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Selective-Opening Security in the Presence of Randomness Failures

机译:在随机性故障存在下选择性开放安全性

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摘要

We initiate the study of public-key encryption (PKE) secure against selective-opening attacks (SOA) in the presence of randomness failures, i.e., when the sender may (inadvertently) use low-quality randomness. In the SOA setting, an adversary can adaptively corrupt senders; this notion is natural to consider in tandem with randomness failures since an adversary may target senders by multiple means. Concretely, we first treat SOA security of nonce-based PKE. After formulating an appropriate definition of SOA-secure nonce-based PKE, we provide efficient constructions in the non-programmable random-oracle model, based on lossy trapdoor functions. We then lift our notion of security to the setting of "hedged" PKE, which ensures security as long as the sender's seed, message, and nonce jointly have high entropy. This unifies the notions and strengthens the protection that nonce-based PKE provides against randomness failures even in the non-SOA setting. We lift our definitions and constructions of SOA-secure nonce-based PKE to the hedged setting as well.
机译:我们在存在随机性故障的情况下,启动对公共关键加密(PKE)的研究,即在随机性故障的情况下,即,当发送者可能(无意中)使用低质量的随机性时,选择开放攻击(SOA)。在SOA设置中,对手可以自适应地腐败发件人;这种概念是自然的,可以在串联中考虑随机失败,因为对手可以通过多种方式定位发件人。具体而言,我们首先处理基于随​​机的PKE的SOA安全性。在制定SOA安全的非基于ONCE的PKE的适当定义之后,我们基于有损的TRAPDOOL功能提供了不可编程的随机ORACLE模型中的有效结构。然后,我们将安全的概念提升到“Hedged”PKE的设置,这确保了Sender的种子,消息和Nonce共同拥有高熵的安全性。这统一了概念,并加强了即使在非SOA设置中也可以对随机性失败提供的保护。我们也将Soa-Secure基础的PKE的定义和结构提升到树篱设置。

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