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Lauren De Meyer

dblp:196/5987 · DBLP profile ↗
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3ranked-venue papers
0as first author
0since 2021 · last 2020
0000-0002-3519-2722ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 3

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Network and information security
2 papers
Hardware security and side channels · 81% Cryptographic primitives and cryptanalysis · 19%
Computer architecture, parallel and distributed computing, and storage systems
1 paper
Reconfigurable computing and FPGAs · 50% Integrated circuit design · 50%

Topics — the 9 heaviest of 9, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Hardware security and side channels › side-channel countermeasures › masking
first-order masking
0.412020
Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version · J. Cryptol. 2020
Hardware security and side channels › side-channel countermeasures
masking
0.412020
Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version · J. Cryptol. 2020
Hardware security and side channels
side-channel countermeasures
0.412020
Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version · J. Cryptol. 2020
Integrated circuit design › digital circuit design › cryptographic hardware
AES implementation
0.412020
Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version · J. Cryptol. 2020
Reconfigurable computing and FPGAs
FPGA implementation
0.412020
Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version · J. Cryptol. 2020
Hardware security and side channels
fault attacks
0.312018
CAPA: The Spirit of Beaver Against Physical Attacks · CRYPTO (1) 2018
Cryptographic primitives and cryptanalysis › block cipher
AES
0.112020
Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version · J. Cryptol. 2020
Cryptographic primitives and cryptanalysis › block cipher
AES S-box
0.112020
Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version · J. Cryptol. 2020
Cryptographic primitives and cryptanalysis
block cipher
0.112020
Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version · J. Cryptol. 2020

Methods — techniques the papers use, named apart from their topics

rotational symmetry · 0.9boolean function masking · 0.9secret sharing · 0.3
YearPublicationVenuePosition
2020 Spin Me Right Round Rotational Symmetry for FPGA-Specific AES: Extended Version
abstract
Abstract The effort in reducing the area of AES implementations has largely been focused on application-specific integrated circuits (ASICs) in which a tower field construction leads to a small design of the AES S-box. In contrast, a naive implementation of the AES S-box has been the status-quo on field-programmable gate arrays (FPGAs). A similar discrepancy holds for masking schemes—a well-known side-channel analysis countermeasure—which are commonly optimized to achieve minimal area in ASICs. In this paper, we demonstrate a representation of the AES S-box exploiting rotational symmetry which leads to a 50% reduction in the area footprint on FPGA devices. We present new AES implementations which improve on the state-of-the-art and explore various trade-offs between area and latency. For instance, at the cost of increasing 4.5 times the latency, one of our design variants requires 25% less look-up tables (LUTs) than the smallest known AES on Xilinx FPGAs by Sasdrich and Güneysu at ASAP 2016. We further explore the protection of such implementations against side-channel attacks. We introduce a generic methodology for masking anyn-bit Boolean functions of degreetwith protection orderd. The methodology is exact for first-order and heuristic for higher orders. Its application to our new construction of the AES S-box allows us to improve previous results and introduce the smallest first-order masked AES implementation on Xilinx FPGAs, to date.
Felix Wegener, Lauren De Meyer, Amir Moradi 0001
J. Cryptol.2
2019 BBQ: Using AES in Picnic Signatures
Cyprien Delpech de Saint Guilhem, Lauren De Meyer, Emmanuela Orsini, Nigel P. Smart
SAC2
2018 CAPA: The Spirit of Beaver Against Physical Attacks
Oscar Reparaz, Lauren De Meyer, Begül Bilgin, Victor Arribas, Svetla Nikova, Ventzislav Nikov, Nigel P. Smart
CRYPTO (1)2