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Performance Evaluation of Inter-Processor Communication for an Embedded Heterogeneous Multi-Core Processor

机译:嵌入式异构多核处理器的处理器间通信性能评估

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Embedded systems often use a heterogeneous multi-core processor to improve performance and energy efficiency. This multi-core processor is composed of a general purpose processor (GPP), which manages the program flow and I/O, and a digital signal processor (DSP), which processes mass data. An inter-processor communication (IPC) mechanism is thus required to exchange data between a GPP and a DSP. This paper uses comprehensive experiments to evaluate the IPC performance of an embedded heterogeneous multi-core processor under different design strategies. We further develop the IPC performance model and suggest dynamic adjustment of IPC strategies under environmental parameters and system resource constraints. Based on the results and findings, we improve the IPC performance of a voice over IP (VoIP) phone. Experimental results demonstrate that the GPP workload decreases significantly by 35% without sacrificing the functionalities and voice quality of the VoIP system. Moreover, we apply the concept of dynamic adjustment of IPC strategies to an embedded media gateway. The simulation results demonstrate that the dynamic IPC strategy can considerably improve the system performance of the media gateway compared with the static IPC design approach.
机译:嵌入式系统通常使用异构多核处理器来提高性能和能效。该多核处理器由管理程序流和I / O的通用处理器(GPP)和处理海量数据的数字信号处理器(DSP)组成。因此,需要处理器间通信(IPC)机制在GPP和DSP之间交换数据。本文通过综合实验评估了不同设计策略下嵌入式异构多核处理器的IPC性能。我们将进一步开发IPC绩效模型,并建议在环境参数和系统资源约束下动态调整IPC策略。根据结果​​和发现,我们改善了IP语音(VoIP)电话的IPC性能。实验结果表明,在不牺牲VoIP系统功能和语音质量的前提下,GPP工作负载显着减少了35%。此外,我们将动态调整IPC策略的概念应用于嵌入式媒体网关。仿真结果表明,与静态IPC设计方法相比,动态IPC策略可以显着提高媒体网关的系统性能。

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