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Titlebook: Advances in Cryptology – CRYPTO 2024; 44th Annual Internat Leonid Reyzin,Douglas Stebila Conference proceedings 2024 International Associat

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,Teil: Das Folterverbot im Völkerrecht,significant overall performance gains can be obtained from hardware that optimizes the padding formats and iterative hashing processes specific to SLH-DSA. A prototype implementation, ., contains Keccak/SHAKE, SHA2-256, and SHA2-512 cores and supports all 12 parameter sets of SLH-DSA. . also support
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,Teil: Christlich-Europäischer Rechtskreis,o it. In this work we tackle two open questions related to the general applicability of techniques around this approach that together allow for efficient post-quantum signatures with optimal security bounds in the QROM..First, we consider a recent work by Aguilar-Melchor, Hülsing, Joseph, Majenz, Ro
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,Teil: Christlich-Europäischer Rechtskreis,specificity of always being masked. Concretely, all sensitive intermediate values are shared into . parts. The main design rationale of Raccoon is to be easy to mask at high orders, and this dictated most of its design choices, such as the introduction of new algorithmic techniques for sampling smal
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Loquat: A SNARK-Friendly Post-quantum Signature Based on the Legendre PRF with Applications in Ring based signatures and 3 to 9 times less than those for SPHINCS+ [Bernstein et al. CCS’19]..We explore two applications of .. First, we incorporate it into the ID-based ring signature scheme [Buser et al. ACNS’22], achieving a significant reduction in signature size from 1.9 MB to 0.9 MB with stateles
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Aggregating Falcon Signatures with LaBRADORch we believe to be of independent interest. We then explain the exact steps to take in order to adapt the non-interactive LaBRADOR proof system for aggregating Falcon signatures and provide concrete proof size estimates. Additionally, we formalize the folklore approach of obtaining aggregate signat
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That’s Not My Signature! Fail-Stop Signatures for a Post-quantum Worldions for the post-quantum setting. We show that FSS are equivalent to standard, provably secure digital signatures that do not require rewinding or programming random oracles, and that this implies lattice-based FSS. Our main construction is an FSS version of ., which required building FSS versions
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