多程序并行系统中局部和全局调度策略的性能

S. Majumdar
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引用次数: 4

摘要

本研究以分析模型为基础,集中研究多程序并行系统中处理器调度的基本问题。分析了fork和join作业的本地调度策略。在全局调度的背景下,研究了适当的多路编程级别的演示,以及分配给作业的处理器数量的计算。全局调度方法是静态的,即为一个作业分配一组固定的处理器,并且不允许动态地从一个应用程序切换到另一个应用程序。通过这种分析,可以获得在并行系统的操作系统上下文中有用的关于系统行为的重要见解。讨论了有关作业特征、系统性能和有效调度之间关系的一些基本问题
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The performance of local and global scheduling strategies in multiprogrammed parallel systems
Based on analytic models this research concentrates on basic issues that are important in the context of processor scheduling in multiprogrammed parallel systems. Local scheduling policies for fork and join jobs are analyzed. Demonstration of the appropriate multiprogramming level, and the computation of the number of processors to be allocated to a job are investigated in the context of global scheduling. The global scheduling approach is static in the sense that a fixed set of processors is allocated to a job and dynamic processor switching from one application to another is not allowed. Important insights into system behavior that are useful in the context of operating systems for parallel systems are obtained as a result of this analysis. A number of basic issues that concern the relationship between job characteristics, system performance, and effective scheduling are discussed.<>
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