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04 vigil:
05 image: valeriansaliou/vigil:${VGILTAG:-v1.26.0}
06 ports:
07 - "48080:8080"
08 restart: unless-stopped
09
10 networks:
11 default:
12 name: statuspage-demo
13
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07.06.2019
-jdk-alpine
02
03 RUN apk add --no-cache git openssh-client curl bash # for Jenkins AWT
04 ttf-dejavu
05
06 ARG JENKINS_USER=jenkins
07 ARG UID=1000
08 ARG HTTP_PORT=8080
09 ARG JENKINS
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30.11.2025
); i+= 4096) newblock[i] = 'Y';
12 printf("Allocated %d MB\n", allocation);
13 }
14 }
Things are more interesting when memory is being used. Uncommenting line 11 does just that. The OOM
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21.08.2014
in the format
Listing 1
Perl Example Client
01 #!/usr/bin/perl
02
03 use strict;
04 use warnings;
05 use IO::Socket;
06 use Sys::CpuLoad;
07
08 my $remote_host = '192.168.56.102';
09 my $remote ... 22
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_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
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wait: yes
08 id: test-backend
09 assign_public_ip: no
10 vpc_subnet_id: "{{ mysubnetint.subnet.id }}"
11 group_id: "{{ intsecg.group_id }}"
12 register: backendvm
13 tags
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10.04.2015
for changed files from the command line).
Listing 1
Configuration File
01 {
02 "version": "3.0.0",
03 "watched": [
04 {
05 "path": "/opt/repos",
06 "triggers": []
07 }
08
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of their toolkits.
For example, you can install and use Splunk Enterprise and its Machine Learning Toolkit (Figure 6) with a trial license for up to 60 days and index up to 500MB of data per day. The software
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of the stress test shown in Figure 2, shows that some 19,200 queries composed of 55 different commands were issued. The system, a server with 768MB of RAM and a Pentium 3 CPU, took a total of 22 seconds to answer
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_DATA=$1
06
07 # This is the Event Data
08 echo $EVENT_DATA
09
10 # Example of command usage
11 EVENT_JSON=$(echo $EVENT_DATA | jq .)
12
13 # Example of AWS command that's output will show up