Parallelization of Littlewood-Richardson Coefficients Computation and its Integration into the BonjourGrid Meta-Desktop Grid Middleware
This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which parti...
Ausführliche Beschreibung
Autor*in: |
Abbes, Heithem [verfasserIn] Butelle, Franck [author] Cérin, Christophe [author] |
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E-Artikel |
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Sprache: |
Englisch |
Erschienen: |
2011 |
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Schlagwörter: |
Emulation of Large-Scale Environments Incorporation of a Threaded Application with Desktop Grid Infrastructures |
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Umfang: |
Online-Ressource |
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Reproduktion: |
IGI Global InfoSci Journals Archive 2000 - 2012 |
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Übergeordnetes Werk: |
In: International journal of grid and high performance computing - Hershey, Pa : IGI Global, 2009, 3(2011), 4, Seite 71-86 |
Übergeordnetes Werk: |
volume:3 ; year:2011 ; number:4 ; pages:71-86 |
Links: |
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DOI / URN: |
10.4018/jghpc.2011100106 |
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NLEJ244472416 |
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10.4018/jghpc.2011100106 doi (DE-627)NLEJ244472416 (VZGNL)10.4018/jghpc.2011100106 DE-627 ger DE-627 rakwb eng Abbes, Heithem verfasserin aut Parallelization of Littlewood-Richardson Coefficients Computation and its Integration into the BonjourGrid Meta-Desktop Grid Middleware 2011 Online-Ressource nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which participates in the computation; and it demonstrates the effort for launching multiple instances of the solutions for the mathematical problem with the BonjourGrid middleware. BonjourGrid is a fully decentralized Desktop Grid middleware. The main results of the paper are: a) an efficient multi-threaded version of a sequential program to compute Littlewood-Richardson coefficients, namely the Multi-LR program and b) a proof of concept, centered around the user needs, for the BonjourGrid middleware dedicated to coordinate multiple instances of programsfor Desktop Grids and with the help of Multi-LR. In this paper, the scientific work consists in starting from a model for the solution of a compute intensive problem in mathematics, to incorporate the concrete model into a middleware and running it on commodity PCs platform managed by an innovative meta Desktop Grid middleware IGI Global InfoSci Journals Archive 2000 - 2012 Desktop Grid Models Emulation of Large-Scale Environments Incorporation of a Threaded Application with Desktop Grid Infrastructures Modeling Resource Management and Scheduling Simulation Butelle, Franck author aut Cérin, Christophe author aut In International journal of grid and high performance computing Hershey, Pa : IGI Global, 2009 3(2011), 4, Seite 71-86 Online-Ressource (DE-627)NLEJ244419043 (DE-600)2703335-1 1938-0267 nnns volume:3 year:2011 number:4 pages:71-86 http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106 X:IGIG Verlag Deutschlandweit zugänglich http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106&buylink=true text/html Abstract Deutschlandweit zugänglich ZDB-1-GIS GBV_NL_ARTICLE AR 3 2011 4 71-86 |
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10.4018/jghpc.2011100106 doi (DE-627)NLEJ244472416 (VZGNL)10.4018/jghpc.2011100106 DE-627 ger DE-627 rakwb eng Abbes, Heithem verfasserin aut Parallelization of Littlewood-Richardson Coefficients Computation and its Integration into the BonjourGrid Meta-Desktop Grid Middleware 2011 Online-Ressource nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which participates in the computation; and it demonstrates the effort for launching multiple instances of the solutions for the mathematical problem with the BonjourGrid middleware. BonjourGrid is a fully decentralized Desktop Grid middleware. The main results of the paper are: a) an efficient multi-threaded version of a sequential program to compute Littlewood-Richardson coefficients, namely the Multi-LR program and b) a proof of concept, centered around the user needs, for the BonjourGrid middleware dedicated to coordinate multiple instances of programsfor Desktop Grids and with the help of Multi-LR. In this paper, the scientific work consists in starting from a model for the solution of a compute intensive problem in mathematics, to incorporate the concrete model into a middleware and running it on commodity PCs platform managed by an innovative meta Desktop Grid middleware IGI Global InfoSci Journals Archive 2000 - 2012 Desktop Grid Models Emulation of Large-Scale Environments Incorporation of a Threaded Application with Desktop Grid Infrastructures Modeling Resource Management and Scheduling Simulation Butelle, Franck author aut Cérin, Christophe author aut In International journal of grid and high performance computing Hershey, Pa : IGI Global, 2009 3(2011), 4, Seite 71-86 Online-Ressource (DE-627)NLEJ244419043 (DE-600)2703335-1 1938-0267 nnns volume:3 year:2011 number:4 pages:71-86 http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106 X:IGIG Verlag Deutschlandweit zugänglich http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106&buylink=true text/html Abstract Deutschlandweit zugänglich ZDB-1-GIS GBV_NL_ARTICLE AR 3 2011 4 71-86 |
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10.4018/jghpc.2011100106 doi (DE-627)NLEJ244472416 (VZGNL)10.4018/jghpc.2011100106 DE-627 ger DE-627 rakwb eng Abbes, Heithem verfasserin aut Parallelization of Littlewood-Richardson Coefficients Computation and its Integration into the BonjourGrid Meta-Desktop Grid Middleware 2011 Online-Ressource nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which participates in the computation; and it demonstrates the effort for launching multiple instances of the solutions for the mathematical problem with the BonjourGrid middleware. BonjourGrid is a fully decentralized Desktop Grid middleware. The main results of the paper are: a) an efficient multi-threaded version of a sequential program to compute Littlewood-Richardson coefficients, namely the Multi-LR program and b) a proof of concept, centered around the user needs, for the BonjourGrid middleware dedicated to coordinate multiple instances of programsfor Desktop Grids and with the help of Multi-LR. In this paper, the scientific work consists in starting from a model for the solution of a compute intensive problem in mathematics, to incorporate the concrete model into a middleware and running it on commodity PCs platform managed by an innovative meta Desktop Grid middleware IGI Global InfoSci Journals Archive 2000 - 2012 Desktop Grid Models Emulation of Large-Scale Environments Incorporation of a Threaded Application with Desktop Grid Infrastructures Modeling Resource Management and Scheduling Simulation Butelle, Franck author aut Cérin, Christophe author aut In International journal of grid and high performance computing Hershey, Pa : IGI Global, 2009 3(2011), 4, Seite 71-86 Online-Ressource (DE-627)NLEJ244419043 (DE-600)2703335-1 1938-0267 nnns volume:3 year:2011 number:4 pages:71-86 http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106 X:IGIG Verlag Deutschlandweit zugänglich http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106&buylink=true text/html Abstract Deutschlandweit zugänglich ZDB-1-GIS GBV_NL_ARTICLE AR 3 2011 4 71-86 |
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10.4018/jghpc.2011100106 doi (DE-627)NLEJ244472416 (VZGNL)10.4018/jghpc.2011100106 DE-627 ger DE-627 rakwb eng Abbes, Heithem verfasserin aut Parallelization of Littlewood-Richardson Coefficients Computation and its Integration into the BonjourGrid Meta-Desktop Grid Middleware 2011 Online-Ressource nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which participates in the computation; and it demonstrates the effort for launching multiple instances of the solutions for the mathematical problem with the BonjourGrid middleware. BonjourGrid is a fully decentralized Desktop Grid middleware. The main results of the paper are: a) an efficient multi-threaded version of a sequential program to compute Littlewood-Richardson coefficients, namely the Multi-LR program and b) a proof of concept, centered around the user needs, for the BonjourGrid middleware dedicated to coordinate multiple instances of programsfor Desktop Grids and with the help of Multi-LR. In this paper, the scientific work consists in starting from a model for the solution of a compute intensive problem in mathematics, to incorporate the concrete model into a middleware and running it on commodity PCs platform managed by an innovative meta Desktop Grid middleware IGI Global InfoSci Journals Archive 2000 - 2012 Desktop Grid Models Emulation of Large-Scale Environments Incorporation of a Threaded Application with Desktop Grid Infrastructures Modeling Resource Management and Scheduling Simulation Butelle, Franck author aut Cérin, Christophe author aut In International journal of grid and high performance computing Hershey, Pa : IGI Global, 2009 3(2011), 4, Seite 71-86 Online-Ressource (DE-627)NLEJ244419043 (DE-600)2703335-1 1938-0267 nnns volume:3 year:2011 number:4 pages:71-86 http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106 X:IGIG Verlag Deutschlandweit zugänglich http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106&buylink=true text/html Abstract Deutschlandweit zugänglich ZDB-1-GIS GBV_NL_ARTICLE AR 3 2011 4 71-86 |
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10.4018/jghpc.2011100106 doi (DE-627)NLEJ244472416 (VZGNL)10.4018/jghpc.2011100106 DE-627 ger DE-627 rakwb eng Abbes, Heithem verfasserin aut Parallelization of Littlewood-Richardson Coefficients Computation and its Integration into the BonjourGrid Meta-Desktop Grid Middleware 2011 Online-Ressource nicht spezifiziert zzz rdacontent nicht spezifiziert z rdamedia nicht spezifiziert zu rdacarrier This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which participates in the computation; and it demonstrates the effort for launching multiple instances of the solutions for the mathematical problem with the BonjourGrid middleware. BonjourGrid is a fully decentralized Desktop Grid middleware. The main results of the paper are: a) an efficient multi-threaded version of a sequential program to compute Littlewood-Richardson coefficients, namely the Multi-LR program and b) a proof of concept, centered around the user needs, for the BonjourGrid middleware dedicated to coordinate multiple instances of programsfor Desktop Grids and with the help of Multi-LR. In this paper, the scientific work consists in starting from a model for the solution of a compute intensive problem in mathematics, to incorporate the concrete model into a middleware and running it on commodity PCs platform managed by an innovative meta Desktop Grid middleware IGI Global InfoSci Journals Archive 2000 - 2012 Desktop Grid Models Emulation of Large-Scale Environments Incorporation of a Threaded Application with Desktop Grid Infrastructures Modeling Resource Management and Scheduling Simulation Butelle, Franck author aut Cérin, Christophe author aut In International journal of grid and high performance computing Hershey, Pa : IGI Global, 2009 3(2011), 4, Seite 71-86 Online-Ressource (DE-627)NLEJ244419043 (DE-600)2703335-1 1938-0267 nnns volume:3 year:2011 number:4 pages:71-86 http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106 X:IGIG Verlag Deutschlandweit zugänglich http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106&buylink=true text/html Abstract Deutschlandweit zugänglich ZDB-1-GIS GBV_NL_ARTICLE AR 3 2011 4 71-86 |
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Parallelization of Littlewood-Richardson Coefficients Computation and its Integration into the BonjourGrid Meta-Desktop Grid Middleware |
abstract |
This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which participates in the computation; and it demonstrates the effort for launching multiple instances of the solutions for the mathematical problem with the BonjourGrid middleware. BonjourGrid is a fully decentralized Desktop Grid middleware. The main results of the paper are: a) an efficient multi-threaded version of a sequential program to compute Littlewood-Richardson coefficients, namely the Multi-LR program and b) a proof of concept, centered around the user needs, for the BonjourGrid middleware dedicated to coordinate multiple instances of programsfor Desktop Grids and with the help of Multi-LR. In this paper, the scientific work consists in starting from a model for the solution of a compute intensive problem in mathematics, to incorporate the concrete model into a middleware and running it on commodity PCs platform managed by an innovative meta Desktop Grid middleware |
abstractGer |
This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which participates in the computation; and it demonstrates the effort for launching multiple instances of the solutions for the mathematical problem with the BonjourGrid middleware. BonjourGrid is a fully decentralized Desktop Grid middleware. The main results of the paper are: a) an efficient multi-threaded version of a sequential program to compute Littlewood-Richardson coefficients, namely the Multi-LR program and b) a proof of concept, centered around the user needs, for the BonjourGrid middleware dedicated to coordinate multiple instances of programsfor Desktop Grids and with the help of Multi-LR. In this paper, the scientific work consists in starting from a model for the solution of a compute intensive problem in mathematics, to incorporate the concrete model into a middleware and running it on commodity PCs platform managed by an innovative meta Desktop Grid middleware |
abstract_unstemmed |
This paper shows how to parallelize a compute intensive application in mathematics (Group Theory) for an institutional Desktop Grid platform coordinated by a meta-grid middleware named BonjourGrid. The paper is twofold: it shows how to parallelize a sequential program for a multicore CPU which participates in the computation; and it demonstrates the effort for launching multiple instances of the solutions for the mathematical problem with the BonjourGrid middleware. BonjourGrid is a fully decentralized Desktop Grid middleware. The main results of the paper are: a) an efficient multi-threaded version of a sequential program to compute Littlewood-Richardson coefficients, namely the Multi-LR program and b) a proof of concept, centered around the user needs, for the BonjourGrid middleware dedicated to coordinate multiple instances of programsfor Desktop Grids and with the help of Multi-LR. In this paper, the scientific work consists in starting from a model for the solution of a compute intensive problem in mathematics, to incorporate the concrete model into a middleware and running it on commodity PCs platform managed by an innovative meta Desktop Grid middleware |
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title_short |
Parallelization of Littlewood-Richardson Coefficients Computation and its Integration into the BonjourGrid Meta-Desktop Grid Middleware |
url |
http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106 http://services.igi-global.com/resolvedoi/resolve.aspx?doi=10.4018/jghpc.2011100106&buylink=true |
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author2 |
Butelle, Franck Cérin, Christophe |
author2Str |
Butelle, Franck Cérin, Christophe |
ppnlink |
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doi_str |
10.4018/jghpc.2011100106 |
up_date |
2024-07-06T08:00:51.617Z |
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