Pierre Karpman

dblp:133/6334 · DBLP profile ↗
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14ranked-venue papers
4as first author
2since 2021 · last 2021
0000-0002-2025-8784ORCID · corroborated

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

Security and privacy · 13 · 3 first-author · 1 since 2021Theory of computation · 1 · 1 first-author · 1 since 2021
YearPublicationVenuePosition
2021 Fast Verification of Masking Schemes in Characteristic Two
Nicolas Bordes, Pierre Karpman
EUROCRYPT (2)2
2021 Computing the Characteristic Polynomial of Generic Toeplitz-like and Hankel-like Matrices
abstract
New algorithms are presented for computing annihilating polynomials of Toeplitz, Hankel, and more generally Toeplitz+Hankel-like matrices over a field. Our approach follows works on Coppersmith's block Wiedemann method with structured projections, which have been recently successfully applied for computing the bivariate resultant. A first baby steps/giant steps approach --directly derived using known techniques on structured matrices-- gives a randomized Monte Carlo algorithm for the minimal polynomial of an (n x n) Toeplitz or Hankel-like matrix of displacement rank α using(Õnw-c(w) Õ c(w)) arithmetic operations, where (w) is the exponent of matrix multiplication and (c(2.373) = 0.523) for the best known value of (w). For generic Toeplitz+Hankel-like matrices a second algorithm computes the characteristic polynomial; in particular, when the displacement rank is considered constant, its cost is (Õn2-1/w). Previous algorithms required (O(n2) operations while the exponents presented here are respectively less than 1.86 and 1.58 with the best known estimate for (w).
Pierre Karpman, Clément Pernet, Hippolyte Signargout, Gilles Villard
ISSAC1
2018 New Instantiations of the CRYPTO 2017 Masking Schemes
Pierre Karpman, Daniel S. Roche
ASIACRYPT (2)1
2018 Key-Recovery Attacks on ASASA
Brice Minaud, Patrick Derbez, Pierre-Alain Fouque, Pierre Karpman
J. Cryptol.4
2017 The First Collision for Full SHA-1
Marc Stevens 0001, Elie Bursztein, Pierre Karpman, Ange Albertini, Yarik Markov
CRYPTO (1)3
2016 Efficient and Provable White-Box Primitives
Pierre-Alain Fouque, Pierre Karpman, Paul Kirchner, Brice Minaud
ASIACRYPT (1)2
2016 Freestart Collision for Full SHA-1
Marc Stevens 0001, Pierre Karpman, Thomas Peyrin
EUROCRYPT (1)2
2015 Key-Recovery Attacks on ASASA
Brice Minaud, Patrick Derbez, Pierre-Alain Fouque, Pierre Karpman
ASIACRYPT (2)4
2015 Higher-Order Differential Meet-in-the-middle Preimage Attacks on SHA-1 and BLAKE
Thomas Espitau, Pierre-Alain Fouque, Pierre Karpman
CRYPTO (1)3
2015 Practical Free-Start Collision Attacks on 76-step SHA-1
Pierre Karpman, Thomas Peyrin, Marc Stevens 0001
CRYPTO (1)1
2015 From Distinguishers to Key Recovery: Improved Related-Key Attacks on Even-Mansour
Pierre Karpman
ISC1
2014 Analysis of BLAKE2
Jian Guo 0001, Pierre Karpman, Ivica Nikolic, Lei Wang 0031, Shuang Wu 0004
CT-RSA2
2014 Diffusion Matrices from Algebraic-Geometry Codes with Efficient SIMD Implementation
Daniel Augot, Pierre-Alain Fouque, Pierre Karpman
Selected Areas in Cryptography3
2013 Security Amplification against Meet-in-the-Middle Attacks Using Whitening
Pierre-Alain Fouque, Pierre Karpman
IMACC2