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Recent Posts

AES 256 (Advanced Encryption Standard) in OFB mode generates randomized encrypted text checked with longest run of ones random number test at 99,9 per cent conffidence

Once the change performed as explained in post Modified bit level of CryptoRandomStream namespace to match needs of DiceChecker and HashDigester products has been made and frequency test has been verfied, new verfications of AES 256 (Advanced Encryption Standard) with OFB mode in order to generate randomized encrypted sequences are made.

Contnuing with Longest Run Of Ones random number test at a 99,9% conffidence level executed with LongestRunOfOnesTest class implemented in DiceChecker product we can see that it generates random encrypted sequences with a great conffidence …

Click here if you want to read more on … AES 256 (Advanced Encryption Standard) in OFB mode generates randomized encrypted text checked with longest run of ones random number test at 99,9 per cent conffidence

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AES 192 (Advanced Encryption Standard) in OFB mode generates randomized encrypted text checked with longest run of ones random number test at 99,9 per cent conffidence

Once the change performed as explained in post Modified bit level of CryptoRandomStream namespace to match needs of DiceChecker and HashDigester products has been made and frequency test has been verfied, new verfications of AES 192 (Advanced Encryption Standard) with OFB mode in order to generate randomized encrypted sequences are made.

Contnuing with Longest Run Of Ones random number test at a 99,9% conffidence level executed with LongestRunOfOnesTest class implemented in DiceChecker product we can see that it generates random encrypted sequences with a great conffidence …

Click here if you want to read more on … AES 192 (Advanced Encryption Standard) in OFB mode generates randomized encrypted text checked with longest run of ones random number test at 99,9 per cent conffidence

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Established cipher and decipher AES 128 with CBC operation mode execution time relation with plaintext and ciphertext stream length

As performance execution is an important issue to encryption we need to know time performance relation between AES 128 with CBC operation mode and the random number tests implemented in DiceLock. We’ve got cipher and decipher time relation with stream length.

To perform the analysis we’ve used our future product DiceLock cipher and CounterTime class (counterTime.h and counterTime.cpp files available at our Knowledge site) of DiceLockTime DLL

We’ve checked that a linear regression formula with great conffidence has been computed which will allow us to extract DiceLock components relations.

Click here if you want to read more on … Established cipher and decipher AES 128 with CBC operation mode execution time relation with plaintext and ciphertext stream length

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AES 128 (Advanced Encryption Standard) in OFB mode generates randomized encrypted text checked with longest run of ones random number test at 99,9 per cent conffidence

Once the change performed as explained in post Modified bit level of CryptoRandomStream namespace to match needs of DiceChecker and HashDigester products has been made and frequency test has been verfied, new verfications of AES 128 (Advanced Encryption Standard) with OFB mode in order to generate randomized encrypted sequences are made.

Contnuing with Longest Run Of Ones random number test at a 99,9% conffidence level executed with LongestRunOfOnesTest class implemented in DiceChecker product we can see that it generates random encrypted sequences with a great conffidence …

Click here if you want to read more on … AES 128 (Advanced Encryption Standard) in OFB mode generates randomized encrypted text checked with longest run of ones random number test at 99,9 per cent conffidence

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