首页> 外文期刊>International journal of reconfigurable computing >Architecture and Application-Aware Management of Complexity of Mapping Multiplication to FPGA DSP Blocks in High Level Synthesis
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Architecture and Application-Aware Management of Complexity of Mapping Multiplication to FPGA DSP Blocks in High Level Synthesis

机译:高级综合中映射乘法到FPGA DSP模块的复杂性的体系结构和应用感知管理

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Multiplication is a common operation in many applications and there exist various types of multiplication operations. Current high level synthesis (HLS) flows generally treat all multiplication operations equally and indistinguishable from each other leading to inefficient mapping to resources. This paper proposes algorithms for automatically identifying the different types of multiplication operations and investigates the ensemble of these different types of multiplication operations. This distinguishes it from previous works where mapping strategies for an individual type of multiplication operation have been investigated and the type of multiplication operation is assumed to be knowna priori. A new cost model, independent of device and synthesis tools, for establishing priority among different types of multiplication operations for mapping to on-chip DSP blocks is also proposed. This cost model is used by a proposed analysis and priority ordering based mapping strategy targeted at making efficient use of hard DSP blocks on FPGAs while maximizing the operating frequency of designs. Results show that the proposed methodology could result in designs which were at least 2× faster in performance than those generated by commercial HLS tool: Vivado-HLS.
机译:乘法是许多应用程序中的常见操作,并且存在多种类型的乘法操作。当前的高级综合(HLS)流通常均等地对待所有乘法运算,并且彼此无法区分,从而导致对资源的映射效率低下。本文提出了自动识别不同类型的乘法运算的算法,并研究了这些不同类型的乘法运算的集合。这与先前的工作有所区别,在先前的工作中,已经研究了针对单个类型的乘法运算的映射策略,并且假定乘法运算的类型是先验的。还提出了一种新的成本模型,该模型与器件和综合工具无关,用于在不同类型的乘法运算之间建立优先级以映射到片上DSP模块。提议的基于分析和优先级排序的映射策略使用了这种成本模型,旨在有效利用FPGA上的硬DSP模块,同时最大化设计的工作频率。结果表明,所提出的方法可以使设计的性能至少比商用HLS工具Vivado-HLS产生的设计快2倍。

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