A framework and method for hierarchical test generation

J. Calhoun, F. Brglez
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引用次数: 63

Abstract

The authors have proposed and implemented a dynamic framework and a method for hierarchically generating test patterns from a hierarchical net list. They have shown consistent gains in CPU over the traditional gate-level implementation while maintaining identical levels of fault coverage. In generating and characterizing modules for a large and varied set of hierarchical benchmarks, the authors benefited considerably from the consistent representations that are available during synthesis from a high-level description or when modules are generated by a process of technology mapping into standard cells. The authors introduced the concept of a single generic module which is hierarchical; the traditional AND, OR, NAND, and NOR are included implicitly. They developed a module-oriented decision-making algorithm, MODEM, which entails a dynamic calculus and procedures such as implication, error propagation, line justification, and probabilistic testability measures for a single generic module. Without loss of generality they adapted the control flow and basic features of PODEM in the first implementation of MODEM.<>
分层测试生成的框架和方法
作者提出并实现了一个动态框架和一种从分层网络列表中分层生成测试模式的方法。与传统的门级实现相比,它们在CPU方面表现出了一致的增益,同时保持了相同级别的故障覆盖。在为大量不同的层次基准生成和描述模块时,作者从从高级描述合成或通过技术映射到标准单元的过程生成模块时可用的一致表示中受益匪浅。作者引入了分层的单一通用模块的概念;隐式包含传统的AND、OR、NAND和NOR。他们开发了一种面向模块的决策算法,MODEM,它需要一个动态演算和程序,如单个通用模块的暗示、错误传播、线路证明和概率可测试性措施。在不丧失通用性的前提下,他们在MODEM的第一个实现中采用了PODEM的控制流程和基本特征。
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