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Test Scheduling of NoC-Based SoCs Using Multiple Test Clocks

机译:使用多个测试时钟的基于NoC的SoC的测试计划

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Network-on-chip (NoC) is an emerging design paradigm intended to cope with future systems-on-chips (SoCs) containing numerous built-in cores. Since NoCs have some outstanding features regarding design complexity, timing, scalability, power dissipation and so on, widespread interest in this novel paradigm is likely to grow. The test strategy is a significant factor in the practicality and feasibility of NoC-based SoCs. Among the existing test issues for NoC-based SoCs, test access mechanism architecture and test scheduling particularly dominate the overall test performance. In this paper, we propose an efficient NoC-based SoC test scheduling algorithm based on a rectangle packing approach used for current SoC tests. In order to adopt the rectangle packing solution, we designed specific methods and configurations for testing NoC-based SoCs, such as test packet routing, test pattern generation, and absorption. Furthermore, we extended and improved the proposed algorithm using multiple test clocks. Experimental results using some ITC'02 benchmark circuits show that the proposed algorithm can reduce the overall test time by up to 55%, and 20% on average compared with previous works. In addition, the computation time of the algorithm is less than one second in most cases. Consequently, we expect the proposed scheduling algorithm to be a promising and competitive method for testing NoC-based SoCs.
机译:片上网络(NoC)是一种新兴的设计范例,旨在应对包含大量内置内核的未来片上系统(SoC)。由于NoC在设计复杂性,时序,可伸缩性,功耗等方面具有出色的功能,因此对这种新颖范例的广泛兴趣可能会增长。测试策略是基于NoC的SoC的实用性和可行性的重要因素。在基于NoC的SoC的现有测试问题中,测试访问机制体系结构和测试计划尤其主导着整体测试性能。在本文中,我们提出了一种有效的基于NoC的SoC测试调度算法,该算法基于用于当前SoC测试的矩形打包方法。为了采用矩形打包解决方案,我们设计了用于测试基于NoC的SoC的特定方法和配置,例如测试数据包路由,测试模式生成和吸收。此外,我们使用多个测试时钟对本文提出的算法进行了扩展和改进。使用一些ITC'02基准电路的实验结果表明,与以前的工作相比,该算法可以将总测试时间减少多达55%,平均减少20%。另外,在大多数情况下,算法的计算时间少于一秒。因此,我们希望所提出的调度算法将成为测试基于NoC的SoC的有前途和有竞争力的方法。

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