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Pleiades: Distributed Structural Invariants at Scale

机译:le:大规模分布式结构不变式

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摘要

Modern large scale distributed systems increasingly espouse sophisticated distributed architectures characterized by complex distributed structural invariants. Unfortunately, maintaining these structural invariants at scale is time consuming and error prone, as developers must take into account asynchronous failures, loosely coordinated sub-systems and network delays. To address this problem, we propose PLEIADES, a new framework to construct and enforce large-scale distributed structural invariants under aggressive conditions. PLEIADES combines the resilience of self-organizing overlays, with the expressiveness of an assembly-based design strategy. The result is a highly survivable framework that is able to dynamically maintain arbitrary complex distributed structures under aggressive crash failures. Our evaluation shows in particular that PLEIADES is able to restore the overall structure of a 25,600 node system in less than 11 asynchronous rounds after half of the nodes have crashed.
机译:现代大规模分布式系统越来越拥护以复杂的分布式结构不变性为特征的复杂的分布式体系结构。不幸的是,由于开发人员必须考虑异步故障,松散协调的子系统和网络延迟,因此大规模地维护这些结构不变性既耗时又容易出错。为了解决这个问题,我们提出了PLEIADES,这是一个在攻击性条件下构造和执行大规模分布式结构不变式的新框架。 PLEIADES结合了自组织叠加层的弹性和基于组件的设计策略的表现力。结果是一个高度可生存的框架,该框架能够在发生严重崩溃故障时动态维护任意复杂的分布式结构。我们的评估特别表明,在一半节点崩溃之后,PLEIADES能够在不到11个异步回合中恢复25,600个节点系统的整体结构。

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