9%
05.12.2014
: chris@linux.tld
[->] Subject: Picture yourself, on a boat, on a river
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boundary="=_546791b1.cwvb6n4
9%
30.11.2025
of development, the programmers released version 1.0 of OCFS2, and it made its way into the vanilla kernel (2.6.16) just a year later. Version 1.2 became more widespread, with a great deal of support from various
9%
30.11.2025
565b5901d666de3bfe538be27aebb9f443de98f0 notification_proxy: use free() instead of g_free()
10 5c10f12e408b11afbd7c3cc93ddf7d85f1527417 ideviceinfo: fix possible segmentation fault when parsing empty
9%
07.11.2011
#pragma omp parallel for shared (sum) private (i)
12 for ( i=0; i < 1000000; i++) {
13 #pragma omp critical (sum_total)
14 sum = sum + a[i];
15 }
16 printf("sum=%lf\n",sum);
17
9%
09.08.2015
in 2011. A management buy-out at the end of 2013 coincided with a company restructuring and the release of Scalix 12.0. With a small intermediate step, the current version 12.5 (Figure 7) rolled out
9%
30.11.2025
_NOT_RUNNING
08 fi
09
10 pid=`cat $ASTRUNDIR/asterisk.pid`
11 ocf_run kill -s 0 $pid
12 rc=$?
13
14 if [ $rc -eq 0 ]; then
15 if ocf_is_true "$OCF_RESKEY_realtime"; then
16
9%
15.12.2016
are over i
= 2,n
− 1 and j
= 2,n
−1. Here is how you can write the iteration over the domain using array notation:
a(2:n-1,2:n-1) = 0.25 * &
(a(1:n-2,2:n) + a(3:n,2:n) + a(2:n,1:n-2) + a(2:n,3:n
9%
18.09.2017
in the Fortran programfor a longer run time:
nx = 8000
ny = 8000
i
t_max = 10000
tolerance = 0.00004D+00
The code was compiled using GCC 7.1 and run on a four-core AMD A6-6310 laptop (Lenovo
9%
04.10.2018
statistics ---
3 requests completed in 623.9 us, 12 KiB read, 4.81 k iops, 18.8 MiB/s
generated 4 requests in 3.35 s, 16 KiB, 1 iops, 4.77 KiB/s
min/avg/max/mdev = 200.4 us / 208.0 us / 221.4 us / 9.51 us
9%
02.06.2020
= sol.copy()
10
11 for j in range(0,ny-1):
12 sol[0,j] = 10.0
13 sol[nx-1,j] = 1.0
14 # end for
15
16 for i in range(0,nx-1):
17 sol[i,0] = 0.0
18 sol[i,ny-1] = 0.0
19 # end for
20
21 # Iterate
22