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Academic literature on the topic 'Attaques par canaux auxiliaires cachés'
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Dissertations / Theses on the topic "Attaques par canaux auxiliaires cachés"
Thillard, Adrian. "Contre-mesures aux attaques par canaux cachés et calcul multi-parti sécurisé." Thesis, Paris Sciences et Lettres (ComUE), 2016. http://www.theses.fr/2016PSLEE053/document.
Full textCryptosystems are present in a lot of everyday life devices, such as smart cards, smartphones, set-topboxes or passports. The security of these devices is threatened by side-channel attacks, where an attacker observes their physical behavior to learn information about the manipulated secrets. The evaluation of the resilience of products against such attacks is mandatory to ensure the robustness of the embedded cryptography. In this thesis, we exhibit a methodology to efficiently evaluate the success rate of side-channel attacks, without the need to actually perform them. In particular, we build upon a paper written by Rivainin 2009, and exhibit explicit formulaes allowing to accurately compute the success rate of high-order side-channel attacks. We compare this theoretical approach against practical experiments. This approach allows for a quick assessment of the probability of success of any attack based on an additive distinguisher. We then tackle the issue of countermeasures against side- channel attacks. To the best of our knowledge, we study for the first time since the seminal paper of Ishai, Sahai and Wagner in 2003 the issue of the amount of randomness in those countermeasures. We improve the state of the art constructions and show several constructions and bounds on the number of random bits needed to securely perform the multiplication of two bits. We provide specific constructions for practical orders of masking, and prove their security and optimality. Finally, we propose a protocolallowing for the private computation of a secure veto among an arbitrary large number of players, while using a constant number of random bits. Our construction also allows for the secure multiplication of any number of elements of a finite field
Vaquié, Bruno. "Contributions à la sécurité des circuits intégrés face aux attaques par canaux auxiliaires." Thesis, Montpellier 2, 2012. http://www.theses.fr/2012MON20133/document.
Full textSide channel attacks such as power analysis attacks are a threat to the security of integrated circuits.They exploit the physical leakage of circuits during the cryptographic computations to retrieve the secret informations they contain. Many countermeasures, including hardware, have been proposed by the community in order to protect cryptosystems against such attacks. Despite their effectiveness, their major drawback is their significant additional cost in area, speed and consumption. This thesis aims at proposing low cost countermeasures able to reduce the leaks and offering a good compromise between security and costs. First we identify the main sources of leakage of a cryptographic system that integrates an iterative hardware architecture of a symetric algorithm. Then we propose several low cost countermeasures, which aim at reducing this leakage. Finally, we evaluate the robustness of our solutions against side channel attacks
Dosso, Fangan Yssouf. "Contribution de l'arithmétique des ordinateurs aux implémentations résistantes aux attaques par canaux auxiliaires." Electronic Thesis or Diss., Toulon, 2020. http://www.theses.fr/2020TOUL0007.
Full textThis thesis focuses on two currently unavoidable elements of public key cryptography, namely modular arithmetic over large integers and elliptic curve scalar multiplication (ECSM). For the first one, we are interested in the Adapted Modular Number System (AMNS), which was introduced by Bajard et al. in 2004. In this system of representation, the elements are polynomials. We show that this system allows to perform modular arithmetic efficiently. We also explain how AMNS can be used to randomize modular arithmetic, in order to protect cryptographic protocols implementations against some side channel attacks. For the ECSM, we discuss the use of Euclidean Addition Chains (EAC) in order to take advantage of the efficient point addition formula proposed by Meloni in 2007. The goal is to first generalize to any base point the use of EAC for ECSM; this is achieved through curves with one efficient endomorphism. Secondly, we propose an algorithm for scalar multiplication using EAC, which allows error detection that would be done by an attacker we detail
Le, Thanh-Ha. "Analyses et mesures avancées du rayonnement électromagnétique d'un circuit intégré." Grenoble INPG, 2007. http://www.theses.fr/2007INPG0097.
Full textAnalyze two methods: DifferentiaI Power Analysis (DP A) and the Correlation Power Analysis (CP A). The attacks DPA and CPA are based on a power consumption mode!. However, because of the complexity of the circuit, the fact of having a rigorous model is not realistic. We proposed a new method, Partitioning Power Analysis (PP A), which makes it possible to improve the performance of an attack without a precis consumption mode!. Side channel attacks depend closely on the quality of measured signaIs. The performance of an attack can be definitely reduced if the noise level is too high or if the signaIs are not weIl aligned. We proposed solutions based on signal processing techniques to reduce the noise and the effects generated by the signal misalignment. These solutions make it possible to improve the attack effectiveness
Landry, Simon. "Étude de la résistance des algorithmes cryptographiques symétriques face à la cryptanalyse moderne." Electronic Thesis or Diss., Sorbonne université, 2021. http://www.theses.fr/2021SORUS287.
Full textThe goal of this thesis is to contribute to the state-of-the-art by proposing new areas of research in order to secure cryptographic algorithms within an embedded device.Our main focal axis is organized around the countermeasure called threshold implementations which is known to be resistant against side-channel analysis attacks in the presence of glitches.These latter phenomenon occur randomly within an electronic circuit and lead to numerous attacks in cryptanalysis. We study the application of threshold implementations on symmetric-key cryptography.In a first phase, we participate to the cryptographic litterature by designing new threshold implementations easily applicable on a large variety of symmetric-key algorithms. Our countermeasures are provable mathematically secured against side-channel analysis attacks in the presence of glitches. In comparison with the recent publications of the state-of-the-art, we adress new issues and we assure similar or better performances. Therefore, our research has resulted in two patents within STMicroelectronics, thereby contributing to the industrial innovation process.In a second phase, we are interested in the study of the symmetric-key algorithm SM4 and its resistance against side-channel analysis attacks. The works obtained allow to centralize the proposed SM4 countermeasures against side-channel analysis attacks of the state-of-the-art and offer a visibility on the software performances of these constructions. We finally introduce the first threshold implementation of the SM4 algorithm. Our construction is provably mathematically resistant against side-channel analysis attacks in the presence of glitches
Elaabid, Abdelaziz. "Attaques par canaux cachés : expérimentations avancées sur les attaques template." Phd thesis, Université Paris VIII Vincennes-Saint Denis, 2011. http://tel.archives-ouvertes.fr/tel-00937136.
Full textEl, Aabid Moulay Abdelaziz. "Attaques par canaux cachés : expérimentations avancées sur les attaques template." Paris 8, 2011. http://www.theses.fr/2011PA083394.
Full textIn the 90's, the emergence of new cryptanalysis methods revolutionized the security of cryptographic devices. These attacks are based on power consumption analysis, when the microprocessor is running the cryptographic algorithm. Especially, we analyse in this thesis some properties of the \emph{template attack}, and we provide some practical improvements. The analyse consists in a case-study based on side-channel measurements acquired experimentally from a hardwired cryptographic accelerator. The principal component analysis (PCA) is used to represent the \emph{templates} in some dimensions, and we give a physical interpretation of the \emph{templates} eigenvalues and eigenvectors. We introduce a method based on the thresholding of leakage data to accelerate the profiling or the matching stages. In this context, there is an opportunity to study how to best combine many attacks with many leakages from different sources or using different samples from a single source. That brings some concrete answers to the attack combination problem. Also we focus on identifying the problems that arise when there is a discrepancy between the \emph{templates} and the traces to match : the traces can be desynchronized and the amplitudes can be scaled differently. Then we suggest two remedies to cure the \emph{template} mismatches. We show that SCAs when performed with a multi-resolution analysis are much better than considering only the time or the frequency resolution. Actually, the gain in number of traces needed to recover the secret key is relatively considerable with repect to an ordinary attack
Camurati, Giovanni. "Security Threats Emerging from the Interaction Between Digital Activity and Radio Transceiver." Electronic Thesis or Diss., Sorbonne université, 2020. http://www.theses.fr/2020SORUS279.
Full textModern connected devices need both computing and communication capabilities. For example, smartphones carry a multi-core processor, memory, and several radio transceivers on the same platform. Simpler embedded systems often use a mixed-signal chip that contains both a microcontroller and a transceiver. The physical proximity between digital blocks, which are strong sources of electromagnetic noise, and radio transceivers, which are sensitive to such noise, can cause functional and performance problems. Indeed, there exist many noise coupling paths between components on the same platform or silicon die. In this thesis we explore the security issues that arise from the interaction between digital and radio blocks, and we propose two novel attacks. With Screaming Channels, we demonstrate that radio transmitters on mixed-signal chips might broadcast some information about the digital activity of the device, making side channel attacks possible from a large distance. With Noise-SDR, we show that attackers can shape arbitrary radio signals from the electromagnetic noise triggered by software execution, to interact with radio receivers, possibly on the same platform
Fernandes, Medeiros Stéphane. "Attaques par canaux auxiliaires: nouvelles attaques, contre-mesures et mises en oeuvre." Doctoral thesis, Universite Libre de Bruxelles, 2015. http://hdl.handle.net/2013/ULB-DIPOT:oai:dipot.ulb.ac.be:2013/209096.
Full textDoctorat en Sciences
info:eu-repo/semantics/nonPublished
Maingot, Vincent. "Conception sécurisée contre les attaques par fautes et par canaux cachés." Grenoble INPG, 2009. https://tel.archives-ouvertes.fr/tel-00399450.
Full textL'évolution des besoins en sécurité des applications grand public a entraîné la multiplication du nombre de systèmes sur puces doués de capacités de chiffrement. En parallèle, l'évolution des techniques de cryptanalyse permet d'attaquer les implantations des méthodes de chiffrement utilisées dans ces applications. Cette thèse porte sur le développement d'une méthodologie permettant l'évaluation de la robustesse apportée par des protections intégrées dans le circuit. Cette évaluation est basée d'une part sur l'utilisation de plates-formes laser pour étudier les types de fautes induits dans un prototype de circuit sécurisé ; et d'autre part, sur l'utilisation d'une méthode basée sur des simulations pendant la phase de conception pour comparer l'influence sur les canaux cachés de protections contre les fautes. Cette méthodologie a été utilisée dans un premier temps sur le cas simple d'un registre protégé par redondance d'information, puis sur des primitives cryptographiques telles qu'une S-Box AES et des co-processeurs AES et RSA. Ces deux études ont montré que l'ajout de capacités de détection ou de correction améliore la robustesse du circuit face aux différentes attaques