Francesco Berti

dblp:189/1685 · DBLP profile ↗
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6ranked-venue papers
5as first author
2since 2021 · last 2023
0000-0002-3558-7177ORCID · corroborated

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

Security and privacy · 6 · 5 first-author · 2 since 2021
YearPublicationVenuePosition
2023 Reconsidering Generic Composition: The Modes A10, A11 and A12 are Insecure
Francesco Berti
ACISP1
2021 Efficient Leakage-Resilient MACs Without Idealized Assumptions
Francesco Berti, Chun Guo 0002, Thomas Peters, François-Xavier Standaert
ASIACRYPT (2)1
2020 Learning with Physical Noise or Errors
abstract
Hard learning problems have recently attracted significant attention within the cryptographic community, both as a versatile assumption on which to build various protocols, and as a potentially sound basis for lightweight (possibly side-channel and fault resistant) implementations. Yet, in this second case, a recurrent drawback of primitives based on the Learning Parity with Noise and Learning With Errors problems is their additional randomness requirements to generate noise or errors. In parallel, the move towards nanoscale devices renders modern implementations increasingly prone to various types of errors. As a result, inexact computing has emerged as a new paradigm to efficiently deal with the challenges raised by such erroneous computations, and mitigate the cost and power consumption overheads they cause. In this paper, we show that these cryptographic and electronic challenges can actually be turned into new opportunities, and provide an elegant solution one to the other. That is, we show that inexact implementations of inner product computations lead to a natural way to define new Learning with Physical Noise or Error assumptions, paving the way to more efficient and physically secure implementations, with potential interest for securing emerging Internet of Things applications.
Dina Kamel, François-Xavier Standaert, Alexandre Duc, Denis Flandre, Francesco Berti
IEEE Trans. Dependable Secur. Comput.5
2019 Strong Authenticity with Leakage Under Weak and Falsifiable Physical Assumptions
Francesco Berti, Chun Guo 0002, Olivier Pereira, Thomas Peters, François-Xavier Standaert
Inscrypt1
2018 Ciphertext Integrity with Misuse and Leakage: Definition and Efficient Constructions with Symmetric Primitives
abstract
Leakage resilience (LR) and misuse resistance (MR) are two important properties for the deployment of authenticated encryption (AE) schemes. They aim at mitigating the impact of implementation flaws due to side-channel leakages and misused randomness. In this paper, we discuss the interactions and incompatibilities between these two properties.
Francesco Berti, François Koeune, Olivier Pereira, Thomas Peters, François-Xavier Standaert
AsiaCCS1
2016 An Analysis of the Learning Parity with Noise Assumption Against Fault Attacks
Francesco Berti, François-Xavier Standaert
CARDIS1