conn->partial_input = partial;
198                               if (conn->partial_input == NULL) {
199                                         wpa_printf(MSG_DEBUG, "TLSv1: Failed to "
200                                                      "allocate memory for pending "
201                                                      "record");
202                                         tls_alert(conn, TLS_ALERT_LEVEL_FATAL,
203                                                     TLS_ALERT_INTERNAL_ERROR);
204                                         goto failed;
205                               }
206                               os_free(in_msg);
207                               if (need_more_data)
208                                         *need_more_data = 1;
209                               return NULL;
210                     }
211                     ct = pos[0];
212 
213                     in_pos = in_msg;
214                     in_end = in_msg + in_msg_len;
215 
216                     /* Each received record may include multiple messages of the
217                      * same ContentType. */
218                     while (in_pos < in_end) {
219                               in_msg_len = in_end - in_pos;
220                               if (tlsv1_client_process_handshake(conn, ct, in_pos,
221                                                                          &in_msg_len,
222                                                                          appl_data,
223                                                                          appl_data_len) < 0)
224                                         goto failed;
225                               in_pos += in_msg_len;
226                     }
227 
228                     pos += used;
229           }
230 
231           os_free(in_msg);
232           in_msg = NULL;
233 
234           no_appl_data = appl_data == NULL || *appl_data == NULL;
235           msg = tlsv1_client_handshake_write(conn, out_len, no_appl_data);
236 
237 failed:
238           os_free(in_msg);
239           if (conn->alert_level) {
240                     wpabuf_free(conn->partial_input);
241                     conn->partial_input = NULL;
242                     conn->state = FAILED;
243                     os_free(msg);
244                     msg = tlsv1_client_send_alert(conn, conn->alert_level,
245                                                         conn->alert_description,
246                                                         out_len);
247           } else if (msg == NULL) {
248                     msg = os_zalloc(1);
249                     *out_len = 0;
250           }
251 
252           if (need_more_data == NULL || !(*need_more_data)) {
253                     wpabuf_free(conn->partial_input);
254                     conn->partial_input = NULL;
255           }
256 
257           return msg;
258 }
259 
260 
261 /**
262  * tlsv1_client_encrypt - Encrypt data into TLS tunnel
263  * @conn: TLSv1 client connection data from tlsv1_client_init()
264  * @in_data: Pointer to plaintext data to be encrypted
265  * @in_len: Input buffer length
266  * @out_data: Pointer to output buffer (encrypted TLS data)
267  * @out_len: Maximum out_data length
268  * Returns: Number of bytes written to out_data, -1 on failure
269  *
270  * This function is used after TLS handshake has been completed successfully to
271  * send data in the encrypted tunnel.
272  */
tlsv1_client_encrypt(struct tlsv1_client * conn,const u8 * in_data,size_t in_len,u8 * out_data,size_t out_len)273 int tlsv1_client_encrypt(struct tlsv1_client *conn,
274                                const u8 *in_data, size_t in_len,
275                                u8 *out_data, size_t out_len)
276 {
277           size_t rlen;
278 
279           wpa_hexdump_key(MSG_MSGDUMP, "TLSv1: Plaintext AppData",
280                               in_data, in_len);
281 
282           if (tlsv1_record_send(&conn->rl, TLS_CONTENT_TYPE_APPLICATION_DATA,
283                                     out_data, out_len, in_data, in_len, &rlen) < 0) {
284                     wpa_printf(MSG_DEBUG, "TLSv1: Failed to create a record");
285                     tls_alert(conn, TLS_ALERT_LEVEL_FATAL,
286                                 TLS_ALERT_INTERNAL_ERROR);
287                     return -1;
288           }
289 
290           return rlen;
291 }
292 
293 
294 /**
295  * tlsv1_client_decrypt - Decrypt data from TLS tunnel
296  * @conn: TLSv1 client connection data from tlsv1_client_init()
297  * @in_data: Pointer to input buffer (encrypted TLS data)
298  * @in_len: Input buffer length
299  * @need_more_data: Set to 1 if more data would be needed to complete
300  *        processing
301  * Returns: Decrypted data or %NULL on failure
302  *
303  * This function is used after TLS handshake has been completed successfully to
304  * receive data from the encrypted tunnel.
305  */
tlsv1_client_decrypt(struct tlsv1_client * conn,const u8 * in_data,size_t in_len,int * need_more_data)306 struct wpabuf * tlsv1_client_decrypt(struct tlsv1_client *conn,
307                                              const u8 *in_data, size_t in_len,
308                                              int *need_more_data)
309 {
310           const u8 *in_end, *pos;
311           int used;
312           u8 alert, *out_pos, ct;
313           size_t olen;
314           struct wpabuf *buf = NULL;
315 
316           if (need_more_data)
317                     *need_more_data = 0;
318 
319           if (conn->partial_input) {
320                     if (wpabuf_resize(&conn->partial_input, in_len) < 0) {
321                               wpa_printf(MSG_DEBUG, "TLSv1: Failed to allocate "
322                                            "memory for pending record");
323                               alert = TLS_ALERT_INTERNAL_ERROR;
324                               goto fail;
325                     }
326                     wpabuf_put_data(conn->partial_input, in_data, in_len);
327                     in_data = wpabuf_head(conn->partial_input);
328                     in_len = wpabuf_len(conn->partial_input);
329           }
330 
331           pos = in_data;
332           in_end = in_data + in_len;
333 
334           while (pos < in_end) {
335                     ct = pos[0];
336                     if (wpabuf_resize(&buf, in_end - pos) < 0) {
337                               alert = TLS_ALERT_INTERNAL_ERROR;
338                               goto fail;
339                     }
340                     out_pos = wpabuf_put(buf, 0);
341                     olen = wpabuf_tailroom(buf);
342                     used = tlsv1_record_receive(&conn->rl, pos, in_end - pos,
343                                                       out_pos, &olen, &alert);
344                     if (used < 0) {
345                               wpa_printf(MSG_DEBUG, "TLSv1: Record layer processing "
346                                            "failed");
347                               goto fail;
348                     }
349                     if (used == 0) {
350                               struct wpabuf *partial;
351                               wpa_printf(MSG_DEBUG, "TLSv1: Need more data");
352                               partial = wpabuf_alloc_copy(pos, in_end - pos);
353                               wpabuf_free(conn->partial_input);
354                               conn->partial_input = partial;
355                               if (conn->partial_input == NULL) {
356                                         wpa_printf(MSG_DEBUG, "TLSv1: Failed to "
357                                                      "allocate memory for pending "
358                                                      "record");
359                                         alert = TLS_ALERT_INTERNAL_ERROR;
360                                         goto fail;
361                               }
362                               if (need_more_data)
363                                         *need_more_data = 1;
364                               return buf;
365                     }
366 
367                     if (ct == TLS_CONTENT_TYPE_ALERT) {
368                               if (olen < 2) {
369                                         wpa_printf(MSG_DEBUG, "TLSv1: Alert "
370                                                      "underflow");
371                                         alert = TLS_ALERT_DECODE_ERROR;
372                                         goto fail;
373                               }
374                               wpa_printf(MSG_DEBUG, "TLSv1: Received alert %d:%d",
375                                            out_pos[0], out_pos[1]);
376                               if (out_pos[0] == TLS_ALERT_LEVEL_WARNING) {
377                                         /* Continue processing */
378                                         pos += used;
379                                         continue;
380                               }
381 
382                               alert = out_pos[1];
383                               goto fail;
384                     }
385 
386                     if (ct != TLS_CONTENT_TYPE_APPLICATION_DATA) {
387                               wpa_printf(MSG_DEBUG, "TLSv1: Unexpected content type "
388                                            "0x%x when decrypting application data",
389                                            pos[0]);
390                               alert = TLS_ALERT_UNEXPECTED_MESSAGE;
391                               goto fail;
392                     }
393 
394                     wpabuf_put(buf, olen);
395 
396                     pos += used;
397           }
398 
399           wpabuf_free(conn->partial_input);
400           conn->partial_input = NULL;
401           return buf;
402 
403 fail:
404           wpabuf_free(buf);
405           wpabuf_free(conn->partial_input);
406           conn->partial_input = NULL;
407           tls_alert(conn, TLS_ALERT_LEVEL_FATAL, alert);
408           return NULL;
409 }
410 
411 
412 /**
413  * tlsv1_client_global_init - Initialize TLSv1 client
414  * Returns: 0 on success, -1 on failure
415  *
416  * This function must be called before using any other TLSv1 client functions.
417  */
tlsv1_client_global_init(void)418 int tlsv1_client_global_init(void)
419 {
420           return crypto_global_init();
421 }
422 
423 
424 /**
425  * tlsv1_client_global_deinit - Deinitialize TLSv1 client
426  *
427  * This function can be used to deinitialize the TLSv1 client that was
428  * initialized by calling tlsv1_client_global_init(). No TLSv1 client functions
429  * can be called after this before calling tlsv1_client_global_init() again.
430  */
tlsv1_client_global_deinit(void)431 void tlsv1_client_global_deinit(void)
432 {
433           crypto_global_deinit();
434 }
435 
436 
437 /**
438  * tlsv1_client_init - Initialize TLSv1 client connection
439  * Returns: Pointer to TLSv1 client connection data or %NULL on failure
440  */
tlsv1_client_init(void)441 struct tlsv1_client * tlsv1_client_init(void)
442 {
443           struct tlsv1_client *conn;
444           size_t count;
445           u16 *suites;
446 
447           conn = os_zalloc(sizeof(*conn));
448           if (conn == NULL)
449                     return NULL;
450 
451           conn->state = CLIENT_HELLO;
452 
453           if (tls_verify_hash_init(&conn->verify) < 0) {
454                     wpa_printf(MSG_DEBUG, "TLSv1: Failed to initialize verify "
455                                  "hash");
456                     os_free(conn);
457                     return NULL;
458           }
459 
460           count = 0;
461           suites = conn->cipher_suites;
462           suites[count++] = TLS_DHE_RSA_WITH_AES_256_CBC_SHA256;
463           suites[count++] = TLS_RSA_WITH_AES_256_CBC_SHA256;
464           suites[count++] = TLS_DHE_RSA_WITH_AES_256_CBC_SHA;
465           suites[count++] = TLS_RSA_WITH_AES_256_CBC_SHA;
466           suites[count++] = TLS_DHE_RSA_WITH_AES_128_CBC_SHA256;
467           suites[count++] = TLS_RSA_WITH_AES_128_CBC_SHA256;
468           suites[count++] = TLS_DHE_RSA_WITH_AES_128_CBC_SHA;
469           suites[count++] = TLS_RSA_WITH_AES_128_CBC_SHA;
470           suites[count++] = TLS_DHE_RSA_WITH_3DES_EDE_CBC_SHA;
471           suites[count++] = TLS_RSA_WITH_3DES_EDE_CBC_SHA;
472           suites[count++] = TLS_RSA_WITH_RC4_128_SHA;
473           suites[count++] = TLS_RSA_WITH_RC4_128_MD5;
474           conn->num_cipher_suites = count;
475 
476           conn->rl.tls_version = TLS_VERSION;
477 
478           return conn;
479 }
480 
481 
482 /**
483  * tlsv1_client_deinit - Deinitialize TLSv1 client connection
484  * @conn: TLSv1 client connection data from tlsv1_client_init()
485  */
tlsv1_client_deinit(struct tlsv1_client * conn)486 void tlsv1_client_deinit(struct tlsv1_client *conn)
487 {
488           crypto_public_key_free(conn->server_rsa_key);
489           tlsv1_record_set_cipher_suite(&conn->rl, TLS_NULL_WITH_NULL_NULL);
490           tlsv1_record_change_write_cipher(&conn->rl);
491           tlsv1_record_change_read_cipher(&conn->rl);
492           tls_verify_hash_free(&conn->verify);
493           os_free(conn->client_hello_ext);
494           tlsv1_client_free_dh(conn);
495           tlsv1_cred_free(conn->cred);
496           wpabuf_free(conn->partial_input);
497           x509_certificate_chain_free(conn->server_cert);
498           os_free(conn);
499 }
500 
501 
502 /**
503  * tlsv1_client_established - Check whether connection has been established
504  * @conn: TLSv1 client connection data from tlsv1_client_init()
505  * Returns: 1 if connection is established, 0 if not
506  */
tlsv1_client_established(struct tlsv1_client * conn)507 int tlsv1_client_established(struct tlsv1_client *conn)
508 {
509           return conn->state == ESTABLISHED;
510 }
511 
512 
513 /**
514  * tlsv1_client_prf - Use TLS-PRF to derive keying material
515  * @conn: TLSv1 client connection data from tlsv1_client_init()
516  * @label: Label (e.g., description of the key) for PRF
517  * @context: Optional extra upper-layer context (max len 2^16)
518  * @context_len: The length of the context value
519  * @server_random_first: seed is 0 = client_random|server_random,
520  * 1 = server_random|client_random
521  * @out: Buffer for output data from TLS-PRF
522  * @out_len: Length of the output buffer
523  * Returns: 0 on success, -1 on failure
524  */
tlsv1_client_prf(struct tlsv1_client * conn,const char * label,const u8 * context,size_t context_len,int server_random_first,u8 * out,size_t out_len)525 int tlsv1_client_prf(struct tlsv1_client *conn, const char *label,
526                          const u8 *context, size_t context_len,
527                          int server_random_first, u8 *out, size_t out_len)
528 {
529           u8 *seed, *pos;
530           size_t seed_len = 2 * TLS_RANDOM_LEN;
531           int res;
532 
533           if (conn->state != ESTABLISHED)
534                     return -1;
535 
536           if (context_len > 65535)
537                     return -1;
538 
539           if (context)
540                     seed_len += 2 + context_len;
541 
542           seed = os_malloc(seed_len);
543           if (!seed)
544                     return -1;
545 
546           if (server_random_first) {
547                     os_memcpy(seed, conn->server_random, TLS_RANDOM_LEN);
548                     os_memcpy(seed + TLS_RANDOM_LEN, conn->client_random,
549                                 TLS_RANDOM_LEN);
550           } else {
551                     os_memcpy(seed, conn->client_random, TLS_RANDOM_LEN);
552                     os_memcpy(seed + TLS_RANDOM_LEN, conn->server_random,
553                                 TLS_RANDOM_LEN);
554           }
555 
556           if (context) {
557                     pos = seed + 2 * TLS_RANDOM_LEN;
558                     WPA_PUT_BE16(pos, context_len);
559                     pos += 2;
560                     os_memcpy(pos, context, context_len);
561           }
562 
563           res = tls_prf(conn->rl.tls_version,
564                           conn->master_secret, TLS_MASTER_SECRET_LEN,
565                           label, seed, seed_len, out, out_len);
566           os_free(seed);
567           return res;
568 }
569 
570 
571 /**
572  * tlsv1_client_get_cipher - Get current cipher name
573  * @conn: TLSv1 client connection data from tlsv1_client_init()
574  * @buf: Buffer for the cipher name
575  * @buflen: buf size
576  * Returns: 0 on success, -1 on failure
577  *
578  * Get the name of the currently used cipher.
579  */
tlsv1_client_get_cipher(struct tlsv1_client * conn,char * buf,size_t buflen)580 int tlsv1_client_get_cipher(struct tlsv1_client *conn, char *buf,
581                                   size_t buflen)
582 {
583           char *cipher;
584 
585           switch (conn->rl.cipher_suite) {
586           case TLS_RSA_WITH_RC4_128_MD5:
587                     cipher = "RC4-MD5";
588                     break;
589           case TLS_RSA_WITH_RC4_128_SHA:
590                     cipher = "RC4-SHA";
591                     break;
592           case TLS_RSA_WITH_DES_CBC_SHA:
593                     cipher = "DES-CBC-SHA";
594                     break;
595           case TLS_RSA_WITH_3DES_EDE_CBC_SHA:
596                     cipher = "DES-CBC3-SHA";
597                     break;
598           case TLS_DHE_RSA_WITH_DES_CBC_SHA:
599                     cipher = "DHE-RSA-DES-CBC-SHA";
600                     break;
601           case TLS_DHE_RSA_WITH_3DES_EDE_CBC_SHA:
602                     cipher = "DHE-RSA-DES-CBC3-SHA";
603                     break;
604           case TLS_DH_anon_WITH_RC4_128_MD5:
605                     cipher = "ADH-RC4-MD5";
606                     break;
607           case TLS_DH_anon_WITH_DES_CBC_SHA:
608                     cipher = "ADH-DES-SHA";
609                     break;
610           case TLS_DH_anon_WITH_3DES_EDE_CBC_SHA:
611                     cipher = "ADH-DES-CBC3-SHA";
612                     break;
613           case TLS_RSA_WITH_AES_128_CBC_SHA:
614                     cipher = "AES-128-SHA";
615                     break;
616           case TLS_DHE_RSA_WITH_AES_128_CBC_SHA:
617                     cipher = "DHE-RSA-AES-128-SHA";
618                     break;
619           case TLS_DH_anon_WITH_AES_128_CBC_SHA:
620                     cipher = "ADH-AES-128-SHA";
621                     break;
622           case TLS_RSA_WITH_AES_256_CBC_SHA:
623                     cipher = "AES-256-SHA";
624                     break;
625           case TLS_DHE_RSA_WITH_AES_256_CBC_SHA:
626                     cipher = "DHE-RSA-AES-256-SHA";
627                     break;
628           case TLS_DH_anon_WITH_AES_256_CBC_SHA:
629                     cipher = "ADH-AES-256-SHA";
630                     break;
631           case TLS_RSA_WITH_AES_128_CBC_SHA256:
632                     cipher = "AES-128-SHA256";
633                     break;
634           case TLS_RSA_WITH_AES_256_CBC_SHA256:
635                     cipher = "AES-256-SHA256";
636                     break;
637           case TLS_DHE_RSA_WITH_AES_128_CBC_SHA256:
638                     cipher = "DHE-RSA-AES-128-SHA256";
639                     break;
640           case TLS_DHE_RSA_WITH_AES_256_CBC_SHA256:
641                     cipher = "DHE-RSA-AES-256-SHA256";
642                     break;
643           case TLS_DH_anon_WITH_AES_128_CBC_SHA256:
644                     cipher = "ADH-AES-128-SHA256";
645                     break;
646           case TLS_DH_anon_WITH_AES_256_CBC_SHA256:
647                     cipher = "ADH-AES-256-SHA256";
648                     break;
649           default:
650                     return -1;
651           }
652 
653           if (os_strlcpy(buf, cipher, buflen) >= buflen)
654                     return -1;
655           return 0;
656 }
657 
658 
659 /**
660  * tlsv1_client_shutdown - Shutdown TLS connection
661  * @conn: TLSv1 client connection data from tlsv1_client_init()
662  * Returns: 0 on success, -1 on failure
663  */
tlsv1_client_shutdown(struct tlsv1_client * conn)664 int tlsv1_client_shutdown(struct tlsv1_client *conn)
665 {
666           conn->state = CLIENT_HELLO;
667 
668           if (tls_verify_hash_init(&conn->verify) < 0) {
669                     wpa_printf(MSG_DEBUG, "TLSv1: Failed to re-initialize verify "
670                                  "hash");
671                     return -1;
672           }
673 
674           tlsv1_record_set_cipher_suite(&conn->rl, TLS_NULL_WITH_NULL_NULL);
675           tlsv1_record_change_write_cipher(&conn->rl);
676           tlsv1_record_change_read_cipher(&conn->rl);
677 
678           conn->certificate_requested = 0;
679           crypto_public_key_free(conn->server_rsa_key);
680           conn->server_rsa_key = NULL;
681           conn->session_resumed = 0;
682 
683           return 0;
684 }
685 
686 
687 /**
688  * tlsv1_client_resumed - Was session resumption used
689  * @conn: TLSv1 client connection data from tlsv1_client_init()
690  * Returns: 1 if current session used session resumption, 0 if not
691  */
tlsv1_client_resumed(struct tlsv1_client * conn)692 int tlsv1_client_resumed(struct tlsv1_client *conn)
693 {
694           return !!conn->session_resumed;
695 }
696 
697 
698 /**
699  * tlsv1_client_hello_ext - Set TLS extension for ClientHello
700  * @conn: TLSv1 client connection data from tlsv1_client_init()
701  * @ext_type: Extension type
702  * @data: Extension payload (%NULL to remove extension)
703  * @data_len: Extension payload length
704  * Returns: 0 on success, -1 on failure
705  */
tlsv1_client_hello_ext(struct tlsv1_client * conn,int ext_type,const u8 * data,size_t data_len)706 int tlsv1_client_hello_ext(struct tlsv1_client *conn, int ext_type,
707                                  const u8 *data, size_t data_len)
708 {
709           u8 *pos;
710 
711           conn->session_ticket_included = 0;
712           os_free(conn->client_hello_ext);
713           conn->client_hello_ext = NULL;
714           conn->client_hello_ext_len = 0;
715 
716           if (data == NULL || data_len == 0)
717                     return 0;
718 
719           pos = conn->client_hello_ext = os_malloc(4 + data_len);
720           if (pos == NULL)
721                     return -1;
722 
723           WPA_PUT_BE16(pos, ext_type);
724           pos += 2;
725           WPA_PUT_BE16(pos, data_len);
726           pos += 2;
727           os_memcpy(pos, data, data_len);
728           conn->client_hello_ext_len = 4 + data_len;
729 
730           if (ext_type == TLS_EXT_PAC_OPAQUE) {
731                     conn->session_ticket_included = 1;
732                     wpa_printf(MSG_DEBUG, "TLSv1: Using session ticket");
733           }
734 
735           return 0;
736 }
737 
738 
739 /**
740  * tlsv1_client_get_random - Get random data from TLS connection
741  * @conn: TLSv1 client connection data from tlsv1_client_init()
742  * @keys: Structure of random data (filled on success)
743  * Returns: 0 on success, -1 on failure
744  */
tlsv1_client_get_random(struct tlsv1_client * conn,struct tls_random * keys)745 int tlsv1_client_get_random(struct tlsv1_client *conn, struct tls_random *keys)
746 {
747           os_memset(keys, 0, sizeof(*keys));
748           if (conn->state == CLIENT_HELLO)
749                     return -1;
750 
751           keys->client_random = conn->client_random;
752           keys->client_random_len = TLS_RANDOM_LEN;
753 
754           if (conn->state != SERVER_HELLO) {
755                     keys->server_random = conn->server_random;
756                     keys->server_random_len = TLS_RANDOM_LEN;
757           }
758 
759           return 0;
760 }
761 
762 
763 /**
764  * tlsv1_client_get_keyblock_size - Get TLS key_block size
765  * @conn: TLSv1 client connection data from tlsv1_client_init()
766  * Returns: Size of the key_block for the negotiated cipher suite or -1 on
767  * failure
768  */
tlsv1_client_get_keyblock_size(struct tlsv1_client * conn)769 int tlsv1_client_get_keyblock_size(struct tlsv1_client *conn)
770 {
771           if (conn->state == CLIENT_HELLO || conn->state == SERVER_HELLO)
772                     return -1;
773 
774           return 2 * (conn->rl.hash_size + conn->rl.key_material_len +
775                         conn->rl.iv_size);
776 }
777 
778 
779 /**
780  * tlsv1_client_set_cipher_list - Configure acceptable cipher suites
781  * @conn: TLSv1 client connection data from tlsv1_client_init()
782  * @ciphers: Zero (TLS_CIPHER_NONE) terminated list of allowed ciphers
783  * (TLS_CIPHER_*).
784  * Returns: 0 on success, -1 on failure
785  */
tlsv1_client_set_cipher_list(struct tlsv1_client * conn,u8 * ciphers)786 int tlsv1_client_set_cipher_list(struct tlsv1_client *conn, u8 *ciphers)
787 {
788           size_t count;
789           u16 *suites;
790 
791           /* TODO: implement proper configuration of cipher suites */
792           if (ciphers[0] == TLS_CIPHER_ANON_DH_AES128_SHA) {
793                     count = 0;
794                     suites = conn->cipher_suites;
795                     suites[count++] = TLS_DH_anon_WITH_AES_256_CBC_SHA256;
796                     suites[count++] = TLS_DH_anon_WITH_AES_256_CBC_SHA;
797                     suites[count++] = TLS_DH_anon_WITH_AES_128_CBC_SHA256;
798                     suites[count++] = TLS_DH_anon_WITH_AES_128_CBC_SHA;
799                     suites[count++] = TLS_DH_anon_WITH_3DES_EDE_CBC_SHA;
800                     suites[count++] = TLS_DH_anon_WITH_RC4_128_MD5;
801                     suites[count++] = TLS_DH_anon_WITH_DES_CBC_SHA;
802 
803                     /*
804                      * Cisco AP (at least 350 and 1200 series) local authentication
805                      * server does not know how to search cipher suites from the
806                      * list and seem to require that the last entry in the list is
807                      * the one that it wants to use. However, TLS specification
808                      * requires the list to be in the client preference order. As a
809                      * workaround, add anon-DH AES-128-SHA1 again at the end of the
810                      * list to allow the Cisco code to find it.
811                      */
812                     suites[count++] = TLS_DH_anon_WITH_AES_128_CBC_SHA;
813                     conn->num_cipher_suites = count;
814           }
815 
816           return 0;
817 }
818 
819 
820 /**
821  * tlsv1_client_set_cred - Set client credentials
822  * @conn: TLSv1 client connection data from tlsv1_client_init()
823  * @cred: Credentials from tlsv1_cred_alloc()
824  * Returns: 0 on success, -1 on failure
825  *
826  * On success, the client takes ownership of the credentials block and caller
827  * must not free it. On failure, caller is responsible for freeing the
828  * credential block.
829  */
tlsv1_client_set_cred(struct tlsv1_client * conn,struct tlsv1_credentials * cred)830 int tlsv1_client_set_cred(struct tlsv1_client *conn,
831                                 struct tlsv1_credentials *cred)
832 {
833           tlsv1_cred_free(conn->cred);
834           conn->cred = cred;
835           return 0;
836 }
837 
838 
839 /**
840  * tlsv1_client_set_flags - Set connection flags
841  * @conn: TLSv1 client connection data from tlsv1_client_init()
842  * @flags: TLS_CONN_* bitfield
843  */
tlsv1_client_set_flags(struct tlsv1_client * conn,unsigned int flags)844 void tlsv1_client_set_flags(struct tlsv1_client *conn, unsigned int flags)
845 {
846           conn->flags = flags;
847 }
848 
849 
tlsv1_client_set_session_ticket_cb(struct tlsv1_client * conn,tlsv1_client_session_ticket_cb cb,void * ctx)850 void tlsv1_client_set_session_ticket_cb(struct tlsv1_client *conn,
851                                                   tlsv1_client_session_ticket_cb cb,
852                                                   void *ctx)
853 {
854           wpa_printf(MSG_DEBUG, "TLSv1: SessionTicket callback set %p (ctx %p)",
855                        cb, ctx);
856           conn->session_ticket_cb = cb;
857           conn->session_ticket_cb_ctx = ctx;
858 }
859 
860 
tlsv1_client_set_cb(struct tlsv1_client * conn,void (* event_cb)(void * ctx,enum tls_event ev,union tls_event_data * data),void * cb_ctx,int cert_in_cb)861 void tlsv1_client_set_cb(struct tlsv1_client *conn,
862                                void (*event_cb)(void *ctx, enum tls_event ev,
863                                                     union tls_event_data *data),
864                                void *cb_ctx,
865                                int cert_in_cb)
866 {
867           conn->event_cb = event_cb;
868           conn->cb_ctx = cb_ctx;
869           conn->cert_in_cb = !!cert_in_cb;
870 }
871 
872 
tlsv1_client_get_version(struct tlsv1_client * conn,char * buf,size_t buflen)873 int tlsv1_client_get_version(struct tlsv1_client *conn, char *buf,
874                                    size_t buflen)
875 {
876           if (!conn)
877                     return -1;
878           switch (conn->rl.tls_version) {
879           case TLS_VERSION_1:
880                     os_strlcpy(buf, "TLSv1", buflen);
881                     break;
882           case TLS_VERSION_1_1:
883                     os_strlcpy(buf, "TLSv1.1", buflen);
884                     break;
885           case TLS_VERSION_1_2:
886                     os_strlcpy(buf, "TLSv1.2", buflen);
887                     break;
888           default:
889                     return -1;
890           }
891 
892           return 0;
893 }
894