Analysis of Self-* and P2P Systems using Refinement
Identifieur interne : 000E55 ( Hal/Corpus ); précédent : 000E54; suivant : 000E56Analysis of Self-* and P2P Systems using Refinement
Auteurs : Manamiary Bruno Andriamiarina ; Dominique Méry ; Neeraj Kumar SinghSource :
English descriptors
- mix :
Abstract
Abstract. Distributed systems and applications are becoming increasingly complex, due to factors such as dynamic topology, heterogeneity of components, failure detection. Therefore, they require effective techniques for guaranteeing safety, security and convergence. The self- systems are based on the idea of managing efficiently complex systems and architectures without user interaction. This paper presents a methodology for verifying distributed systems and ensuring safety and convergence requirements: Correct-by-construction and service-as-event paradigms are used for formalizing the system requirements using incremental refinement in E VENT B. Moreover, this paper describes a mechanized proof of correctness of the self- systems along with a case study related to the P2P-based self-healing protocol.
Url:
DOI: 10.1007/978-3-662-43652-3_9
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Hal:hal-01018125Le document en format XML
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<front><div type="abstract" xml:lang="en">Abstract. Distributed systems and applications are becoming increasingly complex, due to factors such as dynamic topology, heterogeneity of components, failure detection. Therefore, they require effective techniques for guaranteeing safety, security and convergence. The self- systems are based on the idea of managing efficiently complex systems and architectures without user interaction. This paper presents a methodology for verifying distributed systems and ensuring safety and convergence requirements: Correct-by-construction and service-as-event paradigms are used for formalizing the system requirements using incremental refinement in E VENT B. Moreover, this paper describes a mechanized proof of correctness of the self- systems along with a case study related to the P2P-based self-healing protocol.</div>
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<idno type="halRefHtml">Yamine AIT AMEUR and Klaus-Dieter SCHEWE. ABZ 2014 - 4th International ABZ 2014 Conference ASM, Alloy, B, TLA, VDM, Z, Jun 2014, Toulouse, France. Springer, 8477, pp.117-123, 2014, LNCS. <10.1007/978-3-662-43652-3_9></idno>
<idno type="halRef">Yamine AIT AMEUR and Klaus-Dieter SCHEWE. ABZ 2014 - 4th International ABZ 2014 Conference ASM, Alloy, B, TLA, VDM, Z, Jun 2014, Toulouse, France. Springer, 8477, pp.117-123, 2014, LNCS. <10.1007/978-3-662-43652-3_9></idno>
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<idno type="stamp" n="INRIA">INRIA - Institut National de Recherche en Informatique et en Automatique</idno>
<idno type="stamp" n="INRIA-LORRAINE">INRIA Nancy - Grand Est</idno>
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<idno type="stamp" n="LORIA">LORIA - Laboratoire Lorrain de Recherche en Informatique et ses Applications</idno>
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<idno type="stamp" n="UNIV-LORRAINE">Université de Lorraine</idno>
<idno type="stamp" n="INRIA_TEST">INRIA - Institut National de Recherche en Informatique et en Automatique</idno>
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<sourceDesc><biblStruct><analytic><title xml:lang="en">Analysis of Self-* and P2P Systems using Refinement</title>
<author role="aut"><persName><forename type="first">Manamiary Bruno</forename>
<surname>Andriamiarina</surname>
</persName>
<email>Manamiary.Andriamiarina@loria.fr</email>
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<author role="aut"><persName><forename type="first">Dominique</forename>
<surname>Méry</surname>
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<email>Dominique.Mery@loria.fr</email>
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<author role="aut"><persName><forename type="first">Neeraj Kumar</forename>
<surname>Singh</surname>
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<email>singhnne@loria.fr</email>
<idno type="halAuthorId">780971</idno>
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<monogr><meeting><title>ABZ 2014 - 4th International ABZ 2014 Conference ASM, Alloy, B, TLA, VDM, Z</title>
<date type="start">2014-06-02</date>
<date type="end">2014-06-06</date>
<settlement>Toulouse</settlement>
<country key="FR">France</country>
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<name>Yamine AIT AMEUR and Klaus-Dieter SCHEWE</name>
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<editor>Yamine AIT AMEUR and Klaus-Dieter SCHEWE</editor>
<imprint><publisher>Springer</publisher>
<biblScope unit="serie">LNCS</biblScope>
<biblScope unit="volume">8477</biblScope>
<biblScope unit="pp">117-123</biblScope>
<date type="datePub">2014-06</date>
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<idno type="doi">10.1007/978-3-662-43652-3_9</idno>
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<profileDesc><langUsage><language ident="en">English</language>
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<textClass><keywords scheme="author"><term xml:lang="en">Distributed systems</term>
<term xml:lang="en">self-</term>
<term xml:lang="en">self-healing</term>
<term xml:lang="en">self-stabilization</term>
<term xml:lang="en">P2P</term>
<term xml:lang="en">EVENT B</term>
<term xml:lang="en">liveness</term>
<term xml:lang="en">service-as-event</term>
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<classCode scheme="halDomain" n="info.info-mo">Computer Science [cs]/Modeling and Simulation</classCode>
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<abstract xml:lang="en">Abstract. Distributed systems and applications are becoming increasingly complex, due to factors such as dynamic topology, heterogeneity of components, failure detection. Therefore, they require effective techniques for guaranteeing safety, security and convergence. The self- systems are based on the idea of managing efficiently complex systems and architectures without user interaction. This paper presents a methodology for verifying distributed systems and ensuring safety and convergence requirements: Correct-by-construction and service-as-event paradigms are used for formalizing the system requirements using incremental refinement in E VENT B. Moreover, this paper describes a mechanized proof of correctness of the self- systems along with a case study related to the P2P-based self-healing protocol.</abstract>
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