A Power and Cluster-Aware Technology Mapping and Clustering Scheme for Dual-VT FPGAs

Parallel and Distributed Processing Symposium Workshops & PhD Forum(2012)

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摘要
In this paper, we present a technology mapping and clustering tool for leakage power reduction in FPGAs with programmable, dual-VT logic blocks. The use of Reverse Back Bias (RBB) circuit techniques is recognized as one of the more promising strategies in mitigating leakage power, a critical problem in circuits deploying deep submicron process technologies. FPGAs with the ability to adjust fabric VT through RBB offer the potential of reducing leakage power with minimal or no sacrifice to circuit speed. Today, Altera's Stratix line of FPGAs deploy a similar strategy, but with optimizations limited to the post-P&R stage. We present a novel two-stage technology mapping (RBBMap) and logic block packing (RBBPack) tool that is free from clustering constraints limiting the post-P&R method, and moves RBB optimizations upwards to the technology mapping level. Using the baseline technology mapping tool Emap, our tools generate an average of 70.95% savings in logic block leakage power and 28.30% savings in total energy consumption.
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关键词
optimisation,leakage power,deep submicron process technology,dual-vt fpgas,reverse back bias,pattern clustering,eda,logic block packing tool,rbb circuit techniques,alters stratix line,baseline technology mapping tool,clustering scheme,rbbpack tool,technology mapping,two-stage technology mapping tool,leakage power reduction,programmable-vt,cluster-aware technology mapping,deep submicron process technologies,logic block leakage power,rbb optimizations,reverse back bias circuit techniques,post-p&r method,programmable dual logic blocks,technology mapping level,fpga,dual-vt,energy consumption,emap,rbb optimizations upwards,power technology mapping,field programmable gate arrays,dual fpga,rbbmap tool,clustering tool,novel two-stage technology mapping,switches,optimization,routing
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