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Application of symbolic functional decomposition concept in FSM implementation targeting FPGA devices

机译:符号功能分解概念在针对FPGA器件的FSM实现中的应用

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This paper presents an FSM implementation method based on symbolic functional decomposition. This novel approach in multilevel logic synthesis of finite state machines targets FPGA architectures. Traditional methods are based on two steps: internal state encoding and then mapping the encoded state transition table into target architecture. In the case of FPGAs, functional decomposition is recognized as the most efficient method of implementing digital circuits. However none of the known state encoding algorithms can be considered as a good method to be used with functional decomposition. In this paper the concept of symbolic functional decomposition is applied to obtain a multilevel structure that is suitable for implementing in FPGA logic cells. The symbolic decomposition does not require separate encoding step. It accepts FSM description with symbolic states and performs decomposition introducing such a state encoding that guarantees the best solution known.
机译:本文提出了一种基于符号功能分解的FSM实现方法。这种用于有限状态机的多级逻辑综合的新颖方法以FPGA体系结构为目标。传统方法基于两个步骤:内部状态编码,然后将编码后的状态转换表映射到目标体系结构。对于FPGA,功能分解被认为是实现数字电路的最有效方法。但是,没有一种已知的状态编码算法可以被认为是与功能分解一起使用的好方法。本文将符号功能分解的概念应用于获得适合在FPGA逻辑单元中实现的多层结构。符号分解不需要单独的编码步骤。它接受带有符号状态的FSM描述,并进行分解,引入这样的状态编码,以保证已知的最佳解决方案。

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