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  4. Masking vs. Multiparty Computation: How Large Is the Gap for AES?
 
conference paper not in proceedings

Masking vs. Multiparty Computation: How Large Is the Gap for AES?

Grosso, Vincent
•
Standaert, Francois-Xanvier
•
Faust, Sebastian  
2013
Workshop on Cryptographic Hardware and Embedded Systems (CHES)

In this paper, we evaluate the performances of state-of-the art higher-order masking schemes for the AES. Doing so, we pay a particular attention to the comparison between specialized solutions introduced exclusively as countermeasures against side-channel analysis, and a recent proposal by Roche and Prouff exploiting MultiParty Computation (MPC) techniques. We show that the additional security features this latter scheme provides (e.g. its glitch-freeness) comes at the cost of large performance overheads.We then study how exploiting standard optimization techniques from the MPC literature can be used to reduce this gap. In particular, we show that “packed secret sharing” based on a modified multiplication algorithm can speed up MPC-based masking when the order of the masking scheme increases. Eventually, we discuss the randomness requirements of masked implementations. For this purpose, we first show with information theoretic arguments that the security guarantees of masking are only preserved if this randomness is uniform, and analyze the consequences of a deviation from this requirement. We then conclude the paper by including the cost of randomness generation in our performance evaluations. These results should help actual designers to choose a masking scheme based on security and performance constraints.

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Type
conference paper not in proceedings
Author(s)
Grosso, Vincent
Standaert, Francois-Xanvier
Faust, Sebastian  
Date Issued

2013

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LASEC  
Event nameEvent placeEvent date
Workshop on Cryptographic Hardware and Embedded Systems (CHES)

Santa Barbara, California, USA

August 20-23, 2013

Available on Infoscience
August 29, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/94397
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