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Design and evaluation of distributed wide-area on-line archival storage systems.

机译:分布式广域在线档案存储系统的设计和评估。

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摘要

As the amount of digital assets increase, systems that ensure the durability, integrity, and accessibility of digital data become increasingly important. Distributed on-line archival storage systems are designed for this very purpose. This thesis explores several important challenges pertaining to fault tolerance, repair, and integrity that must be addressed to build such systems.The first part of this thesis explores how to maintain durability via fault tolerance and repair and presents many insights on how to do so efficiently. Fault tolerance ensures that data is not lost due to server failure. Replication is the canonical solution for data fault tolerance. The challenge is knowing how many replicas to create and where to store them. Fault tolerance alone, however, is not sufficient to prevent data loss as the last replica will eventually fail. Thus, repair is required to replace replicas lost to failure. The system must monitor and detect server failure and create replicas in response. The problem is that not all server failure results in loss of data and the system can be tricked into creating replicas unnecessarily. The challenge is knowing when to create replicas. Both fault tolerance and repair are required to prevent the last replica from being lost, hence, maintain data durability.The second part of this thesis explores how to ensure the integrity of data. Integrity ensures that the state of data stored in the system always reflects changes made by the owner. It includes non-repudiably binding owner to data and ensuring that only the owner can modify data, returned data is the same as stored, and the last write is returned in subsequent reads. The challenge is efficiency since requiring cryptography and consistency in the wide-area can easily be prohibitive.Next, we exploit a secure log to efficiently ensure integrity. We demonstrate how the narrow interface of a secure, append-only log simplifies the design of distributed wide-area storage systems. The system inherits the security and integrity properties of the log. We describe how to replicate the log for increased durability while ensuring consistency among the replicas. We present a repair algorithm that maintains sufficient replication levels as machines fail. Finally, the design uses aggregation to improve efficiency. Although simple, this interface is powerful enough to implement a variety of interesting applications.Finally, we apply the insights and architecture to a prototype called Antiquity. Antiquity efficiently maintains the durability and integrity of data. It has been running in the wide area on 400+ PlanetLab servers where we maintain the consistency, durability, and integrity of nearly 20,000 logs totaling more than 84 GB of data despite the constant churn of servers (a quarter of the servers experience a failure every hour).
机译:随着数字资产数量的增加,确保数字数据的持久性,完整性和可访问性的系统变得越来越重要。分布式在线档案存储系统就是为此目的而设计的。本文探讨了构建此类系统必须解决的与容错,修复和完整性有关的几个重要挑战。本论文的第一部分探讨了如何通过容错和修复来维持耐久性,并就如何有效地做到这一点提出了许多见解。 。容错能力确保数据不会由于服务器故障而丢失。复制是数据容错的规范解决方案。挑战在于知道要创建多少个副本以及将副本存储在何处。但是,仅容错能力不足以防止数据丢失,因为最后一个副本最终将失败。因此,需要修理以替换因故障而丢失的副本。系统必须监视和检测服务器故障,并作为响应创建副本。问题在于,并非所有服务器故障都会导致数据丢失,并且可以欺骗系统不必要地创建副本。挑战在于知道何时创建副本。容错和修复都需要,以防止丢失最后一个副本,从而保持数据的持久性。本论文的第二部分探讨了如何确保数据的完整性。完整性可确保存储在系统中的数据状态始终反映所有者的更改。它包括不可否认地将所有者绑定到数据,并确保只有所有者才能修改数据,返回的数据与存储的相同,并且在后续读取中返回最后一次写入。挑战是效率,因为要求加密和在广域中保持一致性很容易被禁止。接下来,我们利用安全日志来有效地确保完整性。我们演示了安全的仅追加日志的狭窄接口如何简化分布式广域存储系统的设计。系统继承日志的安全性和完整性属性。我们描述了如何复制日志以提高持久性,同时确保副本之间的一致性。我们提出了一种修复算法,可以在计算机发生故障时维持足够的复制级别。最后,设计使用聚合来提高效率。尽管简单,但此接口功能强大,足以实现各种有趣的应用程序。最后,我们将见解和体系结构应用于名为Antiquity的原型。古代有效地保持了数据的持久性和完整性。它一直在400多个PlanetLab服务器上的广泛区域中运行,尽管服务器不断波动,但我们仍保持近20,000个日志的一致性,持久性和完整性,总计超过84 GB的数据(每季度有四分之一的服务器都发生故障小时)。

著录项

  • 作者

    Weatherspoon, Hakim.;

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Computer Science.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 210 p.
  • 总页数 210
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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