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Enhancement of Fault Injection Techniques Based on the Modification of VHDL Code

机译:基于VHDL代码修改的故障注入技术的增强

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Deep submicrometer devices are expected to be increasingly sensitive to physical faults. For this reason, fault-tolerance mechanisms are more and more required in VLSI circuits. So, validating their dependability is a prior concern in the design process. Fault injection techniques based on the use of hardware description languages offer important advantages with regard to other techniques. First, as this type of techniques can be applied during the design phase of the system, they permit reducing the time-to-market. Second, they present high controllability and reachability. Among the different techniques, those based on the use of saboteurs and mutants are especially attractive due to their high fault modeling capability. However, implementing automatically these techniques in a fault injection tool is difficult. Especially complex are the insertion of saboteurs and the generation of mutants. In this paper, we present new proposals to implement saboteurs and mutants for models in VHDL which are easy-to-automate, and whose philosophy can be generalized to other hardware description languages.
机译:深亚微米设备有望对物理故障越来越敏感。因此,在VLSI电路中越来越需要容错机制。因此,验证其可靠性是设计过程中的优先考虑事项。与其他技术相比,基于使用硬件描述语言的故障注入技术具有重要的优势。首先,由于可以在系统的设计阶段应用这种技术,因此可以缩短产品上市时间。其次,它们具有高度的可控性和可及性。在不同的技术中,基于破坏分子和突变体的技术由于其较高的故障建模能力而特别具有吸引力。但是,很难在故障注入工具中自动实现这些技术。破坏分子的插入和突变体的产生尤其复杂。在本文中,我们提出了一些新的建议,以在VHDL中为模型实现破坏者和变量,这些模型易于自动化,其原理可以推广到其他硬件描述语言。

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