mirror of
https://github.com/yuzu-emu/mbedtls.git
synced 2024-11-29 08:34:19 +01:00
Implement AES-XTS mode
XTS mode is fully known as "xor-encrypt-xor with ciphertext-stealing". This is the generalization of the XEX mode. This implementation is limited to an 8-bits (1 byte) boundary, which doesn't seem to be what was thought considering some test vectors [1]. This commit comes with tests, extracted from [1], and benchmarks. Although, benchmarks aren't really nice here, as they work with a buffer of a multiple of 16 bytes, which isn't a challenge for XTS compared to XEX. [1] http://csrc.nist.gov/groups/STM/cavp/documents/aes/XTSTestVectors.zip
This commit is contained in:
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380162c34c
commit
5f77801ac3
@ -237,6 +237,34 @@ int mbedtls_aes_crypt_xex( mbedtls_aes_context *crypt_ctx,
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unsigned char *output );
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#endif /* MBEDTLS_CIPHER_MODE_XEX */
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#if defined(MBEDTLS_CIPHER_MODE_XTS)
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/**
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* \brief AES-XTS buffer encryption/decryption
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* Length should be greater or equal than the block size (16
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* bytes, 128 bits)
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*
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* Warning: The bits_length parameter must given be in bits, not bytes like the
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* other modes
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*
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* \param crypt_ctx AES context for encrypting data
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* \param tweak_ctx AES context for xor-ing with data
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* \param mode MBEDTLS_AES_ENCRYPT or MBEDTLS_AES_DECRYPT
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* \param bits_length length of the input data (in bits)
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* \param iv initialization vector
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* \param input buffer holding the input data
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* \param output buffer holding the output data
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*
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* \return 0 if successful, or MBEDTLS_ERR_AES_INVALID_INPUT_LENGTH
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*/
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int mbedtls_aes_crypt_xts( mbedtls_aes_context *crypt_ctx,
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mbedtls_aes_context *tweak_ctx,
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int mode,
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size_t bits_length,
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unsigned char iv[16],
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const unsigned char *input,
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unsigned char *output );
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#endif /* MBEDTLS_CIPHER_MODE_XTS */
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#if defined(MBEDTLS_CIPHER_MODE_CFB)
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/**
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* \brief This function performs an AES-CFB128 encryption or decryption
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@ -508,6 +508,14 @@
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*/
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#define MBEDTLS_CIPHER_MODE_XEX
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/**
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* \def MBEDTLS_CIPHER_MODE_XTS
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*
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* Enable Xor-encrypt-xor with ciphertext stealing mode (XTS) for symmetric
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* ciphers.
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*/
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#define MBEDTLS_CIPHER_MODE_XTS
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/**
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* \def MBEDTLS_CIPHER_MODE_OFB
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*
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141
library/aes.c
141
library/aes.c
@ -44,7 +44,7 @@
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#include "mbedtls/aesni.h"
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#endif
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#if defined(MBEDTLS_CIPHER_MODE_XEX)
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#if defined(MBEDTLS_CIPHER_MODE_XEX) || defined(MBEDTLS_CIPHER_MODE_XTS)
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#include "mbedtls/gf128mul.h"
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#endif
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@ -1045,6 +1045,145 @@ first:
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}
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#endif /* MBEDTLS_CIPHER_MODE_XEX */
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#if defined(MBEDTLS_CIPHER_MODE_XTS)
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/*
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* AES-XTS buffer encryption/decryption
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*/
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int mbedtls_aes_crypt_xts( mbedtls_aes_context *crypt_ctx,
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mbedtls_aes_context *tweak_ctx,
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int mode,
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size_t bits_length,
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unsigned char iv[16],
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const unsigned char *input,
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unsigned char *output )
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{
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union xts_buf128 {
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uint8_t u8[16];
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uint64_t u64[2];
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};
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union xts_buf128 scratch;
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union xts_buf128 cts_scratch;
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union xts_buf128 t_buf;
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union xts_buf128 cts_t_buf;
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union xts_buf128 *inbuf;
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union xts_buf128 *outbuf;
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size_t length = bits_length / 8;
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size_t nblk = length / 16;
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size_t remn = length % 16;
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inbuf = (union xts_buf128*)input;
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outbuf = (union xts_buf128*)output;
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/* For performing the ciphertext-stealing operation, we have to get at least
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* one complete block */
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if( length < 16 )
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return( MBEDTLS_ERR_AES_INVALID_INPUT_LENGTH );
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mbedtls_aes_crypt_ecb( tweak_ctx, MBEDTLS_AES_ENCRYPT, iv, t_buf.u8 );
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if( mode == MBEDTLS_AES_DECRYPT && remn )
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{
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if( nblk == 1 )
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goto decrypt_only_one_full_block;
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nblk--;
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}
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goto first;
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do
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{
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mbedtls_gf128mul_x_ble( t_buf.u8, t_buf.u8 );
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first:
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/* PP <- T xor P */
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scratch.u64[0] = (uint64_t)( inbuf->u64[0] ^ t_buf.u64[0] );
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scratch.u64[1] = (uint64_t)( inbuf->u64[1] ^ t_buf.u64[1] );
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/* CC <- E(Key2,PP) */
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mbedtls_aes_crypt_ecb( crypt_ctx, mode, scratch.u8, outbuf->u8 );
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/* C <- T xor CC */
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outbuf->u64[0] = (uint64_t)( outbuf->u64[0] ^ t_buf.u64[0] );
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outbuf->u64[1] = (uint64_t)( outbuf->u64[1] ^ t_buf.u64[1] );
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inbuf += 1;
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outbuf += 1;
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nblk -= 1;
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} while( nblk > 0 );
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/* Ciphertext stealing, if necessary */
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if( remn != 0 )
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{
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outbuf = (union xts_buf128*)output;
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inbuf = (union xts_buf128*)input;
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nblk = length / 16;
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if( mode == MBEDTLS_AES_ENCRYPT )
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{
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memcpy( cts_scratch.u8, (uint8_t*)&inbuf[nblk], remn );
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memcpy( cts_scratch.u8 + remn, ((uint8_t*)&outbuf[nblk - 1]) + remn, 16 - remn );
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memcpy( (uint8_t*)&outbuf[nblk], (uint8_t*)&outbuf[nblk - 1], remn );
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mbedtls_gf128mul_x_ble( t_buf.u8, t_buf.u8 );
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/* PP <- T xor P */
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scratch.u64[0] = (uint64_t)( cts_scratch.u64[0] ^ t_buf.u64[0] );
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scratch.u64[1] = (uint64_t)( cts_scratch.u64[1] ^ t_buf.u64[1] );
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/* CC <- E(Key2,PP) */
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mbedtls_aes_crypt_ecb( crypt_ctx, mode, scratch.u8, scratch.u8 );
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/* C <- T xor CC */
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outbuf[nblk - 1].u64[0] = (uint64_t)( scratch.u64[0] ^ t_buf.u64[0] );
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outbuf[nblk - 1].u64[1] = (uint64_t)( scratch.u64[1] ^ t_buf.u64[1] );
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}
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else /* AES_DECRYPT */
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{
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mbedtls_gf128mul_x_ble( t_buf.u8, t_buf.u8 );
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decrypt_only_one_full_block:
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cts_t_buf.u64[0] = t_buf.u64[0];
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cts_t_buf.u64[1] = t_buf.u64[1];
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mbedtls_gf128mul_x_ble( t_buf.u8, t_buf.u8 );
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/* PP <- T xor P */
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scratch.u64[0] = (uint64_t)( inbuf[nblk - 1].u64[0] ^ t_buf.u64[0] );
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scratch.u64[1] = (uint64_t)( inbuf[nblk - 1].u64[1] ^ t_buf.u64[1] );
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/* CC <- E(Key2,PP) */
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mbedtls_aes_crypt_ecb( crypt_ctx, mode, scratch.u8, scratch.u8 );
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/* C <- T xor CC */
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cts_scratch.u64[0] = (uint64_t)( scratch.u64[0] ^ t_buf.u64[0] );
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cts_scratch.u64[1] = (uint64_t)( scratch.u64[1] ^ t_buf.u64[1] );
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memcpy( (uint8_t*)&inbuf[nblk - 1], (uint8_t*)&inbuf[nblk], remn );
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memcpy( (uint8_t*)&inbuf[nblk - 1] + remn, cts_scratch.u8 + remn, 16 - remn );
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memcpy( (uint8_t*)&outbuf[nblk], cts_scratch.u8, remn );
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/* PP <- T xor P */
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scratch.u64[0] = (uint64_t)( inbuf[nblk - 1].u64[0] ^ cts_t_buf.u64[0] );
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scratch.u64[1] = (uint64_t)( inbuf[nblk - 1].u64[1] ^ cts_t_buf.u64[1] );
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/* CC <- E(Key2,PP) */
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mbedtls_aes_crypt_ecb( crypt_ctx, mode, scratch.u8, scratch.u8 );
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/* C <- T xor CC */
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outbuf[nblk - 1].u64[0] = (uint64_t)( scratch.u64[0] ^ cts_t_buf.u64[0] );
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outbuf[nblk - 1].u64[1] = (uint64_t)( scratch.u64[1] ^ cts_t_buf.u64[1] );
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}
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}
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return( 0 );
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}
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#endif /* MBEDTLS_CIPHER_MODE_XTS */
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#if defined(MBEDTLS_CIPHER_MODE_CFB)
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/*
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* AES-CFB128 buffer encryption/decryption
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@ -252,6 +252,9 @@ static const char *features[] = {
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#if defined(MBEDTLS_CIPHER_MODE_XEX)
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"MBEDTLS_CIPHER_MODE_XEX",
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#endif /* MBEDTLS_CIPHER_MODE_XEX */
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#if defined(MBEDTLS_CIPHER_MODE_XTS)
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"MBEDTLS_CIPHER_MODE_XTS",
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#endif /* MBEDTLS_CIPHER_MODE_XTS */
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#if defined(MBEDTLS_CIPHER_MODE_OFB)
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"MBEDTLS_CIPHER_MODE_OFB",
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#endif /* MBEDTLS_CIPHER_MODE_OFB */
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@ -99,8 +99,8 @@ int main( void )
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#define OPTIONS \
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"md4, md5, ripemd160, sha1, sha256, sha512,\n" \
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"arc4, des3, des, camellia, blowfish,\n" \
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"aes_cbc, aes_gcm, aes_ccm, aes_cmac, aes_xex, des3_cmac,\n" \
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"havege, ctr_drbg, hmac_drbg\n" \
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"aes_cbc, aes_gcm, aes_ccm, aes_cmac, aes_xex, aes_xts,\n" \
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"des3_cmac, havege, ctr_drbg, hmac_drbg\n" \
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"rsa, dhm, ecdsa, ecdh.\n"
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#if defined(MBEDTLS_ERROR_C)
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@ -233,8 +233,8 @@ unsigned char buf[BUFSIZE];
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typedef struct {
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char md4, md5, ripemd160, sha1, sha256, sha512,
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arc4, des3, des,
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aes_cbc, aes_gcm, aes_ccm, aes_cmac, aes_xex, des3_cmac,
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aria, camellia, blowfish,
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aes_cbc, aes_gcm, aes_ccm, aes_cmac, aes_xex, aes_xts,
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des3_cmac, aria, camellia, blowfish,
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havege, ctr_drbg, hmac_drbg,
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rsa, dhm, ecdsa, ecdh;
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} todo_list;
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@ -281,6 +281,8 @@ int main( int argc, char *argv[] )
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todo.aes_cbc = 1;
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else if( strcmp( argv[i], "aes_xex" ) == 0 )
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todo.aes_xex = 1;
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else if( strcmp( argv[i], "aes_xts" ) == 0 )
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todo.aes_xts = 1;
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else if( strcmp( argv[i], "aes_gcm" ) == 0 )
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todo.aes_gcm = 1;
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else if( strcmp( argv[i], "aes_ccm" ) == 0 )
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@ -451,6 +453,29 @@ int main( int argc, char *argv[] )
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mbedtls_aes_free( &tweak_ctx );
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}
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#endif
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#if defined(MBEDTLS_CIPHER_MODE_XTS)
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if( todo.aes_xts )
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{
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int keysize;
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mbedtls_aes_context crypt_ctx, tweak_ctx;
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mbedtls_aes_init( &crypt_ctx );
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mbedtls_aes_init( &tweak_ctx );
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for( keysize = 128; keysize <= 256; keysize += 64 )
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{
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mbedtls_snprintf( title, sizeof( title ), "AES-XTS-%d", keysize );
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memset( buf, 0, sizeof( buf ) );
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memset( tmp, 0, sizeof( tmp ) );
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mbedtls_aes_setkey_enc( &crypt_ctx, tmp, keysize );
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mbedtls_aes_setkey_enc( &tweak_ctx, tmp, keysize );
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TIME_AND_TSC( title,
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mbedtls_aes_crypt_xts( &crypt_ctx, &tweak_ctx, MBEDTLS_AES_ENCRYPT, BUFSIZE * 8, tmp, buf, buf ) );
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}
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mbedtls_aes_free( &crypt_ctx );
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mbedtls_aes_free( &tweak_ctx );
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}
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#endif
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#if defined(MBEDTLS_GCM_C)
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if( todo.aes_gcm )
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{
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@ -49,6 +49,7 @@ add_test_suite(aes aes.cbc)
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add_test_suite(aes aes.cfb)
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add_test_suite(aes aes.rest)
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add_test_suite(aes aes.xex)
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add_test_suite(aes aes.xts)
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add_test_suite(arc4)
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add_test_suite(aria)
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add_test_suite(asn1write)
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@ -225,6 +225,80 @@ exit:
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}
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/* END_CASE */
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/* BEGIN_CASE depends_on:MBEDTLS_CIPHER_MODE_XTS */
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void aes_encrypt_xts( char *hex_key_string, char *hex_iv_string,
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char *hex_src_string, char *hex_dst_string,
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int data_unit_len, int xts_result )
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{
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unsigned char key_str[100] = { 0, };
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unsigned char iv_str[100] = { 0, };
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unsigned char src_str[100] = { 0, };
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unsigned char dst_str[100] = { 0, };
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unsigned char output[100] = { 0, };
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mbedtls_aes_context crypt_ctx, tweak_ctx;
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int key_len, data_len;
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mbedtls_aes_init( &crypt_ctx );
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mbedtls_aes_init( &tweak_ctx );
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key_len = unhexify( key_str, hex_key_string );
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unhexify( iv_str, hex_iv_string );
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data_len = unhexify( src_str, hex_src_string );
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mbedtls_aes_setkey_enc( &crypt_ctx, key_str, ( key_len * 8 ) / 2 );
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mbedtls_aes_setkey_enc( &tweak_ctx, key_str + key_len / 2, ( key_len * 8 ) / 2 );
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TEST_ASSERT( mbedtls_aes_crypt_xts( &crypt_ctx, &tweak_ctx, MBEDTLS_AES_ENCRYPT, data_unit_len, iv_str, src_str, output ) == xts_result );
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if( xts_result == 0 )
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{
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hexify( dst_str, output, data_len );
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TEST_ASSERT( strcmp( (char *) dst_str, hex_dst_string ) == 0 );
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}
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exit:
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mbedtls_aes_free( &crypt_ctx );
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mbedtls_aes_free( &tweak_ctx );
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}
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/* END_CASE */
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/* BEGIN_CASE depends_on:MBEDTLS_CIPHER_MODE_XTS */
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void aes_decrypt_xts( char *hex_key_string, char *hex_iv_string,
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char *hex_src_string, char *hex_dst_string,
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int data_unit_len, int xts_result )
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{
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unsigned char key_str[100] = { 0, };
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unsigned char iv_str[100] = { 0, };
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unsigned char src_str[100] = { 0, };
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unsigned char dst_str[100] = { 0, };
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unsigned char output[100] = { 0, };
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mbedtls_aes_context crypt_ctx, tweak_ctx;
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int key_len, data_len;
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mbedtls_aes_init( &crypt_ctx );
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mbedtls_aes_init( &tweak_ctx );
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key_len = unhexify( key_str, hex_key_string );
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unhexify( iv_str, hex_iv_string );
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data_len = unhexify( src_str, hex_src_string );
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mbedtls_aes_setkey_dec( &crypt_ctx, key_str, ( key_len * 8 ) / 2 );
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mbedtls_aes_setkey_enc( &tweak_ctx, key_str + key_len / 2, ( key_len * 8 ) / 2 );
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TEST_ASSERT( mbedtls_aes_crypt_xts( &crypt_ctx, &tweak_ctx, MBEDTLS_AES_DECRYPT, data_unit_len, iv_str, src_str, output ) == xts_result );
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if( xts_result == 0 )
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{
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hexify( dst_str, output, data_len );
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TEST_ASSERT( strcmp( (char *) dst_str, hex_dst_string ) == 0 );
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}
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exit:
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mbedtls_aes_free( &crypt_ctx );
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mbedtls_aes_free( &tweak_ctx );
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}
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/* END_CASE */
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/* BEGIN_CASE depends_on:MBEDTLS_CIPHER_MODE_CFB */
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void aes_encrypt_cfb128( char *hex_key_string, char *hex_iv_string,
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char *hex_src_string, char *hex_dst_string )
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4200
tests/suites/test_suite_aes.xts.data
Normal file
4200
tests/suites/test_suite_aes.xts.data
Normal file
File diff suppressed because it is too large
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