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Optimization for application-specific packet-based on-chip interconnects using a cycle-accurate model
Conference paper

Optimization for application-specific packet-based on-chip interconnects using a cycle-accurate model

Yu-Ju Shih, Chih-Tsun Huang, Jing-Jia Liou, Jyu-Yuan Lai, Chih-Wea Wang and Chi-Feng Wu
2017 International Symposium on VLSI Design, Automation and Test, VLSI-DAT 2017, 7939676
06/2017

Abstract

Electrical and Electronic Engineering Safety Risk Reliability and Quality
In this paper, we present a timing model of flit transactions for primitive components in irregular interconnect fabrics. Based on the model, we then develop a fast timing simulator for on-chip interconnects with a 100% cycle accuracy when validated with an industrial RTL implementation. With our timing simulator, we can design and optimize architectures of interconnects by adjusting topologies, FIFOs, outstanding buffers, data widths, and clocking. In a case of high-performance networking SoC, the proposed approach can explore the design space effectively, minimizing the latency of intercommunication to 43.6% as compared with the initial architecture. The area cost can also be reduced to 88.1% at the same time.

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