]> AND Private Git Repository - mpi-energy.git/commitdiff
Logo AND Algorithmique Numérique Distribuée

Private GIT Repository
Move figures to fig/ subdirectory.
authorArnaud Giersch <arnaud.giersch@iut-bm.univ-fcomte.fr>
Tue, 25 Mar 2014 16:10:04 +0000 (17:10 +0100)
committerArnaud Giersch <arnaud.giersch@iut-bm.univ-fcomte.fr>
Tue, 25 Mar 2014 16:11:42 +0000 (17:11 +0100)
32 files changed:
.gitignore
fig/Makefile [new file with mode: 0644]
fig/bt.eps [moved from bt.eps with 100% similarity, mode: 0644]
fig/bt.pdf [moved from bt-eps-converted-to.pdf with 94% similarity]
fig/bt_pre.eps [moved from bt_pre.eps with 100% similarity, mode: 0644]
fig/bt_pre.pdf [moved from bt_pre-eps-converted-to.pdf with 94% similarity]
fig/cg.eps [moved from cg.eps with 100% similarity, mode: 0644]
fig/cg.pdf [moved from cg-eps-converted-to.pdf with 94% similarity]
fig/cg_per.eps [moved from cg_per.eps with 100% similarity, mode: 0644]
fig/cg_per.pdf [moved from cg_per-eps-converted-to.pdf with 94% similarity]
fig/commtasks.pdf [moved from commtasks.pdf with 100% similarity]
fig/compare_class_A.pdf [moved from compare_class_A.pdf with 100% similarity]
fig/compare_class_B.pdf [moved from compare_class_B.pdf with 100% similarity]
fig/compare_class_C.pdf [moved from compare_class_c.pdf with 100% similarity]
fig/compt.pdf [moved from compt.pdf with 100% similarity]
fig/ep.eps [moved from ep.eps with 100% similarity, mode: 0644]
fig/ep.pdf [moved from ep-eps-converted-to.pdf with 94% similarity]
fig/file.eps [moved from file.eps with 100% similarity, mode: 0644]
fig/file.pdf [moved from file-eps-converted-to.pdf with 94% similarity]
fig/file3.eps [moved from file3.eps with 100% similarity, mode: 0644]
fig/file3.pdf [moved from file3-eps-converted-to.pdf with 93% similarity]
fig/ft.eps [moved from ft.eps with 100% similarity, mode: 0644]
fig/ft.pdf [moved from ft-eps-converted-to.pdf with 94% similarity]
fig/lu.eps [moved from lu.eps with 100% similarity, mode: 0644]
fig/lu.pdf [moved from lu-eps-converted-to.pdf with 94% similarity]
fig/lu_pre.eps [moved from lu_pre.eps with 100% similarity, mode: 0644]
fig/lu_pre.pdf [moved from lu_pre-eps-converted-to.pdf with 94% similarity]
fig/mg_pre.eps [moved from mg_pre.eps with 100% similarity, mode: 0644]
fig/mg_pre.pdf [moved from mg_pre-eps-converted-to.pdf with 94% similarity]
fig/sp.eps [moved from sp.eps with 100% similarity, mode: 0644]
fig/sp.pdf [moved from sp-eps-converted-to.pdf with 94% similarity]
paper.tex

index 0bfdf83b7fa85395f1cc7f288703fd8248138137..e60017a2fb295e3710a911756882f6dfe0b30afa 100644 (file)
@@ -1,4 +1,5 @@
 auto/
 auto/
+*~
 *.aux
 *.log
 *.bbl
 *.aux
 *.log
 *.bbl
diff --git a/fig/Makefile b/fig/Makefile
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index 0000000..f8cbf58
--- /dev/null
@@ -0,0 +1,12 @@
+EPS = $(wildcard *.eps)
+PDF = $(EPS:%.eps=%.pdf)
+
+.PHONY: all clean
+
+all: $(PDF)
+
+clean:
+       $(RM) $(PDF)
+
+%.pdf: %.eps
+       epstopdf $<
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--- a/paper.tex
+++ b/paper.tex
@@ -176,8 +176,8 @@ we consider execution of the synchronous tasks on distributed homogeneous
 platform. These tasks can exchange the data via synchronous message passing.
 \begin{figure*}[t]
   \centering
 platform. These tasks can exchange the data via synchronous message passing.
 \begin{figure*}[t]
   \centering
-  \subfloat[Sync. imbalanced communications]{\includegraphics[scale=0.67]{commtasks}\label{fig:h1}}
-  \subfloat[Sync. imbalanced computations]{\includegraphics[scale=0.67]{compt}\label{fig:h2}}
+  \subfloat[Sync. imbalanced communications]{\includegraphics[scale=0.67]{fig/commtasks}\label{fig:h1}}
+  \subfloat[Sync. imbalanced computations]{\includegraphics[scale=0.67]{fig/compt}\label{fig:h2}}
   \caption{Parallel tasks on homogeneous platform}
   \label{fig:homo}
 \end{figure*}
   \caption{Parallel tasks on homogeneous platform}
   \label{fig:homo}
 \end{figure*}
@@ -342,10 +342,10 @@ performance as follows:
 \begin{figure*}
   \centering
   \subfloat[Converted relation.]{%
 \begin{figure*}
   \centering
   \subfloat[Converted relation.]{%
-    \includegraphics[width=.4\textwidth]{file.eps}\label{fig:r1}}%
+    \includegraphics[width=.4\textwidth]{fig/file}\label{fig:r1}}%
   \qquad%
   \subfloat[Real relation.]{%
   \qquad%
   \subfloat[Real relation.]{%
-    \includegraphics[width=.4\textwidth]{file3.eps}\label{fig:r2}}
+    \includegraphics[width=.4\textwidth]{fig/file3}\label{fig:r2}}
   \label{fig:rel}
   \caption{The energy and performance relation}
 \end{figure*}
   \label{fig:rel}
   \caption{The energy and performance relation}
 \end{figure*}
@@ -468,10 +468,10 @@ time values. These scaling factors are computed by dividing the maximum
 frequency by the new one see EQ~(\ref{eq:s}). 
 \begin{figure*}[t]
   \centering
 frequency by the new one see EQ~(\ref{eq:s}). 
 \begin{figure*}[t]
   \centering
-  \includegraphics[width=.328\textwidth]{cg_per.eps}\hfill%
-  \includegraphics[width=.328\textwidth]{mg_pre.eps}\hfill%
- % \includegraphics[width=.4\textwidth]{bt_pre.eps}\qquad%
-  \includegraphics[width=.328\textwidth]{lu_pre.eps}\hfill%
+  \includegraphics[width=.328\textwidth]{fig/cg_per}\hfill%
+  \includegraphics[width=.328\textwidth]{fig/mg_pre}\hfill%
+ % \includegraphics[width=.4\textwidth]{fig/bt_pre}\qquad%
+  \includegraphics[width=.328\textwidth]{fig/lu_pre}\hfill%
   \caption{Comparing predicted to real execution time}
   \label{fig:pred}
 \end{figure*}
   \caption{Comparing predicted to real execution time}
   \label{fig:pred}
 \end{figure*}
@@ -509,12 +509,12 @@ energy saving percent and the minimum performance degradation percent at the
 same time from all available scaling factors.
 \begin{figure*}[t]
   \centering
 same time from all available scaling factors.
 \begin{figure*}[t]
   \centering
-  \includegraphics[width=.328\textwidth]{ep.eps}\hfill%
-  \includegraphics[width=.328\textwidth]{cg.eps}\hfill%
-  \includegraphics[width=.328\textwidth]{sp.eps}
-  \includegraphics[width=.328\textwidth]{lu.eps}\hfill%
-  \includegraphics[width=.328\textwidth]{bt.eps}\hfill%
-  \includegraphics[width=.328\textwidth]{ft.eps}
+  \includegraphics[width=.328\textwidth]{fig/ep}\hfill%
+  \includegraphics[width=.328\textwidth]{fig/cg}\hfill%
+  \includegraphics[width=.328\textwidth]{fig/sp}
+  \includegraphics[width=.328\textwidth]{fig/lu}\hfill%
+  \includegraphics[width=.328\textwidth]{fig/bt}\hfill%
+  \includegraphics[width=.328\textwidth]{fig/ft}
   \caption{Optimal scaling factors for the predicted energy and performance of NAS benchmarks}
   \label{fig:nas}
 \end{figure*}
   \caption{Optimal scaling factors for the predicted energy and performance of NAS benchmarks}
   \label{fig:nas}
 \end{figure*}
@@ -693,9 +693,9 @@ gives the highest positive energy to performance trade-offs while Rauber and Rü
 EP.
 \begin{figure*}[t]
   \centering
 EP.
 \begin{figure*}[t]
   \centering
-  \includegraphics[width=.328\textwidth]{compare_class_A.pdf}
-  \includegraphics[width=.328\textwidth]{compare_class_B.pdf}
-  \includegraphics[width=.328\textwidth]{compare_class_c.pdf}
+  \includegraphics[width=.328\textwidth]{fig/compare_class_A}
+  \includegraphics[width=.328\textwidth]{fig/compare_class_B}
+  \includegraphics[width=.328\textwidth]{fig/compare_class_C}
   \caption{Comparing our method to Rauber and Rünger methods}
   \label{fig:compare}
 \end{figure*}
   \caption{Comparing our method to Rauber and Rünger methods}
   \label{fig:compare}
 \end{figure*}