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Synthesis of Fault-Tolerant Reconfigurable Scan Networks

机译:容错可重构扫描网络的综合

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On-chip instrumentation is mandatory for efficient bring-up, test and diagnosis, post-silicon validation, as well as in-field calibration, maintenance, and fault tolerance. Reconfigurable scan networks (RSNs) provide a scalable and efficient scan-based access mechanism to such instruments. The correct operation of this access mechanism is crucial for all manufacturing, bring-up and debug tasks as well as for in-field operation, but it can be affected by faults and design errors.This work develops for the first time fault-tolerant RSNs such that the resulting scan network still provides access to as many instruments as possible in presence of a fault. The work contributes a model and an algorithm to compute scan paths in faulty RSNs, a metric to quantify its fault tolerance and a synthesis algorithm that is based on graph connectivity and selective hardening of control logic in the scan network. Experimental results demonstrate that fault-tolerant RSNs can be synthesized with only moderate hardware overhead.
机译:为了有效启动,测试和诊断,硅后验证以及现场校准,维护和容错,必须使用片上仪器。可重新配置的扫描网络(RSN)为此类仪器提供了可扩展且高效的基于扫描的访问机制。这种访问机制的正确操作对于所有制造,调试和调试任务以及现场操作都是至关重要的,但是它可能会受到故障和设计错误的影响。这项工作是首次开发出容错的RSN。这样,在出现故障时,最终的扫描网络仍可提供对尽可能多仪器的访问。这项工作为在故障RSN中计算扫描路径的模型和算法,量化其容错能力的度量标准以及基于图连接性和扫描网络中控制逻辑的选择性强化的综合算法做出了贡献。实验结果表明,仅在中等硬件开销下即可合成容错RSN。

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