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Design Flow of a Dedicated Computer Cluster Customized for a Distributed Genetic Algorithm Application

机译:专用计算机集群的设计流程为分布式遗传算法应用程序定制

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In the past few years, computer grids and clusters of computers have been widely used in order to keep up with the high computational performance required by high-end applications. Also, they are especially attractive due to their good performance at relatively low cost, if compared to powerful servers and supercomputers. The same scenario can be faced on the embedded world, where high specialized tasks are usually partitioned to dedicated processors composing distributed systems. This work is focused on the architectural specialization of cluster machines by analysing application behavior and optimizing instruction-set architectures. The motivation for this work relies on the observation that tasks found in embedded software present a behavior that normally can be implemented by a subset of instruction-set architectures. This opens opportunities for optimization by removing the not needed instructions. As a consequence, processors become specialized since their resources fit better to applications performance and power consumption constraints. This work proposes a design flow to adapt cluster machines to the constraints of embedded applications, where high flexibility and performance are achieved by hardware customization and its further distribution. Moreover, it is presented a case of study with the entire design flow description as well as the synthesis results.
机译:在过去几年中,计算机网格和计算机集群被广泛使用,以便跟上高端应用所需的高计算性能。此外,如果与强大的服务器和超级计算机相比,它们的性能良好,它们尤其吸引人。相同的场景可以面对嵌入式世界,其中高专业任务通常被划分为撰写分布式系统的专用处理器。这项工作专注于通过分析应用程序行为和优化指令集架构的集群机器的架构专业化。这项工作的动机依赖于观察到嵌入式软件中的任务呈现通常可以通过指令集架构的子集实现的行为。通过删除不需要的说明,这将开启优化的机会。因此,处理器成为专业化的,因为它们的资源适合应用性能和功耗限制。这项工作提出了一种设计流,使集群计算机适应嵌入式应用的约束,其中通过硬件定制和进一步分布实现了高灵活性和性能。此外,介绍了与整个设计流程描述以及合成结果的研究的情况。

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