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首页> 外文期刊>IEEE transactions on very large scale integration (VLSI) systems >System-on-chip test scheduling with reconfigurable core wrappers
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System-on-chip test scheduling with reconfigurable core wrappers

机译:具有可重新配置的核心包装器的片上系统测试计划

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摘要

The problem with increasing test application time for testing core-based system-on-chip (SOC) designs is addressed with test architecture design and test scheduling. The scan-chains at each core are configured into a set of wrapper-chains, which by a core wrapper are connected to the test access mechanism (TAM), and the tests are scheduled in such a way that the test time is minimized. In this paper, we make use of reconfigurable core wrappers that, in contrast to standard wrappers, can dynamically change (reconfigure) the number of wrapper-chains during test application. We show that by using reconfigurable wrappers the test scheduling problem is equivalent to independent job scheduling on identical machines, and we make use of an existing preemptive scheduling algorithm that produces an optimal solution in linear time (O(n); n is the number of tests). We also show that the problem can be solved without preemption, and we extend the algorithm to handle: 1) test conflicts due to interconnection tests and 2) cases when the test time of a core limits an optimal usage of the TAM. The overhead in logic is given by the number of configurations, and we show that the upper-bound is three configurations per core. We compare the proposed approach with the existing technique and show, in comparison, that our technique is 2% less from lower bound.
机译:通过测试体系结构设计和测试计划,可以解决用于测试基于内核的片上系统(SOC)设计的测试应用程序时间增加的问题。每个核心的扫描链都配置为一组包装链,这些包装链通过一个核心包装器连接到测试访问机制(TAM),并且计划测试的时间应尽可能短。在本文中,我们利用了可重新配置的核心包装器,与标准包装器相比,该包装器可以在测试应用程序中动态更改(重新配置)包装器链的数量。我们证明了通过使用可重构包装器,测试调度问题等同于同一台机器上的独立作业调度,并且我们利用了现有的抢先式调度算法,该算法在线性时间内产生了最优解(O(n); n是测试)。我们还表明该问题无需抢先就可以解决,并且我们将该算法扩展为处理:1)互连测试导致的测试冲突; 2)内核的测试时间限制了TAM的最佳使用情况。逻辑上的开销由配置数量给出,我们证明上限是每个内核三个配置。我们将提出的方法与现有技术进行了比较,并表明,相比之下,我们的技术比下限减少了2%。

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