Abstract
Today's System-on-Chips (SoCs) design is extremely challenging because it involves complicated design tradeoffs and heterogeneous design expertise. To explore the large solution space, system architects have to rely on system-level simulators to identify an optimized SoC architecture. In this paper, we propose a system-level simulation framework, System Performance Simulation Implementation Mechanism, or SPSIM. Based on SystemC TLM2.0, the framework consists of an executable SoC model, a simulation tool chain, and a modeling methodology. Compared with the large body of existing research in this area, this work is aimed at delivering a high simulation throughput and, at the same time, guaranteeing a high accuracy on real industrial applications. Integrating the leading TLM techniques, our simulator can attain a simulation speed that is not slower than that of the hardware execution by a factor of 35 on a set of real-world applications. SPSIM incorporates effective timing models, which can achieve a high accuracy after hardware-based calibration. Experimental results on a set of mobile applications proved that the difference between the simulated and measured results of timing performance is within 10, which in the past can only be attained by cycle-accurate models. © 2011 Guanyi Sun et al.
Cite
CITATION STYLE
Sun, G., Xu, S., Wang, X., Wang, D., Tang, E., Deng, Y., & Chan, S. (2011). A high-throughput, high-accuracy system-level simulation framework for System on Chips. VLSI Design, 2011. https://doi.org/10.1155/2011/726014
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.