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Optimized Address Assignment With Array and Loop Transformations for Minimizing Schedule Length

机译:通过数组和循环转换优化地址分配,以最大程度地减少调度程序长度

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Reducing address arithmetic operations by optimization of address offset assignment greatly improves the performance of digital signal processor (DSP) applications. However, minimizing address operations alone may not directly reduce code size and schedule length for DSPs with multiple functional units. Little research work has been conducted on loop optimization with address offset assignment problem for architectures with multiple functional units. In this paper, we combine loop scheduling, array interleaving, and address assignment to minimize the schedule length and the number of address operations for loops on DSP architectures with multiple functional units. Array interleaving is applied to optimize address assignment for arrays in loop scheduling process. An algorithm, Address Operation Reduction Rotation Scheduling (AORRS), is proposed. The algorithm minimizes both schedule length and the number of address operations. With to list scheduling, AORRS shows an average reduction of 38.4% in schedule length and an average reduction of 31.7% in the number of address operations. Compared with rotation scheduling, AORRS shows an average reduction of 15.9% in schedule length and 33.6% in the number of address operations.
机译:通过优化地址偏移量分配来减少地址算术运算,可以大大提高数字信号处理器(DSP)应用程序的性能。但是,仅将地址操作减到最少可能无法直接减少具有多个功能单元的DSP的代码大小和调度长度。对于具有多个功能单元的体系结构,针对具有地址偏移量分配问题的循环优化问题进行的研究很少。在本文中,我们结合了循环调度,阵列交织和地址分配,以最大程度地减少具有多个功能单元的DSP体系结构上的循环的调度长度和地址操作数。阵列交织用于在循环调度过程中优化阵列的地址分配。提出了一种减少地址操作旋转调度(AORRS)的算法。该算法可最大程度地减少调度时间和地址操作的数量。对于列表调度,AORRS显示调度长度平均减少38.4%,地址操作数量平均减少31.7%。与轮换调度相比,AORRS的调度长度平均减少了15.9%,地址操作数量平均减少了33.6%。

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