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Integrating operation scheduling and binding for functional unit power-gating in high-level synthesis

机译:高层操作中功能单元电源门控的集成操作调度和绑定

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Power-gating-aware design has been an active area of research in the last decade, aiming at reducing power dissipation while meeting a desired system throughput. In this study, an algorithm integrating both scheduling and binding processes is developed with the functional unit (FU) power-gating technique, to achieve maximum leakage energy reduction under both performance and resource constraints. Firstly, the possible leakage energy reductions of all idle intervals are analyzed by evaluating the operation mobilities. Secondly, a min-cost flow-based algorithm is conducted to evaluate the total leakage energy saving from power-gating FUs, and operations are scheduled to the clock cycles with maximization of the leakage energy saving. Finally, all operations are bound to FUs following the min-cost flow solution of the network derived from the final scheduling result. Experimental results show the effectiveness of our algorithm in leakage energy reduction.
机译:在过去的十年中,电源门控设计一直是研究的一个活跃领域,目的是在降低功耗的同时满足所需的系统吞吐量。在这项研究中,使用功能单元(FU)功率门控技术开发了一种将调度和绑定过程集成在一起的算法,以在性能和资源约束下实现最大的泄漏能量减少。首先,通过评估运行能力来分析所有空闲间隔的可能的泄漏能量减少。其次,采用基于最小成本流的算法来评估门控FU所节省的总泄漏能量,并且将操作调度到时钟周期,以最大程度地节省泄漏能量。最后,遵循从最终调度结果得出的网络的最小成本流解决方案,所有操作都绑定到FU。实验结果表明我们的算法在减少泄漏能量方面是有效的。

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