COMPESCE: A Co-design Approach for Memory Subsystem Performance Analysis in HPC Many-Cores
Author:
Publisher
Springer Nature Switzerland
Link
https://link.springer.com/content/pdf/10.1007/978-3-031-42785-5_8
Reference40 articles.
1. Sato, M., et al.: Co-design and system for the supercomputer “fugaku’’. IEEE Micro. 42(2), 26–34 (2022)
2. Monroe, D.: Fugaku takes the lead. Commun. ACM 64(1), 16–18 (2021)
3. Yamamura, S., et al.: A64FX: 52-core processor designed for the 442petaflops supercomputer fugaku. In: ISSCC, San Francisco, CA, USA, 20–26 February 2022, pp. 352–354. IEEE (2022)
4. Sato, M.: The supercomputer “fugaku” and ARM-SVE enabled A64FX processor for energy-efficiency and sustained application performance. In: ISPDC 2020, pp. 1–5 (2020)
5. Stephens, N., et al.: The ARM scalable vector extension. CoRR, abs/1803.06185 (2018)
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