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Lookahead legalization based global placement for heterogeneous FPGAs

机译:基于Wookahead合法化的异常FPGA的全球展示

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With increasing size and complexity of FPGA, placement has lately become the main concern in FPGA physical design. The existing approaches use both packing and placement technique for FPGA placement separately. Unlike the existing methods, we propose a novel global placement approach for heterogeneous FPGA without undergoing packing. The focus of the work is to find the global placement of heterogeneous FPGA architecture with minimum wire length. The existing FPGA placement algorithms first consider packing the logic elements, LUTs and FFs into BLEs then place it in a target FPGA architecture. The proposed global placement approach avoids packing thereby removes the overhead of packing phase in FPGA design. The proposed method consists of (1) Clustering, (2) Fixed block (I/O) placement, (3) Window selection, (4)Placing hard blocks using lookahead legalization.(5) Placing soft blocks using lookahead legalization. The proposed algorithm is evaluated and tested on ISPD 2016 benchmark circuits. The obtained results are found at par with the results of other existing techniques with respect to total wire length.
机译:随着FPGA的尺寸和复杂性的增加,展示位置最近成为FPGA物理设计的主要关注点。现有方法分别使用包装和放置技术进行FPGA放置。与现有方法不同,我们提出了一种在不接受包装的情况下为异质FPGA进行新的全球展示方法。工作的重点是找到具有最小线长的异构FPGA架构的全球放置。现有的FPGA放置算法首先考虑将逻辑元素,LUT和FF包装到BLES中,然后将其放在目标FPGA架构中。所提出的全局放置方法避免了包装,从而消除了FPGA设计中的包装阶段的开销。所提出的方法由(1)群集,(2)固定块(I / O)放置,(3)窗口选择,(4)使用SoupeAhead合法化放置硬块。(5)使用SupeAhead合法化放置软块。在ISPD 2016基准电路上进行评估和测试该算法。获得的结果是在相对于总线长度的其他现有技术的结果的情况下发现。

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