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Logo AND Algorithmique Numérique Distribuée

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authorRaphael Couturier <raphael.couturier@univ-fcomte.fr>
Fri, 22 Mar 2013 10:28:20 +0000 (11:28 +0100)
committerRaphael Couturier <raphael.couturier@univ-fcomte.fr>
Fri, 22 Mar 2013 10:28:20 +0000 (11:28 +0100)
BookGPU/Chapters/chapter13/ch13.aux [deleted file]

diff --git a/BookGPU/Chapters/chapter13/ch13.aux b/BookGPU/Chapters/chapter13/ch13.aux
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-\@writefile{toc}{\author{Lilia Ziane Khodja}{}}
-\@writefile{toc}{\author{Ming Chau}{}}
-\@writefile{toc}{\author{Rapha\IeC {\"e}l Couturier}{}}
-\@writefile{toc}{\author{Pierre Spit\IeC {\'e}ri}{}}
-\@writefile{toc}{\author{Jacques Bahi}{}}
-\@writefile{loa}{\addvspace {10\p@ }}
-\@writefile{toc}{\contentsline {chapter}{\numberline {12}Solving sparse nonlinear systems of obstacle problems on GPU clusters}{279}}
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-\@writefile{lof}{\contentsline {figure}{\numberline {12.1}{\ignorespaces Data partitioning of a problem to be solved among $S=3\times 4$ computing nodes.\relax }}{285}}
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-\@writefile{loa}{\contentsline {algocf}{\numberline {12}{\ignorespaces Parallel iterative solving of the nonlinear systems on a GPU cluster ($Solve()$ function)\relax }}{287}}
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-\@writefile{lof}{\contentsline {figure}{\numberline {12.2}{\ignorespaces Decomposition of a sub-problem in a GPU into $nz$ slices.\relax }}{288}}
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-\@writefile{lol}{\contentsline {lstlisting}{\numberline {12.1}Skeleton codes of a GPU kernel and a CPU function}{288}}
-\@writefile{lof}{\contentsline {figure}{\numberline {12.3}{\ignorespaces Matrix constant coefficients in a three-dimensional domain.\relax }}{290}}
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-\@writefile{lof}{\contentsline {figure}{\numberline {12.4}{\ignorespaces Computation of a vector element with the projected Richardson method.\relax }}{292}}
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-\@writefile{lof}{\contentsline {figure}{\numberline {12.5}{\ignorespaces GPU cluster of tests composed of 12 computing nodes (six machines, each with two GPUs.\relax }}{295}}
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-\@writefile{lot}{\contentsline {table}{\numberline {12.1}{\ignorespaces Execution times in seconds of the parallel projected Richardson method implemented on a cluster of 24 CPU cores.\relax }}{295}}
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-\@writefile{toc}{\contentsline {section}{\numberline {12.6}Red-Black ordering technique}{296}}
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-\newlabel{sub@ch13:fig:06.01}{{(a)}{298}}
-\newlabel{ch13:fig:06.02}{{12.6(b)}{298}}
-\newlabel{sub@ch13:fig:06.02}{{(b)}{298}}
-\@writefile{lof}{\contentsline {figure}{\numberline {12.6}{\ignorespaces Red-Black ordering for computing the iterate vector elements in a three-dimensional space.\relax }}{298}}
-\@writefile{lof}{\contentsline {subfigure}{\numberline{(a)}{\ignorespaces {Red-Black ordering on x, y and z axises}}}{298}}
-\@writefile{lof}{\contentsline {subfigure}{\numberline{(b)}{\ignorespaces {Red-Black ordering on y axis}}}{298}}
-\@writefile{lot}{\contentsline {table}{\numberline {12.3}{\ignorespaces Execution times in seconds of the parallel projected Richardson method using read-black ordering technique implemented on a cluster of 12 GPUs.\relax }}{299}}
-\newlabel{ch13:tab:03}{{12.3}{299}}
-\@writefile{lof}{\contentsline {figure}{\numberline {12.7}{\ignorespaces Weak scaling of both synchronous and asynchronous algorithms of the projected Richardson method using red-black ordering technique.\relax }}{300}}
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-\@writefile{toc}{\contentsline {section}{\numberline {12.7}Conclusion}{300}}
-\newlabel{ch13:sec:07}{{12.7}{300}}
-\@writefile{toc}{\contentsline {section}{Bibliography}{301}}
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