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Dec. 11, 2006 to Dec. 15, 2006
ISBN: 0-7695-2716-7
pp: 483-492
Guillaume Duc , ENST Bretagne, France
Ronan Keryell , ENST Bretagne, France
Several secure computing hardware architectures using memory encryption and memory integrity checkers have been proposed during the past few years to provide applications with a tamper resistant environment. Some solutions, such as HIDE, have also been proposed to solve the problem of information leakage on the address bus. <p>We propose the CRYPTOPAGE architecture which implements memory encryption, memory integrity protection checking and information leakage protection together with a low performance penalty (3% slowdown on average) by combining the Counter Mode of operation, local authentication values and Merkle trees.</p>
Guillaume Duc, Ronan Keryell, "CryptoPage: An Efficient Secure Architecture with Memory Encryption, Integrity and Information Leakage Protection", ACSAC, 2006, Computer Security Applications Conference, Annual, Computer Security Applications Conference, Annual 2006, pp. 483-492, doi:10.1109/ACSAC.2006.21
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