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Automatic generation of locally controlled arithmetic unit via floorplan based partitioning

机译:通过基于平面图的分区自动生成本地控制的算术单元

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In the paper a framework for generating a locally controlled arithmetic unit is presented including graph generation from a mathematical expression, graph partitioning to determine locally controlled parts of the design and VHDL generation. The output of the framework is a pipelined architecture containing locally controlled groups of floating point units. It is demonstrated that both partitioning and placement aspects of the design have to be considered to obtain a highspeed circuit. In a well-placeable design locally controlled groups can be mapped to FPGA in such a way that only neighboring groups communicate with each other. In the presented algorithm an initial floorplan of the floating point units is produced and a novel graph partitioning representation is used for partitioning the floating point units to obtain a well-placeable design. The framework is demonstrated during the automatic circuit generation of a complex mathematical expression related to Computation Fluid Dynamics (CFD). The framework produces 15–27% faster design than the unpartitioned, globally controlled one in the price of a modest area increase. The framework automatically produces well-placeable deadlock-free partitions for complex expressions as well, while in case of traditional partitioners these objectives cannot be targeted.
机译:在本文中,提出了一种用于生成局部控制算术单元的框架,包括从数学表达式生成图形,划分图形以确定设计的局部控制部分以及VHDL生成。框架的输出是包含本地控制的浮点单元组的流水线体系结构。事实证明,为了获得高速电路,必须同时考虑设计的分区和布局两个方面。在一个位置合理的设计中,可以将本地控制组映射到FPGA,这样只有相邻组才能相互通信。在提出的算法中,生成了浮点单元的初始平面图,并使用一种新颖的图形分区表示法对浮点单元进行分区,以获得可放置的设计。在自动电路生成与计算流体动力学(CFD)相关的复杂数学表达式的过程中演示了该框架。与适度增加面积的价格相比,该框架产生的设计要比未分区的全球控制的设计快15–27%。该框架也会自动为复杂的表达式生成可放置的,无死锁的分区,而在使用传统分区程序的情况下,这些目标就无法实现。

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