DocumentCode :
33746
Title :
WAM: Wear wear-out-aware memory management for SCRAM-based low power mobile systems
Author :
Dongyoung Seo ; Dongkun Shin
Author_Institution :
Dept. of Semicond. Display Eng., Sungkyunkwan Univ., Suwon, South Korea
Volume :
59
Issue :
4
fYear :
2013
fDate :
Nov-13
Firstpage :
803
Lastpage :
810
Abstract :
Emerging storage class RAM (SCRAM) devices are power-efficient, byte-addressable, and non-volatile. However, each SCRAM memory cell has a limited lifetime. To use SCRAM to replace power-hungry DRAM in mobile consumer devices, wear-leveling among cells will be a critical issue. Especially, due to the locality of memory access pattern, current operating systems. SCRAM-unaware memory allocator may intensify the wear of certain SCRAM blocks. Wear-leveling requires the redesign of operating systems to distribute memory accesses evenly throughout the entire memory space. This paper suggests two operating-system-level wear-leveling techniques for SCRAM devices. First, this paper proposes a novel memory allocator, called W-Buddy, that considers the wear of memory chunks as it selects a free memory chunk to be allocated. Second, this paper proposes a variable metadata formatting technique for file systems. The experiment results show that the proposed W-Buddy allocator and metadata reformatting technique improve the lifetime of SCRAM devices compared with the techniques of conventional operating systems.
Keywords :
low-power electronics; meta data; random-access storage; storage management; SCRAM blocks; SCRAM devices; SCRAM-unaware memory allocator; W-Buddy; WAM; byte-addressable memory cell; current operating systems; file systems; low power mobile systems; memory access pattern; memory chunks; mobile consumer devices; nonvolatile memory cell; power-efficient memory cell; storage class RAM devices; variable metadata formatting technique; wear wear-out-aware memory management; wear-leveling techniques; File systems; Flash memories; Memory management; Operating systems; Phase change random access memory; Resource management;
fLanguage :
English
Journal_Title :
Consumer Electronics, IEEE Transactions on
Publisher :
ieee
ISSN :
0098-3063
Type :
jour
DOI :
10.1109/TCE.2013.6689692
Filename :
6689692
Link To Document :
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