Switching-activity minimization on instruction-level loop for VLIW DSP applications

Z. Shao, Qingfeng Zhuge, Meilin Liu, Bin Xiao, E. Sha
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引用次数: 1

Abstract

This work develops an instruction-level loop scheduling technique to reduce both execution time and bus switching activities for applications with loops on VLIW architectures. We propose an algorithm, SAMLS (switching-activity minimization loop scheduling), to minimize both schedule length and switching activities for applications with loops. In the algorithm, we obtain the best schedule from the ones that are generated from an initial schedule by repeatedly rescheduling the nodes with schedule length and switching activities minimization based on rotation scheduling and bipartite matching. The experimental results show that our algorithm can greatly reduce both schedule length and bus switching activities compared with the previous work.
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VLIW DSP应用中指令级循环的切换活动最小化
这项工作开发了一种指令级循环调度技术,以减少VLIW体系结构上具有循环的应用程序的执行时间和总线切换活动。我们提出了一个算法,SAMLS(切换活动最小化循环调度),以最小化调度长度和切换活动的应用程序的循环。该算法基于旋转调度和二部匹配,以调度长度最小和切换活动最小为目标,通过重复调度节点,从初始调度生成的调度中获得最优调度。实验结果表明,与以往的算法相比,该算法可以大大减少调度长度和总线切换活动。
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