164 lines
7.7 KiB
Perl
164 lines
7.7 KiB
Perl
################################################################################
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# Copyright 2005-2013 MERETHIS
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# Centreon is developped by : Julien Mathis and Romain Le Merlus under
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# GPL Licence 2.0.
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#
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# This program is free software; you can redistribute it and/or modify it under
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# the terms of the GNU General Public License as published by the Free Software
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# Foundation ; either version 2 of the License.
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#
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# This program is distributed in the hope that it will be useful, but WITHOUT ANY
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# WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS FOR A
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# PARTICULAR PURPOSE. See the GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License along with
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# this program; if not, see <http://www.gnu.org/licenses>.
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#
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# Linking this program statically or dynamically with other modules is making a
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# combined work based on this program. Thus, the terms and conditions of the GNU
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# General Public License cover the whole combination.
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#
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# As a special exception, the copyright holders of this program give MERETHIS
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# permission to link this program with independent modules to produce an executable,
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# regardless of the license terms of these independent modules, and to copy and
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# distribute the resulting executable under terms of MERETHIS choice, provided that
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# MERETHIS also meet, for each linked independent module, the terms and conditions
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# of the license of that module. An independent module is a module which is not
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# derived from this program. If you modify this program, you may extend this
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# exception to your version of the program, but you are not obliged to do so. If you
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# do not wish to do so, delete this exception statement from your version.
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#
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# For more information : contact@centreon.com
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# Authors : Quentin Garnier <qgarnier@merethis.com>
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#
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####################################################################################
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package hardware::server::hpbladechassis::mode::components::psu;
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use strict;
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use warnings;
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my %conditions = (
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1 => ['other', 'CRITICAL'],
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2 => ['ok', 'OK'],
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3 => ['degraded', 'WARNING'],
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4 => ['failed', 'CRITICAL'],
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);
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my %present_map = (
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1 => 'other',
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2 => 'absent',
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3 => 'present',
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4 => 'Weird!!!', # for blades it can return 4, which is NOT spesified in MIB
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);
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my %psu_status_map = (
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1 => 'noError',
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2 => 'generalFailure',
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3 => 'bistFailure',
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4 => 'fanFailure',
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5 => 'tempFailure',
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6 => 'interlockOpen',
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7 => 'epromFailed',
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8 => 'vrefFailed',
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9 => 'dacFailed',
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10 => 'ramTestFailed',
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11 => 'voltageChannelFailed',
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12 => 'orringdiodeFailed',
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13 => 'brownOut',
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14 => 'giveupOnStartup',
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15 => 'nvramInvalid',
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16 => 'calibrationTableInvalid',
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);
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my %inputline_status_map = (
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1 => 'noError',
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2 => 'lineOverVoltage',
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3 => 'lineUnderVoltage',
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4 => 'lineHit',
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5 => 'brownOut',
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6 => 'linePowerLoss',
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);
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sub check {
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my ($self) = @_;
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# We dont check 'cpqRackPowerEnclosureTable' (the overall power system status)
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# We check 'cpqRackPowerSupplyTable' (unitary)
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$self->{components}->{psu} = {name => 'power supplies', total => 0};
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$self->{output}->output_add(long_msg => "Checking power supplies");
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return if ($self->check_exclude('psu'));
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my $oid_cpqRackPowerSupplyPresent = '.1.3.6.1.4.1.232.22.2.5.1.1.1.16';
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my $oid_cpqRackPowerSupplyIndex = '.1.3.6.1.4.1.232.22.2.5.1.1.1.3';
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my $oid_cpqRackPowerSupplySerialNum = '.1.3.6.1.4.1.232.22.2.5.1.1.1.5';
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my $oid_cpqRackPowerSupplyPartNumber = '.1.3.6.1.4.1.232.22.2.5.1.1.1.6';
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my $oid_cpqRackPowerSupplySparePartNumber = '.1.3.6.1.4.1.232.22.2.5.1.1.1.7';
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my $oid_cpqRackPowerSupplyStatus = '.1.3.6.1.4.1.232.22.2.5.1.1.1.14';
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my $oid_cpqRackPowerSupplyInputLineStatus = '.1.3.6.1.4.1.232.22.2.5.1.1.1.15';
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my $oid_cpqRackPowerSupplyCondition = '.1.3.6.1.4.1.232.22.2.5.1.1.1.17';
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my $oid_cpqRackPowerSupplyCurPwrOutput = '.1.3.6.1.4.1.232.22.2.5.1.1.1.10'; # Watts
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my $oid_cpqRackPowerSupplyIntakeTemp = '.1.3.6.1.4.1.232.22.2.5.1.1.1.12';
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my $oid_cpqRackPowerSupplyExhaustTemp = '.1.3.6.1.4.1.232.22.2.5.1.1.1.13';
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my $result = $self->{snmp}->get_table(oid => $oid_cpqRackPowerSupplyPresent);
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return if (scalar(keys %$result) <= 0);
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my @get_oids = ();
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my @oids_end = ();
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foreach my $key ($self->{snmp}->oid_lex_sort(keys %$result)) {
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next if ($present_map{$result->{$key}} ne 'present');
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$key =~ /\.([0-9]+)$/;
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my $oid_end = $1;
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push @oids_end, $oid_end;
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push @get_oids, $oid_cpqRackPowerSupplyIndex . "." . $oid_end, $oid_cpqRackPowerSupplySerialNum . "." . $oid_end,
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$oid_cpqRackPowerSupplyPartNumber . "." . $oid_end, $oid_cpqRackPowerSupplySparePartNumber . "." . $oid_end,
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$oid_cpqRackPowerSupplyStatus . "." . $oid_end, $oid_cpqRackPowerSupplyInputLineStatus . "." . $oid_end,
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$oid_cpqRackPowerSupplyCondition . "." . $oid_end, $oid_cpqRackPowerSupplyCurPwrOutput . "." . $oid_end,
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$oid_cpqRackPowerSupplyIntakeTemp . "." . $oid_end, $oid_cpqRackPowerSupplyExhaustTemp . "." . $oid_end;
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}
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$result = $self->{snmp}->get_leef(oids => \@get_oids);
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my $total_watts = 0;
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foreach (@oids_end) {
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my $psu_index = $result->{$oid_cpqRackPowerSupplyIndex . '.' . $_};
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my $psu_status = $result->{$oid_cpqRackPowerSupplyStatus . '.' . $_};
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my $psu_serial = $result->{$oid_cpqRackPowerSupplySerialNum . '.' . $_};
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my $psu_part = $result->{$oid_cpqRackPowerSupplyPartNumber . '.' . $_};
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my $psu_spare = $result->{$oid_cpqRackPowerSupplySparePartNumber . '.' . $_};
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my $psu_inputlinestatus = $result->{$oid_cpqRackPowerSupplyInputLineStatus . '.' . $_};
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my $psu_condition = $result->{$oid_cpqRackPowerSupplyCondition . '.' . $_};
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my $psu_pwrout = $result->{$oid_cpqRackPowerSupplyCurPwrOutput . '.' . $_};
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my $psu_intemp = $result->{$oid_cpqRackPowerSupplyIntakeTemp . '.' . $_};
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my $psu_exhtemp = $result->{$oid_cpqRackPowerSupplyExhaustTemp . '.' . $_};
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$total_watts += $psu_pwrout;
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$self->{components}->{psu}->{total}++;
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$self->{output}->output_add(long_msg => sprintf("PSU %d status is %s [serial: %s, part: %s, spare: %s] (input line status %s) (status %s).",
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$psu_index, ${$conditions{$psu_condition}}[0],
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$psu_serial, $psu_part, $psu_spare,
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$inputline_status_map{$psu_inputlinestatus},
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$psu_status_map{$psu_status}
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));
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if ($psu_condition != 2) {
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$self->{output}->output_add(severity => ${$conditions{$psu_condition}}[1],
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short_msg => sprintf("PSU %d status is %s",
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$psu_index, ${$conditions{$psu_condition}}[0]));
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}
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$self->{output}->perfdata_add(label => "psu_" . $psu_index . "_power", unit => 'W',
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value => $psu_pwrout);
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if (defined($psu_intemp) && $psu_intemp != -1) {
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$self->{output}->perfdata_add(label => "psu_" . $psu_index . "_temp_intake", unit => 'C',
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value => $psu_intemp);
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}
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if (defined($psu_exhtemp) && $psu_exhtemp != -1) {
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$self->{output}->perfdata_add(label => "psu_" . $psu_index . "_temp_exhaust", unit => 'C',
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value => $psu_exhtemp);
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}
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}
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$self->{output}->perfdata_add(label => "total_power", unit => 'W',
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value => $total_watts);
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}
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1; |