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Titlebook: Constructive Side-Channel Analysis and Secure Design; 6th International Wo Stefan Mangard,Axel Y. Poschmann Conference proceedings 2015 Spr

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Constructive Side-Channel Analysis and Secure Design6th International Wo
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Improving Non-profiled Attacks on Exponentiations Based on Clustering and Extracting Leakage from Muleakage. This is particularly critical in case of asymmetric cryptography, where attackers are only allowed single side-channel observations because secrets are either ephemeral or blinded by countermeasures. We focus on . attacks which require less attacker privileges and cannot be prevented easily
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Efficient Selection of Time Samples for Higher-Order DPA with Projection Pursuitstleneck of practical adversaries/evaluators as the size of the measurement traces increases, especially in the challenging context of masked implementations, where only a combination of multiple shares reveals information in higher-order statistical moments. In this paper, we describe new (black box
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Two Operands of Multipliers in Side-Channel Attack two consequences. Firstly, designing order of operands can be a cost-effective countermeasure.We show a concrete example in which operand order determines success and failure of the attack. Secondly, countermeasures can be ineffective if the asymmetric leakage is considered. In addition to the main
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Evaluating the Duplication of Dual-Rail Precharge Logics on FPGAsost of these schemes have originally been designed for ASIC platforms, but much efforts have been spent to map them to FPGAs as well. A particular challenge is here to apply those schemes to the predefined logic structures of FPGAs (i.e., slices, LUTs, FFs, and routing switch boxes) for which specia
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Side-Channel Protection by Randomizing Look-Up Tables on Reconfigurable Hardwaretives at the cost of a significant reconfiguration time for the mask update. In this work we analyze alternative ways to implement dynamic first-order masking of AES with randomized look-up tables that can reduce this mask update time. The memory primitives we consider in this work include three dis
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A Faster and More Realistic , Attack on AESa dangerous behavior from virtualization systems that poses a serious security risk: resource sharing. This work exploits a shared resource optimization technique called memory deduplication to mount a powerful known-ciphertext only cache side-channel attack on a popular . implementation of AES. In
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Faster Software for Fast Endomorphismsion. Despite their introduction in 2001, implementations of the GLV method have yet to permeate widespread software libraries. Furthermore, side-channel vulnerabilities, specifically cache-timing attacks, remain unpatched in the OpenSSL code base since the first attack in 2009 (Brumley and Hakala) e
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