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Cell shifting aware of wirelength and overlap

机译:细胞移位意识到Wirelength和重叠

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The technique of cell shifting has the advantage of linearly smoothing the overlap in placement. In the shifting process we should preserve the integrity of the original placement as much as possible and do less damage to the relative locations of the cells. The current cell shifting methods only locally or globally smooth the density without considering the relation between the local and the global density. Furthermore, the cells generally are treated as points with area during cell shifting. In this paper we present a new cell shifting technique called CSAWO to smooth the density distribution. CSAWO obtains the shifting distance while considering the local and the global density distribution simultaneously. The density and wire length are taken into consideration while shifting the cells. We also separate the standard cells and the macro blocks crossing multi-bin, and give the cell shifting distance by summing the shifting vector of the discrete module so as to get a more smooth speed. CSAWO has been embedded into the global placement process of CPlace, experimental result shows that the average runtime and HPWL have reduced 78% and 7% respectively comparing to DPlace[9].
机译:细胞移位技术具有线性平滑在放置中的重叠的优点。在移位过程中,我们应该尽可能地保留原始放置的完整性,并且对细胞的相对位置造成较小的损坏。目前的电池变速方法仅在本地或全局平滑密度而不考虑本地和全局密度之间的关系。此外,细胞通常被视为在细胞移位期间有面积的点。在本文中,我们提出了一种新的细胞移位技术,称为CSAWO,以平滑密度分布。 Csawo同时考虑本地和全局密度分布的同时获得变速距离。在移位细胞的同时考虑密度和线长度。我们还将标准电池和宏块分开,交叉多箱,通过求解离散模块的变速向量来给电池移位距离,以便获得更平滑的速度。 Csawo已嵌入到CPAll的全球位置过程中,实验结果表明,平均运行时间和HPWL分别减少了78%和7%,分别比较DPLACL [9]。

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