Caching Strategies for High-Performance Storage Media

Author:

Lee Eunji1,Bahn Hyokyung2

Affiliation:

1. Seoul National University

2. Ewha University

Abstract

Due to the large access latency of hard disks during data retrieval in computer systems, buffer caching mechanisms have been studied extensively in database and operating systems. By storing requested data into the buffer cache, subsequent requests can be directly serviced without accessing slow disk storage. Meanwhile, high-speed storage media like PCM (phase-change memory) have emerged recently, and one may wonder if the traditional buffer cache will be still effective for these high-speed storage media. This article answers the question by showing that the buffer cache is still effective in such environments due to the software overhead and the bimodal data access characteristics. Based on this observation, we present a new buffer cache management scheme appropriately designed for the system where the speed gap between cache and storage is narrow. To this end, we analyze the condition that caching will be effective and find the characteristics of access patterns that can be exploited in managing buffer cache for high performance storage like PCM.

Funder

National Research Foundation of Korea

Publisher

Association for Computing Machinery (ACM)

Subject

Hardware and Architecture

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1. Optimizing Data Retrieval from Secondary Storage with a Proactive Intermediate Cache;SoutheastCon 2024;2024-03-15

2. Supporting Swap in Real-Time Task Scheduling for Unified Power-Saving in CPU and Memory;IEEE Access;2022

3. Adaptive Buffering Scheme for PCM/DRAM-Based Hybrid Memory Architecture;Lecture Notes in Computer Science;2022

4. Selective Flushing of Modified Data for Smartphone Buffer Cache Management;2021 IEEE Asia-Pacific Conference on Computer Science and Data Engineering (CSDE);2021-12-08

5. ReoFS: A Read-Efficient and Write-Optimized File System for Persistent Memory;2020 25th International Conference on Engineering of Complex Computer Systems (ICECCS);2020-10

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