A Case for Hardware Task Management Support for the StarSS Programming Model

C. Meenderinck, B. Juurlink
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引用次数: 21

Abstract

StarSS is a parallel programming model that eases the task of the programmer. He or she has to identify the tasks that can potentially be executed in parallel and the inputs and outputs of these tasks, while the runtime system takes care of the difficult issues of determining inter task dependencies, synchronization, load balancing, scheduling to optimize data locality, etc. Given these issues, however, the runtime system might become a bottleneck that limits the scalability of the system. The contribution of this paper is two-fold. First, we analyze the scalability of the current software runtime system for several synthetic benchmarks with different dependency patterns and task sizes. We show that for fine-grained tasks the system does not scale beyond five cores. Furthermore, we identify the main scalability bottlenecks of the runtime system. Second, we present the design of Nexus, a hardware support system for StarSS applications, that greatly reduces the task management overhead.
为StarSS编程模型提供硬件任务管理支持的案例
StarSS是一种简化程序员任务的并行编程模型。他或她必须确定可能并行执行的任务以及这些任务的输入和输出,而运行时系统则负责确定任务间依赖关系、同步、负载平衡、调度以优化数据局部性等难题。然而,考虑到这些问题,运行时系统可能会成为限制系统可伸缩性的瓶颈。本文的贡献是双重的。首先,我们分析了具有不同依赖模式和任务大小的几个合成基准的当前软件运行时系统的可伸缩性。我们表明,对于细粒度任务,系统不能扩展到超过5个内核。此外,我们还确定了运行时系统的主要可伸缩性瓶颈。其次,我们设计了一个用于StarSS应用程序的硬件支持系统Nexus,它大大降低了任务管理开销。
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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