A hierarchical simulation framework for application development on system-on-chip architectures
Vikas Mathur, Viktor K. Prasanna
Abstract
Vikas Mathur, Viktor K. Prasanna
Abstract
We propose a hierarchical simulation methodology to assist application development on System-on-Chip architectures. Hierarchical simulation involves simulation of a SoC based system at different levels of abstraction. Thus, it enables a system designer to exploit simulation speed vs. accuracy of results trade-offs. Vertical simulation is a special case of hierarchical simulation, where a feedback mechanism between the different simulation levels helps in "interpreting" the results of stand-alone simulations in the system-wide context. The paper presents an approach to perform vertical simulation of a class of applications under a simplified scenario.
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We propose a hierarchical simulation methodology to assist application development on System-on-Chip architectures. Hierarchical simulation involves simulation of a SoC based system at different levels of abstraction. Thus, it enables a system designer to exploit simulation speed vs. accuracy of results trade-offs. Vertical simulation is a special case of hierarchical simulation, where a feedback mechanism between the different simulation levels helps in "interpreting" the results of stand-alone simulations in the system-wide context. The paper presents an approach to perform vertical simulation of a class of applications under a simplified scenario.
Key concepts: Computer science, Exploit, Abstraction, Context (archaeology), System on a chip, Class (philosophy), Simulation modeling, Computer architecture