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Optimized Rtl Code Generation From Coarse-grain Dataflow Specification For Fast Hw/sw Cosynthesis

机译:从粗粒数据流规范优化Rtl代码生成,以实现快速硬件/硬件协同

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This paper presents a new methodology of automatic RTL code generation from coarse-grain dataflow specification for fast HW/SW cosynthesis. A node in a coarse-grain dataflow specification represents a functional block such as FIR and DCT and an arc may deliver multiple data samples per block invocation, which complicates the problem and distinguishes it from behavioral synthesis problem. Given optimized HW library blocks for dataflow nodes, we aim to generate the RTL codes for the entire hardware system including glue logics such as buffer and MUX, and the central controller. In the proposed design methodology, a dataflow graph can be mapped to various hardware structures by changing the resource allocation and schedule information. It simplifies the management of the area/performance tradeoff in hardware design and widens the design space of hardware implementation of a dataflow graph. We also support Fractional Rate Dataflow (FRDF) specification for more efficient hardware implementation. To overcome the additional hardware area overhead in the synthesized architecture, we propose two techniques reducing buffer overhead. Through experiments with some real examples, the usefulness of the proposed technique is demonstrated.
机译:本文提出了一种从粗粒度数据流规范自动生成RTL代码的新方法,以实现快速的硬件/软件协同合成。粗粒度数据流规范中的一个节点表示一个功能块,例如FIR和DCT,并且每次调用块时,弧可能会传递多个数据样本,这使问题变得复杂,并将其与行为综合问题区分开来。给定针对数据流节点的优化硬件库块,我们旨在为整个硬件系统生成RTL代码,包括胶合逻辑(如缓冲区和MUX)以及中央控制器。在提出的设计方法中,可以通过更改资源分配和调度信息将数据流图映射到各种硬件结构。它简化了硬件设计中面积/性能折衷的管理,并扩展了数据流图的硬件实现的设计空间。我们还支持分数速率数据流(FRDF)规范,以实现更高效的硬件实现。为了克服综合体系结构中额外的硬件区域开销,我们提出了两种减少缓冲区开销的技术。通过一些实际例子的实验,证明了该技术的有效性。

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