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Loop Fusion Technique with Minimal Memory Cost via Retiming

机译:通过重新定时以最小的内存成本实现循环融合技术

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摘要

Embedded systems are usually constrained in terms of timing, power, and memory. Many embedded applications, especially in the multi-media and telecom domains, are inherently data dominant. These embedded DSP applications usually exhibit intensive computations in the form of multi-level loops. The performance of these embedded DSP applications mainly depends on the code quality of the loops and the memory hierarchy design. During the design phase of the embedded system, it is important to estimate the overall storage requirement and to design an optimized memory system and take advantage of the memory system by program transformations and loop transformations. Loop fusion is one of the most effective techniques to increase the performance of applications with multiple loops. In this paper, we propose a technique to estimate the memory cost of the original loop and the fused loop based on the data dependence distance. We then propose loop transformation techniques to legalize loop fusion and at the same time to reduce the overall memory cost. The experimental results show that the execution time of the fused loops by our legalizing fusion technique is significantly reduced compared to the execution time of the original loops, and the fused loops achieve the minimal memory cost.
机译:嵌入式系统通常在时序,功耗和内存方面受到限制。许多嵌入式应用程序,特别是在多媒体和电信领域,本质上是数据主导的。这些嵌入式DSP应用程序通常以多级循环的形式展示密集的计算。这些嵌入式DSP应用程序的性能主要取决于循环的代码质量和存储器层次结构设计。在嵌入式系统的设计阶段,重要的是估计总体存储需求并设计优化的存储系统,并通过程序转换和循环转换来利用该存储系统。循环融合是提高具有多个循环的应用程序性能的最有效技术之一。在本文中,我们提出了一种基于数据依赖距离来估计原始循环和融合循环的存储成本的技术。然后,我们提出了循环转换技术,以使循环融合合法化,同时降低总体存储成本。实验结果表明,通过我们合法化的融合技术,融合循环的执行时间与原始循环的执行时间相比大大减少,并且融合循环实现了最低的内存成本。

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