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Failure detectors encapsulate fairness

机译:故障检测器封装了公平性

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摘要

Failure detectors have long been viewed as abstractions for the synchronism present in distributed system models. However, investigations into the exact amount of synchronism encapsulated by a given failure detector have met with limited success. The reason for this is that traditionally, models of partial synchrony are specified with respect to real time, but failure detectors do not encapsulate real time. Instead, we argue that failure detectors encapsulate the fairness in computation and communication. Fairness is a measure of the number of steps executed by one process relative either to the number of steps taken by another process or relative to the duration for which a message is in transit. We argue that failure detectors are substitutable for the fairness properties (rather than real-time properties) of partially synchronous systems. We propose four fairness-based models of partial synchrony and demonstrate that they are, in fact, the ‘weakest system models’ to implement the canonical failure detectors from the Chandra-Toueg hierarchy. We also propose a set of fairness-based models which encapsulate the G[subscript c] parametric failure detectors which eventually and permanently suspect crashed processes, and eventually and permanently trust some fixed set of c correct processes.
机译:故障检测器长期以来一直被视为分布式系统模型中存在的同步的抽象。但是,对由给定故障检测器封装的确切同步量的研究取得了有限的成功。其原因是传统上相对于实时指定了部分同步模型,但是故障检测器并不实时封装。相反,我们认为故障检测器封装了计算和通信中的公平性。公平性是相对于另一进程所采取的步骤数或相对于消息传输持续时间而言,一个进程所执行的步骤数的度量。我们认为故障检测器可以代替部分同步系统的公平性(而不是实时性)。我们提出了四种基于公平的部分同步模型,并证明它们实际上是“最弱的系统模型”,用于实现Chandra-Toueg层次结构中的规范故障检测器。我们还提出了一组基于公平性的模型,这些模型封装了G [下标c]参数故障检测器,这些检测器最终并永久地怀疑崩溃的进程,并最终并永久地信任一组固定的c正确进程。

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