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Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001/* BEGIN_HEADER */
Manuel Pégourié-Gonnard7f809972015-03-09 17:05:11 +00002#include <mbedtls/ssl.h>
Manuel Pégourié-Gonnard5e94dde2015-05-26 11:57:05 +02003#include <mbedtls/ssl_internal.h>
Hanno Beckera18d1322018-01-03 14:27:32 +00004
Janos Follath6264e662019-11-26 11:11:15 +00005
6/*
7 * Buffer structure for custom I/O callbacks.
8 */
9
10typedef struct mbedtls_test_buffer
11{
12 size_t start;
13 size_t content_length;
14 size_t capacity;
15 unsigned char *buffer;
16} mbedtls_test_buffer;
17
18/*
19 * Initialises \p buf. After calling this function it is safe to call
20 * `mbedtls_test_buffer_free()` on \p buf.
21 */
22void mbedtls_test_buffer_init( mbedtls_test_buffer *buf )
23{
24 memset( buf, 0, sizeof( *buf ) );
25}
26
27/*
28 * Sets up \p buf. After calling this function it is safe to call
29 * `mbedtls_test_buffer_put()` and `mbedtls_test_buffer_get()` on \p buf.
30 */
31int mbedtls_test_buffer_setup( mbedtls_test_buffer *buf, size_t capacity )
32{
33 buf->buffer = (unsigned char*) mbedtls_calloc( capacity,
34 sizeof(unsigned char) );
35 if( NULL == buf->buffer )
36 return MBEDTLS_ERR_SSL_ALLOC_FAILED;
37 buf->capacity = capacity;
38
39 return 0;
40}
41
42void mbedtls_test_buffer_free( mbedtls_test_buffer *buf )
43{
44 if( buf->buffer != NULL )
45 mbedtls_free( buf->buffer );
46
47 memset( buf, 0, sizeof( *buf ) );
48}
49
50/*
51 * Puts \p input_len bytes from the \p input buffer into the ring buffer \p buf.
52 *
53 * \p buf must have been initialized and set up by calling
54 * `mbedtls_test_buffer_init()` and `mbedtls_test_buffer_setup()`.
55 *
56 * \retval \p input_len, if the data fits.
57 * \retval 0 <= value < \p input_len, if the data does not fit.
58 * \retval -1, if \p buf is NULL, it hasn't been set up or \p input_len is not
59 * zero and \p input is NULL.
60 */
61int mbedtls_test_buffer_put( mbedtls_test_buffer *buf,
62 const unsigned char* input, size_t input_len )
63{
64 size_t overflow = 0;
65
66 if( ( buf == NULL ) || ( buf->buffer == NULL ) )
67 return -1;
68
69 /* Reduce input_len to a number that fits in the buffer. */
70 if ( ( buf->content_length + input_len ) > buf->capacity )
71 {
72 input_len = buf->capacity - buf->content_length;
73 }
74
75 if( input == NULL )
76 {
77 return ( input_len == 0 ) ? 0 : -1;
78 }
79
80 /* Calculate the number of bytes that need to be placed at lower memory
81 * address */
82 if( buf->start + buf->content_length + input_len
83 > buf->capacity )
84 {
85 overflow = ( buf->start + buf->content_length + input_len )
86 % buf->capacity;
87 }
88
89 memcpy( buf->buffer + buf->start + buf->content_length, input,
90 input_len - overflow );
91 memcpy( buf->buffer, input + input_len - overflow, overflow );
92 buf->content_length += input_len;
93
94 return input_len;
95}
96
97/*
98 * Gets \p output_len bytes from the \p output buffer into the ring buffer
99 * \p buf.
100 *
101 * \p buf must have been initialized and set up by calling
102 * `mbedtls_test_buffer_init()` and `mbedtls_test_buffer_setup()`.
103 *
104 * \retval \p output_len, if the data is available.
105 * \retval 0 <= value < \p output_len, if the data is not available.
106 * \retval -1, if \buf is NULL, it hasn't been set up or \p output_len is not
107 * zero and \p output is NULL
108 */
109int mbedtls_test_buffer_get( mbedtls_test_buffer *buf,
110 unsigned char* output, size_t output_len )
111{
112 size_t overflow = 0;
113
114 if( ( buf == NULL ) || ( buf->buffer == NULL ) )
115 return -1;
116
117 if( output == NULL )
118 {
119 return ( output_len == 0 ) ? 0 : -1;
120 }
121
122 if( buf->content_length < output_len )
123 output_len = buf->content_length;
124
125 /* Calculate the number of bytes that need to be drawn from lower memory
126 * address */
127 if( buf->start + output_len > buf->capacity )
128 {
129 overflow = ( buf->start + output_len ) % buf->capacity;
130 }
131
132 memcpy( output, buf->buffer + buf->start, output_len - overflow );
133 memcpy( output + output_len - overflow, buf->buffer, overflow );
134 buf->content_length -= output_len;
135 buf->start = ( buf->start + output_len ) % buf->capacity;
136
137 return output_len;
138}
139
Hanno Beckera18d1322018-01-03 14:27:32 +0000140/*
Janos Follath031827f2019-11-27 11:12:14 +0000141 * Context for the I/O callbacks simulating network connection.
142 */
143
144#define MBEDTLS_MOCK_SOCKET_CONNECTED 1
145
146typedef struct mbedtls_mock_socket
147{
148 int status;
Janos Follath3766ba52019-11-27 13:31:42 +0000149 uint32_t blocking_pattern;
Janos Follath031827f2019-11-27 11:12:14 +0000150 mbedtls_test_buffer *input;
151 mbedtls_test_buffer *output;
152 struct mbedtls_mock_socket *peer;
153} mbedtls_mock_socket;
154
155/*
156 * Setup and teardown functions for mock sockets.
157 */
158void mbedtls_mock_socket_init( mbedtls_mock_socket *socket )
159{
160 memset( socket, 0, sizeof( *socket ) );
161}
162
163/*
164 * Closes the socket \p socket.
165 *
166 * \p socket must have been previously initialized by calling
167 * mbedtls_mock_socket_init().
168 *
169 * This function frees all allocated resources and both sockets are aware of the
170 * new connection state.
171 *
172 * That is, this function does not simulate half-open TCP connections and the
173 * phenomenon that when closing a UDP connection the peer is not aware of the
174 * connection having been closed.
175 */
176void mbedtls_mock_socket_close( mbedtls_mock_socket* socket )
177{
178 if( socket == NULL )
179 return;
180
181 if( socket->input != NULL )
182 {
183 mbedtls_test_buffer_free( socket->input );
184 mbedtls_free( socket->input );
185 }
186
187 if( socket->output != NULL )
188 {
189 mbedtls_test_buffer_free( socket->output );
190 mbedtls_free( socket->output );
191 }
192
193 if( socket->peer != NULL )
194 memset( socket->peer, 0, sizeof( *socket->peer ) );
195
196 memset( socket, 0, sizeof( *socket ) );
197}
198
199/*
200 * Establishes a connection between \p peer1 and \p peer2.
201 *
202 * \p peer1 and \p peer2 must have been previously initialized by calling
203 * mbedtls_mock_socket_init().
204 *
205 * The capacites of the internal buffers are set to \p bufsize. Setting this to
206 * the correct value allows for simulation of MTU, sanity testing the mock
207 * implementation and mocking TCP connections with lower memory cost.
208 */
209int mbedtls_mock_socket_connect( mbedtls_mock_socket* peer1,
210 mbedtls_mock_socket* peer2,
211 size_t bufsize )
212{
213 int ret = -1;
214
215 peer1->input = peer2->output =
216 (mbedtls_test_buffer*) mbedtls_calloc( 1, sizeof(mbedtls_test_buffer) );
217 if( peer1->input == NULL )
218 {
219 ret = MBEDTLS_ERR_SSL_ALLOC_FAILED;
220 goto exit;
221 }
222 mbedtls_test_buffer_init( peer1->input );
223 if( 0 != ( ret = mbedtls_test_buffer_setup( peer1->input, bufsize ) ) )
224 {
225 goto exit;
226 }
227
228 peer1->output = peer2->input =
229 (mbedtls_test_buffer*) mbedtls_calloc( 1, sizeof(mbedtls_test_buffer) );
230 if( peer1->output == NULL )
231 {
232 ret = MBEDTLS_ERR_SSL_ALLOC_FAILED;
233 goto exit;
234 }
235 mbedtls_test_buffer_init( peer1->output );
236 if( 0 != ( ret = mbedtls_test_buffer_setup( peer1->output, bufsize ) ) )
237 {
238 goto exit;
239 }
240
241 peer1->peer = peer2;
242 peer2->peer = peer1;
243
244 peer1->status = peer2->status = MBEDTLS_MOCK_SOCKET_CONNECTED;
245 ret = 0;
246
247exit:
248
249 if( ret != 0 )
250 {
251 mbedtls_mock_socket_close( peer1 );
252 mbedtls_mock_socket_close( peer2 );
253 }
254
255 return ret;
256}
257
258/*
Janos Follath3766ba52019-11-27 13:31:42 +0000259 * Set the blocking pattern for the socket.
260 *
261 * For every bit of \p blocking_pattern set to one the socket will simulate a
262 * "would block" event. The bits are processed starting with the least
263 * significant bit and every call to a non-blocking I/O function consumes one.
264 *
265 * The behaviour of blocking I/O functions remains unchanged.
266 */
267int mbedtls_mock_socket_set_block( mbedtls_mock_socket* socket,
268 uint32_t blocking_pattern )
269{
270 if( socket == NULL )
271 return -1;
272
273 socket->blocking_pattern = blocking_pattern;
274
275 return 0;
276}
277
278/*
Janos Follath031827f2019-11-27 11:12:14 +0000279 * Callbacks for simulating blocking I/O over connection-oriented transport.
280 */
281
282int mbedtls_mock_tcp_send_b( void *ctx, const unsigned char *buf, size_t len )
283{
284 mbedtls_mock_socket *socket = (mbedtls_mock_socket*) ctx;
285
286 if( socket == NULL || socket->status != MBEDTLS_MOCK_SOCKET_CONNECTED )
287 return -1;
288
289 return mbedtls_test_buffer_put( socket->output, buf, len );
290}
291
292int mbedtls_mock_tcp_recv_b( void *ctx, unsigned char *buf, size_t len )
293{
294 mbedtls_mock_socket *socket = (mbedtls_mock_socket*) ctx;
295
296 if( socket == NULL || socket->status != MBEDTLS_MOCK_SOCKET_CONNECTED )
297 return -1;
298
299 return mbedtls_test_buffer_get( socket->input, buf, len );
300}
301
302/*
Janos Follath3766ba52019-11-27 13:31:42 +0000303 * Callbacks for simulating non-blocking I/O over connection-oriented transport.
304 */
305
306int mbedtls_mock_tcp_send_nb( void *ctx, const unsigned char *buf, size_t len )
307{
308 mbedtls_mock_socket *socket = (mbedtls_mock_socket*) ctx;
309
310 if( socket == NULL || socket->status != MBEDTLS_MOCK_SOCKET_CONNECTED )
311 return -1;
312
313 if( socket->blocking_pattern & 1 )
314 {
315 socket->blocking_pattern >>= 1;
316 return MBEDTLS_ERR_SSL_WANT_WRITE;
317 }
318
319 socket->blocking_pattern >>= 1;
320
321 return mbedtls_test_buffer_put( socket->output, buf, len );
322}
323
324int mbedtls_mock_tcp_recv_nb( void *ctx, unsigned char *buf, size_t len )
325{
326 mbedtls_mock_socket *socket = (mbedtls_mock_socket*) ctx;
327
328 if( socket == NULL || socket->status != MBEDTLS_MOCK_SOCKET_CONNECTED )
329 return -1;
330
331 if( socket->blocking_pattern & 1 )
332 {
333 socket->blocking_pattern >>= 1;
334 return MBEDTLS_ERR_SSL_WANT_READ;
335 }
336
337 socket->blocking_pattern >>= 1;
338
339 return mbedtls_test_buffer_get( socket->input, buf, len );
340}
341
342/*
Hanno Beckera18d1322018-01-03 14:27:32 +0000343 * Helper function setting up inverse record transformations
344 * using given cipher, hash, EtM mode, authentication tag length,
345 * and version.
346 */
347
348#define CHK( x ) \
349 do \
350 { \
351 if( !( x ) ) \
Hanno Becker81e16a32019-03-01 11:21:44 +0000352 { \
Hanno Beckera5780f12019-04-05 09:55:37 +0100353 ret = -1; \
Hanno Becker81e16a32019-03-01 11:21:44 +0000354 goto cleanup; \
355 } \
Hanno Beckera18d1322018-01-03 14:27:32 +0000356 } while( 0 )
357
Hanno Beckerd856c822019-04-29 17:30:59 +0100358#if MBEDTLS_SSL_CID_OUT_LEN_MAX > MBEDTLS_SSL_CID_IN_LEN_MAX
359#define SSL_CID_LEN_MIN MBEDTLS_SSL_CID_IN_LEN_MAX
360#else
361#define SSL_CID_LEN_MIN MBEDTLS_SSL_CID_OUT_LEN_MAX
362#endif
Hanno Beckera18d1322018-01-03 14:27:32 +0000363
364static int build_transforms( mbedtls_ssl_transform *t_in,
365 mbedtls_ssl_transform *t_out,
366 int cipher_type, int hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +0100367 int etm, int tag_mode, int ver,
368 size_t cid0_len,
369 size_t cid1_len )
Hanno Beckera18d1322018-01-03 14:27:32 +0000370{
371 mbedtls_cipher_info_t const *cipher_info;
Hanno Beckera5780f12019-04-05 09:55:37 +0100372 int ret = 0;
Hanno Beckera18d1322018-01-03 14:27:32 +0000373
374 size_t keylen, maclen, ivlen;
Hanno Becker81e16a32019-03-01 11:21:44 +0000375 unsigned char *key0 = NULL, *key1 = NULL;
Hanno Beckera18d1322018-01-03 14:27:32 +0000376 unsigned char iv_enc[16], iv_dec[16];
377
Hanno Beckera0e20d02019-05-15 14:03:01 +0100378#if defined(MBEDTLS_SSL_DTLS_CONNECTION_ID)
Hanno Beckerd856c822019-04-29 17:30:59 +0100379 unsigned char cid0[ SSL_CID_LEN_MIN ];
380 unsigned char cid1[ SSL_CID_LEN_MIN ];
381
382 rnd_std_rand( NULL, cid0, sizeof( cid0 ) );
383 rnd_std_rand( NULL, cid1, sizeof( cid1 ) );
Hanno Becker43c24b82019-05-01 09:45:57 +0100384#else
385 ((void) cid0_len);
386 ((void) cid1_len);
Hanno Beckera0e20d02019-05-15 14:03:01 +0100387#endif /* MBEDTLS_SSL_DTLS_CONNECTION_ID */
Hanno Beckerd856c822019-04-29 17:30:59 +0100388
Hanno Beckera18d1322018-01-03 14:27:32 +0000389 maclen = 0;
390
391 /* Pick cipher */
392 cipher_info = mbedtls_cipher_info_from_type( cipher_type );
393 CHK( cipher_info != NULL );
394 CHK( cipher_info->iv_size <= 16 );
395 CHK( cipher_info->key_bitlen % 8 == 0 );
396
397 /* Pick keys */
398 keylen = cipher_info->key_bitlen / 8;
Hanno Becker78d1f702019-04-05 09:56:10 +0100399 /* Allocate `keylen + 1` bytes to ensure that we get
400 * a non-NULL pointers from `mbedtls_calloc` even if
401 * `keylen == 0` in the case of the NULL cipher. */
402 CHK( ( key0 = mbedtls_calloc( 1, keylen + 1 ) ) != NULL );
403 CHK( ( key1 = mbedtls_calloc( 1, keylen + 1 ) ) != NULL );
Hanno Beckera18d1322018-01-03 14:27:32 +0000404 memset( key0, 0x1, keylen );
405 memset( key1, 0x2, keylen );
406
407 /* Setup cipher contexts */
408 CHK( mbedtls_cipher_setup( &t_in->cipher_ctx_enc, cipher_info ) == 0 );
409 CHK( mbedtls_cipher_setup( &t_in->cipher_ctx_dec, cipher_info ) == 0 );
410 CHK( mbedtls_cipher_setup( &t_out->cipher_ctx_enc, cipher_info ) == 0 );
411 CHK( mbedtls_cipher_setup( &t_out->cipher_ctx_dec, cipher_info ) == 0 );
412
413#if defined(MBEDTLS_CIPHER_MODE_CBC)
414 if( cipher_info->mode == MBEDTLS_MODE_CBC )
415 {
416 CHK( mbedtls_cipher_set_padding_mode( &t_in->cipher_ctx_enc,
417 MBEDTLS_PADDING_NONE ) == 0 );
418 CHK( mbedtls_cipher_set_padding_mode( &t_in->cipher_ctx_dec,
419 MBEDTLS_PADDING_NONE ) == 0 );
420 CHK( mbedtls_cipher_set_padding_mode( &t_out->cipher_ctx_enc,
421 MBEDTLS_PADDING_NONE ) == 0 );
422 CHK( mbedtls_cipher_set_padding_mode( &t_out->cipher_ctx_dec,
423 MBEDTLS_PADDING_NONE ) == 0 );
424 }
425#endif /* MBEDTLS_CIPHER_MODE_CBC */
426
427 CHK( mbedtls_cipher_setkey( &t_in->cipher_ctx_enc, key0,
428 keylen << 3, MBEDTLS_ENCRYPT ) == 0 );
429 CHK( mbedtls_cipher_setkey( &t_in->cipher_ctx_dec, key1,
430 keylen << 3, MBEDTLS_DECRYPT ) == 0 );
431 CHK( mbedtls_cipher_setkey( &t_out->cipher_ctx_enc, key1,
432 keylen << 3, MBEDTLS_ENCRYPT ) == 0 );
433 CHK( mbedtls_cipher_setkey( &t_out->cipher_ctx_dec, key0,
434 keylen << 3, MBEDTLS_DECRYPT ) == 0 );
Hanno Beckera18d1322018-01-03 14:27:32 +0000435
436 /* Setup MAC contexts */
437#if defined(MBEDTLS_SSL_SOME_MODES_USE_MAC)
438 if( cipher_info->mode == MBEDTLS_MODE_CBC ||
439 cipher_info->mode == MBEDTLS_MODE_STREAM )
440 {
441 mbedtls_md_info_t const *md_info;
442 unsigned char *md0, *md1;
443
444 /* Pick hash */
445 md_info = mbedtls_md_info_from_type( hash_id );
446 CHK( md_info != NULL );
447
448 /* Pick hash keys */
449 maclen = mbedtls_md_get_size( md_info );
Hanno Becker3ee54212019-04-04 16:31:26 +0100450 CHK( ( md0 = mbedtls_calloc( 1, maclen ) ) != NULL );
451 CHK( ( md1 = mbedtls_calloc( 1, maclen ) ) != NULL );
Hanno Beckera18d1322018-01-03 14:27:32 +0000452 memset( md0, 0x5, maclen );
453 memset( md1, 0x6, maclen );
454
455 CHK( mbedtls_md_setup( &t_out->md_ctx_enc, md_info, 1 ) == 0 );
456 CHK( mbedtls_md_setup( &t_out->md_ctx_dec, md_info, 1 ) == 0 );
457 CHK( mbedtls_md_setup( &t_in->md_ctx_enc, md_info, 1 ) == 0 );
458 CHK( mbedtls_md_setup( &t_in->md_ctx_dec, md_info, 1 ) == 0 );
459
460 if( ver > MBEDTLS_SSL_MINOR_VERSION_0 )
461 {
462 CHK( mbedtls_md_hmac_starts( &t_in->md_ctx_enc,
463 md0, maclen ) == 0 );
464 CHK( mbedtls_md_hmac_starts( &t_in->md_ctx_dec,
465 md1, maclen ) == 0 );
466 CHK( mbedtls_md_hmac_starts( &t_out->md_ctx_enc,
467 md1, maclen ) == 0 );
468 CHK( mbedtls_md_hmac_starts( &t_out->md_ctx_dec,
469 md0, maclen ) == 0 );
470 }
471#if defined(MBEDTLS_SSL_PROTO_SSL3)
472 else
473 {
474 memcpy( &t_in->mac_enc, md0, maclen );
475 memcpy( &t_in->mac_dec, md1, maclen );
476 memcpy( &t_out->mac_enc, md1, maclen );
477 memcpy( &t_out->mac_dec, md0, maclen );
478 }
479#endif
480
Hanno Becker3ee54212019-04-04 16:31:26 +0100481 mbedtls_free( md0 );
482 mbedtls_free( md1 );
Hanno Beckera18d1322018-01-03 14:27:32 +0000483 }
484#else
485 ((void) hash_id);
486#endif /* MBEDTLS_SSL_SOME_MODES_USE_MAC */
487
488
489 /* Pick IV's (regardless of whether they
490 * are being used by the transform). */
491 ivlen = cipher_info->iv_size;
492 memset( iv_enc, 0x3, sizeof( iv_enc ) );
493 memset( iv_dec, 0x4, sizeof( iv_dec ) );
494
495 /*
496 * Setup transforms
497 */
498
Jaeden Amero2de07f12019-06-05 13:32:08 +0100499#if defined(MBEDTLS_SSL_ENCRYPT_THEN_MAC) && \
500 defined(MBEDTLS_SSL_SOME_MODES_USE_MAC)
Hanno Beckera18d1322018-01-03 14:27:32 +0000501 t_out->encrypt_then_mac = etm;
502 t_in->encrypt_then_mac = etm;
503#else
504 ((void) etm);
505#endif
506
507 t_out->minor_ver = ver;
508 t_in->minor_ver = ver;
509 t_out->ivlen = ivlen;
510 t_in->ivlen = ivlen;
511
512 switch( cipher_info->mode )
513 {
514 case MBEDTLS_MODE_GCM:
515 case MBEDTLS_MODE_CCM:
516 t_out->fixed_ivlen = 4;
517 t_in->fixed_ivlen = 4;
518 t_out->maclen = 0;
519 t_in->maclen = 0;
520 switch( tag_mode )
521 {
522 case 0: /* Full tag */
523 t_out->taglen = 16;
524 t_in->taglen = 16;
525 break;
526 case 1: /* Partial tag */
527 t_out->taglen = 8;
528 t_in->taglen = 8;
529 break;
530 default:
531 return( 1 );
532 }
533 break;
534
535 case MBEDTLS_MODE_CHACHAPOLY:
536 t_out->fixed_ivlen = 12;
537 t_in->fixed_ivlen = 12;
538 t_out->maclen = 0;
539 t_in->maclen = 0;
540 switch( tag_mode )
541 {
542 case 0: /* Full tag */
543 t_out->taglen = 16;
544 t_in->taglen = 16;
545 break;
546 case 1: /* Partial tag */
547 t_out->taglen = 8;
548 t_in->taglen = 8;
549 break;
550 default:
551 return( 1 );
552 }
553 break;
554
555 case MBEDTLS_MODE_STREAM:
556 case MBEDTLS_MODE_CBC:
557 t_out->fixed_ivlen = 0; /* redundant, must be 0 */
558 t_in->fixed_ivlen = 0; /* redundant, must be 0 */
559 t_out->taglen = 0;
560 t_in->taglen = 0;
561 switch( tag_mode )
562 {
563 case 0: /* Full tag */
564 t_out->maclen = maclen;
565 t_in->maclen = maclen;
566 break;
567 case 1: /* Partial tag */
568 t_out->maclen = 10;
569 t_in->maclen = 10;
570 break;
571 default:
572 return( 1 );
573 }
574 break;
575 default:
576 return( 1 );
577 break;
578 }
579
580 /* Setup IV's */
581
582 memcpy( &t_in->iv_dec, iv_dec, sizeof( iv_dec ) );
583 memcpy( &t_in->iv_enc, iv_enc, sizeof( iv_enc ) );
584 memcpy( &t_out->iv_dec, iv_enc, sizeof( iv_enc ) );
585 memcpy( &t_out->iv_enc, iv_dec, sizeof( iv_dec ) );
586
Hanno Beckera0e20d02019-05-15 14:03:01 +0100587#if defined(MBEDTLS_SSL_DTLS_CONNECTION_ID)
Hanno Beckerd856c822019-04-29 17:30:59 +0100588 /* Add CID */
589 memcpy( &t_in->in_cid, cid0, cid0_len );
590 memcpy( &t_in->out_cid, cid1, cid1_len );
591 t_in->in_cid_len = cid0_len;
592 t_in->out_cid_len = cid1_len;
593 memcpy( &t_out->in_cid, cid1, cid1_len );
594 memcpy( &t_out->out_cid, cid0, cid0_len );
595 t_out->in_cid_len = cid1_len;
596 t_out->out_cid_len = cid0_len;
Hanno Beckera0e20d02019-05-15 14:03:01 +0100597#endif /* MBEDTLS_SSL_DTLS_CONNECTION_ID */
Hanno Beckerd856c822019-04-29 17:30:59 +0100598
Hanno Becker81e16a32019-03-01 11:21:44 +0000599cleanup:
600
Hanno Becker3ee54212019-04-04 16:31:26 +0100601 mbedtls_free( key0 );
602 mbedtls_free( key1 );
Hanno Becker81e16a32019-03-01 11:21:44 +0000603
Hanno Beckera5780f12019-04-05 09:55:37 +0100604 return( ret );
Hanno Beckera18d1322018-01-03 14:27:32 +0000605}
606
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200607/*
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +0200608 * Populate a session structure for serialization tests.
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200609 * Choose dummy values, mostly non-0 to distinguish from the init default.
610 */
611static int ssl_populate_session( mbedtls_ssl_session *session,
Manuel Pégourié-Gonnard220403b2019-05-24 09:54:21 +0200612 int ticket_len,
613 const char *crt_file )
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200614{
615#if defined(MBEDTLS_HAVE_TIME)
616 session->start = mbedtls_time( NULL ) - 42;
617#endif
618 session->ciphersuite = 0xabcd;
619 session->compression = 1;
620 session->id_len = sizeof( session->id );
621 memset( session->id, 66, session->id_len );
Manuel Pégourié-Gonnard220403b2019-05-24 09:54:21 +0200622 memset( session->master, 17, sizeof( session->master ) );
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200623
Manuel Pégourié-Gonnard1f6033a2019-05-24 10:17:52 +0200624#if defined(MBEDTLS_X509_CRT_PARSE_C) && defined(MBEDTLS_FS_IO)
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200625 if( strlen( crt_file ) != 0 )
626 {
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +0200627 mbedtls_x509_crt tmp_crt;
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200628 int ret;
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +0200629
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +0200630 mbedtls_x509_crt_init( &tmp_crt );
631 ret = mbedtls_x509_crt_parse_file( &tmp_crt, crt_file );
632 if( ret != 0 )
633 return( ret );
634
635#if defined(MBEDTLS_SSL_KEEP_PEER_CERTIFICATE)
636 /* Move temporary CRT. */
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +0200637 session->peer_cert = mbedtls_calloc( 1, sizeof( *session->peer_cert ) );
638 if( session->peer_cert == NULL )
639 return( -1 );
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +0200640 *session->peer_cert = tmp_crt;
641 memset( &tmp_crt, 0, sizeof( tmp_crt ) );
642#else /* MBEDTLS_SSL_KEEP_PEER_CERTIFICATE */
643 /* Calculate digest of temporary CRT. */
644 session->peer_cert_digest =
645 mbedtls_calloc( 1, MBEDTLS_SSL_PEER_CERT_DIGEST_DFL_LEN );
646 if( session->peer_cert_digest == NULL )
647 return( -1 );
648 ret = mbedtls_md( mbedtls_md_info_from_type(
649 MBEDTLS_SSL_PEER_CERT_DIGEST_DFL_TYPE ),
650 tmp_crt.raw.p, tmp_crt.raw.len,
651 session->peer_cert_digest );
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200652 if( ret != 0 )
653 return( ret );
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +0200654 session->peer_cert_digest_type =
655 MBEDTLS_SSL_PEER_CERT_DIGEST_DFL_TYPE;
656 session->peer_cert_digest_len =
657 MBEDTLS_SSL_PEER_CERT_DIGEST_DFL_LEN;
658#endif /* MBEDTLS_SSL_KEEP_PEER_CERTIFICATE */
659
660 mbedtls_x509_crt_free( &tmp_crt );
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200661 }
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +0200662#else /* MBEDTLS_X509_CRT_PARSE_C && MBEDTLS_FS_IO */
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200663 (void) crt_file;
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +0200664#endif /* MBEDTLS_X509_CRT_PARSE_C && MBEDTLS_FS_IO */
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200665 session->verify_result = 0xdeadbeef;
666
667#if defined(MBEDTLS_SSL_SESSION_TICKETS) && defined(MBEDTLS_SSL_CLI_C)
668 if( ticket_len != 0 )
669 {
670 session->ticket = mbedtls_calloc( 1, ticket_len );
Manuel Pégourié-Gonnard220403b2019-05-24 09:54:21 +0200671 if( session->ticket == NULL )
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +0200672 return( -1 );
673 memset( session->ticket, 33, ticket_len );
674 }
675 session->ticket_len = ticket_len;
676 session->ticket_lifetime = 86401;
677#else
678 (void) ticket_len;
679#endif
680
681#if defined(MBEDTLS_SSL_MAX_FRAGMENT_LENGTH)
682 session->mfl_code = 1;
683#endif
684#if defined(MBEDTLS_SSL_TRUNCATED_HMAC)
685 session->trunc_hmac = 1;
686#endif
687#if defined(MBEDTLS_SSL_ENCRYPT_THEN_MAC)
688 session->encrypt_then_mac = 1;
689#endif
690
691 return( 0 );
692}
693
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +0200694/* END_HEADER */
695
696/* BEGIN_DEPENDENCIES
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +0200697 * depends_on:MBEDTLS_SSL_TLS_C
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +0200698 * END_DEPENDENCIES
699 */
700
Janos Follath6264e662019-11-26 11:11:15 +0000701/* BEGIN_CASE */
702void test_callback_buffer_sanity()
703{
704 enum { MSGLEN = 10 };
705 mbedtls_test_buffer buf;
706 unsigned char input[MSGLEN];
707 unsigned char output[MSGLEN];
708
709 memset( input, 0, sizeof(input) );
710
711 /* Make sure calling put and get on NULL buffer results in error. */
712 TEST_ASSERT( mbedtls_test_buffer_put( NULL, input, sizeof( input ) )
713 == -1 );
714 TEST_ASSERT( mbedtls_test_buffer_get( NULL, output, sizeof( output ) )
715 == -1 );
716 TEST_ASSERT( mbedtls_test_buffer_put( NULL, NULL, sizeof( input ) ) == -1 );
717 TEST_ASSERT( mbedtls_test_buffer_get( NULL, NULL, sizeof( output ) )
718 == -1 );
719 TEST_ASSERT( mbedtls_test_buffer_put( NULL, NULL, 0 ) == -1 );
720 TEST_ASSERT( mbedtls_test_buffer_get( NULL, NULL, 0 ) == -1 );
721
722 /* Make sure calling put and get on a buffer that hasn't been set up results
723 * in eror. */
724 mbedtls_test_buffer_init( &buf );
725
726 TEST_ASSERT( mbedtls_test_buffer_put( &buf, input, sizeof( input ) ) == -1 );
727 TEST_ASSERT( mbedtls_test_buffer_get( &buf, output, sizeof( output ) )
728 == -1 );
729 TEST_ASSERT( mbedtls_test_buffer_put( &buf, NULL, sizeof( input ) ) == -1 );
730 TEST_ASSERT( mbedtls_test_buffer_get( &buf, NULL, sizeof( output ) )
731 == -1 );
732 TEST_ASSERT( mbedtls_test_buffer_put( &buf, NULL, 0 ) == -1 );
733 TEST_ASSERT( mbedtls_test_buffer_get( &buf, NULL, 0 ) == -1 );
734
735 /* Make sure calling put end get on NULL input and output only results in
736 * error if the length is not zero. */
737
738 TEST_ASSERT( mbedtls_test_buffer_setup( &buf, sizeof( input ) ) == 0 );
739
740 TEST_ASSERT( mbedtls_test_buffer_put( &buf, NULL, sizeof( input ) ) == -1 );
741 TEST_ASSERT( mbedtls_test_buffer_get( &buf, NULL, sizeof( output ) )
742 == -1 );
743 TEST_ASSERT( mbedtls_test_buffer_put( &buf, NULL, 0 ) == 0 );
744 TEST_ASSERT( mbedtls_test_buffer_get( &buf, NULL, 0 ) == 0 );
745
746exit:
747
748 mbedtls_test_buffer_free( &buf );
749}
750/* END_CASE */
751
752/*
753 * Test if the implementation of `mbedtls_test_buffer` related functions is
754 * correct and works as expected.
755 *
756 * That is
757 * - If we try to put in \p put1 bytes then we can put in \p put1_ret bytes.
758 * - Afterwards if we try to get \p get1 bytes then we can get \get1_ret bytes.
759 * - Next, if we try to put in \p put1 bytes then we can put in \p put1_ret
760 * bytes.
761 * - Afterwards if we try to get \p get1 bytes then we can get \get1_ret bytes.
762 * - All of the bytes we got match the bytes we put in in a FIFO manner.
763 */
764
765/* BEGIN_CASE */
766void test_callback_buffer( int size, int put1, int put1_ret,
767 int get1, int get1_ret, int put2, int put2_ret,
768 int get2, int get2_ret )
769{
770 enum { ROUNDS = 2 };
771 size_t put[ROUNDS];
772 int put_ret[ROUNDS];
773 size_t get[ROUNDS];
774 int get_ret[ROUNDS];
775 mbedtls_test_buffer buf;
776 unsigned char* input = NULL;
777 size_t input_len;
778 unsigned char* output = NULL;
779 size_t output_len;
Janos Follath031827f2019-11-27 11:12:14 +0000780 size_t i, j, written, read;
Janos Follath6264e662019-11-26 11:11:15 +0000781
782 mbedtls_test_buffer_init( &buf );
783 TEST_ASSERT( mbedtls_test_buffer_setup( &buf, size ) == 0 );
784
785 /* Check the sanity of input parameters and initialise local variables. That
786 * is, ensure that the amount of data is not negative and that we are not
787 * expecting more to put or get than we actually asked for. */
788 TEST_ASSERT( put1 >= 0 );
789 put[0] = put1;
790 put_ret[0] = put1_ret;
791 TEST_ASSERT( put1_ret <= put1 );
792 TEST_ASSERT( put2 >= 0 );
793 put[1] = put2;
794 put_ret[1] = put2_ret;
795 TEST_ASSERT( put2_ret <= put2 );
796
797 TEST_ASSERT( get1 >= 0 );
798 get[0] = get1;
799 get_ret[0] = get1_ret;
800 TEST_ASSERT( get1_ret <= get1 );
801 TEST_ASSERT( get2 >= 0 );
802 get[1] = get2;
803 get_ret[1] = get2_ret;
804 TEST_ASSERT( get2_ret <= get2 );
805
806 input_len = 0;
807 /* Calculate actual input and output lengths */
808 for( j = 0; j < ROUNDS; j++ )
809 {
810 if( put_ret[j] > 0 )
811 {
812 input_len += put_ret[j];
813 }
814 }
815 /* In order to always have a valid pointer we always allocate at least 1
816 * byte. */
817 if( input_len == 0 )
818 input_len = 1;
819 ASSERT_ALLOC( input, input_len );
820
821 output_len = 0;
822 for( j = 0; j < ROUNDS; j++ )
823 {
824 if( get_ret[j] > 0 )
825 {
826 output_len += get_ret[j];
827 }
828 }
829 TEST_ASSERT( output_len <= input_len );
830 /* In order to always have a valid pointer we always allocate at least 1
831 * byte. */
832 if( output_len == 0 )
833 output_len = 1;
834 ASSERT_ALLOC( output, output_len );
835
836 /* Fill up the buffer with structured data so that unwanted changes
837 * can be detected */
838 for( i = 0; i < input_len; i++ )
839 {
840 input[i] = i & 0xFF;
841 }
842
843 written = read = 0;
844 for( j = 0; j < ROUNDS; j++ )
845 {
846 TEST_ASSERT( put_ret[j] == mbedtls_test_buffer_put( &buf,
847 input + written, put[j] ) );
848 written += put_ret[j];
849 TEST_ASSERT( get_ret[j] == mbedtls_test_buffer_get( &buf,
850 output + read, get[j] ) );
851 read += get_ret[j];
852 TEST_ASSERT( read <= written );
853 if( get_ret[j] > 0 )
854 {
855 TEST_ASSERT( memcmp( output + read - get_ret[j],
856 input + read - get_ret[j], get_ret[j] )
857 == 0 );
858 }
859 }
860
861exit:
862
863 mbedtls_free( input );
864 mbedtls_free( output );
865 mbedtls_test_buffer_free( &buf );
866}
867/* END_CASE */
868
Janos Follath031827f2019-11-27 11:12:14 +0000869/*
Janos Follathc673c2c2019-12-02 15:47:26 +0000870 * Test if the implementation of `mbedtls_mock_socket` related I/O functions is
871 * correct and works as expected on unconnected sockets.
872 */
873
874/* BEGIN_CASE */
875void ssl_mock_sanity( )
876{
877 enum { MSGLEN = 105 };
878 unsigned char message[MSGLEN];
879 unsigned char received[MSGLEN];
880 mbedtls_mock_socket socket;
881
882 mbedtls_mock_socket_init( &socket );
883 TEST_ASSERT( mbedtls_mock_tcp_send_b( &socket, message, MSGLEN ) < 0 );
884 mbedtls_mock_socket_close( &socket );
885 mbedtls_mock_socket_init( &socket );
886 TEST_ASSERT( mbedtls_mock_tcp_recv_b( &socket, received, MSGLEN ) < 0 );
887 mbedtls_mock_socket_close( &socket );
888
889 mbedtls_mock_socket_init( &socket );
890 TEST_ASSERT( mbedtls_mock_tcp_send_nb( &socket, message, MSGLEN ) < 0 );
891 mbedtls_mock_socket_close( &socket );
892 mbedtls_mock_socket_init( &socket );
893 TEST_ASSERT( mbedtls_mock_tcp_recv_nb( &socket, received, MSGLEN ) < 0 );
894 mbedtls_mock_socket_close( &socket );
895
896exit:
897
898 mbedtls_mock_socket_close( &socket );
899}
900/* END_CASE */
901
902/*
903 * Test if the implementation of `mbedtls_mock_socket` related functions can
904 * send a single message from the client to the server.
Janos Follath031827f2019-11-27 11:12:14 +0000905 */
906
907/* BEGIN_CASE */
Janos Follath3766ba52019-11-27 13:31:42 +0000908void ssl_mock_tcp( int blocking, int client_pattern, int server_pattern )
Janos Follath031827f2019-11-27 11:12:14 +0000909{
Janos Follathc673c2c2019-12-02 15:47:26 +0000910 enum { MSGLEN = 105 };
911 unsigned char message[MSGLEN];
912 unsigned char received[MSGLEN];
913 mbedtls_mock_socket client;
914 mbedtls_mock_socket server;
915 size_t written, read;
916 int send_ret, recv_ret;
917 mbedtls_ssl_send_t *send;
918 mbedtls_ssl_recv_t *recv;
919 uint32_t client_block = client_pattern;
920 uint32_t server_block = server_pattern;
921 unsigned i;
922
923 if( blocking == 0 )
924 {
925 send = mbedtls_mock_tcp_send_nb;
926 recv = mbedtls_mock_tcp_recv_nb;
927 }
928 else
929 {
930 send = mbedtls_mock_tcp_send_b;
931 recv = mbedtls_mock_tcp_recv_b;
932 }
933
934 mbedtls_mock_socket_init( &client );
935 mbedtls_mock_socket_init( &server );
936
937 /* Fill up the buffer with structured data so that unwanted changes
938 * can be detected */
939 for( i = 0; i < MSGLEN; i++ )
940 {
941 message[i] = i & 0xFF;
942 }
943
944 /* Make sure that sending a message takes a few iterations. */
945 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
946 MSGLEN / 5 ) );
947 TEST_ASSERT( 0 == mbedtls_mock_socket_set_block( &client, client_block ) );
948 TEST_ASSERT( 0 == mbedtls_mock_socket_set_block( &server, server_block ) );
949
950 /* Send the message to the server */
951 send_ret = recv_ret = 1;
952 written = read = 0;
953 while( send_ret != 0 || recv_ret != 0 )
954 {
955 send_ret = send( &client, message + written, MSGLEN - written );
956
957 if( ( blocking == 0 ) && ( client_block & 1 ) )
958 {
959 TEST_ASSERT( send_ret == MBEDTLS_ERR_SSL_WANT_WRITE );
960 }
961 else
962 {
963 TEST_ASSERT( send_ret >= 0 );
964 written += send_ret;
965 }
966 client_block >>= 1;
967
968 recv_ret = recv( &server, received + read, MSGLEN - read );
969 if( ( blocking == 0 ) && ( server_block & 1 ) )
970 {
971 TEST_ASSERT( recv_ret == MBEDTLS_ERR_SSL_WANT_READ );
972 }
973 else
974 {
975 TEST_ASSERT( recv_ret >= 0 );
976 read += recv_ret;
977 }
978 server_block >>= 1;
979 }
980 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
981
982exit:
983
984 mbedtls_mock_socket_close( &client );
985 mbedtls_mock_socket_close( &server );
986}
987/* END_CASE */
988
989/*
990 * Test if the implementation of `mbedtls_mock_socket` related functions can
991 * send messages in both direction at the same time (with the I/O calls
992 * interleaving).
993 */
994
995/* BEGIN_CASE */
996void ssl_mock_tcp_interleaving( int blocking,
997 int client_pattern, int server_pattern )
998{
Janos Follath031827f2019-11-27 11:12:14 +0000999 enum { ROUNDS = 2 };
1000 enum { MSGLEN = 105 };
1001 unsigned char message[ROUNDS][MSGLEN];
1002 unsigned char received[ROUNDS][MSGLEN];
1003 mbedtls_mock_socket client;
1004 mbedtls_mock_socket server;
1005 size_t written[ROUNDS];
1006 size_t read[ROUNDS];
1007 int send_ret[ROUNDS];
1008 int recv_ret[ROUNDS];
1009 unsigned i, j, progress;
Janos Follath3766ba52019-11-27 13:31:42 +00001010 mbedtls_ssl_send_t *send;
1011 mbedtls_ssl_recv_t *recv;
1012 uint32_t client_block = client_pattern;
1013 uint32_t server_block = server_pattern;
1014
1015 if( blocking == 0 )
1016 {
1017 send = mbedtls_mock_tcp_send_nb;
1018 recv = mbedtls_mock_tcp_recv_nb;
1019 }
1020 else
1021 {
1022 send = mbedtls_mock_tcp_send_b;
1023 recv = mbedtls_mock_tcp_recv_b;
1024 }
Janos Follath031827f2019-11-27 11:12:14 +00001025
1026 mbedtls_mock_socket_init( &client );
1027 mbedtls_mock_socket_init( &server );
1028
1029 /* Fill up the buffers with structured data so that unwanted changes
1030 * can be detected */
1031 for( i = 0; i < ROUNDS; i++ )
1032 {
1033 for( j = 0; j < MSGLEN; j++ )
1034 {
1035 message[i][j] = ( i * MSGLEN + j ) & 0xFF;
1036 }
1037 }
1038
Janos Follath031827f2019-11-27 11:12:14 +00001039 /* Make sure that sending a message takes a few iterations. */
1040 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
1041 MSGLEN / 5 ) );
Janos Follath3766ba52019-11-27 13:31:42 +00001042 TEST_ASSERT( 0 == mbedtls_mock_socket_set_block( &client, client_block ) );
1043 TEST_ASSERT( 0 == mbedtls_mock_socket_set_block( &server, server_block ) );
Janos Follath031827f2019-11-27 11:12:14 +00001044
Janos Follath031827f2019-11-27 11:12:14 +00001045 /* Send the message from both sides, interleaving. */
1046 progress = 1;
1047 for( i = 0; i < ROUNDS; i++ )
1048 {
1049 written[i] = 0;
1050 read[i] = 0;
1051 }
1052 /* This loop does not stop as long as there was a successful write or read
1053 * of at least one byte on either side. */
1054 while( progress != 0 )
1055 {
Janos Follath3766ba52019-11-27 13:31:42 +00001056 send_ret[0] = send( &client, message[0] + written[0],
Janos Follath031827f2019-11-27 11:12:14 +00001057 MSGLEN - written[0] );
Janos Follath3766ba52019-11-27 13:31:42 +00001058 if( ( blocking == 0 ) && ( client_block & 1 ) )
1059 {
1060 TEST_ASSERT( send_ret[0] == MBEDTLS_ERR_SSL_WANT_WRITE );
1061 }
1062 else
1063 {
1064 TEST_ASSERT( send_ret[0] >= 0 );
1065 written[0] += send_ret[0];
1066 }
1067 client_block >>= 1;
Janos Follath031827f2019-11-27 11:12:14 +00001068
Janos Follath3766ba52019-11-27 13:31:42 +00001069 send_ret[1] = send( &server, message[1] + written[1],
Janos Follath031827f2019-11-27 11:12:14 +00001070 MSGLEN - written[1] );
Janos Follath3766ba52019-11-27 13:31:42 +00001071 if( ( blocking == 0 ) && ( server_block & 1 ) )
1072 {
1073 TEST_ASSERT( send_ret[1] == MBEDTLS_ERR_SSL_WANT_WRITE );
1074 }
1075 else
1076 {
1077 TEST_ASSERT( send_ret[1] >= 0 );
1078 written[1] += send_ret[1];
1079 }
1080 server_block >>= 1;
Janos Follath031827f2019-11-27 11:12:14 +00001081
Janos Follath3766ba52019-11-27 13:31:42 +00001082 recv_ret[0] = recv( &server, received[0] + read[0],
Janos Follath031827f2019-11-27 11:12:14 +00001083 MSGLEN - read[0] );
Janos Follath3766ba52019-11-27 13:31:42 +00001084 if( ( blocking == 0 ) && ( server_block & 1 ) )
1085 {
1086 TEST_ASSERT( recv_ret[0] == MBEDTLS_ERR_SSL_WANT_READ );
1087 }
1088 else
1089 {
1090 TEST_ASSERT( recv_ret[0] >= 0 );
1091 read[0] += recv_ret[0];
1092 }
1093 server_block >>= 1;
Janos Follath031827f2019-11-27 11:12:14 +00001094
Janos Follath3766ba52019-11-27 13:31:42 +00001095 recv_ret[1] = recv( &client, received[1] + read[1],
Janos Follath031827f2019-11-27 11:12:14 +00001096 MSGLEN - read[1] );
Janos Follath3766ba52019-11-27 13:31:42 +00001097 if( ( blocking == 0 ) && ( client_block & 1 ) )
1098 {
1099 TEST_ASSERT( recv_ret[1] == MBEDTLS_ERR_SSL_WANT_READ );
1100 }
1101 else
1102 {
1103 TEST_ASSERT( recv_ret[1] >= 0 );
1104 read[1] += recv_ret[1];
1105 }
1106 client_block >>= 1;
Janos Follath031827f2019-11-27 11:12:14 +00001107
1108 progress = 0;
1109 for( i = 0; i < ROUNDS; i++ )
1110 {
Janos Follath3766ba52019-11-27 13:31:42 +00001111 if( ( send_ret[i] > 0 ) ||
1112 ( send_ret[i] == MBEDTLS_ERR_SSL_WANT_WRITE ) )
1113 {
Janos Follath031827f2019-11-27 11:12:14 +00001114 progress++;
Janos Follath3766ba52019-11-27 13:31:42 +00001115 }
Janos Follath031827f2019-11-27 11:12:14 +00001116
Janos Follath3766ba52019-11-27 13:31:42 +00001117 if( ( recv_ret[i] > 0 ) ||
1118 ( recv_ret[i] == MBEDTLS_ERR_SSL_WANT_READ ) )
1119 {
Janos Follath031827f2019-11-27 11:12:14 +00001120 progress++;
Janos Follath3766ba52019-11-27 13:31:42 +00001121 }
Janos Follath031827f2019-11-27 11:12:14 +00001122 }
1123 }
1124
1125 for( i = 0; i < ROUNDS; i++ )
1126 TEST_ASSERT( memcmp( message[i], received[i], MSGLEN ) == 0 );
1127
1128exit:
1129
1130 mbedtls_mock_socket_close( &client );
1131 mbedtls_mock_socket_close( &server );
1132}
1133/* END_CASE */
1134
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02001135/* BEGIN_CASE depends_on:MBEDTLS_SSL_DTLS_ANTI_REPLAY */
Azim Khan5fcca462018-06-29 11:05:32 +01001136void ssl_dtls_replay( data_t * prevs, data_t * new, int ret )
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001137{
Azim Khand30ca132017-06-09 04:32:58 +01001138 uint32_t len = 0;
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02001139 mbedtls_ssl_context ssl;
Manuel Pégourié-Gonnarddef0bbe2015-05-04 14:56:36 +02001140 mbedtls_ssl_config conf;
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001141
Manuel Pégourié-Gonnard41d479e2015-04-29 00:48:22 +02001142 mbedtls_ssl_init( &ssl );
Manuel Pégourié-Gonnarddef0bbe2015-05-04 14:56:36 +02001143 mbedtls_ssl_config_init( &conf );
Manuel Pégourié-Gonnard41d479e2015-04-29 00:48:22 +02001144
Manuel Pégourié-Gonnard419d5ae2015-05-04 19:32:36 +02001145 TEST_ASSERT( mbedtls_ssl_config_defaults( &conf,
1146 MBEDTLS_SSL_IS_CLIENT,
Manuel Pégourié-Gonnardb31c5f62015-06-17 13:53:47 +02001147 MBEDTLS_SSL_TRANSPORT_DATAGRAM,
1148 MBEDTLS_SSL_PRESET_DEFAULT ) == 0 );
Manuel Pégourié-Gonnarddef0bbe2015-05-04 14:56:36 +02001149 TEST_ASSERT( mbedtls_ssl_setup( &ssl, &conf ) == 0 );
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001150
1151 /* Read previous record numbers */
Azim Khand30ca132017-06-09 04:32:58 +01001152 for( len = 0; len < prevs->len; len += 6 )
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001153 {
Azim Khand30ca132017-06-09 04:32:58 +01001154 memcpy( ssl.in_ctr + 2, prevs->x + len, 6 );
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02001155 mbedtls_ssl_dtls_replay_update( &ssl );
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001156 }
1157
1158 /* Check new number */
Azim Khand30ca132017-06-09 04:32:58 +01001159 memcpy( ssl.in_ctr + 2, new->x, 6 );
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02001160 TEST_ASSERT( mbedtls_ssl_dtls_replay_check( &ssl ) == ret );
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001161
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02001162 mbedtls_ssl_free( &ssl );
Manuel Pégourié-Gonnarddef0bbe2015-05-04 14:56:36 +02001163 mbedtls_ssl_config_free( &conf );
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001164}
1165/* END_CASE */
Hanno Beckerb25c0c72017-05-05 11:24:30 +01001166
1167/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C */
1168void ssl_set_hostname_twice( char *hostname0, char *hostname1 )
1169{
1170 mbedtls_ssl_context ssl;
1171 mbedtls_ssl_init( &ssl );
1172
1173 TEST_ASSERT( mbedtls_ssl_set_hostname( &ssl, hostname0 ) == 0 );
1174 TEST_ASSERT( mbedtls_ssl_set_hostname( &ssl, hostname1 ) == 0 );
1175
1176 mbedtls_ssl_free( &ssl );
1177}
Darryl Green11999bb2018-03-13 15:22:58 +00001178/* END_CASE */
Hanno Beckera18d1322018-01-03 14:27:32 +00001179
1180/* BEGIN_CASE */
1181void ssl_crypt_record( int cipher_type, int hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01001182 int etm, int tag_mode, int ver,
1183 int cid0_len, int cid1_len )
Hanno Beckera18d1322018-01-03 14:27:32 +00001184{
1185 /*
1186 * Test several record encryptions and decryptions
1187 * with plenty of space before and after the data
1188 * within the record buffer.
1189 */
1190
1191 int ret;
1192 int num_records = 16;
1193 mbedtls_ssl_context ssl; /* ONLY for debugging */
1194
1195 mbedtls_ssl_transform t0, t1;
Hanno Becker81e16a32019-03-01 11:21:44 +00001196 unsigned char *buf = NULL;
Hanno Beckera18d1322018-01-03 14:27:32 +00001197 size_t const buflen = 512;
1198 mbedtls_record rec, rec_backup;
1199
1200 mbedtls_ssl_init( &ssl );
1201 mbedtls_ssl_transform_init( &t0 );
1202 mbedtls_ssl_transform_init( &t1 );
1203 TEST_ASSERT( build_transforms( &t0, &t1, cipher_type, hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01001204 etm, tag_mode, ver,
1205 (size_t) cid0_len,
1206 (size_t) cid1_len ) == 0 );
Hanno Beckera18d1322018-01-03 14:27:32 +00001207
Hanno Becker3ee54212019-04-04 16:31:26 +01001208 TEST_ASSERT( ( buf = mbedtls_calloc( 1, buflen ) ) != NULL );
Hanno Beckera18d1322018-01-03 14:27:32 +00001209
1210 while( num_records-- > 0 )
1211 {
1212 mbedtls_ssl_transform *t_dec, *t_enc;
1213 /* Take turns in who's sending and who's receiving. */
1214 if( num_records % 3 == 0 )
1215 {
1216 t_dec = &t0;
1217 t_enc = &t1;
1218 }
1219 else
1220 {
1221 t_dec = &t1;
1222 t_enc = &t0;
1223 }
1224
1225 /*
1226 * The record header affects the transformation in two ways:
1227 * 1) It determines the AEAD additional data
1228 * 2) The record counter sometimes determines the IV.
1229 *
1230 * Apart from that, the fields don't have influence.
1231 * In particular, it is currently not the responsibility
1232 * of ssl_encrypt/decrypt_buf to check if the transform
1233 * version matches the record version, or that the
1234 * type is sensible.
1235 */
1236
1237 memset( rec.ctr, num_records, sizeof( rec.ctr ) );
1238 rec.type = 42;
1239 rec.ver[0] = num_records;
1240 rec.ver[1] = num_records;
Hanno Beckera0e20d02019-05-15 14:03:01 +01001241#if defined(MBEDTLS_SSL_DTLS_CONNECTION_ID)
Hanno Beckerd856c822019-04-29 17:30:59 +01001242 rec.cid_len = 0;
Hanno Beckera0e20d02019-05-15 14:03:01 +01001243#endif /* MBEDTLS_SSL_DTLS_CONNECTION_ID */
Hanno Beckera18d1322018-01-03 14:27:32 +00001244
1245 rec.buf = buf;
1246 rec.buf_len = buflen;
1247 rec.data_offset = 16;
1248 /* Make sure to vary the length to exercise different
1249 * paddings. */
1250 rec.data_len = 1 + num_records;
1251
1252 memset( rec.buf + rec.data_offset, 42, rec.data_len );
1253
1254 /* Make a copy for later comparison */
1255 rec_backup = rec;
1256
1257 /* Encrypt record */
1258 ret = mbedtls_ssl_encrypt_buf( &ssl, t_enc, &rec,
1259 rnd_std_rand, NULL );
1260 TEST_ASSERT( ret == 0 || ret == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
1261 if( ret != 0 )
1262 {
1263 continue;
1264 }
1265
1266 /* Decrypt record with t_dec */
Hanno Beckerd856c822019-04-29 17:30:59 +01001267 ret = mbedtls_ssl_decrypt_buf( &ssl, t_dec, &rec );
1268 TEST_ASSERT( ret == 0 );
Hanno Beckera18d1322018-01-03 14:27:32 +00001269
1270 /* Compare results */
1271 TEST_ASSERT( rec.type == rec_backup.type );
1272 TEST_ASSERT( memcmp( rec.ctr, rec_backup.ctr, 8 ) == 0 );
1273 TEST_ASSERT( rec.ver[0] == rec_backup.ver[0] );
1274 TEST_ASSERT( rec.ver[1] == rec_backup.ver[1] );
1275 TEST_ASSERT( rec.data_len == rec_backup.data_len );
1276 TEST_ASSERT( rec.data_offset == rec_backup.data_offset );
1277 TEST_ASSERT( memcmp( rec.buf + rec.data_offset,
1278 rec_backup.buf + rec_backup.data_offset,
1279 rec.data_len ) == 0 );
1280 }
1281
Hanno Becker81e16a32019-03-01 11:21:44 +00001282exit:
1283
Hanno Beckera18d1322018-01-03 14:27:32 +00001284 /* Cleanup */
1285 mbedtls_ssl_free( &ssl );
1286 mbedtls_ssl_transform_free( &t0 );
1287 mbedtls_ssl_transform_free( &t1 );
1288
Hanno Becker3ee54212019-04-04 16:31:26 +01001289 mbedtls_free( buf );
Hanno Beckera18d1322018-01-03 14:27:32 +00001290}
1291/* END_CASE */
Hanno Beckerb3268da2018-01-05 15:20:24 +00001292
1293/* BEGIN_CASE */
1294void ssl_crypt_record_small( int cipher_type, int hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01001295 int etm, int tag_mode, int ver,
1296 int cid0_len, int cid1_len )
Hanno Beckerb3268da2018-01-05 15:20:24 +00001297{
1298 /*
1299 * Test pairs of encryption and decryption with an increasing
1300 * amount of space in the record buffer - in more detail:
1301 * 1) Try to encrypt with 0, 1, 2, ... bytes available
1302 * in front of the plaintext, and expect the encryption
1303 * to succeed starting from some offset. Always keep
1304 * enough space in the end of the buffer.
1305 * 2) Try to encrypt with 0, 1, 2, ... bytes available
1306 * at the end of the plaintext, and expect the encryption
1307 * to succeed starting from some offset. Always keep
1308 * enough space at the beginning of the buffer.
1309 * 3) Try to encrypt with 0, 1, 2, ... bytes available
1310 * both at the front and end of the plaintext,
1311 * and expect the encryption to succeed starting from
1312 * some offset.
1313 *
1314 * If encryption succeeds, check that decryption succeeds
1315 * and yields the original record.
1316 */
1317
1318 mbedtls_ssl_context ssl; /* ONLY for debugging */
1319
1320 mbedtls_ssl_transform t0, t1;
Hanno Becker81e16a32019-03-01 11:21:44 +00001321 unsigned char *buf = NULL;
Hanno Beckerd856c822019-04-29 17:30:59 +01001322 size_t const buflen = 256;
Hanno Beckerb3268da2018-01-05 15:20:24 +00001323 mbedtls_record rec, rec_backup;
1324
1325 int ret;
Hanno Beckerd856c822019-04-29 17:30:59 +01001326 int mode; /* Mode 1, 2 or 3 as explained above */
1327 size_t offset; /* Available space at beginning/end/both */
1328 size_t threshold = 96; /* Maximum offset to test against */
Hanno Beckerb3268da2018-01-05 15:20:24 +00001329
Hanno Beckerd856c822019-04-29 17:30:59 +01001330 size_t default_pre_padding = 64; /* Pre-padding to use in mode 2 */
1331 size_t default_post_padding = 128; /* Post-padding to use in mode 1 */
Hanno Beckerb3268da2018-01-05 15:20:24 +00001332
1333 int seen_success; /* Indicates if in the current mode we've
1334 * already seen a successful test. */
1335
1336 mbedtls_ssl_init( &ssl );
1337 mbedtls_ssl_transform_init( &t0 );
1338 mbedtls_ssl_transform_init( &t1 );
1339 TEST_ASSERT( build_transforms( &t0, &t1, cipher_type, hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01001340 etm, tag_mode, ver,
1341 (size_t) cid0_len,
1342 (size_t) cid1_len ) == 0 );
Hanno Beckerb3268da2018-01-05 15:20:24 +00001343
Hanno Becker3ee54212019-04-04 16:31:26 +01001344 TEST_ASSERT( ( buf = mbedtls_calloc( 1, buflen ) ) != NULL );
Hanno Beckerb3268da2018-01-05 15:20:24 +00001345
1346 for( mode=1; mode <= 3; mode++ )
1347 {
1348 seen_success = 0;
1349 for( offset=0; offset <= threshold; offset++ )
1350 {
1351 mbedtls_ssl_transform *t_dec, *t_enc;
Hanno Becker6c87b3f2019-04-29 17:24:44 +01001352 t_dec = &t0;
1353 t_enc = &t1;
Hanno Beckerb3268da2018-01-05 15:20:24 +00001354
1355 memset( rec.ctr, offset, sizeof( rec.ctr ) );
1356 rec.type = 42;
1357 rec.ver[0] = offset;
1358 rec.ver[1] = offset;
1359 rec.buf = buf;
1360 rec.buf_len = buflen;
Hanno Beckera0e20d02019-05-15 14:03:01 +01001361#if defined(MBEDTLS_SSL_DTLS_CONNECTION_ID)
Hanno Beckerd856c822019-04-29 17:30:59 +01001362 rec.cid_len = 0;
Hanno Beckera0e20d02019-05-15 14:03:01 +01001363#endif /* MBEDTLS_SSL_DTLS_CONNECTION_ID */
Hanno Beckerb3268da2018-01-05 15:20:24 +00001364
1365 switch( mode )
1366 {
1367 case 1: /* Space in the beginning */
1368 rec.data_offset = offset;
1369 rec.data_len = buflen - offset - default_post_padding;
1370 break;
1371
1372 case 2: /* Space in the end */
1373 rec.data_offset = default_pre_padding;
1374 rec.data_len = buflen - default_pre_padding - offset;
1375 break;
1376
1377 case 3: /* Space in the beginning and end */
1378 rec.data_offset = offset;
1379 rec.data_len = buflen - 2 * offset;
1380 break;
1381
1382 default:
1383 TEST_ASSERT( 0 );
1384 break;
1385 }
1386
1387 memset( rec.buf + rec.data_offset, 42, rec.data_len );
1388
1389 /* Make a copy for later comparison */
1390 rec_backup = rec;
1391
1392 /* Encrypt record */
1393 ret = mbedtls_ssl_encrypt_buf( &ssl, t_enc, &rec, rnd_std_rand, NULL );
1394
1395 if( ( mode == 1 || mode == 2 ) && seen_success )
1396 {
1397 TEST_ASSERT( ret == 0 );
1398 }
1399 else
1400 {
1401 TEST_ASSERT( ret == 0 || ret == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
1402 if( ret == 0 )
1403 seen_success = 1;
1404 }
1405
1406 if( ret != 0 )
1407 continue;
1408
1409 /* Decrypt record with t_dec */
1410 TEST_ASSERT( mbedtls_ssl_decrypt_buf( &ssl, t_dec, &rec ) == 0 );
1411
1412 /* Compare results */
1413 TEST_ASSERT( rec.type == rec_backup.type );
1414 TEST_ASSERT( memcmp( rec.ctr, rec_backup.ctr, 8 ) == 0 );
1415 TEST_ASSERT( rec.ver[0] == rec_backup.ver[0] );
1416 TEST_ASSERT( rec.ver[1] == rec_backup.ver[1] );
1417 TEST_ASSERT( rec.data_len == rec_backup.data_len );
1418 TEST_ASSERT( rec.data_offset == rec_backup.data_offset );
1419 TEST_ASSERT( memcmp( rec.buf + rec.data_offset,
1420 rec_backup.buf + rec_backup.data_offset,
1421 rec.data_len ) == 0 );
1422 }
1423
1424 TEST_ASSERT( seen_success == 1 );
1425 }
1426
Hanno Becker81e16a32019-03-01 11:21:44 +00001427exit:
1428
Hanno Beckerb3268da2018-01-05 15:20:24 +00001429 /* Cleanup */
1430 mbedtls_ssl_free( &ssl );
1431 mbedtls_ssl_transform_free( &t0 );
1432 mbedtls_ssl_transform_free( &t1 );
1433
Hanno Becker3ee54212019-04-04 16:31:26 +01001434 mbedtls_free( buf );
Hanno Beckerb3268da2018-01-05 15:20:24 +00001435}
1436/* END_CASE */
Ron Eldor824ad7b2019-05-13 14:09:00 +03001437
1438/* BEGIN_CASE */
1439void ssl_tls_prf( int type, data_t * secret, data_t * random,
1440 char *label, data_t *result_hex_str, int exp_ret )
1441{
1442 unsigned char *output;
1443
1444 output = mbedtls_calloc( 1, result_hex_str->len );
1445 if( output == NULL )
1446 goto exit;
1447
Ron Eldor6b9b1b82019-05-15 17:04:33 +03001448#if defined(MBEDTLS_USE_PSA_CRYPTO)
1449 TEST_ASSERT( psa_crypto_init() == 0 );
1450#endif
1451
Ron Eldor824ad7b2019-05-13 14:09:00 +03001452 TEST_ASSERT( mbedtls_ssl_tls_prf( type, secret->x, secret->len,
1453 label, random->x, random->len,
1454 output, result_hex_str->len ) == exp_ret );
1455
1456 if( exp_ret == 0 )
1457 {
1458 TEST_ASSERT( hexcmp( output, result_hex_str->x,
1459 result_hex_str->len, result_hex_str->len ) == 0 );
1460 }
1461exit:
1462
1463 mbedtls_free( output );
1464}
1465/* END_CASE */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02001466
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02001467/* BEGIN_CASE */
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001468void ssl_serialize_session_save_load( int ticket_len, char *crt_file )
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02001469{
1470 mbedtls_ssl_session original, restored;
1471 unsigned char *buf = NULL;
1472 size_t len;
1473
1474 /*
1475 * Test that a save-load pair is the identity
1476 */
1477
1478 mbedtls_ssl_session_init( &original );
1479 mbedtls_ssl_session_init( &restored );
1480
1481 /* Prepare a dummy session to work on */
1482 TEST_ASSERT( ssl_populate_session( &original, ticket_len, crt_file ) == 0 );
1483
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001484 /* Serialize it */
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02001485 TEST_ASSERT( mbedtls_ssl_session_save( &original, NULL, 0, &len )
1486 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
1487 TEST_ASSERT( ( buf = mbedtls_calloc( 1, len ) ) != NULL );
1488 TEST_ASSERT( mbedtls_ssl_session_save( &original, buf, len, &len )
1489 == 0 );
1490
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001491 /* Restore session from serialized data */
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02001492 TEST_ASSERT( mbedtls_ssl_session_load( &restored, buf, len) == 0 );
1493
1494 /*
1495 * Make sure both session structures are identical
1496 */
1497#if defined(MBEDTLS_HAVE_TIME)
1498 TEST_ASSERT( original.start == restored.start );
1499#endif
1500 TEST_ASSERT( original.ciphersuite == restored.ciphersuite );
1501 TEST_ASSERT( original.compression == restored.compression );
1502 TEST_ASSERT( original.id_len == restored.id_len );
1503 TEST_ASSERT( memcmp( original.id,
1504 restored.id, sizeof( original.id ) ) == 0 );
1505 TEST_ASSERT( memcmp( original.master,
1506 restored.master, sizeof( original.master ) ) == 0 );
1507
1508#if defined(MBEDTLS_X509_CRT_PARSE_C)
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02001509#if defined(MBEDTLS_SSL_KEEP_PEER_CERTIFICATE)
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02001510 TEST_ASSERT( ( original.peer_cert == NULL ) ==
1511 ( restored.peer_cert == NULL ) );
1512 if( original.peer_cert != NULL )
1513 {
1514 TEST_ASSERT( original.peer_cert->raw.len ==
1515 restored.peer_cert->raw.len );
1516 TEST_ASSERT( memcmp( original.peer_cert->raw.p,
1517 restored.peer_cert->raw.p,
1518 original.peer_cert->raw.len ) == 0 );
1519 }
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02001520#else /* MBEDTLS_SSL_KEEP_PEER_CERTIFICATE */
1521 TEST_ASSERT( original.peer_cert_digest_type ==
1522 restored.peer_cert_digest_type );
1523 TEST_ASSERT( original.peer_cert_digest_len ==
1524 restored.peer_cert_digest_len );
1525 TEST_ASSERT( ( original.peer_cert_digest == NULL ) ==
1526 ( restored.peer_cert_digest == NULL ) );
1527 if( original.peer_cert_digest != NULL )
1528 {
1529 TEST_ASSERT( memcmp( original.peer_cert_digest,
1530 restored.peer_cert_digest,
1531 original.peer_cert_digest_len ) == 0 );
1532 }
1533#endif /* MBEDTLS_SSL_KEEP_PEER_CERTIFICATE */
1534#endif /* MBEDTLS_X509_CRT_PARSE_C */
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02001535 TEST_ASSERT( original.verify_result == restored.verify_result );
1536
1537#if defined(MBEDTLS_SSL_SESSION_TICKETS) && defined(MBEDTLS_SSL_CLI_C)
1538 TEST_ASSERT( original.ticket_len == restored.ticket_len );
1539 if( original.ticket_len != 0 )
1540 {
1541 TEST_ASSERT( original.ticket != NULL );
1542 TEST_ASSERT( restored.ticket != NULL );
1543 TEST_ASSERT( memcmp( original.ticket,
1544 restored.ticket, original.ticket_len ) == 0 );
1545 }
1546 TEST_ASSERT( original.ticket_lifetime == restored.ticket_lifetime );
1547#endif
1548
1549#if defined(MBEDTLS_SSL_MAX_FRAGMENT_LENGTH)
1550 TEST_ASSERT( original.mfl_code == restored.mfl_code );
1551#endif
1552
1553#if defined(MBEDTLS_SSL_TRUNCATED_HMAC)
1554 TEST_ASSERT( original.trunc_hmac == restored.trunc_hmac );
1555#endif
1556
1557#if defined(MBEDTLS_SSL_ENCRYPT_THEN_MAC)
1558 TEST_ASSERT( original.encrypt_then_mac == restored.encrypt_then_mac );
1559#endif
1560
1561exit:
1562 mbedtls_ssl_session_free( &original );
1563 mbedtls_ssl_session_free( &restored );
1564 mbedtls_free( buf );
1565}
1566/* END_CASE */
1567
Manuel Pégourié-Gonnardaa755832019-06-03 10:53:47 +02001568/* BEGIN_CASE */
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001569void ssl_serialize_session_load_save( int ticket_len, char *crt_file )
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02001570{
1571 mbedtls_ssl_session session;
1572 unsigned char *buf1 = NULL, *buf2 = NULL;
1573 size_t len0, len1, len2;
1574
1575 /*
1576 * Test that a load-save pair is the identity
1577 */
1578
1579 mbedtls_ssl_session_init( &session );
1580
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001581 /* Prepare a dummy session to work on */
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +02001582 TEST_ASSERT( ssl_populate_session( &session, ticket_len, crt_file ) == 0 );
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001583
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001584 /* Get desired buffer size for serializing */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02001585 TEST_ASSERT( mbedtls_ssl_session_save( &session, NULL, 0, &len0 )
1586 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
1587
1588 /* Allocate first buffer */
1589 buf1 = mbedtls_calloc( 1, len0 );
1590 TEST_ASSERT( buf1 != NULL );
1591
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001592 /* Serialize to buffer and free live session */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02001593 TEST_ASSERT( mbedtls_ssl_session_save( &session, buf1, len0, &len1 )
1594 == 0 );
1595 TEST_ASSERT( len0 == len1 );
1596 mbedtls_ssl_session_free( &session );
1597
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001598 /* Restore session from serialized data */
Manuel Pégourié-Gonnard220403b2019-05-24 09:54:21 +02001599 TEST_ASSERT( mbedtls_ssl_session_load( &session, buf1, len1 ) == 0 );
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02001600
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001601 /* Allocate second buffer and serialize to it */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02001602 buf2 = mbedtls_calloc( 1, len0 );
Manuel Pégourié-Gonnardb4079902019-05-24 09:52:10 +02001603 TEST_ASSERT( buf2 != NULL );
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02001604 TEST_ASSERT( mbedtls_ssl_session_save( &session, buf2, len0, &len2 )
1605 == 0 );
1606
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001607 /* Make sure both serialized versions are identical */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02001608 TEST_ASSERT( len1 == len2 );
1609 TEST_ASSERT( memcmp( buf1, buf2, len1 ) == 0 );
1610
1611exit:
1612 mbedtls_ssl_session_free( &session );
1613 mbedtls_free( buf1 );
1614 mbedtls_free( buf2 );
1615}
1616/* END_CASE */
Manuel Pégourié-Gonnardf5fa0aa2019-05-23 10:38:11 +02001617
1618/* BEGIN_CASE */
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001619void ssl_serialize_session_save_buf_size( int ticket_len, char *crt_file )
Manuel Pégourié-Gonnardf5fa0aa2019-05-23 10:38:11 +02001620{
1621 mbedtls_ssl_session session;
1622 unsigned char *buf = NULL;
1623 size_t good_len, bad_len, test_len;
1624
1625 /*
1626 * Test that session_save() fails cleanly on small buffers
1627 */
1628
1629 mbedtls_ssl_session_init( &session );
1630
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001631 /* Prepare dummy session and get serialized size */
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +02001632 TEST_ASSERT( ssl_populate_session( &session, ticket_len, crt_file ) == 0 );
Manuel Pégourié-Gonnardf5fa0aa2019-05-23 10:38:11 +02001633 TEST_ASSERT( mbedtls_ssl_session_save( &session, NULL, 0, &good_len )
1634 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
1635
1636 /* Try all possible bad lengths */
1637 for( bad_len = 1; bad_len < good_len; bad_len++ )
1638 {
1639 /* Allocate exact size so that asan/valgrind can detect any overwrite */
1640 mbedtls_free( buf );
1641 TEST_ASSERT( ( buf = mbedtls_calloc( 1, bad_len ) ) != NULL );
1642 TEST_ASSERT( mbedtls_ssl_session_save( &session, buf, bad_len,
1643 &test_len )
1644 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
1645 TEST_ASSERT( test_len == good_len );
1646 }
1647
1648exit:
1649 mbedtls_ssl_session_free( &session );
1650 mbedtls_free( buf );
1651}
1652/* END_CASE */
Manuel Pégourié-Gonnarda3d831b2019-05-23 12:28:45 +02001653
1654/* BEGIN_CASE */
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001655void ssl_serialize_session_load_buf_size( int ticket_len, char *crt_file )
Manuel Pégourié-Gonnarda3d831b2019-05-23 12:28:45 +02001656{
1657 mbedtls_ssl_session session;
1658 unsigned char *good_buf = NULL, *bad_buf = NULL;
1659 size_t good_len, bad_len;
1660
1661 /*
1662 * Test that session_load() fails cleanly on small buffers
1663 */
1664
1665 mbedtls_ssl_session_init( &session );
1666
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001667 /* Prepare serialized session data */
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +02001668 TEST_ASSERT( ssl_populate_session( &session, ticket_len, crt_file ) == 0 );
Manuel Pégourié-Gonnarda3d831b2019-05-23 12:28:45 +02001669 TEST_ASSERT( mbedtls_ssl_session_save( &session, NULL, 0, &good_len )
1670 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
1671 TEST_ASSERT( ( good_buf = mbedtls_calloc( 1, good_len ) ) != NULL );
1672 TEST_ASSERT( mbedtls_ssl_session_save( &session, good_buf, good_len,
1673 &good_len ) == 0 );
1674 mbedtls_ssl_session_free( &session );
1675
1676 /* Try all possible bad lengths */
1677 for( bad_len = 0; bad_len < good_len; bad_len++ )
1678 {
1679 /* Allocate exact size so that asan/valgrind can detect any overread */
1680 mbedtls_free( bad_buf );
1681 bad_buf = mbedtls_calloc( 1, bad_len ? bad_len : 1 );
1682 TEST_ASSERT( bad_buf != NULL );
1683 memcpy( bad_buf, good_buf, bad_len );
1684
1685 TEST_ASSERT( mbedtls_ssl_session_load( &session, bad_buf, bad_len )
1686 == MBEDTLS_ERR_SSL_BAD_INPUT_DATA );
1687 }
1688
1689exit:
1690 mbedtls_ssl_session_free( &session );
1691 mbedtls_free( good_buf );
1692 mbedtls_free( bad_buf );
1693}
1694/* END_CASE */
Hanno Becker861d0bb2019-05-21 16:39:30 +01001695
Hanno Becker363b6462019-05-29 12:44:28 +01001696/* BEGIN_CASE */
1697void ssl_session_serialize_version_check( int corrupt_major,
Hanno Becker861d0bb2019-05-21 16:39:30 +01001698 int corrupt_minor,
1699 int corrupt_patch,
1700 int corrupt_config )
1701{
Hanno Becker363b6462019-05-29 12:44:28 +01001702 unsigned char serialized_session[ 2048 ];
1703 size_t serialized_session_len;
Hanno Beckerfe1275e2019-05-29 12:45:21 +01001704 unsigned cur_byte;
Hanno Becker861d0bb2019-05-21 16:39:30 +01001705 mbedtls_ssl_session session;
Hanno Beckerfe1275e2019-05-29 12:45:21 +01001706 uint8_t should_corrupt_byte[] = { corrupt_major == 1,
1707 corrupt_minor == 1,
1708 corrupt_patch == 1,
1709 corrupt_config == 1,
1710 corrupt_config == 1 };
1711
Hanno Becker861d0bb2019-05-21 16:39:30 +01001712 mbedtls_ssl_session_init( &session );
1713
Hanno Beckerfe1275e2019-05-29 12:45:21 +01001714 /* Infer length of serialized session. */
Hanno Becker861d0bb2019-05-21 16:39:30 +01001715 TEST_ASSERT( mbedtls_ssl_session_save( &session,
Hanno Becker363b6462019-05-29 12:44:28 +01001716 serialized_session,
1717 sizeof( serialized_session ),
1718 &serialized_session_len ) == 0 );
Hanno Becker861d0bb2019-05-21 16:39:30 +01001719
Hanno Beckerfe1275e2019-05-29 12:45:21 +01001720 mbedtls_ssl_session_free( &session );
Hanno Becker861d0bb2019-05-21 16:39:30 +01001721
Hanno Beckerfe1275e2019-05-29 12:45:21 +01001722 /* Without any modification, we should be able to successfully
Hanno Becker363b6462019-05-29 12:44:28 +01001723 * de-serialize the session - double-check that. */
Hanno Becker861d0bb2019-05-21 16:39:30 +01001724 TEST_ASSERT( mbedtls_ssl_session_load( &session,
Hanno Becker363b6462019-05-29 12:44:28 +01001725 serialized_session,
1726 serialized_session_len ) == 0 );
Hanno Becker861d0bb2019-05-21 16:39:30 +01001727 mbedtls_ssl_session_free( &session );
1728
Hanno Beckerfe1275e2019-05-29 12:45:21 +01001729 /* Go through the bytes in the serialized session header and
1730 * corrupt them bit-by-bit. */
1731 for( cur_byte = 0; cur_byte < sizeof( should_corrupt_byte ); cur_byte++ )
Hanno Becker861d0bb2019-05-21 16:39:30 +01001732 {
Hanno Beckerfe1275e2019-05-29 12:45:21 +01001733 int cur_bit;
1734 unsigned char * const byte = &serialized_session[ cur_byte ];
1735
1736 if( should_corrupt_byte[ cur_byte ] == 0 )
1737 continue;
1738
1739 for( cur_bit = 0; cur_bit < CHAR_BIT; cur_bit++ )
1740 {
1741 unsigned char const corrupted_bit = 0x1u << cur_bit;
1742 /* Modify a single bit in the serialized session. */
1743 *byte ^= corrupted_bit;
1744
1745 /* Attempt to deserialize */
1746 TEST_ASSERT( mbedtls_ssl_session_load( &session,
1747 serialized_session,
1748 serialized_session_len ) ==
Hanno Beckerf9b33032019-06-03 12:58:39 +01001749 MBEDTLS_ERR_SSL_VERSION_MISMATCH );
Hanno Beckerfe1275e2019-05-29 12:45:21 +01001750
1751 /* Undo the change */
1752 *byte ^= corrupted_bit;
1753 }
Hanno Becker861d0bb2019-05-21 16:39:30 +01001754 }
1755
Hanno Becker861d0bb2019-05-21 16:39:30 +01001756}
1757/* END_CASE */