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Technology mapping on a multi-output logic module built around Cellular Automata Array for a new FPGA architecture

机译:基于蜂窝自动机阵列构建的多输出逻辑模块上的技术映射,用于新的FPGA体系结构

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Due to the low design turn-around time, low risk, high testability, and field programmability, Field Programmable Gate Arrays are becoming increasingly popular for rapid circuit realization. The logic blocks in currently available FPGAs are mostly single output. This accompanied with their inability to realize XORs efficiently and the absence of good logic synthesis tools for XOR functions, prevents their usage in many real-life XOR dominated applications. In this paper, we propose a new 5-input 3-output AND-XOR based logic block architecture built around Cellular Automata Array (CAA). An efficient multi-level AND-XOR minimizer has been developed. A generic library based technology mapping technique has been evolved. Experimentation with a large number of XOR dominated MCNC benchmarks establishes the superiority of our logic block over those of Xilinx and Actel for these functions. The mapping scheme is a generic one and thus can be used to evaluate any arbitrary multi-output as well as single-output logic block.
机译:由于设计周转时间短,风险低,可测试性高和现场可编程性好,因此现场可编程门阵列在快速实现电路方面变得越来越受欢迎。当前可用的FPGA中的逻辑块大多是单输出。这伴随着它们无法高效地实现XOR以及缺少用于XOR功能的良好逻辑综合工具,使得它们无法在许多现实生活中以XOR为主的应用程序中使用。在本文中,我们提出了一种基于元胞自动机阵列(CAA)的新的基于5输入3输出AND-XOR的逻辑块架构。已经开发出了一种高效的多级AND-XOR最小化器。基于通用库​​的技术映射技术已经得到了发展。通过对大量XOR为主的MCNC基准进行试验,可以证明我们的逻辑模块在这些功能方面优于Xilinx和Actel。映射方案是一种通用方案,因此可用于评估任意多输出以及单输出逻辑块。

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