Deadlock Detection Scheduling for Distributed Processes in the Presence of System Failures

A. Izumi, T. Dohi, N. Kaio
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引用次数: 3

Abstract

The occurrence of deadlocks should be controlled effectively by their detection and resolution, but may sometimes lead to a serious system failure. This fact implies that deadlock detection scheduling should be designed from the view points of not only the performance trade-off between overall message usage and deadlock persistence time but also the prevention of the system failure. In this paper, we reformulate the Ling {\it{et al.}}'s deadlock detection scheduling problem (2006) in the presence of system failures, and derive the optimal deadlock detection time minimizing the long-run average cost per unit time. By introducing the message complexities of the deadlock detection and resolution algorithms being used, we investigate the asymptotically optimal frequency of deadlock detection scheduling in terms of the number of distributed processes through the well-known Landau notation.
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系统故障时分布式进程的死锁检测调度
应该通过检测和解决死锁来有效地控制死锁的发生,但死锁有时可能导致严重的系统故障。这一事实意味着,在设计死锁检测调度时,不仅要考虑总体消息使用情况和死锁持续时间之间的性能权衡,还要考虑防止系统故障。本文对Ling {\it{et al.}}在存在系统故障的情况下的死锁检测调度问题(2006)进行了重新定义,并推导出使单位时间内长期平均成本最小的最优死锁检测时间。通过介绍所使用的死锁检测和解决算法的消息复杂性,我们通过著名的朗道符号研究了死锁检测调度的渐近最优频率,该频率与分布式进程的数量有关。
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