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Hedged Public-Key Encryption: How to Protect against Bad Randomness

机译:对冲公钥加密:如何防止糟糕的随机性

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Public-key encryption schemes rely for their IND-CPA security on per-message fresh randomness. In practice, randomness may be of poor quality for a variety of reasons, leading to failure of the schemes. Expecting the systems to improve is unrealistic. What we show in this paper is that we can, instead, improve the cryptography to offset the lack of possible randomness. We provide public-key encryption schemes that achieve IND-CPA security when the randomness they use is of high quality, but, when the latter is not the case, rather than breaking completely, they achieve a weaker but still useful notion of security that we call IND-CDA. This hedged public-key encryption provides the best possible security guarantees in the face of bad randomness. We provide simple RO-based ways to make in-practice IND-CPA schemes hedge secure with minimal software changes. We also provide non-RO model schemes relying on lossy trapdoor functions (LTDFs) and techniques from deterministic encryption. They achieve adaptive security by establishing and exploiting the anonymity of LTDFs which we believe is of independent interest.
机译:公钥加密计划依赖于其每邮件新鲜随机性的IND-CPA安全性。在实践中,由于各种原因,随机性可能具有差的质量,导致计划失败。期望系统改善是不现实的。我们在本文中展示的是,我们可以改善加密,以抵消缺乏可能的随机性。我们提供的公钥加密方案,即在他们使用的随机性是高质量的时,实现了Ind-CPA安全性,但是,当后者不是这种情况时,而不是完全破坏,他们实现了较弱但仍然有用的安全概念致电Ind-CDA。这种对冲的公钥加密提供了面对无随机性的安全保障。我们提供简单的RO的方式来制作In-练习Ind-CPA方案对冲安全,软件更新。我们还提供依赖于损失的Trapdoor功能(LTDS)和来自确定性加密的技术的非RO模型计划。他们通过建立和利用我们认为是独立利益的有限公司的匿名来实现自适应安全性。

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