David Naccache

dblp:41/6833 · also Deh Cac Can · DBLP profile ↗
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83ranked-venue papers
11as first author
4since 2021 · last 2023
0000-0002-8651-6555ORCID · corroborated

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

Security and privacy · 74 · 11 first-author · 2 since 2021Artificial intelligence and machine learning · 3 · 2 since 2021Theory of computation · 3Systems, architecture and hardware · 2Graphics, computer vision, multimedia, augmented reality and games · 2 · 2 since 2021Human-computer interaction and ubiquitous computing · 2 · 2 since 2021Applied, interdisciplinary, general and emerging computing · 2Software engineering, systems software and programming languages · 1
YearPublicationVenuePosition
2023 Sampling From Autoencoders' Latent Space via Quantization And Probability Mass Function Concepts
abstract
In this study, we focus on sampling from the latent space of generative models built upon autoencoders so as the reconstructed samples are lifelike images. To do to, we introduce a novel post-training sampling algorithm rooted in the concept of probability mass functions, coupled with a quantization process. Our proposed algorithm establishes a vicinity around each latent vector from the input data and then proceeds to draw samples from these defined neighborhoods. This strategic approach ensures that the sampled latent vectors predominantly inhabit high-probability regions, which, in turn, can be effectively transformed into authentic real-world images. A noteworthy point of comparison for our sampling algorithm is the sampling technique based on Gaussian mixture models (GMM), owing to its inherent capability to represent clusters. Remarkably, we manage to improve the time complexity from the previous $\mathcal{O}(n \times d \times k \times i)$ associated with GMM sampling to a much more streamlined $\mathcal{O}(n \times d)$, thereby resulting in substantial speedup during runtime. Moreover, our experimental results, gauged through the Fréchet inception distance (FID) for image generation, underscore the superior performance of our sampling algorithm across a diverse range of models and datasets. On the MNIST benchmark dataset, our approach outperforms GMM sampling by yielding a noteworthy improvement of up to 0.89 in FID value. Furthermore, when it comes to generating images of faces and ocular images, our approach showcases substantial enhancements with FID improvements of 1.69 and 0.87 respectively, as compared to GMM sampling, as evidenced on the CelebA and MOBIUS datasets. Lastly, we substantiate our methodology’s efficacy in estimating latent space distributions in contrast to GMM sampling, particularly through the lens of the Wasserstein distance.
Aymene Mohammed Bouayed, Adrian Iaccovelli, David Naccache
IJCB3
2022 Federated Learning Aggregation: New Robust Algorithms with Guarantees
abstract
Federated Learning (FL) has been recently proposed for distributed model training at the edge. The principle of this approach is to aggregate models learned over distributed clients to obtain a new more general "averaged" model. The resulting model is then redistributed to clients for further training. To date, the most popular federated learning algorithm uses coordinate-wise averaging of the model parameters for aggregation (FedAvg). In this paper, we carry out a general mathematical convergence analysis to evaluate aggregation strategies in a FL framework. From this, we derive novel aggregation algorithms which are able to modify their model architecture by differentiating client contributions according to the value of their losses. Moreover, we go beyond the assumptions introduced in theory, by evaluating the performance of these strategies and by comparing them with the one of FedAvg in classification tasks in both the IID and the non-IID framework.
Adnan Ben Mansour, Gaia Carenini, Alexandre Duplessis, David Naccache
ICMLA4
2021 Explaining the Entombed Algorithm
abstract
In [1], John Aycock and Tara Copplestone pose an open question, namely the explanation of the mysterious lookup table used in the Entombed Game's Algorithm for two dimensional maze generation. The question attracted media attention (BBC etc.) and was open until today. This paper answers this question, explains the algorithm and extends it to three dimensions.
Leon Mächler, David Naccache
CoG2
2021 Physical fault injection and side-channel attacks on mobile devices: A comprehensive analysis
Carlton Shepherd, Konstantinos Markantonakis, Nico van Heijningen, Driss Aboulkassimi, Clément Gaine, Thibaut Heckmann, David Naccache
Comput. Secur.7
2020 Return-Oriented Programming on RISC-V
abstract
This paper provides the first analysis on the feasibility of Return-Oriented programming (ROP) on RISC-V, a new instruction set architecture targeting embedded systems. We show the existence of a new class of gadgets, using several Linear Code Sequences And Jumps (LCSAJ), undetected by current Galileo-based ROP gadget searching tools. We argue that this class of gadgets is rich enough on RISC-V to mount complex ROP attacks, bypassing traditional mitigation like DEP, ASLR, stack canaries, G-Free and some compiler-based backward-edge CFI, by jumping over any guard inserted by a compiler to protect indirect jump instructions. We provide examples of such gadgets, as well as a proof-of-concept ROP chain, using C code injection to leverage a privilege escalation attack on two standard Linux operating systems. Additionally, we discuss some of the required mitigations to prevent such attacks and provide a new ROP gadget finder algorithm that handles this new class of gadgets.
Georges-Axel Jaloyan, Konstantinos Markantonakis, Raja Naeem Akram, David Robin, Keith Mayes, David Naccache
AsiaCCS6
2020 Approaching Optimal Duplicate Detection in a Sliding Window
Rémi Géraud, Marius Lombard-Platet, David Naccache
COCOON3
2019 Integer Reconstruction Public-Key Encryption
Houda Ferradi, David Naccache
CANS2
2019 Robust Encryption, Extended
Rémi Géraud, David Naccache, Razvan Rosie
CT-RSA2
2019 Keyed Non-parametric Hypothesis Tests
Cheng-Kang Chu, Hsiao-Ying Lin, Marius Lombard-Platet, David Naccache
NSS5
2019 How to Compartment Secrets
Gaëlle Candel, Rémi Géraud, David Naccache
WISTP3
2018 Efficient subtree-based encryption for fuzzy-entity data sharing
Jianwei Liu 0001, Qianhong Wu, David Naccache, Houda Ferradi
Soft Comput.5
2017 The Case for System Command Encryption
abstract
In several popular standards (e.g. ISO 7816, ISO 14443 or ISO 11898) and IoT applications, a node (transponder, terminal) sends commands and data to another node (transponder, card) to accomplish an applicative task (e.g. a payment or a measurement). Most standards encrypt and authenticate the data. However, as an application of Kerckhoffs' principle, system designers usually consider that commands are part of the system specifications and must hence be transmitted in clear while the data that these commands process is encrypted and signed. While this assumption holds in systems representable by relatively simple state machines, leaking command information is undesirable when the addressed nodes offer the caller a large "toolbox" of commands that the addressing node can activate in many different orders to accomplish different applicative goals. This work proposes protections allowing encrypting and protecting not only the data but also the commands associated to them. The practical implementation of this idea raises a number of difficulties. The first is that of defining a clear adversarial model, a question that we will not address in this paper. The difficulty comes from the application-specific nature of the harm that may possibly stem from leaking the command sequence as well as from the modeling of the observations that the attacker has on the target node's behavior (is a transaction accepted? is a door opened? is a packet routed etc). This paper proposes a collection of empirical protection techniques allowing the sender to hide the sequence of commands sent. We discuss the advantages and the shortcomings of each proposed method. Besides the evident use of nonces (or other internal system states) to render the encryption of identical commands different in time, we also discuss the introduction of random delays between commands (to avoid inferring the next command based on the time elapsed since the previous command), the splitting of a command followed by n data bytes into a collection of encrypted sub-commands conveying the n bytes in chunks of random sizes and the appending of a random number of useless bytes to each packet. Independent commands can be permuted in time or sent ahead of time and buffered. Another practically useful countermeasure consists in masking the number of commands by adding useless "null" command packets. In its best implementation, the flow of commands is sent in packets in which, at times, the sending node addresses several data and command chunks belonging to different successive commands in the sequence.
Marc Beunardeau, Aisling Connolly, Rémi Géraud, David Naccache
AsiaCCS4
2017 Non-interactive Provably Secure Attestations for Arbitrary RSA Prime Generation Algorithms
Fabrice Benhamouda, Houda Ferradi, Rémi Géraud, David Naccache
ESORICS (1)4
2017 Reusing Nonces in Schnorr Signatures - (and Keeping It Secure...)
Marc Beunardeau, Aisling Connolly, Houda Ferradi, Rémi Géraud, David Naccache, Damien Vergnaud
ESORICS (1)5
2017 Twisting Lattice and Graph Techniques to Compress Transactional Ledgers
Rémi Géraud, David Naccache, Razvan Rosie
SecureComm2
2016 Legally Fair Contract Signing Without Keystones
Houda Ferradi, Rémi Géraud, Diana Maimut, David Naccache, David Pointcheval
ACNS4
2016 ARMv8 Shellcodes from 'A' to 'Z'
Hadrien Barral, Houda Ferradi, Rémi Géraud, Georges-Axel Jaloyan, David Naccache
ISPEC5
2016 Thrifty Zero-Knowledge - When Linear Programming Meets Cryptography
Simon Cogliani, Houda Ferradi, Rémi Géraud, David Naccache
ISPEC4
2016 Practical Cryptanalysis of ISO 9796-2 and EMV Signatures
Jean-Sébastien Coron, David Naccache, Mehdi Tibouchi, Ralf-Philipp Weinmann
J. Cryptol.2
2015 Slow Motion Zero Knowledge Identifying with Colliding Commitments
Houda Ferradi, Rémi Géraud, David Naccache
Inscrypt3
2014 Blind Fault Attack against SPN Ciphers
abstract
This paper presents a novel fault attack against Substitution Permutation Networks. The main advantage of the method is an absence of necessity to know the exact cipher's input and output values. The attack relies only on the number of faulty cipher texts originated from the same unknown plaintext. The underlying model is a multiple bit-set or bit-reset faults injected several times at the same intermediate round state. This method can be applied against any round thus any round key can be extracted. The attack was shown to be efficient by simulation against several SPN block ciphers.
Roman Korkikian, Sylvain Pelissier, David Naccache
FDTC3
2014 Improving Thomlinson-Walker's Software Patching Scheme Using Standard Cryptographic and Statistical Tools
Michel Abdalla, Hervé Chabanne, Houda Ferradi, Julien Jainski, David Naccache
ISPEC5
2014 OMD: A Compression Function Mode of Operation for Authenticated Encryption
Simon Cogliani, Diana Maimut, David Naccache, Rodrigo Portella do Canto, Reza Reyhanitabar, Serge Vaudenay, Damian Vizár
Selected Areas in Cryptography3
2014 New Algorithmic Approaches to Point Constellation Recognition
Thomas Bourgeat, Julien Bringer, Hervé Chabanne, Robin Champenois, Jérémie Clément, Houda Ferradi, Marc Heinrich, Paul Melotti, David Naccache, Antoine Voizard
SEC9
2012 Defensive Leakage Camouflage
Eric Brier, Quentin Fortier, Roman Korkikian, Khalid W. Magld, David Naccache, Guilherme Ozari de Almeida, Adrien Pommellet, A. H. Ragab, Jean Vuillemin
CARDIS5
2012 Low-Cost Countermeasure against RPA
Jean-Luc Danger, Sylvain Guilley, Philippe Hoogvorst, Cédric Murdica, David Naccache
CARDIS5
2012 3D Hardware Canaries
Sébastien Briais, Stéphane Caron, Jean-Michel Cioranesco, Jean-Luc Danger, Sylvain Guilley, Jacques-Henri Jourdan, Arthur Milchior, David Naccache, Thibault Porteboeuf
CHES8
2012 Public Key Compression and Modulus Switching for Fully Homomorphic Encryption over the Integers
Jean-Sébastien Coron, David Naccache, Mehdi Tibouchi
EUROCRYPT2
2012 Random Active Shield
abstract
Recently, some active shielding techniques have been broken (e.g. by FlyLogic). The caveat is that their geometry is easy to guess, and thus they can be bypassed with an affordable price. This paper has two contributions. First of all, it provides a definition of the objectives of shielding, which is seldom found in publicly available sources. Notably, we precise the expected functionality, but also the constraints it must meet to be both manufacturable and secure. Second, we propose an innovative solution based on random shielding. The goal of this shielding is to make the geometry of the shield difficult to recognize, thereby making the "identification" phase of the attack harder than in previous schemes. Also, a proof of the shielding existence for two layers of metal is provided, which guarantees that the generation of the layout will succeed. Finally, we provide real tests of the shield generation algorithm, that show it is computationally tractable even for large areas to protect.
Sébastien Briais, Jean-Michel Cioranesco, Jean-Luc Danger, Sylvain Guilley, David Naccache, Thibault Porteboeuf
FDTC5
2012 Fault Injection Attacks on Cryptographic Devices: Theory, Practice, and Countermeasures
abstract
Implementations of cryptographic algorithms continue to proliferate in consumer products due to the increasing demand for secure transmission of confidential information. Although the current standard cryptographic algorithms proved to withstand exhaustive attacks, their hardware and software implementations have exhibited vulnerabilities to side channel attacks, e.g., power analysis and fault injection attacks. This paper focuses on fault injection attacks that have been shown to require inexpensive equipment and a short amount of time. The paper provides a comprehensive description of these attacks on cryptographic devices and the countermeasures that have been developed against them. After a brief review of the widely used cryptographic algorithms, we classify the currently known fault injection attacks into low-cost ones (which a single attacker with a modest budget can mount) and high-cost ones (requiring highly skilled attackers with a large budget). We then list the attacks that have been developed for the important and commonly used ciphers and indicate which ones have been successfully used in practice. The known countermeasures against the previously described fault injection attacks are then presented, including intrusion detection and fault detection. We conclude the survey with a discussion on the interaction between fault injection attacks (and the corresponding countermeasures) and power analysis attacks.
Alessandro Barenghi, Luca Breveglieri, Israel Koren, David Naccache
Proc. IEEE4
2011 Modulus Fault Attacks against RSA-CRT Signatures
Eric Brier, David Naccache, Phong Q. Nguyen, Mehdi Tibouchi
CHES2
2011 Fully Homomorphic Encryption over the Integers with Shorter Public Keys
Jean-Sébastien Coron, Avradip Mandal, David Naccache, Mehdi Tibouchi
CRYPTO3
2011 Can a Program Reverse-Engineer Itself?
Antoine Amarilli, David Naccache, Pablo Rauzy, Emil Simion
IMACC2
2011 Can Code Polymorphism Limit Information Leakage?
Antoine Amarilli, Sascha Müller 0003, David Naccache, Dan Page, Pablo Rauzy, Michael Tunstall
WISTP3
2010 On the Broadcast and Validity-Checking Security of pkcs#1 v1.5 Encryption
Aurélie Bauer, Jean-Sébastien Coron, David Naccache, Mehdi Tibouchi, Damien Vergnaud
ACNS3
2010 When Clocks Fail: On Critical Paths and Clock Faults
Michel Agoyan, Jean-Max Dutertre, David Naccache, Bruno Robisson, Assia Tria
CARDIS3
2010 Secure Delegation of Elliptic-Curve Pairing
Benoît Chevallier-Mames, Jean-Sébastien Coron, Noel McCullagh, David Naccache, Michael Scott
CARDIS4
2010 The Polynomial Composition Problem in (Z/nZ)[X]
Marc Joye, David Naccache, Stéphanie Porte
CARDIS2
2010 Fault Attacks Against emv Signatures
Jean-Sébastien Coron, David Naccache, Mehdi Tibouchi
CT-RSA2
2010 How to flip a bit?
abstract
This note describes laser fault experiments on an 8-bit 0.35μm microcontroller with no countermeasures. We show that reproducible single-bit faults, often considered unfeasible, can be obtained by careful beam-size and shot-instant tuning.
Michel Agoyan, Jean-Max Dutertre, Amir-Pasha Mirbaha, David Naccache, Anne-Lise Ribotta, Assia Tria
IOLTS4
2010 Efficient Rational Secret Sharing in Standard Communication Networks
Georg Fuchsbauer, Jonathan Katz, David Naccache
TCC3
2009 Deconvolving Protected Signals
abstract
The variable clock (VC) side-channel countermeasure consists in clocking a chip with an internal oscillator whose parameters (frequency, duty cycle, shape, etc.) vary randomly in time. In this paper, we use parametric deconvolution to process VC-power consumption curves. We also analyze experimental results in order to show its efficiency.
Mohaned Kafi, Sylvain Guilley, Sandra Marcello, David Naccache
ARES4
2009 Fault Attacks on RSA Signatures with Partially Unknown Messages
Jean-Sébastien Coron, Antoine Joux, Ilya Kizhvatov, David Naccache, Pascal Paillier
CHES4
2009 Practical Cryptanalysis of iso/iec 9796-2 and emv Signatures
Jean-Sébastien Coron, David Naccache, Mehdi Tibouchi, Ralf-Philipp Weinmann
CRYPTO2
2009 Comparing with RSA
Julien Cathalo, David Naccache, Jean-Jacques Quisquater
IMACC2
2009 Oracle-Assisted Static Diffie-Hellman Is Easier Than Discrete Logarithms
Antoine Joux, Reynald Lercier, David Naccache, Emmanuel Thomé
IMACC3
2008 Cryptanalysis of ISO/IEC 9796-1
Don Coppersmith, Jean-Sébastien Coron, François Grieu, Shai Halevi, Charanjit S. Jutla, David Naccache, Julien P. Stern
J. Cryptol.6
2007 When e-th Roots Become Easier Than Factoring
Antoine Joux, David Naccache, Emmanuel Thomé
ASIACRYPT2
2007 Secure and practical identity-based encryption
abstract
A variant of Waters' identity-based encryption scheme with a much smaller system parameters size (only a few kilobytes) is presented. It is shown that this variant is semantically secure against passive adversaries in the standard model. In essence, the new variant divides Waters' system parameters size by a factor ℓ at the cost of (negligibly) reducing security by ℓ bits. The construction yields a fully secure practical identity-based encryption scheme.
David Naccache
IET Inf. Secur.1
2006 Alien vs. Quine, the Vanishing Circuit and Other Tales from the Industry's Crypt
Vanessa Gratzer, David Naccache
EUROCRYPT2
2006 Index Calculation Attacks on RSA Signature and Encryption
Jean-Sébastien Coron, David Naccache, Yvo Desmedt, Andrew M. Odlyzko, Julien P. Stern
Des. Codes Cryptogr.2
2006 The Sorcerer's Apprentice Guide to Fault Attacks
abstract
The effect of faults on electronic systems has been studied since the 1970s when it was noticed that radioactive particles caused errors in chips. This led to further research on the effect of charged particles on silicon, motivated by the aerospace industry, which was becoming concerned about the effect of faults in airborne electronic systems. Since then various mechanisms for fault creation and propagation have been discovered and researched. This paper covers the various methods that can be used to induce faults in semiconductors and exploit such errors maliciously. Several examples of attacks stemming from the exploiting of faults are explained. Finally a series of countermeasures to thwart these attacks are described.
Hagai Bar-El, Hamid Choukri, David Naccache, Michael Tunstall, Claire Whelan
Proc. IEEE3
2004 How to Disembed a Program?
Benoît Chevallier-Mames, David Naccache, Pascal Paillier, David Pointcheval
CHES2
2004 Cryptanalysis of a Zero-Knowledge Identification Protocol of Eurocrypt '95
Jean-Sébastien Coron, David Naccache
CT-RSA2
2004 Projective Coordinates Leak
David Naccache, Nigel P. Smart, Jacques Stern
EUROCRYPT1
2004 Statistics and secret leakage
abstract
In addition to its usual complexity assumptions, cryptography silently assumes that information can be physically protected in a single location. As one can easily imagine, real-life devices are not ideal and information may leak through different physical channels.This paper gives a rigorous definition of leakage immunity and presents several leakage detection tests. In these tests, failure confirms the probable existence of secret-correlated emanations and indicates how likely the leakage is. Success does not refute the existence of emanations but indicates that significant emanations were not detected on the strength of the evidence presented , which of course, leaves the door open to reconsider the situation if further evidence comes to hand at a later date.
Jean-Sébastien Coron, David Naccache, Paul C. Kocher
ACM Trans. Embed. Comput. Syst.2
2003 Boneh et al.'s k-Element Aggregate Extraction Assumption Is Equivalent to the Diffie-Hellman Assumption
Jean-Sébastien Coron, David Naccache
ASIACRYPT2
2003 Trading-Off Type-Inference Memory Complexity against Communication
Konstantin Hyppönen, David Naccache, Elena Trichina, Alexei Tchoulkine
ICICS2
2002 Provably Secure Chipcard Personalization, or, How to Fool Malicious Insiders
Helena Handschuh, David Naccache, Pascal Paillier, Christophe Tymen
CARDIS2
2002 Universal Padding Schemes for RSA
Jean-Sébastien Coron, Marc Joye, David Naccache, Pascal Paillier
CRYPTO3
2002 Reducing the Memory Complexity of Type-Inference Algorithms
David Naccache, Alexei Tchoulkine, Christophe Tymen, Elena Trichina
ICICS1
2001 Twin signatures: an alternative to the hash-and-sign paradigm
abstract
This paper introduces a simple alternative to the hash-and-sign paradigm, from the security point of view but for signing short messages, called twinning. A twin signature is obtained by signing twice a short message by a signature scheme. Analysis of the concept in different settings yields the following results:
David Naccache, David Pointcheval, Jacques Stern
CCS1
2001 Cryptanalysis of RSA Signatures with Fixed-Pattern Padding
Eric Brier, Christophe Clavier, Jean-Sébastien Coron, David Naccache
CRYPTO4
2000 From Fixed-Length to Arbitrary-Length RSA Padding Schemes
Jean-Sébastien Coron, François Koeune, David Naccache
ASIACRYPT3
2000 How to Explain Side-Channel Leakage to Your Kids
David Naccache, Michael Tunstall
CHES1
2000 New Attacks on PKCS#1 v1.5 Encryption
Jean-Sébastien Coron, Marc Joye, David Naccache, Pascal Paillier
EUROCRYPT3
2000 Security Analysis of the Gennaro-Halevi-Rabin Signature Scheme
Jean-Sébastien Coron, David Naccache
EUROCRYPT2
1999 ECC: Do We Need to Count?
Jean-Sébastien Coron, Helena Handschuh, David Naccache
ASIACRYPT3
1999 On the Security of RSA Padding
Jean-Sébastien Coron, David Naccache, Julien P. Stern
CRYPTO2
1999 Padding attacks on RSA
David Naccache
Inf. Secur. Tech. Rep.1
1998 A New Public Key Cryptosystem Based on Higher Residues
abstract
This paper describm a new pub~c-key cryptosystem based on the hardnxs of computing higher residuw modulo a composite MA integer.We introduce two versions of our scheme, one deterministic and the other probabi~stic.The deterministic version is practically oriented encryption amounts to a single exponentiation w.r.t. a modulus with at least 768 bits and a 160-bit exponent.Decryption can be suitably optimized so as to become less demanding than a couple RSA decryptions.Although slower than MA, the new sdeme is still reasonably competitive and has several specific applications.The probabilistic version exhibits an homomorphic encryption scheme whose expansion rate is much better than previously proposed such systems.Furthermore, it has se mantic security, relative to the hardness of computing higher residu~s for suitable moduE.
David Naccache, Jacques Stern
CCS1
1998 How to Improve an Exponentiation Black-Box
Gérard D. Cohen, Antoine Lobstein, David Naccache, Gilles Zémor
EUROCRYPT3
1998 An Accurate Evaluation of Maurer's Universal Test
Jean-Sébastien Coron, David Naccache
Selected Areas in Cryptography2
1998 Computational Alternatives to Random Number Generators
David M'Raïhi, David Naccache, David Pointcheval, Serge Vaudenay
Selected Areas in Cryptography2
1997 A New Public-Key Cryptosystem
David Naccache, Jacques Stern
EUROCRYPT1
1997 XMX: A Firmware-Oriented Block Cipher Based on Modular Multiplications
David M'Raïhi, David Naccache, Jacques Stern, Serge Vaudenay
FSE2
1996 Arithmetic co-processors for public-key cryptography: The state of the art
David Naccache, David M'Raïhi
CARDIS1
1996 Batch Exponentiation: A Fast DLP-Based Signature Generation Strategy
abstract
The signature generation phase of most DLP-based signature schemes (for instance Schnorr[10], El-Gamal[4] or the newly standardized D.S.A.[3]) includes the timeconsuming computation of r = g K mod p where k is random.This paper introduces a new computational strategy that can apply in this particular context :A batch exponentiation technique which allows the generation of large sets of exponentials without introducing any bias between the ks (that is, the signer can batch-compute the exponentials corresponding to arbitrarily imposed powers -for instance by an external random number generator).Our method offers real improvements over the prior art with various time and memory trade-offs.
David M'Raïhi, David Naccache
CCS2
1996 GOST 34.10 - A brief overview of Russia's DSA
Markus Michels, David Naccache, Holger Petersen 0002
Comput. Secur.2
1995 Are Crypto-Accelerators Really Inevitable? 20Bit Zero-Knowledge in Less than a Second on Simple 8-bit Microcontrollers
David Naccache, David M'Raïhi, William Wolfowicz, Adina di Porto
EUROCRYPT1
1995 Can Montgomery Parasites Be Avoided? A Design Methodology Based on Key and Cryptosystem Modifications
David Naccache, David M'Raïhi, Dan Raphaeli
Des. Codes Cryptogr.1
1994 Why You Cannot Even Hope to use Gröbner Bases in Public Key Cryptography: An Open Letter to a Scientist Who Failed and a Challenge to Those Who Have Not Yet Failed
abstract
In the magical art of Steganography, there is nothing frivolous, nor contrary to the Gospels and the Catholic faith; nor have we taught superstitious beliefs. Everything is based on natural, lawful and honest principles; the mystery which veils the precepts of this art and the names of the spirits, requires a cultivated reader; to hide the secrets of this art, which could be harmful if made known to wicked men, we avail ourselves of the services of the spirits. Johannes Trithemius, Steganographia The air is influenced by astral emanations. So one can, naturally and without spiritual help, communicate his thoughts to another man, however large the distance between them. This I have seen done, I did myself and was done by Trithemius… In the same way, one can broadcast in the air any image, however far, by means of mirrors… The image will be, through large distances, seen by a conscious reader in the lunar disc; this artifice was used by Pythagoras. H.C Agrippa De Occulta Philosophia It's better to have loved and lost than to have liked and tied for second Anonymous
Boo Barkee, David Naccache, Julia Ecks, Theo Moriarty, R. F. Ree
J. Symb. Comput.2
1992 On blind signatures and perfect crimes
Sebastiaan H. von Solms, David Naccache
Comput. Secur.2