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首页> 外文期刊>IEEE Transactions on Computer-Aided Design of Integrated Circuits and Systems >Heuristics for Area Minimization in LUT-Based FPGA Technology Mapping
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Heuristics for Area Minimization in LUT-Based FPGA Technology Mapping

机译:基于LUT的FPGA技术映射中面积最小化的启发式方法

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In this paper, an iterative technology-mapping tool called IMap is presented. It supports depth-oriented (area is a secondary objective), area-oriented (depth is a secondary objective), and duplication-free mapping modes. The edge-delay model (as opposed to the more commonly used unit-delay model) is used throughout. Two new heuristics are used to obtain area reductions over previously published methods. The first heuristic predicts the effects of various mapping decisions on the area of the final solution, and the second heuristic bounds the depth of the mapping solution at each node. In depth-oriented mode, when targeting five lookup tables (LUTs), IMap obtains depth optimal solutions that are 44.4%, 19.4%, and 5% smaller than those produced by FlowMap, CutMap, and DAOMap, respectively. Targeting the same LUT size in area-oriented mode, IMap obtains solutions that are 17.5% and 9.4% smaller than those produced by duplication-free mapping and ZMap, respectively. IMap is also shown to be highly efficient. Runtime improvements of between 2.3times and 82times are obtained over existing algorithms when targeting five LUTs. Area and runtime results comparing IMap to the other mappers when targeting four and six LUTs are also presented
机译:在本文中,提出了一种称为IMap的迭代技术映射工具。它支持面向深度(区域是次要目标),面向区域(深度是次要目标)和无重复映射模式。始终使用边缘延迟模型(与更常用的单位延迟模型相对)。与以前发布的方法相比,使用了两种新的启发式方法来减少面积。第一种启发式方法预测各种映射决策对最终解决方案区域的影响,第二种启发式方法在每个节点处限制映射解决方案的深度。在面向深度的模式下,当以五个查找表(LUT)为目标时,IMap获得的深度最佳解决方案分别比FlowMap,CutMap和DAOMap生成的深度最优解决方案小44.4%,19.4%和5%。以面向区域的模式定位相同的LUT大小,IMap获得的解决方案分别比无重复映射和ZMap产生的解决方案小17.5%和9.4%。 IMap也被证明是高效的。当针对五个LUT时,与现有算法相比,运行时改进了2.3倍至82倍。还提供了针对四个和六个LUT时将IMap与其他映射器进行比较的区域和运行时结果

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