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Several MILP-Aided Attacks Against SNOW 2.0

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  1. Chapter and Conference Paper

    Gimli : A Cross-Platform Permutation

    This paper presents Gimli, a 384-bit permutation designed to achieve high security with high performance across a broad range of platforms, including 64-bit Intel/AMD server CPUs, 64-bit and 32-bit ARM smartphone...

    Daniel J. Bernstein, Stefan Kölbl in Cryptographic Hardware and Embedded System… (2017)

  2. Chapter and Conference Paper

    GIFT: A Small Present

    In this article, we revisit the design strategy of PRESENT, leveraging all the advances provided by the research community in construction and cryptanalysis since its publication, to push the design up to its lim...

    Subhadeep Banik, Sumit Kumar Pandey in Cryptographic Hardware and Embedded System… (2017)

  3. Chapter and Conference Paper

    Programming the Demirci-Selçuk Meet-in-the-Middle Attack with Constraints

    Cryptanalysis with SAT/SMT, MILP and CP has increased in popularity among symmetric-key cryptanalysts and designers due to its high degree of automation. So far, this approach covers differential, linear, impo...

    Dan** Shi, Siwei Sun, Patrick Derbez in Advances in Cryptology – ASIACRYPT 2018 (2018)

  4. Chapter and Conference Paper

    Out of Oddity – New Cryptanalytic Techniques Against Symmetric Primitives Optimized for Integrity Proof Systems

    The security and performance of many integrity proof systems like SNARKs, STARKs and Bulletproofs highly depend on the underlying hash function. For this reason several new proposals have recently been develop...

    Tim Beyne, Anne Canteaut, Itai Dinur in Advances in Cryptology – CRYPTO 2020 (2020)

  5. Chapter and Conference Paper

    Improved Differential-Linear Attacks with Applications to ARX Ciphers

    We present several improvements to the framework of differential-linear attacks with a special focus on ARX ciphers. As a demonstration of their impact, we apply them to Chaskey and ChaCha and we are able to s...

    Christof Beierle, Gregor Leander, Yosuke Todo in Advances in Cryptology – CRYPTO 2020 (2020)