122 lines
5.8 KiB
Perl
122 lines
5.8 KiB
Perl
#
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# Copyright 2021 Centreon (http://www.centreon.com/)
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#
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# Centreon is a full-fledged industry-strength solution that meets
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# the needs in IT infrastructure and application monitoring for
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# service performance.
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#
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# Licensed under the Apache License, Version 2.0 (the "License");
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# you may not use this file except in compliance with the License.
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# You may obtain a copy of the License at
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#
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# http://www.apache.org/licenses/LICENSE-2.0
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#
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# Unless required by applicable law or agreed to in writing, software
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# distributed under the License is distributed on an "AS IS" BASIS,
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# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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# See the License for the specific language governing permissions and
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# limitations under the License.
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#
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package storage::hp::3par::ssh::mode::components::sensor;
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use strict;
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use warnings;
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use centreon::plugins::misc;
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sub load {
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my ($self) = @_;
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#Node 0
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#---------
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#
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#------Measurement------ -Reading- -Lo_Limit- -Hi_Limit- -----Status-----
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# Ambient 21 C 5 C 40 C Within Tolerance
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# Midplane 23 C 10 C 50 C Within Tolerance
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# PCM 0 inlet 27 C 10 C 50 C Within Tolerance
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# SBB Canister 1 memory 42 C 5 C 82 C Within Tolerance
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# PCM 0 (5V) 5.19 V --- --- Within Tolerance
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# PCM 0 (40A Max) 2.77 A --- --- Within Tolerance
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# PS0 Fan0 4380 RPM 1540 RPM 7140 RPM Within Tolerance
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# PS0 Fan1 4080 RPM 1540 RPM 7140 RPM Within Tolerance
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#
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#Node 1
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#---------
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#
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#------Measurement------ -Reading- -Lo_Limit- -Hi_Limit- -----Status-----
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# Ambient 21 C 5 C 40 C Within Tolerance
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# Midplane 23 C 10 C 50 C Within Tolerance
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# PCM 0 inlet 27 C 10 C 50 C Within Tolerance
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# PCM 0 hotspot 21 C 10 C 65 C Within Tolerance
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# Node Input PWR 87.6 W 0.0 W 264.0 W Within Tolerance
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# DDR40 VDDQ A 1.20 V 1.14 V 1.26 V Within Tolerance
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# DDR40 VPP A 2.48 V 2.37 V 2.75 V Within Tolerance
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# DDR40 VDDQ B 1.20 V 1.14 V 1.26 V Within Tolerance
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# DDR40 VPP B 2.48 V 2.37 V 2.75 V Within Tolerance
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push @{$self->{commands}}, 'echo "===shownodeenv==="', 'shownodeenv';
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}
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sub check {
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my ($self) = @_;
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$self->{output}->output_add(long_msg => "Checking sensors");
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$self->{components}->{sensor} = { name => 'sensors', total => 0, skip => 0 };
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return if ($self->check_filter(section => 'sensor'));
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return if ($self->{results} !~ /===shownodeenv===.*?\n(.*?)(===|\Z)/msi);
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my $content = $1;
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my $unit_new_perf = { A => 'current.ampere', V => 'voltage.volt', W => 'power.watt', C => 'temperature.celsius', R => 'current.speed' };
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while ($content =~ /^Node\s+(\d+)(.*?)(?=\nNode|\Z$)/msg) {
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my ($node_id, $measures) = ($1, $2);
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my @lines = split /\n/, $measures;
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foreach (@lines) {
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next if (!/^(.*?)\s+([\d.]+)\s+([CWAVR])P?M?\s+([\d.]+\s+[CWAVR]|---)P?M?\s+([\d.]+\s+[CWAVR]|---)P?M?\s+/);
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my ($name, $reading, $unit, $lo_limit, $hi_limit) = (centreon::plugins::misc::trim($1), $2, $3, $4, $5);
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my $instance = 'node' . $node_id . '.' . $name;
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next if ($self->check_filter(section => 'sensor', instance => $instance));
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$self->{components}->{sensor}->{total}++;
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$self->{output}->output_add(long_msg => sprintf("sensor '%s' on node '%s' is %s %s [instance: %s]",
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$name, $node_id, $reading, $unit, $instance)
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);
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my ($exit, $warn, $crit, $checked) = $self->get_severity_numeric(section => 'sensor', instance => $instance, value => $reading);
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$lo_limit = ($lo_limit =~ s/.*?(\d+(\.\d+)?).*/$1/) ? $lo_limit : undef;
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$hi_limit = ($hi_limit =~ s/.*?(\d+(\.\d+)?).*/$1/) ? $hi_limit : undef;
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if ($checked == 0 && (defined($lo_limit) || defined($hi_limit))) {
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my $warn_th = '';
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my $crit_th = (defined($lo_limit) ? $lo_limit : '~') . ':' . (defined($hi_limit) ? $hi_limit : '~');
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$self->{perfdata}->threshold_validate(label => 'warning-sensor-instance-' . $instance, value => $warn_th);
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$self->{perfdata}->threshold_validate(label => 'critical-sensor-instance-' . $instance, value => $crit_th);
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$exit = $self->{perfdata}->threshold_check(
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value => $reading,
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threshold => [ { label => 'critical-sensor-instance-' . $instance, exit_litteral => 'critical' },
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{ label => 'warning-sensor-instance-' . $instance, exit_litteral => 'warning' } ]);
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$warn = $self->{perfdata}->get_perfdata_for_output(label => 'warning-sensor-instance-' . $instance);
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$crit = $self->{perfdata}->get_perfdata_for_output(label => 'critical-sensor-instance-' . $instance);
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}
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if (!$self->{output}->is_status(value => $exit, compare => 'ok', litteral => 1)) {
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$self->{output}->output_add(severity => $exit,
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short_msg => sprintf("Sensor '%s' on node '%s' is %s %s ", $name, $node_id, $reading, $unit));
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}
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$self->{output}->perfdata_add(
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label => 'sensor', unit => $unit,
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nlabel => 'hardware.sensor.' . $unit_new_perf->{$unit},
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instances => ['node' . $node_id, $name],
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value => $reading,
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warning => $warn,
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critical => $crit,
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);
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}
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}
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}
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1;
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