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Secure Failure Detection and Consensus in TrustedPals

机译:TrustedPal中的安全故障检测和共识

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摘要

We present a modular redesign of TrustedPals, a smart card-based security framework for solving Secure Multiparty Computation (SMC). Originally, TrustedPals assumed a synchronous network setting and allowed to reduce SMC to the problem of fault-tolerant consensus among smart cards. We explore how to make TrustedPals applicable in environments with less synchrony and show how it can be used to solve asynchronous SMC. Within the redesign we investigate the problem of solving consensus in a general omission failure model augmented with failure detectors. To this end, we give novel definitions of both consensus and the class diamond {cal P} of failure detectors in the omission model, which we call diamond {cal P}({ om}), and show how to implement diamond {cal P}({ om}) and have consensus in such a system with very weak synchrony assumptions. The integration of failure detection and consensus into the TrustedPals framework uses tools from privacy enhancing techniques such as message padding and dummy traffic.
机译:我们提出了TrustedPals的模块化重新设计,TrustedPals是一个基于智能卡的安全框架,用于解决安全多方计算(SMC)。最初,TrustedPal采用了同步网络设置,并允许将SMC减少到智能卡之间的容错共识问题。我们探索如何使TrustedPal适用于同步性较低的环境,并说明如何将其用于解决异步SMC。在重新设计中,我们研究了在故障检测器增强的通用遗漏故障模型中解决共识问题。为此,我们在遗漏模型中给出了故障检测器的共识和类菱形{cal P}的新颖定义,我们将其称为菱形{cal P}({om}),并展示了如何实现菱形{cal P }({om}),并且在这样的系统中具有非常弱的同步假设条件。故障检测和共识到TrustedPals框架的集成使用了来自隐私增强技术的工具,例如消息填充和虚拟流量。

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