高吞吐量拜占庭容错

R. Kotla, M. Dahlin
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引用次数: 175

摘要

本文主张对拜占庭容错(BFT)状态机复制库进行简单更改。传统的BFT状态机复制技术提供了高可用性和安全性,但无法提供高吞吐量。这种限制源于广义状态机复制技术的基本假设,即所有副本以相同的总顺序依次执行请求,以确保副本之间的一致性。我们提出了一个高吞吐量拜占庭容错架构,它使用特定于应用程序的信息来识别和并发执行独立的请求。因此,我们的体系结构提供了一种利用应用程序并行性的通用方法,以便在不影响正确性的情况下提供高吞吐量。尽管这种方法非常简单,但它产生了巨大的实际好处。当存在足够的应用程序并发性和硬件资源时,CBASE(我们的系统原型)比BASE(传统的BFT架构)提供了数量级的吞吐量改进。CBASE- fs是一个拜占庭式的容错文件系统,它使用CBASE,在IOZone微基准测试中实现的吞吐量是BASE-FS的两倍,即使在可用硬件并行性适中的配置下也是如此。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
High throughput Byzantine fault tolerance
This paper argues for a simple change to Byzantine fault tolerant (BFT) state machine replication libraries. Traditional BFT state machine replication techniques provide high availability and security but fail to provide high throughput. This limitation stems from the fundamental assumption of generalized state machine replication techniques that all replicas execute requests sequentially in the same total order to ensure consistency across replicas. We propose a high throughput Byzantine fault tolerant architecture that uses application-specific information to identify and concurrently execute independent requests. Our architecture thus provides a general way to exploit application parallelism in order to provide high throughput without compromising correctness. Although this approach is extremely simple, it yields dramatic practical benefits. When sufficient application concurrency and hardware resources exist, CBASE, our system prototype, provides orders of magnitude improvements in throughput over BASE, a traditional BFT architecture. CBASE-FS, a Byzantine fault tolerant file system that uses CBASE, achieves twice the throughput of BASE-FS for the IOZone micro-benchmarks even in a configuration with modest available hardware parallelism.
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