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Layout conscious approach and bus architecture synthesis for hardware/software codesign of systems on chip optimized for speed

机译:针对速度进行了优化的片上系统的硬件/软件代码设计的布局意识方法和总线体系结构综合

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This paper presents a layout-conscious approach for hardware/software codesign of systems-on-chip (SoCs) optimized for latency, including an original algorithm for bus architecture synthesis. Compared to similar work, the method addresses layout related issues that affect system optimization, such as the dependency of task communication speed on interconnect parasitic. The codesign flow executes three consecutive steps: 1) combined partitioning and scheduling: besides partitioning and scheduling, this step also identifies the minimum speed constraints for each data link; 2) IP core placement, bus architecture synthesis, and routing: IP cores are placed using a hierarchical cluster growth algorithm; bus architecture synthesis identifies a set of possible building blocks and then assembles them for minimizing bus length and complexity; poor solutions are pruned using a special table structure and select-eliminated method; and 3) rescheduling for the best bus architecture. This paper offers extensive experiments for the proposed codesign method, including bus architecture synthesis for a network processor and a JPEG SoC.
机译:本文提出了一种针对布局优化的,针对延迟进行了优化的片上系统(SoC)的硬件/软件代码符号的布局意识方法,其中包括用于总线体系结构综合的原始算法。与类似的工作相比,该方法解决了影响系统优化的布局相关问题,例如任务通信速度对互连寄生的依赖性。代码流执行三个连续的步骤:1)组合的分区和调度:除了分区和调度,此步骤还确定每个数据链路的最小速度约束; 2)IP内核放置,总线体系结构综合和路由:IP内核使用分层群集增长算法进行放置;总线体系结构综合识别出一组可能的构建块,然后组装它们,以最小化总线长度和复杂性;使用特殊的表格结构和选择消除的方法修剪不良的解决方案; 3)重新安排最佳总线架构。本文为提出的代码签名方法提供了广泛的实验,包括网络处理器和JPEG SoC的总线体系结构综合。

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