Roman Walch

dblp:256/9148 · DBLP profile ↗
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8ranked-venue papers
0as first author
7since 2021 · last 2024
—ORCID · none

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

Security and privacy · 8 · 7 since 2021
YearPublicationVenuePosition
2024 Minimize the Randomness in Rasta-Like Designs: How Far Can We Go? - Application to Pasta
Lorenzo Grassi 0001, Fukang Liu, Christian Rechberger, Fabian Schmid, Roman Walch, Qingju Wang 0001
SAC (2)5
2024 Hiding Your Awful Online Choices Made More Efficient and Secure: A New Privacy-Aware Recommender System
Shibam Mukherjee, Roman Walch, Fredrik Meisingseth, Elisabeth Lex, Christian Rechberger
SEC2
2023 Horst Meets Fluid-SPN: Griffin for Zero-Knowledge Applications
Lorenzo Grassi 0001, Yonglin Hao, Christian Rechberger, Markus Schofnegger, Roman Walch, Qingju Wang 0001
CRYPTO (3)5
2023 From Farfalle to Megafono via Ciminion: The PRF Hydra for MPC Applications
Lorenzo Grassi 0001, Morten Øygarden, Markus Schofnegger, Roman Walch
EUROCRYPT (4)4
2022 Reinforced Concrete: A Fast Hash Function for Verifiable Computation
abstract
We propose a new hash function Reinforced Concrete, which is the first generic purpose hash that is fast both for a zero-knowledge prover and in native x86 computations. It is suitable for a various range of zero-knowledge proofs and protocols, from set membership to generic purpose verifiable computation. Being up to 15x faster than its predecessor Poseidon hash, Reinforced Concrete inherits security from traditional time-tested schemes such as AES, whereas taking the zero-knowledge performance from a novel and efficient decomposition of a prime field into compact buckets.
Lorenzo Grassi 0001, Dmitry Khovratovich, Reinhard Lüftenegger, Christian Rechberger, Markus Schofnegger, Roman Walch
CCS6
2022 Privately Connecting Mobility to Infectious Diseases via Applied Cryptography
abstract
Recent work has shown that cell phone mobility data has the unique potential to create accurate models for human mobility and consequently the spread of infected diseases [74]. While prior studies have exclusively relied on a mobile network operator’s subscribers’ aggregated data in modelling disease dynamics, it may be preferable to contemplate aggregated mobility data of infected individuals only. Clearly, naively linking mobile phone data with health records would violate privacy by either allowing to track mobility patterns of infected individuals, leak information on who is infected, or both. This work aims to develop a solution that reports the aggregated mobile phone location data of infected individuals while still maintaining compliance with privacy expectations. To achieve privacy, we use homomorphic encryption, validation techniques derived from zero-knowledge proofs, and differential privacy. Our protocol’s open-source implementation can process eight million subscribers in 70 minutes.
Alexandros Bampoulidis, Alessandro Bruni, Lukas Helminger, Daniel Kales, Christian Rechberger, Roman Walch
Proc. Priv. Enhancing Technol.6
2021 Multi-party Revocation in Sovrin: Performance through Distributed Trust
Lukas Helminger, Daniel Kales, Sebastian Ramacher, Roman Walch
CT-RSA4
2020 Efficient FPGA Implementations of LowMC and Picnic
Daniel Kales, Sebastian Ramacher, Christian Rechberger, Roman Walch, Mario Werner
CT-RSA4