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Automated Design of Reconfigurable Microarchitectures for Accelerators Under Wide-Voltage Scaling

机译:宽电压比例下加速器的可重配置微体系结构的自动化设计

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This article introduces a systematic methodology to design microarchitectures that are reconfigurable down to the pipeline stage. Reconfigurable microarchitectures were showed to provide significant energy improvements in accelerators under wide-voltage scaling. However, prior art is based on ad hoc techniques that limit their applicability, without addressing the challenge of enabling general design flows for reconfigurable microarchitectures. The proposed methodology introduces the unprecedented capability of translating a conventional fixed microarchitecture into a reconfigurable one. The methodology relies on commercial EDA tools, which are integrated into a design flow through the manipulation of the gate-level netlist via a set of graph algorithms. The proposed methodology is shown to be architecture-agnostic, fully automated, and applicable to designs that are either developed at the register transfer level (RTL), or provided by third-party soft IP vendors. Ultimately, the proposed methodology allows to add microarchitectural adjustment as a run-time knob to augment the energy benefits of wide-voltage scaling. Reconfiguration is shown to improve the energy efficiency by up to 35% beyond the conventional dynamic voltage frequency scaling (DVFS), through the analysis of various test vehicles.
机译:本文介绍了一种系统化的方法来设计可在管道阶段重新配置的微体系结构。研究表明,可重构的微体系结构在宽电压缩放下可显着提高加速器的能量。然而,现有技术基于限制其适用性的特设技术,而没有解决为可重构微体系结构实现通用设计流程的挑战。所提出的方法引入了前所未有的将常规固定微体系结构转换为可重构微体系结构的能力。该方法依赖于商业EDA工具,该工具通过一组图形算法通过控制门级网表而集成到设计流程中。所显示的方法论证明是与体系结构无关的,完全自动化的,并且适用于以寄存器传输级别(RTL)开发或由第三方软IP供应商提供的设计。最终,所提出的方法允许添加微体系结构调整作为运行时间旋钮,以增加宽电压缩放的能量优势。通过对各种测试车辆的分析,重新配置显示出比传统的动态电压频率缩放(DVFS)最高提高了35%的能效。

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