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首页> 外文期刊>IEICE Transactions on Fundamentals of Electronics, Communications and Computer Sciences >An Automatic Method of Mapping I/O Sequences of Chip Execution onto High-level Design for Post-Silicon Debugging
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An Automatic Method of Mapping I/O Sequences of Chip Execution onto High-level Design for Post-Silicon Debugging

机译:将芯片执行的I / O序列映射到高级设计的后硅调试的自动方法

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摘要

Post-silicon debugging is getting even more critical to shorten the time-to-market than ever, as many more bugs escape pre-silicon verification according to the increasing design scale and complexity. Post-silicon debugging is generally harder than pre-silicon debugging due to the limited observability and controllability of internal signal values. Conventionally, simulation of corresponding low-level designs such as RTL or gate-level has been used to get observability and controllability, which is inefficient for contemporary large designs. In this paper, we introduce a post-silicon debugging approach using simulation of high-level designs, instead of low-level designs. To realize such a debugging approach, we propose an I/O sequence mapping method that converts I/O sequences of chip executions to those of the corresponding high-level design. First, we provide a formal definition of I/O sequence mapping and relevant notions. Then, based on the definition, we propose an I/O sequence mapping method by executing FSMs representing the interface specifications of the target design. Also, we propose an implementation of the proposed method to get further efficiency. We demonstrate that the proposed method can be effectively applied to several practical design examples with various interfaces.
机译:硅片后调试对于缩短产品上市时间变得比以往更加重要,因为随着设计规模和复杂性的增加,更多的错误逃脱了硅片前验证。由于内部信号值的可观察性和可控性有限,硅后调试通常比硅前调试困难。常规地,已经使用了对相应的低级设计(例如RTL或门级)的仿真来获得可观察性和可控性,这对于当代大型设计而言效率不高。在本文中,我们介绍了一种硅仿真后调试方法,该方法使用高级设计而不是低级设计进行仿真。为了实现这种调试方法,我们提出了一种I / O序列映射方法,该方法将芯片执行的I / O序列转换为相应的高级设计的I / O序列。首先,我们提供I / O序列映射和相关概念的正式定义。然后,基于该定义,我们通过执行代表目标设计的接口规范的FSM提出一种I / O序列映射方法。另外,我们提出了所提出方法的一种实现方式,以提高效率。我们证明了所提出的方法可以有效地应用于具有各种接口的几个实际设计实例。

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