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Energy efficient run-time mapping and thread partitioning of concurrent OpenCL applications on CPU-GPU MPSoCs

机译:CpU-GpU mpsoC上的并发OpenCL应用程序的节能运行时映射和线程分区

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摘要

Heterogeneous Multi-Processor Systems-on-Chips (MPSoCs) containing CPU and GPU cores are typically required to execute applications concurrently. However, as will be shown in this paper, existing approaches are not well suited for concurrent applications as they are developed either by considering only a single application or they do not exploit both CPU and GPU cores at the same time. In this paper, we propose an energy-efficient run-time mapping and thread partitioning approach for executing concurrent OpenCL applications on both GPU and GPU cores while satisfying performance requirements. Depending upon the performance requirements, for each concurrently executing application, the mapping process finds the appropriate number of CPU cores and operating frequencies of CPU and GPU cores, and the partitioning process identifies an efficient partitioning of the applications’ threads between CPU and GPU cores. We validate the proposed approach experimentally on the Odroid-XU3 hardware platform with various mixes of applications from the Polybench benchmark suite. Additionally, a case-study is performed with a real-world application SLAMBench. Results show an average energy saving of 32% compared to existing approaches while still satisfying the performance requirements.
机译:通常需要包含CPU和GPU内核的异构多处理器片上系统(MPSoC)来同时执行应用程序。但是,如本白皮书所示,现有方法不适用于并发应用程序,因为它们是通过仅考虑单个应用程序而开发的,或者它们不能同时利用CPU和GPU内核。在本文中,我们提出了一种节能的运行时映射和线程分区方法,用于在GPU和GPU内核上执行并发OpenCL应用程序,同时满足性能要求。根据性能要求,对于每个同时执行的应用程序,映射过程会找到适当数量的CPU内核以及CPU和GPU内核的工作频率,并且分区过程会确定应用程序线程在CPU和GPU内核之间的有效划分。我们在Odroid-XU3硬件平台上通过Polybench基准套件中的各种应用程序在实验上验证了该方法。另外,案例研究是通过实际应用程序SLAMBench执行的。结果表明,与现有方法相比,平均节能32%,同时仍满足性能要求。

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