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On the Respective Power of 驴P and 驴S to Solve One-Shot Agreement Problems

机译:驴和驴分别解决一站式协议问题的权力

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Unreliable failure detectors are abstract devices that, when added to asynchronous distributed systems, enable solving distributed computing problems (e.g., Consensus) that otherwise would be impossible to solve in these systems. This paper focuses on two classes of failure detectors defined by Chandra and Toueg, namely, the classes denoted 驴P (eventually perfect) and 驴S (eventually strong). Both classes include failure detectors that eventually detect permanently all process crashes, but while the failure detectors of 驴P eventually make no erroneous suspicions, the failure detectors of 驴S are only required to eventually not suspect a single correct process. Informally, in a one-shot agreement problem, a new problem instance is created each time the processes propose new values to be decided on (e.g., Consensus is one-shot). In such a context, this paper addresses the following question related to the comparative power of these classes, namely: "Are there one-shot agreement problems that can be solved in asynchronous distributed systems with reliable links but prone to process crash failures augmented with 驴P, but cannot be solved when those systems are augmented with 驴S ?驴 Surprisingly, the paper shows that the answer to this question is "no.驴 An important consequence of this result is that 驴P cannot be the weakest class of failure detectors that enables solving one-shot agreement problems in unreliable asynchronous distributed systems.
机译:不可靠的故障检测器是抽象设备,将其添加到异步分布式系统后,可以解决分布式计算问题(例如共识),而这些问题否则将无法在这些系统中解决。本文着重介绍了由Chandra和Toueg定义的两类故障检测器,即表示为驴P(最终是理想的)和称为驴S(最终是强的)的故障检测器。这两类都包括故障检测器,这些故障检测器最终将永久性地检测所有进程崩溃,但是,尽管驴的故障检测器最终不会引起任何错误的怀疑,但仅需要驴的故障检测器最终就不会怀疑单个正确的进程。非正式地,在一次性协议问题中,每次过程提出要确定的新值时(例如,共识是一次性的),都会创建一个新的问题实例。在这种情况下,本文解决了与这些类的比较能力有关的以下问题,即:“在具有可靠链接的异步分布式系统中是否可以解决一次性协议问题,但是容易因驴而增加进程崩溃故障P,但是当用KEYS扩展那些系统时却无法解决?令人惊讶的是,本文表明该问题的答案是“否。驴”。这一结果的重要结果是,驴不能成为故障检测器中最弱的一类可以解决不可靠的异步分布式系统中的一次性协议问题。

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