76%
01.06.2024
Running kube-proxy 1 5bf2de2a3af3c kube-proxy-b65c9
The mitigations for the above technique could be used to ensure that no containers mount docker
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25.09.2023
3.0 (OTG and flash support)
Video
Micro-HDMI
Power
5V, USB or 2.1mm barrel connector
Other
2 CSIs, 1 DSI
I2C, UART, SPI, ADC, PWM, GPIO
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20 2020 openmpi-4.0.5.tar.gz
39322319 drwxrwxr-x 7 laytonjb laytonjb 4096 Oct 24 2020 psutil-release-5.7.3
32639755 drwxrwxr-x 2 laytonjb laytonjb 4096 Nov 6 10:25 pxz-master
31866302
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25.09.2023
build -f Dockerfile_ UbuntuJJFMonitKafka . -t ubuntujjfmntkfk:3.4.0
Listing 9
Dockerfile_UbuntuJJFMonit{FSC,Kafka} Diff
4a5,6
> KAFKAVER='3.4.0'
> KFKSCVER='2.13'
11c13,14
< RQRDCMNDS
75%
07.02.2019
/2),n
d(j) = c(j) - e(j)
end do
#pragma acc parallel loop copyin(a, b, e)
create(c) copyout(d)
{
for (int i=0; i < n; i++)
{
c[i] = a[i] * b[i]
}
for (int j=(n/2
75%
04.08.2020
->tv_nsec) * 1E-9;
24 }
25
26 int main(int argc, char* argv[argc+1]) {
27 if (argc < 2) {
28 fprintf(stderr, "Usage: %s NNN, NNN iterations\n",
29 argv[0]);
30 return EXIT_FAILURE;
31 }
32
74%
02.08.2021
SGEMM
for N = [2, 4, 8, 16, 32, 64, 128, 256, 512, 1024, 2048, 4096, 8192]
A = single( rand(N,N) );
B = single( rand(N,N) );
start = clock();
C = A*B;
elapsedTime = etime(clock(), start
74%
02.08.2021
---------------- -------------------- ---------------------------------------- --------- -------------------------- ---------------- --------
/dev/nvme0n1 S3ESNX0JA48075E Samsung SSD 960 EVO 250GB 1 22.41 GB / 250.06 GB 512 B + 0 B 2B7QCXE7
/dev/nvme1n1 07b4753784e26c18 Linux
74%
11.02.2016
+----------------------------------+---------+---------------------+
40 | 47e0142a3638fdc24fe40d4e4fbce3f1 | Row 1 | 2015-09-13 15:24:12 |
41 | b833c1e4c5bfc47d0dbe31c2e3f30837 | Row 3 | 2015-09-13 15:24:14 |
42 | c7d46523a316de4e1496c65c3cbdf358 | Row 2 | 2015
74%
25.09.2013
a(i) = b(i) + c(i)
24
1
TRIAD
a(i) = b(i) + q*c(i)
24
2
The Copy
benchmark measures the transfer rate in the absence of arithmetic. This should