Title :
Simple-VLIW: A fundamental VLIW architectural simulation platform
Author :
Wang, Peng ; Yang, Jianxin ; Wang, Biao
Author_Institution :
JiangNan Inst. of Comput. Technol., Wuxi
Abstract :
The very long instruction word (VLIW) architecture is considered to be one of the promising methods of increasing performance beyond standard reduced instruction set computing (RISC) architectures. However, few generally-accepted VLIW simulation environments are available for us in exploring the VLIW instruction set architectures (ISA) and their corresponding microarchitectures. Motivated by characterizing and evaluating VLIW-based designs more quickly and accurately, we present the design of a fundamental discrete-event driven software simulation platform, simple-VLIW, dedicated to VLIW architectures. The software decouples fast functional simulations and accurate cycle-based performance evaluations to provide different levels of details. With user-configurable parameters and driven by typical workloads, the simple-VLIW offers fast and accurate evaluations of VLIW-based architectures. It executes millions of instructions per second, and the results of which are consistent with our theoretical analysis very well. As a valuable tool, the proposed simulator can significantly expedite the research and the development of VLIW architectures.
Keywords :
discrete event simulation; instruction sets; parallel architectures; discrete-event driven software simulation platform; fundamental VLIW architectural simulation platform; reduced instruction set computing architectures; very long instruction word architecture; Computational modeling; Computer aided instruction; Computer architecture; Digital signal processing; Instruction sets; Microarchitecture; Parallel processing; Reduced instruction set computing; Software performance; VLIW; Simple-VLIW; Simulation platform; VLIW architecture;
Conference_Titel :
System Simulation and Scientific Computing, 2008. ICSC 2008. Asia Simulation Conference - 7th International Conference on
Conference_Location :
Beijing
Print_ISBN :
978-1-4244-1786-5
Electronic_ISBN :
978-1-4244-1787-2
DOI :
10.1109/ASC-ICSC.2008.4675563