Data Dependency based Parallel Simulation of Wireless Networks

Mirko Stoffers, Torsten Sehy, J. Gross, Klaus Wehrle
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Abstract

Simulation of wireless systems is highly complex and can only be efficient if the simulation is executed in parallel. To this end, independent events have to be identified to enable their simultaneous execution. Hence, the number of events identified as independent needs to be maximized in order to increase the level of parallelism. Traditionally, dependencies are determined only by time and location of events: If two events take place on the same simulation entity, they must be simulated in timestamp order. Our approach to overcome this limitation is to also investigate data-dependencies between events. This enables event reordering and parallelization even for events at the same simulation entity. To this end, we design the simulation language PSimLa, which aids this process. In this paper, we discuss the PSimLa design and compiler as well as our data-dependency analysis approach in detail and present case studies of wireless network models, speeded up by a factor of 10 on 12 cores where time-based parallelization only achieves a 1.6x speedup.
基于数据依赖的无线网络并行仿真
无线系统的仿真是高度复杂的,只有并行执行仿真才能有效。为此,必须确定独立事件,以使它们能够同时执行。因此,需要最大化标识为独立的事件的数量,以提高并行性的级别。传统上,依赖关系仅由事件的时间和位置决定:如果两个事件发生在同一模拟实体上,则必须按时间戳顺序模拟它们。我们克服这一限制的方法还包括调查事件之间的数据依赖性。这允许事件重新排序和并行化,甚至对于同一模拟实体中的事件也是如此。为此,我们设计了仿真语言PSimLa来辅助这一过程。在本文中,我们详细讨论了PSimLa设计和编译器以及我们的数据依赖性分析方法,并给出了无线网络模型的案例研究,在12核上加速10倍,而基于时间的并行化仅实现1.6倍的加速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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