• Title/Summary/Keyword: byte-level I/O

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I/O Translation Layer Technology for High-performance and Compatibility Using New Memory (뉴메모리를 이용한 고성능 및 호환성을 위한 I/O 변환 계층 기술)

  • Song, Hyunsub;Moon, Young Je;Noh, Sam H.
    • Journal of KIISE
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    • v.42 no.4
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    • pp.427-433
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    • 2015
  • The rapid advancement of computing technology has triggered the need for fast data I/O processing and high-performance storage technology. Next generation memory technology, which we refer to as new memory, is anticipated to be used for high-performance storage as they have excellent characteristics as a storage device with non-volatility and latency close to DRAM. This research proposes NTL (New memory Translation layer) as a technology to make use of new memory as storage. With the addition of NTL, conventional I/O is served with existing mature disk-based file systems providing compatibility, while new memory I/O is serviced through the NTL to take advantage of the byte-addressability feature of new memory. In this paper, we describe the design of NTL and provide experiment measurement results that show that our design will bring performance benefits.

Performance Analysis of Multimedia File System

  • Park, Jinyoun;Youjip Won;Jaideep Srivastava
    • Proceedings of the Korean Information Science Society Conference
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    • 2001.04a
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    • pp.100-102
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    • 2001
  • Intensive I/O bandwidth demand of the multimedia streaming service puts significant burden on file system. Different from the legacy text based or image data, the semantics of the data in multimedia format can be significantly affected if the data block is not delivered by the predefined deadline. The legacy file system used in Unix or Unix like environment is designed to efficiently handle the files who sizes range from few hundreds of byte to several tens of gigabytes. This fundamental design philosophy results in the file system based on multi level skewed tree structure. Multi level i-node structure has significant drawback when the application performs sequential read operation. In this article, we present the result of the performance study of the file system which is specifically designed for handling multimedia streams. We implemented the file system on Linux Operating System environment and examines the performance behavior of the file system under streaming I/O workload. The result of the study shows that the proposed file system performs much more efficiently than the ext2 file system of Linux does.