用最弱的故障检测器解决未知动态环境下的互斥问题

Etienne Mauffret, D. Jeanneau, L. Arantes, Pierre Sens
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引用次数: 1

摘要

互斥是分布式计算的基本问题之一,但现有的互斥算法不适应当前分布式系统(如移动自组织网络、点对点系统等)的动态特性和成员知识的缺乏。此外,为了避免在异步消息传递系统(其中进程可能崩溃)中无法解决互斥,一些解决方案包括使用(T + Σl)[3],它是在已知静态分布式系统中解决互斥的最弱的故障检测器。本文定义了一个新的故障检测器TΣlr,它在已知静态系统中等价于(T + Σl),并证明了TΣlr是解决未知动态系统中部分内存丢失的互斥问题的最弱的故障检测器。我们认为崩溃的进程可能会恢复。
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The weakest failure detector to solve the mutual exclusion problem in an unknown dynamic environment
Mutual exclusion is one of the fundamental problems in distributed computing but existing mutual exclusion algorithms are unadapted to the dynamics and lack of membership knowledge of current distributed systems (e.g., mobile ad-hoc networks, peer-to-peer systems, etc.). Additionally, in order to circumvent the impossibility of solving mutual exclusion in asynchronous message passing systems where processes can crash, some solutions include the use of (T + Σl) [3], which is the weakest failure detector to solve mutual exclusion in known static distributed systems. In this paper, we define a new failure detector TΣlr which is equivalent to (T + Σl) in known static systems, and prove that T Σlr is the weakest failure detector to solve mutual exclusion in unknown dynamic systems with partial memory losses. We consider that crashed processes may recover.
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