168 lines
		
	
	
		
			5.3 KiB
		
	
	
	
		
			Plaintext
		
	
	
		
			Executable File
		
	
	
	
	
			
		
		
	
	
			168 lines
		
	
	
		
			5.3 KiB
		
	
	
	
		
			Plaintext
		
	
	
		
			Executable File
		
	
	
	
	
/* BEGIN_HEADER */
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#include "mbedtls/gcm.h"
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/* END_HEADER */
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/* BEGIN_DEPENDENCIES
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 * depends_on:MBEDTLS_GCM_C
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 * END_DEPENDENCIES
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 */
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/* BEGIN_CASE */
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void gcm_bad_parameters( int cipher_id, int direction,
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                         char *hex_key_string, char *hex_src_string,
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                         char *hex_iv_string, char *hex_add_string,
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                         int tag_len_bits, int gcm_result )
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{
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    unsigned char key_str[128];
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    unsigned char src_str[128];
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    unsigned char dst_str[257];
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    unsigned char iv_str[128];
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    unsigned char add_str[128];
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    unsigned char tag_str[128];
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    unsigned char output[128];
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    unsigned char tag_output[16];
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    mbedtls_gcm_context ctx;
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    unsigned int key_len;
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    size_t pt_len, iv_len, add_len, tag_len = tag_len_bits / 8;
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    mbedtls_gcm_init( &ctx );
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    memset( key_str, 0x00, sizeof( key_str ) );
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    memset( src_str, 0x00, sizeof( src_str ) );
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    memset( dst_str, 0x00, sizeof( dst_str ) );
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    memset( iv_str, 0x00, sizeof( iv_str ) );
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    memset( add_str, 0x00, sizeof( add_str ) );
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    memset( tag_str, 0x00, sizeof( tag_str ) );
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    memset( output, 0x00, sizeof( output ) );
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    memset( tag_output, 0x00, sizeof( tag_output ) );
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    key_len = unhexify( key_str, hex_key_string );
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    pt_len = unhexify( src_str, hex_src_string );
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    iv_len = unhexify( iv_str, hex_iv_string );
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    add_len = unhexify( add_str, hex_add_string );
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    TEST_ASSERT( mbedtls_gcm_setkey( &ctx, cipher_id, key_str, key_len * 8 ) == 0 );
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    TEST_ASSERT( mbedtls_gcm_crypt_and_tag( &ctx, direction, pt_len, iv_str, iv_len,
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                 add_str, add_len, src_str, output, tag_len, tag_output ) == gcm_result );
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exit:
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    mbedtls_gcm_free( &ctx );
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}
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/* END_CASE */
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/* BEGIN_CASE */
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void gcm_encrypt_and_tag( int cipher_id,
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                          char *hex_key_string, char *hex_src_string,
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                          char *hex_iv_string, char *hex_add_string,
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                          char *hex_dst_string, int tag_len_bits,
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                          char *hex_tag_string, int  init_result )
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{
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    unsigned char key_str[128];
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    unsigned char src_str[128];
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    unsigned char dst_str[257];
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    unsigned char iv_str[128];
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    unsigned char add_str[128];
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    unsigned char tag_str[128];
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    unsigned char output[128];
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    unsigned char tag_output[16];
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    mbedtls_gcm_context ctx;
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    unsigned int key_len;
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    size_t pt_len, iv_len, add_len, tag_len = tag_len_bits / 8;
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    mbedtls_gcm_init( &ctx );
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    memset(key_str, 0x00, 128);
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    memset(src_str, 0x00, 128);
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    memset(dst_str, 0x00, 257);
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    memset(iv_str, 0x00, 128);
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    memset(add_str, 0x00, 128);
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    memset(tag_str, 0x00, 128);
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    memset(output, 0x00, 128);
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    memset(tag_output, 0x00, 16);
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    key_len = unhexify( key_str, hex_key_string );
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    pt_len = unhexify( src_str, hex_src_string );
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    iv_len = unhexify( iv_str, hex_iv_string );
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    add_len = unhexify( add_str, hex_add_string );
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    TEST_ASSERT( mbedtls_gcm_setkey( &ctx, cipher_id, key_str, key_len * 8 ) == init_result );
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    if( init_result == 0 )
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    {
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        TEST_ASSERT( mbedtls_gcm_crypt_and_tag( &ctx, MBEDTLS_GCM_ENCRYPT, pt_len, iv_str, iv_len, add_str, add_len, src_str, output, tag_len, tag_output ) == 0 );
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        hexify( dst_str, output, pt_len );
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        hexify( tag_str, tag_output, tag_len );
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        TEST_ASSERT( strcmp( (char *) dst_str, hex_dst_string ) == 0 );
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        TEST_ASSERT( strcmp( (char *) tag_str, hex_tag_string ) == 0 );
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    }
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exit:
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    mbedtls_gcm_free( &ctx );
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}
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/* END_CASE */
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/* BEGIN_CASE */
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void gcm_decrypt_and_verify( int cipher_id,
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                             char *hex_key_string, char *hex_src_string,
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                             char *hex_iv_string, char *hex_add_string,
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                             int tag_len_bits, char *hex_tag_string,
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                             char *pt_result, int init_result )
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{
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    unsigned char key_str[128];
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    unsigned char src_str[128];
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    unsigned char dst_str[257];
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    unsigned char iv_str[128];
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    unsigned char add_str[128];
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    unsigned char tag_str[128];
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    unsigned char output[128];
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    mbedtls_gcm_context ctx;
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    unsigned int key_len;
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    size_t pt_len, iv_len, add_len, tag_len = tag_len_bits / 8;
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    int ret;
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    mbedtls_gcm_init( &ctx );
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    memset(key_str, 0x00, 128);
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    memset(src_str, 0x00, 128);
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    memset(dst_str, 0x00, 257);
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    memset(iv_str, 0x00, 128);
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    memset(add_str, 0x00, 128);
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    memset(tag_str, 0x00, 128);
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    memset(output, 0x00, 128);
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    key_len = unhexify( key_str, hex_key_string );
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    pt_len = unhexify( src_str, hex_src_string );
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    iv_len = unhexify( iv_str, hex_iv_string );
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    add_len = unhexify( add_str, hex_add_string );
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    unhexify( tag_str, hex_tag_string );
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    TEST_ASSERT( mbedtls_gcm_setkey( &ctx, cipher_id, key_str, key_len * 8 ) == init_result );
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    if( init_result == 0 )
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    {
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        ret = mbedtls_gcm_auth_decrypt( &ctx, pt_len, iv_str, iv_len, add_str, add_len, tag_str, tag_len, src_str, output );
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        if( strcmp( "FAIL", pt_result ) == 0 )
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        {
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            TEST_ASSERT( ret == MBEDTLS_ERR_GCM_AUTH_FAILED );
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        }
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        else
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        {
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            TEST_ASSERT( ret == 0 );
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            hexify( dst_str, output, pt_len );
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            TEST_ASSERT( strcmp( (char *) dst_str, pt_result ) == 0 );
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        }
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    }
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exit:
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    mbedtls_gcm_free( &ctx );
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}
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/* END_CASE */
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/* BEGIN_CASE depends_on:MBEDTLS_SELF_TEST */
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void gcm_selftest()
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{
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    TEST_ASSERT( mbedtls_gcm_self_test( 1 ) == 0 );
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}
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/* END_CASE */
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