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Resource-Efficient Byzantine Fault Tolerance

机译:资源高效的拜占庭容错

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摘要

One of the main reasons why Byzantine fault-tolerant (BFT) systems are currently not widely used lies in their high resource consumption:  replicas are required to tolerate only  faults. Recent works have been able to reduce the minimum number of replicas to  by relying on trusted subsystems that prevent a faulty replica from making conflicting statements to other replicas without being detected. Nevertheless, having been designed with the focus on fault handling, during normal-case operation these systems still use more resources than actually necessary to make progress in the absence of faults. This paper presents Resource-efficient Byzantine Fault Tolerance (ReBFT), an approach that minimizes the resource usage of a BFT system during normal-case operation by keeping  replicas in a passive mode. In contrast to active replicas, passive replicas neither participate in the agreement protocol nor execute client requests; instead, they are brought up to speed by verified state updates provided by active replicas. In case of suspected or detected faults, passive replicas are activated in a consistent manner. To underline the flexibility of our approach, we apply ReBFT to two ex- sting BFT systems: PBFT and MinBFT.
机译:拜占庭容错(BFT)系统目前未得到广泛使用的主要原因之一是其资源消耗高:仅要求副本才能容忍故障。最近的工作已经能够通过依赖受信任的子系统来减少最小副本数,以防止有故障的副本在不被发现的情况下向其他副本发出冲突的语句。然而,由于设计时注重故障处理,在正常情况下的操作中,这些系统仍然使用比在没有故障的情况下取得进展所需的资源更多的资源。本文介绍了资源高效的拜占庭式容错(ReBFT),该方法通过将副本保持在被动模式下,从而在正常情况下运行时最大程度地减少了BFT系统的资源使用。与主动副本相反,被动副本既不参与协议协议也不执行客户端请求。相反,它们是通过活动副本提供的经过验证的状态更新来加快速度的。在怀疑或检测到故障的情况下,将以一致的方式激活被动副本。为了强调我们方法的灵活性,我们将ReBFT应用于两种现有的BFT系统:PBFT和MinBFT。

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