A unified test and fault-tolerant multicast solution for network-on-chip designs

D. Xiang, K. Chakrabarty, H. Fujiwara
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引用次数: 12

Abstract

We present a unified test technique that targets all the components of a network-on-chip design. The proposed technique targets faults in links, routers, and cores. Link faults are first located using built-in self-test hardware inserted in the routers. Test packets for routers are delivered to the routers via the fault-free links and routers identified in the previous steps. A test packet can be corrupted by faulty links or routers, therefore, it is delivered across only previously identified fault-free routers/links. Test packet delivery for routers is implemented as a fault-tolerant unicast-based multicast scheme within the tested part of the network-on-chip. After all faulty routers are identified, a new fault-tolerant unicast-based multicast routing technique is proposed to deliver test packets for the cores. Identical cores share the same test set, and they are tested within the same test session. Simulation results highlight the effectiveness of the proposed method in reducing test time.
片上网络设计的统一测试和容错组播解决方案
我们提出了一种针对片上网络设计的所有组件的统一测试技术。该技术针对链路、路由器和核心中的故障。首先使用插入路由器的内置自检硬件定位链路故障。路由器的测试报文将通过上述步骤中确定的无故障链路和路由器下发到路由器。测试包可能会被故障的链路或路由器损坏,因此,它只能通过先前确定的无故障的路由器/链路发送。路由器的测试包传送在片上网络的被测部分中作为基于单播的容错组播方案实现。在识别出所有故障路由器后,提出了一种新的基于单播容错的组播路由技术,为核心发送测试数据包。相同的内核共享相同的测试集,并且在相同的测试会话中进行测试。仿真结果表明了该方法在缩短测试时间方面的有效性。
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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