IACR News
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Here you can see all recent updates to the IACR webpage. These updates are also available:
30 January 2014
Hassan Jameel Asghar, Yvo Desmedt, Josef Pieprzyk, and Ron Steinfeld
Julien Bringer, Hervé Chabanne, Roch Lescuyer, Alain Patey
29 January 2014
Palash Sarkar, Shashank Singh
Lercier in 2006. We make two contributions. The first contribution introduces a divisility and smoothness technique which
is similar to that of the special-q technique used in integer factorisation algorithms. Such a technique, though, has not
been earlier used in the context of discrete log computations and provides concrete speed-ups in the practical run-time of
the relation collection and the descent phases of the FFS algorithm. The second contribution is to improve the
descent phase of the algorithm. The improvements are based on increasing the degree of freedom and the use of a walk
technique. As a consequence, we show that it is feasible to carry out discrete log computations for certain fields which are
excluded by the analysis of Joux and Lercier. In concrete terms, we present record computations of discrete logs for fields
with 16 and 18-bit prime characteristic. Further, we provide concrete analysis of the effectiveness of the FFS algorithm for
certain fields with medium sized prime characteristic.
28 January 2014
Peeter Laud, Alisa Pankova
The major drawback of the proposed scheme is that the number of values sent before and after the protocol is exponential in the number of parties. Nevertheless, the settings make the verification very efficient for a small number of parties.
Stefano Tessaro, David A. Wilson
To circumvent the lack of generic constructions, Dodis et al. (EUROCRYPT \'02) introduced the notion of bounded-collusion IBE (BC-IBE), where attackers only learn secret keys of an a-priori bounded number t of identities. They provided a generic BC-IBE construction from any semantically-secure encryption scheme which, however, suffers from a ω(t) blow-up in ciphertext size. Goldwasser et al. (TCC 2012) recently presented a generic construction with no ciphertext-length blow-up. Their construction requires an underlying public-key scheme with a key homomorphism, as well as a hash-proof-style security definition that is strictly stronger than semantic security. This latter requirement in particular reduces the applicability of their construction to existing schemes.
In this paper, we present the first generic constructions of BC-IBE from semantically-secure encryption schemes with no ciphertext-length blow-up. Our constructions require different degrees of key-homomorphism and malleability properties that are usually easy to verify. We provide concrete instantiations based on the DDH, QR, NTRU, and LWE assumptions. For all of these assumptions, our schemes present the smallest BC-IBE ciphertext size known to date. Our NTRU-based construction is particularly interesting, due to the lack of NTRU- based IBE constructions as well as the fact that it supports fully-homomorphic evaluation. Our results also yield new constructions of bounded CCA-secure cryptosystems.
Tancrède Lepoint, Michael Naehrig
We implemented both schemes in C++, using the arithmetic library FLINT, and compared them in practice to assess their respective strengths and weaknesses. In particular, we performed a homomorphic evaluation of the lightweight block cipher SIMON. Combining block ciphers with homomorphic encryption allows to solve the gargantuan ciphertext expansion in cloud applications.
Yalin Chen, Jue-Sam Chou*
Alain Couvreur, Irene Márquez-Corbella, Ruud Pellikaan
John Tromp
27 January 2014
Topic: Side channel attacks: advanced experimentations on template attacks
Category: secret-key cryptography
Description: In 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 template attack, with examples from attacks against an unprotected ASIC implementation. We point out that the efficiency of template attacks can be unleashed by using a relevent power model, and we provide some practical improvements by the use of different signal processing techniques. Furthermore, we investigate the relevance of the theoretical framework on profiled SCAs presented by F.-X. Standaert et al. at Eurocrypt 2009. The analyse consists in a case-study based on side-channel measurements acquired experimentally from a hardwired cryptographic accelerator. Therefore, with respect to previous formal analyses carried out on software measurements or on simulated data, the investigations we describe are more complex, due to the underlying chip\'s architecture and to the large amount of algorithmic noise.In this context, we explore the appropriateness of different choices for the sensitive variables, and we show that a skilled attacker aware of the register transfers occurring during the cryptographic operations can select the most adequate distinguisher, thus increasing its success rate. The principal component analysis (PCA) is used to represent the templates in some dimensions, and we give a physical interpretation of the templates eigenvalues and eigenvectors. We introduce a method based on the thresholding of leakage data to accelerate the profiling or the matching stages. This method empowers an attacker, in that it saves traces when converging towards correct values of the secret. Concretely, we demonstrate a 5 times speed-up in the on-line phase of the attack. Also, it has been underlined that the various samples garnered during the same acquisition can carry complement[...]
Technical University of Denmark, DTU
Candidates for the position should have a solid background in hardware design and automation and be able to work on the physical constraints and optimization of the hardware implementations or, alternatively, we will consider candidates with a strong cryptanalytic and mathematical background who are able to analyse the security of ciphers to be designed.
University of Trier, Germany
a full-time position for a postdoctoral researcher
in a project funded by the German Research Foundation (DFG). The goal of the project is to develop methods for the modular analysis of real-world cryptographic protocols, such as TLS, SSH, WPA2, etc., based on the approach of universal composability, and to apply the developed methods to such protocols.
The position is available immediately, with an internationally competitive salary. The starting date is negotiable. Contracts can initially be offered for up to three years, with the perspective of an extension.
There are no teaching obligations.
The successful candidate must have a Master`s degree (or an equivalent degree) in Computer Science, Mathematics, or a related discipline, and have completed, or be near completion of a PhD degree relevant to the research area of the project. You should have a proven high level of analytical capability and mathematical skills. Good English skills are expected; knowledge of German is not required.
Applications will be considered until the position is filled.
Itai Dinur, Jérémy Jean
The cipher has two version, providing either 80-bit or 96-bit
security. In this paper, we describe internal state-recovery attacks
on both versions of FIDES, and show that once we recover the internal
state, we can use it to immediately forge any message. Our attacks are
based on a guess-and-determine algorithm, exploiting the slow
diffusion of the internal linear transformation of FIDES. Our most
basic attacks have time complexities of 2^{75} and 2^{90} for FIDES-80
and FIDES-96, respectively, use a very small amount of memory, and
their most distinctive feature is their very low data complexity: the
attacks require at most 24 bytes of an arbitrary plaintext and its
corresponding ciphertext, in order to break the cipher with
probability 1. In addition to the basic attacks, we describe optimized
attacks which exploit additional data in order to reduce the time
complexities to 2^{73} and 2^{88} for FIDES-80 and FIDES-96,
respectively.
26 January 2014
Gora Adj, Alfred Menezes, Thomaz Oliveira, Francisco Rodríguez-Henríquez
can be used to compute discrete logarithms in the 1303-bit finite field
F_{3^{6*137}} with very modest computational resources.
Our implementation illustrates the effectiveness of Joux\'s algorithm
for computing discrete logarithms in small-characteristic finite
fields which are not Kummer or twisted-Kummer extensions.
Sonia Belaïd, and Vincent Grosso, François-Xavier Standaert
Besides, our experimental results underline that despite defined in exactly the same way, the bounded leakage requirement in leakage-resilient PRGs and PRFs imply significantly different challenges for hardware designers. Namely, such a bounded leakage is much harder to guarantee for stateless primitives (like PRFs) than for statefull ones (like PRGs). As a result, constructions of leakage-resilient PRGs and PRFs proven under the same bounded leakage assumption, and instantiated with the same AES implementation, may lead to different practical security levels.
Sugata Gangopadhyay, Pantelimon Stanica
Younsung Choi
Sareh Emami, San Ling, Ivica Nikolic, Josef Pieprzyk, Huaxiong Wang
provide analysis in the hashing mode, and show the importance for the secret-key mode. The proposed analysis has been tested with computer experiments on small-scale variants of CLEFIA-128.
Our results do not threaten the practical use of CLEFIA.
Topic: Security of CRT-based Secret Sharing Schemes
Category: (no category)
Description:
The Chinese Remainder Theorem (CRT) is a very useful tool in many areas of theoretical and practical cryptography. One of these areas is the theory of threshold secret sharing schemes. A (t+1,n)-threshold secret sharing scheme is a method of partitioning a secret among n users by providing each user with a share of the secret such that any t+1 users can uniquely reconstruct the secret by pulling together their shares. Several threshold schemes based on CRT are known. These schemes use sequences of pairwise co-prime positive integers with special properties. The shares are obtained by dividing the secret or a secret-dependent quantity by the numbers in the sequence and collecting the remainders. The secret can be reconstructed by some sufficient number of shares by using CRT. It is well-known that the CRT-based threshold secret sharing schemes are not perfect (and, therefore, not ideal) but some of them are asymptotically perfect and asymptotically ideal and perfect zero-knowledge if sequences of consecutive primes are used for defining them.
\r\n\r\n\r\nIn this thesis we introduce (k-)compact sequences of co-primes and their applications to the security of CRT-based threshold secret sharing schemes is thorough investigated. Compact sequences of co-primes may be significantly denser than sequences of consecutive primes of the same length, and their use in the construction of CRT-based threshold secret sharing schemes may lead to better security properties. Concerning the asymptotic idealness property for CRT-based threshold schemes, we have shown there exists a necessary and sufficient condition for the Goldreich-Ron-Sudan (GRS) scheme and Asmuth-Bloom scheme if and only if (1-)compact sequences of co-primes are used. Moreover, the GRS and Asmuth-Bloom schemes based on k-compact sequences of co-primes are asymptotically perfect and perfect zero-knowledge. The Mignotte scheme is far from being asymptotically perfect [...]