论文标题

DS3:系统级域特定于芯片模拟框架

DS3: A System-Level Domain-Specific System-on-Chip Simulation Framework

论文作者

Arda, Samet E., NK, Anish, Goksoy, A. Alper, Kumbhare, Nirmal, Mack, Joshua, Sartor, Anderson L., Akoglu, Ali, Marculescu, Radu, Ogras, Umit Y.

论文摘要

片上的异质系统(SOCS)是高度优惠的计算平台,因为与同质体系结构相比,它们的性能和能源效率的卓越潜力。它们可以通过合并加速在这些应用中加速经常使用的内核的处理元素(PE)来进一步定制应用程序的特定领域。但是,这种潜力取决于为目标域优化SOC并在运行时有效地利用其资源。为此,系统级设计 - 包括调度,电力热管理算法和设计空间探索研究 - 起着至关重要的作用。本文介绍了系统级域特异性SOC仿真(DS3)框架,以满足这一需求。 DS3可以启用设计空间探索和动态资源管理,以实现域应用程序的功率绩效优化。我们使用来自无线通信和雷达处理域中的六个现实世界应用程序展示了DS3。 DS3以及参考应用程序作为开源软件共享,以刺激该领域的研究。

Heterogeneous systems-on-chip (SoCs) are highly favorable computing platforms due to their superior performance and energy efficiency potential compared to homogeneous architectures. They can be further tailored to a specific domain of applications by incorporating processing elements (PEs) that accelerate frequently used kernels in these applications. However, this potential is contingent upon optimizing the SoC for the target domain and utilizing its resources effectively at runtime. To this end, system-level design - including scheduling, power-thermal management algorithms and design space exploration studies - plays a crucial role. This paper presents a system-level domain-specific SoC simulation (DS3) framework to address this need. DS3 enables both design space exploration and dynamic resource management for power-performance optimization of domain applications. We showcase DS3 using six real-world applications from wireless communications and radar processing domain. DS3, as well as the reference applications, is shared as open-source software to stimulate research in this area.

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