计算机科学
软件
编码(集合论)
嵌入式系统
领域(数学)
操作系统
计算机硬件
程序设计语言
数学
集合(抽象数据类型)
纯数学
作者
Christian Hakert,Kuan-Hsun Chen,Horst Schirmeier,Lars Bauer,Paul R. Genßler,Georg von der Brüggen,Hussam Amrouch,Jörg Henkel,Jian-Jia Chen
出处
期刊:ACM Transactions in Embedded Computing Systems
[Association for Computing Machinery]
日期:2022-01-31
卷期号:21 (1): 1-24
被引量:12
摘要
In-memory wear-leveling has become an important research field for emerging non-volatile main memories over the past years. Many approaches in the literature perform wear-leveling by making use of special hardware. Since most non-volatile memories only wear out from write accesses, the proposed approaches in the literature also usually try to spread write accesses widely over the entire memory space. Some non-volatile memories, however, also wear out from read accesses, because every read causes a consecutive write access. Software-based solutions only operate from the application or kernel level, where read and write accesses are realized with different instructions and semantics. Therefore different mechanisms are required to handle reads and writes on the software level. First, we design a method to approximate read and write accesses to the memory to allow aging aware coarse-grained wear-leveling in the absence of special hardware, providing the age information. Second, we provide specific solutions to resolve access hot-spots within the compiled program code (text segment) and on the application stack. In our evaluation, we estimate the cell age by counting the total amount of accesses per cell. The results show that employing all our methods improves the memory lifetime by up to a factor of 955×.
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