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Synthesis of Fredkin-Toffoli reversible networks

机译:Fredkin-Toffoli可逆网络的综合

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Reversible logic has applications in quantum computing, low power CMOS, nanotechnology, optical computing, and DNA computing. The most common reversible gates are the Toffoli gate and the Fredkin gate. We present a method that synthesizes a network with these gates in two steps. First, our synthesis algorithm finds a cascade of Toffoli and Fredkin gates with no backtracking and minimal look-ahead. Next we apply transformations that reduce the number of gates in the network. Transformations are accomplished via template matching. The basis for a template is a network with m gates that realizes the identity function. If a sequence of gates in the network to be reduced matches a sequence of gates comprising more than half of a template, then a transformation that reduces the gate count can be applied. We have synthesized all three input, three output reversible functions and here compare our results to the optimal results. We also present the results of applying our synthesis tool to obtain networks for a number of benchmark functions.
机译:可逆逻辑在量子计算,低功耗CMOS,纳米技术,光学计算和DNA计算中具有应用。最常见的可逆门是Toffoli门和Fredkin门。我们提出了一种通过两步合成具有这些门的网络的方法。首先,我们的综合算法找到了Toffoli和Fredkin门的级联,没有回溯且前瞻性极低。接下来,我们应用减少网络中门数量的转换。转换是通过模板匹配完成的。模板的基础是具有m个门的网络,该网络可实现身份功能。如果网络中要减少的门的序列与包含模板一半以上的门的序列匹配,则可以应用减少门数量的转换。我们已经综合了所有三个输入,三个输出可逆函数,在此将我们的结果与最佳结果进行比较。我们还介绍了使用我们的综合工具获得用于许多基准功能的网络的结果。

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