mirror of
https://github.com/Mbed-TLS/mbedtls.git
synced 2025-08-07 06:42:56 +03:00
Switch to the new code style
Signed-off-by: Gilles Peskine <Gilles.Peskine@arm.com>
This commit is contained in:
@@ -20,146 +20,145 @@
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#include <stdio.h>
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#include <stdlib.h>
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#define ASSERT( predicate ) \
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#define ASSERT(predicate) \
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do \
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{ \
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if( ! ( predicate ) ) \
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if (!(predicate)) \
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{ \
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printf( "\tassertion failed at %s:%d - '%s'\r\n", \
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__FILE__, __LINE__, #predicate); \
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printf("\tassertion failed at %s:%d - '%s'\r\n", \
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__FILE__, __LINE__, #predicate); \
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goto exit; \
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} \
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} while ( 0 )
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} while (0)
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#define ASSERT_STATUS( actual, expected ) \
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#define ASSERT_STATUS(actual, expected) \
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do \
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{ \
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if( ( actual ) != ( expected ) ) \
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if ((actual) != (expected)) \
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{ \
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printf( "\tassertion failed at %s:%d - " \
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"actual:%d expected:%d\r\n", __FILE__, __LINE__, \
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(psa_status_t) actual, (psa_status_t) expected ); \
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printf("\tassertion failed at %s:%d - " \
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"actual:%d expected:%d\r\n", __FILE__, __LINE__, \
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(psa_status_t) actual, (psa_status_t) expected); \
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goto exit; \
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} \
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} while ( 0 )
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} while (0)
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#if !defined(MBEDTLS_PSA_CRYPTO_C) || !defined(MBEDTLS_AES_C) || \
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!defined(MBEDTLS_CIPHER_MODE_CBC) || !defined(MBEDTLS_CIPHER_MODE_CTR) || \
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!defined(MBEDTLS_CIPHER_MODE_WITH_PADDING) || \
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defined(MBEDTLS_PSA_CRYPTO_KEY_ID_ENCODES_OWNER)
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int main( void )
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int main(void)
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{
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printf( "MBEDTLS_PSA_CRYPTO_C and/or MBEDTLS_AES_C and/or "
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"MBEDTLS_CIPHER_MODE_CBC and/or MBEDTLS_CIPHER_MODE_CTR "
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"and/or MBEDTLS_CIPHER_MODE_WITH_PADDING "
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"not defined and/or MBEDTLS_PSA_CRYPTO_KEY_ID_ENCODES_OWNER"
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" defined.\r\n" );
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return( 0 );
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printf("MBEDTLS_PSA_CRYPTO_C and/or MBEDTLS_AES_C and/or "
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"MBEDTLS_CIPHER_MODE_CBC and/or MBEDTLS_CIPHER_MODE_CTR "
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"and/or MBEDTLS_CIPHER_MODE_WITH_PADDING "
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"not defined and/or MBEDTLS_PSA_CRYPTO_KEY_ID_ENCODES_OWNER"
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" defined.\r\n");
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return 0;
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}
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#else
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static psa_status_t cipher_operation( psa_cipher_operation_t *operation,
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const uint8_t * input,
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size_t input_size,
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size_t part_size,
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uint8_t * output,
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size_t output_size,
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size_t *output_len )
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static psa_status_t cipher_operation(psa_cipher_operation_t *operation,
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const uint8_t *input,
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size_t input_size,
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size_t part_size,
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uint8_t *output,
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size_t output_size,
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size_t *output_len)
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{
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psa_status_t status;
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size_t bytes_to_write = 0, bytes_written = 0, len = 0;
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*output_len = 0;
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while( bytes_written != input_size )
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{
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bytes_to_write = ( input_size - bytes_written > part_size ?
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part_size :
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input_size - bytes_written );
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while (bytes_written != input_size) {
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bytes_to_write = (input_size - bytes_written > part_size ?
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part_size :
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input_size - bytes_written);
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status = psa_cipher_update( operation, input + bytes_written,
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bytes_to_write, output + *output_len,
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output_size - *output_len, &len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_cipher_update(operation, input + bytes_written,
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bytes_to_write, output + *output_len,
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output_size - *output_len, &len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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bytes_written += bytes_to_write;
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*output_len += len;
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}
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status = psa_cipher_finish( operation, output + *output_len,
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output_size - *output_len, &len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_cipher_finish(operation, output + *output_len,
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output_size - *output_len, &len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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*output_len += len;
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exit:
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return( status );
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return status;
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}
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static psa_status_t cipher_encrypt( psa_key_id_t key,
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psa_algorithm_t alg,
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uint8_t * iv,
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size_t iv_size,
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const uint8_t * input,
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size_t input_size,
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size_t part_size,
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uint8_t * output,
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size_t output_size,
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size_t *output_len )
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static psa_status_t cipher_encrypt(psa_key_id_t key,
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psa_algorithm_t alg,
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uint8_t *iv,
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size_t iv_size,
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const uint8_t *input,
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size_t input_size,
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size_t part_size,
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uint8_t *output,
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size_t output_size,
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size_t *output_len)
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{
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psa_status_t status;
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psa_cipher_operation_t operation = PSA_CIPHER_OPERATION_INIT;
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size_t iv_len = 0;
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memset( &operation, 0, sizeof( operation ) );
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status = psa_cipher_encrypt_setup( &operation, key, alg );
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ASSERT_STATUS( status, PSA_SUCCESS );
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memset(&operation, 0, sizeof(operation));
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status = psa_cipher_encrypt_setup(&operation, key, alg);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = psa_cipher_generate_iv( &operation, iv, iv_size, &iv_len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_cipher_generate_iv(&operation, iv, iv_size, &iv_len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = cipher_operation( &operation, input, input_size, part_size,
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output, output_size, output_len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = cipher_operation(&operation, input, input_size, part_size,
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output, output_size, output_len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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exit:
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psa_cipher_abort( &operation );
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return( status );
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psa_cipher_abort(&operation);
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return status;
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}
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static psa_status_t cipher_decrypt( psa_key_id_t key,
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psa_algorithm_t alg,
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const uint8_t * iv,
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size_t iv_size,
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const uint8_t * input,
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size_t input_size,
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size_t part_size,
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uint8_t * output,
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size_t output_size,
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size_t *output_len )
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static psa_status_t cipher_decrypt(psa_key_id_t key,
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psa_algorithm_t alg,
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const uint8_t *iv,
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size_t iv_size,
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const uint8_t *input,
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size_t input_size,
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size_t part_size,
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uint8_t *output,
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size_t output_size,
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size_t *output_len)
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{
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psa_status_t status;
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psa_cipher_operation_t operation = PSA_CIPHER_OPERATION_INIT;
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memset( &operation, 0, sizeof( operation ) );
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status = psa_cipher_decrypt_setup( &operation, key, alg );
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ASSERT_STATUS( status, PSA_SUCCESS );
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memset(&operation, 0, sizeof(operation));
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status = psa_cipher_decrypt_setup(&operation, key, alg);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = psa_cipher_set_iv( &operation, iv, iv_size );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_cipher_set_iv(&operation, iv, iv_size);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = cipher_operation( &operation, input, input_size, part_size,
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output, output_size, output_len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = cipher_operation(&operation, input, input_size, part_size,
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output, output_size, output_len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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exit:
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psa_cipher_abort( &operation );
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return( status );
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psa_cipher_abort(&operation);
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return status;
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}
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static psa_status_t
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cipher_example_encrypt_decrypt_aes_cbc_nopad_1_block( void )
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cipher_example_encrypt_decrypt_aes_cbc_nopad_1_block(void)
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{
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enum {
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block_size = PSA_BLOCK_CIPHER_BLOCK_LENGTH( PSA_KEY_TYPE_AES ),
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block_size = PSA_BLOCK_CIPHER_BLOCK_LENGTH(PSA_KEY_TYPE_AES),
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key_bits = 256,
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part_size = block_size,
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};
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@@ -174,40 +173,40 @@ cipher_example_encrypt_decrypt_aes_cbc_nopad_1_block( void )
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uint8_t encrypt[block_size];
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uint8_t decrypt[block_size];
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status = psa_generate_random( input, sizeof( input ) );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_generate_random(input, sizeof(input));
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ASSERT_STATUS(status, PSA_SUCCESS);
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psa_set_key_usage_flags( &attributes,
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PSA_KEY_USAGE_ENCRYPT | PSA_KEY_USAGE_DECRYPT );
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psa_set_key_algorithm( &attributes, alg );
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psa_set_key_type( &attributes, PSA_KEY_TYPE_AES );
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psa_set_key_bits( &attributes, key_bits );
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psa_set_key_usage_flags(&attributes,
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PSA_KEY_USAGE_ENCRYPT | PSA_KEY_USAGE_DECRYPT);
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psa_set_key_algorithm(&attributes, alg);
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psa_set_key_type(&attributes, PSA_KEY_TYPE_AES);
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psa_set_key_bits(&attributes, key_bits);
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status = psa_generate_key( &attributes, &key );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_generate_key(&attributes, &key);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = cipher_encrypt( key, alg, iv, sizeof( iv ),
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input, sizeof( input ), part_size,
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encrypt, sizeof( encrypt ), &output_len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = cipher_encrypt(key, alg, iv, sizeof(iv),
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input, sizeof(input), part_size,
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encrypt, sizeof(encrypt), &output_len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = cipher_decrypt( key, alg, iv, sizeof( iv ),
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encrypt, output_len, part_size,
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decrypt, sizeof( decrypt ), &output_len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = cipher_decrypt(key, alg, iv, sizeof(iv),
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encrypt, output_len, part_size,
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decrypt, sizeof(decrypt), &output_len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = memcmp( input, decrypt, sizeof( input ) );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = memcmp(input, decrypt, sizeof(input));
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ASSERT_STATUS(status, PSA_SUCCESS);
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exit:
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psa_destroy_key( key );
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return( status );
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psa_destroy_key(key);
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return status;
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}
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static psa_status_t cipher_example_encrypt_decrypt_aes_cbc_pkcs7_multi( void )
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static psa_status_t cipher_example_encrypt_decrypt_aes_cbc_pkcs7_multi(void)
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{
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enum {
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block_size = PSA_BLOCK_CIPHER_BLOCK_LENGTH( PSA_KEY_TYPE_AES ),
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block_size = PSA_BLOCK_CIPHER_BLOCK_LENGTH(PSA_KEY_TYPE_AES),
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key_bits = 256,
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input_size = 100,
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part_size = 10,
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@@ -222,40 +221,40 @@ static psa_status_t cipher_example_encrypt_decrypt_aes_cbc_pkcs7_multi( void )
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uint8_t iv[block_size], input[input_size],
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encrypt[input_size + block_size], decrypt[input_size + block_size];
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status = psa_generate_random( input, sizeof( input ) );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_generate_random(input, sizeof(input));
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ASSERT_STATUS(status, PSA_SUCCESS);
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psa_set_key_usage_flags( &attributes,
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PSA_KEY_USAGE_ENCRYPT | PSA_KEY_USAGE_DECRYPT );
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psa_set_key_algorithm( &attributes, alg );
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psa_set_key_type( &attributes, PSA_KEY_TYPE_AES );
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psa_set_key_bits( &attributes, key_bits );
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psa_set_key_usage_flags(&attributes,
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PSA_KEY_USAGE_ENCRYPT | PSA_KEY_USAGE_DECRYPT);
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psa_set_key_algorithm(&attributes, alg);
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psa_set_key_type(&attributes, PSA_KEY_TYPE_AES);
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psa_set_key_bits(&attributes, key_bits);
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status = psa_generate_key( &attributes, &key );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_generate_key(&attributes, &key);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = cipher_encrypt( key, alg, iv, sizeof( iv ),
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input, sizeof( input ), part_size,
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encrypt, sizeof( encrypt ), &output_len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = cipher_encrypt(key, alg, iv, sizeof(iv),
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input, sizeof(input), part_size,
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encrypt, sizeof(encrypt), &output_len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = cipher_decrypt( key, alg, iv, sizeof( iv ),
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encrypt, output_len, part_size,
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decrypt, sizeof( decrypt ), &output_len );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = cipher_decrypt(key, alg, iv, sizeof(iv),
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encrypt, output_len, part_size,
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decrypt, sizeof(decrypt), &output_len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = memcmp( input, decrypt, sizeof( input ) );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = memcmp(input, decrypt, sizeof(input));
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ASSERT_STATUS(status, PSA_SUCCESS);
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exit:
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psa_destroy_key( key );
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return( status );
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psa_destroy_key(key);
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return status;
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}
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static psa_status_t cipher_example_encrypt_decrypt_aes_ctr_multi( void )
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static psa_status_t cipher_example_encrypt_decrypt_aes_ctr_multi(void)
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{
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enum {
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block_size = PSA_BLOCK_CIPHER_BLOCK_LENGTH( PSA_KEY_TYPE_AES ),
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block_size = PSA_BLOCK_CIPHER_BLOCK_LENGTH(PSA_KEY_TYPE_AES),
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key_bits = 256,
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input_size = 100,
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part_size = 10,
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@@ -269,63 +268,66 @@ static psa_status_t cipher_example_encrypt_decrypt_aes_ctr_multi( void )
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uint8_t iv[block_size], input[input_size], encrypt[input_size],
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decrypt[input_size];
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status = psa_generate_random( input, sizeof( input ) );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_generate_random(input, sizeof(input));
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ASSERT_STATUS(status, PSA_SUCCESS);
|
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psa_set_key_usage_flags( &attributes,
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PSA_KEY_USAGE_ENCRYPT | PSA_KEY_USAGE_DECRYPT );
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psa_set_key_algorithm( &attributes, alg );
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psa_set_key_type( &attributes, PSA_KEY_TYPE_AES );
|
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psa_set_key_bits( &attributes, key_bits );
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psa_set_key_usage_flags(&attributes,
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PSA_KEY_USAGE_ENCRYPT | PSA_KEY_USAGE_DECRYPT);
|
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psa_set_key_algorithm(&attributes, alg);
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psa_set_key_type(&attributes, PSA_KEY_TYPE_AES);
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psa_set_key_bits(&attributes, key_bits);
|
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status = psa_generate_key( &attributes, &key );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = psa_generate_key(&attributes, &key);
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ASSERT_STATUS(status, PSA_SUCCESS);
|
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status = cipher_encrypt( key, alg, iv, sizeof( iv ),
|
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input, sizeof( input ), part_size,
|
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encrypt, sizeof( encrypt ), &output_len );
|
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ASSERT_STATUS( status, PSA_SUCCESS );
|
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status = cipher_encrypt(key, alg, iv, sizeof(iv),
|
||||
input, sizeof(input), part_size,
|
||||
encrypt, sizeof(encrypt), &output_len);
|
||||
ASSERT_STATUS(status, PSA_SUCCESS);
|
||||
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status = cipher_decrypt( key, alg, iv, sizeof( iv ),
|
||||
encrypt, output_len, part_size,
|
||||
decrypt, sizeof( decrypt ), &output_len );
|
||||
ASSERT_STATUS( status, PSA_SUCCESS );
|
||||
status = cipher_decrypt(key, alg, iv, sizeof(iv),
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||||
encrypt, output_len, part_size,
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||||
decrypt, sizeof(decrypt), &output_len);
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ASSERT_STATUS(status, PSA_SUCCESS);
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status = memcmp( input, decrypt, sizeof( input ) );
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ASSERT_STATUS( status, PSA_SUCCESS );
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status = memcmp(input, decrypt, sizeof(input));
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ASSERT_STATUS(status, PSA_SUCCESS);
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||||
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exit:
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psa_destroy_key( key );
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return( status );
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psa_destroy_key(key);
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return status;
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||||
}
|
||||
|
||||
static void cipher_examples( void )
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||||
static void cipher_examples(void)
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||||
{
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||||
psa_status_t status;
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||||
|
||||
printf( "cipher encrypt/decrypt AES CBC no padding:\r\n" );
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||||
status = cipher_example_encrypt_decrypt_aes_cbc_nopad_1_block( );
|
||||
if( status == PSA_SUCCESS )
|
||||
printf( "\tsuccess!\r\n" );
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printf("cipher encrypt/decrypt AES CBC no padding:\r\n");
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||||
status = cipher_example_encrypt_decrypt_aes_cbc_nopad_1_block();
|
||||
if (status == PSA_SUCCESS) {
|
||||
printf("\tsuccess!\r\n");
|
||||
}
|
||||
|
||||
printf( "cipher encrypt/decrypt AES CBC PKCS7 multipart:\r\n" );
|
||||
status = cipher_example_encrypt_decrypt_aes_cbc_pkcs7_multi( );
|
||||
if( status == PSA_SUCCESS )
|
||||
printf( "\tsuccess!\r\n" );
|
||||
printf("cipher encrypt/decrypt AES CBC PKCS7 multipart:\r\n");
|
||||
status = cipher_example_encrypt_decrypt_aes_cbc_pkcs7_multi();
|
||||
if (status == PSA_SUCCESS) {
|
||||
printf("\tsuccess!\r\n");
|
||||
}
|
||||
|
||||
printf( "cipher encrypt/decrypt AES CTR multipart:\r\n" );
|
||||
status = cipher_example_encrypt_decrypt_aes_ctr_multi( );
|
||||
if( status == PSA_SUCCESS )
|
||||
printf( "\tsuccess!\r\n" );
|
||||
printf("cipher encrypt/decrypt AES CTR multipart:\r\n");
|
||||
status = cipher_example_encrypt_decrypt_aes_ctr_multi();
|
||||
if (status == PSA_SUCCESS) {
|
||||
printf("\tsuccess!\r\n");
|
||||
}
|
||||
}
|
||||
|
||||
int main( void )
|
||||
int main(void)
|
||||
{
|
||||
ASSERT( psa_crypto_init( ) == PSA_SUCCESS );
|
||||
cipher_examples( );
|
||||
ASSERT(psa_crypto_init() == PSA_SUCCESS);
|
||||
cipher_examples();
|
||||
exit:
|
||||
mbedtls_psa_crypto_free( );
|
||||
return( 0 );
|
||||
mbedtls_psa_crypto_free();
|
||||
return 0;
|
||||
}
|
||||
#endif /* MBEDTLS_PSA_CRYPTO_C && MBEDTLS_AES_C && MBEDTLS_CIPHER_MODE_CBC &&
|
||||
MBEDTLS_CIPHER_MODE_CTR && MBEDTLS_CIPHER_MODE_WITH_PADDING */
|
||||
|
Reference in New Issue
Block a user