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A scalable built-in self-recovery (BISR) VLSI architecture and design methodology for 2D-mesh based on-chip networks

机译:可扩展的内置自恢复(BISR)VLSI架构和设计方法,用于基于2D网格的片上网络

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On-Chip Networks (OCNs) have been proposed to solve the complex on-chip communication problems. In Very Deep-Submicron era, OCN will also be affected by faults in chip due to technologies shrinking. Many researches focused on fault detection and diagnosis in OCN systems. However, these approaches didn’t consider faulty OCN system recovery. This paper proposes a scalable built-in self-recovery (BISR) design methodology and corresponding Surrounding Test Ring (STR) architecture for 2D-mesh based OCNs to extend the work of diagnosis. The BISR design methodology consists of STR architecture generation, faulty system recovery, and system correctness maintenance. For an n×n mesh, STR architecture contains one controller and 4n test modules which are formed as a ring-like connection surrounding the OCN. Moreover, these test modules generate test patterns for fault diagnosis during warm-up time. According to these diagnosis results, the faulty system is recovered. Finally, this paper proposes a fault-tolerant routing algorithm, Through-Path Fault-Tolerant (TP-FT) routing, to maintain the correctness of this faulty system. In our experiments, the proposed approach can reduce 68.33∼79.31% unreachable packets and 4.86∼23.6% latency in comparison with traditional approach with 8.48∼13.3% area overhead.
机译:已经提出了片上网络(OCN)来解决复杂的片上通信问题。在超深亚微米时代,由于技术的不断发展,OCN也将受到芯片故障的影响。许多研究集中在OCN系统中的故障检测和诊断上。但是,这些方法并未考虑到错误的OCN系统恢复。本文提出了一种可扩展的内置自恢复(BISR)设计方法和相应的基于2D网格的OCN的环绕测试环(STR)架构,以扩展诊断工作。 BISR设计方法包括STR体系结构生成,系统故障恢复和系统正确性维护。对于n×n的网格,STR体系结构包含一个控制器和4n个测试模块,这些模块形成为围绕OCN的环形连接。此外,这些测试模块会生成测试模式,以在预热期间进行故障诊断。根据这些诊断结果,可以恢复故障系统。最后,本文提出了一种容错路由算法,即通径容错(TP-FT)路由,以保持该故障系统的正确性。在我们的实验中,与传统方法相比,该方法可以减少68.33%〜79.31%的不可达数据包,并减少4.86%〜23.6%的延迟,而传统方法的开销为8.48%〜13.3%。

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