Resource-Efficient State-Machine Replication with Multithreading and Vertical Scaling

Gerhard Habiger, F. Hauck, Johannes Köstler, Hans P. Reiser
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引用次数: 6

Abstract

State-machine replication (SMR) enables transparent and delayless masking of node faults. It can tolerate crash faults and malicious misbehavior, but usually comes with high resource costs, not only by requiring multiple active replicas, but also by providing the replicas with enough resources for the expected peak load. This paper presents a vertical resource-scaling solution for SMR systems in virtualized environments, which can dynamically adapt the number of available cores to current load. In similar approaches, benefits of CPU core scaling are usually small due to the inherent sequential execution of SMR systems in order to achieve determinism. In our approach, we utilize sophisticated deterministic multithreading to avoid this bottleneck and experimentally demonstrate that core scaling then allows SMR systems to effectively tailor resources to service load, dramatically reducing service provider costs.
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具有多线程和垂直缩放的资源高效状态机复制
状态机复制(SMR)可以透明、无延迟地屏蔽节点故障。它可以容忍崩溃错误和恶意行为,但通常会带来很高的资源成本,不仅需要多个活动副本,还需要为副本提供足够的资源以满足预期的峰值负载。针对虚拟环境下的SMR系统,提出了一种垂直资源扩展解决方案,该方案可以根据当前负载动态调整可用核的数量。在类似的方法中,CPU内核扩展的好处通常很小,因为为了实现确定性,SMR系统固有的顺序执行。在我们的方法中,我们利用复杂的确定性多线程来避免这个瓶颈,并通过实验证明,核心扩展允许SMR系统有效地根据服务负载定制资源,从而显著降低服务提供商的成本。
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