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HILA5: On Reliability, Reconciliation, and Error Correction for Ring-LWE Encryption

机译:HILA5:关于Ring-LWE加密的可靠性,和解和纠错

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We describe a new reconciliation method for Ring-LWE that has a significantly smaller failure rate than previous proposals while reducing ciphertext size and the amount of randomness required. It is based on a simple, deterministic variant of Peikert's reconciliation that works with our new "safe bits" selection and constant-time error correction techniques. The new method does not need randomized smoothing to achieve non-biased secrets. When used with the very efficient "New Hope" Ring-LWE parametrization we achieve a decryption failure rate well below 2~(-128) (compared to 2~(-60) of the original), making the scheme suitable for public key encryption in addition to key exchange protocols; the reconciliation approach saves about 40% in ciphertext size when compared to the common LP11 Ring-LWE encryption scheme. We perform a combinatorial failure analysis using full probability convolutions, leading to a precise understanding of decryption failure conditions on bit level. Even with additional implementation security and safety measures the new scheme is still essentially as fast as the New Hope but has slightly shorter messages. The new techniques have been instantiated and implemented as a Key Encapsulation Mechanism (KEM) and public key encryption scheme designed to meet the requirements of NIST's Post-Quantum Cryptography effort at very high security level.
机译:我们描述了一个新的ring-lWe的调节方法,其具有比以前的提案的失效率明显较小,同时减少了密文尺寸和所需的随机性量。它是基于Peikert的和解的简单,确定的变体,与我们的新“安全位”选择和恒定时间纠错技术有关。新方法不需要随机平滑以实现非偏见的秘密。当与非常有效的“新希望”戒指 - LWE参数化时,我们达到了低于2〜(-128)的解密失败率(相比2〜( - 60)),使该方案适用于公钥加密除了关键交换协议之外;与公共LP环-LWE加密方案相比,调节方法在密文大小节省大约40%。我们使用完全概率卷积执行组合故障分析,从而精确了解位电平的解密故障条件。即使有了额外的实施安全和安全措施,新方案仍然与新希望仍然快速,但消息略微较短。新技术已被实例化并实施为一个关键封装机制(KEM)和公钥加密方案,旨在满足NIST在非常高的安全级别的Quantum加密工作的要求。

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