A retiming based relaxation heuristic for resource-constrained loop pipelining

V. Srinivasan, R. Vemuri
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引用次数: 3

Abstract

This paper presents a fast and efficient heuristic for pipelining a loop under resource-constraints. The loop is represented as a dependence graph, G whose nodes are operations that are bound to available resources and edges denote the data dependencies between the operations. The data dependencies restrict the degree of parallelism that can be achieved while scheduling the graph. We propose a fast retiming based graph transformation technique which relates the data dependencies in the graph while maintaining functional equivalence. Relaxing data dependencies provides more flexibility for the scheduler to schedule operations, thereby leading to faster throughput. Our objective is to obtain a retimed graph which when scheduled achieves an optimal/near-optimal pipelined steady state throughput. A detailed algorithm is presented to solve the problem. We provide results that illustrate the effectiveness of our algorithm.
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一种基于重定时的资源约束循环流水线松弛启发式算法
本文提出了一种快速有效的资源约束下循环管道化的启发式算法。该循环表示为依赖图G,其节点是绑定到可用资源的操作,边表示操作之间的数据依赖关系。数据依赖性限制了在调度图时可以实现的并行度。我们提出了一种快速的基于重定时的图转换技术,该技术在保持功能等价的同时将图中的数据依赖关系联系起来。放松数据依赖性为调度器调度操作提供了更大的灵活性,从而带来更快的吞吐量。我们的目标是获得一个重新定时的图,当调度时达到最优/接近最优的管道稳态吞吐量。提出了一种详细的算法来解决这一问题。我们提供的结果说明了我们的算法的有效性。
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