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A Reconfigurable Pattern Matching Hardware Implementation Using On-Chip RAM-Based FSM

机译:使用基于片上RAM的FSM的可重配置模式匹配硬件实现

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摘要

The use of synthesizable reconfigurable IP cores has increasingly become a trend in System on Chip (SoC) designs because of their flexibility and powerful functionality. The market introduction of multi-featured platform FPGAs equipped with embedded memory and processor blocks has further expanded the possibility of utilizing dynamic reconfiguration to improve overall system adaptability to meet varying product requirements. In this paper, a reconfigurable hardware implementation for pattern matching using Finite State machine (FSM) is proposed. The FSM design is RAMbased and is reconfigured on the fly through altering memory contents only. An embedded processor is used for orchestrating run time reconfiguration. Experimental results show that the system can reconfigure itself based on a new incoming pattern and perform the text search without the need of a host processor. Results also proved that each search iteration was executed in one clock cycle and the maximum achievable clock frequency is independent of search pattern length.
机译:可合成的可重新配置IP核的使用由于其灵活性和强大的功能而日益成为片上系统(SoC)设计的趋势。配备嵌入式存储器和处理器模块的多功能平台FPGA的市场引入,进一步扩展了利用动态重新配置来改善整体系统适应性以满足各种产品要求的可能性。本文提出了一种使用有限状态机(FSM)进行模式匹配的可重构硬件实现。 FSM设计基于RAM,并且仅通过更改内存内容即可进行动态配置。嵌入式处理器用于协调运行时重新配置。实验结果表明,该系统可以根据新的传入模式重新配置自身,并且无需主机处理器即可执行文本搜索。结果还证明,每次搜索迭代都是在一个时钟周期内执行的,并且可达到的最大时钟频率与搜索模式长度无关。

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