将推测性执行纳入控制流密集行为描述的调度

G. Lakshminarayana, A. Raghunathan, N. Jha
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引用次数: 33

摘要

推测执行是指在执行决定是否需要执行的条件操作之前执行部分计算。它已经被证明是一种很有前途的技术,可以消除硬件和软件实现中控制流所带来的性能瓶颈。在本文中,我们提出了以细粒度方式将推测执行合并到控制调度中的技术-如何密集的行为描述。我们证明,不考虑资源约束和分支概率等信息可能导致显著的次优性能。我们还证明,在资源约束下,沿着多条路径同时推测可能是必要的,以便在预测错误发生时最小化延迟开销。几个基准测试的实验结果表明,与没有推测执行的调度相比,我们的推测调度算法可以显著(最多七倍)提高性能(以平均时钟周期数衡量)。此外,推测执行的调度的最佳和最坏情况执行时间与没有推测执行的调度的相应值相同或更好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Incorporating speculative execution into scheduling of control-flow intensive behavioral descriptions
Speculative execution refers to the execution of parts of a computation before the execution of the conditional operations that decide whether it needs to be executed. It has been shown to be a promising technique for eliminating performance bottlenecks imposed by control flow in hardware and software implementations alike. In this paper, we present techniques to incorporate speculative execution in a fine-grained manner into scheduling of control-how intensive behavioral descriptions. We demonstrate that failing to take into account information such as resource constraints and branch probabilities can lead to significantly sub-optimal performance. We also demonstrate that it may be necessary to speculate simultaneously along multiple paths, subject to resource constraints, in order to minimize the delay overheads incurred when prediction errors occur. Experimental results on several benchmarks show that our speculative scheduling algorithm can result in significant (up to seven-fold) improvements in performance (measured in terms of the average number of clock cycles) as compared to scheduling without speculative execution. Also, the best and worst case execution times for the speculatively performed schedules are the same as or better than the corresponding values for the schedules obtained without speculative execution.
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