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Effective regularity extraction and placement techniques for datapath-intensive circuits

机译:数据路径密集型电路的有效规则提取和放置技术

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Regular structures, like datapath, are important components of integrated circuits. Datapath logic is usually placed with high regularity and compactness for higher performance by using manual placement. The authors propose effective datapath regularity extraction and placement (DREP) techniques which simultaneously place datapath logic and random logic. This method detects datapath logic and effectively formats regular datapath structures while optimizing the order of functional stages and placement of datapath blocks. Moreover, the datapath structures are further optimized by using bit-slice order adjustment and partitioning techniques during global placement. Partitioning of a big datapath macro greatly increases the placement flexibility, since partitioned sub-blocks of the datapath macro can be optimally placed with other blocks. A new effective method is also suggested to decide the block to be partitioned and the granularity of partitioning. Similar to the manual placement results, the datapath logic is regularly placed and the datapath cells are aligned well, vertically or horizontally by the DREP techniques. When compared with the state-of-the-art works, the experimental results show that the new techniques produce significantly better results than other methods in terms of half perimeter wire length, Steiner wire length, and routability, measured from the detail routing results.
机译:规则结构(如数据路径)是集成电路的重要组成部分。数据路径逻辑通常使用手动放置方式,具有较高的规则性和紧凑性,以实现更高的性能。作者提出了有效的数据路径规则性提取和放置(DREP)技术,该技术可以同时放置数据路径逻辑和随机逻辑。该方法检测数据路径逻辑并有效格式化常规数据路径结构,同时优化功能阶段的顺序和数据路径块的放置。此外,通过在全局放置期间使用位片顺序调整和分区技术进一步优化了数据路径结构。大数据路径宏的分区大大增加了放置的灵活性,因为可以将数据路径宏的分区子块与其他块最佳地放置在一起。还提出了一种新的有效方法来确定要分割的块和分割的粒度。与手动放置结果类似,数据路径逻辑被规则放置,并且数据路径单元通过DREP技术垂直或水平对齐。与最新技术进行比较时,实验结果表明,根据详细布线结果测得,新技术在半周线长,施泰纳线长和可布线性方面比其他方法产生明显更好的结果。

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