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The weakest failure detector to implement a register in asynchronous systems with hybrid communication

机译:最弱的故障检测器,在具有混合通信的异步系统中实现寄存器

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摘要

This paper introduces an asynchronous crash-prone hybrid system model. The system is hybrid in the way the processes can communicate. On the one side, a process can send messages to any other process. On another side, the processes are partitioned into clusters and each cluster has its own read/write shared memory. In addition to the model, a main contribution of the paper concerns the implementation of an atomic register in this system model. More precisely, a new failure detector (denoted MΣ) is introduced and it is shown that, when considering the information on failures needed to implement a register, this failure detector is the weakest. To that end, the paper presents an MΣ-based algorithm that builds a register in the considered hybrid system model and shows that it is possible to extract MΣ from any failure detector-based algorithm that implements a register in this model. The paper also (a) shows that MΣ is strictly weaker than Σ (which is the weakest failure detector to implement a register in a classical message-passing system) and (b) presents a necessary and sufficient condition to implement MΣ in a hybrid asynchronous communication system.
机译:本文介绍了一个易于崩溃的异步混合系统模型。该系统在流程可以通信的方式上是混合的。一方面,一个进程可以将消息发送到任何其他进程。另一方面,将进程划分为群集,每个群集都有自己的读/写共享内存。除了模型之外,本文的主要贡献还涉及在此系统模型中原子寄存器的实现。更准确地说,引入了一个新的故障检测器(表示为MΣ),结果表明,当考虑实现寄存器所需的故障信息时,该故障检测器是最弱的。为此,本文提出了一种基于MΣ的算法,该算法在考虑的混合系统模型中构建了寄存器,并表明可以从在该模型中实现寄存器的任何基于故障检测器的算法中提取MΣ。该论文还(a)表明MΣ严格比Σ弱(它是在经典消息传递系统中实现寄存器的最弱故障检测器),并且(b)提出了在混合异步环境中实现MΣ的充要条件通讯系统。

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