Abstract
Exploitation of silicon capacity will require improvements in design productivity and more scalable system paradigms. Asynchronous message passing networks on chip (NOC) have been proposed as backbones for billion-transistor ASICs. We present a novel layered backbone-platform-system (BPS) design methodology for development of network-on-chip based products. It combines and extends the distributed, parallel, embedded and platform-based design concepts in order to manage the diversity and complexity of NOC-based systems. The reuse of communication principles in various platforms, the reuse of platforms in product differentiation, and system-level decision-support methods are the cornerstones of our methodology. The presented mappability estimation and workload simulations demonstrate the feasibility of such methods.
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Soininen, J. P., Jantsch, A., Forsell, M., Pelkonen, A., Kreku, J., & Kumar, S. (2003). Extending platform-based design to network on chip systems. In Proceedings of the IEEE International Conference on VLSI Design (Vol. 2003-January, pp. 401–408). IEEE Computer Society. https://doi.org/10.1109/ICVD.2003.1183169
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