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Building high-performance smartphones via non-volatile memory: The swap approach

机译:通过非易失性存储器构建高性能智能手机:交换方法

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Smartphones are getting increasingly high-performance with advances in mobile processors and larger main memories to support feature-rich applications. However, the storage subsystem has always been a prohibitive factor that slows down the pace of reaching even higher performance while maintaining good user experience. Despite today's smart-phones are equipped with larger-than-ever main memories, they consume more energy and still run out of memory. But the slow NAND flash based storage vetoes the possibility of swapping-an important technique to extend main memory-and leaves a system that constantly terminates user applications under memory pressure. In this paper, we revisit swapping for smartphones with fast, byte-addressable, non-volatile memory (NVM) technologies. Instead of using flash, we build the swap area with NVM, to allow high performance without sacrificing user experience. Based on NVM's high performance and byte-addressability, we show that a copy-on-write swap-in scheme can achieve even better performance by avoiding unnecessary memory copy operations. To avoid fast worn-out of certain NVMs, we also propose Heap-Wear, a wear leveling algorithm that more evenly distributes writes in NVM. Evaluation results based on the Google Nexus 5 smartphone show that our solution can effectively enhance smartphone performance and give better wear-leveling of NVM.
机译:智能手机正在越来越高的性能,具有移动处理器的进步和较大的主要存储器,以支持丰富的功能。但是,存储子系统一直是一个令人禁止的因素,可以减慢达到更高的性能的步伐,同时保持良好的用户体验。尽管今天的智能手机配备了较大的主回忆,但它们消耗更多的能量并仍然用完内存。但慢性NAND基于闪存的存储否决了交换的可能性 - 这是一种扩展主存储器的重要技术 - 并留下一个在内存压力下不断终止用户应用的系统。在本文中,我们重新开始使用快速,字节可寻址,非易失性存储器(NVM)技术的智能手机交换。我们为使用NVM构建交换区域而不是使用Flash,而不会牺牲用户体验,以允许高性能。基于NVM的高性能和字节 - 寻址性,我们表明,通过避免不必要的内存复制操作,可以实现更好的性能。为避免快速摆脱某些NVM,我们还提出了堆磨损,更均匀地分配NVM的磨损级算法。基于Google Nexus 5智能手机的评估结果表明,我们的解决方案可以有效地提高智能手机性能,并提供更好的NVM磨损。

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