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SIMULATION ANALYSIS OF MULTITHREADED PROGRAMS UNDER DEADLOCK-AVOIDANCE CONTROL

机译:防死锁控制下的多线程程序的仿真分析

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We employ discrete event simulation to evaluate the performance of deadlock-prone multithreaded programs, either general-purpose software or parallel simulators, under a novel technique for deadlock-avoidance control recently proposed in the literature. The programs are modeled by a special class of Petri nets, called Gadara nets. We propose a formal simulation methodology for Gadara nets. We then use simulation to analyze two deadlock-prone multithreaded programs, where we study system performance in terms of safety, efficiency, and activity level, both before and after deadlock-avoidance control is applied. We further conduct a sensitivity analysis to investigate the effect of key parameters on the program's performance. We discuss the implications of the above results on the practical implementation of control strategies that prevent deadlocks in multithreaded programs.
机译:我们采用离散事件仿真来评估倾向于死锁的多线程程序(无论是通用软件还是并行模拟器)的性能,这是文献中最近提出的一种避免死锁的新技术。这些程序由一类特殊的Petri网(称为Gadara网)建模。我们为Gadara网络提出了一种正式的仿真方法。然后,我们使用仿真来分析两个容易出现死锁的多线程程序,在其中我们将在应用死锁避免控制之前和之后从安全性,效率和活动级别方面研究系统性能。我们进一步进行敏感性分析,以调查关键参数对程序性能的影响。我们讨论上述结果对控制策略的实际实现的影响,这些策略可防止多线程程序中的死锁。

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