270 lines
8.1 KiB
Perl
270 lines
8.1 KiB
Perl
# Test::SNMP::Info::Layer2::C1900
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#
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# Copyright (c) 2018 Eric Miller
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# All rights reserved.
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions are met:
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#
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# * Redistributions of source code must retain the above copyright notice,
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# this list of conditions and the following disclaimer.
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# * Redistributions in binary form must reproduce the above copyright
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# notice, this list of conditions and the following disclaimer in the
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# documentation and/or other materials provided with the distribution.
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# * Neither the name of the University of California, Santa Cruz nor the
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# names of its contributors may be used to endorse or promote products
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# derived from this software without specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
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# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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# POSSIBILITY OF SUCH DAMAGE.
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package Test::SNMP::Info::Layer2::C1900;
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use Test::Class::Most parent => 'My::Test::Class';
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use SNMP::Info::Layer2::C1900;
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sub setup : Tests(setup) {
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my $test = shift;
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$test->SUPER::setup;
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# Start with a common cache that will serve most tests
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my $cache_data = {
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'_layers' => 11,
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'_description' => 'Cisco Systems Catalyst 1900,V9.00.06 ',
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# CISCO-STACK-MIB::wsc1900sysID
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'_id' => '.1.3.6.1.4.1.9.5.18',
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'_c1900_flash_status' => 'V9.00.06 written from 100.200.003.004',
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'_bridgeGroupAllowMembershipOverlap' => 'disabled',
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'_i_index' => 1,
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'_i_description' => 1,
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'_i_name' => 1,
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'_c1900_p_ifindex' => 1,
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'_c1900_p_duplex' => 1,
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'_c1900_p_duplex_admin' => 1,
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'_c1900_p_name' => 1,
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'_bridgeGroupMemberPortOfBridgeGroup' => 1,
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'store' => {
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'i_index' => {1 => 1, 2 => 2, 3 => 3, 4 => 4},
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'i_description' => {1 => 1, 2 => 2, 3 => 3, 4 => 4},
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'i_name' => {1 => 1, 2 => 2, 3 => 3, 4 => 'AUI'},
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'c1900_p_ifindex' => {1 => 1, 2 => 2, 3 => 3, 4 => 4},
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'c1900_p_duplex' => {
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1 => 'full-duplex',
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2 => 'half-duplex',
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3 => 'full-duplex',
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4 => 'half-duplex',
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},
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'c1900_p_duplex_admin' =>
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{1 => 'enabled', 2 => 'disabled', 3 => 'flow control', 4 => 'auto',},
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'c1900_p_name' => {1 => 'My Port Name', 2 => undef, 3 => ' ', 4 => '',},
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'bridgeGroupMemberPortOfBridgeGroup' => {
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'1.1' => 'true',
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'1.2' => 'true',
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'1.3' => 'false',
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'1.4' => 'false',
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'2.1' => 'false',
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'2.2' => 'false',
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'2.3' => 'true',
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'2.4' => 'false',
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'3.1' => 'false',
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'3.2' => 'false',
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'3.3' => 'false',
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'3.4' => 'true',
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},
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},
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};
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$test->{info}->cache($cache_data);
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}
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sub bulkwalk_no : Tests(2) {
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my $test = shift;
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can_ok $test->{info}, 'bulkwalk_no';
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is($test->{info}->bulkwalk_no(), 1, 'Bulkwalk turned off in this class');
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}
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sub cisco_comm_indexing : Tests(2) {
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my $test = shift;
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can_ok $test->{info}, 'cisco_comm_indexing';
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is($test->{info}->cisco_comm_indexing(), 1, 'Cisco community indexing on');
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}
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sub vendor : Tests(2) {
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my $test = shift;
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can_ok($test->{info}, 'vendor');
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is($test->{info}->vendor(), 'cisco', q(Vendor returns 'cisco'));
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}
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sub os : Tests(2) {
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my $test = shift;
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can_ok($test->{info}, 'os');
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is($test->{info}->os(), 'catalyst', q(OS returns 'catalyst'));
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}
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sub os_ver : Tests(3) {
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my $test = shift;
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can_ok($test->{info}, 'os_ver');
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is($test->{info}->os_ver(), '9.00.06', q(OS version is expected value));
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$test->{info}->clear_cache();
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is($test->{info}->os_ver(), undef,
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q(No description returns undef OS version));
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}
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sub interfaces : Tests(2) {
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my $test = shift;
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can_ok($test->{info}, 'interfaces');
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my $expected = {1 => 1, 2 => 2, 3 => 3, 4 => 4,};
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cmp_deeply($test->{info}->interfaces(),
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$expected, q(Interfaces have expected values));
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}
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sub i_duplex : Tests(3) {
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my $test = shift;
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can_ok($test->{info}, 'i_duplex');
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my $expected = {1 => 'full', 2 => 'half', 3 => 'full', 4 => 'half',};
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cmp_deeply($test->{info}->i_duplex(),
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$expected, q(Interfaces have expected duplex values));
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$test->{info}->clear_cache();
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cmp_deeply($test->{info}->i_duplex(),
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{}, q(No duplex data returns empty hash));
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}
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sub i_duplex_admin : Tests(3) {
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my $test = shift;
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can_ok($test->{info}, 'i_duplex_admin');
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my $expected = {1 => 'full', 2 => 'half', 3 => 'full', 4 => 'auto',};
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cmp_deeply($test->{info}->i_duplex_admin(),
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$expected, q(Interfaces have expected duplex admin values));
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$test->{info}->clear_cache();
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cmp_deeply($test->{info}->i_duplex_admin(),
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{}, q(No duplex admin data returns empty hash));
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}
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sub i_name : Tests(3) {
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my $test = shift;
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can_ok($test->{info}, 'i_name');
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my $expected = {1 => 'My Port Name', 2 => 2, 3 => 3, 4 => 'AUI',};
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cmp_deeply($test->{info}->i_name(),
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$expected, q(Interfaces have expected name values));
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$test->{info}->clear_cache();
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cmp_deeply($test->{info}->i_name(), {}, q(No name data returns empty hash));
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}
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sub set_i_duplex_admin : Tests(4) {
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my $test = shift;
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# Set method uses a partial fetch which ignores the cache and reloads data
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# therefore we must use the mocked session.
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my $data = {
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# This is defined in %FUNCS as c1900_p_ifindex
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'STAND-ALONE-ETHERNET-SWITCH-MIB::swPortIfIndex' =>
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{1 => 1, 2 => 2, 3 => 3, 4 => 4},
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};
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$test->{info}{sess}{Data} = $data;
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can_ok($test->{info}, 'set_i_duplex_admin');
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is($test->{info}->set_i_duplex_admin('full', 2),
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1, q(Mock set duplex call succeeded));
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is($test->{info}->set_i_duplex_admin('full', 5),
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0, q(Mock set duplex call to non-existant port fails));
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is($test->{info}->set_i_duplex_admin('full-x', 2),
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0, q(Mock set duplex call to bad duplex type 'full-x' fails));
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}
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sub i_vlan : Tests(4) {
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my $test = shift;
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can_ok($test->{info}, 'i_vlan');
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my $expected = {1 => 1, 2 => 1, 3 => 2, 4 => 3};
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cmp_deeply($test->{info}->i_vlan(),
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$expected, q(Interfaces have expected PVID values));
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delete $test->{info}{'_bridgeGroupAllowMembershipOverlap'};
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$test->{info}{'_vlanAllowMembershipOverlap'} = 'enabled';
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cmp_deeply($test->{info}->i_vlan(),
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{}, q(VLAN overlap enabled returns empty hash));
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$test->{info}->clear_cache();
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cmp_deeply($test->{info}->i_vlan(), {}, q(No VLAN data returns empty hash));
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}
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sub i_vlan_membership : Tests(3) {
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my $test = shift;
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can_ok($test->{info}, 'i_vlan_membership');
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my $expected = {1 => [1], 2 => [1], 3 => [2], 4 => [3]};
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cmp_deeply($test->{info}->i_vlan_membership(),
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$expected, q(Interfaces have expected VLAN values));
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$test->{info}->clear_cache();
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cmp_deeply($test->{info}->i_vlan_membership(),
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{}, q(No VLAN data returns empty hash));
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}
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sub i_vlan_membership_untagged : Tests(2) {
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my $test = shift;
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can_ok($test->{info}, 'i_vlan_membership_untagged');
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$test->{info}->clear_cache();
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cmp_deeply($test->{info}->i_vlan_membership_untagged(),
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{}, q(VLAN untagged membership not applicable returns empty hash));
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}
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sub bp_index : Tests(3) {
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my $test = shift;
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can_ok($test->{info}, 'bp_index');
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my $expected = {1 => 1, 2 => 2, 3 => 3, 4 => 4,};
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cmp_deeply($test->{info}->bp_index(),
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$expected, q(Interfaces have expected name values));
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$test->{info}->clear_cache();
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cmp_deeply($test->{info}->bp_index(),
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{}, q(No bridge index data returns empty hash));
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}
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1;
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