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A Distributed Clustered Architecture to Tackle Delay Variations in Datapath Synthesis

机译:解决数据路径综合中的延迟变化的分布式集群体系结构

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Due to the necessity of handling unexpected events in execution time, e.g., to support process variations, new mechanisms for dealing with every possible behavior of the datapath must be developed. Conventional centralized controllers can only handle very few dynamic events. Distributed controllers, on the other hand, are able to support every combination of events. These controllers are composed of several finite state machines, which are interconnected via a global coordinator. The use of this type of controller obliges to check the hazards between operations in run time, which entails some penalty in the controller complexity. In this paper, a new methodology for deploying a distributed controller over a set of clusters is presented. A register binding algorithm specially suited for distributed controllers has also been developed. It combines a clustering method and a least recently used policy to reduce the number of hazards in run time. Furthermore, our methodology allows the exploration of different solutions by tuning the input parameters of the binding algorithm. Several studies evaluating the execution time and area tradeoffs are presented to support our techniques. Results show that for some cases it is possible to reduce more than 50% the expected execution time, at the expense of a slight area increase.
机译:由于必须在执行时处理意外事件,例如,以支持流程变化,因此必须开发用于处理数据路径的每种可能行为的新机制。传统的集中式控制器只能处理很少的动态事件。另一方面,分布式控制器能够支持事件的每种组合。这些控制器由几个有限状态机组成,这些有限状态机通过全局协调器互连。使用这种类型的控制器必须在运行时检查两次操作之间的危害,这会给控制器的复杂性带来一定的损失。在本文中,提出了一种在一组集群上部署分​​布式控制器的新方法。还开发了一种特别适用于分布式控制器的寄存器绑定算法。它结合了群集方法和最近最少使用的策略,以减少运行时的危害数量。此外,我们的方法可以通过调整绑定算法的输入参数来探索不同的解决方案。提出了一些评估执行时间和面积折衷的研究,以支持我们的技术。结果表明,在某些情况下,有可能减少超过50%的预期执行时间,但以略微增加面积为代价。

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