Fabien Laguillaumie

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38ranked-venue papers
7as first author
11since 2021 · last 2026
0000-0001-6464-1139ORCID · verified

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Security and privacy · 29 · 5 first-author · 8 since 2021Theory of computation · 7 · 1 first-author · 3 since 2021Databases, data management, data science and information retrieval · 3 · 2 first-author
YearPublicationVenuePosition
2026 Simulation secure multi-input quadratic functional encryption: applications to differential privacy
Ferran Alborch Escobar, Sébastien Canard, Fabien Laguillaumie
Des. Codes Cryptogr.3
2026 Threshold Niederreiter: chosen-ciphertext security and improved distributed decoding
Pascal Giorgi, Fabien Laguillaumie, Lucas Ottow, Damien Vergnaud
Des. Codes Cryptogr.2
2025 Efficient Succinct Zero-Knowledge Arguments in the CL Framework
Agathe Beaugrand, Guilhem Castagnos, Fabien Laguillaumie
J. Cryptol.3
2024 Simulation Secure Multi-input Quadratic Functional Encryption
Ferran Alborch Escobar, Sébastien Canard, Fabien Laguillaumie
SAC (1)3
2024 Computational Differential Privacy for Encrypted Databases Supporting Linear Queries
abstract
Differential privacy is a fundamental concept for protecting individual privacy in databases while enabling data analysis. Conceptually, it is assumed that the adversary has no direct access to the database, and therefore, encryption is not necessary. However, with the emergence of cloud computing and the << on-cloud >> storage of vast databases potentially contributed by multiple parties, it is becoming increasingly necessary to consider the possibility of the adversary having (at least partial) access to sensitive databases. A consequence is that, to protect the on-line database, it is now necessary to employ encryption. At PoPETs'19, it was the first time that the notion of differential privacy was considered for encrypted databases, but only for a limited type of query, namely histograms. Subsequently, a new type of query, summation, was considered at CODASPY'22. These works achieve statistical differential privacy, by still assuming that the adversary has no access to the encrypted database. In this paper, we take an essential step further by assuming that the adversary can eventually access the encrypted data, making it impossible to achieve statistical differential privacy because the security of encryption (beyond the one-time pad) relies on computational assumptions. Therefore, the appropriate privacy notion for encrypted databases that we target is computational differential privacy, which was introduced by Beimel et al. at CRYPTO '08. In our work, we focus on the case of functional encryption, which is an extensively studied primitive permitting some authorized computation over encrypted data. Technically, we show that any randomized functional encryption scheme that satisfies simulation-based security and differential privacy of the output can achieve computational differential privacy for multiple queries to one database. Our work also extends the summation query to a much broader range of queries, specifically linear queries, by utilizing inner-product functional encryption. Hence, we provide an instantiation for inner-product functionalities by proving its simulation soundness and present a concrete randomized inner-product functional encryption with computational differential privacy against multiple queries. In terms of efficiency, our protocol is almost as practical as the underlying inner product functional encryption scheme. As evidence, we provide a full benchmark, based on our concrete implementation for databases with up to 1 000 000 entries. Our work can be considered as a step towards achieving privacy-preserving encrypted databases for a wide range of query types and considering the involvement of multiple database owners.
Ferran Alborch Escobar, Sébastien Canard, Fabien Laguillaumie, Duong Hieu Phan
Proc. Priv. Enhancing Technol.3
2023 I Want to Ride My BICYCL : BICYCL Implements CryptographY in CLass Groups
Cyril Bouvier, Guilhem Castagnos, Laurent Imbert, Fabien Laguillaumie
J. Cryptol.4
2023 Bandwidth-efficient threshold EC-DSA revisited: Online/offline extensions, identifiable aborts proactive and adaptive security
Guilhem Castagnos, Dario Catalano, Fabien Laguillaumie, Federico Savasta, Ida Tucker
Theor. Comput. Sci.3
2022 Threshold Linearly Homomorphic Encryption on bfZ/2kbfZ
Guilhem Castagnos, Fabien Laguillaumie, Ida Tucker
ASIACRYPT (2)2
2022 A tighter proof for CCA secure inner product functional encryption: Genericity meets efficiency
Guilhem Castagnos, Fabien Laguillaumie, Ida Tucker
Theor. Comput. Sci.2
2021 Efficient CCA Timed Commitments in Class Groups
abstract
Timed commitments [Boneh and Naor, CRYPTO 2000] are the timed analogue of standard commitments, where the commitment can be non-interactively opened after a pre-specified amount of time passes. Timed commitments have a large spectrum of applications, such as sealed bid auctions, fair contract signing, fair multi-party computation, and cryptocurrency payments. Unfortunately, all practical constructions rely on a (private-coin) trusted setup and do not scale well with the number of participants. These are two severe limiting factors that have hindered the widespread adoption of this primitive.
Sri Aravinda Krishnan Thyagarajan, Guilhem Castagnos, Fabien Laguillaumie, Giulio Malavolta
CCS3
2021 Privately Outsourcing Exponentiation to a Single Server: Cryptanalysis and Optimal Constructions
Céline Chevalier, Fabien Laguillaumie, Damien Vergnaud
Algorithmica2
2020 Blind Functional Encryption
Sébastien Canard, Adel Hamdi, Fabien Laguillaumie
ICICS3
2019 Two-Party ECDSA from Hash Proof Systems and Efficient Instantiations
Guilhem Castagnos, Dario Catalano, Fabien Laguillaumie, Federico Savasta, Ida Tucker
CRYPTO (3)3
2018 Practical Fully Secure Unrestricted Inner Product Functional Encryption Modulo p
Guilhem Castagnos, Fabien Laguillaumie, Ida Tucker
ASIACRYPT (2)2
2017 Encryption Switching Protocols Revisited: Switching Modulo p
Guilhem Castagnos, Laurent Imbert, Fabien Laguillaumie
CRYPTO (1)3
2016 Verifiable Message-Locked Encryption
Sébastien Canard, Fabien Laguillaumie, Marie Paindavoine
CANS2
2016 Privately Outsourcing Exponentiation to a Single Server: Cryptanalysis and Optimal Constructions
Céline Chevalier, Fabien Laguillaumie, Damien Vergnaud
ESORICS (1)2
2015 Implementing Candidate Graded Encoding Schemes from Ideal Lattices
Martin R. Albrecht, Catalin Cocis, Fabien Laguillaumie, Adeline Roux-Langlois
ASIACRYPT (2)3
2015 Linearly Homomorphic Encryption from $$\mathsf {DDH}$$
Guilhem Castagnos, Fabien Laguillaumie
CT-RSA2
2013 Lattice-Based Group Signatures with Logarithmic Signature Size
Fabien Laguillaumie, Adeline Roux-Langlois, Benoît Libert, Damien Stehlé
ASIACRYPT (2)1
2012 Plaintext-Checkable Encryption
Sébastien Canard, Georg Fuchsbauer, Aline Gouget, Fabien Laguillaumie
CT-RSA4
2012 Short Attribute-Based Signatures for Threshold Predicates
Javier Herranz, Fabien Laguillaumie, Benoît Libert, Carla Ràfols
CT-RSA2
2012 Attribute-based encryption schemes with constant-size ciphertexts
Nuttapong Attrapadung, Javier Herranz, Fabien Laguillaumie, Benoît Libert, Elie de Panafieu, Carla Ràfols
Theor. Comput. Sci.3
2011 Relations between semantic security and anonymity in identity-based encryption
Javier Herranz, Fabien Laguillaumie, Carla Ràfols
Inf. Process. Lett.2
2011 A New Efficient Threshold Ring Signature Scheme Based on Coding Theory
abstract
Ring signatures were introduced by Rivest, Shamir, and Tauman in 2001. These signatures allow a signer to anonymously authenticate a message on behalf of a group of his choice. This concept was then extended by Bresson, Stern, and Szydlo into$t$-out-of-$N$(threshold) ring signatures in 2002. We propose in this article a generalization of Stern's code-based identification (and signature) scheme to design a practical$t$-out-of-$N$threshold ring signature scheme. The size of the resulting signatures is in${\cal O}(N)$and does not depend on$t$, contrary to most of the existing protocols. Our scheme is existentially unforgeable under a chosen message attack in the random oracle model assuming the hardness of the minimum distance problem, is unconditionally source hiding, has a very short public key and has an overall complexity in${\cal O}(N)$. This protocol is the first efficient code-based ring signature scheme and the first code-based threshold ring signature scheme. Moreover it has a better complexity than number-theory based schemes which have a complexity in${\cal O}(Nt)$. This paper is an extended version of a paper published in the conference PQCrypto 2008, with complete proofs and definitions.
Carlos Aguilar Melchor, Pierre-Louis Cayrel, Philippe Gaborit, Fabien Laguillaumie
IEEE Trans. Inf. Theory4
2010 A Variant of Miller's Formula and Algorithm
John Boxall, Nadia El Mrabet, Fabien Laguillaumie, Duc-Phong Le
Pairing3
2010 Time-selective convertible undeniable signatures with short conversion receipts
Fabien Laguillaumie, Damien Vergnaud
Inf. Sci.1
2009 Factoring pq2 with Quadratic Forms: Nice Cryptanalyses
Guilhem Castagnos, Antoine Joux, Fabien Laguillaumie, Phong Q. Nguyen
ASIACRYPT3
2009 On the Security of Cryptosystems with Quadratic Decryption: The Nicest Cryptanalysis
Guilhem Castagnos, Fabien Laguillaumie
EUROCRYPT2
2009 Fair E-Cash: Be Compact, Spend Faster
Sébastien Canard, Cécile Delerablée, Aline Gouget, Emeline Hufschmitt, Fabien Laguillaumie, Hervé Sibert, Jacques Traoré, Damien Vergnaud
ISC5
2008 TrapdoorSanitizable Signatures and Their Application to Content Protection
Sébastien Canard, Fabien Laguillaumie, Michel Milhau
ACNS2
2007 On the Soundness of Restricted Universal Designated Verifier Signatures and Dedicated Signatures
Fabien Laguillaumie, Damien Vergnaud
ISC1
2007 Multi-designated verifiers signatures: anonymity without encryption
Fabien Laguillaumie, Damien Vergnaud
Inf. Process. Lett.1
2006 Efficient Authentication for Reactive Routing Protocols
abstract
Ad hoc networks are dynamic networks formed "on the fly" by a set of nodes. Achieving secure routing in such networks is a big challenge. Asymmetric signature schemes provide mechanisms for authentication, but may result in inefficient implementations, specially when a large number of nodes is expected. Some of these efficiency problems can be mitigated with the use of aggregate signatures, which reduce the space and computations required for managing many different signatures. In this work we formalize a new concept, aggregate designated verifier signature schemes, which is suitable for authentication of routes in reactive protocols. We propose a specific and efficient scheme with provable security in the random oracle model
Raghav Bhaskar, Javier Herranz, Fabien Laguillaumie
AINA (2)3
2006 Blind Ring Signatures Secure Under the Chosen-Target-CDH Assumption
Javier Herranz, Fabien Laguillaumie
ISC2
2005 Universally Convertible Directed Signatures
Fabien Laguillaumie, Pascal Paillier, Damien Vergnaud
ASIACRYPT1
2005 Time-Selective Convertible Undeniable Signatures
Fabien Laguillaumie, Damien Vergnaud
CT-RSA1
2004 Multi-designated Verifiers Signatures
Fabien Laguillaumie, Damien Vergnaud
ICICS1