平衡多个NVM插槽寿命和性能的磨损感知内存管理方案

Chunhua Xiao, Linfeng Cheng, Lei Zhang, Duo Liu, Weichen Liu
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引用次数: 3

摘要

新兴非易失性内存(NVM)具有许多优点,例如接近dram的速度、字节寻址能力和持久性。现代计算机系统包含许多内存插槽,它们通过共享地址空间暴露为统一的存储接口。由于NVM的写入持久性有限,因此许多损耗均衡技术都是在硬件中实现的。然而,现有的硬件技术只能在单个NVM插槽中有效,无法保证多个NVM插槽之间的磨损均衡。本文探讨了如何从性能和生命周期方面对具有多个NVM插槽的存储系统进行优化。我们表明,在传统内存策略中简单集成多个nvm会导致可靠性差。我们还揭示了现有的硬件损耗均衡技术对于具有多个NVM插槽的系统是无效的。在本文中,我们提出了一种通用的内存文件系统损耗感知内存管理方案。提出的内存方案可以实现NVM插槽使用的磨损感知控制,从而最大限度地降低性能和寿命成本。我们实现了所提出的内存管理方案,并评估了其有效性。实验表明,所提出的磨损感知内存管理方案比磨损均衡效果提高2600x以上,NVM寿命延长2.5倍,写性能提高15%以上。
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Wear-aware Memory Management Scheme for Balancing Lifetime and Performance of Multiple NVM Slots
Emerging Non-Volatile Memory (NVM) has many advantages, such as near-DRAM speed, byte-addressability, and persistence. Modern computer systems contain many memory slots, which are exposed as a unified storage interface by shared address space. Since NVM has limited write endurance, many wear-leveling techniques are implemented in hardware. However, existing hardware techniques can only effective in a single NVM slot, which cannot ensure wear-leveling among multiple NVM slots. This paper explores how to optimize a storage system with multiple NVM slots in terms of performance and lifetime. We show that simple integration of multiple NVMs in traditional memory policies results in poor reliability. We also reveal that existing hardware wear-leveling technologies are ineffective for a system with multiple NVM slots. In this paper, we propose a common wear-aware memory management scheme for in-memory file system. The proposed memory scheme enables wear-aware control of NVM slot use which minimizes the cost of performance and lifetime. We implemented the proposed memory management scheme and evaluated their effectiveness. The experiments show that the proposed wear-aware memory management scheme can outperform wear-leveling effect by more than 2600x, and the lifetime of NVM can be prolonged by 2.5x, the write performance can be improved by up to 15%.
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