ZEXE: Enabling Decentralized Private Computation

Sean Bowe, A. Chiesa, M. Green, Ian Miers, Pratyush Mishra, Howard Wu
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引用次数: 167

Abstract

Ledger-based systems that support rich applications often suffer from two limitations. First, validating a transaction requires re-executing the state transition that it attests to. Second, transactions not only reveal which application had a state transition but also reveal the application’s internal state.We design, implement, and evaluate ZEXE, a ledger-based system where users can execute offline computations and subsequently produce transactions, attesting to the correctness of these computations, that satisfy two main properties. First, transactions hide all information about the offline computations. Second, transactions can be validated in constant time by anyone, regardless of the offline computation.The core of ZEXE is a construction for a new cryptographic primitive that we introduce, decentralized private computation (DPC) schemes. In order to achieve an efficient implementation of our construction, we leverage tools in the area of cryptographic proofs, including succinct zero knowledge proofs and recursive proof composition. Overall, transactions in ZEXE are 968 bytes regardless of the offline computation, and generating them takes less than 1min plus a time that grows with the offline computation.We demonstrate how to use ZEXE to realize privacy-preserving analogues of popular applications: private user-defined assets and private decentralized exchanges for these assets.
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ZEXE:启用去中心化私有计算
支持富应用程序的基于分类帐的系统经常受到两个限制。首先,验证事务需要重新执行它所证明的状态转换。其次,事务不仅揭示了哪个应用程序进行了状态转换,还揭示了应用程序的内部状态。我们设计、实现和评估了ZEXE,这是一个基于分类账的系统,用户可以在其中执行离线计算并随后产生交易,证明这些计算的正确性,满足两个主要属性。首先,事务隐藏了所有关于离线计算的信息。其次,任何人都可以在固定时间内验证事务,而不考虑离线计算。ZEXE的核心是一个新的加密原语的结构,我们引入了去中心化私有计算(DPC)方案。为了有效地实现我们的构造,我们利用了加密证明领域的工具,包括简洁的零知识证明和递归证明组合。总的来说,无论脱机计算如何,ZEXE中的事务都是968字节,并且生成它们所需的时间不到1分钟,加上随着脱机计算而增长的时间。我们演示了如何使用ZEXE来实现流行应用程序的隐私保护类似物:私有用户定义的资产和这些资产的私有分散交换。
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