2020-12-28 19:15:37 +04:00
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/* BEGIN_HEADER */
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#include <mbedtls/ssl.h>
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#include <mbedtls/ssl_internal.h>
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/* END_HEADER */
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/* BEGIN_DEPENDENCIES
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* depends_on:MBEDTLS_SSL_TLS_C
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* END_DEPENDENCIES
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*/
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/* BEGIN_CASE depends_on:MBEDTLS_SSL_DTLS_ANTI_REPLAY */
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2021-03-06 04:41:47 +04:00
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void ssl_dtls_replay( data_t * prevs, data_t * new, int ret )
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2020-12-28 19:15:37 +04:00
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{
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2021-03-06 04:41:47 +04:00
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uint32_t len = 0;
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2020-12-28 19:15:37 +04:00
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mbedtls_ssl_context ssl;
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mbedtls_ssl_config conf;
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mbedtls_ssl_init( &ssl );
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mbedtls_ssl_config_init( &conf );
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TEST_ASSERT( mbedtls_ssl_config_defaults( &conf,
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MBEDTLS_SSL_IS_CLIENT,
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MBEDTLS_SSL_TRANSPORT_DATAGRAM,
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MBEDTLS_SSL_PRESET_DEFAULT ) == 0 );
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TEST_ASSERT( mbedtls_ssl_setup( &ssl, &conf ) == 0 );
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/* Read previous record numbers */
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2021-03-06 04:41:47 +04:00
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for( len = 0; len < prevs->len; len += 6 )
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2020-12-28 19:15:37 +04:00
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{
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2021-03-06 04:41:47 +04:00
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memcpy( ssl.in_ctr + 2, prevs->x + len, 6 );
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2020-12-28 19:15:37 +04:00
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mbedtls_ssl_dtls_replay_update( &ssl );
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}
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/* Check new number */
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2021-03-06 04:41:47 +04:00
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memcpy( ssl.in_ctr + 2, new->x, 6 );
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2020-12-28 19:15:37 +04:00
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TEST_ASSERT( mbedtls_ssl_dtls_replay_check( &ssl ) == ret );
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mbedtls_ssl_free( &ssl );
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mbedtls_ssl_config_free( &conf );
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}
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/* END_CASE */
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/* BEGIN_CASE depends_on:MBEDTLS_X509_CRT_PARSE_C */
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void ssl_set_hostname_twice( char *hostname0, char *hostname1 )
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{
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mbedtls_ssl_context ssl;
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mbedtls_ssl_init( &ssl );
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TEST_ASSERT( mbedtls_ssl_set_hostname( &ssl, hostname0 ) == 0 );
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TEST_ASSERT( mbedtls_ssl_set_hostname( &ssl, hostname1 ) == 0 );
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mbedtls_ssl_free( &ssl );
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}
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/* END_CASE */
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2021-03-06 04:41:47 +04:00
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/* BEGIN_CASE depends_on:MBEDTLS_SSL_SOME_SUITES_USE_TLS_CBC */
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void ssl_cf_hmac( int hash )
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{
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/*
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* Test the function mbedtls_ssl_cf_hmac() against a reference
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* implementation.
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*/
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mbedtls_md_context_t ctx, ref_ctx;
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const mbedtls_md_info_t *md_info;
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size_t out_len, block_size;
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size_t min_in_len, in_len, max_in_len, i;
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/* TLS additional data is 13 bytes (hence the "lucky 13" name) */
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unsigned char add_data[13];
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unsigned char ref_out[MBEDTLS_MD_MAX_SIZE];
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unsigned char *data = NULL;
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unsigned char *out = NULL;
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unsigned char rec_num = 0;
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mbedtls_md_init( &ctx );
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mbedtls_md_init( &ref_ctx );
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md_info = mbedtls_md_info_from_type( hash );
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TEST_ASSERT( md_info != NULL );
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out_len = mbedtls_md_get_size( md_info );
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TEST_ASSERT( out_len != 0 );
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block_size = hash == MBEDTLS_MD_SHA384 ? 128 : 64;
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/* Use allocated out buffer to catch overwrites */
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out = mbedtls_calloc( 1, out_len );
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TEST_ASSERT( out != NULL );
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/* Set up contexts with the given hash and a dummy key */
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TEST_ASSERT( 0 == mbedtls_md_setup( &ctx, md_info, 1 ) );
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TEST_ASSERT( 0 == mbedtls_md_setup( &ref_ctx, md_info, 1 ) );
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memset( ref_out, 42, sizeof( ref_out ) );
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TEST_ASSERT( 0 == mbedtls_md_hmac_starts( &ctx, ref_out, out_len ) );
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TEST_ASSERT( 0 == mbedtls_md_hmac_starts( &ref_ctx, ref_out, out_len ) );
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memset( ref_out, 0, sizeof( ref_out ) );
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/*
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* Test all possible lengths up to a point. The difference between
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* max_in_len and min_in_len is at most 255, and make sure they both vary
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* by at least one block size.
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*/
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for( max_in_len = 0; max_in_len <= 255 + block_size; max_in_len++ )
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{
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/* Use allocated in buffer to catch overreads */
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data = mbedtls_calloc( 1, max_in_len );
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TEST_ASSERT( data != NULL || max_in_len == 0 );
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min_in_len = max_in_len > 255 ? max_in_len - 255 : 0;
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for( in_len = min_in_len; in_len <= max_in_len; in_len++ )
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{
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/* Set up dummy data and add_data */
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rec_num++;
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memset( add_data, rec_num, sizeof( add_data ) );
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for( i = 0; i < in_len; i++ )
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data[i] = ( i & 0xff ) ^ rec_num;
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/* Get the function's result */
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TEST_CF_SECRET( &in_len, sizeof( in_len ) );
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TEST_ASSERT( 0 == mbedtls_ssl_cf_hmac( &ctx, add_data, sizeof( add_data ),
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data, in_len,
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min_in_len, max_in_len,
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out ) );
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TEST_CF_PUBLIC( &in_len, sizeof( in_len ) );
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TEST_CF_PUBLIC( out, out_len );
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/* Compute the reference result */
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TEST_ASSERT( 0 == mbedtls_md_hmac_update( &ref_ctx, add_data,
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sizeof( add_data ) ) );
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TEST_ASSERT( 0 == mbedtls_md_hmac_update( &ref_ctx, data, in_len ) );
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TEST_ASSERT( 0 == mbedtls_md_hmac_finish( &ref_ctx, ref_out ) );
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TEST_ASSERT( 0 == mbedtls_md_hmac_reset( &ref_ctx ) );
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/* Compare */
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TEST_ASSERT( 0 == memcmp( out, ref_out, out_len ) );
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}
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mbedtls_free( data );
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data = NULL;
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}
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exit:
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mbedtls_md_free( &ref_ctx );
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mbedtls_md_free( &ctx );
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mbedtls_free( data );
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mbedtls_free( out );
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}
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/* END_CASE */
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/* BEGIN_CASE depends_on:MBEDTLS_SSL_SOME_SUITES_USE_TLS_CBC */
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void ssl_cf_memcpy_offset( int offset_min, int offset_max, int len )
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{
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unsigned char *dst = NULL;
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unsigned char *src = NULL;
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size_t src_len = offset_max + len;
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size_t secret;
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dst = mbedtls_calloc( 1, len );
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TEST_ASSERT( dst != NULL );
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src = mbedtls_calloc( 1, src_len );
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TEST_ASSERT( src != NULL );
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/* Fill src in a way that we can detect if we copied the right bytes */
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rnd_std_rand( NULL, src, src_len );
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for( secret = offset_min; secret <= (size_t) offset_max; secret++ )
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{
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TEST_CF_SECRET( &secret, sizeof( secret ) );
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mbedtls_ssl_cf_memcpy_offset( dst, src, secret,
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offset_min, offset_max, len );
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TEST_CF_PUBLIC( &secret, sizeof( secret ) );
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TEST_CF_PUBLIC( dst, len );
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TEST_ASSERT( memcmp( dst, src + secret, len ) == 0 );
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}
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exit:
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mbedtls_free( dst );
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mbedtls_free( src );
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}
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/* END_CASE */
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