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LOPASS: A Low-Power Architectural Synthesis System for FPGAs With Interconnect Estimation and Optimization

机译:LOPASS:一种用于FPGA的低功耗架构综合系统,具有互连估计和优化

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摘要

In this paper, we present a low-power architectural synthesis system (LOPASS) for field-programmable gate-array (FPGA) designs with interconnect power estimation and optimization. LOPASS includes three major components: 1) a flexible high-level power estimator for FPGAs considering the power consumption of various FPGA logic components and interconnects; 2) a simulated-annealing optimization engine that carries out resource selection and allocation, scheduling, functional unit binding, register binding, and interconnection estimation simultaneously to reduce power effectively; and 3) a k-cofamily-based register binding algorithm and an efficient port assignment algorithm that reduce interconnections in the data path through multiplexer optimization. The experimental results show that LOPASS produces promising results on latency optimization compared to an academic high-level synthesis tool SPARK. Compared to an early commercial high-level synthesis tool, namely, Synopsys Behavioral Compiler, LOPASS is 61.6% better on power consumption and 10.6% better on clock period on average. Compared to a current commercial tool, namely, Impulse C, LOPASS is 31.1% better on power reduction with an 11.8% penalty on clock period.
机译:在本文中,我们介绍了一种用于低功耗架构综合系统(LOPASS)的现场可编程门阵列(FPGA)设计,并具有互连功率估算和优化功能。 LOPASS包括三个主要组件:1)考虑到各种FPGA逻辑组件和互连的功耗的灵活的FPGA高电平功耗估算器; 2)模拟退火优化引擎,可以同时进行资源选择和分配,调度,功能单元绑定,寄存器绑定和互连估计,以有效地降低功耗; 3)一种基于k族的寄存器绑定算法和一种有效的端口分配算法,可通过多路复用器优化来减少数据路径中的互连。实验结果表明,与学术高级综合工具SPARK相比,LOPASS在延迟优化方面产生了可喜的结果。与早期的商用高级综合工具Synopsys Behavioral Compiler相比,LOPASS的功耗平均降低61.6%,时钟周期平均降低10.6%。与当前的商用工具Impulse C相比,LOPASS的功耗降低了31.1%,时钟周期降低了11.8%。

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