On the Guidance of Reversible Logic Synthesis by Dynamic Variable Reordering

D. Y. Feinstein, M. Thornton
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引用次数: 4

Abstract

This paper proposes a framework that improves reversible logic synthesis by employing a dynamically determined variable order for quantum multiple-valued decision diagrams (QMDD). We demonstrate our approach through augmentation of the Miller-Maslov-Dueck (MMD) algorithm that processes the complete function specification in lexicographical order with our technique. We represent and minimize the complete specification with the QMDD and then synthesize the function specification based on the minimized variable order. The framework produces significantly smaller reversible circuits in many cases. Experimental results also show the effectiveness of using the QMDD size as a measure of the complexity of MVL and binary reversible circuits.
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动态变量重排序对可逆逻辑综合的指导
针对量子多值决策图(QMDD),提出了一种采用动态确定的变量顺序来改进可逆逻辑综合的框架。我们通过扩展Miller-Maslov-Dueck (MMD)算法来演示我们的方法,该算法使用我们的技术按字典顺序处理完整的功能规范。我们用QMDD表示和最小化完整的规范,然后根据最小化的变量顺序合成功能规范。在许多情况下,该框架可以产生更小的可逆电路。实验结果还表明,使用QMDD大小作为MVL和二进制可逆电路复杂性的度量是有效的。
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