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Energy and Performance Optimization of Demand Paging With OneNAND Flash

机译:OneNAND闪存的按需分页的能量和性能优化

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New fusion memory devices consisting of multiple heterogeneous memory components in a single die or package offer efficient ways to optimize embedded systems in terms of energy, performance, and cost. Samsung Electronics recently announced the OneNAND fusion memory, in which a NAND flash array is integrated with dual SRAM buffers to provide a nor-type I/O interface. OneNAND has the low cost and large capacity of a NAND flash but also permits eXecution-in-Place (XIP) like a nor flash. The deployment of such devices requires careful system-level resource management because of their impact on energy consumption and performance, and existing memory optimization techniques, such as the demand paging used with NAND flash, may no longer be appropriate for systems with a fusion memory. We introduce a new online demand paging scheme that fully exploits the XIP capability of OneNAND flash by classifying pages as load preferred (residing in the on-chip SRAM) and XIP preferred (accessed directly from the OneNAND flash and discarded after use). This achieves, on average, a 26% reduction in energy consumption and a 19% increase in performance, compared with conventional NAND flash demand paging.
机译:由单个裸片或封装中的多个异构存储组件组成的新型融合存储设备提供了有效的方式来优化嵌入式系统的能耗,性能和成本。三星电子最近宣布了OneNAND融合存储器,其中NAND闪存阵列与双SRAM缓冲器集成在一起,以提供nor型I / O接口。 OneNAND具有低成本和大容量的NAND闪存,但也允许像Nor闪存一样进行就地执行(XIP)。此类设备的部署需要仔细的系统级资源管理,因为它们会影响能耗和性能,并且现有的内存优化技术(例如与NAND闪存一起使用的按需分页)可能不再适用于具有融合内存的系统。我们引入了一种新的在线需求调度方案,该方案通过将页面分为负载优先级(驻留在片上SRAM中)和XIP优先级(直接从OneNAND闪存访问并在使用后丢弃)中来充分利用OneNAND闪存的XIP功能。与传统的NAND闪存需求分页相比,这平均可减少26%的能耗和19%的性能提升。

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