Impact of Cluster Size on Routability, Testability and Robustness of a Cluster in a Mesh FPGA

S. Rehman, Adrien Blanchardon, Arwa Ben Dhia, M. Benabdenbi, R. Chotin-Avot, L. Naviner, L. Anghel, H. Mehrez, Emna Amouri, Z. Marrakchi
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引用次数: 2

Abstract

Nowadays, modern FPGA architectures are mainlyorganized in clusters of configurable logic resources connected togetherby depopulated interconnect. However, cluster architectureorganization and size versus inter and intra-cluster interconnectarchitectures is an ongoing optimization process, as it severelyimpacts the routability, area saving, testability and the overallrobustness of a given FPGA. This paper addresses a thoroughanalysis of the cluster size impact on area and routability ofthe cluster as well as on its testability and inherent robustness. Benchmark circuits are synthesized in a range of cluster sizes(number of logic blocks per cluster) 4, 6, 8, 10 and 12 to identifythe optimum one in terms of area and routability. Then, theoverall cluster testability and its respective cost is examinedusing BIST algorithm developed for this purpose. To completethe analysis, cluster size impact on the robustness of the clusterlogic and the intra-cluster interconnect is assessed by logicalmasking ability. Results show that the cluster of size 12 offers abetter routability at relatively less test cost along with a better robustness.
网格FPGA中簇大小对簇可达性、可测试性和鲁棒性的影响
目前,现代FPGA架构主要组织在可配置逻辑资源集群中,通过无填充互连连接在一起。然而,集群架构的组织和大小与集群间和集群内互连架构是一个持续的优化过程,因为它严重影响可达性,面积节省,可测试性和给定FPGA的整体稳健性。本文深入分析了集群大小对集群的面积和可达性以及其可测试性和固有鲁棒性的影响。基准电路在集群大小(每个集群的逻辑块数量)4、6、8、10和12的范围内合成,以确定在面积和可达性方面的最佳电路。然后,使用为此目的开发的BIST算法对总体群集可测试性及其各自的成本进行了检查。为了完成分析,通过逻辑屏蔽能力评估集群大小对集群逻辑和集群内互连的鲁棒性的影响。结果表明,规模为12的集群以相对较少的测试成本提供了更好的可达性,并且具有更好的鲁棒性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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