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Antoine Cyril David Hoffmann
Gyacomo
Commits
a8e24f8e
Commit
a8e24f8e
authored
4 years ago
by
Antoine Cyril David Hoffmann
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update results
parent
84c20694
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2 changed files
wk/marconi_scaling.m
+6
-6
6 additions, 6 deletions
wk/marconi_scaling.m
wk/parallel_scaling_new.m
+16
-14
16 additions, 14 deletions
wk/parallel_scaling_new.m
with
22 additions
and
20 deletions
wk/marconi_scaling.m
+
6
−
6
View file @
a8e24f8e
...
@@ -4,10 +4,10 @@ addpath(genpath('../matlab')) % ... add
...
@@ -4,10 +4,10 @@ addpath(genpath('../matlab')) % ... add
%% Set Up parameters
%% Set Up parameters
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%%
%% CLUSTER PARAMETERS
%% CLUSTER PARAMETERS
CLUSTER
.
TIME
=
'
12:0
0:00'
;
% allocation time hh:mm:ss
CLUSTER
.
TIME
=
'
01:3
0:00'
;
% allocation time hh:mm:ss
CLUSTER
.
NODES
=
'1'
;
% MPI process
CLUSTER
.
NODES
=
'1'
;
% MPI process
CLUSTER
.
CPUPT
=
'1'
;
% CPU per task
CLUSTER
.
CPUPT
=
'1'
;
% CPU per task
CLUSTER
.
NTPN
=
'
20
'
;
% N tasks per node
CLUSTER
.
NTPN
=
'
4
'
;
% N tasks per node
CLUSTER
.
PART
=
'prod'
;
% dbg or prod
CLUSTER
.
PART
=
'prod'
;
% dbg or prod
CLUSTER
.
MEM
=
'16GB'
;
% Memory
CLUSTER
.
MEM
=
'16GB'
;
% Memory
%% PHYSICAL PARAMETERS
%% PHYSICAL PARAMETERS
...
@@ -21,15 +21,15 @@ NOISE0 = 1.0e-5;
...
@@ -21,15 +21,15 @@ NOISE0 = 1.0e-5;
%% GRID PARAMETERS
%% GRID PARAMETERS
N
=
1024
;
% Frequency gridpoints (Nkr = N/2)
N
=
1024
;
% Frequency gridpoints (Nkr = N/2)
L
=
100
;
% Size of the squared frequency domain
L
=
100
;
% Size of the squared frequency domain
PMAXE
=
1
;
% Highest electron Hermite polynomial degree
PMAXE
=
2
;
% Highest electron Hermite polynomial degree
JMAXE
=
1
;
% Highest '' Laguerre ''
JMAXE
=
1
;
% Highest '' Laguerre ''
PMAXI
=
1
;
% Highest ion Hermite polynomial degree
PMAXI
=
2
;
% Highest ion Hermite polynomial degree
JMAXI
=
1
;
% Highest '' Laguerre ''
JMAXI
=
1
;
% Highest '' Laguerre ''
%% TIME PARAMETERS
%% TIME PARAMETERS
TMAX
=
5
;
% Maximal time unit
TMAX
=
10
;
% Maximal time unit
DT
=
5e-2
;
% Time step
DT
=
5e-2
;
% Time step
SPS0D
=
1
/
DT
;
% Sampling per time unit for profiler
SPS0D
=
1
/
DT
;
% Sampling per time unit for profiler
SPS2D
=
0
;
% Sampling per time unit for 2D arrays
SPS2D
=
1
;
% Sampling per time unit for 2D arrays
SPS5D
=
0
;
% Sampling per time unit for 5D arrays
SPS5D
=
0
;
% Sampling per time unit for 5D arrays
RESTART
=
0
;
% To restart from last checkpoint
RESTART
=
0
;
% To restart from last checkpoint
JOB2LOAD
=
0
;
JOB2LOAD
=
0
;
...
...
This diff is collapsed.
Click to expand it.
wk/parallel_scaling_new.m
+
16
−
14
View file @
a8e24f8e
...
@@ -2,21 +2,23 @@ default_plots_options
...
@@ -2,21 +2,23 @@ default_plots_options
%% Strong scaling measurement
%% Strong scaling measurement
% Handwritten results for 512x256, P,J=2,1, Tmax =
5
% Handwritten results for 512x256, P,J=2,1, Tmax =
10, mu=0, dt = 5e-2
Results_512_21
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_512_21
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_512_21
.
time
=
[
0000
,
0000
,
0000
,
0000
,
0000
,
0000
,
0000
,
0000
];
% Results_512_21.time = [0162, 0108, 0055, 0032, 0030, 0045, 0061, 0084]; %tmax 10
Results_512_21
.
time
=
[
0799
,
0436
,
0207
,
0116
,
0135
,
0200
,
0237
,
0246
];
% Handwritten results for 512x256, P,J=3,2, Tmax =
2
, mu=0, dt
1
e-2
?
% Handwritten results for 512x256, P,J=3,2, Tmax =
5
, mu=0, dt
5
e-2
Results_512_32
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_512_32
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_512_32
.
time
=
[
0000
,
0000
,
0000
,
0000
,
0
00
0
,
0
000
,
0000
,
0
00
0
];
Results_512_32
.
time
=
[
1221
,
0608
,
0307
,
0163
,
0
13
0
,
0
127
,
0194
,
0
26
0
];
% Handwritten results for 1024x512, P,J=1,1, Tmax = 5 dt = 0.05, mu = 0
% Handwritten results for 1024x512, P,J=2,1, Tmax = 5 dt = 0.05, mu = 0
Results_1024_11
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_1024_21
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_1024_11
.
time
=
[
0000
,
0000
,
0000
,
0000
,
0000
,
0000
,
0000
,
0000
];
% Results_1024_21.time = [1920, 0000, 0563, 0306, 0247, 0240, 0000, 0000];
Results_1024_21
.
time
=
[
3808
,
0000
,
1108
,
0586
,
0465
,
0443
,
0483
,
0496
];
% Handwritten results for 1024x512, P,J=
2
,2, Tmax = 2 dt = 0.05, mu = 0
% Handwritten results for 1024x512, P,J=
3
,2, Tmax = 2 dt = 0.05, mu = 0
Results_1024_
2
2
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_1024_
3
2
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_1024_
2
2
.
time
=
[
0000
,
0000
,
0000
,
0000
,
0000
,
0000
,
0000
,
0000
];
Results_1024_
3
2
.
time
=
[
0000
,
0000
,
0000
,
0000
,
0000
,
0000
,
0000
,
0000
];
% Handwritten results for 1024x512, P,J=6,4, Tmax = 2 dt = 0.05, mu = 0
% Handwritten results for 1024x512, P,J=6,4, Tmax = 2 dt = 0.05, mu = 0
Results_1024_64
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
Results_1024_64
.
np
=
[
1
,
2
,
4
,
8
,
12
,
16
,
20
,
24
];
...
@@ -33,10 +35,10 @@ res = Results_512_21;
...
@@ -33,10 +35,10 @@ res = Results_512_21;
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
'v-'
,
'DisplayName'
,
'$512\times256$, $P,J=2,1$'
);
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
'v-'
,
'DisplayName'
,
'$512\times256$, $P,J=2,1$'
);
res
=
Results_512_32
;
res
=
Results_512_32
;
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
'>-'
,
'DisplayName'
,
'$512\times256$, $P,J=3,2$'
);
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
'>-'
,
'DisplayName'
,
'$512\times256$, $P,J=3,2$'
);
res
=
Results_1024_
1
1
;
res
=
Results_1024_
2
1
;
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
'o-'
,
'DisplayName'
,
'$1024\times512$, $P,J=
1
,1$'
);
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
'o-'
,
'DisplayName'
,
'$1024\times512$, $P,J=
2
,1$'
);
res
=
Results_1024_
2
2
;
res
=
Results_1024_
3
2
;
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
's-'
,
'DisplayName'
,
'$1024\times512$, $P,J=
2
,2$'
);
xlim
([
1
,
max
(
res
.
np
)]);
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
's-'
,
'DisplayName'
,
'$1024\times512$, $P,J=
3
,2$'
);
xlim
([
1
,
max
(
res
.
np
)]);
res
=
Results_1024_64
;
res
=
Results_1024_64
;
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
'd-'
,
'DisplayName'
,
'$1024\times512$, $P,J=6,4$'
);
xlim
([
1
,
max
(
res
.
np
)]);
plot
(
res
.
np
,
res
.
time
(
1
)
.
/(
res
.
time
),
'd-'
,
'DisplayName'
,
'$1024\times512$, $P,J=6,4$'
);
xlim
([
1
,
max
(
res
.
np
)]);
xlabel
(
'$N_p$'
);
ylabel
(
'speedup'
)
xlabel
(
'$N_p$'
);
ylabel
(
'speedup'
)
...
...
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