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ApproxPIM: Exploiting realistic 3D-stacked DRAM for energy-efficient processing in-memory

机译:ApproxPIM:开发逼真的3D堆叠DRAM,以实现内存中的节能处理

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Processing-in-Memory (PIM), has recently been revisited as one of the most promising solutions to deal with the issue of bandwidth and power wall between processor and memory. In this paper, we propose a light-weight PIM architecture, approxPIM, which leverages approximate computing techniques to enable InMemory Processing in a realistic 3D-stacked DRAM, Micron's Hybrid Memory Cube (HMC). Using the newly-released atomic instruction support of the HMC, approxPIM can process a wide range of data-intensive applications without adding any logic resources into the memory devices. Furthermore, we propose to approximate those accuracy-insensitive applications with the limited functioning set of HMC commands so that they could be smoothly mapped to the HMCs without the inference from processors, therefore enabling energy-efficient Processing-in-Memory and greatly expanding the scope of target PIM applications with HMC. In general, approxPIM gives a comprehensive study on HMC's potential and weakness in the application of Processing-in-Memory. Evaluation results show that our approxPIM significantly boosts the energy-efficiency and performance of the whole system.
机译:内存处理(PIM)最近被重新视为解决处理器与内存之间的带宽和功耗壁问题的最有前途的解决方案之一。在本文中,我们提出了一种轻量级的PIM架构,即roxPIM,该架构利用近似计算技术来实现逼真的3D堆叠DRAM(美光的混合内存立方体(HMC))中的InMemory处理。使用HMC的最新发布的原子指令支持,roxPIM可以处理各种数据密集型应用程序,而无需在存储设备中添加任何逻辑资源。此外,我们建议使用功能有限的HMC命令集来近似那些对精度不敏感的应用程序,以便可以将它们平滑地映射到HMC,而无需来自处理器的推断,从而实现节能的内存中处理并大大扩展了范围HMC的目标PIM应用程序。通常,roximatePIM会全面研究HMC在内存处理应用中的潜力和弱点。评估结果表明,我们的roxPIM显着提高了整个系统的能源效率和性能。

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