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Scalable Byzantine fault-tolerant state-machine replication on heterogeneous servers

机译:异构服务器上的可伸缩拜占庭式容错状态机复制

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摘要

When provided with more powerful or extra hardware, state-of-the-art Byzantine fault-tolerant (BFT) replication protocols are unable to effectively exploit the additional computing resources: on the one hand, in settings with heterogeneous servers existing protocols cannot fully utilize servers with higher performance capabilities. On the other hand, using more servers than the minimum number of replicas required for Byzantine fault tolerance in general does not lead to improved throughput and latency, but instead actually degrades performance. In this paper, we address these problems with OMADA, a BFT system architecture that is able to benefit from additional hardware resources. To achieve this property while still providing strong consistency, OMADA first parallelizes agreement into multiple groups and then executes the requests handled by different groups in a deterministic order. By varying the number of requests to be ordered between groups as well as the number of groups that a replica participates in between servers, OMADA offers the possibility to individually adjust the resource usage per server. Moreover, the fact that not all replicas need to take part in every group enables the architecture to exploit additional servers.
机译:最新的拜占庭式容错(BFT)复制协议提供了功能更强大或额外的硬件时,将无法有效利用额外的计算资源:一方面,在异构服务器的设置中,现有协议无法充分利用具有更高性能的服务器。另一方面,使用比拜占庭容错所需的最小副本数更多的服务器通常不会提高吞吐量和延迟,但是实际上会降低性能。在本文中,我们使用OMADA解决了这些问题,OMADA是一种BFT系统架构,能够从其他硬件资源中受益。为了在仍然提供强大一致性的同时实现此属性,OMADA首先将协议并行化为多个组,然后以确定的顺序执行由不同组处理的请求。通过更改组之间要订购的请求数以及服务器之间副本所参与的组数,OMADA可以单独调整每个服务器的资源使用率。此外,并非所有副本都需要参与每个组的事实使该体系结构能够利用其他服务器。

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