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Efficient Techniques for Automatic Verification-Oriented Test Set Optimization

机译:面向自动验证的测试集优化的高效技术

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Most Systems-on-a-Chips include a custom microprocessor core, and time and resource constraints make the design of such devices a challenging task. This paper presents a simulation-based methodology for the automatic completion and refinement of verification test sets. The approach extends the μGP, an evolutionary test program generator, with the possibility to enhance existing test sets. Already devised test programs are not merely included in the new set, but assimilated and used as a starting point for a new test-program cultivation task. Reusing existing material cuts down the time required to generate a verification test set during the microprocessor design. Experimental results are reported on a small pipelined microprocessor, and show the effectiveness of the approach. Additionally, the use of the proposed methodology enabled to experimentally analyze the relationship of the different code coverage metrics used in the test program generation.
机译:大多数“片上系统”都包含定制的微处理器内核,并且时间和资源的限制使此类设备的设计成为一项艰巨的任务。本文提出了一种基于模拟的方法,用于自动完成和完善验证测试集。该方法扩展了进化测试程序生成器μGP,并有可能增强现有测试集。已经设计好的测试程序不仅包含在新的程序集中,而且已被吸收并用作新的测试程序培养任务的起点。重复使用现有材料可以减少在微处理器设计过程中生成验证测试集所需的时间。在小型流水线微处理器上报告了实验结果,并证明了该方法的有效性。另外,使用所提出的方法能够实验性地分析测试程序生成中使用的不同代码覆盖率度量的关系。

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