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To Co-run, or Not to Co-run: A Performance Study on Integrated Architectures

机译:共同运行还是不共同运行:集成体系结构的性能研究

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Architecture designers tend to integrate both CPU and GPU on the same chip to deliver energy-efficient designs. To effectively leverage the power of both CPUs and GPUs on integrated architectures, researchers have recently put substantial efforts into co-running a single application on both the CPU and the GPU of such architectures. However, few studies have been performed to analyze a wide range of parallel computation patterns on such architectures. In this paper, we port all programs in Rodinia benchmark suite and co-run these programs on the integrated architecture. We find that co-running results are not always better than running the application on the CPU only or the GPU only. Among the 20 programs, 3 programs can benefit from co-running, 12 programs using GPU only and 2 programs using CPU only achieve the best performance. The remaining 3 programs show no performance preference for different devices. We also characterize the workload and summarize the patterns for the system insights of co-running on integrated architectures.
机译:架构设计师倾向于将CPU和GPU集成在同一芯片上,以提供节能设计。为了有效地利用CPU和GPU在集成架构上的功能,研究人员最近投入了巨大的精力在这样的架构的CPU和GPU上共同运行单个应用程序。但是,很少有研究可以分析这种体系结构上的各种并行计算模式。在本文中,我们将所有程序移植到Rodinia基准套件中,并在集成体系结构上共同运行这些程序。我们发现共同运行的结果并不总是比仅在CPU或仅GPU上运行应用程序更好。在这20个程序中,有3个程序可以从协同运行中受益,其中12个仅使用GPU的程序和2个仅使用CPU的程序可以达到最佳性能。其余3个程序在不同设备上均未显示性能偏好。我们还描述了工作负载的特征,并总结了在集成体系结构上共同运行的系统见解的模式。

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