2009Unpublished venueRequires access

FSAF: file system aware flash translation layer for NAND flash memories

Sai Krishna Mylavarapu, Siddharth Choudhuri, Aviral Shrivastava, Jongeun Lee, Tony Givargis

Open publisher page 12 citations

Abstract

NAND Flash Memories require Garbage Collection (GC) and Wear Leveling (WL) operations to be carried out by Flash Translation Layers (FTLs) that oversee flash management. Owing to expensive erasures and data copying, these two operations essentially determine application response times. Since file systems do not share any file deletion information with FTL, dead data is treated as valid by FTL, resulting in significant WL and GC overheads. In this work, we propose a novel method to dynamically interpret and treat dead data at the FTL level so as to reduce above overheads and improve application response times, without necessitating any changes to existing file systems. We demonstrate that our resourceefficient approach can improve application response times and memory write access times by 22 % and reduce erasures by 21.6 % on average. 1.

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What this paper is about

NAND Flash Memories require Garbage Collection (GC) and Wear Leveling (WL) operations to be carried out by Flash Translation Layers (FTLs) that oversee flash management. Owing to expensive erasures and data copying, these two operations essentially determine application response times. Since file systems do not share any file deletion information with FTL, dead data is treated as valid by FTL, resulting in significant WL and GC overheads. In this work, we propose a novel method to dynamically interpret and treat dead data at the FTL level so as to reduce above overheads and improve application response times, without necessitating any changes to existing file systems. We demonstrate that our resourceefficient approach can improve application response times and memory write access times by 22 % and reduce erasures by 21.6 % on average. 1.

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Available abstract

NAND Flash Memories require Garbage Collection (GC) and Wear Leveling (WL) operations to be carried out by Flash Translation Layers (FTLs) that oversee flash management. Owing to expensive erasures and data copying, these two operations essentially determine application response times. Since file systems do not share any file deletion information with FTL, dead data is treated as valid by FTL, resulting in significant WL and GC overheads. In this work, we propose a novel method to dynamically interpret and treat dead data at the FTL level so as to reduce above overheads and improve application response times, without necessitating any changes to existing file systems. We demonstrate that our resourceefficient approach can improve application response times and memory write access times by 22 % and reduce erasures by 21.6 % on average. 1.

Key concepts: Flash file system, Garbage collection, Computer science, NAND gate, Flash (photography), File system, Flash memory, Copying

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