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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>
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01004#include <mbedtls/ctr_drbg.h>
5#include <mbedtls/entropy.h>
6#include <mbedtls/certs.h>
Andrzej Kurek941962e2020-02-07 09:20:32 -05007#include <mbedtls/timing.h>
Piotr Nowickibde7ee82020-02-21 10:59:50 +01008#include <mbedtls/debug.h>
9
10typedef struct log_pattern
11{
12 const char *pattern;
13 size_t counter;
14} log_pattern;
15
16/* This function can be passed to mbedtls to receive output logs from it. In
17 * this case, it will count the instances of a log_pattern in the received
18 * logged messages.
19 */
20void log_analyzer( void *ctx, int level,
21 const char *file, int line,
22 const char *str )
23{
24 log_pattern *p = (log_pattern *) ctx;
25
26 (void) level;
27 (void) line;
28 (void) file;
29
30 if( NULL != p &&
31 NULL != p->pattern &&
32 NULL != strstr( str, p->pattern ) )
33 {
34 p->counter++;
35 }
36}
Janos Follath6264e662019-11-26 11:11:15 +000037
Andrzej Kurek8a6ff152020-02-26 09:10:14 -050038typedef struct handshake_test_options
39{
40 const char *cipher;
41 int version;
42 int pk_alg;
43 data_t *psk_str;
44 int dtls;
Piotr Nowickibde7ee82020-02-21 10:59:50 +010045 int srv_auth_mode;
Andrzej Kurek8a6ff152020-02-26 09:10:14 -050046 int serialize;
47 int mfl;
48 int cli_msg_len;
49 int srv_msg_len;
50 int expected_cli_fragments;
51 int expected_srv_fragments;
52 int renegotiate;
53 int legacy_renegotiation;
Piotr Nowickibde7ee82020-02-21 10:59:50 +010054 void *srv_log_obj;
55 void *cli_log_obj;
56 void (*srv_log_fun)(void *, int, const char *, int, const char *);
57 void (*cli_log_fun)(void *, int, const char *, int, const char *);
Andrzej Kurek0afa2a12020-03-03 10:39:58 -050058 int resize_buffers;
Andrzej Kurek8a6ff152020-02-26 09:10:14 -050059} handshake_test_options;
60
61void init_handshake_options( handshake_test_options *opts )
62{
63 opts->cipher = "";
64 opts->version = MBEDTLS_SSL_MINOR_VERSION_3;
65 opts->pk_alg = MBEDTLS_PK_RSA;
66 opts->psk_str = NULL;
67 opts->dtls = 0;
Piotr Nowickibde7ee82020-02-21 10:59:50 +010068 opts->srv_auth_mode = MBEDTLS_SSL_VERIFY_NONE;
Andrzej Kurek8a6ff152020-02-26 09:10:14 -050069 opts->serialize = 0;
70 opts->mfl = MBEDTLS_SSL_MAX_FRAG_LEN_NONE;
71 opts->cli_msg_len = 100;
72 opts->srv_msg_len = 100;
73 opts->expected_cli_fragments = 1;
74 opts->expected_srv_fragments = 1;
75 opts->renegotiate = 0;
76 opts->legacy_renegotiation = MBEDTLS_SSL_LEGACY_NO_RENEGOTIATION;
Piotr Nowickibde7ee82020-02-21 10:59:50 +010077 opts->srv_log_obj = NULL;
78 opts->srv_log_obj = NULL;
79 opts->srv_log_fun = NULL;
80 opts->cli_log_fun = NULL;
Andrzej Kurek0afa2a12020-03-03 10:39:58 -050081 opts->resize_buffers = 1;
Andrzej Kurek8a6ff152020-02-26 09:10:14 -050082}
Janos Follath6264e662019-11-26 11:11:15 +000083/*
84 * Buffer structure for custom I/O callbacks.
85 */
86
87typedef struct mbedtls_test_buffer
88{
89 size_t start;
90 size_t content_length;
91 size_t capacity;
92 unsigned char *buffer;
93} mbedtls_test_buffer;
94
95/*
96 * Initialises \p buf. After calling this function it is safe to call
97 * `mbedtls_test_buffer_free()` on \p buf.
98 */
99void mbedtls_test_buffer_init( mbedtls_test_buffer *buf )
100{
101 memset( buf, 0, sizeof( *buf ) );
102}
103
104/*
105 * Sets up \p buf. After calling this function it is safe to call
106 * `mbedtls_test_buffer_put()` and `mbedtls_test_buffer_get()` on \p buf.
107 */
108int mbedtls_test_buffer_setup( mbedtls_test_buffer *buf, size_t capacity )
109{
110 buf->buffer = (unsigned char*) mbedtls_calloc( capacity,
111 sizeof(unsigned char) );
112 if( NULL == buf->buffer )
113 return MBEDTLS_ERR_SSL_ALLOC_FAILED;
114 buf->capacity = capacity;
115
116 return 0;
117}
118
119void mbedtls_test_buffer_free( mbedtls_test_buffer *buf )
120{
121 if( buf->buffer != NULL )
122 mbedtls_free( buf->buffer );
123
124 memset( buf, 0, sizeof( *buf ) );
125}
126
127/*
128 * Puts \p input_len bytes from the \p input buffer into the ring buffer \p buf.
129 *
130 * \p buf must have been initialized and set up by calling
131 * `mbedtls_test_buffer_init()` and `mbedtls_test_buffer_setup()`.
132 *
133 * \retval \p input_len, if the data fits.
134 * \retval 0 <= value < \p input_len, if the data does not fit.
135 * \retval -1, if \p buf is NULL, it hasn't been set up or \p input_len is not
136 * zero and \p input is NULL.
137 */
138int mbedtls_test_buffer_put( mbedtls_test_buffer *buf,
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100139 const unsigned char *input, size_t input_len )
Janos Follath6264e662019-11-26 11:11:15 +0000140{
141 size_t overflow = 0;
142
143 if( ( buf == NULL ) || ( buf->buffer == NULL ) )
144 return -1;
145
146 /* Reduce input_len to a number that fits in the buffer. */
147 if ( ( buf->content_length + input_len ) > buf->capacity )
148 {
149 input_len = buf->capacity - buf->content_length;
150 }
151
152 if( input == NULL )
153 {
154 return ( input_len == 0 ) ? 0 : -1;
155 }
156
Piotr Nowickifb437d72020-01-13 16:59:12 +0100157 /* Check if the buffer has not come full circle and free space is not in
158 * the middle */
159 if( buf->start + buf->content_length < buf->capacity )
Janos Follath6264e662019-11-26 11:11:15 +0000160 {
Piotr Nowickifb437d72020-01-13 16:59:12 +0100161
162 /* Calculate the number of bytes that need to be placed at lower memory
163 * address */
164 if( buf->start + buf->content_length + input_len
165 > buf->capacity )
166 {
167 overflow = ( buf->start + buf->content_length + input_len )
168 % buf->capacity;
169 }
170
171 memcpy( buf->buffer + buf->start + buf->content_length, input,
172 input_len - overflow );
173 memcpy( buf->buffer, input + input_len - overflow, overflow );
174
175 }
176 else
177 {
178 /* The buffer has come full circle and free space is in the middle */
179 memcpy( buf->buffer + buf->start + buf->content_length - buf->capacity,
180 input, input_len );
Janos Follath6264e662019-11-26 11:11:15 +0000181 }
182
Janos Follath6264e662019-11-26 11:11:15 +0000183 buf->content_length += input_len;
Janos Follath6264e662019-11-26 11:11:15 +0000184 return input_len;
185}
186
187/*
Andrzej Kurekf7774142020-01-22 06:34:59 -0500188 * Gets \p output_len bytes from the ring buffer \p buf into the
189 * \p output buffer. The output buffer can be NULL, in this case a part of the
190 * ring buffer will be dropped, if the requested length is available.
Janos Follath6264e662019-11-26 11:11:15 +0000191 *
192 * \p buf must have been initialized and set up by calling
193 * `mbedtls_test_buffer_init()` and `mbedtls_test_buffer_setup()`.
194 *
195 * \retval \p output_len, if the data is available.
196 * \retval 0 <= value < \p output_len, if the data is not available.
Andrzej Kurekf7774142020-01-22 06:34:59 -0500197 * \retval -1, if \buf is NULL or it hasn't been set up.
Janos Follath6264e662019-11-26 11:11:15 +0000198 */
199int mbedtls_test_buffer_get( mbedtls_test_buffer *buf,
200 unsigned char* output, size_t output_len )
201{
202 size_t overflow = 0;
203
204 if( ( buf == NULL ) || ( buf->buffer == NULL ) )
205 return -1;
206
Andrzej Kurekf7774142020-01-22 06:34:59 -0500207 if( output == NULL && output_len == 0 )
208 return 0;
Janos Follath6264e662019-11-26 11:11:15 +0000209
210 if( buf->content_length < output_len )
211 output_len = buf->content_length;
212
213 /* Calculate the number of bytes that need to be drawn from lower memory
214 * address */
215 if( buf->start + output_len > buf->capacity )
216 {
217 overflow = ( buf->start + output_len ) % buf->capacity;
218 }
219
Andrzej Kurekf7774142020-01-22 06:34:59 -0500220 if( output != NULL )
221 {
222 memcpy( output, buf->buffer + buf->start, output_len - overflow );
223 memcpy( output + output_len - overflow, buf->buffer, overflow );
224 }
225
Janos Follath6264e662019-11-26 11:11:15 +0000226 buf->content_length -= output_len;
227 buf->start = ( buf->start + output_len ) % buf->capacity;
228
229 return output_len;
230}
231
Hanno Beckera18d1322018-01-03 14:27:32 +0000232/*
Andrzej Kurek13719cd2020-01-22 06:36:39 -0500233 * Errors used in the message transport mock tests
234 */
235 #define MBEDTLS_TEST_ERROR_ARG_NULL -11
Andrzej Kurek13719cd2020-01-22 06:36:39 -0500236 #define MBEDTLS_TEST_ERROR_MESSAGE_TRUNCATED -44
237
238/*
239 * Context for a message metadata queue (fifo) that is on top of the ring buffer.
240 */
241typedef struct mbedtls_test_message_queue
242{
243 size_t *messages;
244 int pos;
245 int num;
246 int capacity;
247} mbedtls_test_message_queue;
248
249/*
250 * Setup and free functions for the message metadata queue.
251 *
252 * \p capacity describes the number of message metadata chunks that can be held
253 * within the queue.
254 *
255 * \retval 0, if a metadata queue of a given length can be allocated.
256 * \retval MBEDTLS_ERR_SSL_ALLOC_FAILED, if allocation failed.
257 */
258int mbedtls_test_message_queue_setup( mbedtls_test_message_queue *queue,
259 size_t capacity )
260{
261 queue->messages = (size_t*) mbedtls_calloc( capacity, sizeof(size_t) );
262 if( NULL == queue->messages )
263 return MBEDTLS_ERR_SSL_ALLOC_FAILED;
264
265 queue->capacity = capacity;
266 queue->pos = 0;
267 queue->num = 0;
268
269 return 0;
270}
271
272void mbedtls_test_message_queue_free( mbedtls_test_message_queue *queue )
273{
274 if( queue == NULL )
275 return;
276
277 if( queue->messages != NULL )
278 mbedtls_free( queue->messages );
279
280 memset( queue, 0, sizeof( *queue ) );
281}
282
283/*
284 * Push message length information onto the message metadata queue.
285 * This will become the last element to leave it (fifo).
286 *
287 * \retval MBEDTLS_TEST_ERROR_ARG_NULL, if the queue is null.
Andrzej Kurekf46b9122020-02-07 08:19:00 -0500288 * \retval MBEDTLS_ERR_SSL_WANT_WRITE, if the queue is full.
Andrzej Kurek13719cd2020-01-22 06:36:39 -0500289 * \retval \p len, if the push was successful.
290 */
291int mbedtls_test_message_queue_push_info( mbedtls_test_message_queue *queue,
292 size_t len )
293{
294 int place;
295 if( queue == NULL )
296 return MBEDTLS_TEST_ERROR_ARG_NULL;
297
298 if( queue->num >= queue->capacity )
Andrzej Kurekf46b9122020-02-07 08:19:00 -0500299 return MBEDTLS_ERR_SSL_WANT_WRITE;
Andrzej Kurek13719cd2020-01-22 06:36:39 -0500300
301 place = ( queue->pos + queue->num ) % queue->capacity;
302 queue->messages[place] = len;
303 queue->num++;
304 return len;
305}
306
307/*
308 * Pop information about the next message length from the queue. This will be
309 * the oldest inserted message length(fifo). \p msg_len can be null, in which
310 * case the data will be popped from the queue but not copied anywhere.
311 *
312 * \retval MBEDTLS_TEST_ERROR_ARG_NULL, if the queue is null.
Andrzej Kurekf46b9122020-02-07 08:19:00 -0500313 * \retval MBEDTLS_ERR_SSL_WANT_READ, if the queue is empty.
Andrzej Kurek13719cd2020-01-22 06:36:39 -0500314 * \retval message length, if the pop was successful, up to the given
315 \p buf_len.
316 */
317int mbedtls_test_message_queue_pop_info( mbedtls_test_message_queue *queue,
318 size_t buf_len )
319{
320 size_t message_length;
321 if( queue == NULL )
322 return MBEDTLS_TEST_ERROR_ARG_NULL;
323 if( queue->num == 0 )
Andrzej Kurekf46b9122020-02-07 08:19:00 -0500324 return MBEDTLS_ERR_SSL_WANT_READ;
Andrzej Kurek13719cd2020-01-22 06:36:39 -0500325
326 message_length = queue->messages[queue->pos];
327 queue->messages[queue->pos] = 0;
328 queue->num--;
329 queue->pos++;
330 queue->pos %= queue->capacity;
331 if( queue->pos < 0 )
332 queue->pos += queue->capacity;
333
334 return ( message_length > buf_len ) ? buf_len : message_length;
335}
336
337/*
338 * Take a peek on the info about the next message length from the queue.
339 * This will be the oldest inserted message length(fifo).
340 *
341 * \retval MBEDTLS_TEST_ERROR_ARG_NULL, if the queue is null.
Andrzej Kurekf46b9122020-02-07 08:19:00 -0500342 * \retval MBEDTLS_ERR_SSL_WANT_READ, if the queue is empty.
Andrzej Kurek13719cd2020-01-22 06:36:39 -0500343 * \retval 0, if the peek was successful.
344 * \retval MBEDTLS_TEST_ERROR_MESSAGE_TRUNCATED, if the given buffer length is
345 * too small to fit the message. In this case the \p msg_len will be
346 * set to the full message length so that the
347 * caller knows what portion of the message can be dropped.
348 */
349int mbedtls_test_message_queue_peek_info( mbedtls_test_message_queue *queue,
350 size_t buf_len, size_t* msg_len )
351{
352 if( queue == NULL || msg_len == NULL )
353 return MBEDTLS_TEST_ERROR_ARG_NULL;
354 if( queue->num == 0 )
Andrzej Kurekf46b9122020-02-07 08:19:00 -0500355 return MBEDTLS_ERR_SSL_WANT_READ;
Andrzej Kurek13719cd2020-01-22 06:36:39 -0500356
357 *msg_len = queue->messages[queue->pos];
358 return ( *msg_len > buf_len ) ? MBEDTLS_TEST_ERROR_MESSAGE_TRUNCATED : 0;
359}
360/*
Janos Follath031827f2019-11-27 11:12:14 +0000361 * Context for the I/O callbacks simulating network connection.
362 */
363
364#define MBEDTLS_MOCK_SOCKET_CONNECTED 1
365
366typedef struct mbedtls_mock_socket
367{
368 int status;
369 mbedtls_test_buffer *input;
370 mbedtls_test_buffer *output;
371 struct mbedtls_mock_socket *peer;
372} mbedtls_mock_socket;
373
374/*
375 * Setup and teardown functions for mock sockets.
376 */
377void mbedtls_mock_socket_init( mbedtls_mock_socket *socket )
378{
379 memset( socket, 0, sizeof( *socket ) );
380}
381
382/*
383 * Closes the socket \p socket.
384 *
385 * \p socket must have been previously initialized by calling
386 * mbedtls_mock_socket_init().
387 *
388 * This function frees all allocated resources and both sockets are aware of the
389 * new connection state.
390 *
391 * That is, this function does not simulate half-open TCP connections and the
392 * phenomenon that when closing a UDP connection the peer is not aware of the
393 * connection having been closed.
394 */
395void mbedtls_mock_socket_close( mbedtls_mock_socket* socket )
396{
397 if( socket == NULL )
398 return;
399
400 if( socket->input != NULL )
401 {
402 mbedtls_test_buffer_free( socket->input );
403 mbedtls_free( socket->input );
404 }
405
406 if( socket->output != NULL )
407 {
408 mbedtls_test_buffer_free( socket->output );
409 mbedtls_free( socket->output );
410 }
411
412 if( socket->peer != NULL )
413 memset( socket->peer, 0, sizeof( *socket->peer ) );
414
415 memset( socket, 0, sizeof( *socket ) );
416}
417
418/*
419 * Establishes a connection between \p peer1 and \p peer2.
420 *
421 * \p peer1 and \p peer2 must have been previously initialized by calling
422 * mbedtls_mock_socket_init().
423 *
424 * The capacites of the internal buffers are set to \p bufsize. Setting this to
425 * the correct value allows for simulation of MTU, sanity testing the mock
426 * implementation and mocking TCP connections with lower memory cost.
427 */
428int mbedtls_mock_socket_connect( mbedtls_mock_socket* peer1,
429 mbedtls_mock_socket* peer2,
430 size_t bufsize )
431{
432 int ret = -1;
433
Piotr Nowickid796e192020-01-28 12:09:47 +0100434 peer1->output =
Janos Follath031827f2019-11-27 11:12:14 +0000435 (mbedtls_test_buffer*) mbedtls_calloc( 1, sizeof(mbedtls_test_buffer) );
436 if( peer1->output == NULL )
437 {
438 ret = MBEDTLS_ERR_SSL_ALLOC_FAILED;
439 goto exit;
440 }
441 mbedtls_test_buffer_init( peer1->output );
442 if( 0 != ( ret = mbedtls_test_buffer_setup( peer1->output, bufsize ) ) )
443 {
444 goto exit;
445 }
446
Piotr Nowickid796e192020-01-28 12:09:47 +0100447 peer2->output =
448 (mbedtls_test_buffer*) mbedtls_calloc( 1, sizeof(mbedtls_test_buffer) );
449 if( peer2->output == NULL )
450 {
451 ret = MBEDTLS_ERR_SSL_ALLOC_FAILED;
452 goto exit;
453 }
454 mbedtls_test_buffer_init( peer2->output );
455 if( 0 != ( ret = mbedtls_test_buffer_setup( peer2->output, bufsize ) ) )
456 {
457 goto exit;
458 }
459
Janos Follath031827f2019-11-27 11:12:14 +0000460 peer1->peer = peer2;
461 peer2->peer = peer1;
Piotr Nowickid796e192020-01-28 12:09:47 +0100462 peer1->input = peer2->output;
463 peer2->input = peer1->output;
Janos Follath031827f2019-11-27 11:12:14 +0000464
465 peer1->status = peer2->status = MBEDTLS_MOCK_SOCKET_CONNECTED;
466 ret = 0;
467
468exit:
469
470 if( ret != 0 )
471 {
472 mbedtls_mock_socket_close( peer1 );
473 mbedtls_mock_socket_close( peer2 );
474 }
475
476 return ret;
477}
478
479/*
480 * Callbacks for simulating blocking I/O over connection-oriented transport.
481 */
482
483int mbedtls_mock_tcp_send_b( void *ctx, const unsigned char *buf, size_t len )
484{
485 mbedtls_mock_socket *socket = (mbedtls_mock_socket*) ctx;
486
487 if( socket == NULL || socket->status != MBEDTLS_MOCK_SOCKET_CONNECTED )
488 return -1;
489
490 return mbedtls_test_buffer_put( socket->output, buf, len );
491}
492
493int mbedtls_mock_tcp_recv_b( void *ctx, unsigned char *buf, size_t len )
494{
495 mbedtls_mock_socket *socket = (mbedtls_mock_socket*) ctx;
496
497 if( socket == NULL || socket->status != MBEDTLS_MOCK_SOCKET_CONNECTED )
498 return -1;
499
500 return mbedtls_test_buffer_get( socket->input, buf, len );
501}
502
503/*
Janos Follath3766ba52019-11-27 13:31:42 +0000504 * Callbacks for simulating non-blocking I/O over connection-oriented transport.
505 */
506
507int mbedtls_mock_tcp_send_nb( void *ctx, const unsigned char *buf, size_t len )
508{
509 mbedtls_mock_socket *socket = (mbedtls_mock_socket*) ctx;
510
511 if( socket == NULL || socket->status != MBEDTLS_MOCK_SOCKET_CONNECTED )
512 return -1;
513
Piotr Nowicki890b5ca2020-01-15 16:19:07 +0100514 if( socket->output->capacity == socket->output->content_length )
Janos Follath3766ba52019-11-27 13:31:42 +0000515 {
Janos Follath3766ba52019-11-27 13:31:42 +0000516 return MBEDTLS_ERR_SSL_WANT_WRITE;
517 }
518
Janos Follath3766ba52019-11-27 13:31:42 +0000519 return mbedtls_test_buffer_put( socket->output, buf, len );
520}
521
522int mbedtls_mock_tcp_recv_nb( void *ctx, unsigned char *buf, size_t len )
523{
524 mbedtls_mock_socket *socket = (mbedtls_mock_socket*) ctx;
525
526 if( socket == NULL || socket->status != MBEDTLS_MOCK_SOCKET_CONNECTED )
527 return -1;
528
Andrzej Kurekf40daa32020-02-04 09:00:01 -0500529 if( socket->input->content_length == 0 )
Janos Follath3766ba52019-11-27 13:31:42 +0000530 {
Janos Follath3766ba52019-11-27 13:31:42 +0000531 return MBEDTLS_ERR_SSL_WANT_READ;
532 }
533
Janos Follath3766ba52019-11-27 13:31:42 +0000534 return mbedtls_test_buffer_get( socket->input, buf, len );
535}
536
Andrzej Kurekbc483de2020-01-22 03:40:00 -0500537/* Errors used in the message socket mocks */
538
539#define MBEDTLS_TEST_ERROR_CONTEXT_ERROR -55
540#define MBEDTLS_TEST_ERROR_SEND_FAILED -66
541#define MBEDTLS_TEST_ERROR_RECV_FAILED -77
542
543/*
544 * Structure used as an addon, or a wrapper, around the mocked sockets.
545 * Contains an input queue, to which the other socket pushes metadata,
546 * and an output queue, to which this one pushes metadata. This context is
547 * considered as an owner of the input queue only, which is initialized and
548 * freed in the respective setup and free calls.
549 */
550typedef struct mbedtls_test_message_socket_context
551{
552 mbedtls_test_message_queue* queue_input;
553 mbedtls_test_message_queue* queue_output;
554 mbedtls_mock_socket* socket;
555} mbedtls_test_message_socket_context;
556
557/*
558 * Setup a given mesasge socket context including initialization of
559 * input/output queues to a chosen capacity of messages. Also set the
560 * corresponding mock socket.
561 *
562 * \retval 0, if everything succeeds.
563 * \retval MBEDTLS_ERR_SSL_ALLOC_FAILED, if allocation of a message
564 * queue failed.
565 */
566int mbedtls_message_socket_setup( mbedtls_test_message_queue* queue_input,
567 mbedtls_test_message_queue* queue_output,
568 size_t queue_capacity,
569 mbedtls_mock_socket* socket,
570 mbedtls_test_message_socket_context* ctx )
571{
572 int ret = mbedtls_test_message_queue_setup( queue_input, queue_capacity );
573 if( ret != 0 )
574 return ret;
575 ctx->queue_input = queue_input;
576 ctx->queue_output = queue_output;
577 ctx->socket = socket;
578 mbedtls_mock_socket_init( socket );
579
580 return 0;
581}
582
583/*
584 * Close a given message socket context, along with the socket itself. Free the
585 * memory allocated by the input queue.
586 */
587void mbedtls_message_socket_close( mbedtls_test_message_socket_context* ctx )
588{
589 if( ctx == NULL )
590 return;
591
592 mbedtls_test_message_queue_free( ctx->queue_input );
593 mbedtls_mock_socket_close( ctx->socket );
594 memset( ctx, 0, sizeof( *ctx ) );
595}
596
597/*
598 * Send one message through a given message socket context.
599 *
600 * \retval \p len, if everything succeeds.
601 * \retval MBEDTLS_TEST_ERROR_CONTEXT_ERROR, if any of the needed context
602 * elements or the context itself is null.
603 * \retval MBEDTLS_TEST_ERROR_SEND_FAILED if mbedtls_mock_tcp_send_b failed.
Andrzej Kurekf46b9122020-02-07 08:19:00 -0500604 * \retval MBEDTLS_ERR_SSL_WANT_WRITE, if the output queue is full.
Andrzej Kurekbc483de2020-01-22 03:40:00 -0500605 *
606 * This function will also return any error from
607 * mbedtls_test_message_queue_push_info.
608 */
609int mbedtls_mock_tcp_send_msg( void *ctx, const unsigned char *buf, size_t len )
610{
611 mbedtls_test_message_queue* queue;
612 mbedtls_mock_socket* socket;
613 mbedtls_test_message_socket_context *context = (mbedtls_test_message_socket_context*) ctx;
614
615 if( context == NULL || context->socket == NULL
616 || context->queue_output == NULL )
617 {
618 return MBEDTLS_TEST_ERROR_CONTEXT_ERROR;
619 }
620
621 queue = context->queue_output;
622 socket = context->socket;
623
624 if( queue->num >= queue->capacity )
Andrzej Kurekf46b9122020-02-07 08:19:00 -0500625 return MBEDTLS_ERR_SSL_WANT_WRITE;
Andrzej Kurekbc483de2020-01-22 03:40:00 -0500626
627 if( mbedtls_mock_tcp_send_b( socket, buf, len ) != (int) len )
628 return MBEDTLS_TEST_ERROR_SEND_FAILED;
629
630 return mbedtls_test_message_queue_push_info( queue, len );
631}
632
633/*
634 * Receive one message from a given message socket context and return message
635 * length or an error.
636 *
637 * \retval message length, if everything succeeds.
638 * \retval MBEDTLS_TEST_ERROR_CONTEXT_ERROR, if any of the needed context
639 * elements or the context itself is null.
640 * \retval MBEDTLS_TEST_ERROR_RECV_FAILED if mbedtls_mock_tcp_recv_b failed.
641 *
642 * This function will also return any error other than
643 * MBEDTLS_TEST_ERROR_MESSAGE_TRUNCATED from mbedtls_test_message_queue_peek_info.
644 */
645int mbedtls_mock_tcp_recv_msg( void *ctx, unsigned char *buf, size_t buf_len )
646{
647 mbedtls_test_message_queue* queue;
648 mbedtls_mock_socket* socket;
649 mbedtls_test_message_socket_context *context = (mbedtls_test_message_socket_context*) ctx;
650 size_t drop_len;
651 size_t msg_len;
652 int ret;
653
654 if( context == NULL || context->socket == NULL
655 || context->queue_input == NULL )
656 {
657 return MBEDTLS_TEST_ERROR_CONTEXT_ERROR;
658 }
659
660 queue = context->queue_input;
661 socket = context->socket;
662
663 /* Peek first, so that in case of a socket error the data remains in
664 * the queue. */
665 ret = mbedtls_test_message_queue_peek_info( queue, buf_len, &msg_len );
666 if( ret == MBEDTLS_TEST_ERROR_MESSAGE_TRUNCATED )
667 {
668 /* Calculate how much to drop */
669 drop_len = msg_len - buf_len;
670
671 /* Set the requested message len to be buffer length */
672 msg_len = buf_len;
673 } else if( ret != 0 )
674 {
675 return ret;
676 }
677
678 if( mbedtls_mock_tcp_recv_b( socket, buf, msg_len ) != (int) msg_len )
679 return MBEDTLS_TEST_ERROR_RECV_FAILED;
680
681 if( ret == MBEDTLS_TEST_ERROR_MESSAGE_TRUNCATED )
682 {
683 /* Drop the remaining part of the message */
684 if( mbedtls_mock_tcp_recv_b( socket, NULL, drop_len ) != (int) drop_len )
685 {
686 /* Inconsistent state - part of the message was read,
687 * and a part couldn't. Not much we can do here, but it should not
688 * happen in test environment, unless forced manually. */
689 }
690 }
691 mbedtls_test_message_queue_pop_info( queue, buf_len );
692
693 return msg_len;
694}
695
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100696#if defined(MBEDTLS_X509_CRT_PARSE_C)
697
698/*
699 * Structure with endpoint's certificates for SSL communication tests.
700 */
701typedef struct mbedtls_endpoint_certificate
702{
703 mbedtls_x509_crt ca_cert;
704 mbedtls_x509_crt cert;
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100705 mbedtls_pk_context pkey;
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100706} mbedtls_endpoint_certificate;
707
708/*
709 * Endpoint structure for SSL communication tests.
710 */
711typedef struct mbedtls_endpoint
712{
713 const char *name;
714 mbedtls_ssl_context ssl;
715 mbedtls_ssl_config conf;
716 mbedtls_ctr_drbg_context ctr_drbg;
717 mbedtls_entropy_context entropy;
718 mbedtls_mock_socket socket;
719 mbedtls_endpoint_certificate cert;
720} mbedtls_endpoint;
721
722/*
723 * Initializes \p ep_cert structure and assigns it to endpoint
724 * represented by \p ep.
725 *
726 * \retval 0 on success, otherwise error code.
727 */
Andrzej Kurekb2980742020-02-02 19:25:26 -0500728int mbedtls_endpoint_certificate_init( mbedtls_endpoint *ep, int pk_alg )
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100729{
730 int i = 0;
731 int ret = -1;
732 mbedtls_endpoint_certificate *cert;
733
734 if( ep == NULL )
735 {
736 return MBEDTLS_ERR_SSL_BAD_INPUT_DATA;
737 }
738
739 cert = &( ep->cert );
740 mbedtls_x509_crt_init( &( cert->ca_cert ) );
741 mbedtls_x509_crt_init( &( cert->cert ) );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100742 mbedtls_pk_init( &( cert->pkey ) );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100743
744 /* Load the trusted CA */
745
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100746 for( i = 0; mbedtls_test_cas_der[i] != NULL; i++ )
747 {
748 ret = mbedtls_x509_crt_parse_der( &( cert->ca_cert ),
749 (const unsigned char *) mbedtls_test_cas_der[i],
750 mbedtls_test_cas_der_len[i] );
751 TEST_ASSERT( ret == 0 );
752 }
753
754 /* Load own certificate and private key */
755
756 if( ep->conf.endpoint == MBEDTLS_SSL_IS_SERVER )
757 {
Andrzej Kurekb2980742020-02-02 19:25:26 -0500758 if( pk_alg == MBEDTLS_PK_RSA )
759 {
760 ret = mbedtls_x509_crt_parse( &( cert->cert ),
761 (const unsigned char*) mbedtls_test_srv_crt_rsa_sha256_der,
762 mbedtls_test_srv_crt_rsa_sha256_der_len );
763 TEST_ASSERT( ret == 0 );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100764
Andrzej Kurekb2980742020-02-02 19:25:26 -0500765 ret = mbedtls_pk_parse_key( &( cert->pkey ),
766 (const unsigned char*) mbedtls_test_srv_key_rsa_der,
767 mbedtls_test_srv_key_rsa_der_len, NULL, 0 );
768 TEST_ASSERT( ret == 0 );
769 }
770 else
771 {
772 ret = mbedtls_x509_crt_parse( &( cert->cert ),
773 (const unsigned char*) mbedtls_test_srv_crt_ec_der,
774 mbedtls_test_srv_crt_ec_der_len );
775 TEST_ASSERT( ret == 0 );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100776
Andrzej Kurekb2980742020-02-02 19:25:26 -0500777 ret = mbedtls_pk_parse_key( &( cert->pkey ),
778 (const unsigned char*) mbedtls_test_srv_key_ec_der,
779 mbedtls_test_srv_key_ec_der_len, NULL, 0 );
780 TEST_ASSERT( ret == 0 );
781 }
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100782 }
783 else
784 {
Andrzej Kurekb2980742020-02-02 19:25:26 -0500785 if( pk_alg == MBEDTLS_PK_RSA )
786 {
787 ret = mbedtls_x509_crt_parse( &( cert->cert ),
788 (const unsigned char *) mbedtls_test_cli_crt_rsa_der,
789 mbedtls_test_cli_crt_rsa_der_len );
790 TEST_ASSERT( ret == 0 );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100791
Andrzej Kurekb2980742020-02-02 19:25:26 -0500792 ret = mbedtls_pk_parse_key( &( cert->pkey ),
793 (const unsigned char *) mbedtls_test_cli_key_rsa_der,
794 mbedtls_test_cli_key_rsa_der_len, NULL, 0 );
795 TEST_ASSERT( ret == 0 );
796 }
797 else
798 {
799 ret = mbedtls_x509_crt_parse( &( cert->cert ),
800 (const unsigned char *) mbedtls_test_cli_crt_ec_der,
801 mbedtls_test_cli_crt_ec_len );
802 TEST_ASSERT( ret == 0 );
803
804 ret = mbedtls_pk_parse_key( &( cert->pkey ),
805 (const unsigned char *) mbedtls_test_cli_key_ec_der,
806 mbedtls_test_cli_key_ec_der_len, NULL, 0 );
807 TEST_ASSERT( ret == 0 );
808 }
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100809 }
810
811 mbedtls_ssl_conf_ca_chain( &( ep->conf ), &( cert->ca_cert ), NULL );
812
Andrzej Kurekb2980742020-02-02 19:25:26 -0500813 ret = mbedtls_ssl_conf_own_cert( &( ep->conf ), &( cert->cert ),
814 &( cert->pkey ) );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100815 TEST_ASSERT( ret == 0 );
816
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100817exit:
818 if( ret != 0 )
819 {
820 mbedtls_x509_crt_free( &( cert->ca_cert ) );
821 mbedtls_x509_crt_free( &( cert->cert ) );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100822 mbedtls_pk_free( &( cert->pkey ) );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100823 }
824
825 return ret;
826}
827
828/*
829 * Initializes \p ep structure. It is important to call `mbedtls_endpoint_free()`
830 * after calling this function even if it fails.
831 *
832 * \p endpoint_type must be set as MBEDTLS_SSL_IS_SERVER or
833 * MBEDTLS_SSL_IS_CLIENT.
Andrzej Kurek15daf502020-02-12 09:17:52 -0500834 * \p pk_alg the algorithm to use, currently only MBEDTLS_PK_RSA and
835 * MBEDTLS_PK_ECDSA are supported.
836 * \p dtls_context - in case of DTLS - this is the context handling metadata.
837 * \p input_queue - used only in case of DTLS.
838 * \p output_queue - used only in case of DTLS.
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100839 *
840 * \retval 0 on success, otherwise error code.
841 */
Andrzej Kurek15daf502020-02-12 09:17:52 -0500842int mbedtls_endpoint_init( mbedtls_endpoint *ep, int endpoint_type, int pk_alg,
843 mbedtls_test_message_socket_context *dtls_context,
844 mbedtls_test_message_queue *input_queue,
845 mbedtls_test_message_queue *output_queue )
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100846{
847 int ret = -1;
848
Andrzej Kurek15daf502020-02-12 09:17:52 -0500849 if( dtls_context != NULL && ( input_queue == NULL || output_queue == NULL ) )
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100850 return MBEDTLS_ERR_SSL_BAD_INPUT_DATA;
Andrzej Kurek15daf502020-02-12 09:17:52 -0500851
852 if( ep == NULL )
853 return MBEDTLS_ERR_SSL_BAD_INPUT_DATA;
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100854
855 memset( ep, 0, sizeof( *ep ) );
856
857 ep->name = ( endpoint_type == MBEDTLS_SSL_IS_SERVER ) ? "Server" : "Client";
858
859 mbedtls_ssl_init( &( ep->ssl ) );
860 mbedtls_ssl_config_init( &( ep->conf ) );
861 mbedtls_ctr_drbg_init( &( ep->ctr_drbg ) );
862 mbedtls_ssl_conf_rng( &( ep->conf ),
863 mbedtls_ctr_drbg_random,
864 &( ep->ctr_drbg ) );
865 mbedtls_entropy_init( &( ep->entropy ) );
Andrzej Kurek15daf502020-02-12 09:17:52 -0500866 if( dtls_context != NULL )
867 {
868 TEST_ASSERT( mbedtls_message_socket_setup( input_queue, output_queue,
869 100, &( ep->socket ),
870 dtls_context ) == 0 );
871 }
872 else
873 {
874 mbedtls_mock_socket_init( &( ep->socket ) );
875 }
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100876
877 ret = mbedtls_ctr_drbg_seed( &( ep->ctr_drbg ), mbedtls_entropy_func,
878 &( ep->entropy ), (const unsigned char *) ( ep->name ),
879 strlen( ep->name ) );
880 TEST_ASSERT( ret == 0 );
881
882 /* Non-blocking callbacks without timeout */
Andrzej Kurek15daf502020-02-12 09:17:52 -0500883 if( dtls_context != NULL )
884 {
885 mbedtls_ssl_set_bio( &( ep->ssl ), dtls_context,
886 mbedtls_mock_tcp_send_msg,
887 mbedtls_mock_tcp_recv_msg,
888 NULL );
889 }
890 else
891 {
892 mbedtls_ssl_set_bio( &( ep->ssl ), &( ep->socket ),
893 mbedtls_mock_tcp_send_nb,
894 mbedtls_mock_tcp_recv_nb,
895 NULL );
896 }
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100897
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100898 ret = mbedtls_ssl_config_defaults( &( ep->conf ), endpoint_type,
Andrzej Kurek15daf502020-02-12 09:17:52 -0500899 ( dtls_context != NULL ) ?
900 MBEDTLS_SSL_TRANSPORT_DATAGRAM :
901 MBEDTLS_SSL_TRANSPORT_STREAM,
902 MBEDTLS_SSL_PRESET_DEFAULT );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100903 TEST_ASSERT( ret == 0 );
904
Andrzej Kurek1a44a152020-02-07 08:21:32 -0500905 ret = mbedtls_ssl_setup( &( ep->ssl ), &( ep->conf ) );
906 TEST_ASSERT( ret == 0 );
Andrzej Kurek15daf502020-02-12 09:17:52 -0500907
908#if defined(MBEDTLS_SSL_PROTO_DTLS) && defined(MBEDTLS_SSL_SRV_C)
909 if( endpoint_type == MBEDTLS_SSL_IS_SERVER && dtls_context != NULL )
910 mbedtls_ssl_conf_dtls_cookies( &( ep->conf ), NULL, NULL, NULL );
911#endif
912
Andrzej Kurekb2980742020-02-02 19:25:26 -0500913 ret = mbedtls_endpoint_certificate_init( ep, pk_alg );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100914 TEST_ASSERT( ret == 0 );
915
916exit:
917 return ret;
918}
919
920/*
921 * Deinitializes certificates from endpoint represented by \p ep.
922 */
923void mbedtls_endpoint_certificate_free( mbedtls_endpoint *ep )
924{
925 mbedtls_endpoint_certificate *cert = &( ep->cert );
926 mbedtls_x509_crt_free( &( cert->ca_cert ) );
927 mbedtls_x509_crt_free( &( cert->cert ) );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100928 mbedtls_pk_free( &( cert->pkey ) );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100929}
930
931/*
932 * Deinitializes endpoint represented by \p ep.
933 */
Andrzej Kurek15daf502020-02-12 09:17:52 -0500934void mbedtls_endpoint_free( mbedtls_endpoint *ep,
935 mbedtls_test_message_socket_context *context )
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100936{
937 mbedtls_endpoint_certificate_free( ep );
938
939 mbedtls_ssl_free( &( ep->ssl ) );
940 mbedtls_ssl_config_free( &( ep->conf ) );
941 mbedtls_ctr_drbg_free( &( ep->ctr_drbg ) );
942 mbedtls_entropy_free( &( ep->entropy ) );
Andrzej Kurek15daf502020-02-12 09:17:52 -0500943
944 if( context != NULL )
945 {
946 mbedtls_message_socket_close( context );
947 }
948 else
949 {
950 mbedtls_mock_socket_close( &( ep->socket ) );
951 }
Piotr Nowicki2a1f1782020-01-13 09:42:10 +0100952}
953
954/*
955 * This function moves ssl handshake from \p ssl to prescribed \p state.
956 * /p second_ssl is used as second endpoint and their sockets have to be
957 * connected before calling this function.
958 *
959 * \retval 0 on success, otherwise error code.
960 */
961int mbedtls_move_handshake_to_state( mbedtls_ssl_context *ssl,
962 mbedtls_ssl_context *second_ssl,
963 int state )
964{
965 enum { BUFFSIZE = 1024 };
966 int max_steps = 1000;
967 int ret = 0;
968
969 if( ssl == NULL || second_ssl == NULL )
970 {
971 return MBEDTLS_ERR_SSL_BAD_INPUT_DATA;
972 }
973
974 /* Perform communication via connected sockets */
975 while( ( ssl->state != state ) && ( --max_steps >= 0 ) )
976 {
977 /* If /p second_ssl ends the handshake procedure before /p ssl then
978 * there is no need to call the next step */
979 if( second_ssl->state != MBEDTLS_SSL_HANDSHAKE_OVER )
980 {
981 ret = mbedtls_ssl_handshake_step( second_ssl );
982 if( ret != 0 && ret != MBEDTLS_ERR_SSL_WANT_READ &&
983 ret != MBEDTLS_ERR_SSL_WANT_WRITE )
984 {
985 return ret;
986 }
987 }
988
989 /* We only care about the \p ssl state and returns, so we call it last,
990 * to leave the iteration as soon as the state is as expected. */
991 ret = mbedtls_ssl_handshake_step( ssl );
992 if( ret != 0 && ret != MBEDTLS_ERR_SSL_WANT_READ &&
993 ret != MBEDTLS_ERR_SSL_WANT_WRITE )
994 {
995 return ret;
996 }
997 }
998
999 return ( max_steps >= 0 ) ? ret : -1;
1000}
1001
1002#endif /* MBEDTLS_X509_CRT_PARSE_C */
1003
Janos Follath3766ba52019-11-27 13:31:42 +00001004/*
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001005 * Write application data. Increase write counter and fragments counter if
1006 * necessary.
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001007 */
1008int mbedtls_ssl_write_fragment( mbedtls_ssl_context *ssl, unsigned char *buf,
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001009 int buf_len, int *written,
1010 int *fragments, const int expected_fragments )
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001011{
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001012 int ret = mbedtls_ssl_write( ssl, buf + *written, buf_len - *written );
1013 if( ret > 0 )
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001014 {
1015 (*fragments)++;
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001016 *written += ret;
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001017 }
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001018
1019 if( expected_fragments == 0 )
1020 {
1021 /* Used for DTLS and the message size larger than MFL. In that case
1022 * the message can not be fragmented and the library should return
1023 * MBEDTLS_ERR_SSL_BAD_INPUT_DATA error. This error must be returned
1024 * to prevent a dead loop inside mbedtls_exchange_data(). */
1025 return ret;
1026 }
1027 else if( expected_fragments == 1 )
1028 {
1029 /* Used for TLS/DTLS and the message size lower than MFL */
1030 TEST_ASSERT( ret == buf_len ||
1031 ret == MBEDTLS_ERR_SSL_WANT_READ ||
1032 ret == MBEDTLS_ERR_SSL_WANT_WRITE );
1033 }
1034 else
1035 {
1036 /* Used for TLS and the message size larger than MFL */
1037 TEST_ASSERT( expected_fragments > 1 );
1038 TEST_ASSERT( ( ret >= 0 && ret <= buf_len ) ||
1039 ret == MBEDTLS_ERR_SSL_WANT_READ ||
1040 ret == MBEDTLS_ERR_SSL_WANT_WRITE );
1041 }
1042
1043 return 0;
1044
1045exit:
1046 /* Some of the tests failed */
1047 return -1;
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001048}
1049
1050/*
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001051 * Read application data and increase read counter if necessary.
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001052 */
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001053int mbedtls_ssl_read_fragment( mbedtls_ssl_context *ssl, unsigned char *buf,
1054 int buf_len, int *read,
1055 const int expected_fragments )
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001056{
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001057 int ret = mbedtls_ssl_read( ssl, buf + *read, buf_len - *read );
1058 if( ret > 0 )
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001059 {
1060 *read += ret;
1061 }
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001062
1063 if( expected_fragments == 0 )
1064 {
1065 TEST_ASSERT( ret == 0 );
1066 }
1067 else if( expected_fragments == 1 )
1068 {
1069 TEST_ASSERT( ret == buf_len ||
1070 ret == MBEDTLS_ERR_SSL_WANT_READ ||
1071 ret == MBEDTLS_ERR_SSL_WANT_WRITE );
1072 }
1073 else
1074 {
1075 TEST_ASSERT( expected_fragments > 1 );
1076 TEST_ASSERT( ( ret >= 0 && ret <= buf_len ) ||
1077 ret == MBEDTLS_ERR_SSL_WANT_READ ||
1078 ret == MBEDTLS_ERR_SSL_WANT_WRITE );
1079 }
1080
1081 return 0;
1082
1083exit:
1084 /* Some of the tests failed */
1085 return -1;
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01001086}
1087
1088/*
Hanno Beckera18d1322018-01-03 14:27:32 +00001089 * Helper function setting up inverse record transformations
1090 * using given cipher, hash, EtM mode, authentication tag length,
1091 * and version.
1092 */
1093
1094#define CHK( x ) \
1095 do \
1096 { \
1097 if( !( x ) ) \
Hanno Becker81e16a32019-03-01 11:21:44 +00001098 { \
Hanno Beckera5780f12019-04-05 09:55:37 +01001099 ret = -1; \
Hanno Becker81e16a32019-03-01 11:21:44 +00001100 goto cleanup; \
1101 } \
Hanno Beckera18d1322018-01-03 14:27:32 +00001102 } while( 0 )
1103
Andrzej Kurekf40daa32020-02-04 09:00:01 -05001104void set_ciphersuite( mbedtls_ssl_config *conf, const char *cipher,
1105 int* forced_ciphersuite )
1106{
1107 const mbedtls_ssl_ciphersuite_t *ciphersuite_info;
1108 forced_ciphersuite[0] = mbedtls_ssl_get_ciphersuite_id( cipher );
1109 forced_ciphersuite[1] = 0;
1110
1111 ciphersuite_info =
1112 mbedtls_ssl_ciphersuite_from_id( forced_ciphersuite[0] );
1113
1114 TEST_ASSERT( ciphersuite_info != NULL );
1115 TEST_ASSERT( ciphersuite_info->min_minor_ver <= conf->max_minor_ver );
1116 TEST_ASSERT( ciphersuite_info->max_minor_ver >= conf->min_minor_ver );
1117
1118 if( conf->max_minor_ver > ciphersuite_info->max_minor_ver )
1119 {
1120 conf->max_minor_ver = ciphersuite_info->max_minor_ver;
1121 }
1122 if( conf->min_minor_ver < ciphersuite_info->min_minor_ver )
1123 {
1124 conf->min_minor_ver = ciphersuite_info->min_minor_ver;
1125 }
1126
1127 mbedtls_ssl_conf_ciphersuites( conf, forced_ciphersuite );
1128
1129exit:
1130 return;
1131}
1132
Andrzej Kurekcc5169c2020-02-04 09:04:56 -05001133int psk_dummy_callback( void *p_info, mbedtls_ssl_context *ssl,
1134 const unsigned char *name, size_t name_len )
1135{
1136 (void) p_info;
1137 (void) ssl;
1138 (void) name;
1139 (void) name_len;
1140
1141 return ( 0 );
1142}
1143
Hanno Beckerd856c822019-04-29 17:30:59 +01001144#if MBEDTLS_SSL_CID_OUT_LEN_MAX > MBEDTLS_SSL_CID_IN_LEN_MAX
1145#define SSL_CID_LEN_MIN MBEDTLS_SSL_CID_IN_LEN_MAX
1146#else
1147#define SSL_CID_LEN_MIN MBEDTLS_SSL_CID_OUT_LEN_MAX
1148#endif
Hanno Beckera18d1322018-01-03 14:27:32 +00001149
1150static int build_transforms( mbedtls_ssl_transform *t_in,
1151 mbedtls_ssl_transform *t_out,
1152 int cipher_type, int hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01001153 int etm, int tag_mode, int ver,
1154 size_t cid0_len,
1155 size_t cid1_len )
Hanno Beckera18d1322018-01-03 14:27:32 +00001156{
1157 mbedtls_cipher_info_t const *cipher_info;
Hanno Beckera5780f12019-04-05 09:55:37 +01001158 int ret = 0;
Hanno Beckera18d1322018-01-03 14:27:32 +00001159
1160 size_t keylen, maclen, ivlen;
Hanno Becker81e16a32019-03-01 11:21:44 +00001161 unsigned char *key0 = NULL, *key1 = NULL;
Hanno Beckera18d1322018-01-03 14:27:32 +00001162 unsigned char iv_enc[16], iv_dec[16];
1163
Hanno Beckera0e20d02019-05-15 14:03:01 +01001164#if defined(MBEDTLS_SSL_DTLS_CONNECTION_ID)
Hanno Beckerd856c822019-04-29 17:30:59 +01001165 unsigned char cid0[ SSL_CID_LEN_MIN ];
1166 unsigned char cid1[ SSL_CID_LEN_MIN ];
1167
1168 rnd_std_rand( NULL, cid0, sizeof( cid0 ) );
1169 rnd_std_rand( NULL, cid1, sizeof( cid1 ) );
Hanno Becker43c24b82019-05-01 09:45:57 +01001170#else
1171 ((void) cid0_len);
1172 ((void) cid1_len);
Hanno Beckera0e20d02019-05-15 14:03:01 +01001173#endif /* MBEDTLS_SSL_DTLS_CONNECTION_ID */
Hanno Beckerd856c822019-04-29 17:30:59 +01001174
Hanno Beckera18d1322018-01-03 14:27:32 +00001175 maclen = 0;
1176
1177 /* Pick cipher */
1178 cipher_info = mbedtls_cipher_info_from_type( cipher_type );
1179 CHK( cipher_info != NULL );
1180 CHK( cipher_info->iv_size <= 16 );
1181 CHK( cipher_info->key_bitlen % 8 == 0 );
1182
1183 /* Pick keys */
1184 keylen = cipher_info->key_bitlen / 8;
Hanno Becker78d1f702019-04-05 09:56:10 +01001185 /* Allocate `keylen + 1` bytes to ensure that we get
1186 * a non-NULL pointers from `mbedtls_calloc` even if
1187 * `keylen == 0` in the case of the NULL cipher. */
1188 CHK( ( key0 = mbedtls_calloc( 1, keylen + 1 ) ) != NULL );
1189 CHK( ( key1 = mbedtls_calloc( 1, keylen + 1 ) ) != NULL );
Hanno Beckera18d1322018-01-03 14:27:32 +00001190 memset( key0, 0x1, keylen );
1191 memset( key1, 0x2, keylen );
1192
1193 /* Setup cipher contexts */
1194 CHK( mbedtls_cipher_setup( &t_in->cipher_ctx_enc, cipher_info ) == 0 );
1195 CHK( mbedtls_cipher_setup( &t_in->cipher_ctx_dec, cipher_info ) == 0 );
1196 CHK( mbedtls_cipher_setup( &t_out->cipher_ctx_enc, cipher_info ) == 0 );
1197 CHK( mbedtls_cipher_setup( &t_out->cipher_ctx_dec, cipher_info ) == 0 );
1198
1199#if defined(MBEDTLS_CIPHER_MODE_CBC)
1200 if( cipher_info->mode == MBEDTLS_MODE_CBC )
1201 {
1202 CHK( mbedtls_cipher_set_padding_mode( &t_in->cipher_ctx_enc,
1203 MBEDTLS_PADDING_NONE ) == 0 );
1204 CHK( mbedtls_cipher_set_padding_mode( &t_in->cipher_ctx_dec,
1205 MBEDTLS_PADDING_NONE ) == 0 );
1206 CHK( mbedtls_cipher_set_padding_mode( &t_out->cipher_ctx_enc,
1207 MBEDTLS_PADDING_NONE ) == 0 );
1208 CHK( mbedtls_cipher_set_padding_mode( &t_out->cipher_ctx_dec,
1209 MBEDTLS_PADDING_NONE ) == 0 );
1210 }
1211#endif /* MBEDTLS_CIPHER_MODE_CBC */
1212
1213 CHK( mbedtls_cipher_setkey( &t_in->cipher_ctx_enc, key0,
1214 keylen << 3, MBEDTLS_ENCRYPT ) == 0 );
1215 CHK( mbedtls_cipher_setkey( &t_in->cipher_ctx_dec, key1,
1216 keylen << 3, MBEDTLS_DECRYPT ) == 0 );
1217 CHK( mbedtls_cipher_setkey( &t_out->cipher_ctx_enc, key1,
1218 keylen << 3, MBEDTLS_ENCRYPT ) == 0 );
1219 CHK( mbedtls_cipher_setkey( &t_out->cipher_ctx_dec, key0,
1220 keylen << 3, MBEDTLS_DECRYPT ) == 0 );
Hanno Beckera18d1322018-01-03 14:27:32 +00001221
1222 /* Setup MAC contexts */
1223#if defined(MBEDTLS_SSL_SOME_MODES_USE_MAC)
1224 if( cipher_info->mode == MBEDTLS_MODE_CBC ||
1225 cipher_info->mode == MBEDTLS_MODE_STREAM )
1226 {
1227 mbedtls_md_info_t const *md_info;
1228 unsigned char *md0, *md1;
1229
1230 /* Pick hash */
1231 md_info = mbedtls_md_info_from_type( hash_id );
1232 CHK( md_info != NULL );
1233
1234 /* Pick hash keys */
1235 maclen = mbedtls_md_get_size( md_info );
Hanno Becker3ee54212019-04-04 16:31:26 +01001236 CHK( ( md0 = mbedtls_calloc( 1, maclen ) ) != NULL );
1237 CHK( ( md1 = mbedtls_calloc( 1, maclen ) ) != NULL );
Hanno Beckera18d1322018-01-03 14:27:32 +00001238 memset( md0, 0x5, maclen );
1239 memset( md1, 0x6, maclen );
1240
1241 CHK( mbedtls_md_setup( &t_out->md_ctx_enc, md_info, 1 ) == 0 );
1242 CHK( mbedtls_md_setup( &t_out->md_ctx_dec, md_info, 1 ) == 0 );
1243 CHK( mbedtls_md_setup( &t_in->md_ctx_enc, md_info, 1 ) == 0 );
1244 CHK( mbedtls_md_setup( &t_in->md_ctx_dec, md_info, 1 ) == 0 );
1245
1246 if( ver > MBEDTLS_SSL_MINOR_VERSION_0 )
1247 {
1248 CHK( mbedtls_md_hmac_starts( &t_in->md_ctx_enc,
1249 md0, maclen ) == 0 );
1250 CHK( mbedtls_md_hmac_starts( &t_in->md_ctx_dec,
1251 md1, maclen ) == 0 );
1252 CHK( mbedtls_md_hmac_starts( &t_out->md_ctx_enc,
1253 md1, maclen ) == 0 );
1254 CHK( mbedtls_md_hmac_starts( &t_out->md_ctx_dec,
1255 md0, maclen ) == 0 );
1256 }
1257#if defined(MBEDTLS_SSL_PROTO_SSL3)
1258 else
1259 {
1260 memcpy( &t_in->mac_enc, md0, maclen );
1261 memcpy( &t_in->mac_dec, md1, maclen );
1262 memcpy( &t_out->mac_enc, md1, maclen );
1263 memcpy( &t_out->mac_dec, md0, maclen );
1264 }
1265#endif
1266
Hanno Becker3ee54212019-04-04 16:31:26 +01001267 mbedtls_free( md0 );
1268 mbedtls_free( md1 );
Hanno Beckera18d1322018-01-03 14:27:32 +00001269 }
1270#else
1271 ((void) hash_id);
1272#endif /* MBEDTLS_SSL_SOME_MODES_USE_MAC */
1273
1274
1275 /* Pick IV's (regardless of whether they
1276 * are being used by the transform). */
1277 ivlen = cipher_info->iv_size;
1278 memset( iv_enc, 0x3, sizeof( iv_enc ) );
1279 memset( iv_dec, 0x4, sizeof( iv_dec ) );
1280
1281 /*
1282 * Setup transforms
1283 */
1284
Jaeden Amero2de07f12019-06-05 13:32:08 +01001285#if defined(MBEDTLS_SSL_ENCRYPT_THEN_MAC) && \
1286 defined(MBEDTLS_SSL_SOME_MODES_USE_MAC)
Hanno Beckera18d1322018-01-03 14:27:32 +00001287 t_out->encrypt_then_mac = etm;
1288 t_in->encrypt_then_mac = etm;
1289#else
1290 ((void) etm);
1291#endif
1292
1293 t_out->minor_ver = ver;
1294 t_in->minor_ver = ver;
1295 t_out->ivlen = ivlen;
1296 t_in->ivlen = ivlen;
1297
1298 switch( cipher_info->mode )
1299 {
1300 case MBEDTLS_MODE_GCM:
1301 case MBEDTLS_MODE_CCM:
1302 t_out->fixed_ivlen = 4;
1303 t_in->fixed_ivlen = 4;
1304 t_out->maclen = 0;
1305 t_in->maclen = 0;
1306 switch( tag_mode )
1307 {
1308 case 0: /* Full tag */
1309 t_out->taglen = 16;
1310 t_in->taglen = 16;
1311 break;
1312 case 1: /* Partial tag */
1313 t_out->taglen = 8;
1314 t_in->taglen = 8;
1315 break;
1316 default:
1317 return( 1 );
1318 }
1319 break;
1320
1321 case MBEDTLS_MODE_CHACHAPOLY:
1322 t_out->fixed_ivlen = 12;
1323 t_in->fixed_ivlen = 12;
1324 t_out->maclen = 0;
1325 t_in->maclen = 0;
1326 switch( tag_mode )
1327 {
1328 case 0: /* Full tag */
1329 t_out->taglen = 16;
1330 t_in->taglen = 16;
1331 break;
1332 case 1: /* Partial tag */
1333 t_out->taglen = 8;
1334 t_in->taglen = 8;
1335 break;
1336 default:
1337 return( 1 );
1338 }
1339 break;
1340
1341 case MBEDTLS_MODE_STREAM:
1342 case MBEDTLS_MODE_CBC:
1343 t_out->fixed_ivlen = 0; /* redundant, must be 0 */
1344 t_in->fixed_ivlen = 0; /* redundant, must be 0 */
1345 t_out->taglen = 0;
1346 t_in->taglen = 0;
1347 switch( tag_mode )
1348 {
1349 case 0: /* Full tag */
1350 t_out->maclen = maclen;
1351 t_in->maclen = maclen;
1352 break;
1353 case 1: /* Partial tag */
1354 t_out->maclen = 10;
1355 t_in->maclen = 10;
1356 break;
1357 default:
1358 return( 1 );
1359 }
1360 break;
1361 default:
1362 return( 1 );
1363 break;
1364 }
1365
1366 /* Setup IV's */
1367
1368 memcpy( &t_in->iv_dec, iv_dec, sizeof( iv_dec ) );
1369 memcpy( &t_in->iv_enc, iv_enc, sizeof( iv_enc ) );
1370 memcpy( &t_out->iv_dec, iv_enc, sizeof( iv_enc ) );
1371 memcpy( &t_out->iv_enc, iv_dec, sizeof( iv_dec ) );
1372
Hanno Beckera0e20d02019-05-15 14:03:01 +01001373#if defined(MBEDTLS_SSL_DTLS_CONNECTION_ID)
Hanno Beckerd856c822019-04-29 17:30:59 +01001374 /* Add CID */
1375 memcpy( &t_in->in_cid, cid0, cid0_len );
1376 memcpy( &t_in->out_cid, cid1, cid1_len );
1377 t_in->in_cid_len = cid0_len;
1378 t_in->out_cid_len = cid1_len;
1379 memcpy( &t_out->in_cid, cid1, cid1_len );
1380 memcpy( &t_out->out_cid, cid0, cid0_len );
1381 t_out->in_cid_len = cid1_len;
1382 t_out->out_cid_len = cid0_len;
Hanno Beckera0e20d02019-05-15 14:03:01 +01001383#endif /* MBEDTLS_SSL_DTLS_CONNECTION_ID */
Hanno Beckerd856c822019-04-29 17:30:59 +01001384
Hanno Becker81e16a32019-03-01 11:21:44 +00001385cleanup:
1386
Hanno Becker3ee54212019-04-04 16:31:26 +01001387 mbedtls_free( key0 );
1388 mbedtls_free( key1 );
Hanno Becker81e16a32019-03-01 11:21:44 +00001389
Hanno Beckera5780f12019-04-05 09:55:37 +01001390 return( ret );
Hanno Beckera18d1322018-01-03 14:27:32 +00001391}
1392
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001393/*
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02001394 * Populate a session structure for serialization tests.
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001395 * Choose dummy values, mostly non-0 to distinguish from the init default.
1396 */
1397static int ssl_populate_session( mbedtls_ssl_session *session,
Manuel Pégourié-Gonnard220403b2019-05-24 09:54:21 +02001398 int ticket_len,
1399 const char *crt_file )
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001400{
1401#if defined(MBEDTLS_HAVE_TIME)
1402 session->start = mbedtls_time( NULL ) - 42;
1403#endif
1404 session->ciphersuite = 0xabcd;
1405 session->compression = 1;
1406 session->id_len = sizeof( session->id );
1407 memset( session->id, 66, session->id_len );
Manuel Pégourié-Gonnard220403b2019-05-24 09:54:21 +02001408 memset( session->master, 17, sizeof( session->master ) );
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001409
Manuel Pégourié-Gonnard1f6033a2019-05-24 10:17:52 +02001410#if defined(MBEDTLS_X509_CRT_PARSE_C) && defined(MBEDTLS_FS_IO)
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001411 if( strlen( crt_file ) != 0 )
1412 {
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02001413 mbedtls_x509_crt tmp_crt;
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001414 int ret;
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +02001415
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02001416 mbedtls_x509_crt_init( &tmp_crt );
1417 ret = mbedtls_x509_crt_parse_file( &tmp_crt, crt_file );
1418 if( ret != 0 )
1419 return( ret );
1420
1421#if defined(MBEDTLS_SSL_KEEP_PEER_CERTIFICATE)
1422 /* Move temporary CRT. */
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +02001423 session->peer_cert = mbedtls_calloc( 1, sizeof( *session->peer_cert ) );
1424 if( session->peer_cert == NULL )
1425 return( -1 );
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02001426 *session->peer_cert = tmp_crt;
1427 memset( &tmp_crt, 0, sizeof( tmp_crt ) );
1428#else /* MBEDTLS_SSL_KEEP_PEER_CERTIFICATE */
1429 /* Calculate digest of temporary CRT. */
1430 session->peer_cert_digest =
1431 mbedtls_calloc( 1, MBEDTLS_SSL_PEER_CERT_DIGEST_DFL_LEN );
1432 if( session->peer_cert_digest == NULL )
1433 return( -1 );
1434 ret = mbedtls_md( mbedtls_md_info_from_type(
1435 MBEDTLS_SSL_PEER_CERT_DIGEST_DFL_TYPE ),
1436 tmp_crt.raw.p, tmp_crt.raw.len,
1437 session->peer_cert_digest );
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001438 if( ret != 0 )
1439 return( ret );
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02001440 session->peer_cert_digest_type =
1441 MBEDTLS_SSL_PEER_CERT_DIGEST_DFL_TYPE;
1442 session->peer_cert_digest_len =
1443 MBEDTLS_SSL_PEER_CERT_DIGEST_DFL_LEN;
1444#endif /* MBEDTLS_SSL_KEEP_PEER_CERTIFICATE */
1445
1446 mbedtls_x509_crt_free( &tmp_crt );
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001447 }
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02001448#else /* MBEDTLS_X509_CRT_PARSE_C && MBEDTLS_FS_IO */
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001449 (void) crt_file;
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02001450#endif /* MBEDTLS_X509_CRT_PARSE_C && MBEDTLS_FS_IO */
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001451 session->verify_result = 0xdeadbeef;
1452
1453#if defined(MBEDTLS_SSL_SESSION_TICKETS) && defined(MBEDTLS_SSL_CLI_C)
1454 if( ticket_len != 0 )
1455 {
1456 session->ticket = mbedtls_calloc( 1, ticket_len );
Manuel Pégourié-Gonnard220403b2019-05-24 09:54:21 +02001457 if( session->ticket == NULL )
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02001458 return( -1 );
1459 memset( session->ticket, 33, ticket_len );
1460 }
1461 session->ticket_len = ticket_len;
1462 session->ticket_lifetime = 86401;
1463#else
1464 (void) ticket_len;
1465#endif
1466
1467#if defined(MBEDTLS_SSL_MAX_FRAGMENT_LENGTH)
1468 session->mfl_code = 1;
1469#endif
1470#if defined(MBEDTLS_SSL_TRUNCATED_HMAC)
1471 session->trunc_hmac = 1;
1472#endif
1473#if defined(MBEDTLS_SSL_ENCRYPT_THEN_MAC)
1474 session->encrypt_then_mac = 1;
1475#endif
1476
1477 return( 0 );
1478}
1479
Piotr Nowicki6a7f01c2020-02-12 13:53:36 +01001480/*
1481 * Perform data exchanging between \p ssl_1 and \p ssl_2 and check if the
1482 * message was sent in the correct number of fragments.
1483 *
1484 * /p ssl_1 and /p ssl_2 Endpoints represented by mbedtls_ssl_context. Both
1485 * of them must be initialized and connected beforehand.
1486 * /p msg_len_1 and /p msg_len_2 specify the size of the message to send.
1487 * /p expected_fragments_1 and /p expected_fragments_2 determine in how many
1488 * fragments the message should be sent.
1489 * expected_fragments is 0: can be used for DTLS testing while the message
1490 * size is larger than MFL. In that case the message
1491 * cannot be fragmented and sent to the second endpoint.
1492 * This value can be used for negative tests.
1493 * expected_fragments is 1: can be used for TLS/DTLS testing while the
1494 * message size is below MFL
1495 * expected_fragments > 1: can be used for TLS testing while the message
1496 * size is larger than MFL
1497 *
1498 * \retval 0 on success, otherwise error code.
1499 */
1500int mbedtls_exchange_data( mbedtls_ssl_context *ssl_1,
1501 int msg_len_1, const int expected_fragments_1,
1502 mbedtls_ssl_context *ssl_2,
1503 int msg_len_2, const int expected_fragments_2 )
1504{
1505 unsigned char *msg_buf_1 = malloc( msg_len_1 );
1506 unsigned char *msg_buf_2 = malloc( msg_len_2 );
1507 unsigned char *in_buf_1 = malloc( msg_len_2 );
1508 unsigned char *in_buf_2 = malloc( msg_len_1 );
1509 int msg_type, ret = -1;
1510
1511 /* Perform this test with two message types. At first use a message
1512 * consisting of only 0x00 for the client and only 0xFF for the server.
1513 * At the second time use message with generated data */
1514 for( msg_type = 0; msg_type < 2; msg_type++ )
1515 {
1516 int written_1 = 0;
1517 int written_2 = 0;
1518 int read_1 = 0;
1519 int read_2 = 0;
1520 int fragments_1 = 0;
1521 int fragments_2 = 0;
1522
1523 if( msg_type == 0 )
1524 {
1525 memset( msg_buf_1, 0x00, msg_len_1 );
1526 memset( msg_buf_2, 0xff, msg_len_2 );
1527 }
1528 else
1529 {
1530 int i, j = 0;
1531 for( i = 0; i < msg_len_1; i++ )
1532 {
1533 msg_buf_1[i] = j++ & 0xFF;
1534 }
1535 for( i = 0; i < msg_len_2; i++ )
1536 {
1537 msg_buf_2[i] = ( j -= 5 ) & 0xFF;
1538 }
1539 }
1540
1541 while( read_1 < msg_len_2 || read_2 < msg_len_1 )
1542 {
1543 /* ssl_1 sending */
1544 if( msg_len_1 > written_1 )
1545 {
1546 ret = mbedtls_ssl_write_fragment( ssl_1, msg_buf_1,
1547 msg_len_1, &written_1,
1548 &fragments_1,
1549 expected_fragments_1 );
1550 if( expected_fragments_1 == 0 )
1551 {
1552 /* This error is expected when the message is too large and
1553 * cannot be fragmented */
1554 TEST_ASSERT( ret == MBEDTLS_ERR_SSL_BAD_INPUT_DATA );
1555 msg_len_1 = 0;
1556 }
1557 else
1558 {
1559 TEST_ASSERT( ret == 0 );
1560 }
1561 }
1562
1563 /* ssl_2 sending */
1564 if( msg_len_2 > written_2 )
1565 {
1566 ret = mbedtls_ssl_write_fragment( ssl_2, msg_buf_2,
1567 msg_len_2, &written_2,
1568 &fragments_2,
1569 expected_fragments_2 );
1570 if( expected_fragments_2 == 0 )
1571 {
1572 /* This error is expected when the message is too large and
1573 * cannot be fragmented */
1574 TEST_ASSERT( ret == MBEDTLS_ERR_SSL_BAD_INPUT_DATA );
1575 msg_len_2 = 0;
1576 }
1577 else
1578 {
1579 TEST_ASSERT( ret == 0 );
1580 }
1581 }
1582
1583 /* ssl_1 reading */
1584 if( read_1 < msg_len_2 )
1585 {
1586 ret = mbedtls_ssl_read_fragment( ssl_1, in_buf_1,
1587 msg_len_2, &read_1,
1588 expected_fragments_1 );
1589 TEST_ASSERT( ret == 0 );
1590 }
1591
1592 /* ssl_2 reading */
1593 if( read_2 < msg_len_1 )
1594 {
1595 ret = mbedtls_ssl_read_fragment( ssl_2, in_buf_2,
1596 msg_len_1, &read_2,
1597 expected_fragments_2 );
1598 TEST_ASSERT( ret == 0 );
1599 }
1600 }
1601
1602 ret = -1;
1603 TEST_ASSERT( 0 == memcmp( msg_buf_1, in_buf_2, msg_len_1 ) );
1604 TEST_ASSERT( 0 == memcmp( msg_buf_2, in_buf_1, msg_len_2 ) );
1605 TEST_ASSERT( fragments_1 == expected_fragments_1 );
1606 TEST_ASSERT( fragments_2 == expected_fragments_2 );
1607 }
1608
1609 ret = 0;
1610
1611exit:
1612 free( msg_buf_1 );
1613 free( in_buf_1 );
1614 free( msg_buf_2 );
1615 free( in_buf_2 );
1616
1617 return ret;
1618}
1619
Piotr Nowicki95e9eb82020-02-14 11:33:34 +01001620/*
1621 * Perform data exchanging between \p ssl_1 and \p ssl_2. Both of endpoints
1622 * must be initialized and connected beforehand.
1623 *
1624 * \retval 0 on success, otherwise error code.
1625 */
1626int exchange_data( mbedtls_ssl_context *ssl_1,
1627 mbedtls_ssl_context *ssl_2 )
1628{
1629 return mbedtls_exchange_data( ssl_1, 256, 1,
1630 ssl_2, 256, 1 );
1631}
1632
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001633#if defined(MBEDTLS_X509_CRT_PARSE_C)
1634void perform_handshake( handshake_test_options* options )
1635{
1636 /* forced_ciphersuite needs to last until the end of the handshake */
1637 int forced_ciphersuite[2];
1638 enum { BUFFSIZE = 17000 };
1639 mbedtls_endpoint client, server;
1640#if defined(MBEDTLS_KEY_EXCHANGE__SOME__PSK_ENABLED)
1641 const char *psk_identity = "foo";
1642#endif
1643#if defined(MBEDTLS_TIMING_C)
1644 mbedtls_timing_delay_context timer_client, timer_server;
1645#endif
1646#if defined(MBEDTLS_SSL_CONTEXT_SERIALIZATION)
1647 unsigned char *context_buf = NULL;
1648 size_t context_buf_len;
1649#endif
1650#if defined(MBEDTLS_SSL_RENEGOTIATION)
1651 int ret = -1;
1652#endif
1653
1654
1655 mbedtls_test_message_queue server_queue, client_queue;
1656 mbedtls_test_message_socket_context server_context, client_context;
1657
1658 /* Client side */
1659 if( options->dtls != 0 )
1660 {
1661 TEST_ASSERT( mbedtls_endpoint_init( &client, MBEDTLS_SSL_IS_CLIENT,
1662 options->pk_alg, &client_context,
1663 &client_queue,
1664 &server_queue ) == 0 );
1665#if defined(MBEDTLS_TIMING_C)
1666 mbedtls_ssl_set_timer_cb( &client.ssl, &timer_client,
1667 mbedtls_timing_set_delay,
1668 mbedtls_timing_get_delay );
1669#endif
1670 }
1671 else
1672 {
1673 TEST_ASSERT( mbedtls_endpoint_init( &client, MBEDTLS_SSL_IS_CLIENT,
1674 options->pk_alg, NULL, NULL,
1675 NULL ) == 0 );
1676 }
1677 mbedtls_ssl_conf_min_version( &client.conf, MBEDTLS_SSL_MAJOR_VERSION_3,
1678 options->version );
1679 mbedtls_ssl_conf_max_version( &client.conf, MBEDTLS_SSL_MAJOR_VERSION_3,
1680 options->version );
1681
1682 if( strlen( options->cipher ) > 0 )
1683 {
1684 set_ciphersuite( &client.conf, options->cipher, forced_ciphersuite );
1685 }
Piotr Nowickibde7ee82020-02-21 10:59:50 +01001686
1687#if defined (MBEDTLS_DEBUG_C)
1688 if( options->cli_log_fun )
1689 {
1690 mbedtls_debug_set_threshold( 4 );
1691 mbedtls_ssl_conf_dbg( &client.conf, options->cli_log_fun,
1692 options->cli_log_obj );
1693 }
1694#endif
1695
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001696 /* Server side */
1697 if( options->dtls != 0 )
1698 {
1699 TEST_ASSERT( mbedtls_endpoint_init( &server, MBEDTLS_SSL_IS_SERVER,
1700 options->pk_alg, &server_context,
1701 &server_queue,
1702 &client_queue) == 0 );
1703#if defined(MBEDTLS_TIMING_C)
1704 mbedtls_ssl_set_timer_cb( &server.ssl, &timer_server,
1705 mbedtls_timing_set_delay,
1706 mbedtls_timing_get_delay );
1707#endif
1708 }
1709 else
1710 {
1711 TEST_ASSERT( mbedtls_endpoint_init( &server, MBEDTLS_SSL_IS_SERVER,
1712 options->pk_alg, NULL, NULL, NULL ) == 0 );
1713 }
Piotr Nowickibde7ee82020-02-21 10:59:50 +01001714
1715 mbedtls_ssl_conf_authmode( &server.conf, options->srv_auth_mode );
1716
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001717 mbedtls_ssl_conf_min_version( &server.conf, MBEDTLS_SSL_MAJOR_VERSION_3,
1718 options->version );
1719#if defined(MBEDTLS_SSL_MAX_FRAGMENT_LENGTH)
1720 TEST_ASSERT( mbedtls_ssl_conf_max_frag_len( &(server.conf),
1721 (unsigned char) options->mfl ) == 0 );
1722 TEST_ASSERT( mbedtls_ssl_conf_max_frag_len( &(client.conf),
1723 (unsigned char) options->mfl ) == 0 );
1724#else
1725 TEST_ASSERT( MBEDTLS_SSL_MAX_FRAG_LEN_NONE == options->mfl );
1726#endif /* MBEDTLS_SSL_MAX_FRAGMENT_LENGTH */
1727
1728#if defined(MBEDTLS_KEY_EXCHANGE__SOME__PSK_ENABLED)
1729 if( options->psk_str != NULL && options->psk_str->len > 0 )
1730 {
1731 TEST_ASSERT( mbedtls_ssl_conf_psk( &client.conf, options->psk_str->x,
1732 options->psk_str->len,
1733 (const unsigned char *) psk_identity,
1734 strlen( psk_identity ) ) == 0 );
1735
1736 TEST_ASSERT( mbedtls_ssl_conf_psk( &server.conf, options->psk_str->x,
1737 options->psk_str->len,
1738 (const unsigned char *) psk_identity,
1739 strlen( psk_identity ) ) == 0 );
1740
1741 mbedtls_ssl_conf_psk_cb( &server.conf, psk_dummy_callback, NULL );
1742 }
1743#endif
1744#if defined(MBEDTLS_SSL_RENEGOTIATION)
1745 if( options->renegotiate )
1746 {
1747 mbedtls_ssl_conf_renegotiation( &(server.conf),
1748 MBEDTLS_SSL_RENEGOTIATION_ENABLED );
1749 mbedtls_ssl_conf_renegotiation( &(client.conf),
1750 MBEDTLS_SSL_RENEGOTIATION_ENABLED );
1751
1752 mbedtls_ssl_conf_legacy_renegotiation( &(server.conf),
1753 options->legacy_renegotiation );
1754 mbedtls_ssl_conf_legacy_renegotiation( &(client.conf),
1755 options->legacy_renegotiation );
1756 }
1757#endif /* MBEDTLS_SSL_RENEGOTIATION */
1758
Piotr Nowickibde7ee82020-02-21 10:59:50 +01001759#if defined (MBEDTLS_DEBUG_C)
1760 if( options->srv_log_fun )
1761 {
1762 mbedtls_debug_set_threshold( 4 );
1763 mbedtls_ssl_conf_dbg( &server.conf, options->srv_log_fun,
1764 options->srv_log_obj );
1765 }
1766#endif
1767
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001768 TEST_ASSERT( mbedtls_mock_socket_connect( &(client.socket),
1769 &(server.socket),
1770 BUFFSIZE ) == 0 );
1771
Andrzej Kurek0afa2a12020-03-03 10:39:58 -05001772#if defined(MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH)
1773 if( options->resize_buffers != 0 )
1774 {
1775 /* Ensure that the buffer sizes are appropriate before resizes */
1776 TEST_ASSERT( client.ssl.out_buf_len == MBEDTLS_SSL_OUT_BUFFER_LEN );
1777 TEST_ASSERT( client.ssl.in_buf_len == MBEDTLS_SSL_IN_BUFFER_LEN );
1778 TEST_ASSERT( server.ssl.out_buf_len == MBEDTLS_SSL_OUT_BUFFER_LEN );
1779 TEST_ASSERT( server.ssl.in_buf_len == MBEDTLS_SSL_IN_BUFFER_LEN );
1780 }
1781#endif
1782
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001783 TEST_ASSERT( mbedtls_move_handshake_to_state( &(client.ssl),
1784 &(server.ssl),
1785 MBEDTLS_SSL_HANDSHAKE_OVER )
1786 == 0 );
1787 TEST_ASSERT( client.ssl.state == MBEDTLS_SSL_HANDSHAKE_OVER );
1788 TEST_ASSERT( server.ssl.state == MBEDTLS_SSL_HANDSHAKE_OVER );
1789
Andrzej Kurek0afa2a12020-03-03 10:39:58 -05001790#if defined(MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH)
1791 if( options->resize_buffers != 0 )
1792 {
1793 /* Note - the case below will have to updated, since due to a 1n-1
1794 * split against BEAST the fragment count is different
1795 * than expected when preparing the fragment counting code. */
1796 if( options->version != MBEDTLS_SSL_MINOR_VERSION_0 &&
1797 options->version != MBEDTLS_SSL_MINOR_VERSION_1 )
1798 {
1799 /* A server, when using DTLS, might delay a buffer resize to happen
1800 * after it receives a message, so we force it. */
1801 TEST_ASSERT( exchange_data( &(client.ssl), &(server.ssl) ) == 0 );
1802
1803 TEST_ASSERT( client.ssl.out_buf_len ==
1804 mbedtls_ssl_get_output_buflen( &client.ssl ) );
1805 TEST_ASSERT( client.ssl.in_buf_len ==
1806 mbedtls_ssl_get_input_buflen( &client.ssl ) );
1807 TEST_ASSERT( server.ssl.out_buf_len ==
1808 mbedtls_ssl_get_output_buflen( &server.ssl ) );
1809 TEST_ASSERT( server.ssl.in_buf_len ==
1810 mbedtls_ssl_get_input_buflen( &server.ssl ) );
1811 }
1812 }
1813#endif
1814
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001815 if( options->cli_msg_len != 0 || options->srv_msg_len != 0 )
1816 {
1817 /* Start data exchanging test */
1818 TEST_ASSERT( mbedtls_exchange_data( &(client.ssl), options->cli_msg_len,
1819 options->expected_cli_fragments,
1820 &(server.ssl), options->srv_msg_len,
1821 options->expected_srv_fragments )
1822 == 0 );
1823 }
1824#if defined(MBEDTLS_SSL_CONTEXT_SERIALIZATION)
1825 if( options->serialize == 1 )
1826 {
1827 TEST_ASSERT( options->dtls == 1 );
1828
1829 TEST_ASSERT( mbedtls_ssl_context_save( &(server.ssl), NULL,
1830 0, &context_buf_len )
1831 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
1832
1833 context_buf = mbedtls_calloc( 1, context_buf_len );
1834 TEST_ASSERT( context_buf != NULL );
1835
1836 TEST_ASSERT( mbedtls_ssl_context_save( &(server.ssl), context_buf,
1837 context_buf_len,
1838 &context_buf_len ) == 0 );
1839
1840 mbedtls_ssl_free( &(server.ssl) );
1841 mbedtls_ssl_init( &(server.ssl) );
1842
1843 TEST_ASSERT( mbedtls_ssl_setup( &(server.ssl), &(server.conf) ) == 0 );
1844
1845 mbedtls_ssl_set_bio( &( server.ssl ), &server_context,
1846 mbedtls_mock_tcp_send_msg,
1847 mbedtls_mock_tcp_recv_msg,
1848 NULL );
1849
1850#if defined(MBEDTLS_TIMING_C)
1851 mbedtls_ssl_set_timer_cb( &server.ssl, &timer_server,
1852 mbedtls_timing_set_delay,
1853 mbedtls_timing_get_delay );
1854#endif
Andrzej Kurek0afa2a12020-03-03 10:39:58 -05001855#if defined(MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH)
1856 if( options->resize_buffers != 0 )
1857 {
1858 /* Ensure that the buffer sizes are appropriate before resizes */
1859 TEST_ASSERT( server.ssl.out_buf_len == MBEDTLS_SSL_OUT_BUFFER_LEN );
1860 TEST_ASSERT( server.ssl.in_buf_len == MBEDTLS_SSL_IN_BUFFER_LEN );
1861 }
1862#endif
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001863 TEST_ASSERT( mbedtls_ssl_context_load( &( server.ssl ), context_buf,
1864 context_buf_len ) == 0 );
1865
Andrzej Kurek0afa2a12020-03-03 10:39:58 -05001866#if defined(MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH)
1867 /* Validate buffer sizes after context deserialization */
1868 if( options->resize_buffers != 0 )
1869 {
1870 TEST_ASSERT( server.ssl.out_buf_len ==
1871 mbedtls_ssl_get_output_buflen( &server.ssl ) );
1872 TEST_ASSERT( server.ssl.in_buf_len ==
1873 mbedtls_ssl_get_input_buflen( &server.ssl ) );
1874 }
1875#endif
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001876 /* Retest writing/reading */
1877 if( options->cli_msg_len != 0 || options->srv_msg_len != 0 )
1878 {
1879 TEST_ASSERT( mbedtls_exchange_data( &(client.ssl),
1880 options->cli_msg_len,
1881 options->expected_cli_fragments,
1882 &(server.ssl),
1883 options->srv_msg_len,
1884 options->expected_srv_fragments )
1885 == 0 );
1886 }
1887 }
1888#endif /* MBEDTLS_SSL_CONTEXT_SERIALIZATION */
Andrzej Kurek0afa2a12020-03-03 10:39:58 -05001889
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001890#if defined(MBEDTLS_SSL_RENEGOTIATION)
1891 if( options->renegotiate )
1892 {
1893 /* Start test with renegotiation */
1894 TEST_ASSERT( server.ssl.renego_status ==
1895 MBEDTLS_SSL_INITIAL_HANDSHAKE );
1896 TEST_ASSERT( client.ssl.renego_status ==
1897 MBEDTLS_SSL_INITIAL_HANDSHAKE );
1898
1899 /* After calling this function for the server, it only sends a handshake
1900 * request. All renegotiation should happen during data exchanging */
1901 TEST_ASSERT( mbedtls_ssl_renegotiate( &(server.ssl) ) == 0 );
1902 TEST_ASSERT( server.ssl.renego_status ==
1903 MBEDTLS_SSL_RENEGOTIATION_PENDING );
1904 TEST_ASSERT( client.ssl.renego_status ==
1905 MBEDTLS_SSL_INITIAL_HANDSHAKE );
1906
1907 TEST_ASSERT( exchange_data( &(client.ssl), &(server.ssl) ) == 0 );
1908 TEST_ASSERT( server.ssl.renego_status ==
1909 MBEDTLS_SSL_RENEGOTIATION_DONE );
1910 TEST_ASSERT( client.ssl.renego_status ==
1911 MBEDTLS_SSL_RENEGOTIATION_DONE );
1912
1913 /* After calling mbedtls_ssl_renegotiate for the client all renegotiation
1914 * should happen inside this function. However in this test, we cannot
1915 * perform simultaneous communication betwen client and server so this
1916 * function will return waiting error on the socket. All rest of
1917 * renegotiation should happen during data exchanging */
1918 ret = mbedtls_ssl_renegotiate( &(client.ssl) );
Andrzej Kurek0afa2a12020-03-03 10:39:58 -05001919#if defined(MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH)
1920 if( options->resize_buffers != 0 )
1921 {
1922 /* Ensure that the buffer sizes are appropriate before resizes */
1923 TEST_ASSERT( client.ssl.out_buf_len == MBEDTLS_SSL_OUT_BUFFER_LEN );
1924 TEST_ASSERT( client.ssl.in_buf_len == MBEDTLS_SSL_IN_BUFFER_LEN );
1925 }
1926#endif
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001927 TEST_ASSERT( ret == 0 ||
1928 ret == MBEDTLS_ERR_SSL_WANT_READ ||
1929 ret == MBEDTLS_ERR_SSL_WANT_WRITE );
1930 TEST_ASSERT( server.ssl.renego_status ==
1931 MBEDTLS_SSL_RENEGOTIATION_DONE );
1932 TEST_ASSERT( client.ssl.renego_status ==
1933 MBEDTLS_SSL_RENEGOTIATION_IN_PROGRESS );
1934
1935 TEST_ASSERT( exchange_data( &(client.ssl), &(server.ssl) ) == 0 );
1936 TEST_ASSERT( server.ssl.renego_status ==
1937 MBEDTLS_SSL_RENEGOTIATION_DONE );
1938 TEST_ASSERT( client.ssl.renego_status ==
1939 MBEDTLS_SSL_RENEGOTIATION_DONE );
Andrzej Kurek0afa2a12020-03-03 10:39:58 -05001940#if defined(MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH)
1941 /* Validate buffer sizes after renegotiation */
1942 if( options->resize_buffers != 0 )
1943 {
1944 TEST_ASSERT( client.ssl.out_buf_len ==
1945 mbedtls_ssl_get_output_buflen( &client.ssl ) );
1946 TEST_ASSERT( client.ssl.in_buf_len ==
1947 mbedtls_ssl_get_input_buflen( &client.ssl ) );
1948 TEST_ASSERT( server.ssl.out_buf_len ==
1949 mbedtls_ssl_get_output_buflen( &server.ssl ) );
1950 TEST_ASSERT( server.ssl.in_buf_len ==
1951 mbedtls_ssl_get_input_buflen( &server.ssl ) );
1952 }
1953#endif /* MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH */
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001954 }
1955#endif /* MBEDTLS_SSL_RENEGOTIATION */
1956
1957exit:
1958 mbedtls_endpoint_free( &client, options->dtls != 0 ? &client_context : NULL );
1959 mbedtls_endpoint_free( &server, options->dtls != 0 ? &server_context : NULL );
Piotr Nowickibde7ee82020-02-21 10:59:50 +01001960#if defined (MBEDTLS_DEBUG_C)
1961 if( options->cli_log_fun || options->srv_log_fun )
1962 {
1963 mbedtls_debug_set_threshold( 0 );
1964 }
1965#endif
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05001966#if defined(MBEDTLS_SSL_CONTEXT_SERIALIZATION)
1967 if( context_buf != NULL )
1968 mbedtls_free( context_buf );
1969#endif
1970}
1971#endif /* MBEDTLS_X509_CRT_PARSE_C */
1972
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001973/* END_HEADER */
1974
1975/* BEGIN_DEPENDENCIES
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02001976 * depends_on:MBEDTLS_SSL_TLS_C
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02001977 * END_DEPENDENCIES
1978 */
1979
Janos Follath6264e662019-11-26 11:11:15 +00001980/* BEGIN_CASE */
1981void test_callback_buffer_sanity()
1982{
1983 enum { MSGLEN = 10 };
1984 mbedtls_test_buffer buf;
1985 unsigned char input[MSGLEN];
1986 unsigned char output[MSGLEN];
1987
1988 memset( input, 0, sizeof(input) );
1989
1990 /* Make sure calling put and get on NULL buffer results in error. */
1991 TEST_ASSERT( mbedtls_test_buffer_put( NULL, input, sizeof( input ) )
1992 == -1 );
1993 TEST_ASSERT( mbedtls_test_buffer_get( NULL, output, sizeof( output ) )
1994 == -1 );
1995 TEST_ASSERT( mbedtls_test_buffer_put( NULL, NULL, sizeof( input ) ) == -1 );
Andrzej Kurekf7774142020-01-22 06:34:59 -05001996
Janos Follath6264e662019-11-26 11:11:15 +00001997 TEST_ASSERT( mbedtls_test_buffer_put( NULL, NULL, 0 ) == -1 );
1998 TEST_ASSERT( mbedtls_test_buffer_get( NULL, NULL, 0 ) == -1 );
1999
2000 /* Make sure calling put and get on a buffer that hasn't been set up results
2001 * in eror. */
2002 mbedtls_test_buffer_init( &buf );
2003
2004 TEST_ASSERT( mbedtls_test_buffer_put( &buf, input, sizeof( input ) ) == -1 );
2005 TEST_ASSERT( mbedtls_test_buffer_get( &buf, output, sizeof( output ) )
2006 == -1 );
2007 TEST_ASSERT( mbedtls_test_buffer_put( &buf, NULL, sizeof( input ) ) == -1 );
Andrzej Kurekf7774142020-01-22 06:34:59 -05002008
Janos Follath6264e662019-11-26 11:11:15 +00002009 TEST_ASSERT( mbedtls_test_buffer_put( &buf, NULL, 0 ) == -1 );
2010 TEST_ASSERT( mbedtls_test_buffer_get( &buf, NULL, 0 ) == -1 );
2011
Andrzej Kurekf7774142020-01-22 06:34:59 -05002012 /* Make sure calling put and get on NULL input only results in
2013 * error if the length is not zero, and that a NULL output is valid for data
2014 * dropping.
2015 */
Janos Follath6264e662019-11-26 11:11:15 +00002016
2017 TEST_ASSERT( mbedtls_test_buffer_setup( &buf, sizeof( input ) ) == 0 );
2018
2019 TEST_ASSERT( mbedtls_test_buffer_put( &buf, NULL, sizeof( input ) ) == -1 );
2020 TEST_ASSERT( mbedtls_test_buffer_get( &buf, NULL, sizeof( output ) )
Andrzej Kurekf7774142020-01-22 06:34:59 -05002021 == 0 );
Janos Follath6264e662019-11-26 11:11:15 +00002022 TEST_ASSERT( mbedtls_test_buffer_put( &buf, NULL, 0 ) == 0 );
2023 TEST_ASSERT( mbedtls_test_buffer_get( &buf, NULL, 0 ) == 0 );
2024
Piotr Nowickifb437d72020-01-13 16:59:12 +01002025 /* Make sure calling put several times in the row is safe */
2026
2027 TEST_ASSERT( mbedtls_test_buffer_put( &buf, input, sizeof( input ) )
2028 == sizeof( input ) );
2029 TEST_ASSERT( mbedtls_test_buffer_get( &buf, output, 2 ) == 2 );
2030 TEST_ASSERT( mbedtls_test_buffer_put( &buf, input, 1 ) == 1 );
2031 TEST_ASSERT( mbedtls_test_buffer_put( &buf, input, 2 ) == 1 );
2032 TEST_ASSERT( mbedtls_test_buffer_put( &buf, input, 2 ) == 0 );
2033
2034
Janos Follath6264e662019-11-26 11:11:15 +00002035exit:
2036
2037 mbedtls_test_buffer_free( &buf );
2038}
2039/* END_CASE */
2040
2041/*
2042 * Test if the implementation of `mbedtls_test_buffer` related functions is
2043 * correct and works as expected.
2044 *
2045 * That is
2046 * - If we try to put in \p put1 bytes then we can put in \p put1_ret bytes.
2047 * - Afterwards if we try to get \p get1 bytes then we can get \get1_ret bytes.
2048 * - Next, if we try to put in \p put1 bytes then we can put in \p put1_ret
2049 * bytes.
2050 * - Afterwards if we try to get \p get1 bytes then we can get \get1_ret bytes.
2051 * - All of the bytes we got match the bytes we put in in a FIFO manner.
2052 */
2053
2054/* BEGIN_CASE */
2055void test_callback_buffer( int size, int put1, int put1_ret,
2056 int get1, int get1_ret, int put2, int put2_ret,
2057 int get2, int get2_ret )
2058{
2059 enum { ROUNDS = 2 };
2060 size_t put[ROUNDS];
2061 int put_ret[ROUNDS];
2062 size_t get[ROUNDS];
2063 int get_ret[ROUNDS];
2064 mbedtls_test_buffer buf;
2065 unsigned char* input = NULL;
2066 size_t input_len;
2067 unsigned char* output = NULL;
2068 size_t output_len;
Janos Follath031827f2019-11-27 11:12:14 +00002069 size_t i, j, written, read;
Janos Follath6264e662019-11-26 11:11:15 +00002070
2071 mbedtls_test_buffer_init( &buf );
2072 TEST_ASSERT( mbedtls_test_buffer_setup( &buf, size ) == 0 );
2073
2074 /* Check the sanity of input parameters and initialise local variables. That
2075 * is, ensure that the amount of data is not negative and that we are not
2076 * expecting more to put or get than we actually asked for. */
2077 TEST_ASSERT( put1 >= 0 );
2078 put[0] = put1;
2079 put_ret[0] = put1_ret;
2080 TEST_ASSERT( put1_ret <= put1 );
2081 TEST_ASSERT( put2 >= 0 );
2082 put[1] = put2;
2083 put_ret[1] = put2_ret;
2084 TEST_ASSERT( put2_ret <= put2 );
2085
2086 TEST_ASSERT( get1 >= 0 );
2087 get[0] = get1;
2088 get_ret[0] = get1_ret;
2089 TEST_ASSERT( get1_ret <= get1 );
2090 TEST_ASSERT( get2 >= 0 );
2091 get[1] = get2;
2092 get_ret[1] = get2_ret;
2093 TEST_ASSERT( get2_ret <= get2 );
2094
2095 input_len = 0;
2096 /* Calculate actual input and output lengths */
2097 for( j = 0; j < ROUNDS; j++ )
2098 {
2099 if( put_ret[j] > 0 )
2100 {
2101 input_len += put_ret[j];
2102 }
2103 }
2104 /* In order to always have a valid pointer we always allocate at least 1
2105 * byte. */
2106 if( input_len == 0 )
2107 input_len = 1;
2108 ASSERT_ALLOC( input, input_len );
2109
2110 output_len = 0;
2111 for( j = 0; j < ROUNDS; j++ )
2112 {
2113 if( get_ret[j] > 0 )
2114 {
2115 output_len += get_ret[j];
2116 }
2117 }
2118 TEST_ASSERT( output_len <= input_len );
2119 /* In order to always have a valid pointer we always allocate at least 1
2120 * byte. */
2121 if( output_len == 0 )
2122 output_len = 1;
2123 ASSERT_ALLOC( output, output_len );
2124
2125 /* Fill up the buffer with structured data so that unwanted changes
2126 * can be detected */
2127 for( i = 0; i < input_len; i++ )
2128 {
2129 input[i] = i & 0xFF;
2130 }
2131
2132 written = read = 0;
2133 for( j = 0; j < ROUNDS; j++ )
2134 {
2135 TEST_ASSERT( put_ret[j] == mbedtls_test_buffer_put( &buf,
2136 input + written, put[j] ) );
2137 written += put_ret[j];
2138 TEST_ASSERT( get_ret[j] == mbedtls_test_buffer_get( &buf,
2139 output + read, get[j] ) );
2140 read += get_ret[j];
2141 TEST_ASSERT( read <= written );
2142 if( get_ret[j] > 0 )
2143 {
2144 TEST_ASSERT( memcmp( output + read - get_ret[j],
2145 input + read - get_ret[j], get_ret[j] )
2146 == 0 );
2147 }
2148 }
2149
2150exit:
2151
2152 mbedtls_free( input );
2153 mbedtls_free( output );
2154 mbedtls_test_buffer_free( &buf );
2155}
2156/* END_CASE */
2157
Janos Follath031827f2019-11-27 11:12:14 +00002158/*
Janos Follathc673c2c2019-12-02 15:47:26 +00002159 * Test if the implementation of `mbedtls_mock_socket` related I/O functions is
2160 * correct and works as expected on unconnected sockets.
2161 */
2162
2163/* BEGIN_CASE */
2164void ssl_mock_sanity( )
2165{
2166 enum { MSGLEN = 105 };
2167 unsigned char message[MSGLEN];
2168 unsigned char received[MSGLEN];
2169 mbedtls_mock_socket socket;
2170
2171 mbedtls_mock_socket_init( &socket );
2172 TEST_ASSERT( mbedtls_mock_tcp_send_b( &socket, message, MSGLEN ) < 0 );
2173 mbedtls_mock_socket_close( &socket );
2174 mbedtls_mock_socket_init( &socket );
2175 TEST_ASSERT( mbedtls_mock_tcp_recv_b( &socket, received, MSGLEN ) < 0 );
2176 mbedtls_mock_socket_close( &socket );
2177
2178 mbedtls_mock_socket_init( &socket );
2179 TEST_ASSERT( mbedtls_mock_tcp_send_nb( &socket, message, MSGLEN ) < 0 );
2180 mbedtls_mock_socket_close( &socket );
2181 mbedtls_mock_socket_init( &socket );
2182 TEST_ASSERT( mbedtls_mock_tcp_recv_nb( &socket, received, MSGLEN ) < 0 );
2183 mbedtls_mock_socket_close( &socket );
2184
2185exit:
2186
2187 mbedtls_mock_socket_close( &socket );
2188}
2189/* END_CASE */
2190
2191/*
2192 * Test if the implementation of `mbedtls_mock_socket` related functions can
2193 * send a single message from the client to the server.
Janos Follath031827f2019-11-27 11:12:14 +00002194 */
2195
2196/* BEGIN_CASE */
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002197void ssl_mock_tcp( int blocking )
Janos Follath031827f2019-11-27 11:12:14 +00002198{
Janos Follathc673c2c2019-12-02 15:47:26 +00002199 enum { MSGLEN = 105 };
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002200 enum { BUFLEN = MSGLEN / 5 };
Janos Follathc673c2c2019-12-02 15:47:26 +00002201 unsigned char message[MSGLEN];
2202 unsigned char received[MSGLEN];
2203 mbedtls_mock_socket client;
2204 mbedtls_mock_socket server;
2205 size_t written, read;
2206 int send_ret, recv_ret;
2207 mbedtls_ssl_send_t *send;
2208 mbedtls_ssl_recv_t *recv;
Janos Follathc673c2c2019-12-02 15:47:26 +00002209 unsigned i;
2210
2211 if( blocking == 0 )
2212 {
2213 send = mbedtls_mock_tcp_send_nb;
2214 recv = mbedtls_mock_tcp_recv_nb;
2215 }
2216 else
2217 {
2218 send = mbedtls_mock_tcp_send_b;
2219 recv = mbedtls_mock_tcp_recv_b;
2220 }
2221
2222 mbedtls_mock_socket_init( &client );
2223 mbedtls_mock_socket_init( &server );
2224
2225 /* Fill up the buffer with structured data so that unwanted changes
2226 * can be detected */
2227 for( i = 0; i < MSGLEN; i++ )
2228 {
2229 message[i] = i & 0xFF;
2230 }
2231
2232 /* Make sure that sending a message takes a few iterations. */
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002233 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server, BUFLEN ) );
Janos Follathc673c2c2019-12-02 15:47:26 +00002234
2235 /* Send the message to the server */
2236 send_ret = recv_ret = 1;
2237 written = read = 0;
2238 while( send_ret != 0 || recv_ret != 0 )
2239 {
2240 send_ret = send( &client, message + written, MSGLEN - written );
2241
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002242 TEST_ASSERT( send_ret >= 0 );
2243 TEST_ASSERT( send_ret <= BUFLEN );
2244 written += send_ret;
2245
2246 /* If the buffer is full we can test blocking and non-blocking send */
2247 if ( send_ret == BUFLEN )
Janos Follathc673c2c2019-12-02 15:47:26 +00002248 {
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002249 int blocking_ret = send( &client, message , 1 );
2250 if ( blocking )
2251 {
2252 TEST_ASSERT( blocking_ret == 0 );
2253 }
2254 else
2255 {
2256 TEST_ASSERT( blocking_ret == MBEDTLS_ERR_SSL_WANT_WRITE );
2257 }
Janos Follathc673c2c2019-12-02 15:47:26 +00002258 }
Janos Follathc673c2c2019-12-02 15:47:26 +00002259
2260 recv_ret = recv( &server, received + read, MSGLEN - read );
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002261
2262 /* The result depends on whether any data was sent */
2263 if ( send_ret > 0 )
Janos Follathc673c2c2019-12-02 15:47:26 +00002264 {
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002265 TEST_ASSERT( recv_ret > 0 );
2266 TEST_ASSERT( recv_ret <= BUFLEN );
2267 read += recv_ret;
2268 }
2269 else if( blocking )
2270 {
2271 TEST_ASSERT( recv_ret == 0 );
Janos Follathc673c2c2019-12-02 15:47:26 +00002272 }
2273 else
2274 {
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002275 TEST_ASSERT( recv_ret == MBEDTLS_ERR_SSL_WANT_READ );
2276 recv_ret = 0;
Janos Follathc673c2c2019-12-02 15:47:26 +00002277 }
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002278
2279 /* If the buffer is empty we can test blocking and non-blocking read */
2280 if ( recv_ret == BUFLEN )
2281 {
2282 int blocking_ret = recv( &server, received, 1 );
2283 if ( blocking )
2284 {
2285 TEST_ASSERT( blocking_ret == 0 );
2286 }
2287 else
2288 {
2289 TEST_ASSERT( blocking_ret == MBEDTLS_ERR_SSL_WANT_READ );
2290 }
2291 }
Janos Follathc673c2c2019-12-02 15:47:26 +00002292 }
2293 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2294
2295exit:
2296
2297 mbedtls_mock_socket_close( &client );
2298 mbedtls_mock_socket_close( &server );
2299}
2300/* END_CASE */
2301
2302/*
2303 * Test if the implementation of `mbedtls_mock_socket` related functions can
2304 * send messages in both direction at the same time (with the I/O calls
2305 * interleaving).
2306 */
2307
2308/* BEGIN_CASE */
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002309void ssl_mock_tcp_interleaving( int blocking )
Janos Follathc673c2c2019-12-02 15:47:26 +00002310{
Janos Follath031827f2019-11-27 11:12:14 +00002311 enum { ROUNDS = 2 };
2312 enum { MSGLEN = 105 };
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002313 enum { BUFLEN = MSGLEN / 5 };
Janos Follath031827f2019-11-27 11:12:14 +00002314 unsigned char message[ROUNDS][MSGLEN];
2315 unsigned char received[ROUNDS][MSGLEN];
2316 mbedtls_mock_socket client;
2317 mbedtls_mock_socket server;
2318 size_t written[ROUNDS];
2319 size_t read[ROUNDS];
2320 int send_ret[ROUNDS];
2321 int recv_ret[ROUNDS];
2322 unsigned i, j, progress;
Janos Follath3766ba52019-11-27 13:31:42 +00002323 mbedtls_ssl_send_t *send;
2324 mbedtls_ssl_recv_t *recv;
Janos Follath3766ba52019-11-27 13:31:42 +00002325
2326 if( blocking == 0 )
2327 {
2328 send = mbedtls_mock_tcp_send_nb;
2329 recv = mbedtls_mock_tcp_recv_nb;
2330 }
2331 else
2332 {
2333 send = mbedtls_mock_tcp_send_b;
2334 recv = mbedtls_mock_tcp_recv_b;
2335 }
Janos Follath031827f2019-11-27 11:12:14 +00002336
2337 mbedtls_mock_socket_init( &client );
2338 mbedtls_mock_socket_init( &server );
2339
2340 /* Fill up the buffers with structured data so that unwanted changes
2341 * can be detected */
2342 for( i = 0; i < ROUNDS; i++ )
2343 {
2344 for( j = 0; j < MSGLEN; j++ )
2345 {
2346 message[i][j] = ( i * MSGLEN + j ) & 0xFF;
2347 }
2348 }
2349
Janos Follath031827f2019-11-27 11:12:14 +00002350 /* Make sure that sending a message takes a few iterations. */
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002351 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server, BUFLEN ) );
Janos Follath031827f2019-11-27 11:12:14 +00002352
Janos Follath031827f2019-11-27 11:12:14 +00002353 /* Send the message from both sides, interleaving. */
2354 progress = 1;
2355 for( i = 0; i < ROUNDS; i++ )
2356 {
2357 written[i] = 0;
2358 read[i] = 0;
2359 }
2360 /* This loop does not stop as long as there was a successful write or read
2361 * of at least one byte on either side. */
2362 while( progress != 0 )
2363 {
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002364 mbedtls_mock_socket *socket;
Janos Follath031827f2019-11-27 11:12:14 +00002365
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002366 for( i = 0; i < ROUNDS; i++ )
Janos Follath3766ba52019-11-27 13:31:42 +00002367 {
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002368 /* First sending is from the client */
2369 socket = ( i % 2 == 0 ) ? ( &client ) : ( &server );
Janos Follath031827f2019-11-27 11:12:14 +00002370
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002371 send_ret[i] = send( socket, message[i] + written[i],
2372 MSGLEN - written[i] );
2373 TEST_ASSERT( send_ret[i] >= 0 );
2374 TEST_ASSERT( send_ret[i] <= BUFLEN );
2375 written[i] += send_ret[i];
Janos Follath031827f2019-11-27 11:12:14 +00002376
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002377 /* If the buffer is full we can test blocking and non-blocking
2378 * send */
2379 if ( send_ret[i] == BUFLEN )
2380 {
2381 int blocking_ret = send( socket, message[i] , 1 );
2382 if ( blocking )
2383 {
2384 TEST_ASSERT( blocking_ret == 0 );
2385 }
2386 else
2387 {
2388 TEST_ASSERT( blocking_ret == MBEDTLS_ERR_SSL_WANT_WRITE );
2389 }
2390 }
Janos Follath3766ba52019-11-27 13:31:42 +00002391 }
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002392
2393 for( i = 0; i < ROUNDS; i++ )
Janos Follath3766ba52019-11-27 13:31:42 +00002394 {
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002395 /* First receiving is from the server */
2396 socket = ( i % 2 == 0 ) ? ( &server ) : ( &client );
2397
2398 recv_ret[i] = recv( socket, received[i] + read[i],
2399 MSGLEN - read[i] );
2400
2401 /* The result depends on whether any data was sent */
2402 if ( send_ret[i] > 0 )
2403 {
2404 TEST_ASSERT( recv_ret[i] > 0 );
2405 TEST_ASSERT( recv_ret[i] <= BUFLEN );
2406 read[i] += recv_ret[i];
2407 }
2408 else if( blocking )
2409 {
2410 TEST_ASSERT( recv_ret[i] == 0 );
2411 }
2412 else
2413 {
2414 TEST_ASSERT( recv_ret[i] == MBEDTLS_ERR_SSL_WANT_READ );
2415 recv_ret[i] = 0;
2416 }
2417
2418 /* If the buffer is empty we can test blocking and non-blocking
2419 * read */
2420 if ( recv_ret[i] == BUFLEN )
2421 {
2422 int blocking_ret = recv( socket, received[i], 1 );
2423 if ( blocking )
2424 {
2425 TEST_ASSERT( blocking_ret == 0 );
2426 }
2427 else
2428 {
2429 TEST_ASSERT( blocking_ret == MBEDTLS_ERR_SSL_WANT_READ );
2430 }
2431 }
Janos Follath3766ba52019-11-27 13:31:42 +00002432 }
Janos Follath031827f2019-11-27 11:12:14 +00002433
2434 progress = 0;
2435 for( i = 0; i < ROUNDS; i++ )
2436 {
Piotr Nowicki890b5ca2020-01-15 16:19:07 +01002437 progress += send_ret[i] + recv_ret[i];
Janos Follath031827f2019-11-27 11:12:14 +00002438 }
2439 }
2440
2441 for( i = 0; i < ROUNDS; i++ )
2442 TEST_ASSERT( memcmp( message[i], received[i], MSGLEN ) == 0 );
2443
2444exit:
2445
2446 mbedtls_mock_socket_close( &client );
2447 mbedtls_mock_socket_close( &server );
2448}
2449/* END_CASE */
2450
Andrzej Kurek13719cd2020-01-22 06:36:39 -05002451/* BEGIN_CASE */
2452void ssl_message_queue_sanity( )
2453{
2454 mbedtls_test_message_queue queue;
2455
2456 /* Trying to push/pull to an empty queue */
2457 TEST_ASSERT( mbedtls_test_message_queue_push_info( NULL, 1 )
2458 == MBEDTLS_TEST_ERROR_ARG_NULL );
2459 TEST_ASSERT( mbedtls_test_message_queue_pop_info( NULL, 1 )
2460 == MBEDTLS_TEST_ERROR_ARG_NULL );
2461
2462 mbedtls_test_message_queue_setup( &queue, 3 );
2463 TEST_ASSERT( queue.capacity == 3 );
2464 TEST_ASSERT( queue.num == 0 );
2465
2466exit:
2467 mbedtls_test_message_queue_free( &queue );
2468}
2469/* END_CASE */
2470
2471/* BEGIN_CASE */
2472void ssl_message_queue_basic( )
2473{
2474 mbedtls_test_message_queue queue;
2475
2476 mbedtls_test_message_queue_setup( &queue, 3 );
2477
2478 /* Sanity test - 3 pushes and 3 pops with sufficient space */
2479 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 1 ) == 1 );
2480 TEST_ASSERT( queue.capacity == 3 );
2481 TEST_ASSERT( queue.num == 1 );
2482 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 1 ) == 1 );
2483 TEST_ASSERT( queue.capacity == 3 );
2484 TEST_ASSERT( queue.num == 2 );
2485 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 2 ) == 2 );
2486 TEST_ASSERT( queue.capacity == 3 );
2487 TEST_ASSERT( queue.num == 3 );
2488
2489 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 1 ) == 1 );
2490 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 1 ) == 1 );
2491 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 2 ) == 2 );
2492
2493exit:
2494 mbedtls_test_message_queue_free( &queue );
2495}
2496/* END_CASE */
2497
2498/* BEGIN_CASE */
2499void ssl_message_queue_overflow_underflow( )
2500{
2501 mbedtls_test_message_queue queue;
2502
2503 mbedtls_test_message_queue_setup( &queue, 3 );
2504
2505 /* 4 pushes (last one with an error), 4 pops (last one with an error) */
2506 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 1 ) == 1 );
2507 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 1 ) == 1 );
2508 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 2 ) == 2 );
2509 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 3 )
Andrzej Kurekf46b9122020-02-07 08:19:00 -05002510 == MBEDTLS_ERR_SSL_WANT_WRITE );
Andrzej Kurek13719cd2020-01-22 06:36:39 -05002511
2512 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 1 ) == 1 );
2513 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 1 ) == 1 );
2514 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 2 ) == 2 );
2515
2516 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 1 )
Andrzej Kurekf46b9122020-02-07 08:19:00 -05002517 == MBEDTLS_ERR_SSL_WANT_READ );
Andrzej Kurek13719cd2020-01-22 06:36:39 -05002518
2519exit:
2520 mbedtls_test_message_queue_free( &queue );
2521}
2522/* END_CASE */
2523
2524/* BEGIN_CASE */
2525void ssl_message_queue_interleaved( )
2526{
2527 mbedtls_test_message_queue queue;
2528
2529 mbedtls_test_message_queue_setup( &queue, 3 );
2530
2531 /* Interleaved test - [2 pushes, 1 pop] twice, and then two pops
2532 * (to wrap around the buffer) */
2533 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 1 ) == 1 );
2534 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 1 ) == 1 );
2535
2536 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 1 ) == 1 );
2537
2538 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 2 ) == 2 );
2539 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 3 ) == 3 );
2540
2541 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 1 ) == 1 );
2542 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 2 ) == 2 );
2543
2544 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 5 ) == 5 );
2545 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, 8 ) == 8 );
2546
2547 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 3 ) == 3 );
2548
2549 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 5 ) == 5 );
2550
2551 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, 8 ) == 8 );
2552
2553exit:
2554 mbedtls_test_message_queue_free( &queue );
2555}
2556/* END_CASE */
2557
2558/* BEGIN_CASE */
2559void ssl_message_queue_insufficient_buffer( )
2560{
2561 mbedtls_test_message_queue queue;
2562 size_t message_len = 10;
2563 size_t buffer_len = 5;
2564
2565 mbedtls_test_message_queue_setup( &queue, 1 );
2566
2567 /* Popping without a sufficient buffer */
2568 TEST_ASSERT( mbedtls_test_message_queue_push_info( &queue, message_len )
2569 == (int) message_len );
2570 TEST_ASSERT( mbedtls_test_message_queue_pop_info( &queue, buffer_len )
2571 == (int) buffer_len );
2572exit:
2573 mbedtls_test_message_queue_free( &queue );
2574}
2575/* END_CASE */
2576
Andrzej Kurekbc483de2020-01-22 03:40:00 -05002577/* BEGIN_CASE */
2578void ssl_message_mock_uninitialized( )
2579{
2580 enum { MSGLEN = 10 };
2581 unsigned char message[MSGLEN], received[MSGLEN];
2582 mbedtls_mock_socket client, server;
2583 mbedtls_test_message_queue server_queue, client_queue;
2584 mbedtls_test_message_socket_context server_context, client_context;
2585
2586 /* Send with a NULL context */
2587 TEST_ASSERT( mbedtls_mock_tcp_send_msg( NULL, message, MSGLEN )
2588 == MBEDTLS_TEST_ERROR_CONTEXT_ERROR );
2589
2590 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( NULL, message, MSGLEN )
2591 == MBEDTLS_TEST_ERROR_CONTEXT_ERROR );
2592
2593 TEST_ASSERT( mbedtls_message_socket_setup( &server_queue, &client_queue, 1,
2594 &server,
2595 &server_context ) == 0 );
2596
2597 TEST_ASSERT( mbedtls_message_socket_setup( &client_queue, &server_queue, 1,
2598 &client,
2599 &client_context ) == 0 );
2600
2601 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message, MSGLEN )
2602 == MBEDTLS_TEST_ERROR_SEND_FAILED );
2603
2604 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
Andrzej Kurekf46b9122020-02-07 08:19:00 -05002605 == MBEDTLS_ERR_SSL_WANT_READ );
Andrzej Kurekbc483de2020-01-22 03:40:00 -05002606
2607 /* Push directly to a queue to later simulate a disconnected behavior */
2608 TEST_ASSERT( mbedtls_test_message_queue_push_info( &server_queue, MSGLEN )
2609 == MSGLEN );
2610
2611 /* Test if there's an error when trying to read from a disconnected
2612 * socket */
2613 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
2614 == MBEDTLS_TEST_ERROR_RECV_FAILED );
2615 exit:
2616 mbedtls_message_socket_close( &server_context );
2617 mbedtls_message_socket_close( &client_context );
2618}
2619/* END_CASE */
2620
2621/* BEGIN_CASE */
2622void ssl_message_mock_basic( )
2623{
2624 enum { MSGLEN = 10 };
2625 unsigned char message[MSGLEN], received[MSGLEN];
2626 mbedtls_mock_socket client, server;
2627 unsigned i;
2628 mbedtls_test_message_queue server_queue, client_queue;
2629 mbedtls_test_message_socket_context server_context, client_context;
2630
2631 TEST_ASSERT( mbedtls_message_socket_setup( &server_queue, &client_queue, 1,
2632 &server,
2633 &server_context ) == 0 );
2634
2635 TEST_ASSERT( mbedtls_message_socket_setup( &client_queue, &server_queue, 1,
2636 &client,
2637 &client_context ) == 0 );
2638
2639 /* Fill up the buffer with structured data so that unwanted changes
2640 * can be detected */
2641 for( i = 0; i < MSGLEN; i++ )
2642 {
2643 message[i] = i & 0xFF;
2644 }
2645 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
2646 MSGLEN ) );
2647
2648 /* Send the message to the server */
2649 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2650 MSGLEN ) == MSGLEN );
2651
2652 /* Read from the server */
2653 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
2654 == MSGLEN );
2655
2656 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2657 memset( received, 0, MSGLEN );
2658
2659 /* Send the message to the client */
2660 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &server_context, message,
2661 MSGLEN ) == MSGLEN );
2662
2663 /* Read from the client */
2664 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &client_context, received, MSGLEN )
2665 == MSGLEN );
2666 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2667
2668 exit:
2669 mbedtls_message_socket_close( &server_context );
2670 mbedtls_message_socket_close( &client_context );
2671}
2672/* END_CASE */
2673
2674/* BEGIN_CASE */
2675void ssl_message_mock_queue_overflow_underflow( )
2676{
2677 enum { MSGLEN = 10 };
2678 unsigned char message[MSGLEN], received[MSGLEN];
2679 mbedtls_mock_socket client, server;
2680 unsigned i;
2681 mbedtls_test_message_queue server_queue, client_queue;
2682 mbedtls_test_message_socket_context server_context, client_context;
2683
2684 TEST_ASSERT( mbedtls_message_socket_setup( &server_queue, &client_queue, 2,
2685 &server,
2686 &server_context ) == 0 );
2687
2688 TEST_ASSERT( mbedtls_message_socket_setup( &client_queue, &server_queue, 2,
2689 &client,
2690 &client_context ) == 0 );
2691
2692 /* Fill up the buffer with structured data so that unwanted changes
2693 * can be detected */
2694 for( i = 0; i < MSGLEN; i++ )
2695 {
2696 message[i] = i & 0xFF;
2697 }
2698 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
2699 MSGLEN*2 ) );
2700
2701 /* Send three message to the server, last one with an error */
2702 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2703 MSGLEN - 1 ) == MSGLEN - 1 );
2704
2705 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2706 MSGLEN ) == MSGLEN );
2707
2708 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2709 MSGLEN )
Andrzej Kurekf46b9122020-02-07 08:19:00 -05002710 == MBEDTLS_ERR_SSL_WANT_WRITE );
Andrzej Kurekbc483de2020-01-22 03:40:00 -05002711
2712 /* Read three messages from the server, last one with an error */
2713 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received,
2714 MSGLEN - 1 ) == MSGLEN - 1 );
2715
2716 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
2717 == MSGLEN );
2718
2719 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2720
2721 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
Andrzej Kurekf46b9122020-02-07 08:19:00 -05002722 == MBEDTLS_ERR_SSL_WANT_READ );
Andrzej Kurekbc483de2020-01-22 03:40:00 -05002723
2724 exit:
2725 mbedtls_message_socket_close( &server_context );
2726 mbedtls_message_socket_close( &client_context );
2727}
2728/* END_CASE */
2729
2730/* BEGIN_CASE */
2731void ssl_message_mock_socket_overflow( )
2732{
2733 enum { MSGLEN = 10 };
2734 unsigned char message[MSGLEN], received[MSGLEN];
2735 mbedtls_mock_socket client, server;
2736 unsigned i;
2737 mbedtls_test_message_queue server_queue, client_queue;
2738 mbedtls_test_message_socket_context server_context, client_context;
2739
2740 TEST_ASSERT( mbedtls_message_socket_setup( &server_queue, &client_queue, 2,
2741 &server,
2742 &server_context ) == 0 );
2743
2744 TEST_ASSERT( mbedtls_message_socket_setup( &client_queue, &server_queue, 2,
2745 &client,
2746 &client_context ) == 0 );
2747
2748 /* Fill up the buffer with structured data so that unwanted changes
2749 * can be detected */
2750 for( i = 0; i < MSGLEN; i++ )
2751 {
2752 message[i] = i & 0xFF;
2753 }
2754 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
2755 MSGLEN ) );
2756
2757 /* Send two message to the server, second one with an error */
2758 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2759 MSGLEN ) == MSGLEN );
2760
2761 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2762 MSGLEN )
2763 == MBEDTLS_TEST_ERROR_SEND_FAILED );
2764
2765 /* Read the only message from the server */
2766 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
2767 == MSGLEN );
2768
2769 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2770
2771 exit:
2772 mbedtls_message_socket_close( &server_context );
2773 mbedtls_message_socket_close( &client_context );
2774}
2775/* END_CASE */
2776
2777/* BEGIN_CASE */
2778void ssl_message_mock_truncated( )
2779{
2780 enum { MSGLEN = 10 };
2781 unsigned char message[MSGLEN], received[MSGLEN];
2782 mbedtls_mock_socket client, server;
2783 unsigned i;
2784 mbedtls_test_message_queue server_queue, client_queue;
2785 mbedtls_test_message_socket_context server_context, client_context;
2786
2787 TEST_ASSERT( mbedtls_message_socket_setup( &server_queue, &client_queue, 2,
2788 &server,
2789 &server_context ) == 0 );
2790
2791 TEST_ASSERT( mbedtls_message_socket_setup( &client_queue, &server_queue, 2,
2792 &client,
2793 &client_context ) == 0 );
2794
2795 memset( received, 0, MSGLEN );
2796 /* Fill up the buffer with structured data so that unwanted changes
2797 * can be detected */
2798 for( i = 0; i < MSGLEN; i++ )
2799 {
2800 message[i] = i & 0xFF;
2801 }
2802 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
2803 2 * MSGLEN ) );
2804
2805 /* Send two messages to the server, the second one small enough to fit in the
2806 * receiver's buffer. */
2807 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2808 MSGLEN ) == MSGLEN );
2809 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2810 MSGLEN / 2 ) == MSGLEN / 2 );
2811 /* Read a truncated message from the server */
2812 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN/2 )
2813 == MSGLEN/2 );
2814
2815 /* Test that the first half of the message is valid, and second one isn't */
2816 TEST_ASSERT( memcmp( message, received, MSGLEN/2 ) == 0 );
2817 TEST_ASSERT( memcmp( message + MSGLEN/2, received + MSGLEN/2, MSGLEN/2 )
2818 != 0 );
2819 memset( received, 0, MSGLEN );
2820
2821 /* Read a full message from the server */
2822 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN/2 )
2823 == MSGLEN / 2 );
2824
2825 /* Test that the first half of the message is valid */
2826 TEST_ASSERT( memcmp( message, received, MSGLEN/2 ) == 0 );
2827
2828 exit:
2829 mbedtls_message_socket_close( &server_context );
2830 mbedtls_message_socket_close( &client_context );
2831}
2832/* END_CASE */
2833
2834/* BEGIN_CASE */
2835void ssl_message_mock_socket_read_error( )
2836{
2837 enum { MSGLEN = 10 };
2838 unsigned char message[MSGLEN], received[MSGLEN];
2839 mbedtls_mock_socket client, server;
2840 unsigned i;
2841 mbedtls_test_message_queue server_queue, client_queue;
2842 mbedtls_test_message_socket_context server_context, client_context;
2843
2844 TEST_ASSERT( mbedtls_message_socket_setup( &server_queue, &client_queue, 1,
2845 &server,
2846 &server_context ) == 0 );
2847
2848 TEST_ASSERT( mbedtls_message_socket_setup( &client_queue, &server_queue, 1,
2849 &client,
2850 &client_context ) == 0 );
2851
2852 /* Fill up the buffer with structured data so that unwanted changes
2853 * can be detected */
2854 for( i = 0; i < MSGLEN; i++ )
2855 {
2856 message[i] = i & 0xFF;
2857 }
2858 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
2859 MSGLEN ) );
2860
2861 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2862 MSGLEN ) == MSGLEN );
2863
2864 /* Force a read error by disconnecting the socket by hand */
2865 server.status = 0;
2866 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
2867 == MBEDTLS_TEST_ERROR_RECV_FAILED );
2868 /* Return to a valid state */
2869 server.status = MBEDTLS_MOCK_SOCKET_CONNECTED;
2870
2871 memset( received, 0, sizeof( received ) );
2872
2873 /* Test that even though the server tried to read once disconnected, the
2874 * continuity is preserved */
2875 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
2876 == MSGLEN );
2877
2878 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2879
2880 exit:
2881 mbedtls_message_socket_close( &server_context );
2882 mbedtls_message_socket_close( &client_context );
2883}
2884/* END_CASE */
2885
2886/* BEGIN_CASE */
2887void ssl_message_mock_interleaved_one_way( )
2888{
2889 enum { MSGLEN = 10 };
2890 unsigned char message[MSGLEN], received[MSGLEN];
2891 mbedtls_mock_socket client, server;
2892 unsigned i;
2893 mbedtls_test_message_queue server_queue, client_queue;
2894 mbedtls_test_message_socket_context server_context, client_context;
2895
2896 TEST_ASSERT( mbedtls_message_socket_setup( &server_queue, &client_queue, 3,
2897 &server,
2898 &server_context ) == 0 );
2899
2900 TEST_ASSERT( mbedtls_message_socket_setup( &client_queue, &server_queue, 3,
2901 &client,
2902 &client_context ) == 0 );
2903
2904 /* Fill up the buffer with structured data so that unwanted changes
2905 * can be detected */
2906 for( i = 0; i < MSGLEN; i++ )
2907 {
2908 message[i] = i & 0xFF;
2909 }
2910 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
2911 MSGLEN*3 ) );
2912
2913 /* Interleaved test - [2 sends, 1 read] twice, and then two reads
2914 * (to wrap around the buffer) */
2915 for( i = 0; i < 2; i++ )
2916 {
2917 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2918 MSGLEN ) == MSGLEN );
2919
2920 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2921 MSGLEN ) == MSGLEN );
2922
2923 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received,
2924 MSGLEN ) == MSGLEN );
2925 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2926 memset( received, 0, sizeof( received ) );
2927 }
2928
2929 for( i = 0; i < 2; i++ )
2930 {
2931 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received,
2932 MSGLEN ) == MSGLEN );
2933
2934 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2935 }
2936 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
Andrzej Kurekf46b9122020-02-07 08:19:00 -05002937 == MBEDTLS_ERR_SSL_WANT_READ );
Andrzej Kurekbc483de2020-01-22 03:40:00 -05002938 exit:
2939 mbedtls_message_socket_close( &server_context );
2940 mbedtls_message_socket_close( &client_context );
2941}
2942/* END_CASE */
2943
2944/* BEGIN_CASE */
2945void ssl_message_mock_interleaved_two_ways( )
2946{
2947 enum { MSGLEN = 10 };
2948 unsigned char message[MSGLEN], received[MSGLEN];
2949 mbedtls_mock_socket client, server;
2950 unsigned i;
2951 mbedtls_test_message_queue server_queue, client_queue;
2952 mbedtls_test_message_socket_context server_context, client_context;
2953
2954 TEST_ASSERT( mbedtls_message_socket_setup( &server_queue, &client_queue, 3,
2955 &server,
2956 &server_context ) == 0 );
2957
2958 TEST_ASSERT( mbedtls_message_socket_setup( &client_queue, &server_queue, 3,
2959 &client,
2960 &client_context ) == 0 );
2961
2962 /* Fill up the buffer with structured data so that unwanted changes
2963 * can be detected */
2964 for( i = 0; i < MSGLEN; i++ )
2965 {
2966 message[i] = i & 0xFF;
2967 }
2968 TEST_ASSERT( 0 == mbedtls_mock_socket_connect( &client, &server,
2969 MSGLEN*3 ) );
2970
2971 /* Interleaved test - [2 sends, 1 read] twice, both ways, and then two reads
2972 * (to wrap around the buffer) both ways. */
2973 for( i = 0; i < 2; i++ )
2974 {
2975 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2976 MSGLEN ) == MSGLEN );
2977
2978 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &client_context, message,
2979 MSGLEN ) == MSGLEN );
2980
2981 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &server_context, message,
2982 MSGLEN ) == MSGLEN );
2983
2984 TEST_ASSERT( mbedtls_mock_tcp_send_msg( &server_context, message,
2985 MSGLEN ) == MSGLEN );
2986
2987 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received,
2988 MSGLEN ) == MSGLEN );
2989
2990 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2991
2992 memset( received, 0, sizeof( received ) );
2993
2994 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &client_context, received,
2995 MSGLEN ) == MSGLEN );
2996
2997 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
2998
2999 memset( received, 0, sizeof( received ) );
3000 }
3001
3002 for( i = 0; i < 2; i++ )
3003 {
3004 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received,
3005 MSGLEN ) == MSGLEN );
3006
3007 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
3008 memset( received, 0, sizeof( received ) );
3009
3010 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &client_context, received,
3011 MSGLEN ) == MSGLEN );
3012
3013 TEST_ASSERT( memcmp( message, received, MSGLEN ) == 0 );
3014 memset( received, 0, sizeof( received ) );
3015 }
3016
3017 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &server_context, received, MSGLEN )
Andrzej Kurekf46b9122020-02-07 08:19:00 -05003018 == MBEDTLS_ERR_SSL_WANT_READ );
Andrzej Kurekbc483de2020-01-22 03:40:00 -05003019
3020 TEST_ASSERT( mbedtls_mock_tcp_recv_msg( &client_context, received, MSGLEN )
Andrzej Kurekf46b9122020-02-07 08:19:00 -05003021 == MBEDTLS_ERR_SSL_WANT_READ );
Andrzej Kurekbc483de2020-01-22 03:40:00 -05003022 exit:
3023 mbedtls_message_socket_close( &server_context );
3024 mbedtls_message_socket_close( &client_context );
3025}
3026/* END_CASE */
3027
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02003028/* BEGIN_CASE depends_on:MBEDTLS_SSL_DTLS_ANTI_REPLAY */
Azim Khan5fcca462018-06-29 11:05:32 +01003029void ssl_dtls_replay( data_t * prevs, data_t * new, int ret )
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02003030{
Azim Khand30ca132017-06-09 04:32:58 +01003031 uint32_t len = 0;
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02003032 mbedtls_ssl_context ssl;
Manuel Pégourié-Gonnarddef0bbe2015-05-04 14:56:36 +02003033 mbedtls_ssl_config conf;
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02003034
Manuel Pégourié-Gonnard41d479e2015-04-29 00:48:22 +02003035 mbedtls_ssl_init( &ssl );
Manuel Pégourié-Gonnarddef0bbe2015-05-04 14:56:36 +02003036 mbedtls_ssl_config_init( &conf );
Manuel Pégourié-Gonnard41d479e2015-04-29 00:48:22 +02003037
Manuel Pégourié-Gonnard419d5ae2015-05-04 19:32:36 +02003038 TEST_ASSERT( mbedtls_ssl_config_defaults( &conf,
3039 MBEDTLS_SSL_IS_CLIENT,
Manuel Pégourié-Gonnardb31c5f62015-06-17 13:53:47 +02003040 MBEDTLS_SSL_TRANSPORT_DATAGRAM,
3041 MBEDTLS_SSL_PRESET_DEFAULT ) == 0 );
Manuel Pégourié-Gonnarddef0bbe2015-05-04 14:56:36 +02003042 TEST_ASSERT( mbedtls_ssl_setup( &ssl, &conf ) == 0 );
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02003043
3044 /* Read previous record numbers */
Azim Khand30ca132017-06-09 04:32:58 +01003045 for( len = 0; len < prevs->len; len += 6 )
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02003046 {
Azim Khand30ca132017-06-09 04:32:58 +01003047 memcpy( ssl.in_ctr + 2, prevs->x + len, 6 );
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02003048 mbedtls_ssl_dtls_replay_update( &ssl );
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02003049 }
3050
3051 /* Check new number */
Azim Khand30ca132017-06-09 04:32:58 +01003052 memcpy( ssl.in_ctr + 2, new->x, 6 );
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02003053 TEST_ASSERT( mbedtls_ssl_dtls_replay_check( &ssl ) == ret );
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02003054
Manuel Pégourié-Gonnard2cf5a7c2015-04-08 12:49:31 +02003055 mbedtls_ssl_free( &ssl );
Manuel Pégourié-Gonnarddef0bbe2015-05-04 14:56:36 +02003056 mbedtls_ssl_config_free( &conf );
Manuel Pégourié-Gonnard4956fd72014-09-24 11:13:44 +02003057}
3058/* END_CASE */
Hanno Beckerb25c0c72017-05-05 11:24:30 +01003059
3060/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C */
3061void ssl_set_hostname_twice( char *hostname0, char *hostname1 )
3062{
3063 mbedtls_ssl_context ssl;
3064 mbedtls_ssl_init( &ssl );
3065
3066 TEST_ASSERT( mbedtls_ssl_set_hostname( &ssl, hostname0 ) == 0 );
3067 TEST_ASSERT( mbedtls_ssl_set_hostname( &ssl, hostname1 ) == 0 );
3068
3069 mbedtls_ssl_free( &ssl );
3070}
Darryl Green11999bb2018-03-13 15:22:58 +00003071/* END_CASE */
Hanno Beckera18d1322018-01-03 14:27:32 +00003072
3073/* BEGIN_CASE */
3074void ssl_crypt_record( int cipher_type, int hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01003075 int etm, int tag_mode, int ver,
3076 int cid0_len, int cid1_len )
Hanno Beckera18d1322018-01-03 14:27:32 +00003077{
3078 /*
3079 * Test several record encryptions and decryptions
3080 * with plenty of space before and after the data
3081 * within the record buffer.
3082 */
3083
3084 int ret;
3085 int num_records = 16;
3086 mbedtls_ssl_context ssl; /* ONLY for debugging */
3087
3088 mbedtls_ssl_transform t0, t1;
Hanno Becker81e16a32019-03-01 11:21:44 +00003089 unsigned char *buf = NULL;
Hanno Beckera18d1322018-01-03 14:27:32 +00003090 size_t const buflen = 512;
3091 mbedtls_record rec, rec_backup;
3092
3093 mbedtls_ssl_init( &ssl );
3094 mbedtls_ssl_transform_init( &t0 );
3095 mbedtls_ssl_transform_init( &t1 );
3096 TEST_ASSERT( build_transforms( &t0, &t1, cipher_type, hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01003097 etm, tag_mode, ver,
3098 (size_t) cid0_len,
3099 (size_t) cid1_len ) == 0 );
Hanno Beckera18d1322018-01-03 14:27:32 +00003100
Hanno Becker3ee54212019-04-04 16:31:26 +01003101 TEST_ASSERT( ( buf = mbedtls_calloc( 1, buflen ) ) != NULL );
Hanno Beckera18d1322018-01-03 14:27:32 +00003102
3103 while( num_records-- > 0 )
3104 {
3105 mbedtls_ssl_transform *t_dec, *t_enc;
3106 /* Take turns in who's sending and who's receiving. */
3107 if( num_records % 3 == 0 )
3108 {
3109 t_dec = &t0;
3110 t_enc = &t1;
3111 }
3112 else
3113 {
3114 t_dec = &t1;
3115 t_enc = &t0;
3116 }
3117
3118 /*
3119 * The record header affects the transformation in two ways:
3120 * 1) It determines the AEAD additional data
3121 * 2) The record counter sometimes determines the IV.
3122 *
3123 * Apart from that, the fields don't have influence.
3124 * In particular, it is currently not the responsibility
3125 * of ssl_encrypt/decrypt_buf to check if the transform
3126 * version matches the record version, or that the
3127 * type is sensible.
3128 */
3129
3130 memset( rec.ctr, num_records, sizeof( rec.ctr ) );
3131 rec.type = 42;
3132 rec.ver[0] = num_records;
3133 rec.ver[1] = num_records;
Hanno Beckera0e20d02019-05-15 14:03:01 +01003134#if defined(MBEDTLS_SSL_DTLS_CONNECTION_ID)
Hanno Beckerd856c822019-04-29 17:30:59 +01003135 rec.cid_len = 0;
Hanno Beckera0e20d02019-05-15 14:03:01 +01003136#endif /* MBEDTLS_SSL_DTLS_CONNECTION_ID */
Hanno Beckera18d1322018-01-03 14:27:32 +00003137
3138 rec.buf = buf;
3139 rec.buf_len = buflen;
3140 rec.data_offset = 16;
3141 /* Make sure to vary the length to exercise different
3142 * paddings. */
3143 rec.data_len = 1 + num_records;
3144
3145 memset( rec.buf + rec.data_offset, 42, rec.data_len );
3146
3147 /* Make a copy for later comparison */
3148 rec_backup = rec;
3149
3150 /* Encrypt record */
3151 ret = mbedtls_ssl_encrypt_buf( &ssl, t_enc, &rec,
3152 rnd_std_rand, NULL );
3153 TEST_ASSERT( ret == 0 || ret == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
3154 if( ret != 0 )
3155 {
3156 continue;
3157 }
3158
3159 /* Decrypt record with t_dec */
Hanno Beckerd856c822019-04-29 17:30:59 +01003160 ret = mbedtls_ssl_decrypt_buf( &ssl, t_dec, &rec );
3161 TEST_ASSERT( ret == 0 );
Hanno Beckera18d1322018-01-03 14:27:32 +00003162
3163 /* Compare results */
3164 TEST_ASSERT( rec.type == rec_backup.type );
3165 TEST_ASSERT( memcmp( rec.ctr, rec_backup.ctr, 8 ) == 0 );
3166 TEST_ASSERT( rec.ver[0] == rec_backup.ver[0] );
3167 TEST_ASSERT( rec.ver[1] == rec_backup.ver[1] );
3168 TEST_ASSERT( rec.data_len == rec_backup.data_len );
3169 TEST_ASSERT( rec.data_offset == rec_backup.data_offset );
3170 TEST_ASSERT( memcmp( rec.buf + rec.data_offset,
3171 rec_backup.buf + rec_backup.data_offset,
3172 rec.data_len ) == 0 );
3173 }
3174
Hanno Becker81e16a32019-03-01 11:21:44 +00003175exit:
3176
Hanno Beckera18d1322018-01-03 14:27:32 +00003177 /* Cleanup */
3178 mbedtls_ssl_free( &ssl );
3179 mbedtls_ssl_transform_free( &t0 );
3180 mbedtls_ssl_transform_free( &t1 );
3181
Hanno Becker3ee54212019-04-04 16:31:26 +01003182 mbedtls_free( buf );
Hanno Beckera18d1322018-01-03 14:27:32 +00003183}
3184/* END_CASE */
Hanno Beckerb3268da2018-01-05 15:20:24 +00003185
3186/* BEGIN_CASE */
3187void ssl_crypt_record_small( int cipher_type, int hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01003188 int etm, int tag_mode, int ver,
3189 int cid0_len, int cid1_len )
Hanno Beckerb3268da2018-01-05 15:20:24 +00003190{
3191 /*
3192 * Test pairs of encryption and decryption with an increasing
3193 * amount of space in the record buffer - in more detail:
3194 * 1) Try to encrypt with 0, 1, 2, ... bytes available
3195 * in front of the plaintext, and expect the encryption
3196 * to succeed starting from some offset. Always keep
3197 * enough space in the end of the buffer.
3198 * 2) Try to encrypt with 0, 1, 2, ... bytes available
3199 * at the end of the plaintext, and expect the encryption
3200 * to succeed starting from some offset. Always keep
3201 * enough space at the beginning of the buffer.
3202 * 3) Try to encrypt with 0, 1, 2, ... bytes available
3203 * both at the front and end of the plaintext,
3204 * and expect the encryption to succeed starting from
3205 * some offset.
3206 *
3207 * If encryption succeeds, check that decryption succeeds
3208 * and yields the original record.
3209 */
3210
3211 mbedtls_ssl_context ssl; /* ONLY for debugging */
3212
3213 mbedtls_ssl_transform t0, t1;
Hanno Becker81e16a32019-03-01 11:21:44 +00003214 unsigned char *buf = NULL;
Hanno Beckerd856c822019-04-29 17:30:59 +01003215 size_t const buflen = 256;
Hanno Beckerb3268da2018-01-05 15:20:24 +00003216 mbedtls_record rec, rec_backup;
3217
3218 int ret;
Hanno Beckerd856c822019-04-29 17:30:59 +01003219 int mode; /* Mode 1, 2 or 3 as explained above */
3220 size_t offset; /* Available space at beginning/end/both */
3221 size_t threshold = 96; /* Maximum offset to test against */
Hanno Beckerb3268da2018-01-05 15:20:24 +00003222
Hanno Beckerd856c822019-04-29 17:30:59 +01003223 size_t default_pre_padding = 64; /* Pre-padding to use in mode 2 */
3224 size_t default_post_padding = 128; /* Post-padding to use in mode 1 */
Hanno Beckerb3268da2018-01-05 15:20:24 +00003225
3226 int seen_success; /* Indicates if in the current mode we've
3227 * already seen a successful test. */
3228
3229 mbedtls_ssl_init( &ssl );
3230 mbedtls_ssl_transform_init( &t0 );
3231 mbedtls_ssl_transform_init( &t1 );
3232 TEST_ASSERT( build_transforms( &t0, &t1, cipher_type, hash_id,
Hanno Beckerd856c822019-04-29 17:30:59 +01003233 etm, tag_mode, ver,
3234 (size_t) cid0_len,
3235 (size_t) cid1_len ) == 0 );
Hanno Beckerb3268da2018-01-05 15:20:24 +00003236
Hanno Becker3ee54212019-04-04 16:31:26 +01003237 TEST_ASSERT( ( buf = mbedtls_calloc( 1, buflen ) ) != NULL );
Hanno Beckerb3268da2018-01-05 15:20:24 +00003238
3239 for( mode=1; mode <= 3; mode++ )
3240 {
3241 seen_success = 0;
3242 for( offset=0; offset <= threshold; offset++ )
3243 {
3244 mbedtls_ssl_transform *t_dec, *t_enc;
Hanno Becker6c87b3f2019-04-29 17:24:44 +01003245 t_dec = &t0;
3246 t_enc = &t1;
Hanno Beckerb3268da2018-01-05 15:20:24 +00003247
3248 memset( rec.ctr, offset, sizeof( rec.ctr ) );
3249 rec.type = 42;
3250 rec.ver[0] = offset;
3251 rec.ver[1] = offset;
3252 rec.buf = buf;
3253 rec.buf_len = buflen;
Hanno Beckera0e20d02019-05-15 14:03:01 +01003254#if defined(MBEDTLS_SSL_DTLS_CONNECTION_ID)
Hanno Beckerd856c822019-04-29 17:30:59 +01003255 rec.cid_len = 0;
Hanno Beckera0e20d02019-05-15 14:03:01 +01003256#endif /* MBEDTLS_SSL_DTLS_CONNECTION_ID */
Hanno Beckerb3268da2018-01-05 15:20:24 +00003257
3258 switch( mode )
3259 {
3260 case 1: /* Space in the beginning */
3261 rec.data_offset = offset;
3262 rec.data_len = buflen - offset - default_post_padding;
3263 break;
3264
3265 case 2: /* Space in the end */
3266 rec.data_offset = default_pre_padding;
3267 rec.data_len = buflen - default_pre_padding - offset;
3268 break;
3269
3270 case 3: /* Space in the beginning and end */
3271 rec.data_offset = offset;
3272 rec.data_len = buflen - 2 * offset;
3273 break;
3274
3275 default:
3276 TEST_ASSERT( 0 );
3277 break;
3278 }
3279
3280 memset( rec.buf + rec.data_offset, 42, rec.data_len );
3281
3282 /* Make a copy for later comparison */
3283 rec_backup = rec;
3284
3285 /* Encrypt record */
3286 ret = mbedtls_ssl_encrypt_buf( &ssl, t_enc, &rec, rnd_std_rand, NULL );
3287
3288 if( ( mode == 1 || mode == 2 ) && seen_success )
3289 {
3290 TEST_ASSERT( ret == 0 );
3291 }
3292 else
3293 {
3294 TEST_ASSERT( ret == 0 || ret == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
3295 if( ret == 0 )
3296 seen_success = 1;
3297 }
3298
3299 if( ret != 0 )
3300 continue;
3301
3302 /* Decrypt record with t_dec */
3303 TEST_ASSERT( mbedtls_ssl_decrypt_buf( &ssl, t_dec, &rec ) == 0 );
3304
3305 /* Compare results */
3306 TEST_ASSERT( rec.type == rec_backup.type );
3307 TEST_ASSERT( memcmp( rec.ctr, rec_backup.ctr, 8 ) == 0 );
3308 TEST_ASSERT( rec.ver[0] == rec_backup.ver[0] );
3309 TEST_ASSERT( rec.ver[1] == rec_backup.ver[1] );
3310 TEST_ASSERT( rec.data_len == rec_backup.data_len );
3311 TEST_ASSERT( rec.data_offset == rec_backup.data_offset );
3312 TEST_ASSERT( memcmp( rec.buf + rec.data_offset,
3313 rec_backup.buf + rec_backup.data_offset,
3314 rec.data_len ) == 0 );
3315 }
3316
3317 TEST_ASSERT( seen_success == 1 );
3318 }
3319
Hanno Becker81e16a32019-03-01 11:21:44 +00003320exit:
3321
Hanno Beckerb3268da2018-01-05 15:20:24 +00003322 /* Cleanup */
3323 mbedtls_ssl_free( &ssl );
3324 mbedtls_ssl_transform_free( &t0 );
3325 mbedtls_ssl_transform_free( &t1 );
3326
Hanno Becker3ee54212019-04-04 16:31:26 +01003327 mbedtls_free( buf );
Hanno Beckerb3268da2018-01-05 15:20:24 +00003328}
3329/* END_CASE */
Ron Eldor824ad7b2019-05-13 14:09:00 +03003330
3331/* BEGIN_CASE */
3332void ssl_tls_prf( int type, data_t * secret, data_t * random,
3333 char *label, data_t *result_hex_str, int exp_ret )
3334{
3335 unsigned char *output;
3336
3337 output = mbedtls_calloc( 1, result_hex_str->len );
3338 if( output == NULL )
3339 goto exit;
3340
Ron Eldor6b9b1b82019-05-15 17:04:33 +03003341#if defined(MBEDTLS_USE_PSA_CRYPTO)
3342 TEST_ASSERT( psa_crypto_init() == 0 );
3343#endif
3344
Ron Eldor824ad7b2019-05-13 14:09:00 +03003345 TEST_ASSERT( mbedtls_ssl_tls_prf( type, secret->x, secret->len,
3346 label, random->x, random->len,
3347 output, result_hex_str->len ) == exp_ret );
3348
3349 if( exp_ret == 0 )
3350 {
3351 TEST_ASSERT( hexcmp( output, result_hex_str->x,
3352 result_hex_str->len, result_hex_str->len ) == 0 );
3353 }
3354exit:
3355
3356 mbedtls_free( output );
3357}
3358/* END_CASE */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02003359
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02003360/* BEGIN_CASE */
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003361void ssl_serialize_session_save_load( int ticket_len, char *crt_file )
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02003362{
3363 mbedtls_ssl_session original, restored;
3364 unsigned char *buf = NULL;
3365 size_t len;
3366
3367 /*
3368 * Test that a save-load pair is the identity
3369 */
3370
3371 mbedtls_ssl_session_init( &original );
3372 mbedtls_ssl_session_init( &restored );
3373
3374 /* Prepare a dummy session to work on */
3375 TEST_ASSERT( ssl_populate_session( &original, ticket_len, crt_file ) == 0 );
3376
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003377 /* Serialize it */
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02003378 TEST_ASSERT( mbedtls_ssl_session_save( &original, NULL, 0, &len )
3379 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
3380 TEST_ASSERT( ( buf = mbedtls_calloc( 1, len ) ) != NULL );
3381 TEST_ASSERT( mbedtls_ssl_session_save( &original, buf, len, &len )
3382 == 0 );
3383
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003384 /* Restore session from serialized data */
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02003385 TEST_ASSERT( mbedtls_ssl_session_load( &restored, buf, len) == 0 );
3386
3387 /*
3388 * Make sure both session structures are identical
3389 */
3390#if defined(MBEDTLS_HAVE_TIME)
3391 TEST_ASSERT( original.start == restored.start );
3392#endif
3393 TEST_ASSERT( original.ciphersuite == restored.ciphersuite );
3394 TEST_ASSERT( original.compression == restored.compression );
3395 TEST_ASSERT( original.id_len == restored.id_len );
3396 TEST_ASSERT( memcmp( original.id,
3397 restored.id, sizeof( original.id ) ) == 0 );
3398 TEST_ASSERT( memcmp( original.master,
3399 restored.master, sizeof( original.master ) ) == 0 );
3400
3401#if defined(MBEDTLS_X509_CRT_PARSE_C)
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02003402#if defined(MBEDTLS_SSL_KEEP_PEER_CERTIFICATE)
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02003403 TEST_ASSERT( ( original.peer_cert == NULL ) ==
3404 ( restored.peer_cert == NULL ) );
3405 if( original.peer_cert != NULL )
3406 {
3407 TEST_ASSERT( original.peer_cert->raw.len ==
3408 restored.peer_cert->raw.len );
3409 TEST_ASSERT( memcmp( original.peer_cert->raw.p,
3410 restored.peer_cert->raw.p,
3411 original.peer_cert->raw.len ) == 0 );
3412 }
Manuel Pégourié-Gonnardee13a732019-07-29 13:00:39 +02003413#else /* MBEDTLS_SSL_KEEP_PEER_CERTIFICATE */
3414 TEST_ASSERT( original.peer_cert_digest_type ==
3415 restored.peer_cert_digest_type );
3416 TEST_ASSERT( original.peer_cert_digest_len ==
3417 restored.peer_cert_digest_len );
3418 TEST_ASSERT( ( original.peer_cert_digest == NULL ) ==
3419 ( restored.peer_cert_digest == NULL ) );
3420 if( original.peer_cert_digest != NULL )
3421 {
3422 TEST_ASSERT( memcmp( original.peer_cert_digest,
3423 restored.peer_cert_digest,
3424 original.peer_cert_digest_len ) == 0 );
3425 }
3426#endif /* MBEDTLS_SSL_KEEP_PEER_CERTIFICATE */
3427#endif /* MBEDTLS_X509_CRT_PARSE_C */
Manuel Pégourié-Gonnardf9deaec2019-05-24 09:41:39 +02003428 TEST_ASSERT( original.verify_result == restored.verify_result );
3429
3430#if defined(MBEDTLS_SSL_SESSION_TICKETS) && defined(MBEDTLS_SSL_CLI_C)
3431 TEST_ASSERT( original.ticket_len == restored.ticket_len );
3432 if( original.ticket_len != 0 )
3433 {
3434 TEST_ASSERT( original.ticket != NULL );
3435 TEST_ASSERT( restored.ticket != NULL );
3436 TEST_ASSERT( memcmp( original.ticket,
3437 restored.ticket, original.ticket_len ) == 0 );
3438 }
3439 TEST_ASSERT( original.ticket_lifetime == restored.ticket_lifetime );
3440#endif
3441
3442#if defined(MBEDTLS_SSL_MAX_FRAGMENT_LENGTH)
3443 TEST_ASSERT( original.mfl_code == restored.mfl_code );
3444#endif
3445
3446#if defined(MBEDTLS_SSL_TRUNCATED_HMAC)
3447 TEST_ASSERT( original.trunc_hmac == restored.trunc_hmac );
3448#endif
3449
3450#if defined(MBEDTLS_SSL_ENCRYPT_THEN_MAC)
3451 TEST_ASSERT( original.encrypt_then_mac == restored.encrypt_then_mac );
3452#endif
3453
3454exit:
3455 mbedtls_ssl_session_free( &original );
3456 mbedtls_ssl_session_free( &restored );
3457 mbedtls_free( buf );
3458}
3459/* END_CASE */
3460
Manuel Pégourié-Gonnardaa755832019-06-03 10:53:47 +02003461/* BEGIN_CASE */
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003462void ssl_serialize_session_load_save( int ticket_len, char *crt_file )
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02003463{
3464 mbedtls_ssl_session session;
3465 unsigned char *buf1 = NULL, *buf2 = NULL;
3466 size_t len0, len1, len2;
3467
3468 /*
3469 * Test that a load-save pair is the identity
3470 */
3471
3472 mbedtls_ssl_session_init( &session );
3473
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02003474 /* Prepare a dummy session to work on */
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +02003475 TEST_ASSERT( ssl_populate_session( &session, ticket_len, crt_file ) == 0 );
Manuel Pégourié-Gonnard3caa6ca2019-05-23 10:06:14 +02003476
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003477 /* Get desired buffer size for serializing */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02003478 TEST_ASSERT( mbedtls_ssl_session_save( &session, NULL, 0, &len0 )
3479 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
3480
3481 /* Allocate first buffer */
3482 buf1 = mbedtls_calloc( 1, len0 );
3483 TEST_ASSERT( buf1 != NULL );
3484
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003485 /* Serialize to buffer and free live session */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02003486 TEST_ASSERT( mbedtls_ssl_session_save( &session, buf1, len0, &len1 )
3487 == 0 );
3488 TEST_ASSERT( len0 == len1 );
3489 mbedtls_ssl_session_free( &session );
3490
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003491 /* Restore session from serialized data */
Manuel Pégourié-Gonnard220403b2019-05-24 09:54:21 +02003492 TEST_ASSERT( mbedtls_ssl_session_load( &session, buf1, len1 ) == 0 );
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02003493
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003494 /* Allocate second buffer and serialize to it */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02003495 buf2 = mbedtls_calloc( 1, len0 );
Manuel Pégourié-Gonnardb4079902019-05-24 09:52:10 +02003496 TEST_ASSERT( buf2 != NULL );
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02003497 TEST_ASSERT( mbedtls_ssl_session_save( &session, buf2, len0, &len2 )
3498 == 0 );
3499
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003500 /* Make sure both serialized versions are identical */
Manuel Pégourié-Gonnard6eac11b2019-05-23 09:30:55 +02003501 TEST_ASSERT( len1 == len2 );
3502 TEST_ASSERT( memcmp( buf1, buf2, len1 ) == 0 );
3503
3504exit:
3505 mbedtls_ssl_session_free( &session );
3506 mbedtls_free( buf1 );
3507 mbedtls_free( buf2 );
3508}
3509/* END_CASE */
Manuel Pégourié-Gonnardf5fa0aa2019-05-23 10:38:11 +02003510
3511/* BEGIN_CASE */
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003512void ssl_serialize_session_save_buf_size( int ticket_len, char *crt_file )
Manuel Pégourié-Gonnardf5fa0aa2019-05-23 10:38:11 +02003513{
3514 mbedtls_ssl_session session;
3515 unsigned char *buf = NULL;
3516 size_t good_len, bad_len, test_len;
3517
3518 /*
3519 * Test that session_save() fails cleanly on small buffers
3520 */
3521
3522 mbedtls_ssl_session_init( &session );
3523
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003524 /* Prepare dummy session and get serialized size */
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +02003525 TEST_ASSERT( ssl_populate_session( &session, ticket_len, crt_file ) == 0 );
Manuel Pégourié-Gonnardf5fa0aa2019-05-23 10:38:11 +02003526 TEST_ASSERT( mbedtls_ssl_session_save( &session, NULL, 0, &good_len )
3527 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
3528
3529 /* Try all possible bad lengths */
3530 for( bad_len = 1; bad_len < good_len; bad_len++ )
3531 {
3532 /* Allocate exact size so that asan/valgrind can detect any overwrite */
3533 mbedtls_free( buf );
3534 TEST_ASSERT( ( buf = mbedtls_calloc( 1, bad_len ) ) != NULL );
3535 TEST_ASSERT( mbedtls_ssl_session_save( &session, buf, bad_len,
3536 &test_len )
3537 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
3538 TEST_ASSERT( test_len == good_len );
3539 }
3540
3541exit:
3542 mbedtls_ssl_session_free( &session );
3543 mbedtls_free( buf );
3544}
3545/* END_CASE */
Manuel Pégourié-Gonnarda3d831b2019-05-23 12:28:45 +02003546
3547/* BEGIN_CASE */
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003548void ssl_serialize_session_load_buf_size( int ticket_len, char *crt_file )
Manuel Pégourié-Gonnarda3d831b2019-05-23 12:28:45 +02003549{
3550 mbedtls_ssl_session session;
3551 unsigned char *good_buf = NULL, *bad_buf = NULL;
3552 size_t good_len, bad_len;
3553
3554 /*
3555 * Test that session_load() fails cleanly on small buffers
3556 */
3557
3558 mbedtls_ssl_session_init( &session );
3559
Manuel Pégourié-Gonnard686adb42019-06-03 09:55:16 +02003560 /* Prepare serialized session data */
Manuel Pégourié-Gonnard6b840702019-05-24 09:40:17 +02003561 TEST_ASSERT( ssl_populate_session( &session, ticket_len, crt_file ) == 0 );
Manuel Pégourié-Gonnarda3d831b2019-05-23 12:28:45 +02003562 TEST_ASSERT( mbedtls_ssl_session_save( &session, NULL, 0, &good_len )
3563 == MBEDTLS_ERR_SSL_BUFFER_TOO_SMALL );
3564 TEST_ASSERT( ( good_buf = mbedtls_calloc( 1, good_len ) ) != NULL );
3565 TEST_ASSERT( mbedtls_ssl_session_save( &session, good_buf, good_len,
3566 &good_len ) == 0 );
3567 mbedtls_ssl_session_free( &session );
3568
3569 /* Try all possible bad lengths */
3570 for( bad_len = 0; bad_len < good_len; bad_len++ )
3571 {
3572 /* Allocate exact size so that asan/valgrind can detect any overread */
3573 mbedtls_free( bad_buf );
3574 bad_buf = mbedtls_calloc( 1, bad_len ? bad_len : 1 );
3575 TEST_ASSERT( bad_buf != NULL );
3576 memcpy( bad_buf, good_buf, bad_len );
3577
3578 TEST_ASSERT( mbedtls_ssl_session_load( &session, bad_buf, bad_len )
3579 == MBEDTLS_ERR_SSL_BAD_INPUT_DATA );
3580 }
3581
3582exit:
3583 mbedtls_ssl_session_free( &session );
3584 mbedtls_free( good_buf );
3585 mbedtls_free( bad_buf );
3586}
3587/* END_CASE */
Hanno Becker861d0bb2019-05-21 16:39:30 +01003588
Hanno Becker363b6462019-05-29 12:44:28 +01003589/* BEGIN_CASE */
3590void ssl_session_serialize_version_check( int corrupt_major,
Hanno Becker861d0bb2019-05-21 16:39:30 +01003591 int corrupt_minor,
3592 int corrupt_patch,
3593 int corrupt_config )
3594{
Hanno Becker363b6462019-05-29 12:44:28 +01003595 unsigned char serialized_session[ 2048 ];
3596 size_t serialized_session_len;
Hanno Beckerfe1275e2019-05-29 12:45:21 +01003597 unsigned cur_byte;
Hanno Becker861d0bb2019-05-21 16:39:30 +01003598 mbedtls_ssl_session session;
Hanno Beckerfe1275e2019-05-29 12:45:21 +01003599 uint8_t should_corrupt_byte[] = { corrupt_major == 1,
3600 corrupt_minor == 1,
3601 corrupt_patch == 1,
3602 corrupt_config == 1,
3603 corrupt_config == 1 };
3604
Hanno Becker861d0bb2019-05-21 16:39:30 +01003605 mbedtls_ssl_session_init( &session );
3606
Hanno Beckerfe1275e2019-05-29 12:45:21 +01003607 /* Infer length of serialized session. */
Hanno Becker861d0bb2019-05-21 16:39:30 +01003608 TEST_ASSERT( mbedtls_ssl_session_save( &session,
Hanno Becker363b6462019-05-29 12:44:28 +01003609 serialized_session,
3610 sizeof( serialized_session ),
3611 &serialized_session_len ) == 0 );
Hanno Becker861d0bb2019-05-21 16:39:30 +01003612
Hanno Beckerfe1275e2019-05-29 12:45:21 +01003613 mbedtls_ssl_session_free( &session );
Hanno Becker861d0bb2019-05-21 16:39:30 +01003614
Hanno Beckerfe1275e2019-05-29 12:45:21 +01003615 /* Without any modification, we should be able to successfully
Hanno Becker363b6462019-05-29 12:44:28 +01003616 * de-serialize the session - double-check that. */
Hanno Becker861d0bb2019-05-21 16:39:30 +01003617 TEST_ASSERT( mbedtls_ssl_session_load( &session,
Hanno Becker363b6462019-05-29 12:44:28 +01003618 serialized_session,
3619 serialized_session_len ) == 0 );
Hanno Becker861d0bb2019-05-21 16:39:30 +01003620 mbedtls_ssl_session_free( &session );
3621
Hanno Beckerfe1275e2019-05-29 12:45:21 +01003622 /* Go through the bytes in the serialized session header and
3623 * corrupt them bit-by-bit. */
3624 for( cur_byte = 0; cur_byte < sizeof( should_corrupt_byte ); cur_byte++ )
Hanno Becker861d0bb2019-05-21 16:39:30 +01003625 {
Hanno Beckerfe1275e2019-05-29 12:45:21 +01003626 int cur_bit;
3627 unsigned char * const byte = &serialized_session[ cur_byte ];
3628
3629 if( should_corrupt_byte[ cur_byte ] == 0 )
3630 continue;
3631
3632 for( cur_bit = 0; cur_bit < CHAR_BIT; cur_bit++ )
3633 {
3634 unsigned char const corrupted_bit = 0x1u << cur_bit;
3635 /* Modify a single bit in the serialized session. */
3636 *byte ^= corrupted_bit;
3637
3638 /* Attempt to deserialize */
3639 TEST_ASSERT( mbedtls_ssl_session_load( &session,
3640 serialized_session,
3641 serialized_session_len ) ==
Hanno Beckerf9b33032019-06-03 12:58:39 +01003642 MBEDTLS_ERR_SSL_VERSION_MISMATCH );
Hanno Beckerfe1275e2019-05-29 12:45:21 +01003643
3644 /* Undo the change */
3645 *byte ^= corrupted_bit;
3646 }
Hanno Becker861d0bb2019-05-21 16:39:30 +01003647 }
3648
Hanno Becker861d0bb2019-05-21 16:39:30 +01003649}
3650/* END_CASE */
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003651
Piotr Nowickic3fca5e2020-01-30 15:33:42 +01003652/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15 */
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003653void mbedtls_endpoint_sanity( int endpoint_type )
3654{
3655 enum { BUFFSIZE = 1024 };
3656 mbedtls_endpoint ep;
3657 int ret = -1;
3658
Andrzej Kurek15daf502020-02-12 09:17:52 -05003659 ret = mbedtls_endpoint_init( NULL, endpoint_type, MBEDTLS_PK_RSA,
3660 NULL, NULL, NULL );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003661 TEST_ASSERT( MBEDTLS_ERR_SSL_BAD_INPUT_DATA == ret );
3662
Andrzej Kurekb2980742020-02-02 19:25:26 -05003663 ret = mbedtls_endpoint_certificate_init( NULL, MBEDTLS_PK_RSA );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003664 TEST_ASSERT( MBEDTLS_ERR_SSL_BAD_INPUT_DATA == ret );
3665
Andrzej Kurek15daf502020-02-12 09:17:52 -05003666 ret = mbedtls_endpoint_init( &ep, endpoint_type, MBEDTLS_PK_RSA,
3667 NULL, NULL, NULL );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003668 TEST_ASSERT( ret == 0 );
3669
3670exit:
Andrzej Kurek15daf502020-02-12 09:17:52 -05003671 mbedtls_endpoint_free( &ep, NULL );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003672}
3673/* END_CASE */
3674
Andrzej Kurekb2980742020-02-02 19:25:26 -05003675/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15 */
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003676void move_handshake_to_state(int endpoint_type, int state, int need_pass)
3677{
3678 enum { BUFFSIZE = 1024 };
3679 mbedtls_endpoint base_ep, second_ep;
3680 int ret = -1;
3681
Andrzej Kurek15daf502020-02-12 09:17:52 -05003682 ret = mbedtls_endpoint_init( &base_ep, endpoint_type, MBEDTLS_PK_RSA,
3683 NULL, NULL, NULL );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003684 TEST_ASSERT( ret == 0 );
3685
3686 ret = mbedtls_endpoint_init( &second_ep,
3687 ( endpoint_type == MBEDTLS_SSL_IS_SERVER ) ?
Andrzej Kurekb2980742020-02-02 19:25:26 -05003688 MBEDTLS_SSL_IS_CLIENT : MBEDTLS_SSL_IS_SERVER,
Andrzej Kurek15daf502020-02-12 09:17:52 -05003689 MBEDTLS_PK_RSA, NULL, NULL, NULL );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003690 TEST_ASSERT( ret == 0 );
3691
3692 ret = mbedtls_mock_socket_connect( &(base_ep.socket),
3693 &(second_ep.socket),
3694 BUFFSIZE );
3695 TEST_ASSERT( ret == 0 );
3696
3697 ret = mbedtls_move_handshake_to_state( &(base_ep.ssl),
3698 &(second_ep.ssl),
3699 state );
3700 if( need_pass )
3701 {
3702 TEST_ASSERT( ret == 0 );
3703 TEST_ASSERT( base_ep.ssl.state == state );
3704 }
3705 else
3706 {
3707 TEST_ASSERT( ret != 0 );
3708 TEST_ASSERT( base_ep.ssl.state != state );
3709 }
3710
3711exit:
Andrzej Kurek15daf502020-02-12 09:17:52 -05003712 mbedtls_endpoint_free( &base_ep, NULL );
3713 mbedtls_endpoint_free( &second_ep, NULL );
Piotr Nowicki2a1f1782020-01-13 09:42:10 +01003714}
3715/* END_CASE */
Andrzej Kurekf40daa32020-02-04 09:00:01 -05003716
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003717/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED */
3718void handshake_version( int version, int dtls )
Andrzej Kurekf40daa32020-02-04 09:00:01 -05003719{
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003720 handshake_test_options options;
3721 init_handshake_options( &options );
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003722
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003723 options.version = version;
3724 options.dtls = dtls;
3725 /* Note - the case below will have to updated, since the test sends no data
3726 * due to a 1n-1 split against BEAST, that was not expected when preparing
3727 * the fragment counting code. */
3728 if( version == MBEDTLS_SSL_MINOR_VERSION_0 ||
3729 version == MBEDTLS_SSL_MINOR_VERSION_1 )
Andrzej Kurek941962e2020-02-07 09:20:32 -05003730 {
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003731 options.cli_msg_len = 0;
3732 options.srv_msg_len = 0;
Andrzej Kurek941962e2020-02-07 09:20:32 -05003733 }
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003734 perform_handshake( &options );
Andrzej Kurekf40daa32020-02-04 09:00:01 -05003735
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003736 /* The goto below is used to avoid an "unused label" warning.*/
3737 goto exit;
3738}
3739/* END_CASE */
Andrzej Kurek9e9efdc2020-02-26 05:25:23 -05003740
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003741/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_PROTO_TLS1_2 */
3742void handshake_psk_cipher( char* cipher, int pk_alg, data_t *psk_str, int dtls )
3743{
3744 handshake_test_options options;
3745 init_handshake_options( &options );
Andrzej Kurekf40daa32020-02-04 09:00:01 -05003746
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003747 options.cipher = cipher;
3748 options.dtls = dtls;
3749 options.psk_str = psk_str;
3750 options.pk_alg = pk_alg;
Andrzej Kurekcc5169c2020-02-04 09:04:56 -05003751
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003752 perform_handshake( &options );
Andrzej Kurek316da1f2020-02-26 09:03:47 -05003753
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003754 /* The goto below is used to avoid an "unused label" warning.*/
3755 goto exit;
3756}
3757/* END_CASE */
Andrzej Kurek316da1f2020-02-26 09:03:47 -05003758
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003759/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_PROTO_TLS1_2 */
3760void handshake_cipher( char* cipher, int pk_alg, int dtls )
3761{
3762 test_handshake_psk_cipher( cipher, pk_alg, NULL, dtls );
Andrzej Kurekf40daa32020-02-04 09:00:01 -05003763
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003764 /* The goto below is used to avoid an "unused label" warning.*/
3765 goto exit;
3766}
3767/* END_CASE */
Andrzej Kurekf40daa32020-02-04 09:00:01 -05003768
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003769/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_PROTO_TLS1_2:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED */
3770void app_data( int mfl, int cli_msg_len, int srv_msg_len,
3771 int expected_cli_fragments,
3772 int expected_srv_fragments, int dtls )
3773{
3774 handshake_test_options options;
3775 init_handshake_options( &options );
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003776
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003777 options.mfl = mfl;
3778 options.cli_msg_len = cli_msg_len;
3779 options.srv_msg_len = srv_msg_len;
3780 options.expected_cli_fragments = expected_cli_fragments;
3781 options.expected_srv_fragments = expected_srv_fragments;
3782 options.dtls = dtls;
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003783
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003784 perform_handshake( &options );
3785 /* The goto below is used to avoid an "unused label" warning.*/
3786 goto exit;
3787}
3788/* END_CASE */
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003789
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003790/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_PROTO_TLS1_2:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED */
3791void app_data_tls( int mfl, int cli_msg_len, int srv_msg_len,
3792 int expected_cli_fragments,
3793 int expected_srv_fragments )
3794{
3795 test_app_data( mfl, cli_msg_len, srv_msg_len, expected_cli_fragments,
3796 expected_srv_fragments, 0 );
3797 /* The goto below is used to avoid an "unused label" warning.*/
3798 goto exit;
3799}
3800/* END_CASE */
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003801
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003802/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_PROTO_TLS1_2:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED:MBEDTLS_SSL_PROTO_DTLS */
3803void app_data_dtls( int mfl, int cli_msg_len, int srv_msg_len,
3804 int expected_cli_fragments,
3805 int expected_srv_fragments )
3806{
3807 test_app_data( mfl, cli_msg_len, srv_msg_len, expected_cli_fragments,
3808 expected_srv_fragments, 1 );
3809 /* The goto below is used to avoid an "unused label" warning.*/
3810 goto exit;
3811}
3812/* END_CASE */
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003813
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003814/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_PROTO_TLS1_2:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED:MBEDTLS_SSL_PROTO_DTLS:MBEDTLS_SSL_RENEGOTIATION:MBEDTLS_SSL_CONTEXT_SERIALIZATION */
3815void handshake_serialization( )
3816{
3817 handshake_test_options options;
3818 init_handshake_options( &options );
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003819
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003820 options.serialize = 1;
3821 options.dtls = 1;
3822 perform_handshake( &options );
3823 /* The goto below is used to avoid an "unused label" warning.*/
3824 goto exit;
3825}
3826/* END_CASE */
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003827
Darryl Greenaad82f92019-12-02 10:53:11 +00003828/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED:MBEDTLS_DEBUG_C:MBEDTLS_SSL_MAX_FRAGMENT_LENGTH:MBEDTLS_CIPHER_MODE_CBC */
Piotr Nowickibde7ee82020-02-21 10:59:50 +01003829void handshake_fragmentation( int mfl, int expected_srv_hs_fragmentation, int expected_cli_hs_fragmentation)
3830{
3831 handshake_test_options options;
3832 log_pattern srv_pattern, cli_pattern;
3833
3834 srv_pattern.pattern = cli_pattern.pattern = "found fragmented DTLS handshake";
3835 srv_pattern.counter = 0;
3836 cli_pattern.counter = 0;
3837
3838 init_handshake_options( &options );
3839 options.dtls = 1;
3840 options.mfl = mfl;
Darryl Greenaad82f92019-12-02 10:53:11 +00003841 /* Set cipher to one using CBC so that record splitting can be tested */
3842 options.cipher = "TLS-DHE-RSA-WITH-AES-256-CBC-SHA256";
Piotr Nowickibde7ee82020-02-21 10:59:50 +01003843 options.srv_auth_mode = MBEDTLS_SSL_VERIFY_REQUIRED;
3844 options.srv_log_obj = &srv_pattern;
3845 options.cli_log_obj = &cli_pattern;
3846 options.srv_log_fun = log_analyzer;
3847 options.cli_log_fun = log_analyzer;
3848
3849 perform_handshake( &options );
3850
3851 /* Test if the server received a fragmented handshake */
3852 if( expected_srv_hs_fragmentation )
3853 {
3854 TEST_ASSERT( srv_pattern.counter >= 1 );
3855 }
3856 /* Test if the client received a fragmented handshake */
3857 if( expected_cli_hs_fragmentation )
3858 {
3859 TEST_ASSERT( cli_pattern.counter >= 1 );
3860 }
3861}
3862/* END_CASE */
3863
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003864/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_PROTO_TLS1_2:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED:MBEDTLS_SSL_PROTO_DTLS:MBEDTLS_SSL_RENEGOTIATION */
3865void renegotiation( int legacy_renegotiation )
3866{
3867 handshake_test_options options;
3868 init_handshake_options( &options );
Andrzej Kurekda2b6782020-02-12 07:56:36 -05003869
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003870 options.renegotiate = 1;
3871 options.legacy_renegotiation = legacy_renegotiation;
3872 options.dtls = 1;
Andrzej Kurek316da1f2020-02-26 09:03:47 -05003873
Andrzej Kurek8a6ff152020-02-26 09:10:14 -05003874 perform_handshake( &options );
3875 /* The goto below is used to avoid an "unused label" warning.*/
3876 goto exit;
Andrzej Kurekf40daa32020-02-04 09:00:01 -05003877}
3878/* END_CASE */
Andrzej Kurek0afa2a12020-03-03 10:39:58 -05003879
3880/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH:MBEDTLS_SSL_PROTO_TLS1_2:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED */
3881void resize_buffers( int mfl, int renegotiation, int legacy_renegotiation,
3882 int serialize, int dtls )
3883{
3884 handshake_test_options options;
3885 init_handshake_options( &options );
3886
3887 options.mfl = mfl;
3888 options.renegotiate = renegotiation;
3889 options.legacy_renegotiation = legacy_renegotiation;
3890 options.serialize = serialize;
3891 options.dtls = dtls;
3892 options.resize_buffers = 1;
3893
3894 perform_handshake( &options );
3895 /* The goto below is used to avoid an "unused label" warning.*/
3896 goto exit;
3897}
3898/* END_CASE */
3899
3900/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH:MBEDTLS_SSL_CONTEXT_SERIALIZATION:MBEDTLS_SSL_PROTO_TLS1_2:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED:MBEDTLS_SSL_PROTO_DTLS */
3901void resize_buffers_serialize_mfl( int mfl )
3902{
3903 test_resize_buffers( mfl, 0, MBEDTLS_SSL_LEGACY_NO_RENEGOTIATION, 1, 1 );
3904
3905 /* The goto below is used to avoid an "unused label" warning.*/
3906 goto exit;
3907}
3908/* END_CASE */
3909
3910/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C:!MBEDTLS_USE_PSA_CRYPTO:MBEDTLS_PKCS1_V15:MBEDTLS_SSL_VARIABLE_BUFFER_LENGTH:MBEDTLS_SSL_RENEGOTIATION:MBEDTLS_SSL_PROTO_TLS1_2:MBEDTLS_RSA_C:MBEDTLS_ECP_DP_SECP384R1_ENABLED */
3911void resize_buffers_renegotiate_mfl( int mfl, int legacy_renegotiation )
3912{
3913 test_resize_buffers( mfl, 1, legacy_renegotiation, 0, 1 );
3914
3915 /* The goto below is used to avoid an "unused label" warning.*/
3916 goto exit;
3917}
3918/* END_CASE */