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Titlebook: Verification of Sequential and Concurrent Programs; Krzysztof R. Apt,Ernst-Rüdiger Olderog Book 19911st edition Springer Science+Business

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书目名称Verification of Sequential and Concurrent Programs
编辑Krzysztof R. Apt,Ernst-Rüdiger Olderog
视频video
丛书名称Monographs in Computer Science
图书封面Titlebook: Verification of Sequential and Concurrent Programs;  Krzysztof R. Apt,Ernst-Rüdiger Olderog Book 19911st edition Springer Science+Business
描述This book provides a structured introduction to the verification of sequen­ tial and concurrent programs. It thus belongs to the area of programming languages but at the same time it is firmly based on mathematical logic. In logic one usually studies fixed syntactic or semantic objects. This is not necessarily the case in the area of program verification. The objects studied here, namely programs, do not have a standard syntax, their semantics can be defined in many different ways, and several approaches to their verification can be contemplated. These differences lead to various difficult design decisions. Even though we restrict our attention here to one programming style - imperative pro­ gramming - we are still confronted with a veritable cornucopia of pro­ gramming constructs from which an appropriate selection has to be made. Having studied some of these constructs separately does not yet imply that we understand their combined effect.
出版日期Book 19911st edition
关键词Area; Division; Variable; form; program transformation; program verification; proof; semantics; sound; transf
版次1
doihttps://doi.org/10.1007/978-1-4757-4376-0
isbn_ebook978-1-4757-4376-0Series ISSN 0172-603X Series E-ISSN 2512-5486
issn_series 0172-603X
copyrightSpringer Science+Business Media New York 1991
The information of publication is updating

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Verification of Sequential and Concurrent Programs978-1-4757-4376-0Series ISSN 0172-603X Series E-ISSN 2512-5486
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IntroductionThis book is about program verification, with a special emphasis on verification of concurrent programs. Concurrent programs are usually difficult to design, and errors are more a rule than an exception. Consider, for example, the following simple problem.
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Nondeterministic ProgramsActivating a deterministic program in a certain state will generate exactly one computation sequence. Often this level of detail is unnecessary, for example when two different computation sequences yield the same final state. The phenomenon that a program may generate more than one computation sequence from a given state is called ..
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Monographs in Computer Sciencehttp://image.papertrans.cn/v/image/981712.jpg
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https://doi.org/10.1007/978-1-4757-4376-0Area; Division; Variable; form; program transformation; program verification; proof; semantics; sound; transf
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Parallel Programs with Synchronizatione other components changes the shared variables into a more favourable state. We therefore extend now (in Section 7.1) the program syntax by a synchronization construct, the .-statement introduced in Owicki and Gries [OG76a].
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