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Real-Time Task Scheduling on Island-Based Multi-Core Platforms

机译:基于岛的多核平台上的实时任务调度

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摘要

With the increasing number of cores in a computing system, how to coordinate the computing units and heterogeneous memory resources has soon become extremely critical for real-time systems. This paper explores the joint considerations of memory management and real-time task scheduling over island-based multi-core architecture, where the local memory module of an island offers shorter access time than the global memory module does. The objective of this work is to minimize the number of needed islands to successfully schedule real-time tasks. When the required amount of the local memory space is specified for each task, a scheduling algorithm is proposed to provide an asymptotic -approximation bound. When there is flexibility in determining the needed local memory space for each task, we propose an algorithm with an asymptotic -approximation bound to jointly manage memory resources and allocate computing cores. In addition to the worst-case approximation analysis, the proposed algorithms are also evaluated with real-life benchmarks with the support of a worst-case execution time analyzer. Moreover, extensive evaluations are conducted to show the capability of the proposed approaches when being used with various computing cores and memory resources.
机译:随着计算系统中核心数量的增加,如何协调计算单元和异构内存资源很快成为实时系统的关键。本文探讨了基于岛的多核体系结构上内存管理和实时任务调度的共同考虑,其中岛的本地内存模块提供的访问时间比全局内存模块的访问时间短。这项工作的目的是最大程度地减少成功调度实时任务所需的孤岛数量。当为每个任务指定了所需的本地存储空间量时,提出了一种调度算法来提供渐近逼近边界。当可以灵活地确定每个任务所需的本地存储空间时,我们提出一种具有渐近逼近的算法,以联合管理内存资源和分配计算核心。除了最坏情况的近似分析之外,在最坏情况执行时间分析器的支持下,还使用真实基准对所提出的算法进行了评估。此外,进行了广泛的评估,以显示所提出的方法与各种计算核心和内存资源一起使用时的能力。

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