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Titlebook: Software Design for Resilient Computer Systems; Igor Schagaev,Thomas Kaegi-Trachsel Book 20161st edition Springer International Publishing

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發(fā)表于 2025-3-21 16:52:31 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書(shū)目名稱Software Design for Resilient Computer Systems
編輯Igor Schagaev,Thomas Kaegi-Trachsel
視頻videohttp://file.papertrans.cn/871/870710/870710.mp4
概述Outlines potential critical faults in the modern computer systems and what is required to change them.Explains how to design and re-design system software for the next generation of computers for wide
圖書(shū)封面Titlebook: Software Design for Resilient Computer Systems;  Igor Schagaev,Thomas Kaegi-Trachsel Book 20161st edition Springer International Publishing
描述.This book addresses the question of how system software should be designed to account for faults, and which fault tolerance features it should provide for highest reliability. The authors first show how the system software interacts with the hardware to tolerate faults. They analyze and further develop the theory of fault tolerance to understand the different ways to increase the reliability of a system, with special attention on the role of system software in this process. They further develop the general algorithm of fault tolerance (GAFT) with its three main processes: hardware checking, preparation for recovery, and the recovery procedure. For each of the three processes, they analyze the requirements and properties theoretically and give possible implementation scenarios and system software support required. Based on the theoretical results, the authors derive an Oberon-based programming language with direct support of the three processes of GAFT. ?In the last part of this book, they introduce a simulator, using it as a proof of concept implementation of a novel fault tolerant processor architecture (ERRIC) and its newly developed runtime system feature-wise and performance-w
出版日期Book 20161st edition
關(guān)鍵詞ERRIC architecture; Extreme reliability; Fault tolerance; Hardware and software reliability; Hardware an
版次1
doihttps://doi.org/10.1007/978-3-319-29465-0
isbn_softcover978-3-319-80579-5
isbn_ebook978-3-319-29465-0
copyrightSpringer International Publishing Switzerland 2016
The information of publication is updating

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Testing, Checking, and Hardware Syndrome,s to eliminate the fault and in case of permanent errors how the software can reconfigure the hardware to exclude the faulty element. We also explain in which cases software has to adapt to the new hardware topology. We start by explaining how software-based checks can be used to detect hardware fau
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Recovery Preparation,ill show how hardware can assist software in the process of recovery preparation. For all generic approaches to recovery preparation, so-called stable storage, a nonvolatile reliable and fast storage is needed. If no direct hardware support is available, stable storage must be implemented in softwar
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Recovery: Searching and Monitoring of Correct Software States,d in recovery points. Thus we have to consider the recovery process itself, analyze which classic algorithms are applicable and fit the purpose of efficient recovery. We introduce and analyze three recovery algorithms that are able to ensure successful recovery by iteratively go through all stored r
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Programming Language for Safety Critical Systems,), (Castano, Schagaev, Resilient computer system design, 2015 [.]) serves as the target hardware platform. The strong type safety of Oberon together with the simplicity of the language suite for safety critical systems.
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