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Key-Alternating Ciphers and Key-Length Extension: Exact Bounds and Multi-user Security

机译:密钥替代密码和密钥长度扩展:确切范围和多用户安全

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The best existing bounds on the concrete security of key-alternating ciphers (Chen and Steinberger, EUROCRYPT '14) are only asymptotically tight, and the quantitative gap with the best existing attacks remains numerically substantial for concrete parameters. Here, we prove exact bounds on the security of key-alternating ciphers and extend them to XOR cascades, the most efficient construction for key-length extension. Our bounds essentially match, for any possible query regime, the advantage achieved by the best existing attack. Our treatment also extends to the multi-user regime. We show that the multi-user security of key-alternating ciphers and XOR cascades is very close to the single-user case, i.e., given enough rounds, it does not substantially decrease as the number of users increases. On the way, we also provide the first explicit treatment of multi-user security for key-length extension, which is particularly relevant given the significant security loss of block ciphers (even if ideal) in the multi-user setting. The common denominator behind our results are new techniques for information-theoretic indistinguishability proofs that both extend and refine existing proof techniques like the H-coefficient method.
机译:密钥替换密码的具体安全性的最佳现有界限(Chen和Steinberger,EUROCRYPT '14)只是渐近严格,对于具体参数而言,具有最佳现有攻击性的量化差距在数值上仍然很大。在这里,我们证明了密钥交替密码的安全性的确切界限,并将其扩展到XOR级联,这是密钥长度扩展的最有效构造。对于任何可能的查询方式,我们的范围基本上都与现有最佳攻击所获得的优势相匹配。我们的待遇还扩展到多用户制度。我们证明了密钥替换密码和XOR级联的多用户安全性非常接近于单用户情况,即给定足够的轮次,它不会随着用户数量的增加而显着下降。顺便说一句,我们还为密钥长度扩展提供了多用户安全性的第一个显式处理方法,考虑到多用户设置中分组密码的大量安全性损失(即使是理想的安全性),这一点尤为重要。我们的结果背后的共同点是用于信息论不可区分性证明的新技术,该技术既扩展又完善了诸如H系数法之类的现有证明技术。

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