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Crosstalk Glitch Propagation Modeling for Asynchronous Interfaces in Globally Asynchronous Locally Synchronous Systems

机译:全局异步本地同步系统中异步接口的串扰毛刺传播建模

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This paper characterizes the potentially catastrophic effect of crosstalk glitches on representative circuit implementations of two widely used asynchronous protocols. It is demonstrated that the crosstalk glitches can induce false events, which can undesirably propagate into asynchronous interface circuits and may cause system failure. Conventionally, to a circuit designer, glitch propagation (GP) due to aggressor-to-quiet-line crosstalk (AQX) in asynchronous handshake schemes can only be observed through circuit-level analysis/simulation. In this paper, circuit-level analysis is first performed to prove that even optimized conventional asynchronous circuits allow crosstalk glitches produced over moderate-length interconnects (1.5 mm) to propagate. This is a precursor to a more problematic crosstalk glitch occurrence due to further scaling of technologies. To warn the digital designers from GP due to AQX, a novel modeling technique is proposed. This modeling method works at the logic level to facilitate asserting asynchronous interface robustness to crosstalk glitches. This model can accurately identify the possibility of intrinsic (to the asynchronous interface) crosstalk GP in asynchronous circuits at the logic level and, hence, provides a foundation to formally verify such circuits. To our knowledge, this is the first work on modeling GP due to AQX at the logic level for asynchronous circuits.
机译:本文描述了串扰毛刺对两种广泛使用的异步协议的代表性电路实现的潜在灾难性影响。事实证明,串扰故障会引起错误事件,这些错误事件可能会不希望地传播到异步接口电路中,并可能导致系统故障。常规上,对于电路设计人员而言,异步握手方案中由于攻击者到安静线路的串扰(AQX)引起的毛刺传播(GP)只能通过电路级分析/仿真来观察。在本文中,首先进行了电路级分析,以证明即使优化的常规异步电路也可以传播在中等长度互连(1.5 mm)上产生的串扰毛刺。由于技术的进一步扩展,这是出现更多问题的串扰毛刺的先兆。为了警告由于AQX而导致GP的数字设计师,提出了一种新颖的建模技术。此建模方法在逻辑级别起作用,以促进断言异步接口对串扰毛刺的鲁棒性。该模型可以在逻辑级别上准确地识别异步电路中固有(到异步接口)串扰GP的可能性,因此,为正式验证此类电路提供了基础。据我们所知,这是基于AQX在异步电路的逻辑级别进行GP建模的第一项工作。

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