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- Added POLARSSL_CAMELLIA_SMALL_MEMORY define for SBOX'es
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@ -65,7 +65,9 @@ static const unsigned char SIGMA_CHARS[6][8] =
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{ 0xb0, 0x56, 0x88, 0xc2, 0xb3, 0xe6, 0xc1, 0xfd }
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{ 0xb0, 0x56, 0x88, 0xc2, 0xb3, 0xe6, 0xc1, 0xfd }
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};
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};
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/*static const unsigned char FSb[256] =
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#ifdef POLARSSL_CAMELLIA_SMALL_MEMORY
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static const unsigned char FSb[256] =
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{
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{
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112,130, 44,236,179, 39,192,229,228,133, 87, 53,234, 12,174, 65,
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112,130, 44,236,179, 39,192,229,228,133, 87, 53,234, 12,174, 65,
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35,239,107,147, 69, 25,165, 33,237, 14, 79, 78, 29,101,146,189,
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35,239,107,147, 69, 25,165, 33,237, 14, 79, 78, 29,101,146,189,
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@ -88,7 +90,10 @@ static const unsigned char SIGMA_CHARS[6][8] =
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#define SBOX1(n) FSb[(n)]
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#define SBOX1(n) FSb[(n)]
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#define SBOX2(n) (unsigned char)((FSb[(n)] >> 7 ^ FSb[(n)] << 1) & 0xff)
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#define SBOX2(n) (unsigned char)((FSb[(n)] >> 7 ^ FSb[(n)] << 1) & 0xff)
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#define SBOX3(n) (unsigned char)((FSb[(n)] >> 1 ^ FSb[(n)] << 7) & 0xff)
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#define SBOX3(n) (unsigned char)((FSb[(n)] >> 1 ^ FSb[(n)] << 7) & 0xff)
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#define SBOX4(n) FSb[((n) << 1 ^ (n) >> 7) &0xff]*/
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#define SBOX4(n) FSb[((n) << 1 ^ (n) >> 7) &0xff]
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#else
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static const unsigned char FSb[256] =
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static const unsigned char FSb[256] =
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{
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{
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112, 130, 44, 236, 179, 39, 192, 229, 228, 133, 87, 53, 234, 12, 174, 65,
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112, 130, 44, 236, 179, 39, 192, 229, 228, 133, 87, 53, 234, 12, 174, 65,
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@ -174,6 +179,8 @@ static const unsigned char FSb4[256] =
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#define SBOX3(n) FSb3[(n)]
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#define SBOX3(n) FSb3[(n)]
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#define SBOX4(n) FSb4[(n)]
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#define SBOX4(n) FSb4[(n)]
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#endif
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static const unsigned char shifts[2][4][4] =
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static const unsigned char shifts[2][4][4] =
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{
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{
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{
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{
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@ -832,62 +839,6 @@ int camellia_self_test( int verbose )
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printf( "\n" );
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printf( "\n" );
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return ( 0 );
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return ( 0 );
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/*
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* CFB128 mode
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*/
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/*
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for( i = 0; i < 6; i++ )
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{
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u = i >> 1;
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v = i & 1;
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if( verbose != 0 )
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printf( " AES-CFB128-%3d (%s): ", 128 + u * 64,
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( v == AES_DECRYPT ) ? "dec" : "enc" );
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memcpy( iv, aes_test_cfb128_iv, 16 );
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memcpy( key, aes_test_cfb128_key[u], 16 + u * 8 );
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offset = 0;
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aes_setkey_enc( &ctx, key, 128 + u * 64 );
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if( v == AES_DECRYPT )
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{
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memcpy( buf, aes_test_cfb128_ct[u], 64 );
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aes_crypt_cfb128( &ctx, v, 64, &offset, iv, buf, buf );
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if( memcmp( buf, aes_test_cfb128_pt, 64 ) != 0 )
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{
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if( verbose != 0 )
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printf( "failed\n" );
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return( 1 );
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}
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}
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else
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{
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memcpy( buf, aes_test_cfb128_pt, 64 );
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aes_crypt_cfb128( &ctx, v, 64, &offset, iv, buf, buf );
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if( memcmp( buf, aes_test_cfb128_ct[u], 64 ) != 0 )
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{
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if( verbose != 0 )
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printf( "failed\n" );
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return( 1 );
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}
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}
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if( verbose != 0 )
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printf( "passed\n" );
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}
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if( verbose != 0 )
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printf( "\n" );
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return( 0 ); */
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}
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}
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#endif
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#endif
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