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Bandwidth measurement using performance counters for predictable multicore software

机译:使用性能计数器对可预测的多核软件进行带宽测量

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Memory contention is one of the largest sources of inter-core interference in statically partitioned multicore systems, and the contention reduces the overall performance of applications and causes unpredictable execution-times. A first step in achieving predictable execution is to accurately measure the amount of consumed memory bandwidth for each application. Such measurements can be used to track down bottlenecks, provide better partitioning among cores, and ultimately be used to arbitrate and police access to the memory bus. We propose to use hardware performance counters to continuously track the memory-bandwidth consumed by different applications executing in parallel. In this paper we describe ongoing efforts exploring suitable performance counters on core-level and on system-on-chip level for the 8-core Freescale P4080 processor. The aim is to accurately and efficiently track consumed memory bandwidth per application; with the final goal to use these measurements to improve predictability of multicore realtime software.
机译:内存争用是静态分区多核系统中最大的核心间干扰源之一,争用会降低应用程序的整体性能并导致无法预测的执行时间。实现可预测执行的第一步是准确测量每个应用程序消耗的内存带宽量。此类测量可用于跟踪瓶颈,在内核之间提供更好的分区,并最终用于仲裁和管理对内存总线的访问。我们建议使用硬件性能计数器来连续跟踪并行执行的不同应用程序消耗的内存带宽。在本文中,我们描述了为探索8核Freescale P4080处理器在内核级和片上系统级上合适的性能计数器而进行的努力。目的是准确有效地跟踪每个应用程序消耗的内存带宽;最终目标是使用这些度量来提高多核实时软件的可预测性。

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