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Probable cause: The deanonymizing effects of approximate DRAM

机译:可能的原因:近似DRAM的去匿名效果

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Approximate computing research seeks to trade-off the accuracy of computation for increases in performance or reductions in power consumption. The observation driving approximate computing is that many applications tolerate small amounts of error which allows for an opportunistic relaxation of guard bands (e.g., clock rate and voltage). Besides affecting performance and power, reducing guard bands exposes analog properties of traditionally digital components. For DRAM, one analog property exposed by approximation is the variability of memory cell decay times. In this paper, we show how the differing cell decay times of approximate DRAM creates an error pattern that serves as a system identifying fingerprint. To validate this observation, we build an approximate memory platform and perform experiments that show that the fingerprint due to approximation is device dependent and resilient to changes in environment and level of approximation. To identify a DRAM chip given an approximate output, we develop a distance metric that yields a two-orders-of-magnitude difference in the distance between approximate results produced by the same DRAM chip and those produced by other DRAM chips. We use these results to create a mathematical model of approximate DRAM that we leverage to explore the end-to-end deanonymizing effects of approximate memory using a commodity system running an image manipulation program. The results from our experiment show that given less than 100 approximate outputs, the fingerprint for an approximate DRAM begins to converge to a single, machine identifying fingerprint.
机译:近似计算研究试图权衡计算的准确性,以提高性能或降低功耗。观察驱动近似计算的结果是,许多应用容许少量误差,这允许机会性地放宽保护带(例如,时钟频率和电压)。除影响性能和功耗外,减小保护带还可以暴露传统数字组件的模拟特性。对于DRAM,通过近似得出的一种模拟特性是存储单元衰减时间的可变性。在本文中,我们展示了近似DRAM的不同单元衰减时间如何产生一种错误模式,该错误模式用作系统识别指纹。为了验证这一观察结果,我们建立了一个近似的存储平台并进行了实验,以表明由于近似导致的指纹与设备有关,并且对环境和近似水平的变化具有弹性。为了识别给定近似输出的DRAM芯片,我们开发了一种距离度量标准,该距离度量在同一DRAM芯片产生的近似结果与其他DRAM芯片产生的近似结果之间的距离中产生了两个数量级的差异。我们使用这些结果来创建近似DRAM的数学模型,利用运行图像处理程序的商品系统,我们可以利用该模型来探索近似存储器的端到端去匿名效果。我们的实验结果表明,在少于100个近似输出的情况下,近似DRAM的指纹开始收敛到单个机器识别指纹。

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