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Boomerang: Physical-Aware Design Space Exploration Framework on RISC-V SonicBOOM Microarchitecture

  • National Taiwan University

研究成果: 圖書/報告稿件的類型會議稿件同行評審

4 引文 斯高帕斯(Scopus)

摘要

As semiconductor manufacturing technology advances, microarchitecture designers could use the advanced process to create complex microarchitectures, making the design more performant, power-saving, and area efficient. To get better designs for various objectives, designers use hardware description language to deploy a highly parameterizable hardware design generator. However, the more flexible the parameterized design is, the more complex the parameters to choose over the possible parameter space. Traditionally, experienced hardware engineers have to hand-tune each design parameter to achieve better performance, power, and area efficiency. Moreover, the design space is usually too large to practically explore by running place-and-route (PnR) of each design since the electronic design automation (EDA) tool could take days to finish it. Thus, prior works on microarchitecture search only focus on logical results, which leads the search framework to ignore the quality gap between logical and physical design, resulting in inaccurate Pareto frontier prediction. To further address this issue, we use the physical synthesis technique to estimate the physical characteristics and save runtime while exploring the design space simultaneously. In this case, we developed a heuristic idea, Physical-aware Design Space Exploration Framework on RISC-V SonicBOOM Microarchitecture, that optimizes the netlist and physical layout quality. It results in a much more accurate prediction of the Pareto parameter set with a 40% and 28% search time reduction on the three-objective and four-objective problems, respectively, compared to the best baseline model. In addition, our method achieved a seven times smaller hypervolume difference than the best baseline model within the same number of observations.

原文英語
主出版物標題Proceedings - 2023 IEEE 34th International Conference on Application-Specific Systems, Architectures and Processors, ASAP 2023
發行者Institute of Electrical and Electronics Engineers Inc.
頁面85-93
頁數9
ISBN(電子)9798350346855
DOIs
出版狀態已出版 - 2023
對外發佈
事件34th IEEE International Conference on Application-Specific Systems, Architectures and Processors, ASAP 2023 - Porto, 葡萄牙
持續時間: 19 07 202321 07 2023

出版系列

名字Proceedings of the International Conference on Application-Specific Systems, Architectures and Processors
2023-July
ISSN(列印)2160-0511
ISSN(電子)2160-052X

Conference

Conference34th IEEE International Conference on Application-Specific Systems, Architectures and Processors, ASAP 2023
國家/地區葡萄牙
城市Porto
期間19/07/2321/07/23

文獻附註

Publisher Copyright:
© 2023 IEEE.

UN SDG

此研究成果有助於以下永續發展目標

  1. SDG9 工業、創新基礎建設
    SDG9 工業、創新基礎建設

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