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331 Commits

Author SHA1 Message Date
Oliver Gorwits
c8fceeb75b release 3.28 2015-06-18 22:37:26 +01:00
Eric A. Miller
036cb4556e Correct port indexing of VSP 4K in L3::Passport 2015-06-11 18:23:23 -04:00
Jeroen van Ingen
e7b06a0b06 POD fixes in Layer2::Aironet 2015-06-09 17:17:46 +02:00
Jeroen van Ingen
c0067113e9 Add model translation to Layer3::Huawei by loading correct MIB 2015-06-09 17:17:01 +02:00
Jeroen van Ingen
ce4349a188 Try to determine whether a device in generic Layer3::Cisco class needs community based indexing
Layer3 capable Cisco device without a mapping to a more specific class fall
under the Layer3::Cisco class. These can be "real" routers that don't need
community based indexing, or Layer 3 switches that do need community based
indexing (to fetch L2 forwarding tables for different VLANs). Generally, if
community based indexing is needed on a platform, it also supports the
CISCO-VTP-MIB. Dynamically return cisco_comm_indexing based on vtpVersion.
2015-06-02 18:07:50 +02:00
Jeroen van Ingen
224085dfca Add Layer3::Huawei class 2015-06-02 17:17:13 +02:00
Oliver Gorwits
9b3262a5fe release 3.27 2015-05-05 20:32:40 +01:00
Oliver Gorwits
86856b6d54 Only log adding mibdirs at debug level 2 2015-05-05 20:24:44 +01:00
Oliver Gorwits
d5bf08329e [#221] Drop Cisco Voice VLAN 4096 2015-05-05 20:18:48 +01:00
Bill Fenner
60efce8404 Add power supply information
Use ps1_type and ps1_status to report power injector type
(e.g., cdp negotiated, inline power, etc.) and status
(e.g., full power, reduced power)
2015-03-18 19:05:40 +00:00
Oliver Gorwits
83164f456a release 3.26 2015-03-07 17:08:25 +00:00
Oliver Gorwits
c0141bcfee Include Voice VLANs in (tagged) VLAN Membership on Cisco devices 2015-03-07 17:07:17 +00:00
Oliver Gorwits
8dfe9ef1cf Fix typo in MRO::print_superclasses 2015-02-28 21:13:38 +00:00
Oliver Gorwits
73d713b670 Add fan and psu reporting to Layer3::Dell 2015-02-28 12:47:59 +00:00
Oliver Gorwits
db6c3573c1 release 3.25 2015-02-25 22:09:18 +00:00
Jeroen van Ingen
c8cbdaef8a Add more model name mappings to Layer2::HP (includes several 2530 models and 5400R series) 2015-02-23 15:52:07 +01:00
Oliver Gorwits
2c7243b87d release 3.24 2015-02-04 18:42:16 +00:00
Eric A. Miller
46515dd5d3 Support RSTP and ieee8021d STP operating modes in RapidCity 2015-01-22 22:16:34 -05:00
Eric A. Miller
7eb799adc6 Fix incorrect FDB ID to VLAN ID mapping in Bridge and L3:Enterasys 2015-01-22 21:57:06 -05:00
Eric A. Miller
c85b61bbd0 Fix single instance leafs defined in %FUNCS to behave like table leafs; return a reference to a hash and don't add zero instance identifier 2014-12-18 22:05:33 -05:00
Oliver Gorwits
045ff8b789 release 3.23 2014-12-09 07:26:25 +00:00
Eric A. Miller
7b7f197439 Fix Cisco VLAN membership issue introduced in 3.22 related to capturing port VLANs on Cisco interfaces which are configured for trunking but are not in operational trunking mode 2014-12-08 21:12:01 -05:00
Eric A. Miller
9e1c462836 Enhanced STP support for L3::Extreme. Document previous STP changes in ChangeLog. 2014-12-04 23:19:06 -05:00
Eric A. Miller
e97e8309cb Update MIB used in L1::Asante 2014-12-04 23:11:36 -05:00
Oliver Gorwits
8c5be1a47d release 3.22 2014-12-02 13:20:53 +00:00
Jeroen van Ingen
afef2e6732 Don't include LLDP in Layer2/HP.om directly, it's inherited via Layer3 class now 2014-12-02 13:45:53 +01:00
Jeroen van Ingen
7b2051b55c Add LLDP into base Layer2 class
...and update ChangeLog
2014-12-02 13:35:00 +01:00
Jeroen van Ingen
8e470a2d72 pod additions for Layer3.pm 2014-12-02 13:24:39 +01:00
Jeroen van Ingen
35213d5cb2 Add LLDP into base Layer3 class 2014-12-02 13:22:20 +01:00
Oliver Gorwits
b24f1a8ac4 release 3.21_001 2014-11-14 00:28:27 +00:00
Oliver Gorwits
5454ab577e In LLDP.pm don't create a variable in a conditional 2014-11-14 00:28:14 +00:00
Eric A. Miller
046c15a074 Merge branch 'master' of ssh://git.code.sf.net/p/snmp-info/code 2014-11-11 23:13:45 -05:00
Eric A. Miller
ddb9dda894 Add stp_i_mac() to get per STP instance bridge address 2014-11-11 23:09:21 -05:00
Eric A. Miller
d7047bda13 Add methods to gather PVST information in L3::Foundry 2014-11-11 22:55:30 -05:00
Eric A. Miller
c7934f4d10 Enable determination of spanning tree version running on Avaya switches and add methods to gather information from multiple instances 2014-11-11 22:05:59 -05:00
Eric A. Miller
c97dc06177 Add stp_i_time(), stp_i_ntop(), stp_i_root(), stp_i_root_port(), stp_i_priority() methods which return a hash reference to ease API compatibility with MST and PVST implementations indexed by a spanning tree instance id. 2014-11-11 22:02:07 -05:00
Eric A. Miller
76b1faa159 POD syntax fix in L3::Extreme 2014-11-11 22:01:23 -05:00
Eric A. Miller
1e0438857e Document i_pvid() in L3::BayRS 2014-11-11 22:00:47 -05:00
Eric A. Miller
b6494effa6 POD updates, add version to MRO 2014-11-11 22:00:01 -05:00
Eric A. Miller
a359184b83 Ignore build files 2014-11-11 21:58:13 -05:00
Bill Fenner
ce50a3f627 Recognize C2700 and C3700 as Layer2::Aironet 2014-11-10 20:39:08 +00:00
Eric A. Miller
ee7d254329 Capture Aruba AP software version when available 2014-11-09 18:01:11 -05:00
Eric A. Miller
d674b22b39 Correct munging of stp_root() 2014-11-09 17:53:48 -05:00
Eric A. Miller
47954aba8e Correct munging of dot1dStpPortDesignatedPort in stp_p_port() and i_stp_port() methods 2014-11-09 17:43:41 -05:00
Eric A. Miller
09e18e9b64 Capture Aruba AP hardware version when available 2014-11-08 12:21:31 -05:00
Eric A. Miller
163ba86196 Add i_vlan_membership_untagged() to L3::Extreme 2014-11-08 10:55:39 -05:00
Eric A. Miller
e57e7d99d5 Add i_vlan_membership_untagged() to L3::AlteonAD 2014-11-08 10:06:12 -05:00
Eric A. Miller
7ad449303b L3::Force10 now inherits i_vlan_membership() and i_vlan_membership_untagged() from Bridge and only overrides VLAN mapping 2014-11-08 09:52:41 -05:00
Eric A. Miller
49b853de1a Document i_vlan_membership_untagged() 2014-11-08 09:40:07 -05:00
Eric A. Miller
03a81ad4be Add i_vlan_membership_untagged() method to L3::Aruba 2014-11-08 09:36:42 -05:00
Eric A. Miller
eb046b6a61 L3::Juniper now inherits i_vlan_membership() and i_vlan_membership_untagged() from Bridge and only overrides VLAN mapping
Correct VLAN mapping of FDB entries in L3::Juniper
2014-11-08 08:50:44 -05:00
Eric A. Miller
1bf62f9524 Use defined as test to catch vlan zero 2014-11-08 08:33:15 -05:00
Eric A. Miller
9aca213a5f Add i_vlan_membership_untagged() to L3::F5, L2::C1900, and L2::HP4000 2014-11-06 23:02:35 -05:00
Eric A. Miller
ce8bb68200 Add i_vlan_membership_untagged() to RapidCity 2014-11-06 21:31:56 -05:00
Eric A. Miller
7ee562c5ac i_vlan_membership_untagged() should return HoA 2014-11-05 22:58:35 -05:00
Eric A. Miller
bdb719004d Document i_vlan_membership_untagged() 2014-11-05 21:54:48 -05:00
Eric A. Miller
842ac96d48 Capture port VLANs on Cisco interfaces which are configured for trunking but are not in operational trunking mode 2014-11-05 21:07:11 -05:00
Eric A. Miller
5bb9011fb4 Override qb_fdb_index() in L3::Dell since the dot1qTpFdbTable uses dot1qVlanIndex rather than dot1qFdbId as an index 2014-11-01 20:20:12 -04:00
Eric A. Miller
97564f50b8 New method qb_fdb_index() for VLAN ID to FDB ID mapping. 2014-11-01 20:18:58 -04:00
Eric A. Miller
efcf6a0db3 Support for Fortinet devices in new class L3::Fortinet 2014-11-01 19:37:22 -04:00
Eric A. Miller
9e813784f7 Remove qb_fw_vlan() override from L2::HP as it should no longer be necessary. 2014-10-30 23:38:39 -04:00
Eric A. Miller
aaca03062b Use FDB ID to VID mapping if available to determine end station VLAN.
Use dot1qVlanCurrentTable if available to capture dynamic and static VLANs, fall back to dot1qVlanStaticTable if not available.
New method i_vlan_membership_untagged() for VLANs transmitted as untagged frames.
Add partial of zero to L3::Enterasys methods which use dot1qVlanCurrentTable to work around non standard TimeFilter implementation.
2014-10-30 23:36:12 -04:00
Eric A. Miller
c1242017e2 [#64] Misdetection: Wireless APs 2014-10-30 22:44:18 -04:00
Eric A. Miller
5f1426a0a3 Support obtaining FDB in Avaya SPBM edge deployments in L2::Baystack
NOTE: This requires a RAPID-CITY MIB with the rcBridgeSpbmMacTable
2014-10-21 23:23:20 -04:00
Eric A. Miller
e84225fb23 Use the same method for both i_vlan and i_pvid in BayRS 2014-10-21 20:53:28 -04:00
Eric A. Miller
32c0e64bfb Ignore komodo files 2014-10-21 20:51:57 -04:00
Jeroen van Ingen
0793ff31f5 No longer use default i_ignore() subs in L2/L3/L7 base classes 2014-10-21 16:54:49 +02:00
Jeroen van Ingen
d3c2c1b607 Remove all trailing whitespace from ChangeLog entries 2014-10-21 15:15:17 +02:00
Oliver Gorwits
893def7910 release 3.20 2014-09-08 13:50:56 +01:00
Eric A. Miller
f875639435 Override layers in Juniper for routers with switch modules not reporting L2 capability 2014-09-03 23:22:33 -04:00
Oliver Gorwits
70bb263d79 release 3.19 2014-08-01 07:53:34 +01:00
Eric A. Miller
536d7d6901 Only use L2::ZyXEL_DSLAM for ZyXEL DSL modules 2014-07-30 23:07:22 -04:00
Eric A. Miller
6ea34316b0 POD updates and update change log for begemot's merges 2014-07-30 23:04:12 -04:00
Eric A. Miller
aeebe5c95c POD updates 2014-07-30 23:02:31 -04:00
Eric A. Miller
eb62f95636 POD fix 2014-07-30 22:56:14 -04:00
Eric A. Miller
c7ee746fe6 Merge commit '3b6088f454b5211ea00267fddd45b9a6b3563312' 2014-07-30 22:49:54 -04:00
Eric A. Miller
9a062499b3 Merge commit '719f14984b5d614b7ee52493bf07d6ced99adad4' 2014-07-30 22:33:23 -04:00
Eric A. Miller
0c876452d8 Merge commit '2e480dbec54e3b31586f7660f7f88d8797ac2446' 2014-07-30 22:32:36 -04:00
Max Kosmach
3b6088f454 add L2:3Com.pm 2014-07-28 17:46:09 +04:00
Max Kosmach
719f14984b Add Ubiquiti UniFi AP support 2014-07-28 15:47:01 +04:00
Max Kosmach
2e480dbec5 Small H3C fixes 2014-07-28 15:41:46 +04:00
Max Kosmach
66910c7827 Add L2:3Com support 2014-07-28 15:32:04 +04:00
Eric A. Miller
0f5319bc52 Silence uninitialized value warning in L3::Cisco 2014-07-08 21:48:50 -04:00
Eric A. Miller
cd54b07e09 Fix Avaya detection in lldp_port() 2014-07-08 21:33:18 -04:00
Oliver Gorwits
b197e9739b release 3.18 2014-07-02 09:12:57 +01:00
Eric A. Miller
8dd32c0dd7 [#54] Possible bad values returned for lldp_port with some HP gear 2014-07-01 23:06:25 -04:00
Eric A. Miller
08e049eb31 [#54] Possible bad values returned for cdp_id with some HP gear (Joel Leonhardt) 2014-07-01 23:01:24 -04:00
Eric A. Miller
d09e4a125c L2::Netgear inheritance clean up and removal of unnecessary c_* methods defined in Info base class 2014-07-01 22:30:37 -04:00
Eric A. Miller
8353db2bc4 [#71] Don't try to match on a false port description in lldp_if 2014-07-01 22:26:07 -04:00
Eric A. Miller
250d2a0c0a Update change log for L3::Nexus capture of VPC Keepalive IP addresses 2014-07-01 20:07:37 -04:00
Eric A. Miller
46b3127bb5 [#58] Fix inheritance in L3::FWSM and L3::CiscoASA 2014-07-01 20:05:46 -04:00
Eric A. Miller
f1e9e3423d Merge branch 'jvi_nexus' 2014-07-01 19:56:26 -04:00
Eric A. Miller
158ee40f1b Correctly identify device type (class) for instantiated objects which have overridden layers. 2014-06-24 21:14:14 -04:00
Eric A. Miller
713d052b64 POD update 2014-06-24 21:00:29 -04:00
Eric A. Miller
0e28436086 Pseudo ENTITY-MIB methods added to L3::Tasman for hardware information 2014-06-24 21:00:02 -04:00
Jeroen van Ingen
3f7229f4e7 Cisco Nexus workaround: add probable VPC IP address to device IP address table, determined by checking listening UDP sockets 2014-06-24 17:50:03 +02:00
Oliver Gorwits
1ae7f8c8a2 release 3.17
POD tests are not required for distribution
2014-06-23 19:31:14 +01:00
Oliver Gorwits
8e63954c3f release 3.16 2014-06-23 13:53:22 +01:00
Eric A. Miller
0fbcd5f8b1 Documentation updates for Cisco inheritance clean-up 2014-06-22 20:16:34 -04:00
Eric A. Miller
71f84d48dc Clean up inheritance for L3 Cisco classes. With this change all applicable classes will now support LLDP and aggregation methods. 2014-06-22 19:57:48 -04:00
Eric A. Miller
867a635ab8 Remove SNMP::Info inheritance from CiscoStack to prevent issues caused by multiple inheritance, documentation states that this class should not be used directly. 2014-06-22 19:53:53 -04:00
Eric A. Miller
3d2c9ceaf5 Add L3::CiscoSwitch base class for L3 Cisco switches 2014-06-22 19:31:00 -04:00
Eric A. Miller
47736b08ce FWSM and ASA only support methods in CiscoStats, don't inherit other Cisco classes which the devices don't support 2014-06-22 19:28:03 -04:00
Eric A. Miller
3f49e5f8ef Add LLDP and CiscoStpExtensions to L3::Cisco 2014-06-22 17:35:32 -04:00
Eric A. Miller
7c8575bfa5 Clarify CISCO-VLAN-IFTABLE-RELATION-MIB usage comment 2014-06-22 11:21:55 -04:00
Eric A. Miller
102a7e10cc L3::Cisco i_vlan() will now call SUPER and try interface description as a fallback 2014-06-22 11:21:02 -04:00
Eric A. Miller
9148764d20 Remove CiscoImage from all classes as its now included in CiscoStats class 2014-06-22 09:31:44 -04:00
Eric A. Miller
ce619415de Make L2::Cisco base class for L2::Catalyst and L2::C2900
Add CiscoPortSecurity, CiscoStpExtensions, CiscoAgg to L2::Cisco
Remove CiscoQOS and CiscoImage from L2::Cisco
2014-06-21 11:41:17 -04:00
Eric A. Miller
745807007f Remove CiscoImage class as its now included in CiscoStats class 2014-06-21 11:37:55 -04:00
Eric A. Miller
e85b3f70aa Consolidate CiscoImage class into CiscoStats class 2014-06-21 11:36:33 -04:00
Eric A. Miller
edc0fe4fbe Enterprise edition versions 8 and 9 of C1900 support aggregation and stp extensions 2014-06-21 11:35:03 -04:00
Oliver Gorwits
3cceec9044 add MRO synopsis and remove empty all_methods keys 2014-06-20 13:48:36 +01:00
Oliver Gorwits
18602855da use array instead of hash for key/val 2014-06-19 17:04:22 +01:00
Oliver Gorwits
72c223f72e make all_methods explicitly show all subs/globals/funcs 2014-06-19 16:51:12 +01:00
Oliver Gorwits
c6b3c45412 version of all_methods using positional array for sub/global/func 2014-06-19 16:42:36 +01:00
Oliver Gorwits
c60a04f530 Add method resolution discovery in SNMP::Info::MRO helper module 2014-06-19 15:46:42 +01:00
Oliver Gorwits
f7430ab1a6 Add method resolution discovery in SNMP::Info::MRO helper module 2014-06-19 15:44:51 +01:00
Oliver Gorwits
827398228c Add superclass discovery methods 2014-06-18 13:22:09 +01:00
Oliver Gorwits
a264bb36cb release 3.15 2014-06-10 13:17:33 +01:00
Oliver Gorwits
c24e63ec4c Return serial number for Cisco 3850 from entPhysicalSerialNum 2014-06-10 13:12:08 +01:00
Oliver Gorwits
6519570839 Offline mode and Cache export/priming 2014-06-09 22:30:30 +01:00
Oliver Gorwits
2c88544158 implement cache and offline mode 2014-06-09 21:21:26 +01:00
Oliver Gorwits
d0722d3677 release 3.14 2014-06-07 12:35:18 +01:00
Oliver Gorwits
d2b404763b fix pod 2014-06-07 12:34:08 +01:00
Oliver Gorwits
88fb9e4df3 802.3ad LAG support in Layer3::H3C 2014-06-07 12:26:43 +01:00
Jeroen van Ingen
440ec276d3 Fallback in determination whether a device is LLDP capable 2014-06-06 09:41:13 +02:00
Jeroen van Ingen
6e91b90c48 Add LLDP capabilities to Layer2::HPVC class 2014-06-06 09:41:13 +02:00
Jeroen van Ingen
0bfc8c5ed6 Return correct VLAN info with qb_fw_table() on Layer2::HP 2014-06-06 09:41:13 +02:00
Oliver Gorwits
63547c2ea1 Don't unshift length from broken lldpRemManAddrTable implementations (G. Shtern) 2014-05-08 20:02:11 +01:00
Oliver Gorwits
efecf1bbb7 Improvements to Mikrotik module (Alex Z) 2014-04-18 17:08:01 +01:00
Oliver Gorwits
682b8c2a9c release 3.13 2014-03-27 23:22:13 +00:00
Oliver Gorwits
88295e8c1e Cisco PAgP support added to LAG method
Squashed commit of the following:

commit 5cb2d637c7e990bbb8f789b6878f4bcb99778157
Author: Brian De Wolf <git@bldewolf.com>
Date:   Wed Feb 26 18:31:22 2014 -0800

    Implement agg_ports_pagp

    This function was a stub that is now filled out.  Also filled out the function
    that merges PAgP and LAG groups and did minimal testing of the PAgP side (no
    LAG in use in my env).
2014-03-27 23:08:53 +00:00
Jeroen van Ingen
6764f15fd0 HP ProCurve LAG support by inheriting Info::Aggregate class 2014-03-25 11:32:43 +01:00
Oliver Gorwits
8b8ee8693e release 3.12 2014-02-10 21:08:24 +00:00
Oliver Gorwits
fe89001166 Foundry/Brocade aggreate port master ifIndex resolved properly 2014-02-09 12:41:46 +00:00
Eric A. Miller
416a18377c Modify L3::Passport to obtain forwarding table information from RAPID-CITY if information is not available in either Q-BRIDGE-MIB or BRIDGE-MIB. Needed for VSP 9000 prior to version 4.x (Tobias Gerlach) 2014-01-29 20:40:19 -05:00
Eric A. Miller
8fda38184c [#52] NETSCREEN-IP-ARP-MIB considered harmful 2014-01-28 23:06:53 -05:00
Oliver Gorwits
280e9260f7 release 3.11 2014-01-26 13:47:38 +00:00
Eric A. Miller
22642c1095 Skip default CPU management addresses on VSP and 8800/8600 series in L3::Passport to prevent erroneous duplicate addresses 2014-01-20 21:59:53 -05:00
Oliver Gorwits
d68b2047b0 rename IEEE802dot3ag to IEEE802dot3ad 2014-01-19 17:11:42 +00:00
Eric A. Miller
7240f034e5 Regex cleanup for additional support of Avaya 8800 series in L3::Passport 2014-01-19 12:03:50 -05:00
Eric A. Miller
97ce41e363 Additional documentation for new LAG support 2014-01-19 11:00:50 -05:00
Eric A. Miller
31a8abc3b8 Squashed commit of the following:
commit 9be20cd3e24b401d5bfeb2bcb40d61a7b33ffe2c
Author: Eric A. Miller <emiller@cpan.org>
Date:   Sun Jan 19 10:13:41 2014 -0500

    Re-organize part 2

commit 058fc6e000a27b8ffadf5857078e0ab1569d3fa2
Author: Eric A. Miller <emiller@cpan.org>
Date:   Sun Jan 19 10:08:31 2014 -0500

    Re-organize

commit 04f4602d6cf06f917bd4f19db737f877a46fd28e
Author: Eric A. Miller <emiller@cpan.org>
Date:   Sun Jan 19 10:04:09 2014 -0500

    Add MLT agg_ports() support for Avaya

commit 2cdc3aed77f551e3c6d04f4cfe390a876010ebcb
Author: Oliver Gorwits <oliver@cpan.org>
Date:   Sun Jan 12 14:24:38 2014 +0000

    implement LAG support for Foundry

commit 7465816b53981f3211bdeb5a7a414d5a4e65c79f
Author: Oliver Gorwits <oliver@cpan.org>
Date:   Sun Jan 12 13:15:13 2014 +0000

    implement LAG support for Arista

commit 67e8f13f635f4fb450ab5df6e9145830ef72cf7b
Author: Oliver Gorwits <oliver@cpan.org>
Date:   Sun Jan 12 12:59:09 2014 +0000

    update gitignore to ignore SNMP dir

commit df4ca0eb44a4f0e5aa114630f0d22b5c9d7861f3
Author: Oliver Gorwits <oliver@cpan.org>
Date:   Sun Jan 12 12:49:53 2014 +0000

    implement LAG support for Cisco
2014-01-19 10:25:41 -05:00
Eric A. Miller
6b49bfd4c4 methods take precedence over globals, make sure that all classes have methods defined if needed to override new fw_mac and fw_port methods in Bridge class 2014-01-13 20:41:28 -05:00
Eric A. Miller
985b4aab3f Use Q-BRIDGE-MIB as default with fallback to BRIDGE-MIB across all classes for the fw_mac, fw_port, and fw_status methods 2014-01-10 19:26:38 -05:00
Eric A. Miller
a4e7c3a61a Fix Extreme XOS i_vlan_membership - Revert [28bbe0], fix bug with untagged being added to @ret twice (Robert Kerr) 2014-01-09 21:31:58 -05:00
Eric A. Miller
d82d8781c4 [#51] Collect nsIfMngIp when getting IP interfaces in L3::Netscreen 2014-01-04 18:33:20 -05:00
Eric A. Miller
b4c3f92ba3 Modify cdp_cap() to handle devices which return space delimited strings for cdpCacheCapabilities rather than hex strings 2013-12-17 19:18:52 -05:00
Oliver Gorwits
1c57d2eab8 release 3.10 2013-12-16 08:19:41 +00:00
Eric A. Miller
409de77b2c Merge branch 'master' of ssh://git.code.sf.net/p/snmp-info/code
Conflicts:
	ChangeLog
2013-12-15 20:25:31 -05:00
Eric A. Miller
3e22e24dc9 Data values of zero are now sent to munge method instead of skipped 2013-12-15 20:19:08 -05:00
Oliver Gorwits
17b1bdacfe release 3.09 2013-12-16 00:02:39 +00:00
Eric A. Miller
b570fdbc89 Enable new *_cap methods in _get_topo_data() 2013-12-15 18:07:26 -05:00
Eric A. Miller
cceb0f4e5e Update change log 2013-12-15 11:05:29 -05:00
Eric A. Miller
04f8c7f7e2 Add c_cap() method which return a hash of arrays with each array containing the system capabilities reported as supported by the remote system via CDP or LLDP. 2013-12-15 11:04:14 -05:00
Eric A. Miller
37aca89af7 munge_caps() is no longer in use, so remove 2013-12-15 10:24:45 -05:00
Eric A. Miller
5445a496db Munge fdp_capabilities the same as cdp_capabilities, retain all the bits during munge 2013-12-15 10:21:50 -05:00
Eric A. Miller
0ab93b142c Correctly unpack bits in munge_bits() 2013-12-15 10:15:55 -05:00
Eric A. Miller
d39dc76949 [RT: #78232] Extend cdpCacheCapabilities to show more CDP bits
Add cdp_cap() which returns hash of arrays with each array containing the system capabilities supported by the remote system.
2013-12-15 10:11:34 -05:00
Eric A. Miller
c6abd7b62b Add lldp_cap() which returns hash of arrays with each array containing the system capabilities supported by the remote system. 2013-12-15 08:56:27 -05:00
Eric A. Miller
0e572db832 lldp_platform() now tries to return something useful from either lldp_rem_sysdesc() or lldp_rem_sysname(). 2013-12-15 08:34:27 -05:00
Eric A. Miller
602bb15b47 Alias lldp_rem_sysdesc() as lldp_platform() to provide a clue to type of remote LLDP device. 2013-12-08 21:55:24 -05:00
Eric A. Miller
b4882285c4 Fix power module indexing 2013-11-21 20:36:34 -05:00
Eric A. Miller
834b27bdad Fix for single instance table leafs in test_class_mocked.pl 2013-11-19 21:05:07 -05:00
Eric A. Miller
7db148a5a1 Aruba POE Support
Aruba utilizes Q-BRIDGE-MIB when available for VLAN information to better support wired switches
Capture serial number on newer Aruba devices
2013-11-19 21:03:37 -05:00
Eric A. Miller
9e332095a2 Attempt to fill in missing bp_index mappings on wired Aruba switches. 2013-11-18 21:33:17 -05:00
Eric A. Miller
7bf950026b POD spelling corrections 2013-11-17 20:35:12 -05:00
Eric A. Miller
f246444d89 [#41] Riverbed Steelhead support added in new class L3::Steelhead 2013-11-17 20:28:49 -05:00
Eric A. Miller
8e84aea1bf Add identification of IOS XR and version in CiscoStats 2013-11-17 14:53:41 -05:00
Eric A. Miller
d6a7a944cc Don't assume entity index 1 is the chassis and has serial in Layer3. 2013-11-17 14:50:21 -05:00
Eric A. Miller
fb478d3c7b When determining the BSSID in Airespace there is only one hexadecimal digit available so skip if outside the range of 1-16, 17 is reserved for 3rd party AP's. 2013-11-08 19:42:40 -05:00
Eric A. Miller
24f8a8fdba Remove "Switch" from model name in L3::Foundry 2013-11-08 19:16:42 -05:00
Eric A. Miller
28bbe0ee19 Modify _xos_i_vlan_membership() in L3::Extreme to only include tagged ports 2013-11-07 23:28:13 -05:00
Oliver Gorwits
c21ca2062e support *i_untagged in Bridge.pm to work on other platforms (falls back to *i_vlan) 2013-11-03 00:36:54 +00:00
Oliver Gorwits
e3e289a27c set_i_untagged combines both set_i_vlan and set_i_pvid in one method 2013-11-02 19:19:26 +00:00
Eric A. Miller
9540f6b9d3 L3::IBMGbTor defaults to lldpInfoRemoteDevicesLocalPort in lldp_if() unless there is a cross reference to either ifAlias or ifDescr
L3::IBMGbTor lldp_id() now uses lldpInfoRemoteDevicesSystemName
Add lldp_platform() support in L3::IBMGbTor
L3::IBMGbTor POD updates
2013-11-02 11:02:03 -04:00
Eric A. Miller
539943fb0f Correct LLDP address type detection in L3::IBMGbTor 2013-10-25 20:15:01 -04:00
Eric A. Miller
7a8ebffd40 Merge branch 'master' of ssh://git.code.sf.net/p/snmp-info/code
Conflicts:
	ChangeLog
2013-10-23 23:27:51 -04:00
Eric A. Miller
3d48f4e210 [#45] IBM (Blade Network Technologies) Rackswitch support in new class L3::IBMGbTor 2013-10-23 23:18:26 -04:00
Oliver Gorwits
667cdbea13 release 3.08 2013-10-22 09:54:57 +01:00
Eric A. Miller
f5fb4dd3b0 Silence warning from uninitialized variable in L3::Passport e_descr() 2013-10-18 19:19:46 -04:00
Eric A. Miller
5a2722d049 Clean up more model names in L2::Baystack 2013-10-18 19:13:04 -04:00
Eric A. Miller
f3b6cfbd01 [#49] Perl 5.18 UNIVERSAL::can change could cause infinite loop 2013-10-18 19:02:46 -04:00
Oliver Gorwits
e239a6057c release 3.07_001 2013-10-17 19:05:15 +01:00
Bill Fenner
9b1c439e15 Use LLDP in Layer3::Aruba, for switches. 2013-10-17 07:35:13 -07:00
Eric A. Miller
074f2e7c8f Fix ignore Net-SNMP configuration file snmp.conf option in t/test_class.pl and t/util/test_class_mocked.pl 2013-10-15 22:26:51 -04:00
Eric A. Miller
4b1533e925 Don't try to munge undef values 2013-10-15 21:52:18 -04:00
Eric A. Miller
6812a60668 Support peth_port_power() power supplied by PoE ports in L2::Baystack 2013-10-15 21:50:49 -04:00
Eric A. Miller
6f0cb846f0 Get AP MAC->IP mappings arp cache table augmentation methods 2013-10-15 20:30:12 -04:00
Eric A. Miller
c79307692b [#46] Brocade (Foundry) Module Support
Brocade (Foundry) POE Support
2013-10-15 20:27:09 -04:00
Bill Fenner
08b2f50ac7 On EOS, the LLDP port ID is a dot1d port.
Don't bother trying the reverse-mapping through ifAlias trick, since
ifAlias is of course non-unique, if the user configures the same
description for multiple ports (e.g., "open port").
2013-10-11 11:22:20 -07:00
Eric A. Miller
3577fa1e42 update test_class.pl utility to allow ignore of snmp.conf and test summarize more standard class methods 2013-10-07 23:24:38 -04:00
Oliver Gorwits
cb6630582a Add docs note about make_snmpdata.pl under EXTENDING SNMP::Info 2013-10-07 20:59:11 +01:00
Bill Fenner
ca5fff31a7 Added missing ChangeLog entries for my two recent commits
4e2b642ed1: LLDP lldp_port()
cfce6296fb: Aironet IOS15
2013-10-07 09:49:19 -07:00
Bill Fenner
69b1f1e29e Merge branch 'master' of ssh://git.code.sf.net/p/snmp-info/code 2013-10-07 09:36:57 -07:00
Bill Fenner
4e2b642ed1 If the port ID claims to be interfaceName, use it for lldp_port
The LLDP spec says that if lldpRemPortIdSubtype is
"interface name", then lldpRemPortId should contain
ifName.  It doesn't say much about lldpRemPortDesc;
some vendors seem to always leave it empty, some use
the interface description / ifAlias.  Our algorithm
for lldp_port is now basically: If we find that
lldpRemPortIdSubtype is "interface name", then use
the lldpRemPortId, else use lldpRemPortDesc if set,
else use lldpRemPortId.
2013-10-07 09:32:18 -07:00
Eric A. Miller
3c26ce2a55 [#67] Add the possibility to set speed for Layer3::C4000 2013-10-04 21:28:37 -04:00
Eric A. Miller
7d2cf97c06 [#68] Fix device_port entries for switches with non-unique ifDesc 2013-10-04 21:22:29 -04:00
Bill Fenner
cfce6296fb Identify Layer2::Aironet running IOS15 2013-10-04 12:46:43 -07:00
Eric A. Miller
1601703ff2 [#69] set speed and duplex on Cisco VSS system (psychiatric) 2013-10-03 22:01:27 -04:00
Eric A. Miller
905ad3e2b7 miscellaneous POD updates 2013-10-03 20:26:11 -04:00
Eric A. Miller
15b7e95545 Rewrite of L3::Aruba, now supports pseudo ENTITY-MIB methods to gather module information, more interface information for APs, more wireless information to include client stats, and arpnip information from wireless clients. WARNING: AP device interfaces are now based on AP MAC and radio versus BSSID to align with other wireless classes. 2013-10-03 20:07:27 -04:00
Eric A. Miller
247f6f038d modify munge_null to remove all control characters 2013-10-02 23:39:52 -04:00
Eric A. Miller
7c6df7cce3 [#64] Add i_speed_admin() to L2::2900 (psychiatric) 2013-10-01 21:42:09 -04:00
Eric A. Miller
1a92306d51 [#66] Support for VSS via CISCO-VIRTUAL-SWITCH-MIB in L3::6500 2013-10-01 21:31:51 -04:00
Oliver Gorwits
59e9fae1d5 release 3.07 2013-10-01 20:21:29 +01:00
Eric A. Miller
998094241d update changelog with Nexus bug fixes 2013-09-29 23:35:24 -04:00
Eric A. Miller
d6c3313138 fix for device serial, just use entry with no parent since class could be stack rather than chassis 2013-09-29 23:17:32 -04:00
Eric A. Miller
b7e252b91a Overrides ipAddrTable methods, some versions do not index the table with the IPv4 address in accordance with the MIB definition.
Fix for device serial number to use the fabric serial number.
2013-09-29 22:27:39 -04:00
Jeroen van Ingen
6071beb15d Basic support for Pica8 switches in L3::Pica8 2013-09-20 14:55:48 +02:00
Oliver Gorwits
cda830686d [#48] Switch duplicate J9624A for J9626A in Layer2/HP (R. Kerr) 2013-08-24 16:57:24 +01:00
Oliver Gorwits
a29b888620 new release - 3.05 2013-08-16 17:54:08 +01:00
Oliver Gorwits
ae5a4d413d new release - 3.04_001 2013-08-16 09:27:04 +01:00
Nic Bernstein
03c4d1e81f Merge commit 'c3a727'
Updated ChangeLog to resolve conflicts
Conflicts:
	ChangeLog
2013-08-14 08:32:01 -05:00
Nic Bernstein
4efa0fd509 ENHANCEMENT ADD CISCO SMALL BUSINESS SUPPORT
Updated new package Info::Layer2::CiscoSB to remove hackish
index with index derived from EntPhysicalEntry table search.
2013-08-09 12:21:10 -05:00
Nic Bernstein
c3a727ce10 ENHANCEMENT TO INFO::LAYER2::NETGEAR
Clean up recent code, fix POD details, remove unnecessary hacks.
2013-08-09 10:39:45 -05:00
Nic Bernstein
afa97d845b ENHANCEMENT TO INFO::LAYER2::NETGEAR
* Add LLDP support for Netgear devices which provide it.
	* Change $netgear->interfaces() to use ifName rather than ifDescr
	  as the former is unique per interface while the latter is not.
	  If ifName is not present, concatenate ifDescr and ifIndex
	  to achieve a unique value.
	* Properly report hardware version, Serial No. and OS Version
2013-08-08 18:15:21 -05:00
Nic Bernstein
8671f65bfd ENHANCEMENT TO NETGEAR SUPPORT
Added LLDP support for Netgear devices which provide it.
Changed $netgear->interfaces() to use ifName rather than ifDescr
as the former is unique per interface while the latter is not.
2013-08-08 14:15:28 -05:00
Nic Bernstein
37737a6494 UPDATE CHANGELOG FOR CISCOSB ADDITION 2013-08-02 10:57:03 -05:00
Nic Bernstein
0ce8a55b88 ADD SUPPORT FOR CISCO SMALL BUSINESS DEVICES
New Feature: Support for the Cisco Small Business product line.  These
switches, currently the Sx300 and Sx500, were inherited from Linksys
and do not run IOS.

This has been tested with the following Cisco products:
 - SRW2024P-K9 V02i   (SG 300-28P)
 - SRW208P-K9 V02     (SF 300-8P)
 - SRW224G4P-K9 V02   (SF 300-24P)

We welcome reports from others, either success or failure.
2013-08-02 10:44:58 -05:00
Jeroen van Ingen
22dd49c1dc Add HP 2530 and 2920 models to Layer2::HP MODEL_MAP & re-sort the list 2013-08-02 15:34:54 +02:00
Oliver Gorwits
fd5812aefc version bump - 3.03 2013-07-11 12:36:58 +01:00
Oliver Gorwits
f4e37cdabe Add missing =back to POD (A. Hartmaier) 2013-07-11 12:34:51 +01:00
Oliver Gorwits
5324760463 version bump - 3.02 2013-07-08 21:25:14 +01:00
Oliver Gorwits
27120045d2 [RT#86725] - Identify Cisco Catalyst 3850 as Layer3::C6500 (C. Causer) 2013-07-08 21:19:32 +01:00
Oliver Gorwits
abfd93ea1b remove evil tabs 2013-07-08 21:15:06 +01:00
Jeroen van Ingen
070d911c60 Add support for Aruba LAN switches.
Known issue with Aruba AOS 7.2.0.0: nodes on "trusted" LAN ports in "access"
mode point to non-existing bp_index values; they will be mapped to the wrong
interface or not be mapped to an interface at all.
2013-06-24 10:42:58 +02:00
Jeroen van Ingen
8b14776c9a Add release date to headings for version 3.01 and 3.02 2013-06-24 10:35:30 +02:00
Oliver Gorwits
2d62372c7f Identify Cisco Aironet 1140 APs as Layer2::Aironet 2013-05-25 01:25:59 +01:00
Oliver Gorwits
3eae0b9d5c Support Alcatel devices with layer3 features. 2013-05-21 09:35:38 +01:00
Nic Bernstein
9a722bb2f8 Properly pull os_ver from Netgear GS series switches. 2013-04-15 16:30:32 -05:00
Oliver Gorwits
d3e39a4132 bump version for stable release 2013-04-13 11:05:26 +01:00
Oliver Gorwits
d82d495dcf final patch from Nic to fix arrayism 2013-04-11 17:07:47 +01:00
Oliver Gorwits
198df7cee4 update changelog 2013-04-11 17:06:52 +01:00
Oliver Gorwits
46cdb4c166 update manifest 2013-04-11 17:01:37 +01:00
Oliver Gorwits
62005c52d2 update VERSION 2013-04-11 17:00:28 +01:00
Oliver Gorwits
ca7651628d bug fix for Class name typos 2013-04-11 16:59:02 +01:00
Alexander Hartmaier
6358b7ad70 override i_description for Cisco ASA firewalls to return the configured interface name 2013-04-10 18:46:39 +02:00
Alexander Hartmaier
8aca1d97c0 fixed Cisco ASA detection for newer versions that return has_layer(3) 2013-04-10 18:27:08 +02:00
Moe Kraus
275a533843 added subclass for Cisco ASA firewalls which filters bad mac addresses in b_mac method 2013-04-10 18:26:31 +02:00
Oliver Gorwits
21bd4c662d bump version again for dev release 2013-02-11 13:43:19 +00:00
Oliver Gorwits
47d9d091d1 fix code in L3/Extreme to pass tests and be more correct 2013-02-11 13:41:49 +00:00
Eric A. Miller
da2ea09e84 Bump version 2013-02-10 22:52:51 -05:00
Eric A. Miller
9c71bdbcef [3598896] - Lantronix device support (J R Binks) and [3598337] - Lantronix SLC support 2013-02-10 22:40:03 -05:00
Eric A. Miller
318f9518b1 Support Juniper (Trapeze) Wireless Controllers in new class L2::Trapeze 2013-02-10 22:16:43 -05:00
Eric A. Miller
19e9fb5f67 Add more default topology methods to test_class_mocked.pl 2013-02-10 21:31:05 -05:00
Eric A. Miller
41833c1f29 Add new classes to MANIFEST 2013-02-10 21:28:40 -05:00
Eric A. Miller
4e2f950e41 [3033731] - Alcatel-Lucent OmniSwich AMAP Support 2013-02-10 21:27:52 -05:00
Eric A. Miller
ebe3f39ea1 Update README 2013-02-10 13:12:34 -05:00
Eric A. Miller
c6521d0b48 Use default Perl Critic policy as the older Conway PBP policy is outdated and includes depreciated modules, set severity to 5 2013-02-10 13:06:29 -05:00
Eric A. Miller
74b5c9f0e3 Use default Perl Critic policy as the older Conway PBP policy is outdated and includes depreciated modules 2013-02-10 13:05:46 -05:00
Eric A. Miller
4bfebe1563 Topology c_* methods should no longer be defined / overridden in device classes 2013-02-10 13:00:51 -05:00
Eric A. Miller
2ac4e65827 Mark extremeware_i_vlan(), extremeware_i_vlan_membership(), xos_i_vlan(), and xos_i_vlan_membership() as private, external API is i_vlan() and i_vlan_membership(). POD updates. 2013-02-10 12:58:22 -05:00
Eric A. Miller
b7a135db10 POD typo 2013-02-10 12:40:10 -05:00
Eric A. Miller
d4c460fd3d Fix for Perl::Critic flagged warning 2013-02-10 12:38:16 -05:00
Eric A. Miller
8f0ac35381 POD updates - spell check 2013-02-10 12:34:45 -05:00
Eric A. Miller
a9a3229c22 Bump version for first 3.0 beta release 2013-02-10 10:23:35 -05:00
Eric A. Miller
5da622ff88 POD update for Pod::Coverage 2013-02-10 10:03:54 -05:00
Eric A. Miller
32f33f5150 Update for removal of L2::Bay and L2::Foundry 2013-02-10 09:56:03 -05:00
Eric A. Miller
242013f3b0 - Corrections to mappings of interface attributes previously inherited from base class
- Simplify nsIfIndex to ifIndex mapping in _nsif_if_map()
- Fallback for interface attributes not support on versions prior to 5.4
- Change vendor to juniper
- Mark internal mapping methods private
- Documentation updates
2013-02-10 09:50:37 -05:00
Eric A. Miller
e46deb505f Fix for i_speed_admin() issue reported by Jiri Dvorak 2013-02-09 20:39:45 -05:00
Eric A. Miller
5d443fd1be fix for mocked getnext method when first IID is zero 2013-02-08 22:19:46 -05:00
Eric A. Miller
d53152858c [3323814] - Arp support for Netscreen (David Baldwin)
[3323821] - Add support for Netscreen w/ WLAN (eg SSG5) (David Baldwin)
2013-02-04 23:24:06 -05:00
Eric A. Miller
aefb31fb58 Updates to device matrix for Airespace, APC, Avaya, Bluecoat, Cisco, Kentrox, Mikrotik, and PacketFront. Change cdp attribute to topo. 2013-02-04 19:15:36 -05:00
Eric A. Miller
0be8219b9c Update device matrix for Extreme support 2013-02-04 18:22:35 -05:00
Eric A. Miller
cbb8bc5d77 Update device matrix for Citrix support 2013-02-04 18:17:16 -05:00
Eric A. Miller
6969dcbfec Remove depreciated L2::Bay and L2::Foundry for 3.0 release. Functionality is available through L2::Baystack and L3::Foundry respectively and they are no longer referenced by other classes. 2013-02-04 18:04:14 -05:00
Eric A. Miller
9e463ddddf Updates to documentation for Brocade acquisition of Foundry. Update of device support matrix for Foundry 2013-02-03 17:10:43 -05:00
Eric A. Miller
5ec034c475 Update Radware (Alteon) support in device matrix 2013-02-03 15:49:44 -05:00
Eric A. Miller
1694e648fc Update Juniper support device matrix 2013-02-03 15:13:22 -05:00
Eric A. Miller
16aa96ebf4 Updates to documentation for Avaya acquisition of Nortel. Update of device support matrix for recent Avaya additions 2013-02-03 14:35:51 -05:00
Eric A. Miller
43d06e184d Two new utilities added in t/util to assist in developing device support from snmpwalk output 2013-01-28 22:06:28 -05:00
Eric A. Miller
3ff432034a Fix typos in i_vlan(), ignore VirtualRouter interfaces 2013-01-28 20:15:36 -05:00
Eric A. Miller
0325bb1f25 Use fully qualified name when adding dynamically generated method to symbol table 2013-01-16 22:59:57 -05:00
Eric A. Miller
b9aebf7e9e - Move AIRESPACE-*-MIB methods to base Airespace class
- Add cd11_ssid() to support Nedisco feature request [3598089] Collect SSID in macsuck
2013-01-03 23:05:09 -05:00
Eric A. Miller
e1e693a7c8 [3599277] - Q-BRIDGE Support to collect VLAN in macsuck 2013-01-02 22:42:56 -05:00
Jeroen van Ingen
c8c548fe97 Add 'san-os' to CiscoStats os() method for Cisco devices running SAN-OS 2012-12-21 16:49:02 +01:00
Jeroen van Ingen
ddf971ed54 H3C class: use Q-BRIDGE-MIB, minor POD updates 2012-12-21 16:44:14 +01:00
Eric A. Miller
61e8f47986 [3185391] - Add support for F5 load balancers 2012-12-20 23:50:10 -05:00
Jeroen van Ingen
3ce9f403e6 Fix typo in LLDP.pm, noticed on previous commit... 2012-12-17 16:17:29 +01:00
Jeroen van Ingen
3741010044 Add extra check in LLDP local interface determination to improve H3C support 2012-12-17 16:15:32 +01:00
Eric A. Miller
badfb12243 Improved support of XOS based Extreme devices 2012-12-16 00:04:16 -05:00
Eric A. Miller
0713a6457c L2::Airespace now reports AP Ethernet MAC as port MAC for radio ports 2012-12-14 23:28:04 -05:00
Jeroen van Ingen
9abe744dac Clearly note that CiscoStats will now report IOS XE as 'ios-xe' and not as 'ios' anymore 2012-12-14 16:14:34 +01:00
Jeroen van Ingen
b4974aeacd Fix regex mistake in previous CiscoStats.pm update 2012-12-14 14:41:54 +01:00
Jeroen van Ingen
688a0de498 Add fallback method to determine IOS & IOS-XE versions when parsing description() failed 2012-12-13 17:10:35 +01:00
Jeroen van Ingen
7cef8465fa Load extra MIBs in H3C class to improve object type resolving 2012-12-13 14:40:03 +01:00
Eric A. Miller
532279d2b8 [rt.cpan.org #81781] [PATCH] Fix spelling error in Info/Layer7/APC.pm 2012-12-11 20:51:40 -05:00
Eric A. Miller
d67ffc3a6c Merge branch 'og-2-10-force10'
Conflicts:
	ChangeLog
	Info.pm
	Info/CiscoStpExtensions.pm
2012-12-11 20:22:17 -05:00
Eric A. Miller
c6776b1755 Multiple bug fixes for AUTOLOAD generated set_ methods 2012-12-10 20:06:42 -05:00
Oliver Gorwits
49566977ad update README 2012-12-08 23:35:40 +00:00
Oliver Gorwits
daf512e33e bump version 2012-12-08 23:35:25 +00:00
Oliver Gorwits
74816fc043 Add fall-back for sysDescr on Force10 2012-12-08 23:33:27 +00:00
Eric A. Miller
d94630af35 Merge branch 'master' of ssh://snmp-info.git.sourceforge.net/gitroot/snmp-info/snmp-info 2012-12-07 21:36:37 -05:00
Eric A. Miller
999dd1f468 Remove debug comment 2012-12-07 21:28:48 -05:00
Eric A. Miller
c3d5631c3c Doc update 2012-12-07 21:26:54 -05:00
Eric A. Miller
9dae6b20d7 Add support for 802.11n client tx rates 2012-12-07 21:26:00 -05:00
Carlos Vicente
4005640a2b Check if \$stp_ver is defined (Wim Vandersmissen) 2012-12-07 09:23:52 -05:00
Eric A. Miller
ca446faacf Support for Citrix Netscaler appliances in new class L7::Netscaler 2012-12-05 19:56:29 -05:00
Eric A. Miller
240539bd24 [3564920] LLDP-MIB::lldpLocPortDesc isn't always unique part 2 - use ifName() instead of i_name() 2012-12-04 23:15:43 -05:00
Eric A. Miller
08e335f39c Typo in IPV6-MIB i6_n2p_phys_addr definition 2012-12-04 21:48:33 -05:00
Eric A. Miller
a9cc14b265 reverse accidental deletion during last commit 2012-12-04 20:38:36 -05:00
Eric A. Miller
9505f119b3 New configuration option 'IgnoreNetSNMPConf' will ignore Net-SNMP configuration files on object initialization 2012-12-04 20:13:44 -05:00
Jeroen van Ingen
683edf1668 Initial version for L3::H3C class. Work in progress, needs a lot of testing. LLDP doesn't map neighbors to correct ports yet. 2012-12-03 19:42:09 +01:00
Eric A. Miller
d9c52c1a88 Update internal comments 2012-11-30 20:20:47 -05:00
Eric A. Miller
0f1a76a564 AUTOLOAD once again tries to determine if a MIB leaf is a single instance returning a scalar or part of a table returning a reference to a hash. 2012-11-30 20:08:32 -05:00
Eric A. Miller
15cd354bae [3564920] LLDP-MIB::lldpLocPortDesc isn't always unique, use LLDP-MIB::lldpLocPortId this cross references to ifName 2012-11-29 22:48:24 -05:00
Eric A. Miller
91d67ed0ae Support for newer Radware Alteon ADC switches 4408/4416/5412/5224 and older AWS 2000/3000 series in existing L3::AlteonAD 2012-11-29 22:45:09 -05:00
Eric A. Miller
0740a7bd5e Correct an issue in _load_attr() when specifying the Module (MIB) as a prefix to resolve leaf name conflicts between private MIBs. Add even more verbose debugging output for _global and _load_attr() - now reports Module qualified leaf name and full OID to include any partial passed. 2012-11-29 21:35:38 -05:00
Eric A. Miller
84493a99b4 Merge branch 'em-autoload-topo'
Conflicts:
	ChangeLog
2012-11-28 23:18:39 -05:00
Eric A. Miller
f730fa3325 update changelog 2012-11-28 22:52:47 -05:00
Eric A. Miller
4b1007cb66 Support Avaya (Trapeze) Wireless Controllers in new class L2::NWSS2300 2012-11-28 22:48:24 -05:00
Eric A. Miller
436f7442b6 Add support for Avaya VSP 7000 series 2012-11-28 19:49:25 -05:00
Eric A. Miller
3af05ebba5 correction for passing partial on initial AUTOLOAD 2012-11-28 19:38:04 -05:00
Eric A. Miller
a83bc1bcb2 New global 2012-11-27 23:05:23 -05:00
Eric A. Miller
af65bb3a2b Add support for Avaya VSP 9000 2012-11-27 22:41:06 -05:00
Eric A. Miller
f2d9f6be27 New global 2012-11-27 22:39:25 -05:00
Eric A. Miller
ecea4ef4a4 Correct naming of global id method 2012-11-26 23:03:55 -05:00
Eric A. Miller
e4e099510a Documentation updates 2012-11-26 23:03:01 -05:00
Eric A. Miller
de28ff96c2 Strip orig_ from method name in _global() and _load_attr() 2012-11-26 20:46:26 -05:00
Eric A. Miller
6692ddcf1f Override peth_power_watts() with Extreme specific MIB 2012-11-26 19:51:05 -05:00
Eric A. Miller
ba7a105eb1 Additional documentation 2012-11-26 19:36:11 -05:00
Eric A. Miller
b9fb232859 New globals 2012-11-26 19:29:10 -05:00
Eric A. Miller
6f54cb429e New global box_descr() 2012-11-26 19:22:40 -05:00
Eric A. Miller
ae3398b11a Replace map function with hash iteration for munge handling in _load_attr() and _show_attr 2012-11-25 22:42:49 -05:00
Eric A. Miller
e97693d12d Rename c_* methods to cdp_* since c_* methods now report all topology. 2012-11-25 21:46:54 -05:00
Eric A. Miller
435bb7dbe2 No longer emulate CDP methods in other discovery protocol classes, use the class name as base (sonmp, fdp) rather than cdp. 2012-11-25 21:45:56 -05:00
Eric A. Miller
70bc5e78e9 Remove c_* methods from device classes as top level methods now handle. 2012-11-25 21:43:31 -05:00
Eric A. Miller
a163e5b82c Remove c_* methods from device classes as top level methods will now handle. 2012-11-25 21:39:32 -05:00
Eric A. Miller
5eb66fe442 Create new top level c_* topology methods and has_topo() method. 2012-11-25 20:38:55 -05:00
Eric A. Miller
b6cf462b16 Top level changes to Info.pm
1 - Simplify AUTOLOAD()
2 - Add dynamically generated methods to symbol table to avoid AUTOLOAD on subsequent calls
3 - Override UNIVERSAL::can() to work with dynamic methods
4 - [3160037] - Support _raw suffix on methods to skip munging
5 - Add default bulkwalk_no()
2012-11-23 22:58:46 -05:00
128 changed files with 17826 additions and 6561 deletions

9
.gitignore vendored Normal file
View File

@@ -0,0 +1,9 @@
*.db
SNMP
*.komodo*
blib/
META.*
MYMETA.*
Makefile
Makefile.old
pm_to_blib

484
ChangeLog
View File

@@ -1,8 +1,434 @@
SNMP::Info - Friendly OO-style interface to Network devices using SNMP.
version 3.28 (2015-06-18)
[ENHANCEMENTS]
* Add Layer3::Huawei class for Huawei Quidway switches
* Modified generic Layer3::Cisco class: use community based indexing if
the device returns a value for vtpVersion
[BUG FIXES]
* Correct port indexing of VSP 4K in L3::Passport
version 3.27 (2015-05-05)
[ENHANCEMENTS]
* Cisco Aironet PSU information
* Only log adding mibdirs at debug level 2
[BUG FIXES]
* [#221] Drop Cisco Voice VLAN 4096
version 3.26 (2015-03-07)
[ENHANCEMENTS]
* Add fan and psu reporting to Layer3::Dell
* Include Voice VLANs in (tagged) VLAN Membership on Cisco devices
[BUG FIXES]
* Fix typo in MRO::print_superclasses
version 3.25 (2015-02-25)
[ENHANCEMENTS]
* Add new model name mappings for to Layer2::HP
version 3.24 (2015-02-04)
[ENHANCEMENTS]
* Support RSTP and ieee8021d STP operating modes in RapidCity
[BUG FIXES]
* Fix single instance leafs defined in %FUNCS to behave like table leafs
* Fix incorrect FDB ID to VLAN ID mapping in Bridge and L3:Enterasys
version 3.23 (2014-12-09)
[ENHANCEMENTS]
* Update MIB used in L1::Asante
* Enhanced STP support for L3::Extreme
[BUG FIXES]
* Fix Cisco VLAN membership issue introduced in 3.22 related to capturing
port VLANs on Cisco interfaces which are configured for trunking but
are not in operational trunking mode
version 3.22 (2014-12-02)
[NEW FEATURES]
* Support obtaining FDB in Avaya SPBM edge deployments in L2::Baystack
NOTE: This requires a RAPID-CITY MIB with the rcBridgeSpbmMacTable
* Support for Fortinet devices in new class L3::Fortinet
[ENHANCEMENTS]
* Include LLDP support in base Layer2 and Layer3 classes. Due to the
widespread adoption of LLDP, this should improve mapping networks
when devices aren't supported in a more specific class.
* No longer ignore interfaces based on name, in base L2/L3/L7 device
classes. For several device classes SNMP::Info will now return tunnel
interfaces and/or loopbacks, if present.
* Use dot1qVlanCurrentTable if available to capture dynamic and static
VLANs, fall back to dot1qVlanStaticTable if not available.
* New method i_vlan_membership_untagged() for VLANs transmitted as
untagged frames.
* Capture Aruba AP hardware and software version when available
* New STP methods to support gathering information from devices running
mutiple STP instances such as PVST and MST
* Enhanced STP support for Avaya and Foundry classes
[BUG FIXES]
* [#64] Misdetection: Wireless APs, add products MIB to L2::3Com
* Use FDB ID to VID mapping if available to determine end station VLAN
rather than assuming they are the same.
* Capture port VLANs on Cisco interfaces which are configured for
trunking but are not in operational trunking mode
* Correct munging of stp_p_port(), i_stp_port(), and stp_root() methods
in Bridge
* In LLDP.pm don't create a variable in a conditional
version 3.20 (2014-09-08)
[NEW FEATURES]
* Override layers in Juniper for routers with switch modules
[BUG FIXES]
* Update MANIFEST to include Ubiquiti files
version 3.19 (2014-08-01)
[NEW FEATURES]
* Support for Ubiquiti Access Points in new class L2::Ubiquiti (begemot)
* Preliminary support for 3Com switches in new class L2::3Com (begemot)
[BUG FIXES]
* Fix Avaya detection lldp_port()
* Silence uninitialized value warning in L3::Cisco
* H3C fixes (begemot)
* Only use L2::ZyXEL_DSLAM for ZyXEL DSL modules
version 3.18 (2014-07-02)
[ENHANCEMENTS]
* Pseudo ENTITY-MIB methods added to L3::Tasman for hardware information
* Capture VPC Keepalive IP addresses in L3::Nexus (jeroenvi)
* L2::Netgear inheritance clean up and removal of unnecessary c_* methods
defined in Info base class
[BUG FIXES]
* Correctly identify device type (class) for instantiated objects which
have overridden layers.
* [#58] Fix inheritance in L3::FWSM and L3::CiscoASA
* [#71] Don't try to match on a false port description in lldp_if
* [#54] Possible bad values returned for cdp_id and lldp_port with some HP
gear (Joel Leonhardt)
version 3.17 (2014-06-23)
[ENHANCEMENTS]
* POD tests are not required for distribution.
version 3.16 (2014-06-23)
[ENHANCEMENTS]
* Add method resolution discovery in SNMP::Info::MRO helper module
* Consolidate CiscoImage class into CiscoStats class
* Clean up inheritance for Cisco classes. With this change
all applicable classes now inherit CiscoAgg, CiscoStpExtensions,
CiscoPortSecurity, CiscoPower, and LLDP classes.
* Remove inheritance of classes the devices do not support in L3::FWSM
and L3::CiscoASA
[BUG FIXES]
* Use CiscoVTP methods to get interface VLAN in L3::Cisco rather than
solely relying on the interface description.
version 3.15 (2014-07-10)
[NEW FEATURES]
* Offline mode and Cache export/priming.
[ENHANCEMENTS]
* Return serial number for Cisco 3850 from entPhysicalSerialNum
[BUG FIXES]
* Cisco SB serial number probably did not work
version 3.14 (2014-06-07)
[ENHANCEMENTS]
* Improvements to Mikrotik module (Alex Z)
* Don't unshift length from broken lldpRemManAddrTable implementations (G. Shtern)
* 802.3ad LAG support in Layer3::H3C
* Add LLDP capabilities to Layer2::HPVC class
[BUG FIXES]
* Return correct VLAN info with qb_fw_table() on Layer2::HP
version 3.13 (2014-03-27)
[ENHANCEMENTS]
* Cisco PAgP support added to LAG method
* HP ProCurve LAG support by inheriting Info::Aggregate class
version 3.12 (2014-02-10)
[ENHANCEMENTS]
* Modify L3::Passport to obtain forwarding table information from
RAPID-CITY if information is not available in either Q-BRIDGE-MIB or
BRIDGE-MIB. Needed for VSP 9000 prior to version 4.x (Tobias Gerlach)
[BUG FIXES]
* [#52] NETSCREEN-IP-ARP-MIB considered harmful
* Foundry/Brocade aggreate port master ifIndex resolved properly
version 3.11 (2014-01-26)
[NEW FEATURES]
* [#31] port-channel (aggregate) support. Aggregate support added in new
agg_ports() method. Inital support added for Arista (ifStack),
Avaya (MLT), Brocade (MST), and Cisco (802.3ad).
[ENHANCEMENTS]
* Use Q-BRIDGE-MIB as default with fallback to BRIDGE-MIB across all
classes for the fw_mac, fw_port, and fw_status methods
* Additional support for Avaya 8800 series in L3::Passport
[BUG FIXES]
* Modify cdp_cap() to handle devices which return space delimited strings
for cdpCacheCapabilities rather than hex strings
* [#51] Netdisco shows broken topology for devices with no alias entry
for primary IP - Collect nsIfMngIp when getting IP interfaces in
L3::Netscreen
* Fix Extreme XOS i_vlan_membership - Revert [28bbe0], fix bug with
untagged being added to @ret twice (Robert Kerr)
* Skip default CPU management addresses on VSP and 8800/8600 series in
L3::Passport to prevent erroneous duplicate addresses
version 3.10 (2013-12-16)
[BUG FIXES]
* Data values of zero are now sent to munge method instead of skipped
version 3.09 (2013-12-15)
[NEW FEATURES]
* [#45] IBM (Blade Network Technologies) Rackswitch support in new class
L3::IBMGbTor
* [] set_i_untagged combines both set_i_vlan and set_i_pvid in one method
* [#41] Riverbed Steelhead support added in new class L3::Steelhead
* New c_cap(), cdp_cap(), and lldp_cap() methods which return a hash of
arrays with each array containing the system capabilities reported as
supported by the remote system via CDP or LLDP.
[ENHANCEMENTS]
* Remove "Switch" from model name in L3::Foundry
* [#49] IOS-XR support, add identification of IOS XR and version in
CiscoStats
* Aruba POE Support
* Aruba utilizes Q-BRIDGE-MIB when available for VLAN information to
better support wired switches
* Add lldp_platform() method which uses lldp_rem_sysdesc() or
lldp_rem_sysname() to provide a clue to type of remote LLDP capable
device.
* [RT#78232] Extend cdpCacheCapabilities to show more CDP bits
[BUG FIXES]
* Modify _xos_i_vlan_membership() in L3::Extreme to only include tagged
ports
* When determining the BSSID in Airespace there is only one hexadecimal
digit available so skip if outside the range of 1-16, 17 is reserved
for 3rd party AP's
* Don't assume entity index 1 is the chassis and has serial in Layer3
* Capture serial number on newer Aruba devices
* munge_bits() correctly unpacks BITS
* Fix for single instance table leafs in test_class_mocked.pl
* Fix power module indexing
version 3.08 (2013-10-22)
[ENHANCEMENTS]
* Rewrite of L3::Aruba, now supports pseudo ENTITY-MIB methods to gather
module information, more interface information for APs, more
wireless information to include client stats, and arpnip information
from wireless clients. WARNING: AP device interfaces are now based on
AP MAC and radio versus BSSID to align with other wireless classes.
* [#64] Add i_speed_admin() to L2::2900 (psychiatric)
* [#66] Support for VSS via CISCO-VIRTUAL-SWITCH-MIB in L3::6500
* [#67] Add the possibility to set speed for Layer3::C4000 (psychiatric)
* [#69] set speed and duplex on Cisco VSS system (psychiatric)
* munge_null() now removes all non-printable control characters
* Support Aironet standalone access points (Layer2::Aironet) running IOS15
* lldp_port() returns port ID instead of port description if the port ID
subtype is "interface name". This improves the ability to correlate
ports by name when a port description is also set.
* Add docs note about make_snmpdata.pl under EXTENDING SNMP::Info
* [#46] Brocade (Foundry) Module Support
* Brocade (Foundry) POE Support
* Support peth_port_power() power supplied by PoE ports in L2::Baystack
* Update test_class.pl utility to allow ignore of snmp.conf and test
summarize more standard class methods
* On EOS, the LLDP port ID is a dot1d port
* Use LLDP in Layer3::Aruba, for switches
* Clean up more model names in L2::Baystack
[BUG FIXES]
* [#68] Fix device_port entries for switches with non-unique
ifDesc (Nic Bernstein)
* Don't try to munge undef values
* [#49] Perl 5.18 UNIVERSAL::can change could cause infinite loop
* Silence warning from uninitialized variable in L3::Passport e_descr()
version 3.07 (2013-10-01)
[ENHANCEMENTS]
* Support for Pica8 switches in L3::Pica8
* Factor out cache/munge code from global/attr methods
[BUG FIXES]
* [#48] Switch duplicate J9624A for J9626A in Layer2/HP (R. Kerr)
* Correct device serial number reporting for Nexus devices
* Override ipAddrTable methods in L3::Nexus as some versions do not
index the table with the IPv4 address in accordance with the MIB
definition.
version 3.05 (2013-08-16)
[ENHANCEMENTS]
* [#47] Add model info on HP 2530 and HP 2920 series
* Add support for Cisco Small Business series
Layer2/CiscoSB class
* Add proper LLDP support to Netgear.pm
* Change $netgear->interfaces() to use ifName rather than ifDescr
as the former is unique per interface while the latter is not.
If ifName is not present, concatenate ifDescr and ifIndex
to achieve a unique value.
* Properly report hardware version, Serial No. and OS Version for
Netgear.
version 3.03 (2013-07-11)
[BUG FIXES]
* Add missing =back to POD (A. Hartmaier)
version 3.02 (2013-07-08)
[ENHANCEMENTS]
* Properly pull os_ver from Netgear GS series switches.
* Support Alcatel devices with layer3 features.
* Identify Cisco Aironet 1140 APs as Layer2::Aironet
* LAN switch support added to Layer3::Aruba class
* [RT#86725] - Identify Cisco Catalyst 3850 as Layer3::C6500 (C. Causer)
version 3.01 (2013-04-13)
[API Changes]
* The methods c_ip(), c_if(), c_port(), c_id(), and c_platform() now
represent common topology methods and will try to return a combined
hash of data from all L2 topology protocols either running on the
device or specified in the method call. The topology specific methods
have been been prefixed with the protocol name in lowercase so that
they can be called directly, sonmp_ip(), cdp_ip(), etc.
* L2::Bay and L2::Foundry have been removed from the distribution. Both
classes were depreciated and all functionality is available through
L2::Baystack and L3::Foundry.
[NEW FEATURES]
* [3160037] - Support _raw suffix on methods to skip munging
* [3185391] - Support for F5 devices in new class L3::F5
* [3323814] - Arp support for Netscreen (David Baldwin)
* [3323821] - Support for Netscreen w/ WLAN (eg SSG5) (David Baldwin)
* [3599277] - Q-BRIDGE Support to collect VLAN in macsuck
* [3033731] - Alcatel-Lucent OmniSwich AMAP Support in new AMAP class
* [3598896] - Lantronix device support (J R Binks)
* [3598337] - Lantronix SLC support
* Support for Cisco ASA in L3::CiscoASA (Kraus/Hartmaier/Bernstein)
* Support for Avaya VSP 9000 series in L3::Passport
* Support for Avaya VSP 7000 series in L2::Baystack
* Support Avaya (Trapeze) Wireless Controllers in new class L2::NWSS2300
* Support Juniper (Trapeze) Wireless Controllers in new class L2::Trapeze
* Support for newer Radware Alteon ADC switches 4408/4416/5412/5224 and
older AWS 2000/3000 series in existing L3::AlteonAD
* Support for H3C & HP A-series in new class L3::H3C
* Support for Citrix Netscaler appliances in new class L7::Netscaler
* New configuration option IgnoreNetSNMPConf will ignore Net-SNMP
configuration files on object initialization
* Two new utilities added in t/util to assist in developing device
support; make_snmpdata.pl gathers SNMP data (snmpwalk) in a format that
can be used with test_class_mocked.pl which mocks an SNMP agent to
enable testing with no network access to a device.
[ENHANCEMENTS]
* UNIVERSAL::can() now works with dynamic methods
* Dynamically generated methods are added to symbol table to avoid
AUTOLOAD on subsequent calls
* L2::Airespace now supports 802.11n client tx rates
* L2::Airespace now reports AP Ethernet MAC as port MAC for radio ports
* CiscoStats improvements to determine os versions, eg IOS XE ver on Sup7L-E
* CiscoStats now reports 'ios-xe' if the device runs IOS XE (used to be 'ios')
* Improved support of XOS based Extreme devices
[BUG FIXES]
* [3564920] - lldp_if gives wrong data for Enterasys
version 2.11 (2012-12-09)
[BUG FIXES]
* Add fall-back for sysDescr on Force10
version 2.10 (2012-12-08)
[NEW FEATURES]
* Support for Force10 devices (W. Bulley)
version 2.09 (2012-11-28)
@@ -12,20 +438,20 @@ version 2.09 (2012-11-28)
* New method i_ssidmac() to get BSSID's from AP's with initial support
in L2::Aironet and Airespace classes
* Support for Avaya Secure Routers in new class L3::Tasman
* Add EDP and LLDP L2 Topology to L3::Extreme
* Add EDP and LLDP L2 Topology to L3::Extreme
* [3185393] Support for Juniper SSL VPN in new class L7::Neoteris
* [3381027] Support for Cisco Nexus in new class L3::Nexus
* [3381027] Support for Cisco Nexus in new class L3::Nexus
* [1424336] Support for Extreme Discovery Protocol (EDP)
[ENHANCEMENTS]
* [3017571] Add LLDP support for NetSNMP device class (begemot)
* [3017571] Add LLDP support for NetSNMP device class (begemot)
* [3418918] Extreme devices now report OS as either extremeware or xos
* [2809045] Strip preceding netscreen from model name in L3::Netscreen
* [] Classify Linksys 2024 as L3::Dell (Rogier Krieger)
[BUG FIXES]
* Fixed logic to return cached data for table methods when available and
not a partial fetch
* Fix typo in PoD for Bridge.pm and CiscoConfig.pm (William Bulley)
@@ -45,7 +471,7 @@ version 2.08 (2012-07-15)
* Pseudo ENTITY-MIB methods added to L3::Juniper for hardware information
* Add method to report current transmit power of the radio interface,
dot11_cur_tx_pwr_mw(), in Airespace class
dot11_cur_tx_pwr_mw(), in Airespace class
* [3085411] Activate L3 properties for Netgear GSM7224v2 (phishphreek)
* [3085413] SNMP OIDs for Netgear Serial and OS Ver (phishphreek)
* [3286549] Dell LLDP Support (Nico Giefing)
@@ -94,7 +520,7 @@ version 2.06 (2011-09-28)
* [3344843] Fix returning serial() and os_ver() for web-managable HP
switches, introduced by HP/HP4000 class split, reported by J R Binks
* [2809033] Put L2-only Cisco blade switches in L3::C6500
* [3408506] Fix uninitialized value in IPv6 when neighbor state is
* [3408506] Fix uninitialized value in IPv6 when neighbor state is
incomplete (Michael Borgelt)
version 2.05 (2011-06-23)
@@ -110,13 +536,13 @@ version 2.04 (2011-03-31)
(Brian De Wolf)
+ Added L3::Pf for FreeBSD PFSense Firewalls (max)
* Added specific functions for neighbor mgmt addresses to CDP class
* Implemented os_bin() method in CiscoStats
* Implemented os_bin() method in CiscoStats
+ [2980787] Fix for C1900 bp_index not containing interfaces.
(Brian De Wolf)
+ [2599795] Added vendor_i_type() method to HP and HP4000 clases
+ [2688801] Minor modification for obscure Proxim/Orinoco device
(jrbinks)
+ [3051443] Add PoE measured power per port to Cisco, Extrme and HP
+ [3051443] Add PoE measured power per port to Cisco, Extrme and HP
classes (jeroenvi)
* Minor tweaks to support devices without sysServices
* Added Cisco CBS3xxx blade switches to L3::C6500
@@ -154,7 +580,7 @@ version 2.00 (08/01/08)
+ Support for Alcatel-Lucent Service Router via L3::Timetra
+ Support for Alcatel-Lucent OmniAccess via L2::Aruba
* Silence warnings in MAU due to uninitialized variables
* Silence warnings in MAU due to uninitialized variables
version 1.09 (07/22/08) - Beta/developer release
+ Added support for HP ProCurve Foundry OEM switches, such as the 9300
@@ -178,7 +604,7 @@ version 1.09 (07/22/08) - Beta/developer release
+ Add support to specify MIB to resolve leaf names conflicts in
%GLOBALS and %FUNCS.
+ Added munge_port_list() and modify_port_list() methods to assist in
working with PortList objects.
working with PortList objects.
+ Added set_multi() method to enable a SNMP set command on several new
values in one request. Required for complex set operations
on some agents.
@@ -205,7 +631,7 @@ version 1.05 (11/25/07) - CVS only. No official release
Augenstein)
+ Added device specific support for LLDP in L2::HP, L2::Baystack,
L3::Enterasys and L3::Foundry
+ Added support for Enterasys devices as new class L3::Enterasys
+ Added support for Enterasys devices as new class L3::Enterasys
+ Added support for Dell PowerConnect switches as new class L3::Dell
+ Added basic support for generic routers running Microsoft Windows OS
as new class L3::Microsoft (begemot)
@@ -229,7 +655,7 @@ version 1.05 (11/25/07) - CVS only. No official release
+ New class IEEE802dot11 class for generic standards based wireless AP
support to include i_ssidlist()and i_80211channel() methods.
+ L2::Orinoco inherits from new IEEE802dot11 for i_ssidlist()and
i_80211channel() support.
i_80211channel() support.
+ Added new VLAN methods i_pvid(), i_vlan_membership(), set_i_pvid(),
set_i_vlan(), set_add_i_vlan_tagged(), set_remove_i_vlan_tagged() to
Bridge, CiscoVTP, Extreme, HP, and RapidCity classes.
@@ -291,14 +717,14 @@ version 1.04 (07/08/06)
+ Added C1130 and C1240 to L2::Aironet (Ralf Gross)
+ Added detection for Cisco 2960, 2940, 3400 w/ MetroBase
+ Added generic L2::Cisco Class
* Corrected detection for Cisco Supervisor Engine 2 and 32 (IOS).
* Corrected detection for Cisco Supervisor Engine 2 and 32 (IOS).
* Fixed warnings in CiscoStack
* Updated ProCurve HP device detection for newer firmwares
version 1.03 (04/14/06) - Beta/developer release
* Use ipNetToMedia table instead of atTable for ARP
* Remove CiscoStack from Layer3::C4000
* Fixed bug in MAU class when polling devices without MAU-MIB support
* Fixed bug in MAU class when polling devices without MAU-MIB support
version 1.01 (04/08/06) - Beta/developer release
+ Change version numbers to X.XX format. Odd releases are beta
@@ -364,15 +790,15 @@ version 1.0 (04/07/06) - CVS only. No official release
translated properly
verison 0.9 (11/15/04)
+ ** Added full Nortel/Bay/BayStack support
by new developer Eric Miller.
+ ** Added full Nortel/Bay/BayStack support
by new developer Eric Miller.
L2::Bay now depricated.
+ Added Alteon Ace support (Eric Miller)
+ Added Nortel Cotivity support (Eric Miller)
+ Added Nortel BayRS support (Eric Miller)
+ Added Nortel Centillion support (Eric Miller)
+ Added Nortel AP 222x support (Eric Miller)
+ Added Orinco AP support (Eric Miller)
+ Added Orinco AP support (Eric Miller)
+ Added i_lastchange() per suggestion of Nicolai Petri
+ Added BULKWALK patch by Bradley Baetz - This should
greatly speed up requests on SNMPv2c devices.
@@ -422,27 +848,27 @@ version 0.6 (06/18/03)
version 0.5 (06/10/03)
* Added ability to get paritial tables. For example to get the
IP routing table for 128.114.* you can do
IP routing table for 128.114.* you can do
$ipr = $dev->ipr_dest('128.114');
* Added IP Routing Table entries from RFC1213 to SNMP::Info
* minor bug fixes
version 0.4 (04/29/03)
* BIG CHANGE ! Internal Data structure has changed.
* BIG CHANGE ! Internal Data structure has changed.
* Added clear_cache() method
* Added NO_SUCH support for snmpget (TABLE) calls to get SNMP MIB II data
* Added NO_SUCH support for snmpget (TABLE) calls to get SNMP MIB II data
from SNMP Version 1 devices.
* Methods load_all() and all() have changed their return value. Sorry but
the API had to change.
* New object methods snmp_comm(), snmp_ver(), store(), class(), nosuch()
to make it more OO happy.
* Globals are now cached
* Added new argument 'AutoSpecify' to new() to auto-connect with subclass
* Added new argument 'AutoSpecify' to new() to auto-connect with subclass
detected in device_type()
* New method specify() returns a new subclass object
* Subclasses are automatically loaded when specify or autospecify is used!
* Added methods for Interface statistics (ifInOctets ...)
* Added methods for Memory and CPU statistics
* Added methods for Memory and CPU statistics
* Added SNMP::Info::Entity, moved out of L2-HP
* Added SNMP::Info::Layer2::Aironet
@@ -455,7 +881,7 @@ version 0.3 (03/06/03)
Thanks to Martin Lorensen <martin /at- lorensen.dk>
* Removed requirement for SNMP in the Makefile.PL and moved it to t/prereq.t
so that the Module will install via CPAN without trying to install the old
4.2.0 version of SNMP on CPAN. Will now fail in the test phase.
4.2.0 version of SNMP on CPAN. Will now fail in the test phase.
Thanks again to Martin Lorensen <martin /at- lorensen.dk>
* Moved tests from test.pl to t/*
@@ -465,10 +891,10 @@ version 0.2 (02/19/03)
* Fixed HP Detection in device_type()
* Added Spanning Tree Protocol (STP) methods to SNMP::Info::Bridge
* Removed HP Specific MIBS in SNMP::Info::Layer2 and cleaned up model()
* Added poke for Bay 450 Switches
* Added poke for Bay 450 Switches
* Mapped HP Part Numbers to model numbers J4812A => 2512 in
SNMP::Info::Layer2::HP
version 0.1 (12/30/02)
* Initial Release
* SubClasses Included:
@@ -478,13 +904,13 @@ version 0.1 (12/30/02)
* SNMP::Info::MAU
* SNMP::Info::Layer1
o SNMP::Info::Layer1::Allied
o SNMP::Info::Layer1::Asante
o SNMP::Info::Layer1::Asante
* SNMP::Info::Layer2
o SNMP::Info::Layer2::Bay
o SNMP::Info::Layer2::C1900
o SNMP::Info::Layer2::C2900
o SNMP::Info::Layer2::Catalyst
o SNMP::Info::Layer2::HP
o SNMP::Info::Layer2::HP
* SNMP::Info::Layer3
o SNMP::Info::Layer3::Aironet
o SNMP::Info::Layer3::Foundry

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@@ -4,26 +4,25 @@
# This file is meant to detail the cababilities
# of network devices to supply data via SNMP.
# $Id$
#
# Airespace (pre-Cisco)
#
device-vendor: Airespace
cdp:no
arpnip: no
macsuck: yes
portmac: yes
arpnip: yes
topo:no
duplex: both
vlan: yes
macsuck: yes
modules: yes
portmac: yes
vlan: yes
class: Layer2::Airespace
device-family: Airespace Wireless Controllers
note: Uses proprietary MIBs to provide MAC to port mapping. APs appear as switch ports.
note: Arpnip is emulated by gathering the MAC to IP mappings from controller snooping.
note: Device will only communicate with SNMP version configured in the controller.
device: 3500, 4101, 4102
device: All
#
# Alcatel-Lucent
@@ -46,7 +45,7 @@ device: All
# Allied
#
device-vendor: Allied Telesis
cdp:no
topo:no
class: Layer1::Allied
ver: 1
arpnip: no
@@ -63,13 +62,27 @@ ver: 2
macsuck: yes
device: All
#
# Alteon
#
device-vendor: Alteon
note: See Radware
#
# Altiga
#
device-vendor: Altiga
class: Layer3::Altiga
note: See Cisco/Altiga
#
# APC
#
device-vendor: APC
class: Layer7::APC
device-family: UPS
device: All
note: Must be SNMP management enabled.
#
# Arista
#
@@ -88,8 +101,11 @@ portmac: yes
duplex: no
class: Layer3::Aruba
device-family: Aruba Wireless Controllers
device-family: Aruba Wireless Controllers and LAN switches
note: Uses proprietary MIBs to provide MAC to port mapping. APs appear as switch ports.
note: On LAN switches, hosts connected to "trusted" switch ports in "access" mode may be mapped to incorrect ports.
device: 3500
device: 5000
@@ -109,17 +125,242 @@ device-family: Asante Hubs
device: 1012
#
# Avaya
#
device-vendor: Avaya
macsuck: yes
topo: yes
device-family: BayStack Hub
duplex: both
ver: 1
modules: yes
class: Layer1::Bayhub
note: Uses proprietary MIBs to provide MAC to port mapping.
note: !Requires Advanced or Advanced Analyzer NMM
device: 102
device: System 5000
device-family: Ethernet Switch/Baystack Switch
macsuck: yes
duplex: both
vlan: write
modules: yes
class: Layer2::Baystack
device: 303, 304, 350, 380, 410, 420, 425, 460, 470
device: 450
note: !Some versions > 4.X in stacked configuration have SNMP timeout issues.
note: Labels full duplex as 20Mbit connection.
device: Business Policy Switch (BPS)
device-family: Ethernet Routing Switch
arpnip: yes
duplex: write
vlan: write
modules: yes
class: Layer2::Baystack
device: 2500, 3500, 4500, 4800, 5500, and 5600 series
device-family: Virtual Services Platform (VSP) 7000
arpnip: yes
duplex: write
vlan: write
modules: yes
class: Layer2::Baystack
device: 7024
device-family: Business Ethernet Switch
arpnip: yes
duplex: write
vlan: write
modules: yes
class: Layer2::Baystack
device: All
device-family: Centillion
duplex: both
vlan: yes
class: Layer2::Centillion
note: !Must be on version 4.x or 5.x (VLAN based) software.
device: C50, C100, 5000BH, and 5005BH
device-family: AP222x
duplex: both
modules: no
class: Layer2::NAP222x
note: !Upgrade to version 1.3 or higher.
note: Sends out topology packets if enabled but does not build neighbor table.
device: AP-2220, AP-2221
device-family: Multiprotocol Router/BayRS
arpnip: yes
portmac: yes
duplex: both
topo: no
vlan: yes
modules: yes
class: Layer3::BayRS
device: AN, ARN, ASN, BLN, BCN, 2430, and 5430
device-family: Secure Router
arpnip: yes
portmac: yes
duplex: no
topo: no
vlan: no
modules: no
class: Layer3::Tasman
device: 1001/1001S,1002,1004,2330,3120,4134
device-family: VPN Router/Contivity
arpnip: yes
macsuck: no
portmac: yes
duplex: no
topo: no
modules: yes
class: Layer3::Contivity
device: All
device-family: Ethernet Routing Switch/Passport/Accelar LAN
arpnip: yes
portmac: yes
duplex: write
vlan: write
modules: yes
class: Layer3::Passport
note: !8600 Code versions < 3.2 vlan based mac-suck and are unsupported. Upgrade code.
note: !8600 3.2 code versions < 3.2.2.2 have Bridge MIB loop. Upgrade code.
device: 8100, 8300, 8600, and 8800 series
device: Passport 1600 series
note: Software >= 2.1
device: Accelar 1050,1100,1150,1200
device-family: Virtual Services Platform (VSP) 9000
arpnip: yes
portmac: yes
duplex: write
vlan: write
modules: yes
class: Layer3::Passport
device: 9000
device-family: Ethernet Routing Switch/Passport 1600 (Software < 2.1)
arpnip: yes
portmac: yes
duplex: both
vlan: write
class: Layer3::N1600
device: 1612,1624,1648
device-family: Synoptics
duplex: both
ver: 1
class: Layer1::S3000
note: Uses proprietary MIBs to provide MAC to port mapping.
note: !Requires Advanced or Advanced Analyzer NMM
device: 281X
device: System 3000
device-family: Wireless Switch 2270
arpnip: yes
duplex: both
modules: yes
portmac: yes
vlan: yes
class: Layer2::N2270
note: Uses proprietary MIBs to provide MAC to port mapping. APs appear as switch ports.
note: Arpnip is emulated by gathering the MAC to IP mappings from controller snooping.
device: 2270
device-family: Wireless Security Switches 2300 Series
arpnip: yes
portmac: yes
duplex: both
topo: no
modules: yes
class: Layer2::NWSS2300
note: Uses proprietary MIBs to provide MAC to port mapping. APs appear as switch ports.
note: Arpnip is emulated by gathering the MAC to IP mappings from controller snooping.
device: All
#
# Bay
#
device-vendor: Bay
note: See Nortel
note: See Avaya
#
# Brocade
#
device-vendor: Brocade
arpnip: yes
topo: yes
duplex: link
macsuck: yes
modules: no
portmac: yes
vlan: yes
class: Layer3::Foundry
device-family: EdgeIron
device: EdgeIron 24G
note: Bug where spanning tree stuff loops forever when polled by SNMP.
device-family: FastIron
ver: 1
note: Support very limited
device: FastIron 4802
device-family: FastIron CX (ICX) series
device: 6430,6450,6610
device-family: FastIron LS (FLS) series
device: All
device-family: FastIron WorkGroup Switch (FWS) series
device: All
device-family: ServerIron GT series
device: All
#
# Bluecoat
#
device-vendor: Bluecoat
class: Layer3::Bluecoat
device-family: BlueCoat SG Series
device: All
#
# CISCO
#
device-vendor: Cisco
cdp: yes
topo: yes
ver: 2
modules: yes
@@ -143,6 +384,10 @@ class: Layer3::Altiga
device: VPN3000
note: The Cisco 3000 device can return duplicate interface names, while Netdisco expects unique interface names. To ensure unique device names I append numbers only when an interface name would not be unique without one. Interfaces with unique names keep their ifDescr name.
device: ASA
note: The Cisco ASA is the successor of the PIX which was bought from Altiga Networks.
class: Layer3::CiscoASA
device-family: 1000
duplex: no
ver: 1
@@ -391,15 +636,16 @@ device: VG200
device-family: Wireless Controllers
class: Layer2::Airespace
cdp:no
arpnip: no
arpnip: yes
duplex: both
macsuck: yes
portmac: yes
duplex: both
vlan: yes
note: Uses proprietary MIBs to provide MAC to port mapping. APs appear as switch ports.
note: Arpnip is emulated by gathering the MAC to IP mappings from controller snooping.
note: Device will only communicate with SNMP version configured in the controller.
device: 2006, 4112, 4124, 4136, 4402, 4404
device: 2000, 2100, 2500, 4100, 4400, and 5500 series
device-family: Firewall
class: Layer3::Cisco
@@ -411,6 +657,28 @@ note: !Arpnip only available for 4.x software releases.
class: Layer3::CiscoFWSM
arpnip: yes
device: Sx300, Sx500 series
device-family: Small Business switches
class: Layer2::CiscoSB
arpnip: no
macsuck: yes
#
# Citrix
#
device-vendor: Citrix
arpnip: no
topo: no
duplex: no
macsuck: no
modules: no
portmac: yes
vlan: no
class: Layer7::Netscaler
device-family: Netscaler
device: All
#
# Cyclades
#
@@ -427,7 +695,7 @@ arpnip: no
macsuck: yes
duplex: both
vlan: yes
cdp: no
topo: yes
modules: yes
class: Layer3::Dell
@@ -455,7 +723,7 @@ arpnip: yes
macsuck: yes
duplex: both
vlan: yes
cdp: yes
topo: yes
modules: yes
class: Layer3::Enterasys
@@ -472,62 +740,37 @@ device: Matrix N-Series DFE
#
device-vendor: Extreme Networks
arpnip: yes
macsuck: yes
topo: yes
duplex: both
vlan: yes
cdp: no
macsuck: yes
modules: yes
portmac: yes
vlan: yes
class: Layer3::Extreme
device-family: Alpine and Summit
device-family: ExtremeWare based devices
device: All
device: Alpine 3808
device: Summit 7i, 48si
device-family: XOS based devices
device: All
#
# FreeBSD
#
device-vendor: FreeBSD
device-famly: Pf
class: Layer3::Pf
arpnip: yes
cdp: no
topo: no
class: Layer3::Pf
note: LLDP support might be available. See note in Layer3::Pf
device-family: Pf
device: All
#
# Foundry
#
device-vendor: Foundry Networks
vlan: yes
modules: no
device-family: FastIron
class: Layer3::Foundry
ver: 1
note: Support very limited
device: FastIron 4802
device-family: EdgeIron
ver: 2
class: Layer3::Foundry
cdp: yes
duplex: yes
macsuck: yes
device: EdgeIron 24G
note: Bug where spanning tree stuff loops forever when polled by SNMP.
device-family: IronWare
class: Layer3::Foundry
ver: 2
cdp: yes
note: FDP enabled.
duplex: yes
macsuck: yes
arpnip: yes
device: FWSX424
device: ServerIronGT
device: FLS624, FLS648
note: See Brocade
#
# HP
@@ -542,7 +785,7 @@ class: Layer2::HP4000
duplex: both
macsuck: yes
arpnip: no
cdp: yes
topo: yes
vlan: write
note: devices in this class only have CDP support
note: VLAN info in HP-VLAN MIB
@@ -556,7 +799,7 @@ class: Layer2::HP
duplex: both
macsuck: yes
arpnip: no
cdp: yes
topo: yes
vlan: write
note: old firmware versions only have CDP support, more recent have LLDP
note: VLAN info in Q-BRIDGE-MIB
@@ -569,21 +812,74 @@ device: 3124,3324XL,3400cl,3500,3500yl
device: 4100GL,4200vl,5300XL,5400yy,5400zl
device: 6108,6200yl,6400cl,6410cl,6600,6600ml,8200zl
#
# Juniper
#
device-vendor: Juniper
arpnip: yes
topo: yes
duplex: link
macsuck: yes
modules: yes
portmac: yes
vlan: yes
class: Layer3::Juniper
device-family: EX-series switches
device: All
device-family: J-series router
device: All
device-family: M-series router
class: Layer3::Juniper
device: All
device-family: NetScreen
topo: no
duplex: no
modules: no
vlan: no
class: Layer3::Netscreen
device: All
device-family: SA-series SSL VPN appliances
arpnip: no
topo: no
duplex: no
modules: no
vlan: no
class: Layer7::Neoteris
device: All
device-family: SRX-series router
device: All
device-family: Wireless LAN Controllers (Trapeze)
duplex: both
class: Layer2::Trapeze
note: Uses proprietary MIBs to provide MAC to port mapping. APs appear as switch ports.
note: Arpnip is emulated by gathering the MAC to IP mappings from controller snooping.
device: All
#
# Kentrox
#
device-vendor: Kentrox
class: Layer2::Kentrox
device-family: Kentrox DataSMART DSU/CSU
device: All
#
# Lantronix
#
device-vendor: Lantronix
class: Layer3::Lantronix
device-family: Terminal Servers
device: All
#
# Linksys
#
@@ -600,21 +896,31 @@ device-family: 2048
class: Layer3::Dell
device: All
#
# Microsoft
#
device-vendor: Microsoft
device-family: Windows
class: Layer3::Microsoft
device-family: Windows
device: Windows Router
#
# Mikrotik
#
device-vendor: Mikrotik
class: Layer3::Mikrotik
device-family: RouterOS
device: All
#
# Netgear
#
device-vendor: NetGear
device-family: Switches
class: Layer2::Netgear
device-family: Switches
device: All
#
@@ -623,6 +929,12 @@ device: All
device-vendor: NetScreen
note: See Juniper
#
# Neoteris
#
device-vendor: Neoteris
note: See Juniper
#
# Net-SNMP
#
@@ -637,198 +949,20 @@ device: Linux routers
device-family: BSD
device: BSD routers
#
# Kentrox
#
device-vendor: Kentrox
note: MIB not yet shipped
device: Kentrox DataSMART DSU/CSU
#
# NORTEL
#
device-vendor: Nortel
macsuck: yes
cdp: proprietary
note: SONMP Discovery Protocol Supported
note: See Avaya
device-family: BayStack Hub
duplex: both
ver: 1
modules: yes
class: Layer1::Bayhub
note: Uses proprietary MIBs to provide MAC to port mapping.
note: !Requires Advanced or Advanced Analyzer NMM
#
# PacketFront
#
device-vendor: PacketFront
class: Layer3::PacketFront
device: 102
device: System 5000
device-family: Ethernet Switch/Baystack Switch
macsuck: yes
duplex: both
vlan: write
modules: yes
class: Layer2::Baystack
device: 303, 304, 350, 380, 410, 420, 425, 460, 470
device: 450
note: !Some versions > 4.X in stacked configuration have SNMP timeout issues.
note: Labels full duplex as 20Mbit connection.
device: Business Policy Switch (BPS)
device-family: Ethernet Routing Switch/Baystack Switch
arpnip: yes
duplex: write
vlan: write
modules: yes
class: Layer2::Baystack
device: 3510
device: 2526,2550
device: 4524,4526,4548,4550
device: 5510,5520,5530
device-family: Business Ethernet Switch
arpnip: yes
duplex: write
vlan: write
modules: yes
class: Layer2::Baystack
device: 50,110,120,210,220,1010,1020
device-family: Centillion
duplex: both
vlan: yes
class: Layer2::Centillion
note: !Must be on version 4.x or 5.x (VLAN based) software.
device: 5000BH, 5005BH
device: C50,C100
device-family: AP222x
duplex: both
modules: no
class: Layer2::NAP222x
note: !Upgrade to version 1.3 or higher.
note: Sends out topology packets if enabled but does not build neighbor table.
device: AP-2220, AP-2221
device-family: Alteon AD
arpnip: yes
duplex: both
cdp: no
vlan: yes
modules: no
class: Layer3::AlteonAD
note: !Some versions have issues with continuous SNMP polling. Upgrade to 10.0.30.7 or higher.
device: AD2,AD3,AD4
device: 180,183,184
device-family: Multiprotocol Router/BayRS
arpnip: yes
portmac: yes
duplex: both
cdp: no
vlan: yes
modules: yes
class: Layer3::BayRS
device: AN,ARN,ASN,BLN,BCN
device: 2430,5430
device-family: VPN Router/Contivity
arpnip: yes
macsuck: no
portmac: yes
duplex: no
cdp: no
modules: yes
class: Layer3::Contivity
device: 100,400,600
device: 1000,1010,1050
device: 1500,1600,1700,1740,1750
device: 2500,2600,2700
device: 4500,4600,5000
device-family: Ethernet Routing Switch/Passport/Accelar LAN
arpnip: yes
macsuck: yes
portmac: yes
duplex: write
cdp: proprietary
vlan: write
modules: yes
class: Layer3::Passport
note: !8600 Code versions < 3.2 vlan based mac-suck and are unsupported. Upgrade code.
note: !8600 3.2 code versions < 3.2.2.2 have Bridge MIB loop. Upgrade code.
device: 8603,8606,8610, 8610co, 8106, 8110
device: 1050,1100,1150,1200
device-family: Ethernet Routing Switch/Passport 1600 (Software < 2.1)
arpnip: yes
macsuck: yes
portmac: yes
duplex: both
cdp: proprietary
vlan: write
class: Layer3::N1600
device: 1612,1624,1648
device-family: Ethernet Routing Switch/Passport 1600 (Software >= 2.1)
arpnip: yes
macsuck: yes
portmac: yes
duplex: write
cdp: proprietary
vlan: write
class: Layer3::Passport
device: 1612,1624,1648
device-family: Synoptics
macsuck: yes
duplex: both
cdp: proprietary
ver: 1
class: Layer1::S3000
note: Uses proprietary MIBs to provide MAC to port mapping.
note: !Requires Advanced or Advanced Analyzer NMM
device: 281X
device: System 3000
device-family: Wireless Switch 2270
arpnip: no
macsuck: yes
portmac: yes
duplex: both
cdp: proprietary
modules: yes
class: Layer2::N2270
note: Uses proprietary MIBs to provide MAC to port mapping. APs appear as switch ports.
device: 2270
device-family: DRG
device: All
#
# Proxim
@@ -836,7 +970,7 @@ device: 2270
device-vendor: Proxim
macsuck: yes
duplex: no
cdp: no
topo: no
class: Layer2::Orinoco
device-family: Orinoco
@@ -845,6 +979,32 @@ device: AP-1000,AP-2000,AP-4000
device: WavePOINT-II
#
# Radware
#
device-vendor: Radware
arpnip: yes
topo: no
duplex: both
macsuck: yes
modules: no
portmac: yes
vlan: yes
class: Layer3::AlteonAD
device-family: Alteon AceDirector and AceSwitch series
note: !Some versions have issues with continuous SNMP polling. Upgrade to 10.0.30.7 or higher.
device: All
device-family: Web Switch Module for IBM L2/L3 BladeCenter
device: All
device-family: Radware Alteon Application switches (AWS 2000 and 3000 series)
device: All
device-family: Radware Alteon switches
device: 4408,4416,5412,5224
#
# SonicWALL
#
@@ -865,7 +1025,13 @@ device: Sun routers
# Synoptics
#
device-vendor: Synoptics
note: See Nortel
note: See Avaya
#
# Trapeze
#
device-vendor: Trapeze
note: See Juniper
#
# Zyxel

1759
Info.pm

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341
Info/AMAP.pm Normal file
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@@ -0,0 +1,341 @@
# SNMP::Info::AMAP
#
# Copyright (c) 2013 Eric Miller
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::AMAP;
use strict;
use Exporter;
use SNMP::Info;
@SNMP::Info::LLDP::ISA = qw/SNMP::Info Exporter/;
@SNMP::Info::LLDP::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '3.28';
%MIBS
= ( 'ALCATEL-IND1-INTERSWITCH-PROTOCOL-MIB' => 'aipAMAPRemDeviceType', );
%GLOBALS = (
);
%FUNCS = (
# EXTREME-EDP-MIB::extremeEdpTable
'amap_rem_sysname' => 'aipAMAPRemHostname',
);
%MUNGE = ( 'amap_rem_sysname' => \&SNMP::Info::munge_null, );
sub hasAMAP {
my $amap = shift;
my $amap_ip = $amap->aipAMAPIpAddr() || {};
return 1 if ( scalar( keys %$amap_ip ) );
return;
}
# Break up the aipAMAPhostsTable INDEX into MAC and IP address.
sub _hosts_table_index {
my $idx = shift;
my @oids = split( /\./, $idx );
my $mac = join( '.', splice( @oids, 0, 6 ) );
return ( $mac, join( '.', @oids ) );
}
# Break up the aipAMAPportConnectionTable INDEX and return MAC
sub _conn_table_mac {
my $idx = shift;
my @oids = split( /\./, $idx );
my $local_idx = shift @oids;
my $mac = join( '.', splice( @oids, 0, 6 ) );
return ($mac);
}
# Since we need to get IP Addresses from the aipAMAPhostsTable which has
# a different index (MAC, IP) than the aipAMAPportConnectionTable which holds
# the remote device details we create a combined index and skip any
# IPs which have an address of 0.0.0.0. Would like to include only one
# address since they should all originate from the same device, but we don't
# know if they would all be reachable from the network management application.
#
# We don't inplement partials since this is private index function
sub _amap_index {
my $amap = shift;
my $amap_ip = $amap->aipAMAPIpAddr() || {};
my $amap_rport = $amap->aipAMAPLocalPort() || {};
my %amap_index;
foreach my $key ( keys %$amap_ip ) {
my ( $mac, $ip ) = _hosts_table_index($key);
next if ( $ip eq '0.0.0.0' );
next unless $ip;
foreach my $idx ( keys %$amap_rport ) {
my $c_mac = _conn_table_mac($idx);
if ( $mac eq $c_mac ) {
my $index = "$idx.$ip";
$amap_index{$index} = $index;
}
}
}
return \%amap_index;
}
# Break up _amap_index INDEX into local index, MAC, remote index, and
# IP address
sub _amap_index_parts {
my $idx = shift;
my @oids = split( /\./, $idx );
my $local_idx = shift @oids;
my $mac = join( '.', splice( @oids, 0, 6 ) );
my $rem_idx = shift @oids;
return ( $local_idx, $mac, $rem_idx, join( '.', @oids ) );
}
sub amap_if {
my $amap = shift;
my $index = $amap->_amap_index() || {};
my $if_idx = $amap->aipAMAPLocalIfindex() || {};
my %amap_if;
foreach my $key ( keys %$index ) {
my ( $local_idx, $mac, $rem_idx, $ip ) = _amap_index_parts($key);
my $if_key = "$local_idx.$mac.$rem_idx";
if ( $key =~ /^$if_key/ ) {
my $if = $if_idx->{$if_key};
$amap_if{$key} = $if;
}
}
return \%amap_if;
}
sub amap_ip {
my $amap = shift;
my $index = $amap->_amap_index() || {};
my %amap_ip;
foreach my $key ( keys %$index ) {
my ( $local_idx, $mac, $rem_idx, $ip ) = _amap_index_parts($key);
# MIB says should only be IPv4
next unless ( $ip =~ /\d+(\.\d+){3}/ );
$amap_ip{$key} = $ip;
}
return \%amap_ip;
}
sub amap_port {
my $amap = shift;
my $index = $amap->_amap_index() || {};
my $amap_rport = $amap->aipAMAPLocalPort() || {};
my $amap_rslot = $amap->aipAMAPLocalSlot() || {};
my %amap_port;
foreach my $key ( sort keys %$index ) {
my ( $local_idx, $mac, $rem_idx, $ip ) = _amap_index_parts($key);
my $p_key = "$local_idx.$mac.$rem_idx";
if ( $key =~ /^$p_key/ ) {
my $port = $amap_rport->{$p_key};
my $slot = $amap_rslot->{$p_key} || 0;
next unless $port;
$amap_port{$key} = defined $slot ? "$slot\/$port" : $port;
}
}
return \%amap_port;
}
sub amap_id {
my $amap = shift;
my $index = $amap->_amap_index() || {};
my $amap_name = $amap->amap_rem_sysname() || {};
my %amap_name;
foreach my $key ( sort keys %$index ) {
my ( $local_idx, $mac, $rem_idx, $ip ) = _amap_index_parts($key);
my $id_key = "$local_idx.$mac.$rem_idx";
if ( $key =~ /^$id_key/ ) {
my $name = $amap_name->{$id_key} || 0;
next unless $name;
$amap_name{$key} = $name;
}
}
return \%amap_name;
}
sub amap_platform {
my $amap = shift;
my $index = $amap->_amap_index() || {};
my $amap_topo_platform = $amap->aipAMAPRemDeviceType() || {};
my %amap_platform;
foreach my $key ( keys %$index ) {
my ( $local_idx, $mac, $rem_idx, $ip ) = _amap_index_parts($key);
my $pf_key = "$local_idx.$mac.$rem_idx";
if ( $key =~ /^$pf_key/ ) {
my $platform = $amap_topo_platform->{$pf_key};
next unless $platform;
$amap_platform{$key} = $platform;
}
}
return \%amap_platform;
}
1;
__END__
=head1 NAME
SNMP::Info::AMAP - SNMP Interface to Alcatel Mapping Adjacency Protocol (AMAP)
=head1 AUTHOR
Eric Miller
=head1 SYNOPSIS
my $amap = new SNMP::Info (
AutoSpecify => 1,
Debug => 1,
DestHost => 'router',
Community => 'public',
Version => 2
);
my $class = $amap->class();
print " Using device sub class : $class\n";
$hasamap = $amap->hasAMAP() ? 'yes' : 'no';
# Print out a map of device ports with LLDP neighbors:
my $interfaces = $amap->interfaces();
my $amap_if = $amap->amap_if();
my $amap_ip = $amap->amap_ip();
my $amap_port = $amap->amap_port();
foreach my $amap_key (keys %$amap_ip){
my $iid = $amap_if->{$amap_key};
my $port = $interfaces->{$iid};
my $neighbor = $amap_ip->{$amap_key};
my $neighbor_port = $amap_port->{$amap_key};
print "Port : $port connected to $neighbor / $neighbor_port\n";
}
=head1 DESCRIPTION
SNMP::Info::AMAP is a subclass of SNMP::Info that provides an object oriented
interface to Alcatel Mapping Adjacency Protocol (AMAP) information through
SNMP.
AMAP is a Layer 2 protocol that allows a network device to advertise its
identity and capabilities on the local network providing topology information.
Create or use a device subclass that inherits this class. Do not use
directly.
=head2 Inherited Classes
None.
=head2 Required MIBs
=over
=item F<ALCATEL-IND1-INTERSWITCH-PROTOCOL-MIB>
=back
=head1 GLOBAL METHODS
These are methods that return scalar values from SNMP
=over
=item $amap->hasAMAP()
Is AMAP is active in this device?
=back
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=over
=item $amap->amap_id()
Returns the string value used to identify the remote system.
=item $amap->amap_if()
Returns the mapping to the SNMP Interface Table.
=item $amap->amap_ip()
Returns remote IPv4 addresses. Note: AMAP returns all IP addresses associated
with the remote device. It would be preferable to include only one address
since they should all originate from the same device, but amap_ip() can not
determine if all addresses are reachable from the network management
application therefore all addresses are returned and the calling application
must determine which address to use and if they are in fact from the same
device.
=item $amap->amap_port()
Returns remote port ID
=item $amap->amap_platform()
Returns remote platform ID
=back
=cut

View File

@@ -38,7 +38,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'ADSL-LINE-MIB' => 'adslLineType' );
@@ -65,7 +65,7 @@ __END__
=head1 NAME
SNMP::Info::AdslLine - SNMP Interface to the ADSL-LINE-MIB
SNMP::Info::AdslLine - SNMP Interface to the F<ADSL-LINE-MIB>
=head1 AUTHOR
@@ -120,7 +120,7 @@ MIBs can be found at ftp://ftp.cisco.com/pub/mibs/v2/v2.tar.gz
=head2 ATUC channel table (C<adslAtucChanTable>)
This table provides one row for each ATUC channel.
ADSL channel interfaces are those ifEntries where ifType
ADSL channel interfaces are those C<ifEntries> where C<ifType>
is equal to adslInterleave(124) or adslFast(125).
=over
@@ -146,7 +146,7 @@ is equal to adslInterleave(124) or adslFast(125).
=head2 ATUR channel table (C<adslAturChanTable>)
This table provides one row for each ATUR channel.
ADSL channel interfaces are those ifEntries where ifType
ADSL channel interfaces are those C<ifEntries> where C<ifType>
is equal to adslInterleave(124) or adslFast(125).
=over

View File

@@ -1,6 +1,6 @@
# $Id$
# SNMP::Info::Aggregate
#
# Copyright (c) 2005 Matt Tuttle
# Copyright (c) 2014 SNMP::Info Developers
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
@@ -27,88 +27,103 @@
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::CiscoImage;
package SNMP::Info::Aggregate;
use strict;
use Exporter;
use SNMP::Info;
@SNMP::Info::CiscoImage::ISA = qw/SNMP::Info Exporter/;
@SNMP::Info::CiscoImage::EXPORT_OK = qw//;
@SNMP::Info::Aggregate::ISA = qw/SNMP::Info Exporter/;
@SNMP::Info::Aggregate::EXPORT_OK = qw/agg_ports_ifstack/;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'CISCO-IMAGE-MIB' => 'ciscoImageString', );
%MIBS = (); # IF-MIB
%GLOBALS = ();
%FUNCS = ( 'ci_images' => 'ciscoImageString', );
%FUNCS = ();
%MUNGE = ();
sub agg_ports_ifstack {
my $dev = shift;
my $partial = shift;
my $ifStack = $dev->ifStackStatus();
# TODO: if we want to do partial, we need to use inverse status
my $ifType = $dev->ifType();
my $ret = {};
foreach my $idx ( keys %$ifStack ) {
my ( $higher, $lower ) = split /\./, $idx;
next if ( $higher == 0 or $lower == 0 );
if ( $ifType->{ $higher } eq 'ieee8023adLag' ) {
$ret->{ $lower } = $higher;
}
}
return $ret;
}
1;
__END__
=head1 NAME
SNMP::Info::CiscoImage - SNMP Interface to image strings for Cisco Devices
SNMP::Info::Aggregate - SNMP Interface to ifStackTable Aggregated Links
=head1 AUTHOR
Matt Tuttle (C<mtuttle@americanhebrewacademy.org>)
SNMP::Info Developers
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $ci = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
# These arguments are passed directly on to SNMP::Session
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
# Let SNMP::Info determine the correct subclass for you.
my $info = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myrouter',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $ci->class();
my $class = $info->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
SNMP::Info::CiscoImage is a subclass of SNMP::Info that provides access to
image strings embedded in an image running on Cisco Devices.
This class provides access to Aggregated Links configuration on devices
supporting C<ifStackTable>.
Use or create in a subclass of SNMP::Info. Do not use directly.
=head2 Inherited Classes
None.
L<SNMP::Info>
=head2 Required MIBs
=over
=item F<CISCO-IMAGE-MIB>
=item F<IF-MIB>
=back
MIBs can be found at ftp://ftp.cisco.com/pub/mibs/v2/v2.tar.gz
=head1 METHODS
=head1 GLOBALS
=over 4
None.
=item C<agg_ports_ifstack>
=head1 TABLE METHODS
=over
=item $ci->ci_images()
Returns the table of image strings.
C<ciscoImageString>
Returns a HASH reference mapping from slave to master port for each member of
a port bundle on the device. Keys are ifIndex of the slave ports, Values are
ifIndex of the corresponding master ports.
=back

View File

@@ -39,7 +39,7 @@ use SNMP::Info;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::MIBS,
@@ -148,6 +148,16 @@ $VERSION = '2.10';
# AIRESPACE-SWITCHING-MIB::agentPortConfigTable
'airespace_duplex_admin' => 'agentPortPhysicalMode',
'airespace_duplex' => 'agentPortPhysicalStatus',
# This needs to be cleaned up, but for now we pretend to
# have the CISCO-DOT11-MIB for signal strengths, etc.
'cd11_sigstrength' => 'bsnMobileStationRSSI', # kinda
'cd11_sigqual' => 'bsnMobileStationSnr', # kinda
'cd11_rxbyte' => 'bsnMobileStationBytesReceived',
'cd11_txbyte' => 'bsnMobileStationBytesSent',
'cd11_rxpkt' => 'bsnMobileStationPacketsReceived',
'cd11_txpkt' => 'bsnMobileStationPacketsSent',
'cd11_ssid' => 'bsnMobileStationSsid',
);
%MUNGE = (
@@ -158,6 +168,8 @@ $VERSION = '2.10';
'airespace_bl_mac' => \&SNMP::Info::munge_mac,
'airespace_if_mac' => \&SNMP::Info::munge_mac,
'airespace_sta_mac' => \&SNMP::Info::munge_mac,
'cd11_rxpkt' => \&munge_64bits,
'cd11_txpkt' => \&munge_64bits,
);
sub layers {
@@ -565,6 +577,13 @@ sub bp_index {
return \%bp_index;
}
sub fw_mac {
my $airespace = shift;
my $partial = shift;
return $airespace->SUPER::fw_mac($partial);
}
sub fw_port {
my $airespace = shift;
my $partial = shift;
@@ -676,42 +695,52 @@ sub i_ssidmac {
foreach my $oid ( keys %$ssidlist ) {
my @parts = split( /\./, $oid );
my $ssid_idx = pop (@parts);
my $slot = pop (@parts);
my $last = pop (@parts);
my $ssid_idx = pop(@parts);
my $slot = pop(@parts);
my $last = pop(@parts);
my $iid = $oid;
# Get radio band
$iid =~ s/\.\d+$//;
my $ap_type = $apif_type->{$iid};
# Determine if IOS based
$iid =~ s/\.\d+$//;
my $ios = $ap_ios->{$iid} || '';
# Four cases:
# IOS and 2.4Ghz count up, starts at zero
if ($ios and $ap_type =~ /b$/) {
$last = $last + ($ssid_idx - 1);
# 17 can be used as index for 3rd Party AP's. We only have one
# hexadecimal digit to work with so skip if outside the range
if ( $ssid_idx > 0 and $ssid_idx < 17 ) {
# Four cases:
# IOS and 2.4Ghz count up, starts at zero
if ( $ios and $ap_type =~ /b$/ ) {
$last = $last + ( $ssid_idx - 1 );
}
# IOS and 5Ghz - count down from maximum of 16
elsif ( $ios and $ap_type =~ /a$/ ) {
$last = $last + ( 16 - $ssid_idx );
}
# VxWorks and 5Ghz - count up, starts at zero
elsif ( $ios and $ap_type =~ /a$/ ) {
$last = $last + ( $ssid_idx - 1 );
}
# VxWorks and 2.4Ghz - count down from maximum of 16
else {
$last = $last + ( 16 - $ssid_idx );
}
}
# IOS and 5Ghz - count down from maximum of 16
elsif ($ios and $ap_type =~ /a$/) {
$last = $last + (16 - $ssid_idx);
}
# VxWorks and 5Ghz - count up, starts at zero
elsif ($ios and $ap_type =~ /a$/) {
$last = $last + ($ssid_idx - 1);
}
# VxWorks and 2.4Ghz - count down from maximum of 16
else {
$last = $last + (16 - $ssid_idx);
}
push (@parts, $last);
my $bssid = join( ':', map { sprintf( "%02x", $_ ) } @parts );
$i_ssidmac{$oid} = $bssid;
push( @parts, $last );
my $bssid = join( ':', map { sprintf( "%02x", $_ ) } @parts );
$i_ssidmac{$oid} = $bssid;
}
return \%i_ssidmac;
return \%i_ssidmac;
}
sub i_80211channel {
@@ -1031,6 +1060,13 @@ sub at_netaddr {
return $ret;
}
sub munge_64bits {
# The controller sometimes hands off a ridiculous value for packets.
# Just truncate it to 32 bits.
my $value = shift;
return $value & 0xffffffff;
}
1;
__END__
@@ -1080,7 +1116,7 @@ Do not use directly.
=over
None.
=item None.
=back
@@ -1206,12 +1242,9 @@ switch.
=item $airespace->layers()
Returns 00000011. Class emulates Layer 2 functionality for Thin APs through
Returns 00000111. Class emulates Layer 2 functionality for Thin APs through
proprietary MIBs.
=item $airespace->at_netaddr()
=item $airespace->at_paddr()
=item $airespace->serial()
(C<agentInventorySerialNumber>)
@@ -1238,7 +1271,7 @@ Returns reference to hash. Indicates whether the SSID is broadcast.
Returns reference to hash. Current operating frequency channel of the radio
interface.
=item $dot11->dot11_cur_tx_pwr_mw()
=item $airespace->dot11_cur_tx_pwr_mw()
Returns reference to hash. Current transmit power, in milliwatts, of the
radio interface.
@@ -1659,15 +1692,15 @@ airespace_if_name() for virtual interfaces.
=item $airespace->i_description()
Returns reference to map of IIDs to interface types. Returns C<ifDescr>
for Ethernet interfaces, airespace_ap_loc() for thin AP interfaces, and
airespace_if_name() for virtual interfaces.
Returns reference to map of IIDs to interface descriptions. Returns
C<ifDescr> for Ethernet interfaces, airespace_ap_loc() for thin AP
interfaces, and airespace_if_name() for virtual interfaces.
=item $airespace->i_type()
Returns reference to map of IIDs to interface descriptions. Returns
C<ifType> for Ethernet interfaces, airespace_apif_type() for thin AP
interfaces, and airespace_if_type() for virtual interfaces.
Returns reference to map of IIDs to interface types. Returns C<ifType>
for Ethernet interfaces, airespace_apif_type() for thin AP interfaces, and
airespace_if_type() for virtual interfaces.
=item $airespace->i_up()
@@ -1790,4 +1823,32 @@ entity which 'contains' this entity.
=back
=head2 Arp Cache Table Augmentation
The controller has knowledge of MAC->IP mappings for wireless clients.
Augmenting the arp cache data with these MAC->IP mappings enables visibility
for stations that only communicate locally.
=over
=item $airespace->at_paddr()
Adds MAC addresses extracted from the index of C<bsnMobileStationIpAddress>.
=item $airespace->at_netaddr()
Adds IP addresses from C<bsnMobileStationIpAddress>.
=back
=head1 Data Munging Callback Subroutines
=over
=item munge_64bits()
Truncate packet values to 32 bits.
=back
=cut

View File

@@ -42,7 +42,7 @@ use SNMP::Info;
use vars qw/$VERSION $DEBUG %MIBS %FUNCS %GLOBALS %MUNGE $INIT/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
'BRIDGE-MIB' => 'dot1dBaseBridgeAddress',
@@ -84,6 +84,17 @@ $VERSION = '2.10';
'bs_to' => 'dot1dStaticAllowedToGoTo',
'bs_status' => 'dot1dStaticStatus',
# These leafs are not part of a table, but placed here
# to return a hash reference to ease API compatibility with
# MST and PVST implementations indexed by a spanning tree
# instance id
'stp_i_mac' => 'dot1dBaseBridgeAddress',
'stp_i_time' => 'dot1dStpTimeSinceTopologyChange',
'stp_i_ntop' => 'dot1dStpTopChanges',
'stp_i_root' => 'dot1dStpDesignatedRoot',
'stp_i_root_port' => 'dot1dStpRootPort',
'stp_i_priority' => 'dot1dStpPriority',
# Spanning Tree Protocol Table : dot1dStpPortTable
'stp_p_id' => 'dot1dStpPort',
'stp_p_priority' => 'dot1dStpPortPriority',
@@ -125,15 +136,18 @@ $VERSION = '2.10';
'b_mac' => \&SNMP::Info::munge_mac,
'fw_mac' => \&SNMP::Info::munge_mac,
'bs_mac' => \&SNMP::Info::munge_mac,
'stp_root' => \&SNMP::Info::munge_mac,
'stp_root' => \&SNMP::Info::munge_prio_mac,
'stp_i_mac' => \&SNMP::Info::munge_mac,
'stp_i_root' => \&SNMP::Info::munge_prio_mac,
'stp_p_root' => \&SNMP::Info::munge_prio_mac,
'stp_p_bridge' => \&SNMP::Info::munge_prio_mac,
'stp_p_port' => \&SNMP::Info::munge_prio_mac,
'stp_p_port' => \&SNMP::Info::munge_prio_port,
'qb_cv_egress' => \&SNMP::Info::munge_port_list,
'qb_cv_untagged' => \&SNMP::Info::munge_port_list,
'qb_v_egress' => \&SNMP::Info::munge_port_list,
'qb_v_fbdn_egress' => \&SNMP::Info::munge_port_list,
'qb_v_untagged' => \&SNMP::Info::munge_port_list,
'qb_cv_untagged' => \&SNMP::Info::munge_port_list,
);
@@ -158,6 +172,29 @@ sub qb_fw_mac {
return $qb_fw_mac;
}
sub qb_fw_vlan {
my $bridge = shift;
my $partial = shift;
my $qb_fw_port = $bridge->qb_fw_port($partial);
my $qb_fdb_ids = $bridge->qb_fdb_index() || {};
my $qb_fw_vlan = {};
foreach my $idx ( keys %$qb_fw_port ) {
my ( $fdb_id, $mac ) = _qb_fdbtable_index($idx);
# Many devices do not populate the dot1qVlanCurrentTable, so default
# to FDB ID = VID, but if we have a mapping use it.
my $vlan = $fdb_id;
# defined as test since some devices have a vlan 0
if (defined $qb_fdb_ids->{$fdb_id}) {
$vlan = $qb_fdb_ids->{$fdb_id};
}
$qb_fw_vlan->{$idx} = $vlan;
}
return $qb_fw_vlan;
}
sub qb_i_vlan_t {
my $bridge = shift;
my $partial = shift;
@@ -176,6 +213,54 @@ sub qb_i_vlan_t {
return $i_vlan;
}
sub qb_fdb_index {
my $bridge = shift;
my $partial = shift;
# Some devices may not implement TimeFilter in a standard manner
# appearing to loop on this request. Override in the device class,
# see Enterasys for example.
my $qb_fdb_ids = $bridge->dot1qVlanFdbId() || {};
# Strip the TimeFilter
my $vl_fdb_index = {};
for my $fdb_entry (keys(%$qb_fdb_ids)) {
(my $vlan = $fdb_entry) =~ s/^\d+\.//;
$vl_fdb_index->{$qb_fdb_ids->{$fdb_entry}} = $vlan;
}
return $vl_fdb_index;
}
# Most devices now support Q-BRIDGE-MIB, fall back to
# BRIDGE-MIB for those that don't.
sub fw_mac {
my $bridge = shift;
my $qb = $bridge->qb_fw_mac();
return $qb if (ref {} eq ref $qb and scalar keys %$qb);
return $bridge->SUPER::fw_mac();
}
sub fw_port {
my $bridge = shift;
my $qb = $bridge->qb_fw_port();
return $qb if (ref {} eq ref $qb and scalar keys %$qb);
return $bridge->SUPER::fw_port();
}
sub fw_status {
my $bridge = shift;
my $qb = $bridge->qb_fw_status();
return $qb if (ref {} eq ref $qb and scalar keys %$qb);
return $bridge->SUPER::fw_status();
}
sub i_stp_state {
my $bridge = shift;
my $partial = shift;
@@ -295,24 +380,37 @@ sub i_vlan {
return $i_vlan;
}
sub i_untagged { goto &i_vlan }
sub i_vlan_membership {
my $bridge = shift;
my $partial = shift;
my $index = $bridge->bp_index();
# Use VlanCurrentTable if available since it will include dynamic
# VLANs. However, some devices do not populate the table.
my $v_ports = $bridge->qb_cv_egress() || $bridge->qb_v_egress();
return $bridge->_vlan_hoa($v_ports, $partial);
}
sub i_vlan_membership_untagged {
my $bridge = shift;
my $partial = shift;
# Use VlanCurrentTable if available since it will include dynamic
# VLANs. However, some devices do not populate the table.
my $v_ports = $bridge->qb_cv_untagged() || $bridge->qb_v_untagged();
# 11/07 - Todo: Issue with some devices trying to query VlanCurrentTable
# as table may grow very large with frequent VLAN changes.
# 06/08 - VlanCurrentTable may be due to timefilter, should query with
# zero partial for no time filter.
# my $v_ports = $bridge->qb_cv_egress() || $bridge->qb_v_egress();
return $bridge->_vlan_hoa($v_ports, $partial);
}
my $v_ports = $bridge->qb_v_egress() || {};
sub _vlan_hoa {
my $bridge = shift;
my ( $v_ports, $partial ) = @_;
my $i_vlan_membership = {};
my $index = $bridge->bp_index();
my $vlan_hoa = {};
foreach my $idx ( keys %$v_ports ) {
next unless ( defined $v_ports->{$idx} );
my $portlist = $v_ports->{$idx};
@@ -332,10 +430,10 @@ sub i_vlan_membership {
my $ifindex = $index->{$port};
next unless ( defined($ifindex) ); # shouldn't happen
next if ( defined $partial and $ifindex !~ /^$partial$/ );
push( @{ $i_vlan_membership->{$ifindex} }, $vlan );
push( @{ $vlan_hoa->{$ifindex} }, $vlan );
}
}
return $i_vlan_membership;
return $vlan_hoa;
}
sub set_i_pvid {
@@ -352,6 +450,8 @@ sub set_i_vlan {
return;
}
sub set_i_untagged { goto &set_i_vlan }
sub set_add_i_vlan_tagged {
my $bridge = shift;
@@ -584,6 +684,10 @@ to a hash.
Returns a mapping between C<ifIndex> and the PVID or default VLAN.
=item $vtp->i_untagged()
An alias for C<i_vlan>.
=item $bridge->i_vlan_membership()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
@@ -599,11 +703,21 @@ IDs. These are the VLANs which are members of the egress list for the port.
print "Port: $port VLAN: $vlan\n";
}
=item $bridge->i_vlan_membership_untagged()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
IDs. These are the VLANs which are members of the untagged egress list for
the port.
=item $bridge->qb_i_vlan_t()
Returns reference to hash: key = C<dot1dBasePort>, value = either 'trunk' for
tagged ports or the VLAN ID.
=item $bridge->qb_fdb_index()
Returns reference to hash: key = VLAN ID, value = FDB ID.
=item $bridge->v_index()
Returns VLAN IDs
@@ -657,6 +771,48 @@ to this port.
=back
=head2 Spanning Tree Instance Globals
These are not part of a table, but return a hash reference to ease API
compatibility with MST and PVST implementations indexed by a spanning tree
instance id.
=over
=item $bridge->stp_i_time()
Returns time since last topology change detected. (100ths/second)
(C<dot1dStpTimeSinceTopologyChange>)
=item $bridge->stp_i_time()
Returns the total number of topology changes detected.
(C<dot1dStpTopChanges>)
=item $bridge->stp_i_root()
Returns root of STP.
(C<dot1dStpDesignatedRoot>)
=item $bridge->stp_i_root_port()
Returns the port number of the port that offers the lowest cost path
to the root bridge.
(C<dot1dStpRootPort>)
=item $bridge->stp_i_priority()
Returns the port number of the port that offers the lowest cost path
to the root bridge.
(C<dot1dStpPriority>)
=back
=head2 Spanning Tree Protocol Table (C<dot1dStpPortTable>)
Descriptions are straight from F<BRIDGE-MIB.my>
@@ -855,6 +1011,10 @@ identifier (iid)
(C<dot1qTpFdbPort>)
=item $bridge->qb_fw_vlan()
Returns reference to hash of forwarding table entries VLAN ID
=item $bridge->qb_fw_status()
Returns reference to hash of forwarding table entries status
@@ -876,6 +1036,10 @@ operations.
Currently unsupported. Throws an error and returns.
=item $bridge->set_i_untagged(vlan, ifIndex)
An alias for C<set_i_vlan>.
=item $bridge->set_i_pvid(pvid, ifIndex)
Currently unsupported. Throws an error and returns.
@@ -888,4 +1052,6 @@ Currently unsupported. Throws an error and returns.
Currently unsupported. Throws an error and returns.
=back
=cut

View File

@@ -40,9 +40,10 @@ use SNMP::Info;
@SNMP::Info::CDP::ISA = qw/SNMP::Info Exporter/;
@SNMP::Info::CDP::EXPORT_OK = qw//;
use vars qw/$VERSION $DEBUG %FUNCS %GLOBALS %MIBS %MUNGE $INIT/;
use vars
qw/$VERSION $DEBUG %FUNCS %GLOBALS %MIBS %MUNGE $INIT %CDP_CAPABILITIES/;
$VERSION = '2.10';
$VERSION = '3.28';
# Five data structures required by SNMP::Info
%MIBS = ( 'CISCO-CDP-MIB' => 'cdpGlobalRun' );
@@ -53,40 +54,53 @@ $VERSION = '2.10';
'cdp_run' => 'cdpGlobalRun',
'cdp_interval' => 'cdpGlobalMessageInterval',
'cdp_holdtime' => 'cdpGlobalHoldTime',
'cdp_id' => 'cdpGlobalDeviceId',
'cdp_gid' => 'cdpGlobalDeviceId',
);
%FUNCS = (
'c_index' => 'cdpCacheIfIndex',
'c_proto' => 'cdpCacheAddressType',
'c_addr' => 'cdpCacheAddress',
'c_ver' => 'cdpCacheVersion',
'c_id' => 'cdpCacheDeviceId',
'c_port' => 'cdpCacheDevicePort',
'c_platform' => 'cdpCachePlatform',
'c_capabilities' => 'cdpCacheCapabilities',
'c_domain' => 'cdpCacheVTPMgmtDomain',
'c_vlan' => 'cdpCacheNativeVLAN',
'c_duplex' => 'cdpCacheDuplex',
'c_power' => 'cdpCachePowerConsumption',
'c_pri_mgmt_type'=> 'cdpCachePrimaryMgmtAddrType',
'c_pri_mgmt_addr'=> 'cdpCachePrimaryMgmtAddr',
'c_sec_mgmt_type'=> 'cdpCacheSecondaryMgmtAddrType',
'c_sec_mgmt_addr'=> 'cdpCacheSecondaryMgmtAddr',
'cdp_index' => 'cdpCacheIfIndex',
'cdp_proto' => 'cdpCacheAddressType',
'cdp_addr' => 'cdpCacheAddress',
'cdp_ver' => 'cdpCacheVersion',
'cdp_dev_id' => 'cdpCacheDeviceId',
'cdp_port' => 'cdpCacheDevicePort',
'cdp_platform' => 'cdpCachePlatform',
'cdp_capabilities' => 'cdpCacheCapabilities',
'cdp_domain' => 'cdpCacheVTPMgmtDomain',
'cdp_vlan' => 'cdpCacheNativeVLAN',
'cdp_duplex' => 'cdpCacheDuplex',
'cdp_power' => 'cdpCachePowerConsumption',
'cdp_pri_mgmt_type'=> 'cdpCachePrimaryMgmtAddrType',
'cdp_pri_mgmt_addr'=> 'cdpCachePrimaryMgmtAddr',
'cdp_sec_mgmt_type'=> 'cdpCacheSecondaryMgmtAddrType',
'cdp_sec_mgmt_addr'=> 'cdpCacheSecondaryMgmtAddr',
);
%MUNGE = (
'c_capabilities' => \&SNMP::Info::munge_caps,
'c_platform' => \&SNMP::Info::munge_null,
'c_domain' => \&SNMP::Info::munge_null,
'c_port' => \&SNMP::Info::munge_null,
'c_id' => \&SNMP::Info::munge_null,
'c_ver' => \&SNMP::Info::munge_null,
'c_ip' => \&SNMP::Info::munge_ip,
'c_power' => \&munge_power,
'cdp_capabilities' => \&SNMP::Info::munge_bits,
'cdp_platform' => \&SNMP::Info::munge_null,
'cdp_domain' => \&SNMP::Info::munge_null,
'cdp_port' => \&SNMP::Info::munge_null,
'cdp_ver' => \&SNMP::Info::munge_null,
'cdp_ip' => \&SNMP::Info::munge_ip,
'cdp_power' => \&munge_power,
);
%CDP_CAPABILITIES = (
'Router' => 0x001,
'Trans-Bridge' => 0x002,
'Source-Route-Bridge' => 0x004,
'Switch' => 0x008,
'Host' => 0x010,
'IGMP' => 0x020,
'Repeater' => 0x040,
'VoIP-Phone' => 0x080,
'Remotely-Managed-Device' => 0x100,
'Supports-STP-Dispute' => 0x200,
'Two-port Mac Relay' => 0x400,
);
sub munge_power {
my $power = shift;
my $decimal = substr( $power, -3 );
@@ -101,63 +115,114 @@ sub hasCDP {
# SNMP v1 clients dont have the globals
if ( defined $ver and $ver == 1 ) {
my $c_ip = $cdp->c_ip();
my $cdp_ip = $cdp->cdp_ip();
# See if anything in cdp cache, if so we have cdp
return 1 if ( defined $c_ip and scalar( keys %$c_ip ) );
return 1 if ( defined $cdp_ip and scalar( keys %$cdp_ip ) );
return;
}
return $cdp->cdp_run();
}
sub c_if {
sub cdp_if {
my $cdp = shift;
# See if by some miracle Cisco implemented the cdpCacheIfIndex entry
my $c_index = $cdp->c_index();
return $c_index if defined $c_index;
my $cdp_index = $cdp->cdp_index();
return $cdp_index if defined $cdp_index;
# Nope, didn't think so. Now we fake it.
my $c_ip = $cdp->c_ip();
unless ( defined $c_ip ) {
my $cdp_ip = $cdp->cdp_ip();
unless ( defined $cdp_ip ) {
$cdp->error_throw(
"SNMP::Info::CDP:c_if() - Device doesn't have cdp_ip() data. Can't fake cdp_index()"
"SNMP::Info::CDP:cdp_if() - Device doesn't have cdp_ip() data. Can't fake cdp_index()"
);
return;
}
my %c_if;
foreach my $key ( keys %$c_ip ) {
my %cdp_if;
foreach my $key ( keys %$cdp_ip ) {
next unless defined $key;
my $iid = $key;
# Truncate .1 from cdp cache entry
$iid =~ s/\.\d+$//;
$c_if{$key} = $iid;
$cdp_if{$key} = $iid;
}
return \%c_if;
return \%cdp_if;
}
sub c_ip {
sub cdp_ip {
my $cdp = shift;
my $partial = shift;
my $c_addr = $cdp->c_addr($partial) || {};
my $c_proto = $cdp->c_proto($partial) || {};
my $cdp_addr = $cdp->cdp_addr($partial) || {};
my $cdp_proto = $cdp->cdp_proto($partial) || {};
my %c_ip;
foreach my $key ( keys %$c_addr ) {
my $addr = $c_addr->{$key};
my $proto = $c_proto->{$key};
my %cdp_ip;
foreach my $key ( keys %$cdp_addr ) {
my $addr = $cdp_addr->{$key};
my $proto = $cdp_proto->{$key};
next unless defined $addr;
next if ( defined $proto and $proto ne 'ip' );
my $ip = join( '.', unpack( 'C4', $addr ) );
$c_ip{$key} = $ip;
$cdp_ip{$key} = $ip;
}
return \%c_ip;
return \%cdp_ip;
}
sub cdp_cap {
my $cdp = shift;
my $partial = shift;
# Some devices return a hex-string, others return a space separated
# string, we need the raw data to determine return value and
# take appropriate action
my $cdp_caps = $cdp->cdp_capabilities_raw($partial) || {};
my %cdp_cap;
foreach my $key ( keys %$cdp_caps ) {
my $cap_raw = $cdp_caps->{$key};
next unless $cap_raw;
# Simple check, smallest single string is either Host or IGMP with a
# space added on the end for a length of 5, hex string is normally
# 4 bytes, but since only one byte was traditionally needed process
# as hex for a length of 4 or less
if ( length $cap_raw < 5 ) {
my $cap_hex = join( '',
map { sprintf "%x", $_ } unpack( 'C*', $cap_raw ) );
foreach my $capability ( keys %CDP_CAPABILITIES ) {
if ( ( hex $cap_hex ) & $CDP_CAPABILITIES{$capability} ) {
push( @{ $cdp_cap{$key} }, $capability );
}
}
}
else {
my @caps = split /\s/, $cap_raw;
push( @{ $cdp_cap{$key} }, @caps );
}
}
return \%cdp_cap;
}
sub cdp_id {
my $cdp = shift;
my $partial = shift;
my $ch = $cdp->cdp_dev_id($partial) || {};
my %cdp_id;
foreach my $key ( sort keys %$ch ) {
my $id = $ch->{$key};
next unless $id;
$id = SNMP::Info::munge_mac($id) || SNMP::Info::munge_null($id);
$cdp_id{$key} = $id;
}
return \%cdp_id;
}
1;
@@ -188,15 +253,15 @@ Max Baker
# Print out a map of device ports with CDP neighbors:
my $interfaces = $cdp->interfaces();
my $c_if = $cdp->c_if();
my $c_ip = $cdp->c_ip();
my $c_port = $cdp->c_port();
my $cdp_if = $cdp->cdp_if();
my $cdp_ip = $cdp->cdp_ip();
my $cdp_port = $cdp->cdp_port();
foreach my $cdp_key (keys %$c_ip){
my $iid = $c_if->{$cdp_key};
foreach my $cdp_key (keys %$cdp_ip){
my $iid = $cdp_if->{$cdp_key};
my $port = $interfaces->{$iid};
my $neighbor = $c_ip->{$cdp_key};
my $neighbor_port = $c_port->{$cdp_key};
my $neighbor = $cdp_ip->{$cdp_key};
my $neighbor_port = $cdp_port->{$cdp_key};
print "Port : $port connected to $neighbor / $neighbor_port\n";
}
@@ -260,7 +325,7 @@ Time in seconds that CDP messages are kept.
(C<cdpGlobalHoldTime>)
=item $cdp->cdp_id()
=item $cdp->cdp_gid()
Returns CDP device ID.
@@ -280,153 +345,170 @@ to a hash.
=over
=item $cdp->c_capabilities()
=item $cdp->cdp_capabilities()
Returns Device Functional Capabilities. Results are munged into an ascii
binary string, 7 digits long, MSB. Each digit represents a bit from the
table below.
From L<http://www.cisco.com/univercd/cc/td/doc/product/lan/trsrb/frames.htm#18843>:
binary string, MSB. Each digit represents a bit from the table below from
the CDP Capabilities Mapping to Smartport Type table within the
Cisco Small Business 200 Series Smart Switch Administration Guide,
L<http://www.cisco.com/c/en/us/support/switches/small-business-200-series-smart-switches/products-maintenance-guides-list.html>:
(Bit) - Description
=over
=item (0x40) - Provides level 1 functionality.
=item (0x400) - Two-Port MAC Relay.
=item (0x20) - The bridge or switch does not forward IGMP Report packets on
=item (0x200) - CAST Phone Port / CVTA / Supports-STP-Dispute depending
upon platform.
=item (0x100) - Remotely-Managed Device.
=item (0x80) - VoIP Phone.
=item (0x40) - Provides level 1 functionality.
=item (0x20) - The bridge or switch does not forward IGMP Report packets on
non router ports.
=item (0x10) - Sends and receives packets for at least one network layer
=item (0x10) - Sends and receives packets for at least one network layer
protocol. If the device is routing the protocol, this bit should not be set.
=item (0x08) - Performs level 2 switching. The difference between this bit
=item (0x08) - Performs level 2 switching. The difference between this bit
and bit 0x02 is that a switch does not run the Spanning-Tree Protocol. This
device is assumed to be deployed in a physical loop-free topology.
=item (0x04) - Performs level 2 source-route bridging. A source-route bridge
=item (0x04) - Performs level 2 source-route bridging. A source-route bridge
would set both this bit and bit 0x02.
=item (0x02) - Performs level 2 transparent bridging.
=item (0x02) - Performs level 2 transparent bridging.
=item (0x01) - Performs level 3 routing for at least one network layer
=item (0x01) - Performs level 3 routing for at least one network layer
protocol.
=back
Thanks to Martin Lorensen C<martin -at- lorensen.dk> for a pointer to this
information.
Thanks to Martin Lorensen for a pointer to the original information and
CPAN user Alex for updates.
(C<cdpCacheCapabilities>)
=item $cdp->c_domain()
=item $cdp->cdp_domain()
Returns remote VTP Management Domain as defined in
C<CISCO-VTP-MIB::managementDomainName>
(C<cdpCacheVTPMgmtDomain>)
=item $cdp->c_duplex()
=item $cdp->cdp_duplex()
Returns the port duplex status from remote devices.
(C<cdpCacheDuplex>)
=item $cdp->c_id()
=item $cdp->cdp_id()
Returns remote device id string
(C<cdpCacheDeviceId>)
=item $cdp->c_if()
=item $cdp->cdp_if()
Returns the mapping to the SNMP Interface Table.
Note that a lot devices don't implement $cdp->c_index(), So if it isn't
Note that a lot devices don't implement $cdp->cdp_index(), So if it isn't
around, we fake it.
In order to map the cdp table entry back to the interfaces() entry, we
truncate the last number off of it :
# it exists, yay.
my $c_index = $device->c_index();
return $c_index if defined $c_index;
my $cdp_index = $device->cdp_index();
return $cdp_index if defined $cdp_index;
# if not, let's fake it
my $c_ip = $device->c_ip();
my $cdp_ip = $device->cdp_ip();
my %c_if
foreach my $key (keys %$c_ip){
my %cdp_if
foreach my $key (keys %$cdp_ip){
$iid = $key;
## Truncate off .1 from cdp response
$iid =~ s/\.\d+$//;
$c_if{$key} = $iid;
$cdp_if{$key} = $iid;
}
return \%c_if;
return \%cdp_if;
=item $cdp->c_index()
=item $cdp->cdp_index()
Returns the mapping to the SNMP2 Interface table for CDP Cache Entries.
Most devices don't implement this, so you probably want to use $cdp->c_if()
Most devices don't implement this, so you probably want to use $cdp->cdp_if()
instead.
See c_if() entry.
See cdp_if() entry.
(C<cdpCacheIfIndex>)
=item $cdp->c_ip()
=item $cdp->cdp_ip()
If $cdp->c_proto() is supported, returns remote IPV4 address only. Otherwise
If $cdp->cdp_proto() is supported, returns remote IPV4 address only. Otherwise
it will return all addresses.
(C<cdpCacheAddress>)
=item $cdp->c_addr()
=item $cdp->cdp_addr()
Returns remote address
(C<cdpCacheAddress>)
=item $cdp->c_platform()
=item $cdp->cdp_platform()
Returns remote platform id
(C<cdpCachePlatform>)
=item $cdp->c_port()
=item $cdp->cdp_port()
Returns remote port ID
(C<cdpDevicePort>)
=item $cdp->c_proto()
=item $cdp->cdp_proto()
Returns remote address type received. Usually IP.
(C<cdpCacheAddressType>)
=item $cdp->c_ver()
=item $cdp->cdp_ver()
Returns remote hardware version
(C<cdpCacheVersion>)
=item $cdp->c_vlan()
=item $cdp->cdp_vlan()
Returns the remote interface native VLAN.
(C<cdpCacheNativeVLAN>)
=item $cdp->c_power()
=item $cdp->cdp_power()
Returns the amount of power consumed by remote device in milliwatts munged
for decimal placement.
(C<cdpCachePowerConsumption>)
=item $cdp->cdp_cap()
Returns hash of arrays with each array containing the system capabilities
supported by the remote system. Possible elements in the array are
C<Router>, C<Trans-Bridge>, C<Source-Route-Bridge>, C<Switch>, C<Host>,
C<IGMP>, C<Repeater>, C<VoIP-Phone>, C<Remotely-Managed-Device>,
C<Supports-STP-Dispute>, and C<Two-port Mac Relay>.
=back
=head1 Data Munging Callback Subroutines

150
Info/CiscoAgg.pm Normal file
View File

@@ -0,0 +1,150 @@
# SNMP::Info::CiscoAgg
#
# Copyright (c) 2014 SNMP::Info Developers
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::CiscoAgg;
use strict;
use Exporter;
use SNMP::Info::IEEE802dot3ad 'agg_ports_lag';
@SNMP::Info::CiscoAgg::ISA = qw/
SNMP::Info::IEEE802dot3ad
Exporter
/;
@SNMP::Info::CiscoAgg::EXPORT_OK = qw/
agg_ports
/;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::IEEE802dot3ad::MIBS,
'CISCO-PAGP-MIB' => 'pagpGroupIfIndex',
);
%GLOBALS = ();
%FUNCS = ();
%MUNGE = ();
sub agg_ports_pagp {
my $dev = shift;
# Note that this mapping will miss any interfaces that are down during
# polling. If one of the members is up, we could use
# pagpAdminGroupCapability to figure things out, but if they're all
# down, we're hosed. Since we could be hosed anyway, we skip the fancy
# stuff.
my $mapping = {};
my $group = $dev->pagpGroupIfIndex;
for my $slave (keys %$group) {
my $master = $group->{$slave};
next if($master == 0 || $slave == $master);
$mapping->{$slave} = $master;
}
return $mapping;
}
# until we have PAgP data and need to combine with LAG data
sub agg_ports {
my $ret = {%{agg_ports_pagp(@_)}, %{agg_ports_lag(@_)}};
return $ret;
}
1;
__END__
=head1 NAME
SNMP::Info::CiscoAgg - SNMP Interface to Cisco Aggregated Links
=head1 AUTHOR
SNMP::Info Developers
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $info = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myrouter',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $info->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
This class provides access to Aggregated Links configuration on Cisco devices.
It combines Cisco PAgP and IEEE 802.3ad information.
Use or create in a subclass of SNMP::Info. Do not use directly.
=head2 Inherited Classes
L<SNMP::Info::IEEE802dot3ad>
=head2 Required MIBs
=over
=item F<CISCO-PAGP-MIB>
=back
MIBs can be found at ftp://ftp.cisco.com/pub/mibs/v2/v2.tar.gz
=head1 METHODS
=over 4
=item C<agg_ports>
Returns a HASH reference mapping from slave to master port for each member of
a port bundle on the device. Keys are ifIndex of the slave ports, Values are
ifIndex of the corresponding master ports.
=item C<agg_ports_pagp>
Implements the PAgP LAG info retrieval. Merged into C<agg_ports> data
automatically.
=back
=cut

View File

@@ -39,7 +39,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
'CISCO-CONFIG-COPY-MIB' => 'ccCopyTable',

View File

@@ -38,7 +38,7 @@ use Exporter;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE %PAECAPABILITIES/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
'CISCO-PORT-SECURITY-MIB' => 'ciscoPortSecurityMIB',

View File

@@ -39,7 +39,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'CISCO-POWER-ETHERNET-EXT-MIB' => 'cpeExtPsePortEntPhyIndex',
'CISCO-CDP-MIB' => 'cdpCachePowerConsumption' );
@@ -175,7 +175,7 @@ Maps the C<pethPsePortTable> to C<ifIndex> by way of the F<ENTITY-MIB>.
=item $poe->peth_port_power()
Power supplied by PoE ports, in milliwatts
("cpeExtPsePortPwrConsumption")
(C<cpeExtPsePortPwrConsumption>)
=back
@@ -185,8 +185,8 @@ Power supplied by PoE ports, in milliwatts
=item $poe->peth_port_neg_power()
Power negotiated using CDP, in milliwats
("cdpCachePowerConsumption")
Power negotiated using CDP, in milliwatts
(C<cdpCachePowerConsumption>)
=back

View File

@@ -39,7 +39,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'CISCO-CLASS-BASED-QOS-MIB' => 'cbQosIfIndex', );

View File

@@ -39,7 +39,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'CISCO-RTTMON-MIB' => 'rttMonCtrlAdminOwner', );

View File

@@ -32,14 +32,13 @@ package SNMP::Info::CiscoStack;
use strict;
use Exporter;
use SNMP::Info;
@SNMP::Info::CiscoStack::ISA = qw/SNMP::Info Exporter/;
@SNMP::Info::CiscoStack::ISA = qw/Exporter/;
@SNMP::Info::CiscoStack::EXPORT_OK = qw//;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE %PORTSTAT/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'CISCO-STACK-MIB' => 'ciscoStackMIB', );
@@ -215,9 +214,8 @@ sub i_speed_admin {
my $partial = shift;
my %i_speed_admin;
my $p_port = $stack->p_port() || {};
my %mapping = reverse %$p_port;
my $p_speed = $stack->p_speed( $mapping{$partial} );
my $p_port = $stack->p_port() || {};
my $p_speed = $stack->p_speed() || {};
my %speeds = (
'autoDetect' => 'auto',

View File

@@ -42,7 +42,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
'SNMPv2-MIB' => 'sysDescr',
@@ -51,6 +51,7 @@ $VERSION = '2.10';
'OLD-CISCO-SYSTEM-MIB' => 'writeMem',
'CISCO-PRODUCTS-MIB' => 'sysName',
'ENTITY-MIB' => 'entPhysicalSoftwareRev',
'CISCO-IMAGE-MIB' => 'ciscoImageString',
# some older catalysts live here
'CISCO-STACK-MIB' => 'wsc1900sysID',
@@ -87,6 +88,9 @@ $VERSION = '2.10';
# CISCO-FLASH-MIB::ciscoFlashDeviceTable
'cisco_flash_size' => 'ciscoFlashDeviceSize',
# CISCO-IMAGE-MIB
'ci_images' => 'ciscoImageString',
);
%MUNGE = ();
@@ -100,13 +104,16 @@ sub os {
my $descr = $l2->description() || '';
# order here matters - there are Catalysts that run IOS and have catalyst
# in their description field.
# in their description field, as well as Catalysts that run IOS-XE.
return 'ios-xe' if ( $descr =~ /IOS-XE/ );
return 'ios-xr' if ( $descr =~ /IOS XR/ );
return 'ios' if ( $descr =~ /IOS/ );
return 'catalyst' if ( $descr =~ /catalyst/i );
return 'css' if ( $descr =~ /Content Switch SW/ );
return 'css-sca' if ( $descr =~ /Cisco Systems Inc CSS-SCA-/ );
return 'pix' if ( $descr =~ /Cisco PIX Security Appliance/ );
return 'asa' if ( $descr =~ /Cisco Adaptive Security Appliance/ );
return 'san-os' if ( $descr =~ /Cisco SAN-OS/ );
if ( $descr =~ /Application Control Engine Service Module/ ) {
# Only the admin context implements the entity MIB
@@ -195,6 +202,13 @@ sub os_ver {
return $1;
}
if ( defined $os
and $os eq 'ios-xr'
and defined $descr
and $descr =~ m/Version (\d+[\.\d]+)/ )
{
return $1;
}
# Newer Catalysts and IOS devices
if ( defined $descr
@@ -203,6 +217,15 @@ sub os_ver {
return $1;
}
# Generic fallback: try to determine running image from CISCO-IMAGE-MIB
my $image_info = $l2->ciscoImageString() || {};
foreach my $row (keys %$image_info) {
my $info_string = $image_info->{$row};
if ($info_string =~ /CW_VERSION\$([^\$]+)\$/) {
return $1;
}
}
return;
}
@@ -358,6 +381,8 @@ None.
=item F<ENTITY-MIB>
=item F<CISCO-IMAGE-MIB>
=back
MIBs can be found at ftp://ftp.cisco.com/pub/mibs/v2/v2.tar.gz
@@ -388,58 +413,35 @@ Returns mem_free() + mem_used()
=item $ciscostats->os()
Tries to parse if device is running IOS or CatOS from description()
Tries to parse if device is running 'IOS', 'CatOS', 'IOS-XE' or something else
from description()
Available values :
Available values:
=over
=item pix
Cisco PIX
=item asa
Cisco ASA
=item fwsm
Single-mode FWSM
=item fwsm-admin
Admin context of multi-context FWSM
=item fwsm-context
Standard context of multi-context FWSM
=item ace-admin
Admin context of ACE module
=item ace-context
Standard context of ACE module (NB: No OS version detection
is available, but will be the same as it's 'ace admin')
=item css
Cisco Content Switch
=item css-sca
Cisco Content Switch Secure Content Acceleration
=back
'ios' for Cisco IOS
'ios-xe' for Cisco IOS XE
'ios-xr' for Cisco IOS XR
'pix' for Cisco PIX
'asa' for Cisco ASA
'fwsm' for Single-mode FWSM
'fwsm-admin' for Admin context of multi-context FWSM
'fwsm-context' for Standard context of multi-context FWSM
'ace-admin' for Admin context of ACE module
'ace-context' for Standard context of ACE module (NB: No OS version
detection is available, but will be the same as it's
'ace admin')
'css' for Cisco Content Switch
'css-sca' for Cisco Content Switch Secure Content Acceleration
'san-os' for Cisco SAN-OS
=item $ciscostats->os_ver()
Tries to parse device operating system version from description()
Tries to parse device operating system version from description(), falls back
to parsing C<CISCO-IMAGE-MIB::ciscoImageString> if needed
=item $ciscostats->os_bin()
Tries to parse ROMMON version from rom_id() string
Tries to parse C<ROMMON> version from rom_id() string
=item $ciscostats->ios_cpu()
@@ -540,4 +542,16 @@ zero if the device has been removed.
=back
=head2 Cisco Image Table (C<ciscoImageTable>)
=over
=item $ci->ci_images()
Returns the table of image strings.
C<ciscoImageString>
=back
=cut

View File

@@ -35,7 +35,9 @@ use SNMP::Info;
use SNMP::Info::Bridge;
use vars qw/$VERSION $DEBUG %MIBS %FUNCS %GLOBALS %MUNGE %PORTSTAT $INIT/;
$VERSION = '2.10';
$VERSION = '3.28';
@SNMP::Info::CiscoStpExtensions::ISA = qw/SNMP::Info::Bridge SNMP::Info Exporter/;
@SNMP::Info::CiscoStpExtensions::EXPORT_OK = qw//;
@@ -75,7 +77,7 @@ $VERSION = '2.10';
sub stp_ver {
my $self = shift;
my $stp_ver = $self->SUPER::stp_ver();
if ( $stp_ver eq 'unknown' ){
if ( !defined($stp_ver) || $stp_ver eq 'unknown' ){
if ( defined $self->stpx_stp_type() ){
$stp_ver = $self->stpx_stp_type();
}

View File

@@ -41,7 +41,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
'CISCO-VTP-MIB' => 'vtpVlanName',
@@ -149,6 +149,7 @@ sub i_vlan {
my $port_vlan = $vtp->vtp_trunk_native($partial) || {};
my $i_vlan = $vtp->i_vlan2($partial) || {};
my $trunk_dyn = $vtp->vtp_trunk_dyn($partial) || {};
my $trunk_dyn_stat = $vtp->vtp_trunk_dyn_stat($partial) || {};
my %i_vlans;
@@ -165,15 +166,23 @@ sub i_vlan {
foreach my $port ( keys %$port_vlan ) {
my $vlan = $port_vlan->{$port};
next unless defined $vlan;
# ports up and trunking should have a trunking status
my $stat = $trunk_dyn_stat->{$port};
if ( defined $stat and $stat =~ /^trunking/ ) {
# vtp_trunk_dyn_stat is not useful for down ports
# so we use vtp_trunk_dyn to see if trunking is set
my $dyn = $trunk_dyn->{$port};
if (($stat and $stat =~ /^trunking/ )
or ($dyn and (($dyn eq 'on') or ($dyn eq 'onNoNegotiate'))))
{
$i_vlans{$port} = $vlan;
}
}
# Check in CISCO-VLAN-IFTABLE-RELATION-MIB
# Is this only for Aironet??? If so, it needs
# to be removed from this class
# Used for traditional Cisco Routers and Aironet
my $v_cvi_if = $vtp->v_cvi_if();
if ( defined $v_cvi_if ) {
@@ -191,6 +200,22 @@ sub i_vlan {
return \%i_vlans;
}
sub i_untagged {
my $vtp = shift;
my ( $ifindex ) = @_;
# cannot defer to i_vlan - vtp_trunk_dyn_stat is not useful for down ports
# so we use vtp_trunk_dyn as a hint to use i_pvid
my $trunking = eval { $vtp->vtp_trunk_dyn($ifindex)->{$ifindex} };
if ($trunking and (($trunking eq 'on') or ($trunking eq 'onNoNegotiate'))) {
return $vtp->i_pvid(@_);
}
else {
return $vtp->i_vlan(@_);
}
}
sub i_vlan_membership {
my $vtp = shift;
my $partial = shift;
@@ -202,6 +227,8 @@ sub i_vlan_membership {
my $vtp_vlans = $vtp->v_state();
my $i_vlan = $vtp->i_vlan2($partial) || {};
my $trunk_dyn_stat = $vtp->vtp_trunk_dyn_stat($partial) || {};
my $trunk_dyn = $vtp->vtp_trunk_dyn($partial) || {};
my $i_voice_vlan = $vtp->i_voice_vlan($partial) || {};
my $i_vlan_membership = {};
@@ -209,14 +236,24 @@ sub i_vlan_membership {
foreach my $port ( keys %$i_vlan ) {
my $vlan = $i_vlan->{$port};
next unless defined $vlan;
my $stat = $trunk_dyn_stat->{$port};
if ( defined $stat and $stat =~ /notTrunking/ ) {
my $dyn = $trunk_dyn->{$port};
unless ($dyn and (($dyn eq 'on') or ($dyn eq 'onNoNegotiate'))) {
push( @{ $i_vlan_membership->{$port} }, $vlan );
}
}
# Get voice VLANs
foreach my $port ( keys %$i_voice_vlan ) {
my $vlan = $i_voice_vlan->{$port};
next unless defined $vlan;
next unless ($vlan =~ m/[[:digit:]]+/ and $vlan < 4095);
my $dyn = $trunk_dyn->{$port};
unless ($dyn and (($dyn eq 'on') or ($dyn eq 'onNoNegotiate'))) {
push( @{ $i_vlan_membership->{$port} }, $vlan );
}
}
# Get trunk ports
my %oper_vlans;
foreach my $iid ( keys %$vtp_vlans ) {
my $vlan = 0;
@@ -233,7 +270,9 @@ sub i_vlan_membership {
foreach my $port ( keys %$ports_vlans ) {
my $stat = $trunk_dyn_stat->{$port};
if ( defined $stat and $stat =~ /^trunking/ ) {
my $dyn = $trunk_dyn->{$port};
if (($stat and $stat =~ /^trunking/ )
or ($dyn and (($dyn eq 'on') or ($dyn eq 'onNoNegotiate')))) {
my $k = 0;
my $list1 = $ports_vlans->{$port} || '0';
my $list2 = $ports_vlans_2k->{$port} || '0';
@@ -255,6 +294,20 @@ sub i_vlan_membership {
return $i_vlan_membership;
}
sub i_vlan_membership_untagged {
my $vtp = shift;
my $partial = shift;
my $vlans = $vtp->i_vlan($partial);
my $i_vlan_membership = {};
foreach my $port (keys %$vlans) {
my $vlan = $vlans->{$port};
push( @{ $i_vlan_membership->{$port} }, $vlan );
}
return $i_vlan_membership;
}
sub set_i_pvid {
my $vtp = shift;
my ( $vlan_id, $ifindex ) = @_;
@@ -306,6 +359,22 @@ sub set_i_vlan {
return;
}
sub set_i_untagged {
my $vtp = shift;
my ( $vlan_id, $ifindex ) = @_;
# cannot defer to i_vlan - vtp_trunk_dyn_stat is not useful for down ports
# so we use vtp_trunk_dyn as a hint to use i_pvid
my $trunking = eval { $vtp->vtp_trunk_dyn($ifindex)->{$ifindex} };
if ($trunking and (($trunking eq 'on') or ($trunking eq 'onNoNegotiate'))) {
return $vtp->set_i_pvid(@_);
}
else {
return $vtp->set_i_vlan(@_);
}
}
sub set_add_i_vlan_tagged {
my $vtp = shift;
my ( $vlan_id, $ifindex ) = @_;
@@ -540,6 +609,10 @@ Your device will only implement a subset of these methods.
Returns a mapping between C<ifIndex> and assigned VLAN ID for access ports
and the default VLAN ID for trunk ports.
=item $vtp->i_untagged()
An alias for C<i_vlan>.
=item $vtp->i_vlan_membership()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
@@ -555,6 +628,12 @@ IDs. These are the VLANs which are members of enabled VLAN list for the port.
print "Port: $port VLAN: $vlan\n";
}
=item $vtp->i_vlan_membership_untagged()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
IDs. These are the VLANs which are members of the untagged egress list for
the port.
=back
=head2 VLAN Table (C<CISCO-VTP-MIB::vtpVlanTable>)
@@ -835,6 +914,12 @@ port C<ifIndex>. This method should only be used on trunk ports.
$vtp->set_i_pvid('2', $if_map{'FastEthernet0/1'})
or die "Couldn't change port default VLAN. ",$vtp->error(1);
=item $vtp->set_i_untagged ( vlan, ifIndex )
This method attempts to work out whether the port referenced by ifIndex is
trunking, and if so will return the value of C<set_i_pvid>. Otherwise, the
value of C<set_i_vlan> is returned.
=item $vtp->set_add_i_vlan_tagged ( vlan, ifIndex )
Adds the VLAN to the enabled VLANs list of the port, must be supplied with the

View File

@@ -39,7 +39,7 @@ use SNMP::Info;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
'EXTREME-EDP-MIB' => 'extremeEdpPortIfIndex',

View File

@@ -41,7 +41,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'ENTITY-MIB' => 'entPhysicalSerialNum' );
@@ -138,7 +138,7 @@ Max Baker
=head1 DESCRIPTION
F<ENTITY-MIB> is used by Layer 2 devices from HP, Aironet, Foundry, Cisco,
F<ENTITY-MIB> is used by Layer 2 devices from Brocade, Cisco, HP,
and more.
See RFC 2737 for full details.

View File

@@ -41,7 +41,7 @@ use SNMP::Info;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'EtherLike-MIB' => 'etherMIB' );

View File

@@ -42,18 +42,11 @@ use SNMP::Info;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'FOUNDRY-SN-SWITCH-GROUP-MIB' => 'snFdpGlobalRun' );
%GLOBALS = (
# CDP-Compatibility
'cdp_interval' => 'snFdpGlobalMessageInterval',
'cdp_holdtime' => 'snFdpGlobalHoldTime',
'cdp_id' => 'snFdpGlobalDeviceId',
#
'fdp_run' => 'snFdpGlobalRun',
'fdp_interval' => 'snFdpGlobalMessageInterval',
'fdp_holdtime' => 'snFdpGlobalHoldTime',
@@ -61,27 +54,27 @@ $VERSION = '2.10';
);
%FUNCS = (
'c_index' => 'snFdpCacheIfIndex',
'c_proto' => 'snFdpCacheAddressType',
'c_ip' => 'snFdpCacheAddress',
'c_ver' => 'snFdpCacheVersion',
'c_id' => 'snFdpCacheDeviceId',
'c_port' => 'snFdpCacheDevicePort',
'c_platform' => 'snFdpCachePlatform',
'c_capabilities' => 'snFdpCacheCapabilities',
'c_domain' => 'snFdpCacheVTPMgmtDomain',
'c_vlan' => 'snFdpCacheNativeVLAN',
'c_duplex' => 'snFdpCacheDuplex',
'fdp_index' => 'snFdpCacheIfIndex',
'fdp_proto' => 'snFdpCacheAddressType',
'fdp_ip' => 'snFdpCacheAddress',
'fdp_ver' => 'snFdpCacheVersion',
'fdp_id' => 'snFdpCacheDeviceId',
'fdp_port' => 'snFdpCacheDevicePort',
'fdp_platform' => 'snFdpCachePlatform',
'fdp_capabilities' => 'snFdpCacheCapabilities',
'fdp_domain' => 'snFdpCacheVTPMgmtDomain',
'fdp_vlan' => 'snFdpCacheNativeVLAN',
'fdp_duplex' => 'snFdpCacheDuplex',
);
%MUNGE = (
'c_capabilities' => \&SNMP::Info::munge_caps,
'c_ip' => \&SNMP::Info::munge_ip
'fdp_capabilities' => \&SNMP::Info::munge_bits,
'fdp_ip' => \&SNMP::Info::munge_ip
);
sub cdp_run {
sub fdp_run {
my $fdp = shift;
my $fdp_run = $fdp->fdp_run();
my $fdp_run = $fdp->orig_fdp_run();
# if fdp_run isn't implemented on device, assume FDP is on
return $fdp_run if defined $fdp_run;
@@ -107,7 +100,7 @@ sub hasFDP {
return $fdp->fdp_run();
}
sub c_if {
sub fdp_if {
my $fdp = shift;
# See if by some miracle Cisco implemented the fdpCacheIfIndex entry
@@ -115,7 +108,7 @@ sub c_if {
return $fdp_index if defined $fdp_index;
# Nope, didn't think so. Now we fake it.
my $fdp_ip = $fdp->c_ip();
my $fdp_ip = $fdp->fdp_ip();
unless ( defined $fdp_ip ) {
$fdp->error_throw(
"SNMP::Info::FDP:fdp_if() - Device doesn't have fdp_ip() data. Can't fake fdp_index()"
@@ -185,8 +178,7 @@ interface to FDP information through SNMP.
FDP is a Layer 2 protocol that supplies topology information of
devices that also speak FDP, mostly switches and routers. It has
similar functionality to Cisco's CDP, and the SNMP interface is
virtually identical. FDP is implemented in Foundry devices, including
the Bigiron and Fastiron range.
virtually identical. FDP is implemented in Brocade (Foundry) devices.
Create or use a device subclass that inherits this class. Do not use
directly.
@@ -256,19 +248,19 @@ CDP compatibility
=over
=item $fdp->c_interval()
=item $fdp->fdp_interval()
Interval in seconds at which FDP messages are generated.
(C<fdpGlobalMessageInterval>)
=item $fdp->c_holdtime()
=item $fdp->fdp_holdtime()
Time in seconds that FDP messages are kept.
(C<fdpGlobalHoldTime>)
=item $fdp->c_id()
=item $fdp->fdp_id()
Returns FDP device ID.
@@ -277,7 +269,7 @@ retrieved from remote devices with $fdp->id().
(C<fdpGlobalDeviceId>)
=item $cdp->cdp_run()
=item $fdp->fdp_run()
Is FDP enabled on this device?
@@ -294,11 +286,10 @@ CDP compatibility
=over
=item $fdp->c_capabilities()
=item $fdp->fdp_capabilities()
Returns Device Functional Capabilities. Results are munged into an ascii
binary string, 7 digits long, MSB. Each digit represents a bit from the
table below.
binary string, MSB. Each digit represents a bit from the table below.
From L<http://www.cisco.com/univercd/cc/td/doc/product/lan/trsrb/frames.htm#18843>:
@@ -328,31 +319,30 @@ protocol.
=back
Thanks to Martin Lorensen C<martin -at- lorensen.dk> for a pointer to
this information.
Thanks to Martin Lorensen for a pointer to this information.
(C<fdpCacheCapabilities>)
=item $fdp->c_domain()
=item $fdp->fdp_domain()
The CDP version of this returns remote VTP Management Domain as defined
in C<CISCO-VTP-MIB::managementDomainName>
(C<fdpCacheVTPMgmtDomain>)
=item $fdp->c_duplex()
=item $fdp->fdp_duplex()
Returns the port duplex status from remote devices.
(C<fdpCacheDuplex>)
=item $fdp->c_id()
=item $fdp->fdp_id()
Returns remote device id string
(C<fdpCacheDeviceId>)
=item $fdp->c_if()
=item $fdp->fdp_if()
Returns the mapping to the SNMP Interface Table.
@@ -380,7 +370,7 @@ truncate the last number off of it :
return \%fdp_if;
=item $fdp->c_index()
=item $fdp->fdp_index()
Returns the mapping to the SNMP2 Interface table for FDP Cache Entries.
@@ -391,37 +381,37 @@ See fdp_if() entry.
(C<fdpCacheIfIndex>)
=item $fdp->c_ip()
=item $fdp->fdp_ip()
Returns remote IP address
(C<fdpCacheAddress>)
=item $fdp->c_platform()
=item $fdp->fdp_platform()
Returns remote platform id
(C<fdpCachePlatform>)
=item $fdp->c_port()
=item $fdp->fdp_port()
Returns remote port ID
(C<fdpDevicePort>)
=item $fdp->c_proto()
=item $fdp->fdp_proto()
Returns remote address type received. Usually IP.
(C<fdpCacheAddressType>)
=item $fdp->c_ver()
=item $fdp->fdp_ver()
Returns remote hardware version
(C<fdpCacheVersion>)
=item $fdp->c_vlan()
=item $fdp->fdp_vlan()
Returns the remote interface native VLAN.

View File

@@ -38,7 +38,7 @@ use Exporter;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( 'IEEE802dot11-MIB' => 'dot11DesiredSSID', );

141
Info/IEEE802dot3ad.pm Normal file
View File

@@ -0,0 +1,141 @@
# SNMP::Info::IEEE802dot3ad
#
# Copyright (c) 2014 SNMP::Info Developers
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::IEEE802dot3ad;
use strict;
use Exporter;
use SNMP::Info::Aggregate;
@SNMP::Info::IEEE802dot3ad::ISA = qw/
SNMP::Info::Aggregate
Exporter
/;
@SNMP::Info::IEEE802dot3ad::EXPORT_OK = qw/
agg_ports_lag
/;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Aggregate::MIBS,
'IEEE8023-LAG-MIB' => 'dot3adAggPortSelectedAggID',
);
%GLOBALS = ();
%FUNCS = ();
%MUNGE = ();
sub agg_ports_lag {
my $dev = shift;
# TODO: implement partial
my $masters = $dev->dot3adAggActorOperKey;
my $slaves = $dev->dot3adAggPortActorOperKey;
return {} unless
ref {} eq ref $masters and scalar keys %$masters
and ref {} eq ref $slaves and scalar keys %$slaves;
my $ret = {};
foreach my $s (keys %$slaves) {
next if $slaves->{$s} == 0;
foreach my $m (keys %$masters) {
next unless $masters->{$m} == $slaves->{$s};
$ret->{$s} = $m;
last;
}
}
return $ret;
}
1;
__END__
=head1 NAME
SNMP::Info::IEEE802dot3ad - SNMP Interface to IEEE Aggregated Links
=head1 AUTHOR
SNMP::Info Developers
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $info = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myrouter',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $info->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
This class provides access to Aggregated Links configuration on devices
implementing C<IEEE8023-LAG-MIB>.
Use or create in a subclass of SNMP::Info. Do not use directly.
=head2 Inherited Classes
L<SNMP::Info::Aggregate>
=head2 Required MIBs
=over
=item F<IEEE8023-LAG-MIB>
=back
=head1 METHODS
=over 4
=item C<agg_ports_lag>
Returns a HASH reference mapping from slave to master port for each member of
a port bundle on the device. Keys are ifIndex of the slave ports, Values are
ifIndex of the corresponding master ports.
=back
=cut

View File

@@ -44,7 +44,7 @@ use constant {
IPV6MIB => 3,
};
$VERSION = '2.10';
$VERSION = '3.28';
@@ -59,7 +59,7 @@ $VERSION = '2.10';
%FUNCS = (
'ip_n2p_phys_addr' => 'ipNetToPhysicalPhysAddress', # IP-MIB
'c_inet_phys_addr' => 'cInetNetToMediaPhysAddress', # CISCO-IETF-IP-MIB
'i6_n2p_phys_addr' => 'ipv6NetToMediaNetAddress', # IPV6-MIB
'i6_n2p_phys_addr' => 'ipv6NetToMediaPhysAddress', # IPV6-MIB
'ip_n2p_phys_type' => 'ipNetToPhysicalType', # IP-MIB
'c_inet_phys_type' => 'cInetNetToMediaType', # CISCO-IETF-IP-MIB
@@ -394,8 +394,9 @@ Jeroen van Ingen and Carlos Vicente
=head1 DESCRIPTION
The SNMP::Info::IPv6 class implements functions to for mapping IPv6 addresses
to MAC addresses, interfaces and more. It will use data from the IP-MIB, IPV6-MIB
or the CISCO-IETF-IP-MIB, whichever is supported by the device.
to MAC addresses, interfaces and more. It will use data from the F<IP-MIB>,
F<IPV6-MIB>, or the F<CISCO-IETF-IP-MIB>, whichever is supported by the
device.
This class is inherited by Info::Layer3 to provide IPv6 node tracking across
device classes.

View File

@@ -39,7 +39,7 @@ use SNMP::Info;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
'LLDP-MIB' => 'lldpLocSysCapEnabled',
@@ -67,6 +67,7 @@ $VERSION = '2.10';
'lldp_rem_sysname' => 'lldpRemSysName',
'lldp_rem_sysdesc' => 'lldpRemSysDesc',
'lldp_rem_sys_cap' => 'lldpRemSysCapEnabled',
'lldp_rem_cap_spt' => 'lldpRemSysCapSupported',
# LLDP-MIB::lldpRemManAddrTable
'lldp_rman_addr' => 'lldpRemManAddrIfSubtype',
@@ -80,6 +81,7 @@ $VERSION = '2.10';
'lldp_rem_port_desc' => \&SNMP::Info::munge_null,
'lldp_sys_cap' => \&SNMP::Info::munge_bits,
'lldp_rem_sys_cap' => \&SNMP::Info::munge_bits,
'lldp_rem_cap_spt' => \&SNMP::Info::munge_bits,
);
sub hasLLDP {
@@ -88,8 +90,12 @@ sub hasLLDP {
# We may be have LLDP, but nothing in lldpRemoteSystemsData Tables
# so we could be running LLDP but not return any useful information
my $lldp_cap = $lldp->lldp_sys_cap();
return 1 if defined $lldp_cap;
# If the device doesn't return local system capabilities, fallback by checking if it would report neighbors
my $lldp_rem = $lldp->lldp_rem_id() || {};
return 1 if scalar keys %$lldp_rem;
return;
}
@@ -98,23 +104,30 @@ sub lldp_if {
my $partial = shift;
my $addr = $lldp->lldp_rem_pid($partial) || {};
my $i_descr = $lldp->i_description() || {};
my $i_descr = $lldp->i_description() || {};
my $i_alias = $lldp->i_alias() || {};
my %r_i_descr = reverse %$i_descr;
my %r_i_alias = reverse %$i_alias;
my %lldp_if;
foreach my $key ( keys %$addr ) {
my @aOID = split( '\.', $key );
my $port = $aOID[1];
next unless $port;
# Local LLDP port may not equate to ifIndex
# Cross reference lldpLocPortDesc with ifDescr to get ifIndex
# Local LLDP port may not equate to ifIndex, see LldpPortNumber TEXTUAL-CONVENTION in LLDP-MIB.
# Cross reference lldpLocPortDesc with ifDescr and ifAlias to get ifIndex,
# prefer ifDescr over ifAlias because using cross ref with description is correct behavior
# according to the LLDP-MIB. Some devices (eg H3C gear) seem to use ifAlias though.
my $lldp_desc = $lldp->lldpLocPortDesc($port);
my $desc = $lldp_desc->{$port};
my $desc = $lldp_desc->{$port};
# If cross reference is successful use it, otherwise stick with lldpRemLocalPortNum
if ( exists $r_i_descr{$desc} ) {
if ( $desc && exists $r_i_descr{$desc} ) {
$port = $r_i_descr{$desc};
}
elsif ( $desc && exists $r_i_alias{$desc} ) {
$port = $r_i_alias{$desc};
}
$lldp_if{$key} = $port;
}
return \%lldp_if;
@@ -158,14 +171,21 @@ sub lldp_port {
my $pdesc = $lldp->lldp_rem_desc($partial) || {};
my $pid = $lldp->lldp_rem_pid($partial) || {};
my $ptype = $lldp->lldp_rem_pid_type($partial) || {};
my $desc = $lldp->lldp_rem_sysdesc($partial) || {};
my %lldp_port;
foreach my $key ( sort keys %$pid ) {
my $port = $pdesc->{$key};
my $type = $ptype->{$key};
if ( $type and $type eq 'interfaceName' ) {
# If the pid claims to be an interface name,
# believe it.
$port = $pid->{$key};
}
unless ($port) {
$port = $pid->{$key};
next unless $port;
my $type = $ptype->{$key};
next unless $type;
# May need to format other types in the future, i.e. Network address
@@ -175,10 +195,14 @@ sub lldp_port {
}
}
# Nortel lldpRemPortDesc doesn't match ifDescr, but we can still
# Avaya/Nortel lldpRemPortDesc doesn't match ifDescr, but we can still
# figure out slot.port based upon lldpRemPortDesc
if ( $port =~ /^(Unit\s+(\d+)\s+)?Port\s+(\d+)$/ ) {
$port = defined $1 ? "$2.$3" : "$3";
if ( defined $desc->{$key}
&& $desc->{$key}
=~ /^Ethernet\s(?:Routing\s)?Switch\s\d|^Virtual\sServices\sPlatform\s\d/
&& $port =~ /^(Unit\s+(\d+)\s+)?Port\s+(\d+)$/ )
{
$port = defined $1 ? "$2.$3" : "1.$3";
}
$lldp_port{$key} = $port;
@@ -204,10 +228,13 @@ sub lldp_id {
if ( $type =~ /mac/ ) {
$id = join( ':', map { sprintf "%02x", $_ } unpack( 'C*', $id ) );
}
elsif ($type eq 'networkAddress') {
if ( length(unpack('H*', $id)) == 10 ) {
elsif ( $type eq 'networkAddress' ) {
if ( length( unpack( 'H*', $id ) ) == 10 ) {
# IP address (first octet is sign, I guess)
my @octets = (map { sprintf "%02x",$_ } unpack('C*', $id))[1..4];
my @octets
= ( map { sprintf "%02x", $_ } unpack( 'C*', $id ) )
[ 1 .. 4 ];
$id = join '.', map { hex($_) } @octets;
}
}
@@ -216,6 +243,54 @@ sub lldp_id {
return \%lldp_id;
}
sub lldp_platform {
my $lldp = shift;
my $partial = shift;
my $rid = $lldp->lldp_rem_id($partial) || {};
my $desc = $lldp->lldp_rem_sysdesc($partial) || {};
my $name = $lldp->lldp_rem_sysname($partial) || {};
my %lldp_platform;
foreach my $key ( keys %$rid ) {
$lldp_platform{$key} = $desc->{$key} || $name->{$key};
}
return \%lldp_platform;
}
sub lldp_cap {
my $lldp = shift;
my $partial = shift;
my $lldp_caps = $lldp->lldp_rem_cap_spt($partial) || {};
# Encoded as BITS which Perl Net-SNMP implementation doesn't seem to
# be able to enumerate for us, so we have to get it from the MIB
# and enumerate ourselves
my $oid = SNMP::translateObj( 'lldpRemSysCapEnabled', 0, 1 ) || '';
my $enums = (
( ref {} eq ref $SNMP::MIB{$oid}{'enums'} )
? $SNMP::MIB{$oid}{'enums'}
: {}
);
my %r_enums = reverse %$enums;
my %lldp_cap;
foreach my $key ( keys %$lldp_caps ) {
my $cap_bits = $lldp_caps->{$key};
next unless $cap_bits;
my $count = 0;
foreach my $bit ( split //, $cap_bits ) {
if ($bit) {
push( @{ $lldp_cap{$key} }, $r_enums{$count} );
}
$count++;
}
}
return \%lldp_cap;
}
#sub root_ip {
# my $lldp = shift;
#
@@ -241,7 +316,7 @@ sub _lldp_addr_index {
my @oids = split( /\./, $idx );
my $index = join( '.', splice( @oids, 0, 3 ) );
my $proto = shift(@oids);
my $length = shift(@oids);
shift(@oids) if scalar @oids > 4; # $length
# IPv4
if ( $proto == 1 ) {
@@ -411,9 +486,9 @@ with the remote system.
=item $lldp->lldp_if()
Returns the mapping to the SNMP Interface Table. Trys to cross reference
(C<lldpLocPortDesc>) with (C<ifDescr>) to get (C<ifIndex>), if unable
defaults to (C<lldpRemLocalPortNum>).
Returns the mapping to the SNMP Interface Table. Tries to cross reference
(C<lldpLocPortDesc>) with (C<ifDescr>) and (C<ifAlias>) to get (C<ifIndex>),
if unable defaults to (C<lldpRemLocalPortNum>).
=item $lldp->lldp_ip()
@@ -429,6 +504,17 @@ Currently only returns IPv4 or MAC addresses.
Returns remote port ID
=item $lldp->lldp_platform()
Tries to return something useful from C<lldp_rem_sysdesc()> or
C<lldp_rem_sysname()>.
=item $lldp->lldp_cap()
Returns hash of arrays with each array containing the system capabilities
supported by the remote system. Possible elements in the array are
enumerated from C<LldpSystemCapabilitiesMap>.
=back
=head2 LLDP Remote Table (C<lldpRemTable>)
@@ -492,9 +578,9 @@ Nulls are removed before the value is returned.
=item $lldp->lldp_rem_sys_cap()
Returns which system capabilities are enabled on the local system. Results
are munged into an ascii binary string, LSB. Each digit
represents a bit from the table below:
Returns which system capabilities are enabled on the remote system. Results
are munged into an ascii binary string, LSB. Each digit represents a bit
from the table below:
=over

View File

@@ -41,7 +41,7 @@ use SNMP::Info;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %PORTSTAT %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( %SNMP::Info::MIBS, 'SNMP-REPEATER-MIB' => 'rptrPortGroupIndex' );

View File

@@ -41,7 +41,7 @@ use SNMP::Info::Layer1;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
# Set for No CDP
%GLOBALS = ( %SNMP::Info::Layer1::GLOBALS, 'root_ip' => 'actualIPAddr', );

View File

@@ -41,7 +41,7 @@ use SNMP::Info::Layer1;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
# Set for No CDP
%GLOBALS = ( %SNMP::Info::Layer1::GLOBALS, );
@@ -50,11 +50,11 @@ $VERSION = '2.10';
%SNMP::Info::Layer1::FUNCS,
'asante_port' => 'ePortIndex',
'asante_group' => 'ePortGrpIndex',
'i_type' => 'ePortStateType',
'i_type' => 'ePortGrpIndex',
'asante_up' => 'ePortStateLinkStatus',
);
%MIBS = ( %SNMP::Info::Layer1::MIBS, 'ASANTE-HUB1012-MIB' => 'asante' );
%MIBS = ( %SNMP::Info::Layer1::MIBS, 'ASANTE-AH1012-MIB' => 'asante' );
%MUNGE = ( %SNMP::Info::Layer1::MUNGE, );
@@ -202,7 +202,7 @@ Asante device through SNMP.
=over
=item F<ASANTE-HUB1012-MIB>
=item F<ASANTE-AH1012-MIB>
=back
@@ -230,7 +230,7 @@ Returns 'asante' :)
=item $asante->model()
Cross references $asante->id() to the F<ASANTE-HUB1012-MIB> and returns
Cross references $asante->id() to the F<ASANTE-AH1012-MIB> and returns
the results.
=back

View File

@@ -42,7 +42,7 @@ use SNMP::Info::Layer2;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS,
@@ -93,7 +93,7 @@ sub os {
}
sub vendor {
return 'nortel';
return 'avaya';
}
sub model {
@@ -334,6 +334,13 @@ sub bp_index {
return \%bp_index;
}
sub fw_mac {
my $bayhub = shift;
my $partial = shift;
return $bayhub->SUPER::fw_mac($partial);
}
sub fw_port {
my $bayhub = shift;
my $partial = shift;
@@ -469,7 +476,7 @@ __END__
=head1 NAME
SNMP::Info::Layer1::Bayhub - SNMP Interface to Bay / Nortel Hubs
SNMP::Info::Layer1::Bayhub - SNMP Interface to Bay/Nortel/Avaya Hubs
=head1 AUTHOR
@@ -541,7 +548,7 @@ These are methods that return scalar value from SNMP
=item $bayhub->vendor()
Returns 'nortel'
Returns 'avaya'
=item $bayhub->os()

View File

@@ -39,7 +39,7 @@ use SNMP::Info::Layer1;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE $AUTOLOAD/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer1::MIBS,

View File

@@ -39,7 +39,7 @@ use SNMP::Info::Layer2;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS,
@@ -324,6 +324,13 @@ sub bp_index {
return \%bp_index;
}
sub fw_mac {
my $s3000 = shift;
my $partial = shift;
return $s3000->SUPER::fw_mac($partial);
}
sub fw_port {
my $s3000 = shift;
my $partial = shift;

View File

@@ -38,18 +38,20 @@ use SNMP::Info;
use SNMP::Info::Bridge;
use SNMP::Info::Entity;
use SNMP::Info::PowerEthernet;
use SNMP::Info::LLDP;
@SNMP::Info::Layer2::ISA
= qw/SNMP::Info SNMP::Info::Bridge SNMP::Info::Entity SNMP::Info::PowerEthernet Exporter/;
= qw/SNMP::Info SNMP::Info::Bridge SNMP::Info::Entity SNMP::Info::PowerEthernet SNMP::Info::LLDP Exporter/;
@SNMP::Info::Layer2::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %PORTSTAT %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::MIBS, %SNMP::Info::Bridge::MIBS,
%SNMP::Info::Entity::MIBS, %SNMP::Info::PowerEthernet::MIBS,
%SNMP::Info::LLDP::MIBS,
);
%GLOBALS = (
@@ -57,6 +59,7 @@ $VERSION = '2.10';
%SNMP::Info::Bridge::GLOBALS,
%SNMP::Info::Entity::GLOBALS,
%SNMP::Info::PowerEthernet::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
'serial1' =>
'.1.3.6.1.4.1.9.3.6.3.0', # OLD-CISCO-CHASSIS-MIB::chassisId.0
);
@@ -64,6 +67,7 @@ $VERSION = '2.10';
%FUNCS = (
%SNMP::Info::FUNCS, %SNMP::Info::Bridge::FUNCS,
%SNMP::Info::Entity::FUNCS, %SNMP::Info::PowerEthernet::FUNCS,
%SNMP::Info::LLDP::FUNCS,
);
%MUNGE = (
@@ -73,6 +77,7 @@ $VERSION = '2.10';
%SNMP::Info::Bridge::MUNGE,
%SNMP::Info::Entity::MUNGE,
%SNMP::Info::PowerEthernet::MUNGE,
%SNMP::Info::LLDP::MUNGE,
);
# Method OverRides
@@ -123,30 +128,16 @@ sub serial {
# precedence
# serial2,chassis parse,serial1
return $serial2 if ( defined $serial2 and $serial2 !~ /^\s*$/ );
return $1
if ( defined $chassis and $chassis =~ /serial#?:\s*([a-z0-9]+)/i );
if ( defined $chassis and $chassis =~ /serial#?:\s*([a-z0-9]+)/i ) {
return $1;
}
return $serial1 if ( defined $serial1 and $serial1 !~ /^\s*$/ );
return;
}
sub i_ignore {
my $l2 = shift;
my $partial = shift;
my $i_type = $l2->i_type($partial) || {};
my %i_ignore = ();
foreach my $if ( keys %$i_type ) {
my $type = $i_type->{$if};
$i_ignore{$if}++
if $type =~ /(loopback|other|cpu)/i;
}
return \%i_ignore;
}
sub interfaces {
my $l2 = shift;
my $partial = shift;
@@ -155,10 +146,18 @@ sub interfaces {
my $i_descr = $l2->i_description($partial) || {};
# Replace the Index with the ifDescr field.
# Check for duplicates in ifDescr, if so uniquely identify by adding
# ifIndex to repeated values
my %seen;
foreach my $iid ( keys %$i_descr ) {
my $port = $i_descr->{$iid};
next unless defined $port;
$interfaces->{$iid} = $port;
if ( $seen{$port}++ ) {
$interfaces->{$iid} = sprintf( "%s (%d)", $port, $iid );
}
else {
$interfaces->{$iid} = $port;
}
}
return $interfaces;
}
@@ -224,6 +223,8 @@ after determining a more specific class using the method above.
=item SNMP::Info::Entity
=item SNMP::Info::LLDP
=back
=head2 Required MIBs
@@ -277,6 +278,10 @@ See documentation in L<SNMP::Info::Bridge/"GLOBALS"> for details.
See documentation in L<SNMP::Info::Entity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
@@ -293,12 +298,6 @@ name.
Defaults to C<ifDescr> but checks and overrides with C<ifName>
=item $l2->i_ignore()
Returns reference to hash. Increments value of IID if port is to be ignored.
Ignores ports with C<ifType> of loopback, propvirtual, other, and cpu
=back
=head2 Table Methods imported from SNMP::Info
@@ -313,4 +312,8 @@ See documentation in L<SNMP::Info::Bridge/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::Entity/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=cut

173
Info/Layer2/3Com.pm Normal file
View File

@@ -0,0 +1,173 @@
package SNMP::Info::Layer2::3Com;
use strict;
use Exporter;
use SNMP::Info::Layer2;
use SNMP::Info::LLDP;
use SNMP::Info::CDP;
@SNMP::Info::Layer2::3Com::ISA = qw/SNMP::Info::LLDP SNMP::Info::Layer2 Exporter/;
@SNMP::Info::Layer2::3Com::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE $AUTOLOAD/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::Layer2::MIBS,
'A3Com-products-MIB' => 'wlanAP7760',
);
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer2::FUNCS,
%SNMP::Info::LLDP::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer2::MUNGE,
%SNMP::Info::LLDP::MUNGE,
);
sub os {
return '3Com';
}
sub serial {
my $dev = shift;
my $e_serial = $dev->e_serial();
# Find entity table entry for this unit
foreach my $e ( sort keys %$e_serial ) {
if (defined $e_serial->{$e} and $e_serial->{$e} !~ /^\s*$/) {
return $e_serial->{$e};
}
}
}
sub os_ver {
my $dev = shift;
my $e_swver = $dev->e_swver();
# Find entity table entry for this unit
foreach my $e ( sort keys %$e_swver ) {
if (defined $e_swver->{$e} and $e_swver->{$e} !~ /^\s*$/) {
return $e_swver->{$e};
}
}
}
sub vendor {
return '3Com';
}
sub model {
my $dsmodel = shift;
my $descr = $dsmodel->description();
if ( $descr =~ /^([\S ]+) Software.*/){
return $1;
}
}
1;
__END__
=head1 NAME
SNMP::Info::Layer2::3Com - SNMP Interface to L2 3Com Switches
=head1 AUTHOR
Max Kosmach
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $router = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myrouter',
Community => 'public',
Version => 1
)
or die "Can't connect to DestHost.\n";
my $class = $router->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Subclass for 3Com L2 devices
=head2 Inherited Classes
=over
=item SNMP::Info::Layer2
=back
=head2 Required MIBs
=over
=item F<A3Com-products-MIB>
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer2/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=head2 Overrides
=over
=item $device->vendor()
Returns '3Com'
=item $device->os()
Returns '3Com'
=item $device->os_ver()
Return os version
=item $device->model()
Returns device model extracted from description
=item $device->serial()
Returns serial number
=back
=head2 Globals imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Table Methods imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
=cut

View File

@@ -1,5 +1,4 @@
# SNMP::Info::Layer2::Airespace
# $Id$
#
# Copyright (c) 2008 Eric Miller
#
@@ -41,13 +40,14 @@ use SNMP::Info::Airespace;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::MIBS, %SNMP::Info::Bridge::MIBS,
%SNMP::Info::CDP::MIBS, %SNMP::Info::Airespace::MIBS,
'AIRESPACE-SWITCHING-MIB' => 'agentInterfaceVlanId',
'CISCO-LWAPP-DOT11-CLIENT-MIB' => 'cldcClientCurrentTxRateSet',
'CISCO-LWAPP-DOT11-MIB' => 'cldHtDot11nChannelBandwidth',
'CISCO-LWAPP-AP-MIB' => 'cLApIfMacAddress',
);
%GLOBALS = (
@@ -58,28 +58,68 @@ $VERSION = '2.10';
%FUNCS = (
%SNMP::Info::FUNCS, %SNMP::Info::Bridge::FUNCS,
%SNMP::Info::CDP::FUNCS, %SNMP::Info::Airespace::FUNCS,
# This needs to be cleaned up, but for now we pretend to
# have the CISCO-DOT11-MIB for signal strengths, etc.
'cd11_sigstrength' => 'bsnMobileStationRSSI', # kinda
'cd11_sigqual' => 'bsnMobileStationSnr', # kinda
'cd11_rxbyte' => 'bsnMobileStationBytesReceived',
'cd11_txbyte' => 'bsnMobileStationBytesSent',
'cd11_rxpkt' => 'bsnMobileStationPacketsReceived',
'cd11_txpkt' => 'bsnMobileStationPacketsSent',
'cd11_txrate' => 'cldcClientCurrentTxRateSet',
# CISCO-LWAPP-AP-MIB::cLApTable
'ap_if_mac' => 'cLApIfMacAddress',
# CISCO-LWAPP-DOT11-CLIENT-MIB::cldcClientTable
'client_txrate' => 'cldcClientCurrentTxRateSet',
'cd11_proto' => 'cldcClientProtocol',
'cd11_rateset' => 'cldcClientDataRateSet',
# CISCO-LWAPP-DOT11-MIB::cldHtMacOperationsTable
'cd11n_ch_bw' => 'cldHtDot11nChannelBandwidth',
);
%MUNGE = (
%SNMP::Info::MUNGE, %SNMP::Info::Bridge::MUNGE,
%SNMP::Info::CDP::MUNGE, %SNMP::Info::Airespace::MUNGE,
'cd11_rxpkt' => \&munge_64bits,
'cd11_txpkt' => \&munge_64bits,
'cd11_txrate' => \&munge_cd11_txrate,
'ap_if_mac' => \&SNMP::Info::munge_mac,
'cd11n_ch_bw' => \&munge_cd11n_ch_bw,
'cd11_rateset' => \&munge_cd11_rateset,
'cd11_proto' => \&munge_cd11_proto,
);
# 802.11n Modulation and Coding Scheme (MCS)
my $mcs_index = {
20 => {
m0 => '6.5',
m1 => '13',
m2 => '19.5',
m3 => '26',
m4 => '39',
m5 => '52',
m6 => '58.5',
m7 => '65',
m8 => '13',
m9 => '26',
m10 => '39',
m11 => '52',
m12 => '78',
m13 => '104',
m14 => '117',
m15 => '130',
# This is a cheat for 802.11a bonded
m108 => '108',
},
40 => {
m0 => '15',
m1 => '30',
m2 => '45',
m3 => '60',
m4 => '90',
m5 => '120',
m6 => '135',
m7 => '157.5',
m8 => '30',
m9 => '60',
m10 => '90',
m11 => '120',
m12 => '180',
m13 => '240',
m14 => '270',
m15 => '300',
}
};
sub os {
return 'cisco';
}
@@ -96,9 +136,6 @@ sub model {
return $model;
}
# vlan:
# AIRESPACE-SWITCHING-MIB::agentInterfaceVlanId
sub cd11_mac {
my $airespace = shift;
my $cd11_sigstrength = $airespace->cd11_sigstrength();
@@ -111,13 +148,47 @@ sub cd11_mac {
return $ret;
}
sub munge_cd11_txrate {
my $rate = shift;
if ( $rate ) {
return [ $rate * 1.0 ];
} else {
return [ 0.0 ];
sub cd11_txrate {
my $airespace = shift;
my $rates = $airespace->client_txrate() || {};
my $protos = $airespace->cd11_proto() || {};
my $bws = $airespace->cd11n_ch_bw() || {};
my $cd11_txrate = {};
foreach my $idx ( keys %$rates ) {
my $rate = $rates->{$idx} || '0.0';
if ( $rate =~ /^\d+/ ) {
$cd11_txrate->{$idx} = [ $rate * 1.0 ];
}
elsif ( $rate =~ /^m/ ) {
my $band = $protos->{$idx};
my $bw = $bws->{$band};
$cd11_txrate->{$idx} = [ $mcs_index->{$bw}->{$rate} || '0.0' ];
}
else {
$cd11_txrate->{$idx} = [ $rate ];
}
}
return $cd11_txrate;
}
sub munge_cd11n_ch_bw {
my $bw = shift;
if ( $bw =~ /forty/ ) {
return 40;
}
return 20;
}
sub munge_cd11_proto {
my $bw = shift;
return 2 if ( $bw eq 'dot11n5' );
return 1;
}
sub munge_cd11_rateset {
@@ -125,11 +196,29 @@ sub munge_cd11_rateset {
return [ map { $_ * 1.0 } split /,/, $rates ];
}
sub munge_64bits {
# The controller sometimes hands off a ridiculous value for packets.
# Just truncate it to 32 bits.
my $value = shift;
return $value & 0xffffffff;
# Cisco provides the AP's Ethernet MAC via
# CISCO-LWAPP-AP-MIB::cLApIfMacAddress this was not available pre-Cisco
sub i_mac {
my $airespace = shift;
my $partial = shift;
my $i_index = $airespace->i_index($partial) || {};
my $ap_mac = $airespace->ap_if_mac() || {};
my $i_mac = $airespace->SUPER::i_mac() || {};
foreach my $iid ( keys %$i_index ) {
my $index = $i_index->{$iid};
next unless defined $index;
if ( $index =~ /(?:[0-9A-Fa-f]{2}:){5}[0-9A-Fa-f]{2}/ ) {
$index =~ s/\.\d+$//;
next unless defined $index;
my $sys_mac = join( '.', map { hex($_) } split( ':', $index ) );
my $mac = $ap_mac->{$sys_mac};
$i_mac->{$iid} = $mac;
}
}
return $i_mac;
}
1;
@@ -187,6 +276,12 @@ my $airespace = new SNMP::Info::Layer2::Airespace(...);
=over
=item F<CISCO-LWAPP-DOT11-CLIENT-MIB>
=item F<CISCO-LWAPP-DOT11-MIB>
=item F<CISCO-LWAPP-AP-MIB>
=item Inherited Classes' MIBs
See L<SNMP::Info::Airespace/"Required MIBs"> for its own MIB requirements.
@@ -238,10 +333,24 @@ to a hash.
=item cd11_mac()
Returns client radio interface MAC addresses.
=item cd11_txrate()
Returns client transmission speed in Mbs.
=back
=head2 Overrides
=over
=item i_mac()
Adds AP Ethernet MAC as port mac on radio ports from C<CISCO-LWAPP-AP-MIB>.
=back
=head2 Table Methods imported from SNMP::Info::Airespace
See documentation in L<SNMP::Info::Airespace/"TABLE METHODS"> for details.
@@ -254,15 +363,22 @@ See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::Bridge/"TABLE METHODS"> for details.
=head1 MUNGES
=head1 Data Munging Callback Subroutines
=over
=item munge_64bits()
=item munge_cd11n_ch_bw()
Converts 802.11n channel bandwidth to either 20 or 40.
=item munge_cd11_proto()
Converts 802.11n 2.4Ghz to 1 and 5Ghz to 2 to correspond to the
(C<cldHtMacOperationsTable>) index.
=item munge_cd11_rateset()
=item munge_cd11_txrate()
Converts rate set to array.
=back

View File

@@ -49,7 +49,7 @@ use SNMP::Info::IEEE802dot11;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%GLOBALS = (
%SNMP::Info::IEEE802dot11::GLOBALS,
@@ -60,7 +60,8 @@ $VERSION = '2.10';
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
'serial' => 'entPhysicalSerialNum.1',
'descr' => 'sysDescr'
'descr' => 'sysDescr',
'ps1_type' => 'cpoePdCurrentPowerSource'
);
%FUNCS = (
@@ -97,6 +98,7 @@ $VERSION = '2.10';
'CISCO-DOT11-ASSOCIATION-MIB' => 'cDot11ClientSubIfIndex',
'CISCO-DOT11-SSID-SECURITY-MIB' => 'cdot11SecVlanNameId',
'CISCO-VLAN-IFTABLE-RELATIONSHIP-MIB' => 'cviRoutedVlanIfIndex',
'CISCO-POE-PD-MIB' => 'cpoePdCurrentPowerSource',
);
%MUNGE = (
@@ -457,6 +459,18 @@ sub i_ssidmac {
return $i_ssidmac;
}
###
# PoE status. The ps1_type is the PoE injector type, which is just
# a scalar; the status is a little more complex.
sub ps1_status {
my $aironet = shift;
my $idx = $aironet->cpoePdCurrentPowerLevel();
my $mw = $aironet->cpoePdSupportedPower( $idx );
my $descr = $aironet->cpoePdSupportedPowerMode( $idx );
return sprintf( "%.2fW (%s)", $mw->{$idx} * 0.001, $descr->{$idx} );
}
1;
__END__
@@ -540,17 +554,13 @@ These are methods that return scalar value from SNMP
=over
=item $aironet->discription()
Adds info from method e_descr() from SNMP::Info::Entity
=item $aironet->vendor()
Returns 'cisco'
=item $aironet->description()
System description
System description. Adds info from method e_descr() from SNMP::Info::Entity
=back
@@ -576,7 +586,7 @@ Returns radio interfaces.
=item $aironet->cd11_mac()
Returns radio interface MAC addresses.
Returns client radio interface MAC addresses.
=item $aironet->cd11_ssid()
@@ -648,6 +658,11 @@ being broadcast.
With the same keys as i_ssidlist, returns the Basic service set
identification (BSSID), MAC address, the AP is using for the SSID.
=item $aironet ps1_status()
Returns the PoE injector status based on C<cpoePdSupportedPower> and
C<cpoePdSupportedPowerMode>.
=back
=head2 Table Methods imported from SNMP::Info::Layer2

View File

@@ -40,7 +40,7 @@ use SNMP::Info::Layer1;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%GLOBALS = ( %SNMP::Info::Layer2::GLOBALS );

View File

@@ -1,492 +0,0 @@
# SNMP::Info::Layer2::Bay
# $Id$
# This module depricated. See Layer2::BayStack
#
# Copyright (c) 2008 Max Baker changes from version 0.8 and beyond.
#
# Copyright (c) 2002,2003 Regents of the University of California
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer2::Bay;
use strict;
use Exporter;
use SNMP::Info::Layer2;
@SNMP::Info::Layer2::Bay::ISA = qw/SNMP::Info::Layer2 Exporter/;
@SNMP::Info::Layer2::Bay::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
# Set for No CDP
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS,
'cdp_id' => 's5EnMsTopIpAddr',
'cdp_run' => 's5EnMsTopStatus',
);
%FUNCS = (
%SNMP::Info::Layer2::FUNCS,
'imac2' => 'ifPhysAddress',
# S5-ETH-MULTISEG-TOPOLOGY-MIB::s5EnMsTopNmmTable
'bay_topo_slot' => 's5EnMsTopNmmSlot',
'bay_topo_port' => 's5EnMsTopNmmPort',
'bay_topo_ip' => 's5EnMsTopNmmIpAddr',
'bay_topo_seg' => 's5EnMsTopNmmSegId',
'bay_topo_mac' => 's5EnMsTopNmmMacAddr',
'bay_topo_platform' => 's5EnMsTopNmmChassisType',
'bay_topo_localseg' => 's5EnMsTopNmmLocalSeg',
);
%MIBS = (
%SNMP::Info::Layer2::MIBS,
'SYNOPTICS-ROOT-MIB' => 'synoptics',
'S5-ETH-MULTISEG-TOPOLOGY-MIB' => 's5EnMsTop'
);
delete $MIBS{'CISCO-CDP-MIB'};
# 450's report full duplex as speed = 20mbps?!
$SNMP::Info::SPEED_MAP{20_000_000} = '10 Mbps';
$SNMP::Info::SPEED_MAP{200_000_000} = '100 Mbps';
%MUNGE = ( %SNMP::Info::Layer2::MUNGE, 'i_mac2' => \&SNMP::Info::munge_mac, );
sub os {
return 'bay';
}
sub os_ver {
my $bay = shift;
my $descr = $bay->description();
return unless defined $descr;
# 303 / 304
if ( $descr =~ m/Rev: \d+\.\d+\.\d+\.\d+-(\d+\.\d+\.\d+\.\d+)/ ) {
return $1;
}
# 450
if ( $descr =~ m/SW:v(\d+\.\d+\.\d+\.\d+)/ ) {
return $1;
}
return;
}
sub os_bin {
my $bay = shift;
my $descr = $bay->description();
return unless defined $descr;
# 303 / 304
if ( $descr =~ m/Rev: \d+\.(\d+\.\d+\.\d+)-\d+\.\d+\.\d+\.\d+/ ) {
return $1;
}
# 450
if ( $descr =~ m/FW:v(\d+\.\d+\.\d+\.\d+)/ ) {
return $1;
}
return;
}
sub vendor {
# or nortel, or synopsis?
return 'bay';
}
sub i_ignore {
my $bay = shift;
my $descr = $bay->description();
my $i_type = $bay->i_type();
my %i_ignore;
foreach my $if ( keys %$i_type ) {
my $type = $i_type->{$if};
$i_ignore{$if}++ if $type =~ /(loopback|propvirtual|cpu)/i;
}
return \%i_ignore;
}
sub interfaces {
my $bay = shift;
my $i_index = $bay->i_index();
return $i_index;
}
sub i_mac {
my $bay = shift;
my $i_mac = $bay->i_mac2();
# Bay 303's with a hw rev < 2.11.4.5 report the mac as all zeros
foreach my $iid ( keys %$i_mac ) {
my $mac = $i_mac->{$iid};
delete $i_mac->{$iid} if $mac eq '00:00:00:00:00:00';
}
return $i_mac;
}
sub model {
my $bay = shift;
my $id = $bay->id();
return unless defined $id;
my $model = &SNMP::translateObj($id);
return $id unless defined $model;
$model =~ s/^sreg-//i;
my $descr = $bay->description();
return '303' if ( $descr =~ /\D303\D/ );
return '304' if ( $descr =~ /\D304\D/ );
return '450' if ( $model =~ /BayStack450/ );
return $model;
}
# Hack in some CDP type stuff
sub c_if {
my $bay = shift;
my $bay_topo_port = $bay->bay_topo_port();
my %c_if;
foreach my $entry ( keys %$bay_topo_port ) {
my $port = $bay_topo_port->{$entry};
next unless defined $port;
next if $port == 0;
$c_if{"$port.1"} = $port;
}
return \%c_if;
}
sub c_ip {
my $bay = shift;
my $bay_topo_ip = $bay->bay_topo_ip();
my $bay_topo_port = $bay->bay_topo_port();
my $ip = $bay->cdp_ip();
# Count the number of devices seen on each port.
# more than one device seen means connected to a non-bay
# device, but other bay devices are squawking further away.
my %ip_port;
foreach my $entry ( keys %$bay_topo_ip ) {
my $port = $bay_topo_port->{$entry};
next unless defined $port;
next if ( $port =~ /^[\d\.]+$/ and $port == 0 );
my $ip = $bay_topo_ip->{$entry};
push( @{ $ip_port{$port} }, $ip );
}
my %c_ip;
foreach my $port ( keys %ip_port ) {
my $ips = $ip_port{$port};
if ( scalar @$ips == 1 ) {
$c_ip{"$port.1"} = $ips->[0];
}
else {
$c_ip{"$port.1"} = $ips;
}
}
return \%c_ip;
}
sub c_port {
my $bay = shift;
my $bay_topo_port = $bay->bay_topo_port();
my $bay_topo_seg = $bay->bay_topo_seg();
my %c_port;
foreach my $entry ( keys %$bay_topo_seg ) {
my $port = $bay_topo_port->{$entry};
next unless defined $port;
next if $port == 0;
# For fake remotes (multiple IPs for a c_ip), use first found
next if defined $c_port{"$port.1"};
my $seg = $bay_topo_seg->{$entry};
# Segment id is (256 * remote slot_num) + (remote_port)
my $remote_port = $seg % 256;
$c_port{"$port.1"} = $remote_port;
}
return \%c_port;
}
sub c_platform {
my $bay = shift;
my $bay_topo_port = $bay->bay_topo_port();
my $bay_topo_platform = $bay->bay_topo_platform();
my %c_platform;
foreach my $entry ( keys %$bay_topo_platform ) {
my $port = $bay_topo_port->{$entry} || 0;
next if $port == 0;
# For fake remotes (multiple IPs for a c_ip), use first found
next if defined $c_platform{"$port.1"};
my $platform = $bay_topo_platform->{$entry};
$c_platform{"$port.1"} = $platform;
}
return \%c_platform;
}
1;
__END__
=head1 NAME
SNMP::Info::Layer2::Bay - SNMP Interface to old Bay Network BayStack Switches
=head1 AUTHOR
Max Baker
=head1 SYNOPSIS
This module is Deprecated. Please use Layer2::BayStack instead.
=head1 DESCRIPTION
Provides abstraction to the configuration information obtainable from a
Bay device through SNMP.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
my $bay = new SNMP::Info::Layer2::Bay(...);
=head2 Inherited Classes
=over
=item SNMP::Info::Layer2
=back
=head2 Required MIBs
=over
=item F<SYNOPTICS-ROOT-MIB>
=item F<S5-ETH-MULTISEG-TOPOLOGY-MIB>
=item Inherited classes
MIBs required by L<SNMP::Info::Layer2/"Required MIBs"> and its superclasses.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $bay->vendor()
Returns 'bay' :)
=item $bay->model()
Cross references $bay->id() to the F<SYNOPTICS-MIB> and returns
the results. 303s and 304s have the same ID, so we have a hack
to return depending on which it is.
Removes C<sreg-> from the model name
=item $baystack->os()
Returns 'bay'.
=item $bay->os_ver()
Returns the os version extracted from C<sysDescr>.
=item $bay->os_bin()
Returns the firmware version extracted from C<sysDescr>.
=item $bay->cdp_id()
Returns the IP that the device is sending out for its Nmm topology info.
(C<s5EnMsTopIpAddr>)
=item $bay->cdp_run()
Returns if the F<S5-ETH-MULTISEG-TOPOLOGY> info is on for this device.
(C<s5EnMsTopStatus>)
=back
=head2 Globals imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Overrides
=over
=item $bay->interfaces()
Returns reference to map of IIDs to physical ports.
Currently simply returns the C<ifIndex>
=item $bay->i_ignore()
Returns reference to hash of IIDs to ignore.
Simply calls the SNMP::Info::Layer2::i_ignore() for this.
=item $bay->i_mac()
Returns the C<ifPhysAddress> table entries.
Removes all entries matching '00:00:00:00:00:00' -- Certain
older revisions of Bay 303 and 304 firmware report all zeros
for each port mac.
=back
=head2 Pseudo CDP information
All entries with port=0 are local and ignored.
=over
=item $bay->c_if()
Returns reference to hash. Key: port.1 Value: port (iid)
=item $bay->c_ip()
Returns reference to hash. Key: port.1
The value of each hash entry can either be a scalar or an array.
A scalar value is most likely a direct neighbor to that port.
It is possible that there is a non-bay device in between this device and the
remote device.
An array value represents a list of seen devices. The only time you will get
an array of neighbors, is if there is a non-bay device in between two or more
devices.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $bay->c_port()
Returns reference to hash. Key: IID, Value: Remote port (interfaces)
=item $bay->c_platform()
Returns reference to hash. Key: IID, Value: Remote device type
=item $bay->port()
Returns reference to hash. Key: port.1 Value: port
=item $bay->platform()
Returns reference to hash. Key: port.1 Value: Remote Device Type
=back
=head2 Layer2 Topology info (C<s5EnMsTopNmmTable>)
=over
=item $bay->bay_topo_slot()
Returns reference to hash. Key: Table entry, Value:slot number
(C<s5EnMsTopNmmSlot>)
=item $bay->bay_topo_port()
Returns reference to hash. Key: Table entry, Value:Port Number
(interface iid)
(C<s5EnMsTopNmmPort>)
=item $bay->bay_topo_ip()
Returns reference to hash. Key: Table entry, Value:Remote IP address of entry
(C<s5EnMsTopNmmIpAddr>)
=item $bay->bay_topo_seg()
Returns reference to hash. Key: Table entry, Value:Remote Segment ID
(C<s5EnMsTopNmmSegId>)
=item $bay->bay_topo_mac
(C<s5EnMsTopNmmMacAddr>)
Returns reference to hash. Key: Table entry, Value:Remote MAC address
=item $bay->bay_topo_platform
Returns reference to hash. Key: Table entry, Value:Remote Device Type
(C<s5EnMsTopNmmChassisType>)
=item $bay->bay_topo_localseg
Returns reference to hash. Key: Table entry, Value:Boolean, if bay_topo_seg()
is local
(C<s5EnMsTopNmmLocalSeg>)
=back
=head2 Table Methods imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
=cut

View File

@@ -46,12 +46,13 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS, %SNMP::Info::LLDP::MIBS,
%SNMP::Info::RapidCity::MIBS, %SNMP::Info::NortelStack::MIBS,
%SNMP::Info::SONMP::MIBS,
'BAY-STACK-PETH-EXT-MIB' => 'bspePethPsePortExtMeasuredPower',
);
%GLOBALS = (
@@ -64,6 +65,7 @@ $VERSION = '2.10';
%SNMP::Info::Layer3::FUNCS, %SNMP::Info::LLDP::FUNCS,
%SNMP::Info::RapidCity::FUNCS, %SNMP::Info::NortelStack::FUNCS,
%SNMP::Info::SONMP::FUNCS,
'peth_port_power' => 'bspePethPsePortExtMeasuredPower',
);
# 450's report full duplex as speed = 20mbps?!
@@ -79,27 +81,20 @@ $SNMP::Info::SPEED_MAP{2_000_000_000} = '1.0 Gbps';
sub os {
my $baystack = shift;
my $descr = $baystack->description();
my $model = $baystack->model();
my $descr = $baystack->description() || "";
my $model = $baystack->model() || "";
if ( ( defined $descr and $descr =~ /Business Ethernet Switch.*SW:v/i ) )
{
if ( $descr =~ /Business Ethernet Switch.*SW:v/i ) {
return 'bes';
}
if (
(
(defined $model and $model =~ /(420|425|BPS)/ )
and
(defined $descr and $descr =~ m/SW:v[1-2]/i )
)
or
(
(defined $model and $model =~ /(410|450|380)/ )
)
)
if ( ( ( $model =~ /(420|425|BPS)/ ) and ( $descr =~ m/SW:v[1-2]/i ) )
or ( ( $model =~ /(410|450|380)/ ) ) )
{
return 'baystack';
}
if ( $model =~ /VSP/ ) {
return 'vsp';
}
return 'boss';
}
@@ -126,7 +121,7 @@ sub os_bin {
}
sub vendor {
return 'nortel';
return 'avaya';
}
sub model {
@@ -141,9 +136,12 @@ sub model {
return '303' if ( defined $descr and $descr =~ /\D303\D/ );
return '304' if ( defined $descr and $descr =~ /\D304\D/ );
return 'BPS' if ( $model =~ /BPS2000/i );
return $2
if ( $model
=~ /(ES|ERS|BayStack|EthernetRoutingSwitch|EthernetSwitch)-?(\d+)/ );
# Pull sreg- from all
$model =~ s/^sreg-//;
# Strip ES/ERS/BayStack etc. from those families
$model =~ s/^(E(R)?S|BayStack|Ethernet(Routing)?Switch)-?//;
$model =~ s/-ethSwitchNMM//;
return $model;
}
@@ -214,7 +212,7 @@ sub i_name {
sub index_factor {
my $baystack = shift;
my $model = $baystack->model();
my $model = $baystack->model() || "";
my $os = $baystack->os();
my $os_ver = $baystack->os_ver();
my $op_mode = $baystack->ns_op_mode();
@@ -228,142 +226,16 @@ sub index_factor {
my $index_factor = 32;
$index_factor = 64
if ( ( defined $model and $model =~ /(470)/ )
if ( ( $model =~ /(470)/ )
or ( $os =~ m/(boss|bes)/ ) and ( $op_mode eq 'pure' ) );
$index_factor = 128
if ( ( defined $model and $model =~ /(5[56]\d\d)/ )
if ( ( $model =~ /(5[56]\d\d)|VSP/ )
and ( $os_ver >= 6 ) );
return $index_factor;
}
# Use SONMP and/or LLDP
sub hasCDP {
my $baystack = shift;
return $baystack->hasLLDP() || $baystack->SUPER::hasCDP();
}
sub c_ip {
my $baystack = shift;
my $partial = shift;
my $cdp = $baystack->SUPER::c_ip($partial) || {};
my $lldp = $baystack->lldp_ip($partial) || {};
my %c_ip;
foreach my $iid ( keys %$cdp ) {
my $ip = $cdp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
foreach my $iid ( keys %$lldp ) {
my $ip = $lldp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
return \%c_ip;
}
sub c_if {
my $baystack = shift;
my $partial = shift;
my $lldp = $baystack->lldp_if($partial) || {};
my $cdp = $baystack->SUPER::c_if($partial) || {};
my %c_if;
foreach my $iid ( keys %$cdp ) {
my $if = $cdp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
foreach my $iid ( keys %$lldp ) {
my $if = $lldp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
return \%c_if;
}
sub c_port {
my $baystack = shift;
my $partial = shift;
my $lldp = $baystack->lldp_port($partial) || {};
my $cdp = $baystack->SUPER::c_port($partial) || {};
my %c_port;
foreach my $iid ( keys %$cdp ) {
my $port = $cdp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
foreach my $iid ( keys %$lldp ) {
my $port = $lldp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
return \%c_port;
}
sub c_id {
my $baystack = shift;
my $partial = shift;
my $lldp = $baystack->lldp_id($partial) || {};
my $cdp = $baystack->SUPER::c_id($partial) || {};
my %c_id;
foreach my $iid ( keys %$cdp ) {
my $id = $cdp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
foreach my $iid ( keys %$lldp ) {
my $id = $lldp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
return \%c_id;
}
sub c_platform {
my $baystack = shift;
my $partial = shift;
my $lldp = $baystack->lldp_rem_sysdesc($partial) || {};
my $cdp = $baystack->SUPER::c_platform($partial) || {};
my %c_platform;
foreach my $iid ( keys %$cdp ) {
my $platform = $cdp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
foreach my $iid ( keys %$lldp ) {
my $platform = $lldp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
return \%c_platform;
}
# Newer devices support ENTITY-MIB, use if available otherwise use proprietary
# methods.
@@ -469,14 +341,68 @@ sub peth_port_ifindex {
return \%peth_port_ifindex;
}
# Currently only ERS 4800 v5.8+ support the rcBridgeSpbmMacTable
# which holds the FDB for a SPBM edge deployment.
#
# Q-BRIDGE still holds some entries when the rcBridgeSpbmMacTable is in use
# so we merge hash entries.
sub fw_mac {
my $rapidcity = shift;
my $qb = $rapidcity->SUPER::fw_mac() || {};
my $spbm = $rapidcity->rc_spbm_fw_mac() || {};
my $fw_mac = { %$qb, %$spbm };
return $fw_mac;
}
sub fw_port {
my $rapidcity = shift;
my $qb = $rapidcity->SUPER::fw_port() || {};
my $spbm = $rapidcity->rc_spbm_fw_port() || {};
my $fw_port = { %$qb, %$spbm };
return $fw_port;
}
sub fw_status {
my $rapidcity = shift;
my $qb = $rapidcity->SUPER::fw_status() || {};
my $spbm = $rapidcity->rc_spbm_fw_status() || {};
my $fw_status = { %$qb, %$spbm };
return $fw_status;
}
sub qb_fw_vlan {
my $rapidcity = shift;
my $qb = $rapidcity->SUPER::qb_fw_vlan() || {};
my $spbm = $rapidcity->rc_spbm_fw_vlan() || {};
my $qb_fw_vlan = { %$qb, %$spbm };
return $qb_fw_vlan;
}
# Baystack uses S5-AGENT-MIB (loaded in NortelStack) versus RAPID-CITY
sub stp_ver {
my $rapidcity = shift;
return $rapidcity->s5AgSysSpanningTreeOperMode()
|| $rapidcity->SUPER::stp_ver();
}
1;
__END__
=head1 NAME
SNMP::Info::Layer2::Baystack - SNMP Interface to Nortel Ethernet (Baystack)
Switches
SNMP::Info::Layer2::Baystack - SNMP Interface to Avaya Ethernet Switch
(Baystack) and VSP 7000 series switches
=head1 AUTHOR
@@ -499,8 +425,9 @@ Eric Miller
=head1 DESCRIPTION
Provides abstraction to the configuration information obtainable from a Nortel
Ethernet Switch (Baystack) through SNMP.
Provides abstraction to the configuration information obtainable from an
Avaya Ethernet Switch (formerly Nortel/Bay Baystack) and VSP 7000 series
through SNMP.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
@@ -527,6 +454,8 @@ my $baystack = new SNMP::Info::Layer2::Baystack(...);
=over
=item F<BAY-STACK-PETH-EXT-MIBB>
=back
=head2 Inherited MIBs
@@ -549,7 +478,7 @@ These are methods that return scalar value from SNMP
=item $baystack->vendor()
Returns 'nortel'
Returns 'avaya'
=item $baystack->model()
@@ -569,6 +498,14 @@ Returns 'baystack' or 'boss' depending on software version.
Returns the firmware version extracted from C<sysDescr>.
=item $baystack->stp_ver()
Returns the particular STP version running on this device.
Values: C<nortelStpg>, C<pvst>, C<rstp>, C<mstp>, C<ieee8021d>
(C<s5AgSysSpanningTreeOperMode>)
=back
=head2 Overrides
@@ -645,10 +582,16 @@ revisions of Baystack firmware report all zeros for each port mac.
Crosses C<ifName> with C<ifAlias> and returns the human set port name if
exists.
=item $poe->peth_port_ifindex()
=item $baystack->peth_port_ifindex()
Maps the C<pethPsePortTable> to C<ifIndex> by way of the F<ENTITY-MIB>.
=item $baystack->peth_port_power()
Power supplied by PoE ports, in milliwatts
(C<bspePethPsePortExtMeasuredPower>)
=back
=head2 F<ENTITY-MIB> Information
@@ -719,51 +662,29 @@ ns_e_vendor().
=back
=head2 Topology information
=head2 Layer 2 Forwarding Database
Based upon the software version devices may support SynOptics Network
Management Protocol (SONMP) and Link Layer Discovery Protocol (LLDP). These
methods will query both and return the combination of all information. As a
result, there may be identical topology information returned from the two
protocols causing duplicate entries. It is the calling program's
responsibility to identify any duplicate entries and remove duplicates if
necessary.
These methods try to obtain the layer 2 forwarding database entries via the
normal bridge methods as well as SPBM entries via rapid city methods.
=over
=item $baystack->hasCDP()
=item $baystack->fw_mac()
Returns true if the device is running either SONMP or LLDP.
Returns reference to hash of forwarding table MAC Addresses
=item $baystack->c_if()
=item $baystack->fw_port()
Returns reference to hash. Key: iid Value: local device port (interfaces)
Returns reference to hash of forwarding table entries port interface
identifier (iid)
=item $baystack->c_ip()
=item $baystack->qb_fw_vlan()
Returns reference to hash. Key: iid Value: remote IPv4 address
Returns reference to hash of forwarding table entries VLAN ID
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
=item $baystack->fw_status()
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-SONMP/LLDP device in between two or
more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $baystack->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $baystack->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $baystack->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
Returns reference to hash of forwarding table entries status
=back

View File

@@ -37,19 +37,23 @@ use Exporter;
use SNMP::Info::CDP;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoConfig;
use SNMP::Info::CiscoStpExtensions;
use SNMP::Info::CiscoAgg;
use SNMP::Info::Layer2;
@SNMP::Info::Layer2::C1900::ISA = qw/SNMP::Info::CDP SNMP::Info::CiscoStats
SNMP::Info::CiscoConfig SNMP::Info::Layer2
SNMP::Info::CiscoConfig SNMP::Info::CiscoStpExtensions SNMP::Info::CiscoAgg SNMP::Info::Layer2
Exporter/;
@SNMP::Info::Layer2::C1900::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS,
%SNMP::Info::CiscoAgg::GLOBALS,
%SNMP::Info::CiscoStpExtensions::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
@@ -58,6 +62,8 @@ $VERSION = '2.10';
%FUNCS = (
%SNMP::Info::Layer2::FUNCS,
%SNMP::Info::CiscoAgg::FUNCS,
%SNMP::Info::CiscoStpExtensions::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS,
%SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::CDP::FUNCS,
@@ -75,6 +81,8 @@ $VERSION = '2.10';
%MIBS = (
%SNMP::Info::Layer2::MIBS,
%SNMP::Info::CiscoAgg::MIBS,
%SNMP::Info::CiscoStpExtensions::MIBS,
%SNMP::Info::CiscoConfig::MIBS,
%SNMP::Info::CiscoStats::MIBS,
%SNMP::Info::CDP::MIBS,
@@ -84,8 +92,9 @@ $VERSION = '2.10';
);
%MUNGE = (
%SNMP::Info::Layer2::MUNGE, %SNMP::Info::CiscoConfig::MUNGE,
%SNMP::Info::CiscoStats::MUNGE, %SNMP::Info::CDP::MUNGE,
%SNMP::Info::Layer2::MUNGE, %SNMP::Info::CiscoAgg::MUNGE,
%SNMP::Info::CiscoStpExtensions::MUNGE, %SNMP::Info::CiscoConfig::MUNGE,
%SNMP::Info::CiscoStats::MUNGE, %SNMP::Info::CDP::MUNGE,
);
sub bulkwalk_no { return 1; }
@@ -203,7 +212,8 @@ sub i_vlan {
my $partial = shift;
# Overlap allows more than one VLAN per port. Unable to determine default
my $overlap = $c1900->bridgeGroupAllowMembershipOverlap()
my $overlap
= $c1900->bridgeGroupAllowMembershipOverlap()
|| $c1900->vlanAllowMembershipOverlap()
|| 'disabled';
@@ -251,6 +261,8 @@ sub i_vlan_membership {
return $i_vlan_membership;
}
sub i_vlan_membership_untagged { return; }
sub bp_index {
my $c1900 = shift;
my $partial = shift;
@@ -258,7 +270,7 @@ sub bp_index {
my $if_index = $c1900->i_index($partial);
my $index = $c1900->orig_bp_index($partial) || {};
foreach my $iid ( keys %$if_index ) {
$index->{$iid} = $iid if(!defined $index->{$iid});
$index->{$iid} = $iid if ( !defined $index->{$iid} );
}
return $index;
}
@@ -312,6 +324,10 @@ after determining a more specific class using the method above.
=item SNMP::Info::CiscoConfig
=item SNMP::Info::CiscoStpExtensions
=item SNMP::Info::CiscoAgg
=item SNMP::Info::Layer2
=back
@@ -336,6 +352,10 @@ See L<SNMP::Info::CiscoStats/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::CiscoConfig/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::CiscoStpExtensions/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::CiscoAgg/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::Layer2/"Required MIBs"> for its MIB requirements.
=head1 GLOBALS
@@ -394,6 +414,14 @@ See L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
See L<SNMP::Info::CiscoConfig/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStpExtensions
See L<SNMP::Info::CiscoStpExtensions/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoAgg
See L<SNMP::Info::CiscoAgg/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Layer2
See L<SNMP::Info::Layer2/"GLOBALS"> for details.
@@ -444,6 +472,9 @@ bridge group IDs.
print "Port: $port VLAN: $vlan\n";
}
=item $c1900->i_vlan_membership_untagged()
Unsupported, returns nothing.
=item $c1900->bp_index()
@@ -513,6 +544,14 @@ See L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
See L<SNMP::Info::CiscoConfig/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStpExtensions
See L<SNMP::Info::CiscoStpExtensions/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoAgg
See L<SNMP::Info::CiscoAgg/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Layer2
See L<SNMP::Info::Layer2/"TABLE METHODS"> for details.

View File

@@ -34,33 +34,21 @@ package SNMP::Info::Layer2::C2900;
use strict;
use Exporter;
use SNMP::Info::CiscoVTP;
use SNMP::Info::CDP;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoConfig;
use SNMP::Info::Layer2;
use SNMP::Info::Layer2::Cisco;
@SNMP::Info::Layer2::C2900::ISA = qw/SNMP::Info::CiscoVTP SNMP::Info::CDP
SNMP::Info::CiscoStats SNMP::Info::CiscoConfig
SNMP::Info::Layer2 Exporter/;
@SNMP::Info::Layer2::C2900::ISA = qw/SNMP::Info::Layer2::Cisco Exporter/;
@SNMP::Info::Layer2::C2900::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS, %SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS, %SNMP::Info::CDP::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS,
%SNMP::Info::Layer2::Cisco::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer2::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS,
%SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::CDP::FUNCS,
%SNMP::Info::CiscoVTP::FUNCS,
%SNMP::Info::Layer2::Cisco::FUNCS,
'i_name' => 'ifAlias',
# C2900PortEntry
@@ -71,15 +59,12 @@ $VERSION = '2.10';
);
%MIBS = (
%SNMP::Info::Layer2::MIBS, %SNMP::Info::CiscoConfig::MIBS,
%SNMP::Info::CiscoStats::MIBS, %SNMP::Info::CDP::MIBS,
%SNMP::Info::CiscoVTP::MIBS, 'CISCO-C2900-MIB' => 'ciscoC2900MIB',
%SNMP::Info::Layer2::Cisco::MIBS,
'CISCO-C2900-MIB' => 'ciscoC2900MIB',
);
%MUNGE = (
%SNMP::Info::Layer2::MUNGE, %SNMP::Info::CiscoConfig::MUNGE,
%SNMP::Info::CiscoStats::MUNGE, %SNMP::Info::CDP::MUNGE,
%SNMP::Info::CiscoVTP::MUNGE,
%SNMP::Info::Layer2::Cisco::MUNGE,
);
sub vendor {
@@ -139,6 +124,32 @@ sub i_duplex_admin {
return \%i_duplex_admin;
}
sub i_speed_admin {
my $c2900 = shift;
my $partial = shift;
my %i_speed_admin;
my $p_port = $c2900->p_port() || {};
my $interfaces = $c2900->interfaces($partial);
my $c2900_p_index = $c2900->c2900_p_index() || {};
my %reverse_2900 = reverse %$c2900_p_index;
my $c2900_p_speed
= $c2900->c2900_p_speed_admin( $reverse_2900{$partial} );
my %speeds = (
'autoDetect' => 'auto',
's10000000' => '10 Mbps',
's100000000' => '100 Mbps',
);
%i_speed_admin
= map { $c2900_p_index->{$_} => $speeds{ $c2900_p_speed->{$_} } }
keys %$c2900_p_index;
return \%i_speed_admin;
}
sub set_i_speed_admin {
my $c2900 = shift;
my ( $speed, $iid ) = @_;
@@ -243,15 +254,7 @@ after determining a more specific class using the method above.
=over
=item SNMP::Info::CiscoVTP
=item SNMP::Info::CDP
=item SNMP::Info::CiscoStats
=item SNMP::Info::CiscoConfig
=item SNMP::Info::Layer2
=item SNMP::Info::Layer2::Cisco
=back
@@ -267,15 +270,7 @@ Part of the v2 MIBs from Cisco.
=head2 Inherited MIBs
See L<SNMP::Info::CiscoVTP/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::CDP/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::CiscoConfig/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::Layer2/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::Layer2::Cisco/"Required MIBs"> for its MIB requirements.
=head1 GLOBALS
@@ -295,25 +290,9 @@ Returns 1. Use vlan indexing.
=back
=head2 Globals imported from SNMP::Info::CiscoVTP
=head2 Globals imported from SNMP::Info::Layer2::Cisco
See L<SNMP::Info::CiscoVTP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CDP
See L<SNMP::Info::CDP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStats
See L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoConfig
See L<SNMP::Info::CiscoConfig/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Layer2
See L<SNMP::Info::Layer2/"GLOBALS"> for details.
See L<SNMP::Info::Layer2::Cisco/"GLOBALS"> for details.
=head1 TABLE METHODS
@@ -349,6 +328,10 @@ Returns reference to hash of IIDs to admin duplex setting
Crosses $c2900->c2900_p_index() with $c2900->c2900_p_duplex_admin()
=item $c2900->i_speed_admin()
Returns reference to hash of IIDs to admin speed setting.
=back
=head2 F<C2900-MIB> Port Entry Table
@@ -381,25 +364,9 @@ Gives Admin speed of port
=back
=head2 Table Methods imported from SNMP::Info::CiscoVTP
=head2 Table Methods imported from SNMP::Info::Layer2::Cisco
See L<SNMP::Info::CiscoVTP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CDP
See L<SNMP::Info::CDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStats
See L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoConfig
See L<SNMP::Info::CiscoConfig/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Layer2
See L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
See L<SNMP::Info::Layer2::Cisco/"TABLE METHODS"> for details.
=head1 SET METHODS

View File

@@ -34,48 +34,34 @@ package SNMP::Info::Layer2::Catalyst;
use strict;
use Exporter;
use SNMP::Info::CiscoStack;
use SNMP::Info::CiscoVTP;
use SNMP::Info::CDP;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoPortSecurity;
use SNMP::Info::Layer2;
use SNMP::Info::Layer2::Cisco;
@SNMP::Info::Layer2::Catalyst::ISA
= qw/SNMP::Info::CiscoStack SNMP::Info::CiscoVTP
SNMP::Info::CDP SNMP::Info::CiscoStats
SNMP::Info::CiscoPortSecurity
SNMP::Info::Layer2 Exporter/;
= qw/SNMP::Info::CiscoStack SNMP::Info::Layer2::Cisco Exporter/;
@SNMP::Info::Layer2::Catalyst::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS, %SNMP::Info::CiscoPortSecurity::MIBS,
%SNMP::Info::CiscoStats::MIBS, %SNMP::Info::CDP::MIBS,
%SNMP::Info::CiscoVTP::MIBS, %SNMP::Info::CiscoStack::MIBS,
%SNMP::Info::Layer2::Cisco::MIBS,
%SNMP::Info::CiscoStack::MIBS,
);
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS,
%SNMP::Info::CiscoPortSecurity::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS,
%SNMP::Info::Layer2::Cisco::GLOBALS,
%SNMP::Info::CiscoStack::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer2::FUNCS, %SNMP::Info::CiscoPortSecurity::FUNCS,
%SNMP::Info::CiscoStats::FUNCS, %SNMP::Info::CDP::FUNCS,
%SNMP::Info::CiscoVTP::FUNCS, %SNMP::Info::CiscoStack::FUNCS,
%SNMP::Info::Layer2::Cisco::FUNCS,
%SNMP::Info::CiscoStack::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer2::MUNGE, %SNMP::Info::CiscoPortSecurity::MUNGE,
%SNMP::Info::CiscoStats::MUNGE, %SNMP::Info::CDP::MUNGE,
%SNMP::Info::CiscoVTP::MUNGE, %SNMP::Info::CiscoStack::MUNGE,
%SNMP::Info::Layer2::Cisco::MUNGE,
%SNMP::Info::CiscoStack::MUNGE,
);
# Overidden Methods
@@ -228,18 +214,10 @@ after determining a more specific class using the method above.
=over
=item SNMP::Info::Layer2::Cisco
=item SNMP::Info::CiscoStack
=item SNMP::Info::CiscoVTP
=item SNMP::Info::CDP
=item SNMP::Info::CiscoStats
=item SNMP::Info::CiscoPortSecurity
=item SNMP::Info::Layer2
=back
=head2 Required MIBs
@@ -248,19 +226,10 @@ after determining a more specific class using the method above.
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer2::Cisco/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStack/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoVTP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPortSecurity/"Required MIBs"> for its own MIB
requirements.
See L<SNMP::Info::Layer2/"Required MIBs"> for its own MIB requirements.
=back
These MIBs are found in the standard v2 MIBs from Cisco.
@@ -290,30 +259,14 @@ Returns 1. Use vlan indexing.
=back
=head2 Global Methods imported from SNMP::Info::Layer2::Cisco
See documentation in L<SNMP::Info::Layer2::Cisco/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::CiscoStack
See documentation in L<SNMP::Info::CiscoStack/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
@@ -348,29 +301,12 @@ have problems with F<BRIDGE-MIB>
=back
=head2 Table Methods imported from SNMP::Info::Layer2::Cisco
See documentation in L<SNMP::Info::Layer2::Cisco/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStack
See documentation in L<SNMP::Info::CiscoStack/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"TABLE METHODS"> for
details.
=head2 Table Methods imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
=cut

View File

@@ -43,7 +43,7 @@ use SNMP::Info::SONMP;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::MIBS,
@@ -246,6 +246,20 @@ sub slot_offset {
return 0;
}
sub fw_mac {
my $centillion = shift;
my $partial = shift;
return $centillion->SUPER::fw_mac($partial);
}
sub fw_port {
my $centillion = shift;
my $partial = shift;
return $centillion->SUPER::fw_port($partial);
}
1;
__END__
@@ -371,11 +385,6 @@ Returns 'Centillion'
=over
=item $centillion->layers()
Returns 00000011. Class emulates Layer 2 functionality through proprietary
MIBs.
=item $centillion->index_factor()
Required by SNMP::Info::SONMP. Number representing the number of ports

View File

@@ -35,49 +35,71 @@ use Exporter;
use SNMP::Info::CiscoVTP;
use SNMP::Info::CDP;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoImage;
use SNMP::Info::CiscoRTT;
use SNMP::Info::CiscoQOS;
use SNMP::Info::CiscoConfig;
use SNMP::Info::CiscoPortSecurity;
use SNMP::Info::CiscoStpExtensions;
use SNMP::Info::CiscoAgg;
use SNMP::Info::Layer2;
@SNMP::Info::Layer2::Cisco::ISA = qw/SNMP::Info::CiscoVTP SNMP::Info::CDP
SNMP::Info::CiscoStats SNMP::Info::CiscoImage
SNMP::Info::CiscoRTT SNMP::Info::CiscoQOS
SNMP::Info::CiscoConfig SNMP::Info::Layer2
SNMP::Info::CiscoStats SNMP::Info::CiscoRTT
SNMP::Info::CiscoConfig SNMP::Info::CiscoPortSecurity
SNMP::Info::CiscoStpExtensions SNMP::Info::CiscoAgg
SNMP::Info::Layer2
Exporter/;
@SNMP::Info::Layer2::Cisco::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS, %SNMP::Info::CiscoConfig::MIBS,
%SNMP::Info::CiscoQOS::MIBS, %SNMP::Info::CiscoRTT::MIBS,
%SNMP::Info::CiscoImage::MIBS, %SNMP::Info::CiscoStats::MIBS,
%SNMP::Info::CDP::MIBS, %SNMP::Info::CiscoVTP::MIBS,
%SNMP::Info::Layer2::MIBS,
%SNMP::Info::CiscoAgg::MIBS,
%SNMP::Info::CiscoStpExtensions::MIBS,
%SNMP::Info::CiscoPortSecurity::MIBS,
%SNMP::Info::CiscoConfig::MIBS,
%SNMP::Info::CiscoRTT::MIBS,
%SNMP::Info::CiscoStats::MIBS,
%SNMP::Info::CDP::MIBS,
%SNMP::Info::CiscoVTP::MIBS,
);
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS, %SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoQOS::GLOBALS, %SNMP::Info::CiscoRTT::GLOBALS,
%SNMP::Info::CiscoImage::GLOBALS, %SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::CDP::GLOBALS, %SNMP::Info::CiscoVTP::GLOBALS,
%SNMP::Info::Layer2::GLOBALS,
%SNMP::Info::CiscoAgg::GLOBALS,
%SNMP::Info::CiscoStpExtensions::GLOBALS,
%SNMP::Info::CiscoPortSecurity::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoRTT::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer2::FUNCS, %SNMP::Info::CiscoConfig::FUNCS,
%SNMP::Info::CiscoQOS::FUNCS, %SNMP::Info::CiscoRTT::FUNCS,
%SNMP::Info::CiscoImage::FUNCS, %SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::CDP::FUNCS, %SNMP::Info::CiscoVTP::FUNCS,
%SNMP::Info::Layer2::FUNCS,
%SNMP::Info::CiscoAgg::FUNCS,
%SNMP::Info::CiscoStpExtensions::FUNCS,
%SNMP::Info::CiscoPortSecurity::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS,
%SNMP::Info::CiscoRTT::FUNCS,
%SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::CDP::FUNCS,
%SNMP::Info::CiscoVTP::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer2::MUNGE, %SNMP::Info::CiscoConfig::MUNGE,
%SNMP::Info::CiscoQOS::MUNGE, %SNMP::Info::CiscoRTT::MUNGE,
%SNMP::Info::CiscoImage::MUNGE, %SNMP::Info::CiscoStats::MUNGE,
%SNMP::Info::CDP::MUNGE, %SNMP::Info::CiscoVTP::MUNGE,
%SNMP::Info::Layer2::MUNGE,
%SNMP::Info::CiscoAgg::MUNGE,
%SNMP::Info::CiscoStpExtensions::MUNGE,
%SNMP::Info::CiscoPortSecurity::MUNGE,
%SNMP::Info::CiscoConfig::MUNGE,
%SNMP::Info::CiscoRTT::MUNGE,
%SNMP::Info::CiscoStats::MUNGE,
%SNMP::Info::CDP::MUNGE,
%SNMP::Info::CiscoVTP::MUNGE,
);
1;
@@ -85,8 +107,9 @@ __END__
=head1 NAME
SNMP::Info::Layer2::Cisco - SNMP Interface to L3 and L2+L3 IOS Cisco Device
that are not covered in other classes.
SNMP::Info::Layer2::Cisco - SNMP Interface to L2 Cisco devices that are
not covered in other classes and the base L2 Cisco class for other device
specific L2 Cisco classes.
=head1 AUTHOR
@@ -110,7 +133,8 @@ Max Baker
=head1 DESCRIPTION
Subclass for Generic Cisco Routers running IOS
Subclass for Generic Layer 2 Cisco devices and the base L2 Cisco class for
other device specific L2 Cisco classes.
=head2 Inherited Classes
@@ -122,14 +146,16 @@ Subclass for Generic Cisco Routers running IOS
=item SNMP::Info::CiscoStats
=item SNMP::Info::CiscoImage
=item SNMP::Info::CiscoRTT
=item SNMP::Info::CiscoQOS
=item SNMP::Info::CiscoConfig
=item SNMP::Info::CiscoPortSecurity
=item SNMP::Info::CiscoStpExtensions
=item SNMP::Info::CiscoAgg
=item SNMP::Info::Layer2
=back
@@ -142,18 +168,20 @@ Subclass for Generic Cisco Routers running IOS
See L<SNMP::Info::CiscoVTP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoImage/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoRTT/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoQOS/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoConfig/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPortSecurity/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStpExtensions/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoAgg/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::Layer2/"Required MIBs"> for its own MIB requirements.
=back
@@ -182,22 +210,26 @@ See documentation in L<SNMP::Info::CDP/"GLOBALS"> for details.
See documentation in L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoRTT
See documentation in L<SNMP::Info::CiscoRTT/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoQOS
See documentation in L<SNMP::Info::CiscoQOS/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoConfig
See documentation in L<SNMP::Info::CiscoConfig/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoAgg
See documentation in L<SNMP::Info::CiscoAgg/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"GLOBALS"> for details.
@@ -219,22 +251,26 @@ See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoRTT
See documentation in L<SNMP::Info::CiscoRTT/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoQOS
See documentation in L<SNMP::Info::CiscoQOS/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoConfig
See documentation in L<SNMP::Info::CiscoConfig/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoAgg
See documentation in L<SNMP::Info::CiscoAgg/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"TABLE METHODS"> for details.

264
Info/Layer2/CiscoSB.pm Normal file
View File

@@ -0,0 +1,264 @@
# SNMP::Info::Layer2::CiscoSB
# $Id$
#
# Copyright (c) 2013 Nic Bernstein
#
# Copyright (c) 2008-2009 Max Baker changes from version 0.8 and beyond.
#
# Copyright (c) 2003 Regents of the University of California
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer2::CiscoSB;
use strict;
use Exporter;
use SNMP::Info::Layer2;
use SNMP::Info::Entity;
use SNMP::Info::EtherLike;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoConfig;
use SNMP::Info::CDP;
@SNMP::Info::Layer2::CiscoSB::ISA
= qw/SNMP::Info::Layer2 SNMP::Info::Entity SNMP::Info::EtherLike
SNMP::Info::CiscoStats SNMP::Info::CiscoConfig SNMP::Info::CDP Exporter/;
@SNMP::Info::Layer2::CiscoSB::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '3.28';
# This will be filled in with the device's index into the EntPhysicalEntry
# table by the serial() function.
our $index = undef;
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS,
%SNMP::Info::Entity::GLOBALS,
%SNMP::Info::EtherLike::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
'descr' => 'sysDescr'
);
%FUNCS = (
%SNMP::Info::Layer2::FUNCS,
%SNMP::Info::Entity::FUNCS,
%SNMP::Info::EtherLike::FUNCS,
%SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS,
%SNMP::Info::CDP::FUNCS,
);
%MIBS = (
%SNMP::Info::Layer2::MIBS,
%SNMP::Info::Entity::MIBS,
%SNMP::Info::EtherLike::MIBS,
%SNMP::Info::CiscoStats::MIBS,
%SNMP::Info::CiscoConfig::MIBS,
%SNMP::Info::CDP::MIBS,
);
%MUNGE = (
%SNMP::Info::Layer2::MUNGE,
%SNMP::Info::Entity::MUNGE,
%SNMP::Info::EtherLike::MUNGE,
%SNMP::Info::CiscoStats::MUNGE,
%SNMP::Info::CiscoConfig::MUNGE,
%SNMP::Info::CDP::MUNGE,
);
sub vendor {
return 'cisco';
}
# Walk the entPhysicalSerialNum table and return the first serial found
sub serial {
my $ciscosb = shift;
my $e_serial = $ciscosb->e_serial();
# Find entity table entry for this unit
foreach my $e ( sort keys %$e_serial ) {
if (defined $e_serial->{$e} and $e_serial->{$e} !~ /^\s*$/) {
return $e_serial->{$e};
}
}
}
sub os_ver {
my $ciscosb = shift;
my $os_ver = $ciscosb->e_swver();
return $os_ver->{$index} if defined $index;
}
# Grab e_model from Entity and tag on e_hwver
sub model {
my $ciscosb = shift;
my $e_model = $ciscosb->e_model();
my $e_hwver = $ciscosb->e_hwver();
if (defined ($index)) {
my $model = "$e_model->{$index} $e_hwver->{$index}";
return $model;
}
return $ciscosb->description();
}
# ifDescr is the same for all interfaces in a class, but the ifName is
# unique, so let's use that for port name.
sub interfaces {
my $ciscosb = shift;
my $partial = shift;
my $interfaces = $ciscosb->i_name($partial);
return $interfaces;
}
1;
__END__
=head1 NAME
SNMP::Info::Layer2::CiscoSB - SNMP Interface to Cisco Small Business series
=head1 AUTHOR
Nic Bernstein (shamelessly stolen from Max Baker's Aironet code)
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $ciscosb = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $ciscosb->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Provides interface to SNMP Data available on Cisco Small Business (nee LinkSys)
managed switches. [i.e. those matching enterprises(1).cisco(9).otherEnterprises(6).ciscosb(1)]
=head2 Inherited Classes
=over
=item SNMP::Info::Layer2
=item SNMP::Info::Entity
=item SNMP::Info::EtherLike
=item SNMP::Info::CiscoStats
=item SNMP::Info::CiscoConfig
=back
=head2 Required MIBs
=over
=item Inherited Classes
MIBs required by the inherited classes listed above.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $ciscosb->vendor()
Returns 'cisco'
=item $ciscosb->os_ver()
Returns software version (C<entPhysicalSoftwareRev>)
=item $ciscosb->serial()
Returns serial number of unit (C<entPhysicalSerialNum>)
=item $ciscosb->model()
Returns model and hardware revision of unit
(C<entPhysicalModelName+entPhysicalHardwareRev>)
=back
=head2 Globals imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Entity
See documentation in L<SNMP::Info::Entity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::EtherLike
See documentation in L<SNMP::Info::EtherLike/"GLOBALS"> for details.
=head1 TABLE METHODS
=head2 Overrides
=over
=item $ciscosb->interfaces()
Uses the i_name() field.
=back
=head2 Table Methods imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Entity
See documentation in L<SNMP::Info::Entity/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::EtherLike
See documentation in L<SNMP::Info::EtherLike/"TABLE METHODS"> for details.
=cut

View File

@@ -1,349 +0,0 @@
# SNMP::Info::Layer2::Foundry - SNMP Interface to Foundry Switches
# $Id$
#
# Copyright (c) 2008 Max Baker
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer2::Foundry;
use strict;
use Exporter;
use SNMP::Info::Layer2;
use SNMP::Info::FDP;
use SNMP::Info::EtherLike;
use SNMP::Info::MAU;
@SNMP::Info::Layer2::Foundry::ISA
= qw/SNMP::Info::Layer2 SNMP::Info::FDP SNMP::Info::EtherLike
SNMP::Info::MAU Exporter/;
@SNMP::Info::Layer2::Foundry::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
%MIBS = (
%SNMP::Info::Layer2::MIBS, %SNMP::Info::FDP::MIBS,
%SNMP::Info::EtherLike::MIBS, %SNMP::Info::MAU::MIBS,
'FOUNDRY-SN-ROOT-MIB' => 'foundry',
);
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS, %SNMP::Info::FDP::GLOBALS,
%SNMP::Info::EtherLike::GLOBALS, %SNMP::Info::MAU::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer2::FUNCS, %SNMP::Info::FDP::FUNCS,
%SNMP::Info::EtherLike::FUNCS, %SNMP::Info::MAU::FUNCS,
'test' => 'dot1dStpPortState',
);
%MUNGE = (
%SNMP::Info::Layer2::MUNGE, %SNMP::Info::FDP::MUNGE,
%SNMP::Info::EtherLike::MUNGE, %SNMP::Info::MAU::MUNGE,
);
# Method OverRides
#sub bulkwalk_no { 1;}
*SNMP::Info::Layer2::Foundry::i_duplex = \&SNMP::Info::MAU::mau_i_duplex;
*SNMP::Info::Layer2::Foundry::i_duplex_admin
= \&SNMP::Info::MAU::mau_i_duplex_admin;
*SNMP::Info::Layer2::Foundry::i_vlan = \&SNMP::Info::Bridge::qb_i_vlan_t;
# todo doc these
sub os_ver {
my $foundry = shift;
my $e_name = $foundry->e_name();
# find entity table entry for "stackmanaget.1"
my $unit_iid = undef;
foreach my $e ( keys %$e_name ) {
my $name = $e_name->{$e} || '';
$unit_iid = $e if $name eq 'stackmanaget.1';
}
# Default to OID method if no dice.
unless ( defined $unit_iid ) {
return $foundry->SUPER::model();
}
# Find Model Name
my $e_fwver = $foundry->e_fwver();
if ( defined $e_fwver->{$unit_iid} ) {
return $e_fwver->{$unit_iid};
}
# Not found in ENTITY-MIB, go up a level.
return $foundry->SUPER::os_ver();
}
sub model {
my $foundry = shift;
my $e_name = $foundry->e_name();
# find entity table entry for "unit.1"
my $unit_iid = undef;
foreach my $e ( keys %$e_name ) {
my $name = $e_name->{$e} || '';
$unit_iid = $e if $name eq 'unit.1';
}
# Default to OID method if no dice.
unless ( defined $unit_iid ) {
return $foundry->SUPER::model();
}
# Find Model Name
my $e_model = $foundry->e_model();
if ( defined $e_model->{$unit_iid} ) {
return $e_model->{$unit_iid};
}
# Not found in ENTITY-MIB, go up a level.
return $foundry->SUPER::model();
}
sub serial {
my $foundry = shift;
my $e_name = $foundry->e_name();
# find entity table entry for "unit.1"
my $unit_iid = undef;
foreach my $e ( keys %$e_name ) {
my $name = $e_name->{$e} || '';
$unit_iid = $e if $name eq 'unit.1';
}
return unless defined $unit_iid;
# Look up serial of found entry.
my $e_serial = $foundry->e_serial();
return $e_serial->{$unit_iid} if defined $e_serial->{$unit_iid};
return $foundry->SUPER::serial();
}
sub interfaces {
my $foundry = shift;
my $i_descr = $foundry->i_description;
my $i_name = $foundry->i_name;
# use ifName only if it is in portn
# format. For EdgeIrons
# else use ifDescr
foreach my $iid ( keys %$i_name ) {
my $name = $i_name->{$iid};
next unless defined $name;
$i_descr->{$iid} = $name
if $name =~ /^port\d+/i;
}
return $i_descr;
}
sub i_ignore {
my $foundry = shift;
my $i_type = $foundry->i_type();
my %i_ignore = ();
foreach my $iid ( keys %$i_type ) {
my $type = $i_type->{$iid} || '';
$i_ignore{$iid}++
# 33 is the console port
if $type =~ /(loopback|propvirtual|other|cpu|33)/i;
}
return \%i_ignore;
}
sub os {
return 'foundry';
}
sub vendor {
return 'foundry';
}
# this hangs on a edgeiron24g
# TODO: check by devicetype and deferr to SUPER if not bad device
sub stp_p_state { return; }
1;
__END__
=head1 NAME
SNMP::Info::Layer2::Foundry - SNMP Interface to Foundry FastIron Network
Devices
=head1 AUTHOR
Max Baker
=head1 SYNOPSIS
This module is Deprecated. Please use Layer3::Foundry instead.
# Let SNMP::Info determine the correct subclass for you.
my $foundry = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myswitch',
Community => 'public',
Version => 1
)
or die "Can't connect to DestHost.\n";
my $class = $foundry->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
This module is Deprecated. Please use Layer3::Foundry instead.
This module provides support for Foundry EdgeIron Switches
=head2 Inherited Classes
=over
=item SNMP::Info::Layer2
=item SNMP::Info::FDP
=back
=head2 Required MIBs
=over
=item F<FOUNDRY-SN-ROOT-MIB>
=item Inherited Classes' MIBs
See classes listed above for their required MIBs.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $foundry->model()
Returns model type.
=item $foundry->vendor()
Returns 'foundry'
=item $foundry->os()
Returns 'foundry'
=item $foundry->os_ver()
Returns the software version
=item $foundry->serial()
Returns the serial number
=back
=head2 Globals imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::FDP
See documentation in L<SNMP::Info::FDP/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Overrides
=over
=item $foundry->interfaces()
Returns reference to hash of interface names to iids.
=item $foundry->i_ignore()
Returns reference to hash of interfaces to be ignored.
Ignores interfaces with descriptions of tunnel,loopback,null
=item $foundry->i_duplex()
Returns reference to hash of interface link duplex status.
Crosses $foundry->sw_duplex() with $foundry->sw_index()
=item $foundry->i_duplex_admin()
Returns reference to hash of interface administrative duplex status.
=item $foundry->stp_p_state()
"The port's current state as defined by application of the Spanning Tree
Protocol.
Skipped if device is an EdgeIron 24G due to reports of hangs.
(C<dot1dStpPortState>)
=item $foundry->i_vlan()
Returns a mapping between C<ifIndex> and the PVID or default VLAN.
=back
=head2 Table Methods imported from SNMP::Info::Layer2
See documentation in L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::FDP
See documentation in L<SNMP::Info::FDP/"TABLE METHODS"> for details.
=cut

View File

@@ -36,23 +36,27 @@ use strict;
use Exporter;
use SNMP::Info::Layer3;
use SNMP::Info::MAU;
use SNMP::Info::LLDP;
use SNMP::Info::CDP;
use SNMP::Info::Aggregate;
@SNMP::Info::Layer2::HP::ISA
= qw/SNMP::Info::Layer3 SNMP::Info::MAU SNMP::Info::LLDP
SNMP::Info::CDP Exporter/;
@SNMP::Info::Layer2::HP::ISA = qw/
SNMP::Info::Aggregate
SNMP::Info::Layer3
SNMP::Info::MAU
SNMP::Info::CDP
Exporter
/;
@SNMP::Info::Layer2::HP::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %PORTSTAT %MODEL_MAP %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::MAU::MIBS,
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::CDP::MIBS,
%SNMP::Info::Aggregate::MIBS,
'RFC1271-MIB' => 'logDescription',
'HP-ICF-OID' => 'hpSwitch4000',
'STATISTICS-MIB' => 'hpSwitchCpuStat',
@@ -67,8 +71,8 @@ $VERSION = '2.10';
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::MAU::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
%SNMP::Info::Aggregate::GLOBALS,
'serial1' => 'entPhysicalSerialNum.1',
'serial2' => 'hpHttpMgSerialNumber.0',
'hp_cpu' => 'hpSwitchCpuStat.0',
@@ -85,8 +89,8 @@ $VERSION = '2.10';
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::MAU::FUNCS,
%SNMP::Info::LLDP::FUNCS,
%SNMP::Info::CDP::FUNCS,
%SNMP::Info::Aggregate::FUNCS,
'i_type2' => 'ifType',
# RFC1271
@@ -110,8 +114,8 @@ $VERSION = '2.10';
# Inherit all the built in munging
%SNMP::Info::Layer3::MUNGE,
%SNMP::Info::MAU::MUNGE,
%SNMP::Info::LLDP::MUNGE,
%SNMP::Info::CDP::MUNGE,
%SNMP::Info::Aggregate::MUNGE,
'c_id' => \&munge_hp_c_id,
);
@@ -121,6 +125,8 @@ $VERSION = '2.10';
%MODEL_MAP = (
'J8131A' => 'WAP-420-WW',
'J8130A' => 'WAP-420-NA',
'J9833A' => 'PS1810-8G',
'J9834A' => 'PS1810-24G',
'J8133A' => 'AP520WL',
'J8680A' => '9408sl',
'J9091A' => '8212zl',
@@ -135,8 +141,10 @@ $VERSION = '2.10';
'J8992A' => '6200yl-24G',
'J4902A' => '6108',
'J8698A' => '5412zl',
'J9851A' => '5412R-zl2',
'J8719A' => '5408yl',
'J8697A' => '5406zl',
'J9850A' => '5406R-zl2',
'J8718A' => '5404yl',
'J4819A' => '5308XL',
'J4850A' => '5304XL',
@@ -167,6 +175,14 @@ $VERSION = '2.10';
'J4905A' => '3400cl-24G',
'J4815A' => '3324XL',
'J4851A' => '3124',
'J9729A' => '2920-48G-PoE+',
'J9729A' => '2920-48G-PoE+',
'J9728A' => '2920-48G',
'J9728A' => '2920-48G',
'J9727A' => '2920-24G-PoE+',
'J9727A' => '2920-24G-PoE+',
'J9726A' => '2920-24G',
'J9726A' => '2920-24G',
'J9562A' => '2915-8G-PoE',
'J9148A' => '2910al-48G-PoE+',
'J9147A' => '2910al-48G',
@@ -187,7 +203,7 @@ $VERSION = '2.10';
'J4900C' => '2626C',
'J4900A' => '2626',
'J9627A' => '2620-48-PoE+',
'J9624A' => '2620-48',
'J9626A' => '2620-48',
'J9624A' => '2620-24-PPoE+',
'J9625A' => '2620-24-PoE+',
'J9623A' => '2620-24',
@@ -198,6 +214,21 @@ $VERSION = '2.10';
'J9086A' => '2610-24/12PWR',
'J9085A' => '2610-24',
'J8762A' => '2600-8-PWR',
'J9780A' => '2530-8-PoE+',
'J9777A' => '2530-8G',
'J9783A' => '2530-8',
'J9778A' => '2530-48-PoE+',
'J9853A' => '2530-48G-PoE+-2SFP+',
'J9772A' => '2530-48G-PoE+',
'J9855A' => '2530-48G-2SFP+',
'J9775A' => '2530-48G',
'J9781A' => '2530-48',
'J9779A' => '2530-24-PoE+',
'J9854A' => '2530-24G-PoE+-2SFP+',
'J9773A' => '2530-24G-PoE+',
'J9856A' => '2530-24G-2SFP+',
'J9776A' => '2530-24G',
'J9782A' => '2530-24',
'J4813A' => '2524',
'J9298A' => '2520G-8-PoE',
'J9299A' => '2520G-24-PoE',
@@ -213,6 +244,8 @@ $VERSION = '2.10';
'J4817A' => '2312',
'J9449A' => '1810G-8',
'J9450A' => '1810G-24',
'J9802A' => '1810-8G',
'J9803A' => '1810-24G',
'J9029A' => '1800-8G',
'J9028A' => '1800-24G',
);
@@ -413,108 +446,6 @@ sub _sensor {
return $result;
}
# Use CDP and/or LLDP
sub hasCDP {
my $hp = shift;
return $hp->hasLLDP() || $hp->SUPER::hasCDP();
}
sub c_ip {
my $hp = shift;
my $partial = shift;
my $cdp = $hp->SUPER::c_ip($partial) || {};
my $lldp = $hp->lldp_ip($partial) || {};
my %c_ip;
foreach my $iid ( keys %$cdp ) {
my $ip = $cdp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
foreach my $iid ( keys %$lldp ) {
my $ip = $lldp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
return \%c_ip;
}
sub c_if {
my $hp = shift;
my $partial = shift;
my $lldp = $hp->lldp_if($partial) || {};
my $cdp = $hp->SUPER::c_if($partial) || {};
my %c_if;
foreach my $iid ( keys %$cdp ) {
my $if = $cdp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
foreach my $iid ( keys %$lldp ) {
my $if = $lldp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
return \%c_if;
}
sub c_port {
my $hp = shift;
my $partial = shift;
my $lldp = $hp->lldp_port($partial) || {};
my $cdp = $hp->SUPER::c_port($partial) || {};
my %c_port;
foreach my $iid ( keys %$cdp ) {
my $port = $cdp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
foreach my $iid ( keys %$lldp ) {
my $port = $lldp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
return \%c_port;
}
sub c_id {
my $hp = shift;
my $partial = shift;
my $lldp = $hp->lldp_id($partial) || {};
my $cdp = $hp->SUPER::c_id($partial) || {};
my %c_id;
foreach my $iid ( keys %$cdp ) {
my $id = $cdp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
foreach my $iid ( keys %$lldp ) {
my $id = $lldp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
return \%c_id;
}
sub munge_hp_c_id {
my ($v) = @_;
if ( length(unpack('H*', $v)) == 12 ){
@@ -528,30 +459,6 @@ sub munge_hp_c_id {
}
}
sub c_platform {
my $hp = shift;
my $partial = shift;
my $lldp = $hp->lldp_rem_sysdesc($partial) || {};
my $cdp = $hp->SUPER::c_platform($partial) || {};
my %c_platform;
foreach my $iid ( keys %$cdp ) {
my $platform = $cdp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
foreach my $iid ( keys %$lldp ) {
my $platform = $lldp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
return \%c_platform;
}
# POWER-ETHERNET-MIB doesn't define a mapping of its
# "module"/"port" index to ifIndex. Different vendors
# do this in different ways.
@@ -642,6 +549,8 @@ sub set_i_vlan_tagged {
return;
}
sub agg_ports { return agg_ports_ifstack(@_) }
1;
__END__
@@ -688,8 +597,6 @@ after determining a more specific class using the method above.
=item SNMP::Info::Layer2
=item SNMP::Info::LLDP
=item SNMP::Info::MAU
=back
@@ -759,7 +666,7 @@ Returns bytes of used memory
Returns the model number of the HP Switch. Will translate between the HP Part
number and the common model number with this map :
%MODEL_MAP = (
%MODEL_MAP = (
'J8131A' => 'WAP-420-WW',
'J8130A' => 'WAP-420-NA',
'J8133A' => 'AP520WL',
@@ -828,7 +735,7 @@ number and the common model number with this map :
'J4900C' => '2626C',
'J4900A' => '2626',
'J9627A' => '2620-48-PoE+',
'J9624A' => '2620-48',
'J9626A' => '2620-48',
'J9624A' => '2620-24-PPoE+',
'J9625A' => '2620-24-PoE+',
'J9623A' => '2620-24',
@@ -856,7 +763,7 @@ number and the common model number with this map :
'J9450A' => '1810G-24',
'J9029A' => '1800-8G',
'J9028A' => '1800-24G',
);
);
=item $hp->os()
@@ -902,12 +809,12 @@ Power supply 2 status
=item $hp->peth_port_power()
Power supplied by PoE ports, in milliwatts
("hpicfPoePethPsePortPower")
(C<hpicfPoePethPsePortPower>)
=item $hp->stp_ver()
Returns what version of STP the device is running.
("hpicfBridgeRstpForceVersion" with fallback to inherited stp_ver())
(C<hpicfBridgeRstpForceVersion> with fallback to inherited stp_ver())
=back
@@ -915,10 +822,6 @@ Returns what version of STP the device is running.
See documentation in L<SNMP::Info::Layer2/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::MAU
See documentation in L<SNMP::Info::MAU/"GLOBALS"> for details.
@@ -930,7 +833,7 @@ to a hash.
=head2 Overrides
=over
=over 4
=item $hp->interfaces()
@@ -946,7 +849,8 @@ Returns reference to hash of IIDs to admin duplex setting.
=item $hp->vendor_i_type()
Returns reference to hash of IIDs to HP specific port type (hpSwitchPortType).
Returns reference to hash of IIDs to HP specific port type
(C<hpSwitchPortType>).
=item $hp->i_name()
@@ -957,52 +861,11 @@ Crosses i_name() with $hp->e_name() using $hp->e_port() and i_alias()
Returns reference to hash of power Ethernet port table entries map back to
interface index (c<ifIndex>)
=back
=item C<agg_ports>
=head2 Topology information
Based upon the firmware version HP devices may support Cisco Discovery
Protocol (CDP), Link Layer Discovery Protocol (LLDP), or both. These methods
will query both and return the combination of all information. As a result,
there may be identical topology information returned from the two protocols
causing duplicate entries. It is the calling program's responsibility to
identify any duplicate entries and remove duplicates if necessary.
=over
=item $hp->hasCDP()
Returns true if the device is running either CDP or LLDP.
=item $hp->c_if()
Returns reference to hash. Key: iid Value: local device port (interfaces)
=item $hp->c_ip()
Returns reference to hash. Key: iid Value: remote IPv4 address
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-CDP/LLDP device in between two
or more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $hp->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $hp->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $hp->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
Returns a HASH reference mapping from slave to master port for each member of
a port bundle on the device. Keys are ifIndex of the slave ports, Values are
ifIndex of the corresponding master ports.
=back
@@ -1010,10 +873,6 @@ Returns reference to hash. Key: iid Value: Remote Device Type
See documentation in L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::MAU
See documentation in L<SNMP::Info::MAU/"TABLE METHODS"> for details.
@@ -1041,4 +900,6 @@ operations.
=item set_i_vlan_tagged()
=back
=cut

View File

@@ -44,7 +44,7 @@ use SNMP::Info::CDP;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %PORTSTAT %MODEL_MAP %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -376,6 +376,20 @@ sub i_vlan_membership {
return $i_vlan_membership;
}
sub i_vlan_membership_untagged {
my $hp = shift;
my $partial = shift;
my $vlans = $hp->i_vlan($partial);
my $i_vlan_membership = {};
foreach my $port (keys %$vlans) {
my $vlan = $vlans->{$port};
push( @{ $i_vlan_membership->{$port} }, $vlan );
}
return $i_vlan_membership;
}
sub set_i_vlan {
my $hp = shift;
my $rv;
@@ -652,7 +666,8 @@ Returns reference to hash of IIDs to admin duplex setting.
=item $hp->vendor_i_type()
Returns reference to hash of IIDs to HP specific port type (hpSwitchPortType).
Returns reference to hash of IIDs to HP specific port type
(C<hpSwitchPortType>).
=item $hp->i_name()
@@ -679,6 +694,12 @@ It is the union of tagged, untagged, and auto ports.
print "Port: $port VLAN: $vlan\n";
}
=item $hp->i_vlan_membership_untagged()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
IDs. These are the VLANs which are members of the untagged egress list for
the port.
=item $hp->v_index()
Returns VLAN IDs
@@ -718,4 +739,6 @@ operations.
=item set_i_vlan_tagged()
=back
=cut

View File

@@ -33,17 +33,19 @@ package SNMP::Info::Layer2::HPVC;
use strict;
use Exporter;
use SNMP::Info::Layer2;
use SNMP::Info::LLDP;
@SNMP::Info::Layer2::HPVC::ISA
= qw/SNMP::Info::Layer2 Exporter/;
= qw/SNMP::Info::Layer2 SNMP::Info::LLDP Exporter/;
@SNMP::Info::Layer2::HPVC::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS,
%SNMP::Info::LLDP::MIBS,
'HPVC-MIB' => 'vcDomainName',
'CPQSINFO-MIB' => 'cpqSiSysSerialNum',
'HPVCMODULE-MIB' => 'vcModuleDomainName',
@@ -51,6 +53,7 @@ $VERSION = '2.10';
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
'serial1' => 'cpqSiSysSerialNum.0',
'os_ver' => 'cpqHoSWRunningVersion.1',
'os_bin' => 'cpqHoFwVerVersion.1',
@@ -59,12 +62,14 @@ $VERSION = '2.10';
%FUNCS = (
%SNMP::Info::Layer2::FUNCS,
%SNMP::Info::LLDP::FUNCS,
);
%MUNGE = (
# Inherit all the built in munging
%SNMP::Info::Layer2::MUNGE,
%SNMP::Info::LLDP::MUNGE,
);
@@ -89,7 +94,7 @@ __END__
=head1 NAME
SNMP::Info::Layer2::HPVC - SNMP Interface to HP VirtualConnect Switches
SNMP::Info::Layer2::HPVC - SNMP Interface to HP Virtual Connect Switches
=head1 AUTHOR
@@ -113,7 +118,7 @@ Jeroen van Ingen
=head1 DESCRIPTION
Provides abstraction to the configuration information obtainable from a
HP VirtualConnect Switch via SNMP.
HP Virtual Connect Switch via SNMP.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
@@ -150,7 +155,7 @@ These are methods that return scalar value from SNMP
=item $hp->os()
Returns hpvc
Returns C<'hpvc'>
=item $hp->os_bin()

View File

@@ -36,7 +36,7 @@ use SNMP::Info::Layer2;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE $AUTOLOAD/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS,

View File

@@ -43,7 +43,7 @@ use SNMP::Info::Airespace;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE $AUTOLOAD $INIT $DEBUG/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::MIBS, %SNMP::Info::Bridge::MIBS,

View File

@@ -42,7 +42,7 @@ use SNMP::Info::Layer2;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS, %SNMP::Info::IEEE802dot11::MIBS,

1299
Info/Layer2/NWSS2300.pm Normal file

File diff suppressed because it is too large Load Diff

View File

@@ -40,14 +40,19 @@ use SNMP::Info::LLDP;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
# This will be filled in with the device's index into the EntPhysicalEntry
# table by the serial() function.
our $index = undef;
%MIBS = ( %SNMP::Info::Layer2::MIBS, %SNMP::Info::LLDP::MIBS, );
%GLOBALS = (
%SNMP::Info::Layer2::GLOBALS, %SNMP::Info::LLDP::GLOBALS,
ng_serial => '.1.3.6.1.4.1.4526.10.1.1.1.4.0',
ng_osver => '.1.3.6.1.4.1.4526.10.1.1.1.13.0',
ng_fsosver => '.1.3.6.1.4.1.4526.11.11.1.0',
ng_gsmserial => '.1.3.6.1.4.1.4526.10.1.1.1.4.0',
ng_gsmosver => '.1.3.6.1.4.1.4526.10.1.1.1.13.0',
);
%FUNCS = ( %SNMP::Info::Layer2::FUNCS, %SNMP::Info::LLDP::FUNCS, );
@@ -62,92 +67,91 @@ sub os {
return 'netgear';
}
# Wish the OID-based method worked, but netgear scatters
# the sysObjectID values across all the device MIBs, and
# makes the device MIBs state secrets.
# They seem to set sysDescr to the model number, though,
# so we'll use that.
# We will attempt to use Entity-MIB if present. In that case, we will
# also set the shared variable $index, which is used by other functions
# to index within Entity-MIB tables. This assumes, of course, that there
# is only one serial number (entPhysicalSerialNum) present in the table.
sub serial {
my $netgear = shift;
my $serial = undef;
my $e_serial = $netgear->e_serial();
if (defined($e_serial)) { # This unit sports the Entity-MIB
# Find entity table entry for this unit
foreach my $e ( keys %$e_serial ) {
if (defined ($e_serial->{$e}) and $e_serial->{$e} !~ /^\s*$/) {
$index = $e;
last;
}
}
return $e_serial->{$index} if defined $index;
}
# Without Enitity-MIB, we've got to work our way through a bunch of
# different locales...
return $netgear->ng_gsmserial() if defined $netgear->model and $netgear->model =~ m/GSM\d/i;;
return 'none';
}
# If device supports Entity-MIB, index into that to divine model and
# hardware version, otherwise default to sysDescr.
sub model {
my $netgear = shift;
if (defined($index)) {
my $model = $netgear->e_descr();
my $e_hwver = $netgear->e_hwver();
$model = "$model->{$index} $e_hwver->{$index}";
return $model;
}
return $netgear->description();
}
#
# This is model-dependent. Some netgear brand devices don't implement
# the bridge MIB forwarding table, so we use the Q-BRIDGE-MIB forwarding
# table. Fall back to the orig functions if the qb versions don't
# return anything.
sub fw_mac {
# ifDescr is the same for all interfaces in a class, but the ifName is
# unique, so let's use that for port name. If all else fails,
# concatentate ifDesc and ifIndex.
sub interfaces {
my $netgear = shift;
my $ret = $netgear->qb_fw_mac();
$ret = $netgear->orig_fw_mac() if ( !defined($ret) );
return $ret;
}
my $partial = shift;
sub fw_port {
my $netgear = shift;
my $ret = $netgear->qb_fw_port();
$ret = $netgear->orig_fw_port() if ( !defined($ret) );
return $ret;
my $interfaces = $netgear->i_index($partial) || {};
my $i_descr = $netgear->i_description($partial) || {};
my $i_name = $netgear->i_name($partial);
my $i_isset = ();
# Replace the description with the ifName field, if set
foreach my $iid ( keys %$i_name ) {
my $name = $i_name->{$iid};
next unless defined $name;
if (defined $name and $name !~ /^\s*$/) {
$interfaces->{$iid} = $name;
$i_isset->{$iid} = 1;
}
}
# Replace the Index with the ifDescr field, appended with index
# number, to deal with devices with non-unique ifDescr.
foreach my $iid ( keys %$i_descr ) {
my $port = $i_descr->{$iid} . '-' . $iid;
next unless defined $port;
next if (defined $i_isset->{$iid} and $i_isset->{$iid} == 1);
$interfaces->{$iid} = $port;
}
return $interfaces;
}
# these seem to work for GSM models but not GS
# https://sourceforge.net/tracker/?func=detail&aid=3085413&group_id=70362&atid=527529
sub os_ver {
my $self = shift;
return if $self->model and $self->model =~ m/GS\d/i;
return $self->ng_osver();
}
sub serial {
my $self = shift;
return if $self->model and $self->model =~ m/GS\d/i;
return $self->ng_serial();
}
# Use LLDP
sub hasCDP {
my $netgear = shift;
return $netgear->hasLLDP();
my $serial = $netgear->serial(); # Make sure that index gets primed
if (defined($index)) {
my $os_ver = $netgear->e_swver();
return $os_ver->{$index} if defined $os_ver;
}
return $netgear->ng_gsmosver() if defined $netgear->model and $netgear->model =~ m/GSM\d/i;
return $netgear->ng_fsosver() if defined $netgear->model and $netgear->model =~ m/FS\d/i;
}
sub c_ip {
my $netgear = shift;
my $partial = shift;
return $netgear->lldp_ip($partial);
}
sub c_if {
my $netgear = shift;
my $partial = shift;
return $netgear->lldp_if($partial);
}
sub c_port {
my $netgear = shift;
my $partial = shift;
return $netgear->lldp_port($partial);
}
sub c_id {
my $netgear = shift;
my $partial = shift;
return $netgear->lldp_id($partial);
}
sub c_platform {
my $netgear = shift;
my $partial = shift;
return $netgear->lldp_rem_sysdesc($partial);
}
1;
__END__
@@ -158,8 +162,8 @@ SNMP::Info::Layer2::Netgear - SNMP Interface to Netgear switches
=head1 AUTHOR
Bill Fenner and Zoltan Erszenyi,
Hacked in LLDP support from Baystack.pm by
Bill Fenner and Zoltan Erszenyi,
Hacked in LLDP support from Baystack.pm by
Nic Bernstein <nic@onlight.com>
=head1 SYNOPSIS
@@ -188,6 +192,7 @@ inherited methods.
=over
=item SNMP::Info::Layer2
=item SNMP::Info::Entity
=item SNMP::Info::LLDP
=back
@@ -201,6 +206,8 @@ inherited methods.
MIBs listed in L<SNMP::Info::Layer2/"Required MIBs"> and its inherited
classes.
See L<SNMP::Info::Entity/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::LLDP/"Required MIBs"> for its MIB requirements.
=back
@@ -223,7 +230,8 @@ Returns 'netgear'
=item $netgear->model()
Returns description()
Returns concatenation of $e_model and $e_hwver if Entity MIB present,
otherwise returns description()
=item $netgear->os_ver()
@@ -231,7 +239,8 @@ Returns OS Version.
=item $netgear->serial()
Returns Serial Number.
Returns Serial Number if available (older FS switches have no accessible
serial number).
=back
@@ -239,6 +248,10 @@ Returns Serial Number.
See documentation in L<SNMP::Info::Layer2/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Entity
See documentation in L<SNMP::Info::Entity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"GLOBALS"> for details.
@@ -252,65 +265,9 @@ a reference to a hash.
=over
=item $netgear->fw_mac()
=item $netgear->interfaces()
Returns reference to hash of forwarding table MAC Addresses.
Some devices don't implement the C<BRIDGE-MIB> forwarding table, so we use
the C<Q-BRIDGE-MIB> forwarding table. Fall back to the C<BRIDGE-MIB> if
C<Q-BRIDGE-MIB> doesn't return anything.
=item $netgear->fw_port()
Returns reference to hash of forwarding table entries port interface
identifier (iid)
Some devices don't implement the C<BRIDGE-MIB> forwarding table, so we use
the C<Q-BRIDGE-MIB> forwarding table. Fall back to the C<BRIDGE-MIB> if
C<Q-BRIDGE-MIB> doesn't return anything.
=back
=head2 Topology information
Based upon the software version devices may support Link Layer Discovery
Protocol (LLDP).
=over
=item $netgear->hasCDP()
Returns true if the device is running LLDP.
=item $netgear->c_if()
Returns reference to hash. Key: iid Value: local device port (interfaces)
=item $netgear->c_ip()
Returns reference to hash. Key: iid Value: remote IPv4 address
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-LLDP device in between two or
more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $netgear->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $netgear->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $netgear->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
Uses the i_name() field.
=back
@@ -318,4 +275,12 @@ Returns reference to hash. Key: iid Value: Remote Device Type
See documentation in L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Entity
See documentation in L<SNMP::Info::Entity/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=cut

View File

@@ -41,7 +41,7 @@ use SNMP::Info::Layer2;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS,

1303
Info/Layer2/Trapeze.pm Normal file

File diff suppressed because it is too large Load Diff

177
Info/Layer2/Ubiquiti.pm Normal file
View File

@@ -0,0 +1,177 @@
# SNMP::Info::Layer2::Ubiquiti
# $Id$
#
package SNMP::Info::Layer2::Ubiquiti;
use strict;
use Exporter;
use SNMP::Info::IEEE802dot11;
use SNMP::Info::Layer2;
@SNMP::Info::Layer2::Ubiquiti::ISA
= qw/SNMP::Info::IEEE802dot11 SNMP::Info::Layer2 Exporter/;
@SNMP::Info::Layer2::Ubiquiti::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS,
%SNMP::Info::IEEE802dot11::MIBS,
);
%GLOBALS
= ( %SNMP::Info::Layer2::GLOBALS, %SNMP::Info::IEEE802dot11::GLOBALS, );
%FUNCS = (
%SNMP::Info::Layer2::FUNCS,
%SNMP::Info::IEEE802dot11::FUNCS,
);
%MUNGE = ( %SNMP::Info::Layer2::MUNGE, %SNMP::Info::IEEE802dot11::MUNGE, );
sub os {
return 'Ubiquiti';
}
sub os_ver {
my $dot11 = shift;
my $versions = $dot11->dot11_prod_ver();
foreach my $iid ( keys %$versions ) {
my $ver = $versions->{$iid};
next unless defined $ver;
return $ver;
if ( $ver =~ /([\d\.]+)/ ) {
return $1;
}
}
return;
}
sub vendor {
return 'Ubiquiti Networks, Inc.';
}
sub model {
my $dot11 = shift;
my $names = $dot11->dot11_prod_name();
foreach my $iid ( keys %$names ) {
my $prod = $names->{$iid};
next unless defined $prod;
return $prod;
}
return;
}
1;
__END__
=head1 NAME
SNMP::Info::Layer2::Ubiquiti - SNMP Interface to Ubiquiti Access Points
=head1 AUTHOR
Max Kosmach
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $ubnt = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $ubnt->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Provides abstraction to the configuration information obtainable from
Ubiquiti Access Point through SNMP.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
my $ubnt = new SNMP::Info::Layer2::Ubiquiti(...);
=head2 Inherited Classes
=over
=item SNMP::Info::Layer2
=item SNMP::Info::IEEE802dot11
=back
=head2 Required MIBs
None.
=head2 Inherited MIBs
See L<SNMP::Info::Layer2/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::IEEE802dot11/"Required MIBs"> for its MIB requirements.
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $ubnt->vendor()
Returns 'Ubiquiti Networks, Inc.'
=item $ubnt->model()
Returns the model extracted from C<dot11manufacturerProductName>.
=item $ubnt->os()
Returns 'Ubiquiti'
=item $ubnt->os_ver()
Returns the software version extracted from C<dot11manufacturerProductVersion>.
=back
=head2 Global Methods imported from SNMP::Info::Layer2
See L<SNMP::Info::Layer2/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::IEEE802dot11
See L<SNMP::Info::IEEE802dot11/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Table Methods imported from SNMP::Info::Layer2
See L<SNMP::Info::Layer2/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::IEEE802dot11
See L<SNMP::Info::IEEE802dot11/"TABLE METHODS"> for details.
=cut

View File

@@ -39,7 +39,7 @@ use SNMP::Info::Layer2;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
# Set for No CDP
%GLOBALS = ( %SNMP::Info::Layer2::GLOBALS );

View File

@@ -41,17 +41,19 @@ use SNMP::Info::Entity;
use SNMP::Info::PowerEthernet;
use SNMP::Info::IPv6;
use SNMP::Info::AdslLine;
use SNMP::Info::LLDP;
@SNMP::Info::Layer3::ISA = qw/
SNMP::Info::PowerEthernet SNMP::Info::IPv6
SNMP::Info::Entity SNMP::Info::EtherLike
SNMP::Info::Bridge SNMP::Info::AdslLine
SNMP::Info::LLDP
SNMP::Info Exporter/;
@SNMP::Info::Layer3::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::MIBS,
@@ -61,6 +63,7 @@ $VERSION = '2.10';
%SNMP::Info::Entity::MIBS,
%SNMP::Info::PowerEthernet::MIBS,
%SNMP::Info::IPv6::MIBS,
%SNMP::Info::LLDP::MIBS,
'IP-MIB' => 'ipNetToMediaIfIndex',
'OSPF-MIB' => 'ospfRouterId',
'BGP4-MIB' => 'bgpIdentifier',
@@ -76,6 +79,7 @@ $VERSION = '2.10';
%SNMP::Info::Entity::GLOBALS,
%SNMP::Info::PowerEthernet::GLOBALS,
%SNMP::Info::IPv6::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
'mac' => 'ifPhysAddress.1',
'serial1' =>
'.1.3.6.1.4.1.9.3.6.3.0', # OLD-CISCO-CHASSIS-MIB::chassisId.0
@@ -92,6 +96,7 @@ $VERSION = '2.10';
%SNMP::Info::Entity::FUNCS,
%SNMP::Info::PowerEthernet::FUNCS,
%SNMP::Info::IPv6::FUNCS,
%SNMP::Info::LLDP::FUNCS,
# Obsolete Address Translation Table (ARP Cache)
'old_at_index' => 'atIfIndex',
@@ -132,11 +137,11 @@ $VERSION = '2.10';
'bgp_peer_out_upd' => 'bgpPeerOutUpdates',
# IP-MIB Net to Physical Table (ARP Cache)
'n2p_paddr' => 'ipNetToPhysicalPhysAddress',
'n2p_paddr' => 'ipNetToPhysicalPhysAddress',
'n2p_lastupdate' => 'ipNetToPhysicalLastUpdated',
'n2p_ptype' => 'ipNetToPhysicalType',
'n2p_pstate' => 'ipNetToPhysicalState',
'n2p_pstatus' => 'ipNetToPhysicalRowStatus',
'n2p_ptype' => 'ipNetToPhysicalType',
'n2p_pstate' => 'ipNetToPhysicalState',
'n2p_pstatus' => 'ipNetToPhysicalRowStatus',
);
@@ -150,9 +155,10 @@ $VERSION = '2.10';
%SNMP::Info::Entity::MUNGE,
%SNMP::Info::PowerEthernet::MUNGE,
%SNMP::Info::IPv6::MUNGE,
%SNMP::Info::LLDP::MUNGE,
'old_at_paddr' => \&SNMP::Info::munge_mac,
'at_paddr' => \&SNMP::Info::munge_mac,
'n2p_paddr' => \&SNMP::Info::munge_mac,
'n2p_paddr' => \&SNMP::Info::munge_mac,
);
# Method OverRides
@@ -163,12 +169,12 @@ sub root_ip {
my $router_ip = $l3->router_ip();
my $ospf_ip = $l3->ospf_ip();
# if the router ip exists and is a route advertised by the device we prefer
# it over the others
# if the router ip exists and is a route advertised by the device we prefer
# it over the others
return $router_ip
if (( defined $router_ip )
and ( $router_ip ne '0.0.0.0' )
and ( grep { $ospf_ip->{$_} eq $router_ip } (keys %$ospf_ip))
and ( grep { $ospf_ip->{$_} eq $router_ip } ( keys %$ospf_ip ) )
and ( $l3->snmp_connect_ip($router_ip) ) );
# return the first one found here (should be only one)
@@ -185,38 +191,29 @@ sub root_ip {
return;
}
sub i_ignore {
my $l3 = shift;
my $partial = shift;
my $interfaces = $l3->interfaces($partial) || {};
my %i_ignore;
foreach my $if ( keys %$interfaces ) {
# lo -> cisco aironet 350 loopback
if ( $interfaces->{$if} =~ /(tunnel|loopback|\blo\b|null)/i ) {
$i_ignore{$if}++;
}
}
return \%i_ignore;
}
sub serial {
my $l3 = shift;
my $serial1 = $l3->serial1();
my $e_descr = $l3->e_descr() || {};
my $e_serial = $l3->e_serial() || {};
my $serial1 = $l3->serial1();
my $e_parent = $l3->e_parent() || {};
my $serial2 = $e_serial->{1} || undef;
my $chassis = $e_descr->{1} || undef;
foreach my $iid ( keys %$e_parent ) {
my $parent = $e_parent->{$iid};
if ( $parent eq '0' ) {
my $serial = $l3->e_serial($iid);
if ( $serial ) {
return $serial->{$iid};
}
else {
my $descr = $l3->e_descr($iid);
if ( $descr and $descr =~ /serial#?:\s*([a-z0-9]+)/i )
{
return $1;
}
}
}
}
# precedence
# serial2,chassis parse,serial1
return $serial2 if ( defined $serial2 and $serial2 !~ /^\s*$/ );
return $1
if ( defined $chassis and $chassis =~ /serial#?:\s*([a-z0-9]+)/i );
return $serial1 if ( defined $serial1 and $serial1 !~ /^\s*$/ );
return;
@@ -293,32 +290,37 @@ sub interfaces {
my $l3 = shift;
my $partial = shift;
my $interfaces = $l3->i_index($partial);
my $descriptions = $l3->i_description($partial);
my $interfaces = $l3->i_index($partial);
my $i_descr = $l3->i_description($partial);
my %interfaces = ();
foreach my $iid ( keys %$interfaces ) {
my $desc = $descriptions->{$iid};
next unless defined $desc;
$interfaces{$iid} = $desc;
# Check for duplicates in ifDescr, if so uniquely identify by adding
# ifIndex to repeated values
my %seen;
foreach my $iid ( keys %$i_descr ) {
my $port = $i_descr->{$iid};
next unless defined $port;
if ( $seen{$port}++ ) {
$interfaces->{$iid} = sprintf( "%s (%d)", $port, $iid );
}
else {
$interfaces->{$iid} = $port;
}
}
return \%interfaces;
return $interfaces;
}
sub vendor {
my $l3 = shift;
my $descr = $l3->description();
my $id = $l3->id();
my $id = $l3->id();
# .1.3.6.1.4.1.9.1 is the CISCO-PRODUCTS-MIB
# .1.3.6.1.4.1.9.9.368.4 is an old tree that Cisco CSSs were numbered from
return 'cisco' if $id =~ /^\Q.1.3.6.1.4.1.9.1.\E\d+$/;
return 'cisco' if $id =~ /^\Q.1.3.6.1.4.1.9.9.368.4.\E\d+/;
return 'cisco' if $id =~ /^\Q.1.3.6.1.4.1.9.1.\E\d+$/;
return 'cisco' if $id =~ /^\Q.1.3.6.1.4.1.9.9.368.4.\E\d+/;
return 'cisco' if ( $descr =~ /(cisco|\bios\b)/i );
return 'foundry' if ( $descr =~ /foundry/i );
return 'brocade' if ( $descr =~ /foundry/i );
return 'unknown';
@@ -414,6 +416,8 @@ after determining a more specific class using the method above.
=item SNMP::Info::IPv6
=item SNMP::Info::LLDP
=back
=head2 Required MIBs
@@ -442,6 +446,8 @@ See L<SNMP::Info::PowerEthernet/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::IPv6/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::LLDP/"Required MIBs"> for its MIB requirements.
=head1 GLOBALS
These are methods that return scalar value from SNMP
@@ -515,6 +521,18 @@ See L<SNMP::Info::EtherLike/"GLOBALS"> for details.
See L<SNMP::Info::Entity/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info:PowerEthernet
See L<SNMP::Info::PowerEthernet/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::IPv6
See L<SNMP::Info::IPv6/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::LLDP
See L<SNMP::Info::LLDP/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
@@ -531,12 +549,6 @@ name.
Only returns those iids that have a description listed in $l3->i_description()
=item $l3->i_ignore()
Returns reference to hash. Creates a key for each IID that should be ignored.
Currently looks for tunnel,loopback,lo,null from $l3->interfaces()
=item $l3->i_name()
Returns reference to hash of iid to human set name.
@@ -790,4 +802,8 @@ See L<SNMP::Info::PowerEthernet/"TABLE METHODS"> for details.
See L<SNMP::Info::IPv6/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=cut

View File

@@ -41,7 +41,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %MIBS %FUNCS %GLOBALS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,

View File

@@ -34,20 +34,28 @@ use strict;
use Exporter;
use SNMP::Info::Layer3;
use SNMP::Info::MAU;
use SNMP::Info::AMAP;
# Use LLDP
# (or at least try. The versions I've seen have two problems:
# 1. they report ifIndex values as 'local'; we don't support ifIndex
# but *could*
# 2. They report 0.0.0.0 as the management address
# )
use SNMP::Info::LLDP;
@SNMP::Info::Layer3::AlcatelLucent::ISA = qw/SNMP::Info::LLDP SNMP::Info::MAU
SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::AlcatelLucent::ISA = qw/SNMP::Info::AMAP SNMP::Info::LLDP
SNMP::Info::MAU SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::AlcatelLucent::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::MAU::MIBS,
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::AMAP::MIBS,
'ALCATEL-IND1-DEVICES' => 'familyOmniSwitch7000',
'ALCATEL-IND1-CHASSIS-MIB' => 'chasEntPhysOperStatus',
'ALU-POWER-ETHERNET-MIB' => 'pethPsePortDetectionStatus',
@@ -64,17 +72,17 @@ delete $MIBS{'POWER-ETHERNET-MIB'};
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS, %SNMP::Info::MAU::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
%SNMP::Info::LLDP::GLOBALS, %SNMP::Info::AMAP::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS, %SNMP::Info::MAU::FUNCS,
%SNMP::Info::LLDP::FUNCS,
%SNMP::Info::LLDP::FUNCS, %SNMP::Info::AMAP::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE, %SNMP::Info::MAU::MUNGE,
%SNMP::Info::LLDP::MUNGE,
%SNMP::Info::LLDP::MUNGE, %SNMP::Info::AMAP::MUNGE,
);
# use MAU-MIB for admin. duplex and admin. speed
@@ -190,21 +198,6 @@ sub interfaces {
return $alu->orig_i_name($partial);
}
# Use Q-BRIDGE-MIB
sub fw_mac {
my $alu = shift;
my $partial = shift;
return $alu->qb_fw_mac($partial);
}
sub fw_port {
my $alu = shift;
my $partial = shift;
return $alu->qb_fw_port($partial);
}
# Work around buggy bp_index in 6.3.1.871.R01 and 6.3.1.975.R01
sub bp_index {
my $alu = shift;
@@ -285,53 +278,6 @@ sub bp_index {
# return $i_vlan;
#}
# Use LLDP
# (or at least try. The versions I've seen have two problems:
# 1. they report ifIndex values as 'local'; we don't support ifIndex
# but *could*
# 2. They report 0.0.0.0 as the management address
# )
sub hasCDP {
my $alu = shift;
return $alu->hasLLDP();
}
sub c_ip {
my $alu = shift;
my $partial = shift;
return $alu->lldp_ip($partial);
}
sub c_if {
my $alu = shift;
my $partial = shift;
return $alu->lldp_if($partial);
}
sub c_port {
my $alu = shift;
my $partial = shift;
return $alu->lldp_port($partial);
}
sub c_id {
my $alu = shift;
my $partial = shift;
return $alu->lldp_id($partial);
}
sub c_platform {
my $alu = shift;
my $partial = shift;
return $alu->lldp_rem_sysdesc($partial);
}
# Power-Ethernet ifIndex mapping. I've only seen this from a
# fixed-config single-module system, so this is only a plausible
# guess as to the mapping on a stack or modular system.
@@ -428,10 +374,6 @@ These are methods that return scalar value from SNMP
Returns 'alcatel-lucent'
=item $alu->hasCDP()
Returns whether LLDP is enabled.
=item $alu->model()
Tries to reference $alu->id() to one of the product MIBs listed above
@@ -488,40 +430,12 @@ to a hash.
Returns interface name from C<ifName>, since the default return value
of C<ifDescr> includes the OS version.
=item $alu->fw_mac()
Use the F<Q-BRIDGE-MIB> instead of F<BRIDGE-MIB>
=item $alu->fw_port()
Use the F<Q-BRIDGE-MIB> instead of F<BRIDGE-MIB>
=item $alu->bp_index()
Work around various bugs in the F<BRIDGE-MIB> and
F<Q-BRIDGE-MIB> implementations, by returning both
C<ifIndex> and C<dot1dBasePort> mappings to C<ifIndex> values.
=item $alu->c_id()
Returns LLDP information.
=item $alu->c_if()
Returns LLDP information.
=item $alu->c_ip()
Returns LLDP information.
=item $alu->c_platform()
Returns LLDP information.
=item $alu->c_port()
Returns LLDP information.
=item $alu->i_duplex_admin()
Returns info from F<MAU-MIB>

View File

@@ -39,7 +39,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -66,6 +66,10 @@ $VERSION = '2.10';
'new_tftp_result' => 'ALTEON_CHEETAH_SWITCH_MIB__agTftpLastActionStatus',
'old_ip_max' => 'ALTEON_TS_NETWORK_MIB__ipInterfaceTableMax',
'new_ip_max' => 'ALTEON_CHEETAH_NETWORK_MIB__ipInterfaceTableMax',
'fan' => 'ALTEON_CHEETAH_SWITCH_MIB__hwFanStatus',
'old_ps1_stat' => 'ALTEON_TIGON_SWITCH_MIB__hwPowerSupplyStatus',
'old_ps2_stat' => 'ALTEON_TIGON_SWITCH_MIB__hwRedundantPSStatus',
'new_ps_stat' => 'ALTEON_CHEETAH_SWITCH_MIB__hwPowerSupplyStatus',
);
%FUNCS = (
@@ -132,7 +136,7 @@ sub model {
return $id unless defined $model;
$model =~ s/^aceswitch//;
$model =~ s/^(aceswitch|aws|ods)//;
$model =~ s/^acedirector/AD/;
$model =~ s/^(copper|fiber)Module/BladeCenter GbESM/;
@@ -140,7 +144,7 @@ sub model {
}
sub vendor {
return 'nortel';
return 'radware';
}
sub os {
@@ -155,6 +159,36 @@ sub os_ver {
return $version;
}
sub ps1_status {
my $alteon = shift;
my $old_ps = $alteon->old_ps1_stat();
my $new_ps = $alteon->new_ps_stat();
return $old_ps if $old_ps;
if ($new_ps) {
return 'ok' if ($new_ps eq 'singlePowerSupplyOk');
return 'failed' if ($new_ps eq 'firstPowerSupplyFailed');
}
return;
}
sub ps2_status {
my $alteon = shift;
my $old_ps = $alteon->old_ps2_stat();
my $new_ps = $alteon->new_ps_stat();
return $old_ps if $old_ps;
if ($new_ps) {
return 'ok' if ($new_ps eq 'doublePowerSupplyOk');
return 'failed' if ($new_ps eq 'secondPowerSupplyFailed');
}
return;
}
sub interfaces {
my $alteon = shift;
my $interfaces = $alteon->i_index();
@@ -174,6 +208,7 @@ sub interfaces {
# varies by switch model
elsif ( defined $ip_max and $iid > $ip_max ) {
$desc = ( $iid % $ip_max );
$desc = 'mgmt' if $desc == 231;
}
$interfaces{$iid} = $desc;
}
@@ -207,39 +242,48 @@ sub i_duplex {
sub i_duplex_admin {
my $alteon = shift;
my $ag_pref = $alteon->new_ag_p_cfg_pref()
my $ag_pref
= $alteon->new_ag_p_cfg_pref()
|| $alteon->old_ag_p_cfg_pref()
|| {};
my $ag_fe_auto = $alteon->new_ag_p_cfg_fe_auto()
my $ag_fe_auto
= $alteon->new_ag_p_cfg_fe_auto()
|| $alteon->old_ag_p_cfg_fe_auto()
|| {};
my $ag_fe_mode = $alteon->new_ag_p_cfg_fe_mode()
my $ag_fe_mode
= $alteon->new_ag_p_cfg_fe_mode()
|| $alteon->old_ag_p_cfg_fe_mode()
|| {};
my $ag_ge_auto = $alteon->new_ag_p_cfg_ge_auto()
my $ag_ge_auto
= $alteon->new_ag_p_cfg_ge_auto()
|| $alteon->old_ag_p_cfg_ge_auto()
|| {};
my $ip_max = $alteon->new_ip_max() || $alteon->old_ip_max();
my $ip_max = $alteon->new_ip_max() || $alteon->old_ip_max();
my $i_speed = $alteon->i_speed() || {};
my %i_duplex_admin;
foreach my $if ( keys %$ag_pref ) {
my $pref = $ag_pref->{$if};
next unless defined $pref;
foreach my $if ( keys %$ag_ge_auto ) {
my $pref = $ag_pref->{$if} || '';
my $speed = $i_speed->{$if} || '';
my $ge_auto = $ag_ge_auto->{$if} || '';
my $fe_auto = $ag_fe_auto->{$if} || '';
my $fe_mode = $ag_fe_mode->{$if} || '';
my $string = 'other';
if ( $pref =~ /gigabit/i ) {
my $ge_auto = $ag_ge_auto->{$if};
$string = 'full' if ( $ge_auto =~ /off/i );
$string = 'auto' if ( $ge_auto =~ /on/i );
# Default to auto
my $string = 'auto';
if ( $ge_auto =~ /off/i
&& ( $pref =~ /gigabit/i || $speed eq '1.0 Gbps' ) )
{
$string = 'full';
}
elsif ( $pref =~ /fast/i ) {
my $fe_auto = $ag_fe_auto->{$if};
my $fe_mode = $ag_fe_mode->{$if};
if ( $fe_auto =~ /off/i
&& ( $pref =~ /fast/i || $speed =~ /100?\sMbps/ ) )
{
$string = 'half'
if ( $fe_mode =~ /half/i and $fe_auto =~ /off/i );
if ( $fe_mode =~ /half/i );
$string = 'full'
if ( $fe_mode =~ /full/i and $fe_auto =~ /off/i );
$string = 'auto' if $fe_auto =~ /on/i;
if ( $fe_mode =~ /full/i );
}
my $idx;
@@ -341,6 +385,20 @@ sub i_vlan_membership {
return $i_vlan_membership;
}
sub i_vlan_membership_untagged {
my $alteon = shift;
my $partial = shift;
my $vlans = $alteon->i_vlan($partial);
my $i_vlan_membership = {};
foreach my $port (keys %$vlans) {
my $vlan = $vlans->{$port};
push( @{ $i_vlan_membership->{$port} }, $vlan );
}
return $i_vlan_membership;
}
# Bridge MIB does not map Bridge Port to ifIndex correctly on some code
# versions
sub bp_index {
@@ -365,7 +423,7 @@ __END__
=head1 NAME
SNMP::Info::Layer3::AlteonAD - SNMP Interface to Nortel Alteon Layer 2-7
SNMP::Info::Layer3::AlteonAD - SNMP Interface to Radware Alteon ADC
Switches.
=head1 AUTHOR
@@ -389,8 +447,8 @@ Eric Miller
=head1 DESCRIPTION
Abstraction subclass for Nortel Alteon Series Layer 2-7 load balancing
switches and Nortel BladeCenter Layer2-3 GbE Switch Modules.
Abstraction subclass for Radware Alteon Series ADC switches and
Nortel BladeCenter Layer2-3 GbE Switch Modules.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
@@ -438,12 +496,12 @@ These are methods that return scalar value from SNMP
=item $alteon->model()
Returns model type. Checks $alteon->id() against the F<ALTEON-ROOT-MIB> and
then parses out C<aceswitch>, replaces C<acedirector> with AD, and replaces
copperModule/fiberModule with BladeCenter GbESM.
then parses out C<aceswitch>, C<aws>, and C<ods> replaces C<acedirector>
with AD, and replaces copperModule/fiberModule with BladeCenter GbESM.
=item $alteon->vendor()
Returns 'nortel'
Returns 'radware'
=item $alteon->os()
@@ -469,6 +527,18 @@ Returns the software version reported by C<agSoftwareVersion>
(C<agTftpLastActionStatus>)
=item $alteon->fan()
(C<hwFanStatus>)
=item $alteon->ps1_status()
Returns status of primary power supply
=item $alteon->ps2_status()
Returns status of redundant power supply
=back
=head2 Globals imported from SNMP::Info::Layer3
@@ -477,8 +547,8 @@ See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
These are methods that return tables of information in the form of a
reference to a hash.
=head2 Overrides
@@ -518,6 +588,12 @@ IDs. These are the VLANs which are members of the egress list for the port.
print "Port: $port VLAN: $vlan\n";
}
=item $alteon->i_vlan_membership_untagged()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
IDs. These are the VLANs which are members of the untagged egress list for
the port.
=item $alteon->v_index()
Returns VLAN IDs

View File

@@ -40,7 +40,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE
$int_include_vpn $fake_idx $type_class/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -152,10 +152,6 @@ sub os {
return 'altiga';
}
sub hasCDP {
return 0;
}
# $altiga->interfaces() - Map the Interfaces to their physical names
# Add interface number to interface name to prevent duplicate ifDescr
# Included statically configured VPN tunnels if ($int_include_vpn)
@@ -350,10 +346,6 @@ Tries to determine OS version from the C<sysDescr.0> field. Returns version or C
Combines results from C<fan1_alarm>, C<fan2_alarm>, and C<fam3_alarm> methods.
=item $altiga->hasCDP()
No.
=item $altiga->ps1_status()
Combines C<ps1_3v_alarm> and C<ps1_5v_alarm> methods.

View File

@@ -36,19 +36,25 @@ use Exporter;
use SNMP::Info::Layer3;
use SNMP::Info::MAU;
use SNMP::Info::LLDP;
use SNMP::Info::Aggregate;
@SNMP::Info::Layer3::Arista::ISA = qw/SNMP::Info::LLDP SNMP::Info::MAU
SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::Arista::ISA = qw/
SNMP::Info::Aggregate
SNMP::Info::LLDP
SNMP::Info::MAU
SNMP::Info::Layer3 Exporter
/;
@SNMP::Info::Layer3::Arista::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::MAU::MIBS,
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::Aggregate::MIBS,
'ARISTA-PRODUCTS-MIB' => 'aristaProducts',
);
@@ -104,64 +110,28 @@ sub model {
return $model;
}
# Use Q-BRIDGE-MIB
sub fw_mac {
# The LLDP MIB leaves it up in the air what the index means.
# On EOS, it's a dot1d port.
sub lldp_if {
my $arista = shift;
my $partial = shift;
return $arista->qb_fw_mac($partial);
# We pick a column that someone else is likely to want,
# so that the cache means that hopefully this doesn't
# cause any more SNMP transactions in total.
my $desc = $arista->lldp_rem_desc($partial) || {};
my $bp_index = $arista->bp_index() || {};
my $lldp_if = {};
foreach my $key ( keys %$desc ) {
my @aOID = split( '\.', $key );
my $port = $aOID[1];
$lldp_if->{$key} = $bp_index->{$port};
}
return $lldp_if;
}
sub fw_port {
my $arista = shift;
my $partial = shift;
return $arista->qb_fw_port($partial);
}
# Use LLDP
sub hasCDP {
my $arista = shift;
return $arista->hasLLDP();
}
sub c_ip {
my $arista = shift;
my $partial = shift;
return $arista->lldp_ip($partial);
}
sub c_if {
my $arista = shift;
my $partial = shift;
return $arista->lldp_if($partial);
}
sub c_port {
my $arista = shift;
my $partial = shift;
return $arista->lldp_port($partial);
}
sub c_id {
my $arista = shift;
my $partial = shift;
return $arista->lldp_id($partial);
}
sub c_platform {
my $arista = shift;
my $partial = shift;
return $arista->lldp_rem_sysdesc($partial);
}
sub agg_ports { return agg_ports_ifstack(@_) }
1;
__END__
@@ -198,6 +168,8 @@ Subclass for Arista Networks EOS-based devices
=over
=item SNMP::Info::Aggregate
=item SNMP::Info::Layer3
=item SNMP::Info::MAU
@@ -216,6 +188,8 @@ Subclass for Arista Networks EOS-based devices
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::Aggregate/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::MAU/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::LLDP/"Required MIBs"> for its own MIB requirements.
@@ -232,10 +206,6 @@ These are methods that return scalar values from SNMP
Returns 'Arista Networks, Inc.'
=item $arista->hasCDP()
Returns whether LLDP is enabled.
=item $arista->model()
Tries to reference $arista->id() to one of the product MIBs listed above
@@ -271,34 +241,6 @@ to a hash.
=over
=item $arista->fw_mac()
Use the F<Q-BRIDGE-MIB> instead of F<BRIDGE-MIB>
=item $arista->fw_port()
Use the F<Q-BRIDGE-MIB> instead of F<BRIDGE-MIB>
=item $arista->c_id()
Returns LLDP information.
=item $arista->c_if()
Returns LLDP information.
=item $arista->c_ip()
Returns LLDP information.
=item $arista->c_platform()
Returns LLDP information.
=item $arista->c_port()
Returns LLDP information.
=item $arista->i_duplex_admin()
Returns info from F<MAU-MIB>
@@ -307,6 +249,16 @@ Returns info from F<MAU-MIB>
Returns info from F<MAU-MIB>
=item $arista->lldp_if()
Returns the mapping to the SNMP Interface Table.
=item C<agg_ports>
Returns a HASH reference mapping from slave to master port for each member of
a port bundle on the device. Keys are ifIndex of the slave ports, Values are
ifIndex of the corresponding master ports.
=back
=head2 Table Methods imported from SNMP::Info::Layer3

File diff suppressed because it is too large Load Diff

View File

@@ -43,7 +43,7 @@ use SNMP::Info::Bridge;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE %MODEL_MAP
%MODID_MAP %PROCID_MAP/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::MIBS,
@@ -545,7 +545,7 @@ sub model {
}
sub vendor {
return 'nortel';
return 'avaya';
}
sub os {
@@ -732,6 +732,8 @@ sub i_vlan {
return \%i_vlan;
}
sub i_pvid { goto &i_vlan }
sub root_ip {
my $bayrs = shift;
@@ -1191,7 +1193,7 @@ sub e_vendor {
my %wf_e_vendor;
foreach my $iid ( keys %$wf_e_idx ) {
$wf_e_vendor{$iid} = 'nortel';
$wf_e_vendor{$iid} = 'avaya';
}
return \%wf_e_vendor;
}
@@ -1378,7 +1380,8 @@ __END__
=head1 NAME
SNMP::Info::Layer3::BayRS - SNMP Interface to Nortel routers running BayRS.
SNMP::Info::Layer3::BayRS - SNMP Interface to Avaya/Nortel routers running
BayRS.
=head1 AUTHOR
@@ -1401,7 +1404,7 @@ Eric Miller
=head1 DESCRIPTION
Abstraction subclass for routers running Nortel BayRS.
Abstraction subclass for routers running Avaya/Nortel BayRS.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
@@ -1474,7 +1477,7 @@ and the common model with this map :
=item $bayrs->vendor()
Returns 'nortel'
Returns 'avaya'
=item $bayrs->os()
@@ -1548,6 +1551,10 @@ interfaces.
Returns reference to hash. Maps port VLAN ID to IIDs.
=item $bayrs->i_pvid()
Returns reference to hash. Maps port VLAN ID to IIDs.
=back
=head2 Pseudo F<ENTITY-MIB> information
@@ -1583,7 +1590,7 @@ Returns reference to hash. Key: IID, Value: Hardware version.
=item $bayrs->e_vendor()
Returns reference to hash. Key: IID, Value: nortel.
Returns reference to hash. Key: IID, Value: avaya.
=item $bayrs->e_serial()
@@ -1634,11 +1641,11 @@ See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=over
=item $extreme->munge_hw_rev()
=item $bayrs->munge_hw_rev()
Converts octets to a decimal major.minor string.
=item $extreme->munge_wf_serial()
=item $bayrs->munge_wf_serial()
Coverts octets to a decimal string.

View File

@@ -36,7 +36,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer2::MIBS, %SNMP::Info::Layer3::MIBS,
@@ -113,7 +113,7 @@ Subclass for Blue Coat SG Series proxy devices
=head2 Required MIBs
BLUECOAT-SG-PROXY-MIB
BLUECOAT-SG-PROXY-MIB
=over
@@ -141,7 +141,7 @@ Returns C<'sgos'>
=item $router->os_ver()
Tries to resolve version string from "sgProxyVersion"
Tries to resolve version string from C<"sgProxyVersion">.
=back

View File

@@ -32,39 +32,22 @@
package SNMP::Info::Layer3::C3550;
use strict;
use warnings;
use Exporter;
use SNMP::Info::CiscoVTP;
use SNMP::Info::CiscoStack;
use SNMP::Info::LLDP;
use SNMP::Info::CDP;
use SNMP::Info::CiscoConfig;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoImage;
use SNMP::Info::CiscoPortSecurity;
use SNMP::Info::CiscoPower;
use SNMP::Info::Layer3;
use SNMP::Info::CiscoStpExtensions;
use SNMP::Info::Layer3::CiscoSwitch;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
# NOTE : Top-most items gets precedence for @ISA
@SNMP::Info::Layer3::C3550::ISA = qw/
SNMP::Info::CiscoVTP
SNMP::Info::CiscoStpExtensions
SNMP::Info::CiscoStack
SNMP::Info::LLDP
SNMP::Info::CDP
SNMP::Info::CiscoStats
SNMP::Info::CiscoImage
SNMP::Info::CiscoPortSecurity
SNMP::Info::CiscoConfig
SNMP::Info::CiscoPower
SNMP::Info::Layer3
SNMP::Info::Layer3::CiscoSwitch
Exporter/;
@SNMP::Info::Layer3::C3550::EXPORT_OK = qw//;
$VERSION = '2.10';
$VERSION = '3.28';
# NOTE: Order creates precedence
# Example: v_name exists in Bridge.pm and CiscoVTP.pm
@@ -72,46 +55,23 @@ $VERSION = '2.10';
# So we want CiscoVTP to come last to get the right one.
# The @ISA order should match these orders.
%MIBS = (
%SNMP::Info::Layer3::MIBS, %SNMP::Info::CiscoPower::MIBS,
%SNMP::Info::CiscoConfig::MIBS, %SNMP::Info::CiscoPortSecurity::MIBS,
%SNMP::Info::CiscoImage::MIBS, %SNMP::Info::CiscoStats::MIBS,
%SNMP::Info::LLDP::MIBS, %SNMP::Info::CDP::MIBS,
%SNMP::Info::CiscoStack::MIBS, %SNMP::Info::CiscoStpExtensions::MIBS,
%SNMP::Info::CiscoVTP::MIBS,
);
%MIBS
= ( %SNMP::Info::Layer3::CiscoSwitch::MIBS, %SNMP::Info::CiscoStack::MIBS,
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::CiscoPower::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoPortSecurity::GLOBALS,
%SNMP::Info::CiscoImage::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
%SNMP::Info::Layer3::CiscoSwitch::GLOBALS,
%SNMP::Info::CiscoStack::GLOBALS,
%SNMP::Info::CiscoStpExtensions::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS, %SNMP::Info::CiscoPower::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS, %SNMP::Info::CiscoPortSecurity::FUNCS,
%SNMP::Info::CiscoImage::FUNCS, %SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::LLDP::FUNCS, %SNMP::Info::CDP::FUNCS,
%SNMP::Info::CiscoStack::FUNCS, %SNMP::Info::CiscoStpExtensions::FUNCS,
%SNMP::Info::CiscoVTP::FUNCS,
%SNMP::Info::Layer3::CiscoSwitch::FUNCS,
%SNMP::Info::CiscoStack::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE, %SNMP::Info::CiscoPower::MUNGE,
%SNMP::Info::CiscoConfig::MUNGE, %SNMP::Info::CiscoPortSecurity::MUNGE,
%SNMP::Info::CiscoImage::MUNGE, %SNMP::Info::CiscoStats::MUNGE,
%SNMP::Info::LLDP::MUNGE, %SNMP::Info::CDP::MUNGE,
%SNMP::Info::CiscoStack::MUNGE, %SNMP::Info::CiscoStpExtensions::MUNGE,
%SNMP::Info::CiscoVTP::MUNGE,
%SNMP::Info::Layer3::CiscoSwitch::MUNGE,
%SNMP::Info::CiscoStack::MUNGE,
);
sub vendor {
@@ -232,145 +192,6 @@ sub set_i_duplex_admin {
}
}
sub cisco_comm_indexing {
return 1;
}
# Use CDP and/or LLDP
sub hasCDP {
my $c3550 = shift;
return $c3550->hasLLDP() || $c3550->SUPER::hasCDP();
}
sub c_ip {
my $c3550 = shift;
my $partial = shift;
my $cdp = $c3550->SUPER::c_ip($partial) || {};
my $lldp = $c3550->lldp_ip($partial) || {};
my %c_ip;
foreach my $iid ( keys %$cdp ) {
my $ip = $cdp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
foreach my $iid ( keys %$lldp ) {
my $ip = $lldp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
return \%c_ip;
}
sub c_if {
my $c3550 = shift;
my $partial = shift;
my $cdp = $c3550->SUPER::c_if($partial) || {};
my %c_if;
foreach my $iid ( keys %$cdp ) {
my $if = $cdp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
# We need to match the lldp key with the ifIndex
# via lldpLocPortId and ifName
my $i_name = $c3550->ifName($partial) || {};
my $i_name_rev = {};
while ( my($key,$val) = each %$i_name ){
$i_name_rev->{$val} = $key;
}
my $loc_port_id = $c3550->lldpLocPortId($partial) || {};
my $lldp = $c3550->lldp_if($partial) || {};
foreach my $iid ( keys %$lldp ) {
my $if = $lldp->{$iid} || next;
my $name = $loc_port_id->{$if} || next;
my $i_index = $i_name_rev->{$name} || next;
$c_if{$iid} = $i_index;
}
return \%c_if;
}
sub c_port {
my $c3550 = shift;
my $partial = shift;
my $lldp = $c3550->lldp_port($partial) || {};
my $cdp = $c3550->SUPER::c_port($partial) || {};
my %c_port;
foreach my $iid ( keys %$cdp ) {
my $port = $cdp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
foreach my $iid ( keys %$lldp ) {
my $port = $lldp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
return \%c_port;
}
sub c_id {
my $c3550 = shift;
my $partial = shift;
my $lldp = $c3550->lldp_id($partial) || {};
my $cdp = $c3550->SUPER::c_id($partial) || {};
my %c_id;
foreach my $iid ( keys %$cdp ) {
my $id = $cdp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
foreach my $iid ( keys %$lldp ) {
my $id = $lldp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
return \%c_id;
}
sub c_platform {
my $c3550 = shift;
my $partial = shift;
my $lldp = $c3550->lldp_rem_sysdesc($partial) || {};
my $cdp = $c3550->SUPER::c_platform($partial) || {};
my %c_platform;
foreach my $iid ( keys %$cdp ) {
my $platform = $cdp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
foreach my $iid ( keys %$lldp ) {
my $platform = $lldp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
return \%c_platform;
}
1;
__END__
@@ -416,25 +237,9 @@ after determining a more specific class using the method above.
=over
=item SNMP::Info::Layer3
=item SNMP::Info::CiscoSTPExtensions
=item SNMP::Info::CiscoPower
=item SNMP::Info::CiscoPortSecurity
=item SNMP::Info::CiscoVTP
=item SNMP::Info::CiscoStack
=item SNMP::Info::CDP
=item SNMP::Info::LLDP
=item SNMP::Info::CiscoStats
=item SNMP::Info::CiscoImage
=item SNMP::Info::Layer3::CiscoSwitch
=back
@@ -444,26 +249,10 @@ after determining a more specific class using the method above.
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStpExtensions/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPower/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPortSecurity/"Required MIBs"> for its own MIB
requirements.
See L<SNMP::Info::CiscoVTP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStack/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoImage/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::LLDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::Layer3::CiscoSwitch/"Required MIBs"> for its own MIB
requirements.
=back
@@ -488,108 +277,21 @@ Will take the translated model number and try to format it better.
Tries to cull the number of ports from the model number.
=item $c3550->cisco_comm_indexing()
Returns 1. Use vlan indexing.
=back
=head2 Topology information
Based upon the firmware version Cisco devices may support Link Layer Discovery
Protocol (LLDP) in addition to Cisco Discovery Protocol (CDP). These methods
will query both and return the combination of all information. As a result,
there may be identical topology information returned from the two protocols
causing duplicate entries. It is the calling program's responsibility to
identify any duplicate entries and remove duplicates if necessary.
=over
=item $c3550->hasCDP()
Returns true if the device is running either CDP or LLDP.
=back
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPower
See documentation in L<SNMP::Info::CiscoPower/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::CiscoStack
=head2 Globals imported from SNMP::Info::CiscoStack
See documentation in L<SNMP::Info::CiscoStack/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CDP
=head2 Globals imported from SNMP::Info::Layer3::CiscoSwitch
See documentation in L<SNMP::Info::CDP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"GLOBALS"> for details.
See documentation in L<SNMP::Info::Layer3::CiscoSwitch/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=over
=item $c3550->c_if()
Returns reference to hash. Key: iid Value: local device port (interfaces)
=item $c3550->c_ip()
Returns reference to hash. Key: iid Value: remote IPv4 address
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-CDP/LLDP device in between two
or more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $c3550->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $c3550->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $c3550->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
=back
=head2 Overrides
=over
@@ -630,45 +332,13 @@ Crosses $c3550->p_port() with $c3550->p_duplex() to utilize port C<ifIndex>.
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPower
See documentation in L<SNMP::Info::CiscoPower/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"TABLE METHODS"> for
details.
=head2 Table Methods imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStack
See documentation in L<SNMP::Info::CiscoStack/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CDP
=head2 Table Methods imported from SNMP::Info::Layer3::CiscoSwitch
See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::Layer3::CiscoSwitch/"TABLE METHODS"> for
details.
=cut

View File

@@ -31,48 +31,30 @@
package SNMP::Info::Layer3::C4000;
use strict;
use warnings;
use Exporter;
use SNMP::Info::CiscoVTP;
use SNMP::Info::CDP;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoImage;
use SNMP::Info::CiscoPortSecurity;
use SNMP::Info::CiscoConfig;
use SNMP::Info::Layer3::CiscoSwitch;
use SNMP::Info::MAU;
use SNMP::Info::Layer3;
@SNMP::Info::Layer3::C4000::ISA = qw/SNMP::Info::CiscoVTP SNMP::Info::CDP
SNMP::Info::CiscoStats SNMP::Info::CiscoImage
SNMP::Info::CiscoPortSecurity
SNMP::Info::CiscoConfig SNMP::Info::MAU
SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::C4000::ISA = qw/
SNMP::Info::Layer3::CiscoSwitch
SNMP::Info::MAU
Exporter/;
@SNMP::Info::Layer3::C4000::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::MAU::MIBS,
%SNMP::Info::CiscoConfig::MIBS,
%SNMP::Info::CiscoPortSecurity::MIBS,
%SNMP::Info::CiscoImage::MIBS,
%SNMP::Info::CiscoStats::MIBS,
%SNMP::Info::CDP::MIBS,
%SNMP::Info::CiscoVTP::MIBS,
%SNMP::Info::Layer3::CiscoSwitch::MIBS,
'CISCO-ENVMON-MIB' => 'ciscoEnvMonMIB',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::MAU::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoPortSecurity::GLOBALS,
%SNMP::Info::CiscoImage::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS,
%SNMP::Info::Layer3::CiscoSwitch::GLOBALS,
'ps1_type' => 'ciscoEnvMonSupplyStatusDescr.1',
'ps1_status' => 'ciscoEnvMonSupplyState.1',
'ps2_type' => 'ciscoEnvMonSupplyStatusDescr.2',
@@ -80,24 +62,14 @@ $VERSION = '2.10';
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::MAU::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS,
%SNMP::Info::CiscoPortSecurity::FUNCS,
%SNMP::Info::CiscoImage::FUNCS,
%SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::CDP::FUNCS,
%SNMP::Info::CiscoVTP::FUNCS,
%SNMP::Info::Layer3::CiscoSwitch::FUNCS,
'fan_state' => 'ciscoEnvMonFanState',
'fan_descr' => 'ciscoEnvMonFanStatusDescr',
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE, %SNMP::Info::MAU::MUNGE,
%SNMP::Info::CiscoConfig::MUNGE, %SNMP::Info::CiscoPortSecurity::MUNGE,
%SNMP::Info::CiscoImage::MUNGE, %SNMP::Info::CiscoStats::MUNGE,
%SNMP::Info::CDP::MUNGE, %SNMP::Info::CiscoVTP::MUNGE,
);
%MUNGE
= ( %SNMP::Info::MAU::MUNGE, %SNMP::Info::Layer3::CiscoSwitch::MUNGE, );
# Override Inheritance for these specific methods
# use MAU-MIB for admin. duplex and admin. speed
@@ -106,6 +78,11 @@ $VERSION = '2.10';
*SNMP::Info::Layer3::C4000::i_speed_admin
= \&SNMP::Info::MAU::mau_i_speed_admin;
*SNMP::Info::Layer3::C4000::set_i_duplex_admin
= \&SNMP::Info::MAU::mau_set_i_duplex_admin;
*SNMP::Info::Layer3::C4000::set_i_speed_admin
= \&SNMP::Info::MAU::mau_set_i_speed_admin;
sub fan {
my $c4000 = shift;
my $fan_state = $c4000->fan_state();
@@ -120,8 +97,6 @@ sub fan {
return $ret;
}
sub cisco_comm_indexing { return 1; }
1;
__END__
@@ -163,22 +138,10 @@ after determining a more specific class using the method above.
=over
=item SNMP::Info::CiscoVTP
=item SNMP::Info::CDP
=item SNMP::Info::CiscoStats
=item SNMP::Info::CiscoImage
=item SNMP::Info::CiscoPortSecurity
=item SNMP::Info::CiscoConfig
=item SNMP::Info::Layer3::CiscoSwitch
=item SNMP::Info::MAU
=item SNMP::Info::Layer3
=back
=head2 Required MIBs
@@ -187,23 +150,11 @@ after determining a more specific class using the method above.
=item Inherited Classes' MIBs
See L<SNMP::Info::CiscoVTP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoImage/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPortSecurity/"Required MIBs"> for its own MIB
See L<SNMP::Info::Layer3::CiscoSwitch/"Required MIBs"> for its own MIB
requirements.
See L<SNMP::Info::CiscoConfig/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::MAU/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
@@ -214,48 +165,20 @@ These are methods that return scalar value from SNMP
=over
=item $c4000->cisco_comm_indexing()
Returns 1. Use vlan indexing.
=item $c4000->fan()
Returns fan status
=back
=head2 Global Methods imported from SNMP::Info::CiscoVTP
=head2 Globals imported from SNMP::Info::Layer3::CiscoSwitch
See documentation in L<SNMP::Info::CiscoVTP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoConfig
See documentation in L<SNMP::Info::CiscoConfig/"GLOBALS"> for details.
See documentation in L<SNMP::Info::Layer3::CiscoSwitch/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::MAU
See documentation in L<SNMP::Info::MAU/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
@@ -281,39 +204,27 @@ Returns either (auto,full,half).
Returns administrative speed for interfaces.
=item $c4000->set_i_speed_admin(speed, ifIndex)
Sets port speed, must be supplied with speed and port C<ifIndex>.
Speed choices are '10', '100', '1000', 'auto'.
=item $c4000->set_i_duplex_admin(duplex, ifIndex)
Sets port duplex, must be supplied with duplex and port C<ifIndex>.
Duplex choices are 'auto', 'half', 'full'.
=back
=head2 Table Methods imported from SNMP::Info::CiscoVTP
=head2 Table Methods imported from SNMP::Info::Layer3::CiscoSwitch
See documentation in L<SNMP::Info::CiscoVTP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"TABLE METHODS"> for
See documentation in L<SNMP::Info::Layer3::CiscoSwitch/"TABLE METHODS"> for
details.
=head2 Table Methods imported from SNMP::Info::CiscoConfig
See documentation in L<SNMP::Info::CiscoConfig/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::MAU
See documentation in L<SNMP::Info::MAU/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=cut

View File

@@ -31,34 +31,19 @@
package SNMP::Info::Layer3::C6500;
use strict;
use warnings;
use Exporter;
use SNMP::Info::CiscoStack;
use SNMP::Info::LLDP;
use SNMP::Info::CDP;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoImage;
use SNMP::Info::CiscoPortSecurity;
use SNMP::Info::CiscoConfig;
use SNMP::Info::CiscoPower;
use SNMP::Info::Layer3;
use SNMP::Info::CiscoStpExtensions;
use SNMP::Info::CiscoVTP;
use SNMP::Info::Layer3::CiscoSwitch;
use SNMP::Info::MAU;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
# NOTE : Top-most items gets precedence for @ISA
@SNMP::Info::Layer3::C6500::ISA = qw/
SNMP::Info::CiscoVTP
SNMP::Info::CiscoStpExtensions
SNMP::Info::CiscoStack
SNMP::Info::LLDP
SNMP::Info::CDP
SNMP::Info::CiscoImage
SNMP::Info::CiscoStats
SNMP::Info::CiscoPortSecurity
SNMP::Info::CiscoConfig
SNMP::Info::CiscoPower
SNMP::Info::Layer3
SNMP::Info::Layer3::CiscoSwitch
SNMP::Info::MAU
Exporter
/;
@@ -66,7 +51,7 @@ use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
# NOTE: Order creates precedence
# Example: v_name exists in Bridge.pm and CiscoVTP.pm
@@ -75,52 +60,50 @@ $VERSION = '2.10';
# The @ISA order should match these orders.
%MIBS = (
%SNMP::Info::Layer3::MIBS, %SNMP::Info::CiscoPower::MIBS,
%SNMP::Info::CiscoConfig::MIBS, %SNMP::Info::CiscoPortSecurity::MIBS,
%SNMP::Info::CiscoImage::MIBS, %SNMP::Info::CiscoStats::MIBS,
%SNMP::Info::CDP::MIBS, %SNMP::Info::LLDP::MIBS,
%SNMP::Info::CiscoStack::MIBS, %SNMP::Info::CiscoStpExtensions::MIBS,
%SNMP::Info::CiscoVTP::MIBS,
%SNMP::Info::MAU::MIBS,
%SNMP::Info::Layer3::CiscoSwitch::MIBS,
%SNMP::Info::CiscoStack::MIBS,
'CISCO-VIRTUAL-SWITCH-MIB' => 'cvsSwitchMode',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::CiscoPower::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoPortSecurity::GLOBALS,
%SNMP::Info::CiscoImage::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
%SNMP::Info::MAU::GLOBALS,
%SNMP::Info::Layer3::CiscoSwitch::GLOBALS,
%SNMP::Info::CiscoStack::GLOBALS,
%SNMP::Info::CiscoStpExtensions::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS, %SNMP::Info::CiscoPower::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS, %SNMP::Info::CiscoPortSecurity::FUNCS,
%SNMP::Info::CiscoImage::FUNCS, %SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::CDP::FUNCS, %SNMP::Info::LLDP::FUNCS,
%SNMP::Info::CiscoStack::FUNCS, %SNMP::Info::CiscoStpExtensions::FUNCS,
%SNMP::Info::CiscoVTP::FUNCS,
%SNMP::Info::MAU::FUNCS,
%SNMP::Info::Layer3::CiscoSwitch::FUNCS,
%SNMP::Info::CiscoStack::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE, %SNMP::Info::CiscoPower::MUNGE,
%SNMP::Info::CiscoConfig::MUNGE, %SNMP::Info::CiscoPortSecurity::MUNGE,
%SNMP::Info::CiscoImage::MUNGE, %SNMP::Info::CiscoStats::MUNGE,
%SNMP::Info::CDP::MUNGE, %SNMP::Info::LLDP::MUNGE,
%SNMP::Info::CiscoStack::MUNGE, %SNMP::Info::CiscoStpExtensions::MUNGE,
%SNMP::Info::CiscoVTP::MUNGE,
%SNMP::Info::MAU::MUNGE,
%SNMP::Info::Layer3::CiscoSwitch::MUNGE,
%SNMP::Info::CiscoStack::MUNGE,
);
sub vendor {
return 'cisco';
}
sub cisco_comm_indexing { return 1; }
sub serial {
my $c6500 = shift;
my $serial = $c6500->SUPER::serial();
return $serial if defined $serial and $serial;
# now grab the table only if SUPER cannot find it
my $e_serial = $c6500->e_serial();
# Find entity table entry for this unit
foreach my $e ( sort keys %$e_serial ) {
if (defined $e_serial->{$e} and $e_serial->{$e} !~ /^\s*$/) {
return $e_serial->{$e};
}
}
}
# Newer versions use the ETHERLIKE-MIB to report operational duplex.
@@ -179,6 +162,16 @@ sub i_duplex_admin {
}
}
sub is_virtual_switch {
my $cvs = shift;
my $cvsSwM = $cvs->cvsSwitchMode() || '';
if ( $cvsSwM eq 'multiNode' ) {
return 1;
}
return 0;
}
sub set_i_duplex_admin {
# map a textual duplex to an integer one the switch understands
@@ -186,6 +179,20 @@ sub set_i_duplex_admin {
my $c6500 = shift;
my ( $duplex, $iid ) = @_;
if ( $c6500->is_virtual_switch() ) {
# VSS -> MAU
# Due to VSS bug
# 1. Set the ifMauDefaultType
# 2. Disable ifMauAutoNegAdminStatus
# If the second set is not done, this is not going to be
# working... Cisco Bug id CSCty97033.
# SXI is not working (up to at least relase SXI9).
# SXJ is working at SXJ3 (not before).
return $c6500->mau_set_i_duplex_admin( $duplex, $iid );
}
my $el_duplex = $c6500->el_duplex($iid);
@@ -203,137 +210,34 @@ sub set_i_duplex_admin {
return $c6500->set_p_duplex( $duplexes{$duplex}, $iid );
}
else {
return $c6500->SUPER::set_i_duplex_admin;
return $c6500->SUPER::set_i_duplex_admin( $duplex, $iid );
}
}
# Use CDP and/or LLDP
sub hasCDP {
my $c6500 = shift;
return $c6500->hasLLDP() || $c6500->SUPER::hasCDP();
}
sub c_ip {
sub set_i_speed_admin {
my $c6500 = shift;
my $partial = shift;
my ( $speed, $iid ) = @_;
my $cdp = $c6500->SUPER::c_ip($partial) || {};
my $lldp = $c6500->lldp_ip($partial) || {};
if ( $c6500->is_virtual_switch() ) {
my %c_ip;
foreach my $iid ( keys %$cdp ) {
my $ip = $cdp->{$iid};
next unless defined $ip;
# VSS -> MAU
# Due to VSS bug
# 1. Set the ifMauDefaultType
# 2. Disable ifMauAutoNegAdminStatus
# If the second set is not done, this is not going to be working...
# Cisco Bug id CSCty97033.
# SXI is not working (at least up to relase SXI9).
# SXJ is working at SXJ3 (not before).
$c_ip{$iid} = $ip;
return $c6500->mau_set_i_speed_admin( $speed, $iid );
}
else {
foreach my $iid ( keys %$lldp ) {
my $ip = $lldp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
# normal behavior using the CiscoStack method
return $c6500->SUPER::set_i_speed_admin( $speed, $iid );
}
return \%c_ip;
}
sub c_if {
my $c6500 = shift;
my $partial = shift;
my $lldp = $c6500->lldp_if($partial) || {};
my $cdp = $c6500->SUPER::c_if($partial) || {};
my %c_if;
foreach my $iid ( keys %$cdp ) {
my $if = $cdp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
foreach my $iid ( keys %$lldp ) {
my $if = $lldp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
return \%c_if;
}
sub c_port {
my $c6500 = shift;
my $partial = shift;
my $lldp = $c6500->lldp_port($partial) || {};
my $cdp = $c6500->SUPER::c_port($partial) || {};
my %c_port;
foreach my $iid ( keys %$cdp ) {
my $port = $cdp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
foreach my $iid ( keys %$lldp ) {
my $port = $lldp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
return \%c_port;
}
sub c_id {
my $c6500 = shift;
my $partial = shift;
my $lldp = $c6500->lldp_id($partial) || {};
my $cdp = $c6500->SUPER::c_id($partial) || {};
my %c_id;
foreach my $iid ( keys %$cdp ) {
my $id = $cdp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
foreach my $iid ( keys %$lldp ) {
my $id = $lldp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
return \%c_id;
}
sub c_platform {
my $c6500 = shift;
my $partial = shift;
my $lldp = $c6500->lldp_rem_sysdesc($partial) || {};
my $cdp = $c6500->SUPER::c_platform($partial) || {};
my %c_platform;
foreach my $iid ( keys %$cdp ) {
my $platform = $cdp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
foreach my $iid ( keys %$lldp ) {
my $platform = $lldp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
return \%c_platform;
}
1;
__END__
@@ -379,25 +283,11 @@ after determining a more specific class using the method above.
=over
=item SNMP::Info::CiscoVTP
=item SNMP::Info::CiscoStack
=item SNMP::Info::CDP
=item SNMP::Info::Layer3::CiscoSwitch
=item SNMP::Info::CiscoStats
=item SNMP::Info::CiscoImage
=item SNMP::Info::CiscoPortSecurity
=item SNMP::Info::CiscoConfig
=item SNMP::Info::CiscoPower
=item SNMP::Info::Layer3
=item SNMP::Info::CiscoStpExtensions
=item SNMP::Info::MAU
=back
@@ -407,26 +297,12 @@ after determining a more specific class using the method above.
=item Inherited Classes' MIBs
See L<SNMP::Info::CiscoVTP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStack/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoImage/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPortSecurity/"Required MIBs"> for its own MIB
See L<SNMP::Info::Layer3::CiscoSwitch/"Required MIBs"> for its own MIB
requirements.
See L<SNMP::Info::CiscoConfig/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPower/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStpExtensions/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::MAU/"Required MIBs"> for its own MIB requirements.
=back
@@ -440,51 +316,31 @@ These are methods that return scalar value from SNMP
Returns 'cisco'
=item $c6500->cisco_comm_indexing()
=item $c6500->cvsSwitchMode()
Returns 1. Use vlan indexing.
Returns the Switch status: multiNode or standalone.
=item $c6500->is_virtual_switch()
Return 1 if the switch (C<cvsSwitchMode>) is in multimode (VSS).
=item $c6500->serial()
Returns serial number of unit (falls back to C<entPhysicalSerialNum>).
=back
=head2 Global Methods imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::CiscoStack
=head2 Globals imported from SNMP::Info::CiscoStack
See documentation in L<SNMP::Info::CiscoStack/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CDP
=head2 Globals imported from SNMP::Info::Layer3::CiscoSwitch
See documentation in L<SNMP::Info::CDP/"GLOBALS"> for details.
See documentation in L<SNMP::Info::Layer3::CiscoSwitch/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStats
=head2 Globals imported from SNMP::Info::MAU
See documentation in L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoConfig
See documentation in L<SNMP::Info::CiscoConfig/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPower
See documentation in L<SNMP::Info::CiscoPower/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"GLOBALS"> for details.
See documentation in L<SNMP::Info::MAU/"GLOBALS"> for details.
=head1 TABLE METHODS
@@ -529,95 +385,29 @@ Crosses $c6500->p_port() with $c6500->p_duplex() to utilize port C<ifIndex>.
$c6500->set_i_duplex_admin('auto', $if_map{'FastEthernet0/1'})
or die "Couldn't change port duplex. ",$c6500->error(1);
=back
=item $c6500->set_i_speed_admin(speed, ifIndex)
=head2 Topology information
Sets port speed, must be supplied with speed and port C<ifIndex>.
Based upon the firmware version Cisco devices may support Link Layer Discover
Protocol (LLDP) in addition to the Cisco-proprietary CDP. These methods
will query both and return the combination of all information. As a result,
there may be identical topology information returned from the two protocols
causing duplicate entries. It is the calling program's responsibility to
identify any duplicate entries and remove duplicates if necessary.
Speed choices are '10', '100', '1000'.
=over
=item $c6500->hasCDP()
Returns true if the device is running either CDP or LLDP.
=item $c6500->c_if()
Returns reference to hash. Key: iid Value: local device port (interfaces)
=item $c6500->c_ip()
Returns reference to hash. Key: iid Value: remote IPv4 address
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-CDP/LLDP device in between two
or more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $c6500->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $c6500->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $c6500->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
Crosses $c6500->p_port() with $c6500->p_speed() to utilize port C<ifIndex>.
=back
=head2 Table Methods imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStack
See documentation in L<SNMP::Info::CiscoStack/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Layer3::CiscoSwitch
=head2 Table Methods imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"TABLE METHODS"> for
See documentation in L<SNMP::Info::Layer3::CiscoSwitch/"TABLE METHODS"> for
details.
=head2 Table Methods imported from SNMP::Info::CiscoConfig
See documentation in L<SNMP::Info::CiscoConfig/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::MAU
=head2 Table Methods imported from SNMP::Info::CiscoPower
See documentation in L<SNMP::Info::CiscoPower/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStpExtensions
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::CiscoStpExtensions/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::MAU/"TABLE METHODS"> for details.
=cut

View File

@@ -31,59 +31,70 @@
package SNMP::Info::Layer3::Cisco;
use strict;
use warnings;
use Exporter;
use SNMP::Info::CiscoVTP;
use SNMP::Info::LLDP;
use SNMP::Info::CDP;
use SNMP::Info::CiscoStats;
use SNMP::Info::CiscoImage;
use SNMP::Info::CiscoRTT;
use SNMP::Info::CiscoQOS;
use SNMP::Info::CiscoConfig;
use SNMP::Info::CiscoPower;
use SNMP::Info::CiscoStpExtensions;
use SNMP::Info::Layer3;
@SNMP::Info::Layer3::Cisco::ISA = qw/SNMP::Info::CiscoVTP SNMP::Info::CDP
SNMP::Info::CiscoStats SNMP::Info::CiscoImage
SNMP::Info::CiscoRTT SNMP::Info::CiscoQOS
SNMP::Info::CiscoConfig SNMP::Info::CiscoPower
@SNMP::Info::Layer3::Cisco::ISA = qw/SNMP::Info::CiscoVTP
SNMP::Info::LLDP SNMP::Info::CDP
SNMP::Info::CiscoStats SNMP::Info::CiscoRTT
SNMP::Info::CiscoQOS SNMP::Info::CiscoConfig
SNMP::Info::CiscoPower SNMP::Info::CiscoStpExtensions
SNMP::Info::Layer3
Exporter/;
@SNMP::Info::Layer3::Cisco::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::CiscoStpExtensions::MIBS,
%SNMP::Info::CiscoPower::MIBS,
%SNMP::Info::CiscoConfig::MIBS,
%SNMP::Info::CiscoQOS::MIBS,
%SNMP::Info::CiscoRTT::MIBS,
%SNMP::Info::CiscoImage::MIBS,
%SNMP::Info::CiscoStats::MIBS,
%SNMP::Info::CDP::MIBS,
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::CiscoVTP::MIBS,
'CISCO-EIGRP-MIB' => 'cEigrpAsRouterId',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS, %SNMP::Info::CiscoPower::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS, %SNMP::Info::CiscoQOS::GLOBALS,
%SNMP::Info::CiscoRTT::GLOBALS, %SNMP::Info::CiscoImage::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS, %SNMP::Info::CDP::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS, 'eigrp_id' => 'cEigrpAsRouterId',
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::CiscoStpExtensions::GLOBALS,
%SNMP::Info::CiscoPower::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoQOS::GLOBALS,
%SNMP::Info::CiscoRTT::GLOBALS,
%SNMP::Info::CiscoStats::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS,
'eigrp_id' => 'cEigrpAsRouterId',
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::CiscoStpExtensions::FUNCS,
%SNMP::Info::CiscoPower::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS,
%SNMP::Info::CiscoQOS::FUNCS,
%SNMP::Info::CiscoRTT::FUNCS,
%SNMP::Info::CiscoImage::FUNCS,
%SNMP::Info::CiscoStats::FUNCS,
%SNMP::Info::CDP::FUNCS,
%SNMP::Info::LLDP::FUNCS,
%SNMP::Info::CiscoVTP::FUNCS,
# EIGRP
@@ -92,33 +103,44 @@ $VERSION = '2.10';
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
%SNMP::Info::CiscoStpExtensions::MUNGE,
%SNMP::Info::CiscoPower::MUNGE,
%SNMP::Info::CiscoConfig::MUNGE,
%SNMP::Info::CiscoQOS::MUNGE,
%SNMP::Info::CiscoRTT::MUNGE,
%SNMP::Info::CiscoImage::MUNGE,
%SNMP::Info::CiscoStats::MUNGE,
%SNMP::Info::CDP::MUNGE,
%SNMP::Info::LLDP::MUNGE,
%SNMP::Info::CiscoVTP::MUNGE,
'eigrp_peers' => \&SNMP::Info::munge_ip,
);
sub i_vlan {
my ($cisco) = shift;
my ($partial) = shift;
my $cisco = shift;
my $partial = shift;
my ($i_type) = $cisco->i_type($partial);
my ($i_descr) = $cisco->i_description($partial);
my %i_vlan;
my $i_type = $cisco->i_type($partial);
my $i_descr = $cisco->i_description($partial);
my $i_vlan = $cisco->SUPER::i_vlan($partial);
foreach my $idx ( keys %$i_descr ) {
if ( $i_type->{$idx} eq 'l2vlan' || $i_type->{$idx} eq 135 ) {
next unless $i_type->{$idx};
if ( $i_type->{$idx} eq 'l2vlan'
|| $i_type->{$idx} eq '135' && !defined $i_vlan->{$idx} )
{
if ( $i_descr->{$idx} =~ /\.(\d+)$/ ) {
$i_vlan{$idx} = $1;
$i_vlan->{$idx} = $1;
}
}
}
return \%i_vlan;
return $i_vlan;
}
sub cisco_comm_indexing {
my $cisco = shift;
# If we get a VTP version, it's *extremely* likely that the device needs community based indexing
my $vtp = $cisco->vtp_version() || '0';
return ($vtp ne '0');
}
1;
@@ -127,7 +149,9 @@ __END__
=head1 NAME
SNMP::Info::Layer3::Cisco - SNMP Interface to L3 and L2+L3 IOS Cisco Device
that are not covered in other classes.
that are not covered in other classes and the base L3 Cisco class for other
device specific L3 Cisco classes.
=head1 AUTHOR
@@ -151,7 +175,8 @@ Max Baker
=head1 DESCRIPTION
Subclass for Generic Cisco Routers running IOS
Subclass for Generic Cisco Routers running IOS and the base L3 Cisco class
for other device specific L3 Cisco classes.
=head2 Inherited Classes
@@ -159,12 +184,12 @@ Subclass for Generic Cisco Routers running IOS
=item SNMP::Info::CiscoVTP
=item SNMP::Info::LLDP
=item SNMP::Info::CDP
=item SNMP::Info::CiscoStats
=item SNMP::Info::CiscoImage
=item SNMP::Info::CiscoRTT
=item SNMP::Info::CiscoQOS
@@ -173,6 +198,8 @@ Subclass for Generic Cisco Routers running IOS
=item SNMP::Info::Power
=item SNMP::Info::CiscoStpExtensions
=item SNMP::Info::Layer3
=back
@@ -187,12 +214,12 @@ Subclass for Generic Cisco Routers running IOS
See L<SNMP::Info::CiscoVTP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::LLDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoImage/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoRTT/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoQOS/"Required MIBs"> for its own MIB requirements.
@@ -201,6 +228,8 @@ See L<SNMP::Info::CiscoConfig/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPower/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStpExtensions/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
=back
@@ -211,20 +240,25 @@ These are methods that return scalar value from SNMP
=over
=item $cisco->vendor()
Returns 'cisco'
=item $cisco->eigrp_id()
(C<cEigrpAsRouterId>)
=item $switch->cisco_comm_indexing()
Returns 1 when the device is likely to need vlan indexing.
Determined by checking C<vtpVersion>.
=back
=head2 Global Methods imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"GLOBALS"> for details.
@@ -233,10 +267,6 @@ See documentation in L<SNMP::Info::CDP/"GLOBALS"> for details.
See documentation in L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoRTT
See documentation in L<SNMP::Info::CiscoRTT/"GLOBALS"> for details.
@@ -253,6 +283,10 @@ See documentation in L<SNMP::Info::CiscoConfig/"GLOBALS"> for details.
See documentation in L<SNMP::Info::CiscoPower/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
@@ -280,6 +314,10 @@ Returns a mapping between C<ifIndex> and the PVID or default VLAN.
See documentation in L<SNMP::Info::CiscoVTP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
@@ -288,10 +326,6 @@ See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoRTT
See documentation in L<SNMP::Info::CiscoRTT/"TABLE METHODS"> for details.
@@ -308,6 +342,10 @@ See documentation in L<SNMP::Info::CiscoConfig/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::CiscoPower/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.

195
Info/Layer3/CiscoASA.pm Normal file
View File

@@ -0,0 +1,195 @@
# SNMP::Info::Layer3::CiscoASA
# $Id$
#
# Copyright (c) 2013 Moe Kraus
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR
# ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::CiscoASA;
use strict;
use warnings;
use Exporter;
use SNMP::Info::CiscoStats;
use SNMP::Info::Layer3;
@SNMP::Info::Layer3::CiscoASA::ISA = qw/
SNMP::Info::CiscoStats
SNMP::Info::Layer3
Exporter/;
@SNMP::Info::Layer3::CiscoASA::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '3.28';
%MIBS = ( %SNMP::Info::Layer3::MIBS, %SNMP::Info::CiscoStats::MIBS, );
%GLOBALS
= ( %SNMP::Info::Layer3::GLOBALS, %SNMP::Info::CiscoStats::GLOBALS, );
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::CiscoStats::FUNCS,
'mac_table' => 'ifPhysAddress',
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
%SNMP::Info::CiscoStats::MUNGE,
'mac_table' => \&SNMP::Info::munge_mac,
);
sub b_mac {
my ($asa) = shift;
my $macs = $asa->mac_table();
my @macs;
# gather physical addresses
foreach my $i ( keys %$macs ) {
my $mac = $macs->{$i};
# don't catch the bad macs with zeroed OUI
if ( $mac !~ m/(0{1,2}:){3}/ ) {
push( @macs, $mac );
}
@macs = sort(@macs);
}
# return the least mac
return $macs[0];
}
sub i_description {
my $self = shift;
my $partial = shift;
my $i_descr = $self->orig_i_description($partial) || {};
foreach my $ifindex ( keys %$i_descr ) {
$i_descr->{$ifindex} =~ /'(.*)'/;
$i_descr->{$ifindex} = $1
if defined $1;
}
return $i_descr;
}
1;
__END__
=head1 NAME
SNMP::Info::Layer3::CiscoASA - Cisco Adaptive Security Appliance
=head1 AUTHOR
Moe Kraus
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $cisco = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
# These arguments are passed directly to SNMP::Session
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $asa->class();
print "SNMP::Info determined this device to fall under subclass: $class\n";
=head1 DESCRIPTION
Subclass for Cisco ASA Devices
=head2 Inherited Classes
=over
=item SNMP::Info::CiscoStats
=item SNMP::Info::Layer3
=back
=head2 Required MIBs
=over
=item Inherited Classes' MIBs
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $asa->b_mac()
Returns base mac.
Overrides base mac function in L<SNMP::Info::Layer3>.
=item $asa->i_description()
Overrides base interface description function in L<SNMP::Info> to return the
configured interface name instead of "Adaptive Security Appliance
'$configured interface name' interface".
=back
=head2 Globals imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a
reference to a hash.
=head2 Table Methods imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=cut

View File

@@ -31,34 +31,31 @@
package SNMP::Info::Layer3::CiscoFWSM;
use strict;
use warnings;
use Exporter;
use SNMP::Info::Layer3::Cisco;
use SNMP::Info::CiscoStats;
use SNMP::Info::Layer3;
@SNMP::Info::Layer3::CiscoFWSM::ISA = qw/SNMP::Info::Layer3::Cisco
Exporter/;
@SNMP::Info::Layer3::CiscoFWSM::ISA = qw/SNMP::Info::CiscoStats
SNMP::Info::Layer3
Exporter/;
@SNMP::Info::Layer3::CiscoFWSM::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::Cisco::MIBS,
);
%MIBS = ( %SNMP::Info::Layer3::MIBS, %SNMP::Info::CiscoStats::MIBS, );
%GLOBALS = (
%SNMP::Info::Layer3::Cisco::GLOBALS,
);
%GLOBALS
= ( %SNMP::Info::Layer3::GLOBALS, %SNMP::Info::CiscoStats::GLOBALS, );
%FUNCS = (
%SNMP::Info::Layer3::Cisco::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer3::Cisco::MUNGE,
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::CiscoStats::FUNCS,
);
%MUNGE = ( %SNMP::Info::Layer3::MUNGE, %SNMP::Info::CiscoStats::MUNGE, );
# For FWSMs, the ipNetToPhysicalPhysAddress table appears to be of the form:
# $ifindex.$inetaddresstype.$proto.$ip_address -> $mac_address
@@ -69,65 +66,65 @@ $VERSION = '2.10';
# This doesn't really line up to what at_* return, so we munge it
sub at_paddr {
my ($fwsm) = shift;
my ($partial) = shift;
my ($fwsm) = shift;
my ($partial) = shift;
my $paddrs = $fwsm->n2p_paddr($partial);
my $n_paddrs = {};
foreach my $key (keys %$paddrs) {
my $paddr = $paddrs->{$key};
my @parts = split /\./, $key;
my ($ifindex, $addrtype, $proto) = splice @parts, 0, 3;
my $ip = join ".", @parts;
my $paddrs = $fwsm->n2p_paddr($partial);
my $n_paddrs = {};
next if($proto != 4); # at_paddr doesn't support non-IPv4
foreach my $key ( keys %$paddrs ) {
my $paddr = $paddrs->{$key};
my @parts = split /\./, $key;
my ( $ifindex, $addrtype, $proto ) = splice @parts, 0, 3;
my $ip = join ".", @parts;
$n_paddrs->{"$ifindex.$ip"} = $paddr;
}
return $n_paddrs;
next if ( $proto != 4 ); # at_paddr doesn't support non-IPv4
$n_paddrs->{"$ifindex.$ip"} = $paddr;
}
return $n_paddrs;
}
sub at_netaddr {
my ($fwsm) = shift;
my ($partial) = shift;
my ($fwsm) = shift;
my ($partial) = shift;
my $paddrs = $fwsm->n2p_paddr($partial);
my $paddrs = $fwsm->n2p_paddr($partial);
my $netaddrs = {};
foreach my $key (keys %$paddrs) {
my $paddr = $paddrs->{$key};
my @parts = split /\./, $key;
my ($ifindex, $addrtype, $proto) = splice @parts, 0, 3;
my $ip = join ".", @parts;
my $netaddrs = {};
next if($proto != 4); # at_netaddr doesn't support non-IPv4
foreach my $key ( keys %$paddrs ) {
my $paddr = $paddrs->{$key};
my @parts = split /\./, $key;
my ( $ifindex, $addrtype, $proto ) = splice @parts, 0, 3;
my $ip = join ".", @parts;
$netaddrs->{"$ifindex.$ip"} = $ip;
}
return $netaddrs;
next if ( $proto != 4 ); # at_netaddr doesn't support non-IPv4
$netaddrs->{"$ifindex.$ip"} = $ip;
}
return $netaddrs;
}
sub at_ifaddr {
my ($fwsm) = shift;
my ($partial) = shift;
my ($fwsm) = shift;
my ($partial) = shift;
my $paddrs = $fwsm->n2p_paddr($partial);
my $paddrs = $fwsm->n2p_paddr($partial);
my $ifaddrs = {};
foreach my $key (keys %$paddrs) {
my $paddr = $paddrs->{$key};
my @parts = split /\./, $key;
my ($ifindex, $addrtype, $proto) = splice @parts, 0, 3;
my $ip = join ".", @parts;
my $ifaddrs = {};
next if($proto != 4); # at_ifaddr doesn't support non-IPv4
foreach my $key ( keys %$paddrs ) {
my $paddr = $paddrs->{$key};
my @parts = split /\./, $key;
my ( $ifindex, $addrtype, $proto ) = splice @parts, 0, 3;
my $ip = join ".", @parts;
$ifaddrs->{"$ifindex.$ip"} = $ip;
}
return $ifaddrs;
next if ( $proto != 4 ); # at_ifaddr doesn't support non-IPv4
$ifaddrs->{"$ifindex.$ip"} = $ip;
}
return $ifaddrs;
}
1;
@@ -135,8 +132,8 @@ __END__
=head1 NAME
SNMP::Info::Layer3::CiscoFWSM - SNMP Interface to Firewall Services Modules for
features not covered elsewhere.
SNMP::Info::Layer3::CiscoFWSM - SNMP Interface to Firewall Services Modules
for features not covered elsewhere.
=head1 AUTHOR
@@ -146,14 +143,14 @@ Brian De Wolf
# Let SNMP::Info determine the correct subclass for you.
my $fwsm = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
# These arguments are passed directly to SNMP::Session
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
AutoSpecify => 1,
Debug => 1,
# These arguments are passed directly to SNMP::Session
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $fwsm->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
@@ -166,7 +163,9 @@ Subclass for Cisco Firewall Services Modules
=over
=item SNMP::Info::Layer3::Cisco
=item SNMP::Info::CiscoStats
=item SNMP::Info::Layer3
=back
@@ -176,15 +175,21 @@ Subclass for Cisco Firewall Services Modules
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3::Cisco/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStats/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
=head2 Global Methods imported from SNMP::Info::Layer3::Cisco
=head2 Globals imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::Layer3::Cisco/"GLOBALS"> for details.
See documentation in L<SNMP::Info::CiscoStats/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head1 TABLE METHODS
@@ -202,22 +207,26 @@ to a hash.
=item $fwsm->at_paddr()
This function derives the at_paddr information from the n2p_paddr() table as
the MIB to provide that information isn't supported on FWSMs.
the MIB to provide that information isn't supported on FWSM.
=item $fwsm->at_netaddr()
This function derives the at_netaddr information from the n2p_paddr() table as
the MIB to provide that information isn't supported on FWSMs.
the MIB to provide that information isn't supported on FWSM.
=item $fwsm->at_ifaddr()
This function derives the at_ifaddr information from the n2p_paddr() table as
the MIB to provide that information isn't supported on FWSMs.
the MIB to provide that information isn't supported on FWSM.
=back
=head2 Table Methods imported from SNMP::Info::Layer3::Cisco
=head2 Table Methods imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::Layer3::Cisco/"TABLE METHODS"> for details.
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=cut

190
Info/Layer3/CiscoSwitch.pm Normal file
View File

@@ -0,0 +1,190 @@
# SNMP::Info::Layer3::CiscoSwitch
# $Id$
#
# Copyright (c) 2014 Eric Miller
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::CiscoSwitch;
use strict;
use warnings;
use Exporter;
use SNMP::Info::CiscoAgg;
use SNMP::Info::CiscoPortSecurity;
use SNMP::Info::Layer3::Cisco;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
@SNMP::Info::Layer3::CiscoSwitch::ISA = qw/
SNMP::Info::CiscoAgg
SNMP::Info::CiscoPortSecurity
SNMP::Info::Layer3::Cisco
Exporter
/;
@SNMP::Info::Layer3::CiscoSwitch::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::Cisco::MIBS,
%SNMP::Info::CiscoPortSecurity::MIBS,
%SNMP::Info::CiscoAgg::MIBS,
);
%GLOBALS = (
%SNMP::Info::Layer3::Cisco::GLOBALS,
%SNMP::Info::CiscoPortSecurity::GLOBALS,
%SNMP::Info::CiscoAgg::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer3::Cisco::FUNCS,
%SNMP::Info::CiscoPortSecurity::FUNCS,
%SNMP::Info::CiscoAgg::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer3::Cisco::MUNGE,
%SNMP::Info::CiscoPortSecurity::MUNGE,
%SNMP::Info::CiscoAgg::MUNGE,
);
sub cisco_comm_indexing { return 1; }
1;
__END__
=head1 NAME
SNMP::Info::Layer3::CiscoSwitch - Base class for L3 Cisco switches
=head1 AUTHOR
Eric Miller
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $switch = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
# These arguments are passed directly to SNMP::Session
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $switch->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Base subclass for Cisco Layer 2/3 Switches.
These devices have switch specific characteristics beyond those in
traditional routers covered by L<SNMP::Info::Layer3::Cisco>. For example,
port security interface information from L<SNMP::Info::CiscoPortSecurity>.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
my $swich = new SNMP::Info::Layer3::CiscoSwitch(...);
=head2 Inherited Classes
=over
=item SNMP::Info::CiscoAgg
=item SNMP::Info::CiscoPortSecurity
=item SNMP::Info::Layer3::Cisco
=back
=head2 Required MIBs
=over
=item Inherited Classes' MIBs
See L<SNMP::Info::CiscoAgg/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPortSecurity/"Required MIBs"> for its own MIB
requirements.
See L<SNMP::Info::Layer3::Cisco/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $switch->cisco_comm_indexing()
Returns 1. Use vlan indexing.
=back
=head2 Global Methods imported from SNMP::Info::CiscoAgg
See documentation in L<SNMP::Info::CiscoAgg/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::Layer3::Cisco
See documentation in L<SNMP::Info::Layer3::Cisco/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Table Methods imported from SNMP::Info::CiscoAgg
See documentation in L<SNMP::Info::CiscoAgg/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"TABLE METHODS"> for
details.
=head2 Table Methods imported from SNMP::Info::Layer3::Cisco
See documentation in L<SNMP::Info::Layer3::Cisco/"TABLE METHODS"> for details.
=cut

View File

@@ -42,7 +42,7 @@ use SNMP::Info::Entity;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::MIBS, %SNMP::Info::Layer3::MIBS, %SNMP::Info::Entity::MIBS,
@@ -68,7 +68,7 @@ sub layers {
}
sub vendor {
return 'nortel';
return 'avaya';
}
sub model {
@@ -162,8 +162,8 @@ __END__
=head1 NAME
SNMP::Info::Layer3::Contivity - SNMP Interface to Nortel VPN Routers
(Contivity Extranet Switches).
SNMP::Info::Layer3::Contivity - SNMP Interface to Avaya/Nortel VPN Routers
(formerly Contivity Extranet Switches).
=head1 AUTHOR
@@ -186,7 +186,8 @@ Eric Miller
=head1 DESCRIPTION
Abstraction subclass for Nortel VPN Routers (Contivity Extranet Switch).
Abstraction subclass for Avaya/Nortel VPN Routers (formerly Contivity
Extranet Switch).
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
@@ -227,7 +228,7 @@ These are methods that return scalar value from SNMP
=item $contivity->vendor()
Returns 'Nortel'
Returns 'avaya'
=item $contivity->model()

View File

@@ -40,7 +40,7 @@ use SNMP::Info::LLDP;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -153,6 +153,48 @@ sub serial {
return $dell->SUPER::serial();
}
# check all fans, and report overall status
sub fan {
my $dell = shift;
my $fan = $dell->dell_fan_desc() || {};
my $state = $dell->dell_fan_state() || {};
my @messages = ();
foreach my $k (keys %$fan) {
next if $state->{$k} and $state->{$k} eq 'normal';
push @messages, "$fan->{$k}: $state->{$k}";
}
push @messages, ((scalar keys %$fan). " fans OK")
if scalar @messages == 0;
return (join ", ", @messages);
}
sub _ps_status {
my ($dell, $unit) = @_;
my $status = 'unknown';
return $status if !defined $unit;
my $desc = $dell->dell_pwr_desc() || {};
my $state = $dell->dell_pwr_state() || {};
foreach my $k (keys %$desc) {
next unless $desc->{$k} and $desc->{$k} eq "ps1_unit$unit";
return ($state->{$k} || $status);
}
return $status;
}
sub ps1_type { return 'internalRedundant' }
sub ps2_type { return 'internalRedundant' }
sub ps1_status { return (shift)->_ps_status(1) }
sub ps2_status { return (shift)->_ps_status(2) }
sub interfaces {
my $dell = shift;
my $partial = shift;
@@ -193,25 +235,6 @@ sub i_duplex_admin {
return \%i_duplex_admin;
}
# Use same methods as netgear. Some device didn't implement the bridge MIB
# forwarding table and some don't return MACs for VLANs other than default yet
# don't support community indexing, so we use the Q-BRIDGE-MIB forwarding
# table. Fall back to the orig functions if the qb versions don't
# return anything.
sub fw_mac {
my $dell = shift;
my $ret = $dell->qb_fw_mac();
$ret = $dell->orig_fw_mac() if ( !defined($ret) );
return $ret;
}
sub fw_port {
my $dell = shift;
my $ret = $dell->qb_fw_port();
$ret = $dell->orig_fw_port() if ( !defined($ret) );
return $ret;
}
sub _vendor {
my $dell = shift;
@@ -232,46 +255,9 @@ sub _vendor {
}
}
# lldp support
sub hasCDP {
my $dell = shift;
return $dell->hasLLDP();
}
sub c_ip {
my $dell = shift;
my $partial = shift;
return $dell->lldp_ip($partial);
}
sub c_if {
my $dell = shift;
my $partial = shift;
return $dell->lldp_if($partial);
}
sub c_port {
my $dell = shift;
my $partial = shift;
return $dell->lldp_port($partial);
}
sub c_id {
my $dell = shift;
my $partial = shift;
return $dell->lldp_id($partial);
}
sub c_platform {
my $dell = shift;
my $partial = shift;
return $dell->lldp_rem_sysdesc($partial);
}
# dot1qTpFdbTable uses dot1qVlanIndex rather than dot1qFdbId as index,
# so pretend we don't have the mapping
sub qb_fdb_index {return}
1;
__END__
@@ -368,9 +354,25 @@ id(). Defaults to 'dlink'.
Returns 'dell', 'dlink', or 'ibm' based upon the IANA enterprise number in
id(). Defaults to 'dlink'.
=item $dell->hasCDP()
=item $dell->fan()
Returns whether LLDP is enabled.
Return the status of all fans from the F<Dell-Vendor-MIB>
=item $dell->ps1_type()
Return the type of the first power supply from the F<Dell-Vendor-MIB>
=item $dell->ps2_type()
Return the type of the second power supply from the F<Dell-Vendor-MIB>
=item $dell->ps1_status()
Return the status of the first power supply from the F<Dell-Vendor-MIB>
=item $dell->ps2_status()
Return the status of the second power supply from the F<Dell-Vendor-MIB>
=back
@@ -389,6 +391,10 @@ otherwise uses the Layer3 serial method.
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
@@ -447,42 +453,9 @@ sometimes not unique.
Returns reference to hash of iid to current link administrative duplex
setting.
=item $dell->fw_mac()
=item $dell->qb_fdb_index()
Returns reference to hash of forwarding table MAC Addresses.
Some devices don't implement the C<BRIDGE-MIB> forwarding table, so we use
the C<Q-BRIDGE-MIB> forwarding table. Fall back to the C<BRIDGE-MIB> if
C<Q-BRIDGE-MIB> doesn't return anything.
=item $dell->fw_port()
Returns reference to hash of forwarding table entries port interface
identifier (iid)
Some devices don't implement the C<BRIDGE-MIB> forwarding table, so we use
the C<Q-BRIDGE-MIB> forwarding table. Fall back to the C<BRIDGE-MIB> if
C<Q-BRIDGE-MIB> doesn't return anything.
=item $dell->c_id()
Returns LLDP information.
=item $dell->c_if()
Returns LLDP information.
=item $dell->c_ip()
Returns LLDP information.
=item $dell->c_platform()
Returns LLDP information.
=item $dell->c_port()
Returns LLDP information.
Returns nothing to work around incorrect indexing of C<dot1qTpFdbTable>
=back
@@ -490,4 +463,8 @@ Returns LLDP information.
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=cut

View File

@@ -44,7 +44,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION $DEBUG %GLOBALS %FUNCS $INIT %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS, %SNMP::Info::CDP::MIBS,
@@ -149,154 +149,103 @@ sub i_duplex_admin {
return $enterasys->mau_i_duplex_admin($partial);
}
# Normal BRIDGE-MIB has issues on some devices, duplicates and
# non-increasing oids, Use Q-BRIDGE-MIB for macsuck
sub fw_mac {
my $enterasys = shift;
my $partial = shift;
return $enterasys->qb_fw_mac($partial);
}
sub fw_port {
my $enterasys = shift;
my $partial = shift;
return $enterasys->qb_fw_port($partial);
}
# Use CDP and/or LLDP
#
# LLDP table timefilter implementation continuously increments when walked
# TimeFilter implementation continuously increments when walked
# and we may never reach the end of the table. This behavior can be
# modified with the "set snmp timefilter break disable" command,
# unfortunately it is not the default. Query with a partial value of zero
# which means no time filter.
# which means no time filter for tables with and index containing a
# TimeFilter
sub hasCDP {
my $enterasys = shift;
sub qb_fdb_index {
my $bridge = shift;
return $enterasys->hasLLDP() || $enterasys->SUPER::hasCDP();
my $qb_fdb_ids = $bridge->dot1qVlanFdbId(0) || {};
# Strip the TimeFilter
my $vl_fdb_index = {};
for my $fdb_entry (keys(%$qb_fdb_ids)) {
(my $vlan = $fdb_entry) =~ s/^\d+\.//;
$vl_fdb_index->{$qb_fdb_ids->{$fdb_entry}} = $vlan;
}
return $vl_fdb_index;
}
sub c_ip {
my $enterasys = shift;
my $partial = shift;
sub i_vlan_membership {
my $bridge = shift;
my $partial = shift;
my $cdp = $enterasys->SUPER::c_ip($partial) || {};
my $lldp = $enterasys->lldp_ip(0) || {};
# dot1qVlanCurrentTable TimeFilter index
my $v_ports = $bridge->qb_cv_egress(0) || $bridge->qb_v_egress();
my %c_ip;
foreach my $iid ( keys %$cdp ) {
my $ip = $cdp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
foreach my $iid ( keys %$lldp ) {
my $ip = $lldp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
return \%c_ip;
return $bridge->_vlan_hoa($v_ports, $partial);
}
sub c_if {
my $enterasys = shift;
my $partial = shift;
sub i_vlan_membership_untagged {
my $bridge = shift;
my $partial = shift;
my $lldp = $enterasys->lldp_if(0) || {};
my $cdp = $enterasys->SUPER::c_if($partial) || {};
# dot1qVlanCurrentTable TimeFilter index
my $v_ports = $bridge->qb_cv_untagged(0) || $bridge->qb_v_untagged();
my %c_if;
foreach my $iid ( keys %$cdp ) {
my $if = $cdp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
foreach my $iid ( keys %$lldp ) {
my $if = $lldp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
return \%c_if;
return $bridge->_vlan_hoa($v_ports, $partial);
}
sub c_port {
sub lldp_ip {
my $enterasys = shift;
my $partial = shift;
my $partial = shift || 0;
my $lldp = $enterasys->lldp_port(0) || {};
my $cdp = $enterasys->SUPER::c_port($partial) || {};
my %c_port;
foreach my $iid ( keys %$cdp ) {
my $port = $cdp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
foreach my $iid ( keys %$lldp ) {
my $port = $lldp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
return \%c_port;
return $enterasys->SUPER::lldp_ip($partial);
}
sub c_id {
my $enterasys = shift;
my $partial = shift;
# [3564920] LLDP-MIB::lldpLocPortDesc isn't always unique,
# use LLDP-MIB::lldpLocPortId this cross references to ifName
sub lldp_if {
my $lldp = shift;
my $partial = shift || 0;
my $lldp = $enterasys->lldp_id(0) || {};
my $cdp = $enterasys->SUPER::c_id($partial) || {};
my %c_id;
foreach my $iid ( keys %$cdp ) {
my $id = $cdp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
my $addr = $lldp->lldp_rem_pid($partial) || {};
my $i_descr = $lldp->ifName() || {};
my %r_i_descr = reverse %$i_descr;
my %lldp_if;
foreach my $key ( keys %$addr ) {
my @aOID = split( '\.', $key );
my $port = $aOID[1];
next unless $port;
# Local LLDP port may not equate to ifIndex
# Cross reference lldpLocPortId with ifName to get ifIndex
my $lldp_desc = $lldp->lldpLocPortId($port);
my $desc = $lldp_desc->{$port};
# If cross reference is successful use it, otherwise stick with lldpRemLocalPortNum
if ( exists $r_i_descr{$desc} ) {
$port = $r_i_descr{$desc};
}
$lldp_if{$key} = $port;
}
foreach my $iid ( keys %$lldp ) {
my $id = $lldp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
return \%c_id;
return \%lldp_if;
}
sub c_platform {
sub lldp_port {
my $enterasys = shift;
my $partial = shift;
my $partial = shift || 0;
my $lldp = $enterasys->lldp_rem_sysdesc(0) || {};
my $cdp = $enterasys->SUPER::c_platform($partial) || {};
return $enterasys->SUPER::lldp_port($partial);
}
my %c_platform;
foreach my $iid ( keys %$cdp ) {
my $platform = $cdp->{$iid};
next unless defined $platform;
sub lldp_id {
my $enterasys = shift;
my $partial = shift || 0;
$c_platform{$iid} = $platform;
}
return $enterasys->SUPER::lldp_id($partial);
}
foreach my $iid ( keys %$lldp ) {
my $platform = $lldp->{$iid};
next unless defined $platform;
sub lldp_platform {
my $enterasys = shift;
my $partial = shift || 0;
$c_platform{$iid} = $platform;
}
return \%c_platform;
return $enterasys->SUPER::lldp_rem_sysdesc($partial);
}
1;
@@ -399,12 +348,6 @@ Returns base mac
=back
=head2 Overrides
=over
=back
=head2 Globals imported from SNMP::Info::MAU
See documentation in L<SNMP::Info::MAU/"GLOBALS"> for details.
@@ -450,65 +393,33 @@ See documentation for mau_i_duplex() in L<SNMP::Info::MAU/"TABLE METHODS">.
See documentation for mau_i_duplex_admin() in
L<SNMP::Info::MAU/"TABLE METHODS">.
=item $enterasys->fw_mac()
Returns reference to hash of forwarding table MAC Addresses.
=item $enterasys->fw_port()
Returns reference to hash of forwarding table entries port interface
identifier (iid).
(C<dot1qTpFdbPort>)
=back
=head2 Topology information
=head2 Time Filter Table Index Overrides
Based upon the firmware version Enterasys devices may support Cabletron
Discovery Protocol (CTRON CDP), Cisco Discovery Protocol (CDP), Link Layer
Discovery Protocol (LLDP), or all. This module currently supports CDP and
LLDP, but not CTRON CDP. These methods will query both CDP and LLDP and
return the combination of all information. As a result, there may be
identical topology information returned from the two protocols
causing duplicate entries. It is the calling program's responsibility to
identify any duplicate entries and remove duplicates if necessary.
The time filter C<TimeFilter> implementation continuously increments when
walked and we may never reach the end of the table. This behavior can be
modified with the C<"set snmp timefilter break disable"> command,
unfortunately it is not the default. These methods are overridden to
supply a partial value of zero which means no time filter.
=over
=item $enterasys->hasCDP()
=item $enterasys->qb_fdb_index()
Returns true if the device is running either CDP or LLDP.
=item $enterasys->i_vlan_membership()
=item $enterasys->c_if()
=item $enterasys->i_vlan_membership_untagged()
Returns reference to hash. Key: iid Value: local device port (interfaces)
=item $enterasys->lldp_if()
=item $enterasys->c_ip()
=item $enterasys->lldp_ip()
Returns reference to hash. Key: iid Value: remote IPv4 address
=item $enterasys->lldp_port()
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
=item $enterasys->lldp_id()
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-CDP/LLDP device in between two
or more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $enterasys->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $enterasys->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $enterasys->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
=item $enterasys->lldp_platform()
=back

View File

@@ -1,7 +1,7 @@
# SNMP::Info::Layer3::Extreme - SNMP Interface to Extreme devices
# $Id$
#
# Copyright (c) 2008 Eric Miller
# Copyright (c) 2012 Eric Miller
#
# Copyright (c) 2002,2003 Regents of the University of California
# All rights reserved.
@@ -46,18 +46,19 @@ use SNMP::Info::EDP;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::MAU::MIBS,
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::EDP::MIBS,
'EXTREME-BASE-MIB' => 'extremeAgent',
'EXTREME-SYSTEM-MIB' => 'extremeSystem',
'EXTREME-FDB-MIB' => 'extremeSystem',
'EXTREME-VLAN-MIB' => 'extremeVlan',
'EXTREME-POE-MIB' => 'extremePethSystemAdminEnable',
'EXTREME-BASE-MIB' => 'extremeAgent',
'EXTREME-SYSTEM-MIB' => 'extremeSystem',
'EXTREME-FDB-MIB' => 'extremeFdbMacFdbMacAddress',
'EXTREME-VLAN-MIB' => 'extremeVlan',
'EXTREME-POE-MIB' => 'extremePethSystemAdminEnable',
'EXTREME-STP-EXTENSIONS-MIB' => 'extremeStpDomainBridgeId',
);
%GLOBALS = (
@@ -80,20 +81,37 @@ $VERSION = '2.10';
%SNMP::Info::LLDP::FUNCS,
%SNMP::Info::EDP::FUNCS,
'fan_state' => 'extremeFanOperational',
# EXTREME-FDB-MIB:extremeFdbMacFdbTable
'ex_fw_mac' => 'extremeFdbMacFdbMacAddress',
'ex_fw_port' => 'extremeFdbMacFdbPortIfIndex',
'ex_fw_status' => 'extremeFdbMacFdbStatus',
# EXTREME-VLAN-MIB:extremeVlanIfTable
'ex_vlan_descr' => 'extremeVlanIfDescr',
'ex_vlan_global_id' => 'extremeVlanIfGlobalIdentifier',
'ex_vlan_id' => 'extremeVlanIfVlanId',
# EXTREME-VLAN-MIB:extremeVlanEncapsIfTable
'ex_vlan_encap_tag' => 'extremeVlanEncapsIfTag',
# EXTREME-VLAN-MIB:extremeVlanOpaqueTable
'ex_vlan_untagged' => 'extremeVlanOpaqueUntaggedPorts',
'ex_vlan_tagged' => 'extremeVlanOpaqueTaggedPorts',
# EXTREME-POE-MIB::extremePethPseSlotTable
'peth_power_watts' => 'extremePethSlotPowerLimit',
# EXTREME-POE-MIB::extremePethPsePortTable
'peth_port_power' => 'extremePethPortMeasuredPower',
# EXTREME-STP-EXTENSIONS-MIB::extremeStpDomainTable
'stp_i_time' => 'extremeStpDomainTimeSinceTopologyChange',
'stp_i_ntop' => 'extremeStpDomainTopChanges',
'stp_i_root' => 'extremeStpDomainDesignatedRoot',
'stp_i_root_port' => 'extremeStpDomainRootPortIfIndex',
'stp_i_priority' => 'extremeStpDomainBridgePriority',
'ex_stp_i_mac' => 'extremeStpDomainBridgeId',
# EXTREME-STP-EXTENSIONS-MIB::extremeStpPortTable
'stp_p_priority' => 'extremeStpPortPortPriority',
'stp_p_state' => 'extremeStpPortPortState',
'stp_p_cost' => 'extremeStpPortPathCost',
'stp_p_root' => 'extremeStpPortDesignatedRoot',
'stp_p_bridge' => 'extremeStpPortDesignatedBridge',
'stp_p_port' => 'extremeStpPortDesignatedPort',
);
%MUNGE = (
@@ -103,12 +121,19 @@ $VERSION = '2.10';
%SNMP::Info::MAU::MUNGE,
%SNMP::Info::LLDP::MUNGE,
%SNMP::Info::EDP::MUNGE,
'ex_fw_mac' => \&SNMP::Info::munge_mac,
'ps1_status_old' => \&munge_true_ok,
'ps1_status_new' => \&munge_power_stat,
'ps2_status_old' => \&munge_power_stat,
'ps2_status_new' => \&munge_power_stat,
'fan_state' => \&munge_true_ok,
'ex_fw_mac' => \&SNMP::Info::munge_mac,
'ps1_status_old' => \&munge_true_ok,
'ps1_status_new' => \&munge_power_stat,
'ps2_status_old' => \&munge_power_stat,
'ps2_status_new' => \&munge_power_stat,
'fan_state' => \&munge_true_ok,
'ex_vlan_untagged' => \&SNMP::Info::munge_port_list,
'ex_vlan_tagged' => \&SNMP::Info::munge_port_list,
'ex_stp_i_mac' => \&SNMP::Info::munge_prio_mac,
'stp_i_root' => \&SNMP::Info::munge_prio_mac,
'stp_p_root' => \&SNMP::Info::munge_prio_mac,
'stp_p_bridge' => \&SNMP::Info::munge_prio_mac,
'stp_p_port' => \&SNMP::Info::munge_prio_port,
);
# Method OverRides
@@ -144,19 +169,20 @@ sub os {
my $desc = $extreme->description();
if ($desc =~ /xos/i) {
if ( $desc =~ /xos/i ) {
return 'xos';
}
return 'extremeware';
}
sub os_ver {
my $extreme = shift;
my $descr = $extreme->description();
return unless defined $descr;
if ( $descr =~ m/Version\s+([^ ]+)/ ) {
if ( $descr =~ m/Version\s+([^ ]+)/i ) {
return $1;
}
@@ -197,7 +223,7 @@ sub i_ignore {
my %i_ignore;
foreach my $if ( keys %$i_description ) {
if ( $i_description->{$if}
=~ /^(802.1Q Encapsulation Tag \d+|VLAN \d+|lo\d+)/i )
=~ /^(802.1Q Encapsulation Tag \d+|VLAN \d+|lo\d+|VirtualRouter\d+)/i )
{
$i_ignore{$if}++;
}
@@ -210,6 +236,10 @@ sub i_ignore {
# ifIndex.
sub bp_index {
my $extreme = shift;
my $bindex = $extreme->SUPER::bp_index();
return $bindex if (keys %$bindex);
my $if_index = $extreme->i_index();
my %bp_index;
@@ -260,28 +290,45 @@ sub fan {
return $ret;
}
# Newer versions of the Extreme firmware have vendor-specific tables
# for this; those are ex_fw_*(). Older firmware versions don't have
# these tables, so we use the BRIDGE-MIB tables.
# For xos based VLAN functions we need to know how the ports are indexed
# default is slot * 1000, but some older switches start at 1
sub _slot_factor {
my $extreme = shift;
my $index = $extreme->i_index();
return 1 if (exists $index->{1} && $index->{1} == 1);
return 1000;
}
# Some versions of the Extreme firmware have vendor-specific tables
# for this; those are ex_fw_*(). Some don't have these tables,
# we use the BRIDGE-MIB tables if available then the ex_fw_*() methods.
sub fw_mac {
my $extreme = shift;
my $fw_mac = $extreme->ex_fw_mac;
return $fw_mac if defined($fw_mac);
return $extreme->orig_fw_mac();
my $b = $extreme->SUPER::fw_mac();
return $b if (keys %$b);
return $extreme->ex_fw_mac();
}
sub fw_port {
my $extreme = shift;
my $fw_port = $extreme->ex_fw_port;
return $fw_port if defined($fw_port);
return $extreme->orig_fw_port();
my $b = $extreme->SUPER::fw_port();
return $b if (keys %$b);
return $extreme->ex_fw_port();
}
sub fw_status {
my $extreme = shift;
my $fw_status = $extreme->ex_fw_status;
return $fw_status if defined($fw_status);
return $extreme->orig_fw_status();
my $b = $extreme->SUPER::fw_status();
return $b if (keys %$b);
return $extreme->ex_fw_status();
}
# Mapping the virtual VLAN interfaces:
@@ -322,7 +369,7 @@ sub _if2tag {
}
}
if ($missed) {
my $global_id = $extreme->ex_vlan_global_id();
my $global_id = $extreme->ex_vlan_id();
foreach my $if ( keys %if2tag ) {
$if2tag{$if} = -$global_id->{$if}
if ( $if2tag{$if} == -1 && defined( $global_id->{$if} ) );
@@ -331,7 +378,7 @@ sub _if2tag {
return \%if2tag;
}
# No partial support in v_name or v_index, because the obivous partial
# No partial support in v_name or v_index, because the obvious partial
# is the VLAN ID and the index here is the ifIndex of
# the VLAN interface.
sub v_name {
@@ -341,12 +388,66 @@ sub v_name {
sub v_index {
my $extreme = shift;
return $extreme->_if2tag();
return $extreme->ex_vlan_id || $extreme->_if2tag();
}
sub i_vlan {
my $extreme = shift;
my $partial = shift;
# Some devices support Q-Bridge, if so short circuit and return it
my $q_bridge = $extreme->SUPER::i_vlan($partial);
return $q_bridge if (keys %$q_bridge);
# Next we try extremeVlanOpaqueTable
my $xos = $extreme->_xos_i_vlan($partial);
return $xos if (keys %$xos);
# Try older ifStack method
my $extremeware = $extreme->_extremeware_i_vlan($partial);
return $extremeware if (keys %$extremeware);
return;
}
sub _xos_i_vlan {
my $extreme = shift;
my $partial = shift;
my $index = $extreme->i_index();
my $vlans = $extreme->ex_vlan_id() || {};
my $slotx = $extreme->_slot_factor() || 1000;
my $u_ports = $extreme->ex_vlan_untagged() || {};
my $i_vlan = {};
foreach my $idx ( keys %$u_ports ) {
next unless ( defined $u_ports->{$idx} );
my $portlist = $u_ports->{$idx};
my $ret = [];
my ( $vlan_if, $slot ) = $idx =~ /^(\d+)\.(\d+)/;
my $vlan = $vlans->{$vlan_if} || '';
# Convert portlist bit array to bp_index array
for ( my $i = 0; $i <= $#$portlist; $i++ ) {
push( @{$ret}, ( $slotx * $slot + $i + 1 ) )
if ( @$portlist[$i] );
}
#Create HoA ifIndex -> VLAN array
foreach my $port ( @{$ret} ) {
my $ifindex = $index->{$port};
next unless ( defined($ifindex) ); # shouldn't happen
next if ( defined $partial and $ifindex !~ /^$partial$/ );
$i_vlan->{$ifindex} = $vlan;
}
}
return $i_vlan;
}
sub _extremeware_i_vlan {
my $extreme = shift;
my $partial = shift;
my $stack = $extreme->ifStackStatus($partial);
my $encap_tag = $extreme->ex_vlan_encap_tag();
my $vlan_descr = $extreme->ex_vlan_descr();
@@ -370,6 +471,65 @@ sub i_vlan {
}
sub i_vlan_membership {
my $extreme = shift;
my $partial = shift;
# Some devices support Q-Bridge, if so short circuit and return it
my $q_bridge = $extreme->SUPER::i_vlan_membership($partial);
return $q_bridge if (ref {} eq ref $q_bridge and scalar keys %$q_bridge);
# Next we try extremeVlanOpaqueTable
my $xos = $extreme->_xos_i_vlan_membership($partial);
return $xos if (ref {} eq ref $xos and scalar keys %$xos);
# Try older ifStack method
my $extremeware = $extreme->_extremeware_i_vlan_membership($partial);
return $extremeware if (ref {} eq ref $extremeware and scalar keys %$extremeware);
return;
}
sub _xos_i_vlan_membership {
my $extreme = shift;
my $partial = shift;
my $index = $extreme->i_index();
my $vlans = $extreme->ex_vlan_id();
my $slotx = $extreme->_slot_factor() || 1000;
my $u_ports = $extreme->ex_vlan_untagged() || {};
my $t_ports = $extreme->ex_vlan_tagged() || {};
my $i_vlan_membership = {};
foreach my $idx ( keys %$u_ports ) {
next unless ( defined $u_ports->{$idx} );
my $u_portlist = $u_ports->{$idx};
my $t_portlist = $t_ports->{$idx};
my $ret = [];
my ( $vlan_if, $slot ) = $idx =~ /^(\d+)\.(\d+)/;
my $vlan = $vlans->{$vlan_if} || '';
foreach my $portlist ( $u_portlist, $t_portlist ) {
# Convert portlist bit array to bp_index array
for ( my $i = 0; $i <= $#$portlist; $i++ ) {
push( @{$ret}, ( $slotx * $slot + $i + 1 ) )
if ( @$portlist[$i] );
}
}
#Create HoA ifIndex -> VLAN array
foreach my $port ( @{$ret} ) {
my $ifindex = $index->{$port};
next unless ( defined($ifindex) ); # shouldn't happen
next if ( defined $partial and $ifindex !~ /^$partial$/ );
push( @{ $i_vlan_membership->{$ifindex} }, $vlan );
}
}
return $i_vlan_membership;
}
sub _extremeware_i_vlan_membership {
my $extreme = shift;
my $partial = shift;
my $stack = $extreme->ifStackStatus($partial);
@@ -402,6 +562,78 @@ sub i_vlan_membership {
return \%i_vlan_membership;
}
sub i_vlan_membership_untagged {
my $extreme = shift;
my $partial = shift;
# Some devices support Q-Bridge, if so short circuit and return it
my $q_bridge = $extreme->SUPER::i_vlan_membership_untagged($partial);
return $q_bridge if (ref {} eq ref $q_bridge and scalar keys %$q_bridge);
# Next we try extremeVlanOpaqueTable
my $xos = $extreme->_xos_i_vlan_membership_untagged($partial);
return $xos if (ref {} eq ref $xos and scalar keys %$xos);
# Try older ifStack method
my $extremeware = $extreme->_extremeware_i_vlan_membership_untagged($partial);
return $extremeware if (ref {} eq ref $extremeware and scalar keys %$extremeware);
return;
}
sub _xos_i_vlan_membership_untagged {
my $extreme = shift;
my $partial = shift;
my $index = $extreme->i_index();
my $vlans = $extreme->ex_vlan_id();
my $slotx = $extreme->_slot_factor() || 1000;
my $u_ports = $extreme->ex_vlan_untagged() || {};
my $i_vlan_membership = {};
foreach my $idx ( keys %$u_ports ) {
next unless ( defined $u_ports->{$idx} );
my $u_portlist = $u_ports->{$idx};
my $ret = [];
my ( $vlan_if, $slot ) = $idx =~ /^(\d+)\.(\d+)/;
my $vlan = $vlans->{$vlan_if} || '';
foreach my $portlist ( $u_portlist ) {
# Convert portlist bit array to bp_index array
for ( my $i = 0; $i <= $#$portlist; $i++ ) {
push( @{$ret}, ( $slotx * $slot + $i + 1 ) )
if ( @$portlist[$i] );
}
}
#Create HoA ifIndex -> VLAN array
foreach my $port ( @{$ret} ) {
my $ifindex = $index->{$port};
next unless ( defined($ifindex) ); # shouldn't happen
next if ( defined $partial and $ifindex !~ /^$partial$/ );
push( @{ $i_vlan_membership->{$ifindex} }, $vlan );
}
}
return $i_vlan_membership;
}
# Assuming Cisco-like trunk behavior that native VLAN is transmitted untagged
sub _extremeware_i_vlan_membership_untagged {
my $extreme = shift;
my $partial = shift;
my $vlans = $extreme->_extremeware_i_vlan($partial);
my $i_vlan_membership = {};
foreach my $port (keys %$vlans) {
my $vlan = $vlans->{$port};
push( @{ $i_vlan_membership->{$port} }, $vlan );
}
return $i_vlan_membership;
}
# VLAN management.
# See extreme-vlan.mib for a detailed description of
# Extreme's use of ifStackTable and EXTREME-VLAN-MIB.
@@ -549,123 +781,95 @@ sub set_add_i_vlan_tagged {
return $rv;
}
# Use EDP and/or LLDP
sub hasCDP {
my $extreme = shift;
return $extreme->hasLLDP() || $extreme->hasEDP();
}
sub c_ip {
# LLDP uses the bridge index rather than ifIndex
sub lldp_if {
my $extreme = shift;
my $partial = shift;
my $edp = $extreme->edp_ip() || {};
my $lldp = $extreme->lldp_ip($partial) || {};
my %c_ip;
foreach my $iid ( keys %$edp ) {
my $ip = $edp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
foreach my $iid ( keys %$lldp ) {
my $ip = $lldp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
return \%c_ip;
}
sub c_if {
my $extreme = shift;
my $partial = shift;
my $lldp = $extreme->lldp_if($partial) || {};
my $edp = $extreme->edp_if() || {};
my %c_if;
foreach my $iid ( keys %$edp ) {
my $if = $edp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
foreach my $iid ( keys %$lldp ) {
my $if = $lldp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
return \%c_if;
}
sub c_port {
my $extreme = shift;
my $partial = shift;
my $lldp = $extreme->lldp_port($partial) || {};
my $edp = $extreme->edp_port() || {};
my %c_port;
foreach my $iid ( keys %$edp ) {
my $port = $edp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
foreach my $iid ( keys %$lldp ) {
my $port = $lldp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
return \%c_port;
}
sub c_id {
my $extreme = shift;
my $partial = shift;
my $lldp = $extreme->lldp_id($partial) || {};
my $edp = $extreme->edp_id() || {};
my %c_id;
foreach my $iid ( keys %$edp ) {
my $id = $edp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
my $addr = $extreme->lldp_rem_pid($partial) || {};
my $b_index = $extreme->bp_index() || {};
#my %r_i_descr = reverse %$i_descr;
foreach my $iid ( keys %$lldp ) {
my $id = $lldp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
my %lldp_if;
foreach my $key ( keys %$addr ) {
my @aOID = split( '\.', $key );
my $port = $aOID[1];
next unless $port;
my $idx = $b_index->{$port};
$lldp_if{$key} = $idx;
}
return \%c_id;
return \%lldp_if;
}
sub c_platform {
my $extreme = shift;
my $partial = shift;
# extremeStpDomainStpdInstance not accessible, so we need to extract from iid
sub stp_i_id {
my $extreme = shift;
my $partial = shift;
my $lldp = $extreme->lldp_rem_sysdesc($partial) || {};
my $stp_i_roots = $extreme->stp_i_root($partial);
my %c_platform;
foreach my $iid ( keys %$lldp ) {
my $platform = $lldp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
my %stp_i_id;
foreach my $iid ( keys %$stp_i_roots ) {
$stp_i_id{$iid} = $iid;
}
return \%c_platform;
return \%stp_i_id;
}
# extremeStpDomainBridgeId returns priority and mac,
# for cross class compatibility we just need mac
sub stp_i_mac {
my $extreme = shift;
my $partial = shift;
my $stp_i_bids = $extreme->ex_stp_i_mac($partial);
my %stp_i_mac;
foreach my $iid ( keys %$stp_i_bids ) {
my $mac = $stp_i_bids->{$iid};
next unless $mac;
$mac =~ s/^([0-9A-F][0-9A-F]:){2}//;
$stp_i_mac{$iid} = $mac;
}
return \%stp_i_mac;
}
# Break up the extremeStpPortEntry INDEX into Stpd Instance and IfIndex.
sub _ex_stpport_index {
my $idx = shift;
my ( $id, $ifindex ) = split( /\./, $idx);
return ($id, $ifindex);
}
# extremeStpPortPortIfIndex not-accessible, extract from iid
sub stp_p_id {
my $extreme = shift;
my $partial = shift;
my $stp_port = $extreme->stp_p_root($partial);
my $stp_p_id = {};
foreach my $idx ( keys %$stp_port ) {
my ( $id, $ifindex ) = _ex_stpport_index($idx);
$stp_p_id->{$idx} = $ifindex;
}
return $stp_p_id;
}
# extremeStpDomainStpdInstance not-accessible, extract from iid
sub stp_p_stg_id {
my $extreme = shift;
my $partial = shift;
my $stp_port = $extreme->stp_p_root($partial);
my $stp_p_stg_id = {};
foreach my $idx ( keys %$stp_port ) {
my ( $id, $ifindex ) = _ex_stpport_index($idx);
$stp_p_stg_id->{$idx} = $id;
}
return $stp_p_stg_id;
}
1;
@@ -860,6 +1064,11 @@ Ignores VLAN meta interfaces and loopback
(C<extremeFdbMacFdbStatus>)
=item $extreme->lldp_if()
Returns the mapping to the SNMP Interface Table. Extreme LLDP uses the
bridge index rather than ifIndex.
=item $extreme->i_vlan()
Returns a mapping between C<ifIndex> and the VLAN.
@@ -879,6 +1088,12 @@ IDs. These are the VLANs which are members of the egress list for the port.
print "Port: $port VLAN: $vlan\n";
}
=item $extreme->i_vlan_membership_untagged()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
IDs. These are the VLANs which are members of the untagged egress list for
the port.
=item $extreme->v_index()
Returns VLAN IDs
@@ -900,59 +1115,106 @@ F<EXTREME-FDB-MIB> rather than F<BRIDGE-MIB>.
=item $extreme->peth_port_power()
Power supplied by PoE ports, in milliwatts
("extremePethPortMeasuredPower")
(C<extremePethPortMeasuredPower>)
=item $extreme->peth_power_watts()
The configured maximum amount of in-line power available to the slot.
(C<extremePethSlotPowerLimit>)
=back
=head2 Topology information
Based upon the firmware version Extreme devices may support Extreme Discovery
Protocol (EDP), Link Layer Discovery Protocol (LLDP), or both. These methods
will query both and return the combination of all information. As a result,
there may be identical topology information returned from the two protocols
causing duplicate entries. It is the calling program's responsibility to
identify any duplicate entries and remove duplicates if necessary.
=head2 Spanning Tree Instance Globals
=over
=item $extreme->hasCDP()
=item $extreme->stp_i_mac()
Returns true if the device is running either EDP or LLDP.
Returns the MAC extracted from (C<extremeStpDomainBridgeId>).
=item $extreme->c_if()
=item $extreme->stp_i_id()
Returns reference to hash. Key: iid Value: local device port (interfaces)
Returns the unique identifier of the STP domain.
=item $extreme->c_ip()
(C<extremeStpDomainStpdInstance>)
Returns reference to hash. Key: iid Value: remote IPv4 address
=item $extreme->stp_i_time()
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
Returns time since last topology change detected. (100ths/second)
With EDP multiple entries may exist with the same local port, c_if(), and
different IPv4 addresses, c_ip(), as EDP reports addresses for each VLAN
transported across the trunk. In the case of LLDP with multiple addresses
there is either a non-LLDP device in between two or more devices or multiple
devices which are not directly connected.
(C<extremeStpDomainTimeSinceTopologyChange>)
Use the data from the Layer2 Topology Table below to dig deeper.
=item $extreme->stp_i_time()
=item $extreme->c_port()
Returns time since last topology change detected. (100ths/second)
Returns reference to hash. Key: iid Value: remote port (interfaces)
(C<extremeStpDomainTimeSinceTopologyChange>)
=item $extreme->c_id()
=item $extreme->stp_i_time()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
Returns the total number of topology changes detected.
=item $extreme->c_platform()
(C<extremeStpDomainTopChanges>)
Returns reference to hash. Key: iid Value: Remote Device Type
=item $extreme->stp_i_root()
This information is only available from LLDP. EDP does not provide an
equivalent.
Returns root of STP.
(C<extremeStpDomainDesignatedRoot>)
=item $extreme->stp_i_root_port()
Returns the port number of the port that offers the lowest cost path
to the root bridge.
(C<extremeStpDomainRootPortIfIndex>)
=item $extreme->stp_i_priority()
Returns the port number of the port that offers the lowest cost path
to the root bridge.
(C<extremeStpDomainBridgePriority>)
=back
=head2 Spanning Tree Protocol Port Table
=over
=item $extreme->stp_p_id()
(C<extremeStpPortPortIfIndex>)
=item $extreme->stp_p_stg_id()
(C<extremeStpDomainStpdInstance>)
=item $extreme->stp_p_priority()
(C<extremeStpPortPortPriority>)
=item $extreme->stp_p_state()
(C<extremeStpPortPortState>)
=item $extreme->stp_p_cost()
(C<extremeStpPortPathCost>)
=item $extreme->stp_p_root()
(C<extremeStpPortDesignatedRoot>)
=item $extreme->stp_p_bridge()
(C<extremeStpPortDesignatedBridge>)
=item $extreme->stp_p_port()
(C<extremeStpPortDesignatedPort>)
=back

453
Info/Layer3/F5.pm Normal file
View File

@@ -0,0 +1,453 @@
# SNMP::Info::Layer3::F5
#
# Copyright (c) 2012 Eric Miller
# All Rights Reserved
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::F5;
use strict;
use Exporter;
use SNMP::Info::Layer3;
@SNMP::Info::Layer3::F5::ISA = qw/SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::F5::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
'F5-BIGIP-SYSTEM-MIB' => 'sysAttrArpMaxEntries',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
'os_ver' => 'sysProductVersion',
'mkt_name' => 'sysPlatformInfoMarketingName',
'ps1_status' => 'sysChassisPowerSupplyStatus.1',
'ps2_status' => 'sysChassisPowerSupplyStatus.2',
# Named serial1 to override serial1 in L3 serial method
'serial1' => 'sysGeneralChassisSerialNum',
'qb_vlans' => 'sysVlanNumber',
'ports' => 'sysInterfaceNumber',
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
# sysInterfaceTable
'i_index' => 'sysInterfaceName',
'i_description' => 'sysInterfaceName',
'i_mtu' => 'sysInterfaceMtu',
'i_speed' => 'sysInterfaceMediaActiveSpeed',
'i_mac' => 'sysInterfaceMacAddr',
'i_up_admin' => 'sysInterfaceEnabled',
'i_up' => 'sysInterfaceStatus',
# sysIfxStatTable
'i_octet_in' => 'sysIfxStatHcInOctets',
'i_octet_out' => 'sysIfxStatHcOutOctets',
'i_pkts_ucast_in' => 'sysIfxStatHcInUcastPkts',
'i_pkts_ucast_out' => 'sysIfxStatHcOutUcastPkts',
# sysInterfaceStatTable
'i_discards_in' => 'sysInterfaceStatDropsIn',
'i_discards_out' => 'sysInterfaceStatDropsOut',
'i_errors_in' => 'sysInterfaceStatErrorsIn',
'i_errors_out' => 'sysInterfaceStatErrorsOut',
# sysInterfaceTable
'sys_i_duplex' => 'sysInterfaceMediaActiveDuplex',
# sysChassisFanTable
'fan_state' => 'sysChassisFanStatus',
# sysVlanTable
'sys_v_id' => 'sysVlanId',
'v_name' => 'sysVlanVname',
# sysVlanMemberTable
'sys_vm_tagged' => 'sysVlanMemberTagged',
'sys_vm_name' => 'sysVlanMemberVmname',
'sys_vmp_name' => 'sysVlanMemberParentVname',
);
%MUNGE = ( %SNMP::Info::Layer3::MUNGE, );
sub vendor {
return 'f5';
}
sub os {
return 'f5';
}
sub fan {
my $f5 = shift;
my $fan_state = $f5->fan_state();
my $ret = "";
my $s = "";
foreach my $i ( sort { $a <=> $b } keys %$fan_state ) {
$ret .= $s . $i . ": " . $fan_state->{$i};
$s = ", ";
}
return if ( $s eq "" );
return $ret;
}
sub model {
my $f5 = shift;
my $name = $f5->mkt_name();
if ( defined $name ) { return $name; }
my $id = $f5->id();
my $model = &SNMP::translateObj($id);
if ( !defined $model ) { return $id; }
return $model;
}
# Override L3 interfaces
sub interfaces {
my $f5 = shift;
my $partial = shift;
return $f5->i_index($partial);
}
# Override L3 i_name
sub i_name {
my $f5 = shift;
my $partial = shift;
return $f5->i_index($partial);
}
# We don't have this, so fake it
sub i_type {
my $f5 = shift;
my $partial = shift;
my $idx = $f5->i_index($partial);
my %i_type;
foreach my $if ( keys %$idx ) {
$i_type{$if} = 'ethernetCsmacd';
}
return \%i_type;
}
# Override L3 i_duplex
sub i_duplex {
my $f5 = shift;
my $partial = shift;
my $duplexes = $f5->sys_i_duplex() || {};
my %i_duplex;
foreach my $if ( keys %$duplexes ) {
my $duplex = $duplexes->{$if};
next unless defined $duplex;
next if ( $duplex eq 'none' );
$i_duplex{$if} = $duplex;
}
return \%i_duplex;
}
# Override Bridge v_index
sub v_index {
my $f5 = shift;
my $partial = shift;
return $f5->sys_v_id($partial);
}
sub i_vlan {
my $f5 = shift;
my $partial = shift;
my $index = $f5->i_index($partial) || {};
my $tagged = $f5->sys_vm_tagged() || {};
my $vlans = $f5->v_index() || {};
my $i_vlan = {};
foreach my $iid ( keys %$tagged ) {
my $tag = $tagged->{$iid};
next if ( $tag eq 'true' );
# IID is length.vlan name index.length.interface index
# Split out and use as the IID to get the VLAN ID and ifIndex
my @iid_array = split /\./, $iid;
my $len = $iid_array[0];
my $v_idx = join '.', ( splice @iid_array, 0, $len + 1 );
my $idx = join '.', @iid_array;
# Check to make sure we can map to a port
my $p_idx = $index->{$idx};
next unless $p_idx;
my $vlan = $vlans->{$v_idx};
next unless $vlan;
$i_vlan->{$idx} = $vlan;
}
return $i_vlan;
}
sub i_vlan_membership {
my $f5 = shift;
my $partial = shift;
my $index = $f5->i_index($partial) || {};
my $tagged = $f5->sys_vm_tagged() || {};
my $vlans = $f5->v_index() || {};
my $i_vlan_membership = {};
foreach my $iid ( keys %$tagged ) {
# IID is length.vlan name index.length.interface index
# Split out and use as the IID to get the VLAN ID and ifIndex
my @iid_array = split /\./, $iid;
my $len = $iid_array[0];
my $v_idx = join '.', ( splice @iid_array, 0, $len + 1 );
my $idx = join '.', @iid_array;
# Check to make sure we can map to a port
my $p_idx = $index->{$idx};
next unless $p_idx;
my $vlan = $vlans->{$v_idx};
next unless $vlan;
push( @{ $i_vlan_membership->{$idx} }, $vlan );
}
return $i_vlan_membership;
}
sub i_vlan_membership_untagged {
my $f5 = shift;
my $partial = shift;
my $index = $f5->i_index($partial) || {};
my $tagged = $f5->sys_vm_tagged() || {};
my $vlans = $f5->v_index() || {};
my $i_vlan_membership = {};
foreach my $iid ( keys %$tagged ) {
next unless $tagged->{$iid} eq 'false';
# IID is length.vlan name index.length.interface index
# Split out and use as the IID to get the VLAN ID and ifIndex
my @iid_array = split /\./, $iid;
my $len = $iid_array[0];
my $v_idx = join '.', ( splice @iid_array, 0, $len + 1 );
my $idx = join '.', @iid_array;
# Check to make sure we can map to a port
my $p_idx = $index->{$idx};
next unless $p_idx;
my $vlan = $vlans->{$v_idx};
next unless $vlan;
push( @{ $i_vlan_membership->{$idx} }, $vlan );
}
return $i_vlan_membership;
}
1;
__END__
=head1 NAME
SNMP::Info::Layer3::F5 - SNMP Interface to F5 network devices.
=head1 AUTHOR
Eric Miller
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $f5 = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $f5->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Abstraction subclass for F5 network devices.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
my $f5 = new SNMP::Info::Layer3::F5(...);
=head2 Inherited Classes
=over
=item SNMP::Info::Layer3
=back
=head2 Required MIBs
=over
=item F<F5-BIGIP-COMMON-MIB>
=item F<F5-BIGIP-SYSTEM-MIB>
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $f5->model()
Return (C<sysPlatformInfoMarketingName>), otherwise tries to reference
$f5->id() to F<F5-BIGIP-COMMON-MIB>.
=item $f5->vendor()
Returns 'f5'
=item $f5->os()
Returns 'f5'
=item $f5->os_ver()
Returns the software version reported by C<sysProductVersion>
=item $f5->fan()
Combines (C<sysChassisFanStatus>) into a single string.
=item $f5->ps1_status()
Returns status of primary power supply
=item $f5->ps2_status()
Returns status of redundant power supply
=back
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a
reference to a hash.
=head2 Overrides
=over
=item $f5->interfaces()
Returns reference to the map between IID and physical port.
(C<sysInterfaceName>).
=item $f5->i_duplex()
Returns reference to hash. Maps port operational duplexes to IIDs.
=item $f5->i_vlan()
Returns a mapping between C<ifIndex> and the default VLAN.
=item $f5->i_vlan_membership()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
IDs.
Example:
my $interfaces = $f5->interfaces();
my $vlans = $f5->i_vlan_membership();
foreach my $iid (sort keys %$interfaces) {
my $port = $interfaces->{$iid};
my $vlan = join(',', sort(@{$vlans->{$iid}}));
print "Port: $port VLAN: $vlan\n";
}
=item $f5->i_vlan_membership_untagged()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
IDs. These are the VLANs which are members of the untagged egress list for
the port.
=item $f5->v_index()
Returns VLAN IDs
=item $f5->v_name()
Human-entered name for vlans.
=item $f5->i_name()
Returns the human set port name if exists.
=item $f5->i_type()
Returns C<'ethernetCsmacd'> for each C<ifIndex>.
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=cut

View File

@@ -43,7 +43,7 @@ use SNMP::Info::LLDP;
use vars qw/$VERSION $DEBUG %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -104,22 +104,6 @@ sub model {
return $model;
}
# Use Q-BRIDGE-MIB
sub fw_mac {
my $force10 = shift;
my $partial = shift;
return $force10->qb_fw_mac($partial);
}
sub fw_port {
my $force10 = shift;
my $partial = shift;
return $force10->qb_fw_port($partial);
}
sub v_name {
my $force10 = shift;
my $partial = shift;
@@ -137,29 +121,25 @@ sub i_vlan {
return $i_vlan;
}
sub i_vlan_membership {
# Apparently index doesn't use VLAN ID, so override the HOA private
# method here to correct the mapping
sub _vlan_hoa {
my $force10 = shift;
my $partial = shift;
my ( $v_ports, $partial ) = @_;
my $index = $force10->bp_index();
my $index = $force10->bp_index();
my $v_index = $force10->v_index();
my $v_ports = $force10->qb_v_egress();
# If given a partial it will be an ifIndex, we need to use dot1dBasePort
if ($partial) {
my %r_index = reverse %$index;
$partial = $r_index{$partial};
}
my $i_vlan_membership = {};
my $vlan_hoa = {};
foreach my $idx ( sort keys %{$v_ports} ) {
next unless ( defined $v_ports->{$idx} );
my $portlist = $v_ports->{$idx}; # is an array reference
my $ret = [];
my $vlan_ndx = $idx;
# Strip TimeFilter if we're using VlanCurrentTable
( $vlan_ndx = $idx ) =~ s/^\d+\.//;
# Convert portlist bit array to bp_index array
for ( my $i = 0; $i <= $#$portlist; $i++ ) {
push( @{$ret}, $i + 1 ) if ( @$portlist[$i] );
@@ -176,54 +156,10 @@ sub i_vlan_membership {
# the mapping from Q-BRIDGE-MIB::dot1qVlanFdbId
my $mod = $vlan_tag % 4096;
push ( @{ $i_vlan_membership->{$ifindex} }, ($mod) );
push ( @{ $vlan_hoa->{$ifindex} }, ($mod) );
}
}
return $i_vlan_membership;
}
# Use LLDP
sub hasCDP {
my $force10 = shift;
return $force10->hasLLDP();
}
sub c_ip {
my $force10 = shift;
my $partial = shift;
return $force10->lldp_ip($partial);
}
sub c_if {
my $force10 = shift;
my $partial = shift;
return $force10->lldp_if($partial);
}
sub c_port {
my $force10 = shift;
my $partial = shift;
return $force10->lldp_port($partial);
}
sub c_id {
my $force10 = shift;
my $partial = shift;
return $force10->lldp_id($partial);
}
sub c_platform {
my $force10 = shift;
my $partial = shift;
return $force10->lldp_rem_sysdesc($partial);
return $vlan_hoa;
}
1;
@@ -294,11 +230,7 @@ These are methods that return scalar values from SNMP:
=item $force10->vendor()
Returns 'force10'
=item $force10->hasCDP()
Returns whether LLDP is enabled.
Returns C<'force10'>
=item $force10->model()
@@ -306,7 +238,7 @@ Tries to reference $force10->id() to the Force10 product MIB listed above.
=item $force10->os()
Returns 'ftos'
Returns C<'ftos'>.
=item $force10->os_ver()
@@ -341,40 +273,6 @@ Returns the VLAN names.
Currently not implemented.
=item $force10->i_vlan_membership()
Returns reference to hash of arrays:
key = C<ifIndex>, value = array of VLAN IDs.
These are the VLANs which are members of the egress list for the port.
=item $force10->fw_mac()
Use the F<Q-BRIDGE-MIB> instead of F<BRIDGE-MIB>
=item $force10->fw_port()
Use the F<Q-BRIDGE-MIB> instead of F<BRIDGE-MIB>
=item $force10->c_id()
Returns LLDP information.
=item $force10->c_if()
Returns LLDP information.
=item $force10->c_ip()
Returns LLDP information.
=item $force10->c_platform()
Returns LLDP information.
=item $force10->c_port()
Returns LLDP information.
=item $force10->i_duplex_admin()
Returns info from F<MAU-MIB>

200
Info/Layer3/Fortinet.pm Normal file
View File

@@ -0,0 +1,200 @@
# SNMP::Info::Layer3::Fortinet
#
# Copyright (c) 2014 Eric Miller
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::Fortinet;
use strict;
use Exporter;
use SNMP::Info::Layer3;
@SNMP::Info::Layer3::Fortinet::ISA
= qw/SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::Fortinet::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
'FORTINET-CORE-MIB' => 'fnSysSerial',
'FORTINET-FORTIGATE-MIB' => 'fgVdMaxVdoms',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
);
sub vendor {
return 'fortinet';
}
sub model {
my $fortinet = shift;
my $id = $fortinet->id() || '';
my $model = &SNMP::translateObj($id);
return $id unless defined $model;
$model =~ s/^f[grsw][tfw]?//i;
return $model;
}
sub os {
return 'fortios';
}
sub os_ver {
my $fortinet = shift;
my $ver = $fortinet->fgSysVersion() || '';
if ( $ver =~ /(\d+[\.\d]+)/ ) {
return $1;
}
return $ver;
}
sub serial {
my $fortinet = shift;
return $fortinet->fnSysSerial();
}
1;
__END__
=head1 NAME
SNMP::Info::Layer3::Fortinet - SNMP Interface to Fortinet network devices.
=head1 AUTHOR
Eric Miller
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $fortinet = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $fortinet->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Abstraction subclass for Fortinet network devices.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
my $fortinet = new SNMP::Info::Layer3::Fortinet(...);
=head2 Inherited Classes
=over
=item SNMP::Info::Layer3
=back
=head2 Required MIBs
=over
=item F<FORTINET-CORE-MIB>
=item F<FORTINET-FORTIGATE-MIB>
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $fortinet->vendor()
Returns 'fortinet'
=item $fortinet->model()
Returns the chassis model.
=item $fortinet->os()
Returns 'fortios'
=item $fortinet->os_ver()
Returns the software version extracted from (C<systemVersion>).
=item $fortinet->serial()
Returns the chassis serial number.
(C<fnSysSerial>)
=back
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=cut

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250
Info/Layer3/H3C.pm Normal file
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@@ -0,0 +1,250 @@
# SNMP::Info::Layer3::H3C
#
# Copyright (c) 2012 Jeroen van Ingen
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::H3C;
use strict;
use Exporter;
use SNMP::Info::Layer3;
use SNMP::Info::LLDP;
use SNMP::Info::IEEE802dot3ad 'agg_ports_lag';
@SNMP::Info::Layer3::H3C::ISA = qw/
SNMP::Info::IEEE802dot3ad
SNMP::Info::LLDP
SNMP::Info::Layer3
Exporter
/;
@SNMP::Info::Layer3::H3C::EXPORT_OK = qw/
agg_ports
/;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::IEEE802dot3ad::MIBS,
'HH3C-LswDEVM-MIB' => 'hh3cDevMFanStatus',
'HH3C-LswINF-MIB' => 'hh3cSlotPortMax',
'HH3C-LSW-DEV-ADM-MIB' => 'hh3cLswSysVersion',
'HH3C-PRODUCT-ID-MIB' => 'hh3c-s5500-28C-EI',
'HH3C-ENTITY-VENDORTYPE-OID-MIB' => 'hh3cevtOther',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
'fan' => 'hh3cDevMFanStatus.1',
'ps1_status' => 'hh3cDevMPowerStatus.1',
'ps2_status' => 'hh3cDevMPowerStatus.2',
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::LLDP::FUNCS,
i_duplex_admin => 'hh3cifEthernetDuplex',
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
%SNMP::Info::LLDP::MUNGE,
);
sub vendor {
my $h3c = shift;
my $mfg = $h3c->entPhysicalMfgName(1) || {};
return $mfg->{1} || "H3C";
}
sub os {
my $h3c = shift;
my $descr = $h3c->description();
return $1 if ( $descr =~ /(\S+)\s+Platform Software/ );
return "H3C";
}
sub os_ver {
my $h3c = shift;
my $descr = $h3c->description();
# my $version = $h3c->hh3cLswSysVersion(); # Don't use, indicates base version only, no release details
my $ver_release = $h3c->entPhysicalSoftwareRev(2) || {};
my $os_ver = undef;
$os_ver = "$1 $2" if ( $descr =~ /Software Version ([^,]+),.*(Release\s\S+)/i );
$os_ver = "$1" if ( $descr =~ /Product Version ([0-9.]+)/i );
return $ver_release->{2} || $os_ver;
}
sub i_ignore {
my $l3 = shift;
my $partial = shift;
my $interfaces = $l3->interfaces($partial) || {};
my %i_ignore;
foreach my $if ( keys %$interfaces ) {
# lo0 etc
if ( $interfaces->{$if} =~ /\blo\d*\b/i ) {
$i_ignore{$if}++;
}
}
return \%i_ignore;
}
sub agg_ports { return agg_ports_lag(@_) }
1;
__END__
=head1 NAME
SNMP::Info::Layer3::H3C - SNMP Interface to L3 Devices, H3C & HP A-series
=head1 AUTHORS
Jeroen van Ingen
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $h3c = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myrouter',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $h3c->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Subclass for H3C & HP A-series devices
=head2 Inherited Classes
=over
=item SNMP::Info::Layer3
=item SNMP::Info::LLDP
=back
=head2 Required MIBs
=over
=item F<HH3C-LswDEVM-MIB>
=item F<HH3C-LswINF-MIB>
=item F<HH3C-LSW-DEV-ADM-MIB>
=item F<HH3C-PRODUCT-ID-MIB>
=item F<HH3C-ENTITY-VENDORTYPE-OID-MIB>
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3> for its own MIB requirements.
See L<SNMP::Info::LLDP> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $h3c->vendor()
Returns value for C<entPhysicalMfgName.1>.
=item $h3c->os()
Returns the OS extracted from C<sysDescr>.
=item $h3c->os_ver()
Returns the software version. Either C<entPhysicalSoftwareRev.2> or extracted from
C<sysDescr>.
=back
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP> for details.
=head1 TABLE ENTRIES
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Overrides
=over
=item $h3c->i_ignore()
Returns reference to hash. Increments value of IID if port is to be ignored.
Ignores loopback
=item C<agg_ports>
Returns a HASH reference mapping from slave to master port for each member of
a port bundle on the device. Keys are ifIndex of the slave ports, Values are
ifIndex of the corresponding master ports.
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP> for details.
=cut

View File

@@ -42,7 +42,7 @@ use SNMP::Info::LLDP;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -196,134 +196,6 @@ sub interfaces {
return $i_descr;
}
# Use FDP and/or LLDP
sub hasCDP {
my $hp9300 = shift;
return $hp9300->hasLLDP() || $hp9300->SUPER::hasCDP();
}
sub c_ip {
my $hp9300 = shift;
my $partial = shift;
my $cdp = $hp9300->SUPER::c_ip($partial) || {};
my $lldp = $hp9300->lldp_ip($partial) || {};
my %c_ip;
foreach my $iid ( keys %$cdp ) {
my $ip = $cdp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
foreach my $iid ( keys %$lldp ) {
my $ip = $lldp->{$iid};
next unless defined $ip;
$c_ip{$iid} = $ip;
}
return \%c_ip;
}
sub c_if {
my $hp9300 = shift;
my $partial = shift;
my $lldp = $hp9300->lldp_if($partial) || {};
my $cdp = $hp9300->SUPER::c_if($partial) || {};
my %c_if;
foreach my $iid ( keys %$cdp ) {
my $if = $cdp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
foreach my $iid ( keys %$lldp ) {
my $if = $lldp->{$iid};
next unless defined $if;
$c_if{$iid} = $if;
}
return \%c_if;
}
sub c_port {
my $hp9300 = shift;
my $partial = shift;
my $lldp = $hp9300->lldp_port($partial) || {};
my $cdp = $hp9300->SUPER::c_port($partial) || {};
my %c_port;
foreach my $iid ( keys %$cdp ) {
my $port = $cdp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
foreach my $iid ( keys %$lldp ) {
my $port = $lldp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
return \%c_port;
}
sub c_id {
my $hp9300 = shift;
my $partial = shift;
my $lldp = $hp9300->lldp_id($partial) || {};
my $cdp = $hp9300->SUPER::c_id($partial) || {};
my %c_id;
foreach my $iid ( keys %$cdp ) {
my $id = $cdp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
foreach my $iid ( keys %$lldp ) {
my $id = $lldp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
return \%c_id;
}
sub c_platform {
my $hp9300 = shift;
my $partial = shift;
my $lldp = $hp9300->lldp_rem_sysdesc($partial) || {};
my $cdp = $hp9300->SUPER::c_platform($partial) || {};
my %c_platform;
foreach my $iid ( keys %$cdp ) {
my $platform = $cdp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
foreach my $iid ( keys %$lldp ) {
my $platform = $lldp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
return \%c_platform;
}
1;
__END__
@@ -527,54 +399,6 @@ Returns reference to hash. Current Port Speed.
=back
=head2 Topology information
Based upon the software version devices may support Foundry Discovery
Protocol (FDP) and Link Layer Discovery Protocol (LLDP). These
methods will query both and return the combination of all information. As a
result, there may be identical topology information returned from the two
protocols causing duplicate entries. It is the calling program's
responsibility to identify any duplicate entries and remove duplicates
if necessary.
=over
=item $hp9300->hasCDP()
Returns true if the device is running either FDP or LLDP.
=item $hp9300->c_if()
Returns reference to hash. Key: iid Value: local device port (interfaces)
=item $hp9300->c_ip()
Returns reference to hash. Key: iid Value: remote IPv4 address
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-FDP/LLDP device in between two
or more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $hp9300->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $hp9300->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $hp9300->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.

232
Info/Layer3/Huawei.pm Normal file
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@@ -0,0 +1,232 @@
# SNMP::Info::Layer3::Huawei
#
# Copyright (c) 2015 Jeroen van Ingen
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::Huawei;
use strict;
use Exporter;
use SNMP::Info::Layer3;
use SNMP::Info::LLDP;
use SNMP::Info::IEEE802dot3ad 'agg_ports_lag';
@SNMP::Info::Layer3::Huawei::ISA = qw/
SNMP::Info::IEEE802dot3ad
SNMP::Info::LLDP
SNMP::Info::Layer3
Exporter
/;
@SNMP::Info::Layer3::Huawei::EXPORT_OK = qw/
agg_ports
/;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::IEEE802dot3ad::MIBS,
'HUAWEI-MIB' => 'quidway',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::LLDP::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
%SNMP::Info::LLDP::MUNGE,
);
sub vendor {
return "Huawei";
}
sub os {
my $huawei = shift;
my $descr = $huawei->description();
return $1 if ( $descr =~ /\b(VRP)\b/ );
return "huawei";
}
sub os_ver {
my $huawei = shift;
my $descr = $huawei->description();
my $os_ver = undef;
$os_ver = "$1" if ( $descr =~ /\bVersion ([0-9.]+)/i );
return $os_ver;
}
sub i_ignore {
my $l3 = shift;
my $partial = shift;
my $interfaces = $l3->interfaces($partial) || {};
my %i_ignore;
foreach my $if ( keys %$interfaces ) {
# lo0 etc
if ( $interfaces->{$if} =~ /\b(inloopback|console)\d*\b/i ) {
$i_ignore{$if}++;
}
}
return \%i_ignore;
}
sub agg_ports { return agg_ports_lag(@_) }
1;
__END__
=head1 NAME
SNMP::Info::Layer3::Huawei - SNMP Interface to Huawei Layer 3 switches and routers.
=head1 AUTHORS
Jeroen van Ingen
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $huawei = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myrouter',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $huawei->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Subclass for Huawei Quidway switches
=head2 Inherited Classes
=over
=item SNMP::Info::Layer3
=item SNMP::Info::LLDP
=item SNMP::Info::IEEE802dot3ad
=back
=head2 Required MIBs
=over
=item F<HUAWEI-MIB>
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3> for its own MIB requirements.
See L<SNMP::Info::LLDP> for its own MIB requirements.
See L<SNMP::Info::IEEE802dot3ad> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $huawei->vendor()
Returns 'Huawei'.
=item $huawei->os()
Returns 'VRP' if contained in C<sysDescr>, 'huawei' otherwise.
=item $huawei->os_ver()
Returns the software version extracted from C<sysDescr>.
=back
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP> for details.
=head1 TABLE ENTRIES
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Overrides
=over
=item $huawei->i_ignore()
Returns reference to hash. Increments value of IID if port is to be ignored.
Ignores InLoopback and Console interfaces
=item C<agg_ports>
Returns a HASH reference mapping from slave to master port for each member of
a port bundle on the device. Keys are ifIndex of the slave ports, Values are
ifIndex of the corresponding master ports.
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP> for details.
=cut

407
Info/Layer3/IBMGbTor.pm Normal file
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@@ -0,0 +1,407 @@
# SNMP::Info::Layer3::IBMGbTor - SNMP Interface to IBM Rackswitch devices
# $Id$
#
# Copyright (c) 2013 Eric Miller
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::IBMGbTor;
use strict;
use Exporter;
use SNMP::Info::Layer3;
use SNMP::Info::LLDP;
@SNMP::Info::Layer3::IBMGbTor::ISA
= qw/SNMP::Info::LLDP SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::IBMGbTor::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
# LLDP MIBs not loaded to prevent possible unqualified namespace conflict
# with IBM definitions
'IBM-GbTOR-10G-L2L3-MIB' => 'lldpInfoRemoteDevicesLocalPort',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
'temp' => 'hwTempSensors',
'fan' => 'hwFanSpeed',
# Can't find the equivalent in IBM-GbTOR-10G-L2L3-MIB
# use a different strategy for lldp_sys_cap in hasLLDP()
#'lldp_sysname' => 'lldpLocSysName',
#'lldp_sysdesc' => 'lldpLocSysDesc',
#'lldp_sys_cap' => 'lldpLocSysCapEnabled',
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::LLDP::FUNCS,
# IBM-GbTOR-10G-L2L3-MIB::portInfoTable
'sw_duplex' => 'portInfoMode',
# Can't find the equivalent in IBM-GbTOR-10G-L2L3-MIB
# not currently used in LLDP class
#'lldp_lman_addr' => 'lldpLocManAddrIfId',
# IBM-GbTOR-10G-L2L3-MIB::lldpInfoPortTable
'lldp_port_status' => 'lldpInfoPortAdminStatus',
# IBM-GbTOR-10G-L2L3-MIB::lldpInfoRemoteDevicesTable
'lldp_rem_id_type' => 'lldpInfoRemoteDevicesChassisSubtype',
'lldp_rem_id' => 'lldpInfoRemoteDevicesSystemName',
'lldp_rem_pid_type' => 'lldpInfoRemoteDevicesPortSubtype',
'lldp_rem_pid' => 'lldpInfoRemoteDevicesPortId',
'lldp_rem_desc' => 'lldpInfoRemoteDevicesPortDescription',
'lldp_rem_sysname' => 'lldpInfoRemoteDevicesSystemName',
'lldp_rem_sysdesc' => 'lldpInfoRemoteDevicesSystemDescription',
'lldp_rem_sys_cap' => 'lldpInfoRemoteDevicesSystemCapEnabled',
# IBM-GbTOR-10G-L2L3-MIB::lldpInfoRemoteDevicesManAddrTable
'lldp_rman_type' => 'lldpInfoRemoteDevicesManAddrSubtype',
'lldp_rman_addr' => 'lldpInfoRemoteDevicesManAddr',
);
%MUNGE = ( %SNMP::Info::Layer3::MUNGE, %SNMP::Info::LLDP::MUNGE, );
sub hasLLDP {
my $ibm = shift;
# We may be have LLDP, but nothing in lldpRemoteSystemsData Tables
# Look to see if LLDP Rx enabled on any port
my $lldp_cap = $ibm->lldp_port_status();
foreach my $if ( keys %$lldp_cap ) {
if ( $lldp_cap->{$if} =~ /enabledRx/i ) {
return 1;
}
}
return;
}
sub lldp_ip {
my $ibm = shift;
my $partial = shift;
my $rman_type = $ibm->lldp_rman_type($partial) || {};
my $rman_addr = $ibm->lldp_rman_addr($partial) || {};
my %lldp_ip;
foreach my $key ( keys %$rman_addr ) {
my $type = $rman_type->{$key};
next unless defined $type;
next unless $type eq 'ipV4';
if ( $key =~ /^(\d+)\./ ) {
$lldp_ip{$1} = $rman_addr->{$key};
}
}
return \%lldp_ip;
}
sub lldp_if {
my $lldp = shift;
my $partial = shift;
my $lldp_desc = $lldp->lldpInfoRemoteDevicesLocalPort($partial) || {};
my $i_descr = $lldp->i_description() || {};
my $i_alias = $lldp->i_alias() || {};
my %r_i_descr = reverse %$i_descr;
my %r_i_alias = reverse %$i_alias;
my %lldp_if;
foreach my $key ( keys %$lldp_desc ) {
# Cross reference lldpLocPortDesc with ifDescr and ifAlias to get ifIndex,
# prefer ifAlias over ifDescr since MIB says 'alias'.
my $desc = $lldp_desc->{$key};
next unless $desc;
my $port = $desc;
# If cross reference is successful use it, otherwise stick with
# lldpRemLocalPortNum
if ( exists $r_i_alias{$desc} ) {
$port = $r_i_alias{$desc};
}
elsif ( exists $r_i_descr{$desc} ) {
$port = $r_i_descr{$desc};
}
$lldp_if{$key} = $port;
}
return \%lldp_if;
}
sub lldp_platform {
my $ibm = shift;
my $partial = shift;
return $ibm->lldpInfoRemoteDevicesSystemDescription($partial);
}
sub i_ignore {
my $ibm = shift;
my $partial = shift;
my $interfaces = $ibm->interfaces($partial) || {};
my %i_ignore;
foreach my $if ( keys %$interfaces ) {
if ( $interfaces->{$if} =~ /(tunnel|loopback|\blo\b|lb|null)/i ) {
$i_ignore{$if}++;
}
}
return \%i_ignore;
}
sub i_duplex {
my $ibm = shift;
my $partial = shift;
return $ibm->sw_duplex($partial);
}
sub model {
my $ibm = shift;
my $id = $ibm->id();
my $descr = $ibm->description();
my $model = &SNMP::translateObj($id);
if ( $descr =~ /RackSwitch\s(.*)/ ) {
return $1;
}
return $model || $id;
}
sub os {
return 'ibm';
}
sub vendor {
return 'ibm';
}
sub os_ver {
my $ibm = shift;
return $ibm->agSoftwareVersion();
}
sub interfaces {
my $ibm = shift;
my $partial = shift;
my $i_descr = $ibm->i_description($partial) || {};
my $i_name = $ibm->i_name($partial) || {};
foreach my $iid ( keys %$i_name ) {
my $name = $i_name->{$iid};
next unless defined $name;
$i_descr->{$iid} = $name
if $name =~ /^port\d+/i;
}
return $i_descr;
}
1;
__END__
=head1 NAME
SNMP::Info::Layer3::IBMGbTor - SNMP Interface to IBM Rackswitch devices
=head1 AUTHOR
Eric Miller
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $ibm = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myswitch',
Community => 'public',
Version => 1
)
or die "Can't connect to DestHost.\n";
my $class = $ibm->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Abstraction subclass for IBM Rackswitch (formerly Blade Network Technologies)
network devices.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
my $ibm = new SNMP::Info::Layer3::IBMGbTor(...);
=head2 Inherited Classes
=over
=item SNMP::Info::Layer3;
=item SNMP::Info::LLDP;
=back
=head2 Required MIBs
=over
=item F<IBM-GbTOR-10G-L2L3-MIB>
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $ibm->model()
Returns model type. Attempts to pull model from device description.
Otherwise checks $ibm->id() against the F<IBM-GbTOR-10G-L2L3-MIB>.
=item $ibm->vendor()
Returns 'ibm'
=item $ibm->os()
Returns 'ibm'
=item $ibm->os_ver()
Returns the software version
(C<agSoftwareVersion>)
=item $ibm->temp()
(C<hwTempSensors>)
=item $ibm->fan()
(C<hwFanSpeed>)
=back
=head2 Overrides
=over
=item $ibm->hasLLDP()
Is LLDP is active in this device?
Note: LLDP may be active, but nothing in C<lldpRemoteSystemsData> Tables so
the device would not return any useful topology information.
Checks to see if at least one interface is enabled to receive LLDP packets.
=back
=head2 Global Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Overrides
=over
=item $ibm->interfaces()
Returns reference to hash of interface names to iids.
=item $ibm->i_ignore()
Returns reference to hash of interfaces to be ignored.
Ignores interfaces with descriptions of tunnel, loopback, and null.
=item $ibm->i_duplex()
Returns reference to hash of interface link duplex status.
(C<portInfoMode>)
=item $ibm->lldp_if()
Returns the mapping to the SNMP Interface Table. Tries to cross reference
(C<lldpInfoRemoteDevicesLocalPort>) with (C<ifDescr>) and (C<ifAlias>)
to get (C<ifIndex>).
=item $ibm->lldp_ip()
Returns remote IPv4 address. Returns for all other address types, use
lldp_addr if you want any return address type.
=item $ibm->lldp_platform()
Returns remote device system description.
(C<lldpInfoRemoteDevicesSystemDescription>)
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=cut

View File

@@ -40,7 +40,7 @@ use SNMP::Info::LLDP;
use vars qw/$VERSION $DEBUG %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -53,8 +53,9 @@ $VERSION = '2.10';
%GLOBALS = ( %SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
'serial' => 'jnxBoxSerialNo.0',
'mac' => 'dot1dBaseBridgeAddress',
'serial' => 'jnxBoxSerialNo.0',
'mac' => 'dot1dBaseBridgeAddress',
'box_descr' => 'jnxBoxDescr'
);
%FUNCS = ( %SNMP::Info::Layer3::FUNCS,
@@ -88,6 +89,20 @@ sub os {
return 'junos';
}
sub layers {
my $juniper = shift;
my $layers = $juniper->SUPER::layers();
# Some models don't report L2 properly
my $macs = $juniper->fw_mac();
if (keys %$macs) {
my $l = substr $layers, 6, 1, "1";
}
return $layers;
}
sub os_ver {
my $juniper = shift;
@@ -148,6 +163,13 @@ sub i_trunk {
return \%i_trunk;
}
sub qb_fdb_index {
my $juniper = shift;
my $partial = shift;
return $juniper->jnxExVlanTag($partial);
}
# 'v_type' => 'jnxExVlanType',
sub v_type {
my $juniper = shift;
@@ -199,22 +221,24 @@ sub i_vlan {
return $i_vlan;
}
sub i_vlan_membership {
my $juniper = shift;
my $partial = shift;
# Index doesn't use VLAN ID, so override the HOA private method here to
# correct the mapping
sub _vlan_hoa {
my $juniper = shift;
my ( $v_ports, $partial ) = @_;
my $index = $juniper->bp_index();
my ($v_index) = $juniper->jnxExVlanTag($partial);
my $index = $juniper->bp_index();
my $v_index = $juniper->jnxExVlanTag($partial);
my $v_ports = $juniper->qb_v_egress() || {};
my $i_vlan_membership = {};
foreach my $idx ( sort keys %$v_ports ) {
my $vlan_hoa = {};
foreach my $idx ( keys %$v_ports ) {
next unless ( defined $v_ports->{$idx} );
my $portlist = $v_ports->{$idx}; # is an array reference
my $portlist = $v_ports->{$idx};
my $ret = [];
my $vlan_ndx = $idx;
my $vlan_ndx;
# Strip TimeFilter if we're using VlanCurrentTable
( $vlan_ndx = $idx ) =~ s/^\d+\.//;
# Convert portlist bit array to bp_index array
for ( my $i = 0; $i <= $#$portlist; $i++ ) {
@@ -226,69 +250,10 @@ sub i_vlan_membership {
my $ifindex = $index->{$port};
next unless ( defined($ifindex) ); # shouldn't happen
next if ( defined $partial and $ifindex !~ /^$partial$/ );
push ( @{ $i_vlan_membership->{$ifindex} }, $v_index->{$vlan_ndx} );
push( @{ $vlan_hoa->{$ifindex} }, $v_index->{$vlan_ndx} );
}
}
return $i_vlan_membership;
}
# Use Q-BRIDGE-MIB for bridge forwarding tables
sub fw_mac {
my $juniper = shift;
my $partial = shift;
return $juniper->qb_fw_mac($partial);
}
sub fw_port {
my $juniper = shift;
my $partial = shift;
return $juniper->qb_fw_port($partial);
}
# Use LLDP
sub hasCDP {
my $juniper = shift;
return $juniper->hasLLDP();
}
sub c_ip {
my $juniper = shift;
my $partial = shift;
return $juniper->lldp_ip($partial);
}
sub c_if {
my $juniper = shift;
my $partial = shift;
return $juniper->lldp_if($partial);
}
sub c_port {
my $juniper = shift;
my $partial = shift;
return $juniper->lldp_port($partial);
}
sub c_id {
my $juniper = shift;
my $partial = shift;
return $juniper->lldp_id($partial);
}
sub c_platform {
my $juniper = shift;
my $partial = shift;
return $juniper->lldp_rem_sysdesc($partial);
return $vlan_hoa;
}
# Pseudo ENTITY-MIB methods
@@ -406,7 +371,7 @@ sub e_descr {
my $juniper = shift;
my $e_index = $juniper->e_index() || {};
my $box_descr = $juniper->jnxBoxDescr || 0;
my $box_descr = $juniper->box_descr;
my $contents = $juniper->jnxContentsDescr() || {};
my $containers = $juniper->jnxContainersDescr() || {};
@@ -617,7 +582,7 @@ Subclass for Juniper Devices running JUNOS
=over
=item F<JUNIPER-VLAN-MIB> dated "200901090000Z" -- Fri Jan 09 00:00:00 2009 UTC or later.
=item F<JUNIPER-VLAN-MIB> dated "200901090000Z" or later.
=item F<JUNIPER-CHASSIS-DEFINES-MIB>
@@ -647,6 +612,11 @@ Returns 'juniper'
Returns 'junos'
=item $juniper->layers()
Checks forwarding table for Layer 2 support since some routers with switches
do not report layers properly.
=item $juniper->os_ver()
Returns the software version extracted first from C<sysDescr> or
@@ -663,16 +633,18 @@ Returns serial number
(C<jnxBoxSerialNo.0>)
=item $juniper->serial()
=item $juniper->mac()
Returns the MAC address used by this bridge when it must be referred
to in a unique fashion.
(C<dot1dBaseBridgeAddress>)
=item $juniper->hasCDP()
=item $juniper->box_descr()
Returns whether LLDP is enabled.
The name, model, or detailed description of the device.
(C<jnxBoxDescr.0>)
=back
@@ -691,6 +663,10 @@ to a hash.
=over
=item $juniper->qb_fdb_index()
Returns reference to hash: key = VLAN ID, value = FDB ID.
=item $juniper->v_index()
(C<jnxExVlanTag>)
@@ -711,61 +687,8 @@ to a hash.
Returns a mapping between C<ifIndex> and the PVID or default VLAN.
=item $juniper->i_vlan_membership()
Returns reference to hash of arrays: key = C<ifIndex>, value = array of VLAN
IDs. These are the VLANs which are members of the egress list for the port.
=back
=head2 Topology information
These methods return Link Layer Discovery Protocol (LLDP) information. See
documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=over
=item $juniper->c_id()
Returns C<lldp_id>
=item $juniper->c_if()
Returns C<lldp_if>
=item $juniper->c_ip()
Returns C<lldp_ip>
=item $juniper->c_platform()
Returns C<lldp_rem_sysdesc>
=item $juniper->c_port()
Returns C<lldp_port>
=back
=head2 Forwarding Table (C<dot1dTpFdbEntry>)
=over
=item $juniper->fw_mac()
Returns reference to hash of forwarding table MAC Addresses
(C<dot1dTpFdbAddress>)
=item $juniper->fw_port()
Returns reference to hash of forwarding table entries port interface
identifier (iid)
(C<dot1dTpFdbPort>)
=back
=head2 Pseudo F<ENTITY-MIB> information
These methods emulate F<ENTITY-MIB> Physical Table methods using

271
Info/Layer3/Lantronix.pm Normal file
View File

@@ -0,0 +1,271 @@
# SNMP::Info::Layer3::Lantronix
# $Id$
#
# Copyright (c) 2012 J R Binks
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::Lantronix;
use strict;
use Exporter;
use SNMP::Info::Layer3;
@SNMP::Info::Layer3::Lantronix::ISA = qw/
SNMP::Info::Layer3
Exporter
/;
@SNMP::Info::Layer3::Lantronix::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
'LANTRONIX-MIB' => 'products',
'LANTRONIX-SLC-MIB' => 'slcNetwork',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
'slc_os_ver' => 'slcSystemFWRev',
'slc_serial' => 'slcSystemSerialNo',
'slc_model' => 'slcSystemModel',
'slc_psu_a_status' => 'slcDevPowerSupplyA',
'slc_psu_b_status' => 'slcDevPowerSupplyB',
);
%FUNCS = ( %SNMP::Info::Layer3::FUNCS, );
%MUNGE = ( %SNMP::Info::Layer3::MUNGE, );
# General notes:
#
# Products like the EDS have very minimal MIB support for the basics.
# Much information has to be derived from sysDescr string.
#
sub vendor {
return 'lantronix';
}
sub os {
my $device = shift;
my $descr = $device->description() || '';
my $os;
# On EDS, it is called the "Evolution OS"
# Not sure what, if any, name it has a name on other products
$os = 'EvolutionOS' if ( $descr =~ m/Lantronix EDS\w+ V([\d\.R]+)/ );
return 'LantronixOS';
}
sub os_ver {
my $device = shift;
my $descr = $device->description() || '';
my $slc_os_ver = $device->slc_os_ver;
my $os_ver;
return $slc_os_ver if defined $slc_os_ver;
return unless defined $descr;
# EDS: "Lantronix EDS16PR V4.0.0.0R15 (1307.....X)"
$os_ver = $1 if ( $descr =~ m/Lantronix EDS\w+ V([\d\.R]+)/ );
return $os_ver;
}
sub serial {
my $device = shift;
my $descr = $device->description() || '';
my $slc_serial = $device->slc_serial;
my $serial;
return $slc_serial if defined $slc_serial;
return unless defined $descr;
# EDS: "Lantronix EDS16PR V4.0.0.0R15 (1307.....X)"
$serial = $1 if ( $descr =~ m/Lantronix EDS\w+ V[\d\.R]+ \((\w+)\)/ );
return $serial;
}
sub model {
my $device = shift;
my $descr = $device->description() || '';
my $slc_model = $device->slc_model;
my $model;
return $slc_model if defined $slc_model;
return unless defined $descr;
# EDS: "Lantronix EDS16PR V4.0.0.0R15 (1307.....X)"
$model = $1 if ( $descr =~ m/Lantronix (EDS\w+)/ );
return $model;
}
sub ps1_status {
my $device = shift;
my $slc_psu_a_status = $device->slc_psu_a_status;
return $slc_psu_a_status if defined $slc_psu_a_status;
return;
}
sub ps2_status {
my $device = shift;
my $slc_psu_b_status = $device->slc_psu_b_status;
return $slc_psu_b_status if defined $slc_psu_b_status;
return;
}
1;
__END__
=head1 NAME
SNMP::Info::Layer3::Lantronix - SNMP Interface to Lantronix devices such as terminal servers
=head1 AUTHOR
J R Binks
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $device = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'mydevice',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $device->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Subclass for Lantronix devices such as terminal servers.
=head2 Inherited Classes
=over
=item SNMP::Info::Layer3
=back
=head2 Required MIBs
=over
=item F<LANTRONIX-MIB>
=item F<LANTRONIX-SLC-MIB>
=back
=head2 Inherited Classes' MIBs
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
=head1 GLOBALS
These are methods that return scalar value from SNMP.
=over
=item $device->vendor()
Returns 'lantronix'.
=item $device->os()
Returns 'EvolutionOS' for EDS devices.
=item $device->os_ver()
Returns the software version.
=item $device->model()
Returns the model.
=item $device->serial()
Returns the serial number.
=item $device->ps1_status()
Power supply 1 status
=item $device->ps2_status()
Power supply 2 status
=back
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head1 TABLE ENTRIES
These are methods that return tables of information in the form of a reference
to a hash.
=over
=back
=head2 Overrides
=over
=item $device->i_ignore()
Returns reference to hash. Increments value of IID if port is to be ignored.
=back
=head2 Lantronix specific items
None at present.
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=cut

View File

@@ -39,7 +39,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = ( %SNMP::Info::Layer3::MIBS, );

View File

@@ -39,7 +39,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -50,17 +50,30 @@ $VERSION = '2.10';
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
'hrSystemUptime' => 'hrSystemUptime',
'os_level' => 'mtxrLicLevel',
'os_ver' => 'mtxrLicVersion',
'serial1' => 'mtxrSystem.3.0',
'firmware' => 'mtxrSystem.4.0',
'fan_type' => 'mtxrHlActiveFan',
);
%FUNCS = ( %SNMP::Info::Layer3::FUNCS, );
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
);
%MUNGE = ( %SNMP::Info::Layer3::MUNGE, );
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
);
sub vendor {
return 'mikrotik';
}
sub serial {
my $mikrotik = shift;
return $mikrotik->serial1;
}
sub model {
my $mikrotik = shift;
my $descr = $mikrotik->description() || '';
@@ -73,6 +86,18 @@ sub os {
return 'routeros';
}
sub board_temp {
my $mikrotik = shift;
my $temp = $mikrotik->mtxrHlTemperature;
return $temp / 10.0;
}
sub cpu_temp {
my $mikrotik = shift;
my $temp = $mikrotik->mtxrHlProcessorTemperature;
return $temp / 10.0;
}
1;
__END__
@@ -134,11 +159,11 @@ These are methods that return scalar value from SNMP
=item $mikrotik->vendor()
Returns 'mikrotik'.
Returns C<'mikrotik'>.
=item $mikrotik->os()
Returns 'routeros'.
Returns C<'routeros'>.
=item $mikrotik->model()
@@ -148,6 +173,23 @@ Tries to extract the device model from C<sysDescr>.
Returns the value of C<mtxrLicVersion>.
=item $mikrotik->os_level()
Returns the value of RouterOS level C<mtxrLicLevel>
=item $mikrotik->board_temp()
=item $mikrotik->cpu_temp()
Returns the appropriate temperature values
=item $mikrotik->serial()
Returns the device serial.
=item $mikrotik->firmware()
Returns the firmware version of hardware.
=back
=head2 Globals imported from SNMP::Info::Layer3

View File

@@ -41,7 +41,7 @@ use SNMP::Info::SONMP;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -93,7 +93,7 @@ sub model {
}
sub vendor {
return 'nortel';
return 'avaya';
}
sub os {
@@ -174,7 +174,8 @@ __END__
=head1 NAME
SNMP::Info::Layer3::N1600 - SNMP Interface to Nortel 16XX Network Devices
SNMP::Info::Layer3::N1600 - SNMP Interface to Avaya/Nortel 16XX Network
Devices
=head1 AUTHOR
@@ -198,8 +199,8 @@ Eric Miller
=head1 DESCRIPTION
Provides abstraction to the configuration information obtainable from a Nortel
N16XX device through SNMP.
Provides abstraction to the configuration information obtainable from an
Avaya/Nortel N16XX device through SNMP.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
@@ -247,7 +248,7 @@ F<RAPID-CITY-MIB> and then parses out C<rcA>.
=item $n1600->vendor()
Returns 'nortel'
Returns 'avaya'
=item $n1600->os()

View File

@@ -40,7 +40,7 @@ use SNMP::Info::LLDP;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -130,42 +130,6 @@ sub i_ignore {
return \%i_ignore;
}
# Use LLDP
sub hasCDP {
my $netsnmp = shift;
return $netsnmp->hasLLDP();
}
sub c_ip {
my $netsnmp = shift;
my $partial = shift;
return $netsnmp->lldp_ip($partial);
}
sub c_if {
my $netsnmp = shift;
my $partial = shift;
return $netsnmp->lldp_if($partial);
}
sub c_port {
my $netsnmp = shift;
my $partial = shift;
return $netsnmp->lldp_port($partial);
}
sub c_id {
my $netsnmp = shift;
my $partial = shift;
return $netsnmp->lldp_id($partial);
}
sub c_platform {
my $netsnmp = shift;
my $partial = shift;
return $netsnmp->lldp_rem_sysdesc($partial);
}
1;
__END__
@@ -278,46 +242,6 @@ Ignores loopback
=back
=head2 Topology information
Link Layer Discovery Protocol (LLDP) support. The device must be running
an optional LLDP agent, such as lldpd, which can integrate with the SNMP agent.
=over
=item $netsnmp->hasCDP()
Returns true if the device is running LLDP.
=item $netsnmp->c_if()
Returns reference to hash. Key: iid Value: local device port (interfaces)
=item $netsnmp->c_ip()
Returns reference to hash. Key: iid Value: remote IPv4 address
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-LLDP device in between two
or more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $netsnmp->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $netsnmp->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $netsnmp->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3> for details.

View File

@@ -1,7 +1,6 @@
# SNMP::Info::Layer3::Netscreen
# $Id$
#
# Copyright (c) 2008 Eric Miller
# Copyright (c) 2012 Eric Miller
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
@@ -33,34 +32,62 @@ package SNMP::Info::Layer3::Netscreen;
use strict;
use Exporter;
use SNMP::Info::Layer3;
use SNMP::Info::IEEE802dot11;
@SNMP::Info::Layer3::Netscreen::ISA = qw/SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::Netscreen::ISA
= qw/SNMP::Info::Layer3 SNMP::Info::IEEE802dot11 Exporter/;
@SNMP::Info::Layer3::Netscreen::EXPORT_OK = qw//;
use vars qw/$VERSION %FUNCS %GLOBALS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::IEEE802dot11::MIBS,
'NETSCREEN-SMI' => 'netscreenSetting',
'NETSCREEN-PRODUCTS-MIB' => 'netscreenGeneric',
'NETSCREEN-INTERFACE-MIB' => 'nsIfIndex',
'NETSCREEN-SET-GEN-MIB' => 'nsSetGenSwVer',
'NETSCREEN-IP-ARP-MIB' => 'nsIpArpAOD',
);
%GLOBALS = ( %SNMP::Info::Layer3::GLOBALS, 'os_version' => 'nsSetGenSwVer', );
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::IEEE802dot11::GLOBALS,
'os_version' => 'nsSetGenSwVer',
);
%FUNCS = ( %SNMP::Info::Layer3::FUNCS, );
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::IEEE802dot11::FUNCS,
%MUNGE = ( %SNMP::Info::Layer3::MUNGE, );
ns_i_index => 'nsIfIndex',
ns_i_name => 'nsIfName',
ns_i_description => 'nsIfDescr',
ns_i_mac => 'nsIfMAC',
ns_i_up => 'nsIfStatus',
ns_ip_table => 'nsIfIp',
ns_ip_netmask => 'nsIfNetmask',
bp_index => 'nsIfInfo',
std_at_paddr => 'ipNetToMediaPhysAddress',
ns_at_paddr => 'nsIpArpMac',
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
%SNMP::Info::IEEE802dot11::MUNGE,
'ns_i_mac' => \&SNMP::Info::munge_mac,
'ns_at_paddr' => \&SNMP::Info::munge_mac,
'std_at_paddr' => \&SNMP::Info::munge_mac,
);
sub layers {
return '01001100';
return '01001110';
}
sub vendor {
return 'netscreen';
return 'juniper';
}
sub os {
@@ -112,6 +139,372 @@ sub model {
return $model;
}
# provides mapping from IF-MIB to nsIf interfaces - many to 1 (!)
# - on WLAN devices wireless0/0(|-[ag]) -> wireless0/0 !!
sub _if_nsif_map {
my $netscreen = shift;
my $i_descr = $netscreen->SUPER::i_description;
my $ns_descr = $netscreen->i_description;
my %if_nsif_map = ();
my @ikeys = sort { $a <=> $b } keys %$i_descr;
my @nskeys = sort { $a <=> $b } keys %$ns_descr;
my $i = 0;
my $n = 0;
# assumes descriptions are in the same order from both walks
while ( $i < @ikeys && $n < @nskeys ) {
# find matching sub interfaces
while (
$i < @ikeys
&& substr(
$i_descr->{ $ikeys[$i] },
0,
length $ns_descr->{ $nskeys[$n] }
) eq $ns_descr->{ $nskeys[$n] }
)
{
$if_nsif_map{ $ikeys[$i] } = $nskeys[$n];
$i++;
}
$n++;
# skip non-matching interfaces (e.g. tunnel.N)
while (
$i < @ikeys
&& substr(
$i_descr->{ $ikeys[$i] },
0,
length $ns_descr->{ $nskeys[$n] }
) ne $ns_descr->{ $nskeys[$n] }
&& $n < @nskeys
)
{
$if_nsif_map{ $ikeys[$i] } = 0; # no matching interface
$i++;
}
}
return \%if_nsif_map;
}
# Provides mapping from nsIf interfaces to IF-MIB interfaces - many to 1
# Example, tunnel.# interfaces are not present in IF-MIB. There exist no
# mapping of index IID's between the tables so create mapping based on names
sub _nsif_if_map {
my $netscreen = shift;
my $i_descr = $netscreen->SUPER::i_description;
my $ns_descr = $netscreen->i_description;
my %rev_i_descr = reverse %$i_descr;
my %rev_ns_descr = reverse %$ns_descr;
my %nsif_if_map = ();
foreach my $value ( values %$ns_descr ) {
if ( exists $rev_i_descr{$value} ) {
$nsif_if_map{ $rev_ns_descr{$value} } = $rev_i_descr{$value};
}
else {
$nsif_if_map{ $rev_ns_descr{$value} } = 0;
}
}
return \%nsif_if_map;
}
sub interfaces {
my $netscreen = shift;
return $netscreen->i_description();
}
sub i_index {
my $netscreen = shift;
return $netscreen->ns_i_index();
}
sub i_name {
my $netscreen = shift;
return $netscreen->ns_i_name();
}
sub i_description {
my $netscreen = shift;
# Versions prior to 5.4 do not support nsIfDescr but do have nsIfName
return $netscreen->ns_i_description() || $netscreen->ns_i_name();
}
sub i_mac {
my $netscreen = shift;
my $ns_mac = $netscreen->ns_i_mac() || {};
my $if_i_mac = $netscreen->SUPER::i_mac() || {};
my $ns_i_map = $netscreen->_nsif_if_map();
my %i_mac = ();
foreach my $iid ( keys %$ns_i_map ) {
$i_mac{$iid} = $ns_mac->{$iid} || $if_i_mac->{ $ns_i_map->{$iid} };
}
return \%i_mac;
}
sub i_lastchange {
my $netscreen = shift;
my $if_i_lastchange = $netscreen->SUPER::i_lastchange() || {};
my $ns_i_map = $netscreen->_nsif_if_map();
my %i_lastchange;
foreach my $iid ( keys %$ns_i_map ) {
$i_lastchange{$iid} = $if_i_lastchange->{ $ns_i_map->{$iid} };
}
return \%i_lastchange;
}
sub i_up {
my $netscreen = shift;
return $netscreen->ns_i_up();
}
sub i_up_admin {
my $netscreen = shift;
my $i_up = $netscreen->i_up();
my $i_up_admin = $netscreen->SUPER::i_up_admin();
my $ns_i_map = $netscreen->_nsif_if_map();
my %i_up_admin;
foreach my $iid ( keys %$ns_i_map ) {
$i_up_admin{$iid}
= $i_up->{$iid} eq "up" && "up"
|| $i_up_admin->{ $ns_i_map->{$iid} }
|| 0;
}
return \%i_up_admin;
}
sub i_type {
my $netscreen = shift;
my $if_i_type = $netscreen->SUPER::i_type() || {};
my $ns_i_map = $netscreen->_nsif_if_map();
my %i_type;
foreach my $iid ( keys %$ns_i_map ) {
$i_type{$iid} = $if_i_type->{ $ns_i_map->{$iid} } || "tunnel";
}
return \%i_type;
}
sub i_mtu {
my $netscreen = shift;
my $i_type = $netscreen->SUPER::i_mtu() || {};
my $ns_i_map = $netscreen->_nsif_if_map();
my %i_mtu;
foreach my $iid ( keys %$ns_i_map ) {
$i_mtu{$iid} = $i_type->{ $ns_i_map->{$iid} };
}
return \%i_mtu;
}
sub i_ignore {
return;
}
sub i_speed {
my $netscreen = shift;
my $i_speed = $netscreen->SUPER::i_speed();
my $i_name = $netscreen->i_name();
my $ns_i_map = $netscreen->_nsif_if_map;
my %i_speed;
foreach my $iid ( keys %$ns_i_map ) {
$i_speed{$iid}
= $i_speed->{ $ns_i_map->{$iid} }
|| $i_name->{$iid} =~ /tunnel/ && "vpn"
|| 0;
}
return \%i_speed;
}
sub _mac_map {
my $netscreen = shift;
my $arp_mac = $netscreen->nsIpArpMac() || {};
my %mac_map = ();
foreach my $iid ( keys %$arp_mac ) {
my $oid = join( ".", ( unpack( "C6", $arp_mac->{$iid} ) ) );
$mac_map{$oid} = $iid;
}
return \%mac_map;
}
# Interfaces can have two addresses, we want to capture both the network
# address and the management address
sub ip_index {
my $netscreen = shift;
my $ns_ip = $netscreen->ns_ip_table() || {};
my $if_mng_ip = $netscreen->nsIfMngIp() || {};
my %ip_index = ();
foreach my $iid ( keys %$ns_ip ) {
$ip_index{ $ns_ip->{$iid} } = $iid if $ns_ip->{$iid} ne "0.0.0.0";
}
foreach my $iid ( keys %$if_mng_ip ) {
$ip_index{ $if_mng_ip->{$iid} } = $iid
if $if_mng_ip->{$iid} ne "0.0.0.0";
}
return \%ip_index;
}
sub ip_table {
my $netscreen = shift;
my $ip_index = $netscreen->ip_index() || {};
my $if_mng_ip = $netscreen->nsIfMngIp() || {};
my %ip_table = ();
foreach my $iid ( keys %$ip_index ) {
my $mgmt_ip = $if_mng_ip->{$iid};
if ( defined $mgmt_ip && $mgmt_ip ne '0.0.0.0' ) {
$ip_table{$iid} = $mgmt_ip;
}
else {
$ip_table{$iid} = $iid;
}
}
return \%ip_table;
}
# There is only one netmask for the interface both network and management
# addresses should have the same netmask
sub ip_netmask {
my $netscreen = shift;
my $ip_index = $netscreen->ip_index() || {};
my $ns_netmask = $netscreen->ns_ip_netmask();
my %ip_netmask = ();
foreach my $iid ( keys %$ip_index ) {
$ip_netmask{$iid} = $ns_netmask->{ $ip_index->{$iid} };
}
return \%ip_netmask;
}
sub fw_index {
my $netscreen = shift;
my %fw_index = ();
my $arp_mac = $netscreen->nsIpArpMac() || {};
foreach my $iid ( keys %$arp_mac ) {
my $oid = join( ".", ( unpack( "C6", $arp_mac->{$iid} ) ) );
$fw_index{$iid} = $oid;
}
return \%fw_index;
}
sub fw_mac {
my $netscreen = shift;
my $mac_map = $netscreen->_mac_map() || {};
my %fw_mac = ();
foreach my $oid ( keys %$mac_map ) {
my $mac
= join( ":", ( map { sprintf "%lx", $_ } split( /\./, $oid ) ) );
$fw_mac{$oid} = $mac;
}
return \%fw_mac;
}
sub bp_index {
my $netscreen = shift;
my $if_info = $netscreen->nsIfInfo() || {};
my %bp_index = ();
foreach my $iid ( keys %$if_info ) {
$bp_index{ $if_info->{$iid} } = $iid;
}
return \%bp_index;
}
sub fw_port {
my $netscreen = shift;
my $fw_index = $netscreen->fw_index();
my $arp_if = $netscreen->nsIpArpIfIdx() || {};
my %fw_port;
foreach my $iid ( keys %$arp_if ) {
$fw_port{ $fw_index->{$iid} } = $arp_if->{$iid}
if defined $fw_index->{$iid};
}
return \%fw_port;
}
# need to remap from IF-MIB index to nsIf index
sub i_ssidlist {
my $netscreen = shift;
my $i_ssidlist = $netscreen->SUPER::i_ssidlist() || {};
my $ns_i_map = $netscreen->_if_nsif_map();
my %i_ssidlist;
foreach my $iid ( keys %$i_ssidlist ) {
$i_ssidlist{ $ns_i_map->{$iid} } = $i_ssidlist->{$iid};
}
return \%i_ssidlist;
}
sub i_80211channel {
my $netscreen = shift;
my $i_80211channel = $netscreen->SUPER::i_80211channel() || {};
my $ns_i_map = $netscreen->_if_nsif_map();
my %i_80211channel;
foreach my $iid ( keys %$i_80211channel ) {
$i_80211channel{ $ns_i_map->{$iid} } = $i_80211channel->{$iid};
}
return \%i_80211channel;
}
sub at_index {
my $netscreen = shift;
my $std = $netscreen->ipNetToMediaIfIndex();
return $std if (ref {} eq ref $std and scalar keys %$std);
return $netscreen->nsIpArpIfIdx();
}
sub at_paddr {
my $netscreen = shift;
my $std = $netscreen->std_at_paddr();
return $std if (ref {} eq ref $std and scalar keys %$std);
return $netscreen->ns_at_paddr();
}
sub at_netaddr {
my $netscreen = shift;
my $std = $netscreen->ipNetToMediaNetAddress();
return $std if (ref {} eq ref $std and scalar keys %$std);
return $netscreen->nsIpArpIp();
}
1;
__END__
@@ -144,8 +537,10 @@ Kent Hamilton
=head1 DESCRIPTION
Provides abstraction to the configuration information obtainable from a
Netscreen device through SNMP. See inherited classes' documentation for
inherited methods.
Juniper Netscreen devices through SNMP.
For speed or debugging purposes you can call the subclass directly, but not
after determining a more specific class using the method above.
my $netscreen = new SNMP::Info::Layer3::Netscreen(...);
@@ -155,6 +550,8 @@ my $netscreen = new SNMP::Info::Layer3::Netscreen(...);
=item SNMP::Info::Layer3
=item SNMP::Info::IEEE802dot11
=back
=head2 Required MIBs
@@ -169,9 +566,13 @@ my $netscreen = new SNMP::Info::Layer3::Netscreen(...);
=item F<NETSCREEN-SET-GEN-MIB>
=item Inherited Classes
=item F<NETSCREEN-IP-ARP-MIB>
See L<SNMP::Info::Layer3/"Required MIBs"> and its inherited classes.
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3/"Required MIBs"> for its MIB requirements.
See L<SNMP::Info::IEEE802dot11/"Required MIBs"> for its MIB requirements.
=back
@@ -183,11 +584,11 @@ These are methods that return scalar value from SNMP
=item $netscreen->model()
(C<chassisModel>)
Tries to reference $netscreen->id() to F<NETSCREEN-PRODUCTS-MIB>
=item $netscreen->vendor()
Returns 'netscreen'
Returns C<'juniper'>
=item $netscreen->os()
@@ -199,7 +600,7 @@ Extracts the OS version from the description string.
=item $netscreen->serial()
Returns serial number..
Returns serial number.
=back
@@ -209,8 +610,8 @@ Returns serial number..
=item $netscreen->layers()
Returns 01001100. Device doesn't report layers properly, modified to reflect
Layer3 functionality.
Returns 01001110. Device doesn't report layers properly, modified to reflect
Layer 2 and 3 functionality.
=back
@@ -218,14 +619,193 @@ Layer3 functionality.
See L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::IEEE802dot11
See L<SNMP::Info::IEEE802dot11/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Overrides
=head3 Interface Information
=over
=item $netscreen->interfaces()
Creates a map between the interface identifier (iid) and the physical port
name.
Defaults to C<insIfDescr> if available, uses C<nsIfName> if not.
=item $netscreen->i_description()
Description of the interface. Uses C<insIfDescr> if available, C<nsIfName>
if not.
=item $netscreen->i_ignore()
Returns without defining any interfaces to ignore.
=item $netscreen->i_index()
Default SNMP IID to Interface index.
(C<nsIfIndex>)
=item $netscreen->i_lastchange()
The value of C<sysUpTime> when this port last changed states (up,down),
maps from C<ifIndex> to C<nsIfIndex>.
(C<ifLastChange>)
=item $netscreen->i_mac()
MAC address of the interface. Note this is just the MAC of the port, not
anything connected to it. Uses C<nsIfMAC> if available, C<ifPhysAddress>
if not.
=item $netscreen->i_mtu()
INTEGER. Interface MTU value, maps from C<ifIndex> to C<nsIfIndex>.
(C<ifMtu>)
=item $netscreen->i_name()
Interface Name field.
(C<nsIfName>)
=item $netscreen->i_speed()
Speed of the link, maps from C<ifIndex> to C<nsIfIndex>.
=item $netscreen->i_type()
Interface type. Maps from C<ifIndex> to C<nsIfIndex>.
(C<ifType>)
=item $netscreen->i_up()
Link Status of the interface. Typical values are 'up' and 'down'.
(C<nsIfStatus>)
=item $netscreen->i_up_admin()
Administrative status of the port. Checks both C<ifAdminStatus> and
C<nsIfStatus>.
=back
=head3 IP Address Table
Each entry in this table is an IP address in use on this device.
=over
=item $netscreen->ip_index()
Maps the IP Table to the IID
=item $netscreen->ip_table()
Maps the Table to the IP address
(C<nsIfIp>)
=item $netscreen->ip_netmask()
Gives netmask setting for IP table entry.
(C<nsIfNetmask>)
=back
=head3 Forwarding Table
Uses C<nsIpArpTable> to emulate the forwarding table.
=over
=item $netscreen->fw_index()
Maps the Forwarding Table to the IID
=item $netscreen->fw_mac()
Returns reference to hash of forwarding table MAC Addresses.
=item $netscreen->fw_port()
Returns reference to hash of forwarding table entries port interface
identifier (IID).
=item $netscreen->bp_index()
Returns reference to hash of bridge port table entries map back to interface
identifier (IID).
=back
=head2 Arp Cache Table
=over
=item $netscreen->at_index()
Returns reference to hash. Maps ARP table entries to Interface IIDs
If the device doesn't support C<ipNetToMediaIfIndex>, this will try
the proprietary C<nsIpArpIfIdx>.
=item $netscreen->at_paddr()
Returns reference to hash. Maps ARP table entries to MAC addresses.
If the device doesn't support C<ipNetToMediaPhysAddress>, this will try
the proprietary C<nsIpArpMac>.
=item $netscreen->at_netaddr()
Returns reference to hash. Maps ARP table entries to IP addresses.
If the device doesn't support C<ipNetToMediaNetAddress>, this will try
the proprietary C<nsIpArpIp>.
=back
=head3 Wireless Information
=over
=item $dot11->i_ssidlist()
Returns reference to hash. SSID's recognized by the radio interface.
Remaps from C<ifIndex> to C<nsIfIndex>.
(C<dot11DesiredSSID>)
=item $dot11->i_80211channel()
Returns reference to hash. Current operating frequency channel of the radio
interface. Remaps from C<ifIndex> to C<nsIfIndex>.
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::IEEE802dot11
See L<SNMP::Info::IEEE802dot11/"TABLE METHODS"> for details.
=cut

View File

@@ -1,6 +1,6 @@
# SNMP::Info::Layer3::Nexus
#
# Copyright (c) 2012 Eric Miller
# Copyright (c) 2014 Eric Miller
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
@@ -30,38 +30,23 @@
package SNMP::Info::Layer3::Nexus;
use strict;
use warnings;
use Exporter;
use SNMP::Info::LLDP;
use SNMP::Info::CDP;
use SNMP::Info::CiscoImage;
use SNMP::Info::CiscoPortSecurity;
use SNMP::Info::CiscoConfig;
use SNMP::Info::CiscoPower;
use SNMP::Info::Layer3;
use SNMP::Info::CiscoStpExtensions;
use SNMP::Info::CiscoVTP;
use SNMP::Info::Layer3::CiscoSwitch;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
# NOTE : Top-most items gets precedence for @ISA
@SNMP::Info::Layer3::Nexus::ISA = qw/
SNMP::Info::CiscoVTP
SNMP::Info::CiscoStpExtensions
SNMP::Info::LLDP
SNMP::Info::CDP
SNMP::Info::CiscoImage
SNMP::Info::CiscoPortSecurity
SNMP::Info::CiscoConfig
SNMP::Info::CiscoPower
SNMP::Info::Layer3
Exporter
/;
SNMP::Info::Layer3::CiscoSwitch
Exporter
/;
@SNMP::Info::Layer3::Nexus::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
# NOTE: Order creates precedence
# Example: v_name exists in Bridge.pm and CiscoVTP.pm
@@ -70,234 +55,170 @@ $VERSION = '2.10';
# The @ISA order should be reverse of these orders.
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::CiscoPower::MIBS,
%SNMP::Info::CiscoConfig::MIBS,
%SNMP::Info::CiscoPortSecurity::MIBS,
%SNMP::Info::CiscoImage::MIBS,
%SNMP::Info::CDP::MIBS,
%SNMP::Info::LLDP::MIBS,
%SNMP::Info::CiscoStpExtensions::MIBS,
%SNMP::Info::CiscoVTP::MIBS,
'CISCO-ENTITY-VENDORTYPE-OID-MIB' => 'cevMIBObjects',
%SNMP::Info::Layer3::CiscoSwitch::MIBS,
'CISCO-ENTITY-VENDORTYPE-OID-MIB' => 'cevMIBObjects',
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::CiscoPower::GLOBALS,
%SNMP::Info::CiscoConfig::GLOBALS,
%SNMP::Info::CiscoPortSecurity::GLOBALS,
%SNMP::Info::CiscoImage::GLOBALS,
%SNMP::Info::CDP::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
%SNMP::Info::CiscoStpExtensions::GLOBALS,
%SNMP::Info::CiscoVTP::GLOBALS,
'mac' => 'dot1dBaseBridgeAddress',
%SNMP::Info::Layer3::CiscoSwitch::GLOBALS,
'mac' => 'dot1dBaseBridgeAddress',
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::CiscoPower::FUNCS,
%SNMP::Info::CiscoConfig::FUNCS,
%SNMP::Info::CiscoPortSecurity::FUNCS,
%SNMP::Info::CiscoImage::FUNCS,
%SNMP::Info::CDP::FUNCS,
%SNMP::Info::LLDP::FUNCS,
%SNMP::Info::CiscoStpExtensions::FUNCS,
%SNMP::Info::CiscoVTP::FUNCS,
);
%FUNCS = ( %SNMP::Info::Layer3::CiscoSwitch::FUNCS, );
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
%SNMP::Info::CiscoPower::MUNGE,
%SNMP::Info::CiscoConfig::MUNGE,
%SNMP::Info::CiscoPortSecurity::MUNGE,
%SNMP::Info::CiscoImage::MUNGE,
%SNMP::Info::CDP::MUNGE,
%SNMP::Info::LLDP::MUNGE,
%SNMP::Info::CiscoStpExtensions::MUNGE,
%SNMP::Info::CiscoVTP::MUNGE,
);
sub cisco_comm_indexing { return 1; }
sub vendor {
return 'cisco';
}
%MUNGE = ( %SNMP::Info::Layer3::CiscoSwitch::MUNGE, );
sub os {
return 'nx-os';
return 'nx-os';
}
sub os_ver {
my $nexus = shift;
my $descr = $nexus->description();
return $1 if ( $descr =~ /\),\s+Version\s+(.+?),/ );
return $descr;
my $nexus = shift;
my $descr = $nexus->description();
return $1 if ( $descr =~ /\),\s+Version\s+(.+?),/ );
return $descr;
}
sub serial {
my $nexus = shift;
my $nexus = shift;
my $e_class = $nexus->e_class();
my $e_parent = $nexus->e_parent();
foreach my $iid ( keys %$e_class ) {
my $class = $e_class->{$iid} || '';
if ($class =~ /chassis/) {
my $serial = $nexus->e_serial($iid);
return $serial->{$iid};
foreach my $iid ( keys %$e_parent ) {
my $parent = $e_parent->{$iid};
if ( $parent eq '0' ) {
my $serial = $nexus->e_serial($iid);
return $serial->{$iid};
}
}
}
return;
return;
}
# sysObjectID returns an IID to an entry in the CISCO-ENTITY-VENDORTYPE-OID-MIB.
# Look it up and return it.
sub model {
my $nexus = shift;
my $id = $nexus->id();
my $nexus = shift;
my $id = $nexus->id();
unless ( defined $id ) {
print
" SNMP::Info::Layer3::Nexus::model() - Device does not support sysObjectID\n"
if $nexus->debug();
return;
}
unless ( defined $id ) {
print
" SNMP::Info::Layer3::Nexus::model() - Device does not support sysObjectID\n"
if $nexus->debug();
return;
}
my $model = &SNMP::translateObj($id);
my $model = &SNMP::translateObj($id);
return $id unless defined $model;
return $id unless defined $model;
$model =~ s/^cevChassis//i;
return $model;
$model =~ s/^cevChassis//i;
return $model;
}
# Use CDP and/or LLDP
sub hasCDP {
my $nexus = shift;
# Reported version 6.x of NX-OS doesn't use the IPv4 address as index
# override methods in ipAddrTable
sub ip_table {
my $nexus = shift;
my $orig_ip_table = $nexus->orig_ip_table();
return $nexus->hasLLDP() || $nexus->SUPER::hasCDP();
my %ip_table;
foreach my $iid ( keys %$orig_ip_table ) {
my $ip = $orig_ip_table->{$iid};
next unless defined $ip;
$ip_table{$ip} = $ip;
}
my $local_addrs = $nexus->_local_addr();
foreach my $addr (keys %$local_addrs) {
$ip_table{$addr} = $addr unless exists $ip_table{$addr};
}
return \%ip_table;
}
sub c_ip {
my $nexus = shift;
my $partial = shift;
sub ip_index {
my $nexus = shift;
my $orig_ip_table = $nexus->orig_ip_table();
my $orig_ip_index = $nexus->orig_ip_index();
my $cdp = $nexus->SUPER::c_ip($partial) || {};
my $lldp = $nexus->lldp_ip($partial) || {};
my %ip_index;
foreach my $iid ( keys %$orig_ip_table ) {
my $ip = $orig_ip_table->{$iid};
my $index = $orig_ip_index->{$iid};
my %c_ip;
foreach my $iid ( keys %$cdp ) {
my $ip = $cdp->{$iid};
next unless defined $ip;
next unless ( defined $ip && defined $index );
$c_ip{$iid} = $ip;
}
$ip_index{$ip} = $index;
}
foreach my $iid ( keys %$lldp ) {
my $ip = $lldp->{$iid};
next unless defined $ip;
my $local_addrs = $nexus->_local_addr();
foreach my $addr (keys %$local_addrs) {
$ip_index{$addr} = 0 unless exists $ip_index{$addr};
}
$c_ip{$iid} = $ip;
}
return \%c_ip;
return \%ip_index;
}
sub c_if {
my $nexus = shift;
my $partial = shift;
sub ip_netmask {
my $nexus = shift;
my $orig_ip_table = $nexus->orig_ip_table();
my $orig_ip_netmask = $nexus->orig_ip_netmask();
my $lldp = $nexus->lldp_if($partial) || {};
my $cdp = $nexus->SUPER::c_if($partial) || {};
my %ip_netmask;
foreach my $iid ( keys %$orig_ip_table ) {
my $ip = $orig_ip_table->{$iid};
my $netmask = $orig_ip_netmask->{$iid};
my %c_if;
foreach my $iid ( keys %$cdp ) {
my $if = $cdp->{$iid};
next unless defined $if;
next unless ( defined $ip && defined $netmask );
$c_if{$iid} = $if;
}
$ip_netmask{$ip} = $netmask;
}
foreach my $iid ( keys %$lldp ) {
my $if = $lldp->{$iid};
next unless defined $if;
my $local_addrs = $nexus->_local_addr();
foreach my $addr (keys %$local_addrs) {
$ip_netmask{$addr} = $local_addrs->{$addr} unless exists $ip_netmask{$addr};
}
$c_if{$iid} = $if;
}
return \%c_if;
return \%ip_netmask;
}
sub c_port {
my $nexus = shift;
my $partial = shift;
sub ip_broadcast {
my $nexus = shift;
my $orig_ip_table = $nexus->orig_ip_table();
my $orig_ip_broadcast = $nexus->orig_ip_broadcast();
my $lldp = $nexus->lldp_port($partial) || {};
my $cdp = $nexus->SUPER::c_port($partial) || {};
my %ip_broadcast;
foreach my $iid ( keys %$orig_ip_table ) {
my $ip = $orig_ip_table->{$iid};
my $broadcast = $orig_ip_broadcast->{$iid};
my %c_port;
foreach my $iid ( keys %$cdp ) {
my $port = $cdp->{$iid};
next unless defined $port;
next unless ( defined $ip && defined $broadcast );
$c_port{$iid} = $port;
}
$ip_broadcast{$ip} = $broadcast;
}
foreach my $iid ( keys %$lldp ) {
my $port = $lldp->{$iid};
next unless defined $port;
$c_port{$iid} = $port;
}
return \%c_port;
my $local_addrs = $nexus->_local_addr();
foreach my $addr (keys %$local_addrs) {
$ip_broadcast{$addr} = $addr unless exists $ip_broadcast{$addr};
}
return \%ip_broadcast;
}
sub c_id {
my $nexus = shift;
my $partial = shift;
my $lldp = $nexus->lldp_id($partial) || {};
my $cdp = $nexus->SUPER::c_id($partial) || {};
my %c_id;
foreach my $iid ( keys %$cdp ) {
my $id = $cdp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
foreach my $iid ( keys %$lldp ) {
my $id = $lldp->{$iid};
next unless defined $id;
$c_id{$iid} = $id;
}
return \%c_id;
}
sub c_platform {
my $nexus = shift;
my $partial = shift;
my $lldp = $nexus->lldp_rem_sysdesc($partial) || {};
my $cdp = $nexus->SUPER::c_platform($partial) || {};
my %c_platform;
foreach my $iid ( keys %$cdp ) {
my $platform = $cdp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
foreach my $iid ( keys %$lldp ) {
my $platform = $lldp->{$iid};
next unless defined $platform;
$c_platform{$iid} = $platform;
}
return \%c_platform;
sub _local_addr {
my $nexus = shift;
my $listen_addr = $nexus->udpLocalAddress() || {};
my %local_addr;
foreach my $sock (keys %$listen_addr) {
my $addr = $listen_addr->{$sock};
next if ($addr =~ /^127\./); # localhost
next if ($addr eq '0.0.0.0'); # "any"
next if ($addr =~ /^(\d+)\./ and $1 ge 224); # Class D or E space: Multicast or Experimental
$local_addr{$addr} = '255.255.255.255'; # Fictional netmask
}
return \%local_addr;
}
1;
@@ -316,14 +237,14 @@ Eric Miller
# Let SNMP::Info determine the correct subclass for you.
my $nexus = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
# These arguments are passed directly to SNMP::Session
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
AutoSpecify => 1,
Debug => 1,
# These arguments are passed directly to SNMP::Session
DestHost => 'myswitch',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $nexus->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
@@ -341,23 +262,7 @@ after determining a more specific class using the method above.
=over
=item SNMP::Info::Layer3
=item SNMP::Info::CiscoVTP
=item SNMP::Info::CDP
=item SNMP::Info::CiscoImage
=item SNMP::Info::CiscoPortSecurity
=item SNMP::Info::CiscoConfig
=item SNMP::Info::CiscoPower
=item SNMP::Info::CiscoStpExtensions
=item SNMP::Info::LLDP
=item SNMP::Info::Layer3::CiscoSwitch
=back
@@ -373,25 +278,9 @@ after determining a more specific class using the method above.
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoVTP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CDP/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoImage/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPortSecurity/"Required MIBs"> for its own MIB
See L<SNMP::Info::Layer3::CiscoSwitch/"Required MIBs"> for its own MIB
requirements.
See L<SNMP::Info::CiscoConfig/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoPower/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::CiscoStpExtensions/"Required MIBs"> for its own MIB requirements.
See L<SNMP::Info::LLDP/"Required MIBs"> for its own MIB requirements.
=back
=head1 GLOBALS
@@ -400,17 +289,13 @@ These are methods that return a scalar value from SNMP
=over
=item $nexus->vendor()
Returns 'cisco'
=item $nexus->os()
Returns 'nx-os'
Returns C<'nx-os'>
=item $nexus->os_ver()
Returns operating system version extracted fron C<sysDescr>.
Returns operating system version extracted from C<sysDescr>.
=item $nexus->serial()
@@ -420,145 +305,69 @@ Returns the serial number of the chassis from F<ENTITY-MIB>.
Tries to reference $nexus->id() to F<CISCO-ENTITY-VENDORTYPE-OID-MIB>
Removes 'cevChassis' for readability.
Removes C<'cevChassis'> for readability.
=item $nexus->mac()
C<dot1dBaseBridgeAddress>
=item $nexus->cisco_comm_indexing()
=back
Returns 1. Use vlan indexing.
=head2 Overrides
=head3 IP Address Table
Each entry in this table is an IP address in use on this device. Some
versions do not index the table with the IPv4 address in accordance with
the MIB definition, these overrides correct that behavior.
Also, the table is augmented with IP addresses in use by UDP sockets on the
device, as determined by checking F<RFC1213-MIB::udpLocalAddress>. Valid
addresses from this table (any IPv4 that is not localhost, 0.0.0.0, Class D
(multicast) or Class E (experimental) are added as a /32 on interface ID 0.
This is a workaround to determine possible VPC Keepalive IP addresses on the
device, which are probably advertised by CDP/LLDP to neighbors.
=over
=item $nexus->ip_index()
Maps the IP Table to the IID
(C<ipAdEntIfIndex>)
=item $nexus->ip_table()
Maps the Table to the IP address
(C<ipAdEntAddr>)
=item $nexus->ip_netmask()
Gives netmask setting for IP table entry.
(C<ipAdEntNetMask>)
=item $nexus->ip_broadcast()
Gives broadcast address for IP table entry.
(C<ipAdEntBcastAddr>)
=back
=head2 Globals imported from SNMP::Info::Layer3
=head2 Globals imported from SNMP::Info::Layer3::CiscoSwitch
See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
=head2 Global Methods imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoConfig
See documentation in L<SNMP::Info::CiscoConfig/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoPower
See documentation in L<SNMP::Info::CiscoPower/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"GLOBALS"> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"GLOBALS"> for details.
See documentation in L<SNMP::Info::Layer3::CiscoSwitch/"GLOBALS"> for details.
=head1 TABLE METHODS
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Topology information
=head2 Table Methods imported from SNMP::Info::Layer3::CiscoSwitch
Based upon the firmware version Cisco devices may support Link Layer Discover
Protocol (LLDP) in addition to the Cisco-proprietary CDP. These methods
will query both and return the combination of all information. As a result,
there may be identical topology information returned from the two protocols
causing duplicate entries. It is the calling program's responsibility to
identify any duplicate entries and remove duplicates if necessary.
=over
=item $nexus->hasCDP()
Returns true if the device is running either CDP or LLDP.
=item $nexus->c_if()
Returns reference to hash. Key: iid Value: local device port (interfaces)
=item $nexus->c_ip()
Returns reference to hash. Key: iid Value: remote IPv4 address
If multiple entries exist with the same local port, c_if(), with the same IPv4
address, c_ip(), it may be a duplicate entry.
If multiple entries exist with the same local port, c_if(), with different
IPv4 addresses, c_ip(), there is either a non-CDP/LLDP device in between two
or more devices or multiple devices which are not directly connected.
Use the data from the Layer2 Topology Table below to dig deeper.
=item $nexus->c_port()
Returns reference to hash. Key: iid Value: remote port (interfaces)
=item $nexus->c_id()
Returns reference to hash. Key: iid Value: string value used to identify the
chassis component associated with the remote system.
=item $nexus->c_platform()
Returns reference to hash. Key: iid Value: Remote Device Type
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoVTP
See documentation in L<SNMP::Info::CiscoVTP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CDP
See documentation in L<SNMP::Info::CDP/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStats
See documentation in L<SNMP::Info::CiscoStats/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoImage
See documentation in L<SNMP::Info::CiscoImage/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPortSecurity
See documentation in L<SNMP::Info::CiscoPortSecurity/"TABLE METHODS"> for
See documentation in L<SNMP::Info::Layer3::CiscoSwitch/"TABLE METHODS"> for
details.
=head2 Table Methods imported from SNMP::Info::CiscoConfig
See documentation in L<SNMP::Info::CiscoConfig/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoPower
See documentation in L<SNMP::Info::CiscoPower/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::CiscoStpExtensions
See documentation in L<SNMP::Info::CiscoStpExtensions/"TABLE METHODS"> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP/"TABLE METHODS"> for details.
=cut

View File

@@ -39,7 +39,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -175,7 +175,7 @@ These are methods that return scalar value from SNMP
=item $pfront->vendor()
Returns 'packetfront'.
Returns C<'packetfront'>.
=item $pfront->os()
@@ -187,7 +187,7 @@ Returns the software version extracted from C<sysDescr>.
=item $pfront->serial()
Returns the value of productSerialNo.
Returns the value of C<productSerialNo>.
=back

View File

@@ -1,7 +1,6 @@
# SNMP::Info::Layer3::Passport
# $Id$
#
# Copyright (c) 2008 Eric Miller
# Copyright (c) 2012 Eric Miller
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
@@ -30,6 +29,7 @@
package SNMP::Info::Layer3::Passport;
use warnings;
use strict;
use Exporter;
use SNMP::Info::SONMP;
@@ -43,7 +43,7 @@ use SNMP::Info::Layer3;
use vars qw/$VERSION %GLOBALS %FUNCS %MIBS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS, %SNMP::Info::RapidCity::MIBS,
@@ -80,12 +80,12 @@ sub model {
return $id unless defined $model;
$model =~ s/^rcA//i;
$model =~ s/^rc(A)?//i;
return $model;
}
sub vendor {
return 'nortel';
return 'avaya';
}
sub os {
@@ -126,9 +126,9 @@ sub i_index {
# Get VLAN Virtual Router Interfaces
if (!defined $partial
or (defined $model
and ( ( $partial > 2000 and $model =~ /(86|83|81|16)/ )
or ( $partial > 256 and $model =~ /(105|11[05]0|12[05])/ ) )
|| (defined $model
&& ( ( $partial > 2000 && $model =~ /^8[8631]|16|VSP/ )
|| ( $partial > 256 && $model =~ /^1[012][05]0/ ) )
)
)
{
@@ -145,7 +145,7 @@ sub i_index {
}
}
if ( defined $model and $model =~ /(86)/ ) {
if ( defined $model and $model =~ /^8[86]/ ) {
my $cpu_index = $passport->rc_cpu_ifindex($partial) || {};
my $virt_ip = $passport->rc_virt_ip();
@@ -182,9 +182,9 @@ sub interfaces {
my $vlan_id = {};
if (!defined $partial
or (defined $model
and ( ( $partial > 2000 and $model =~ /(86|83|81|16)/ )
or ( $partial > 256 and $model =~ /(105|11[05]0|12[05])/ ) )
|| (defined $model
&& ( ( $partial > 2000 && $model =~ /^8[8631]|16|VSP/ )
|| ( $partial > 256 && $model =~ /^1[012][05]0/ ) )
)
)
{
@@ -198,24 +198,24 @@ sub interfaces {
my $index = $i_index->{$iid};
next unless defined $index;
if ( ( $index == 1 ) and ( $model =~ /(86)/ ) ) {
if ( ( $index == 1 ) and ( $model =~ /^8[86]/ ) ) {
$if{$index} = 'Cpu.Virtual';
}
elsif ( ( $index == 192 ) and ( $model eq '8603' ) ) {
elsif ( ( $index == 192 ) and ( $model =~ /^8[86]03/ ) ) {
$if{$index} = 'Cpu.3';
}
elsif ( ( $index == 320 ) and ( $model =~ /(8606|8610|8610co)/ ) ) {
elsif ( ( $index == 320 ) and ( $model =~ /^8[86][10][06]/ ) ) {
$if{$index} = 'Cpu.5';
}
elsif ( ( $index == 384 ) and ( $model =~ /(8606|8610|8610co)/ ) ) {
elsif ( ( $index == 384 ) and ( $model =~ /^8[86][10][06]/ ) ) {
$if{$index} = 'Cpu.6';
}
elsif (( $index > 2000 and $model =~ /(86|83|81|16)/ )
or ( $index > 256 and $model =~ /(105|11[05]0|12[05])/ ) )
elsif (( $index > 2000 and $model =~ /^8[8631]|16|VSP/ )
or ( $index > 256 and $model =~ /^1[012][05]0/ ) )
{
my $v_index = $reverse_vlan{$iid};
@@ -255,9 +255,9 @@ sub i_mac {
# Get VLAN Virtual Router Interfaces
if (!defined $partial
or (defined $model
and ( ( $partial > 2000 and $model =~ /(86|83|81|16)/ )
or ( $partial > 256 and $model =~ /(105|11[05]0|12[05])/ ) )
|| (defined $model
&& ( ( $partial > 2000 && $model =~ /^8[8631]|16|VSP/ )
|| ( $partial > 256 && $model =~ /^1[012][05]0/ ) )
)
)
{
@@ -276,7 +276,7 @@ sub i_mac {
}
}
if ( defined $model and $model =~ /(86)/ ) {
if ( defined $model and $model =~ /^8[86]/ ) {
my $cpu_mac = $passport->rc_cpu_mac($partial) || {};
my $virt_ip = $passport->rc_virt_ip() || '0.0.0.0';
@@ -329,9 +329,9 @@ sub i_description {
# Get VLAN Virtual Router Interfaces
if (!defined $partial
or (defined $model
and ( ( $partial > 2000 and $model =~ /(86|83|81|16)/ )
or ( $partial > 256 and $model =~ /(105|11[05]0|12[05])/ ) )
|| (defined $model
&& ( ( $partial > 2000 && $model =~ /^8[8631]|16|VSP/ )
|| ( $partial > 256 && $model =~ /^1[012][05]0/ ) )
)
)
{
@@ -365,9 +365,9 @@ sub i_name {
my %reverse_vlan;
if (!defined $partial
or (defined $model
and ( ( $partial > 2000 and $model =~ /(86|83|81|16)/ )
or ( $partial > 256 and $model =~ /(105|11[05]0|12[05])/ ) )
|| (defined $model
&& ( ( $partial > 2000 && $model =~ /^8[8631]|16|VSP/ )
|| ( $partial > 256 && $model =~ /^1[012][05]0/ ) )
)
)
{
@@ -379,31 +379,31 @@ sub i_name {
my %i_name;
foreach my $iid ( keys %$i_index ) {
if ( ( $iid == 1 ) and ( $model =~ /(86)/ ) ) {
if ( ( $iid == 1 ) and ( $model =~ /^8[86]/ ) ) {
$i_name{$iid} = 'CPU Virtual Management IP';
}
elsif ( ( $iid == 192 ) and ( $model eq '8603' ) ) {
elsif ( ( $iid == 192 ) and ( $model =~ /^8[86]03/ ) ) {
$i_name{$iid} = 'CPU 3 Ethernet Port';
}
elsif ( ( $iid == 320 ) and ( $model =~ /(8606|8610|8610co)/ ) ) {
elsif ( ( $iid == 320 ) and ( $model =~ /^8[86][10][06]/ ) ) {
$i_name{$iid} = 'CPU 5 Ethernet Port';
}
elsif ( ( $iid == 384 ) and ( $model =~ /(8606|8610|8610co)/ ) ) {
elsif ( ( $iid == 384 ) and ( $model =~ /^8[86][10][06]/ ) ) {
$i_name{$iid} = 'CPU 6 Ethernet Port';
}
elsif (
( $iid > 2000 and defined $model and $model =~ /(86|83|81|16)/ )
( $iid > 2000 and defined $model and $model =~ /^8[8631]|16|VSP/ )
or ( $iid > 256
and defined $model
and $model =~ /(105|11[05]0|12[05])/ )
and $model =~ /^1[012][05]0/ )
)
{
my $vlan_index = $reverse_vlan{$iid};
my $vlan_name = $v_name->{$vlan_index};
my $vlan_idx = $reverse_vlan{$iid};
my $vlan_name = $v_name->{$vlan_idx};
next unless defined $vlan_name;
$i_name{$iid} = $vlan_name;
@@ -433,12 +433,16 @@ sub ip_index {
foreach my $ip ( keys %$ip_index ) {
my $iid = $ip_index->{$ip};
next unless defined $iid;
# Skip VSP default CPU addresses
next if ($ip =~ /^192\.168\.1\.1/);
# Skip default CPU addresses
next if ($ip =~ /^192\.168\.168\.16[89]/);
$ip_index{$ip} = $iid;
}
# Only 8600 has CPU and Virtual Management IP
if ( defined $model and $model =~ /(86)/ ) {
if ( defined $model and $model =~ /^8[86]/ ) {
my $cpu_ip = $passport->rc_cpu_ip($partial) || {};
my $virt_ip = $passport->rc_virt_ip($partial);
@@ -447,6 +451,8 @@ sub ip_index {
foreach my $cid ( keys %$cpu_ip ) {
my $c_ip = $cpu_ip->{$cid};
next unless defined $c_ip;
# Skip default CPU addresses
next if ($c_ip =~ /192\.168\.168\.16[89]/);
$ip_index{$c_ip} = $cid;
}
@@ -467,6 +473,10 @@ sub ip_netmask {
my %ip_index;
foreach my $iid ( keys %$ip_mask ) {
# Skip VSP default CPU addresses
next if ($iid =~ /^192\.168\.1\./);
# Skip default CPU addresses
next if ($iid =~ /^192\.168\.168\.16[89]/);
my $mask = $ip_mask->{$iid};
next unless defined $mask;
@@ -474,7 +484,7 @@ sub ip_netmask {
}
# Only 8600 has CPU and Virtual Management IP
if ( defined $model and $model =~ /(86)/ ) {
if ( defined $model and $model =~ /^8[86]/ ) {
my $cpu_ip = $passport->rc_cpu_ip($partial) || {};
my $cpu_mask = $passport->rc_cpu_mask($partial) || {};
@@ -485,6 +495,8 @@ sub ip_netmask {
foreach my $iid ( keys %$cpu_mask ) {
my $c_ip = $cpu_ip->{$iid};
next unless defined $c_ip;
# Skip default CPU addresses
next if ($c_ip =~ /192\.168\.168\.16[89]/);
my $c_mask = $cpu_mask->{$iid};
next unless defined $c_mask;
@@ -510,7 +522,7 @@ sub root_ip {
my $sonmp_topo_ip = $passport->sonmp_topo_ip();
# Only 8600 and 1600 have CLIP or Management Virtual IP
if ( defined $model and $model =~ /(86|16)/ ) {
if ( defined $model and $model =~ /^8[86]|16|VSP/ ) {
# Return CLIP (CircuitLess IP)
foreach my $iid ( keys %$rc_ip_type ) {
@@ -560,7 +572,10 @@ sub index_factor {
# Older Accelar models use base 16 instead of 64
$index_factor = 16
if ( defined $model and $model =~ /(105|11[05]0|12[05])/ );
if ( defined $model and $model =~ /^1[012][05]0/ );
# Newer VSP 4K uses 192?
$index_factor = 192
if ( defined $model and $model =~ /^VSP4/ );
return $index_factor;
}
@@ -583,9 +598,86 @@ sub bp_index {
foreach my $iid ( keys %$if_index ) {
$bp_index{$iid} = $iid;
}
# If we have MLT's map them to the designated port
my $trunks = $passport->rc_mlt_index;
my $dps = $passport->rc_mlt_dp || {};
if ( ref {} eq ref $trunks and scalar keys %$trunks ) {
foreach my $m ( keys %$trunks ) {
my $m_idx = $trunks->{$m};
next unless $m_idx;
my $i_idx = $dps->{$m} ? $dps->{$m} : $m_idx;
$bp_index{$m_idx} = $i_idx;
}
}
return \%bp_index;
}
# We have devices which support BRIDGE-MIB, Q-BRIDGE-MIB, and RAPID-CITY
# exclusively. Use standards-based first and fall back to RAPID-CITY.
sub fw_mac {
my $passport = shift;
my $partial = shift;
my $qb = $passport->SUPER::fw_mac($partial);
return $qb if (ref {} eq ref $qb and scalar keys %$qb);
my $qb_fw_port = $passport->rcBridgeTpFdbPort($partial);
my $qb_fw_mac = {};
foreach my $idx ( keys %$qb_fw_port ) {
my ( $fdb_id, $mac ) = _rc_fdbtable_index($idx);
$qb_fw_mac->{$idx} = $mac;
}
return $qb_fw_mac;
}
sub fw_port {
my $passport = shift;
my $partial = shift;
my $qb = $passport->SUPER::fw_port($partial);
return $qb if (ref {} eq ref $qb and scalar keys %$qb);
return $passport->rcBridgeTpFdbPort($partial);
}
sub fw_status {
my $passport = shift;
my $partial = shift;
my $qb = $passport->SUPER::fw_status($partial);
return $qb if (ref {} eq ref $qb and scalar keys %$qb);
return $passport->rcBridgeTpFdbStatus($partial);
}
sub qb_fw_vlan {
my $passport = shift;
my $partial = shift;
my $qb = $passport->SUPER::qb_fw_vlan($partial);
return $qb if (ref {} eq ref $qb and scalar keys %$qb);
my $qb_fw_port = $passport->rcBridgeTpFdbPort($partial);
my $qb_fw_vlan = {};
foreach my $idx ( keys %$qb_fw_port ) {
my ( $fdb_id, $mac ) = _rc_fdbtable_index($idx);
$qb_fw_vlan->{$idx} = $fdb_id;
}
return $qb_fw_vlan;
}
# break up the rcBridgeTpFdbEntry INDEX into FDB ID and MAC Address.
sub _rc_fdbtable_index {
my $idx = shift;
my @values = split( /\./, $idx );
my $fdb_id = shift(@values);
return ( $fdb_id, join( ':', map { sprintf "%02x", $_ } @values ) );
}
# Pseudo ENTITY-MIB methods
sub e_index {
@@ -613,7 +705,7 @@ sub e_index {
}
# Older Accelars use RAPID-CITY::rcCardTable
if ( defined $model and $model =~ /(105|11[05]0|12[05])/ ) {
if ( defined $model and $model =~ /^1[012][05]0/ ) {
my $rc_c_t = $passport->rc_c_type() || {};
foreach my $idx ( keys %$rc_c_t ) {
next unless $idx;
@@ -683,7 +775,7 @@ sub e_descr {
my $model = $passport->model();
my $rc_ps = $passport->rc_ps_detail() || {};
my $rc_ch = $passport->rcChasType();
my $rc_ch = $passport->chassis() || '';
$rc_ch =~ s/a//;
my %rc_e_descr;
@@ -701,7 +793,7 @@ sub e_descr {
}
# Older Accelars use RAPID-CITY::rcCardTable
if ( defined $model and $model =~ /(105|11[05]0|12[05])/ ) {
if ( defined $model and $model =~ /^1[012][05]0/ ) {
my $rc_c_t = $passport->rc_c_type() || {};
foreach my $idx ( keys %$rc_c_t ) {
next unless $idx;
@@ -752,7 +844,7 @@ sub e_type {
my $model = $passport->model();
my $rc_ps = $passport->rc_ps_type() || {};
my $rc_ch = $passport->rcChasType();
my $rc_ch = $passport->chassis();
my %rc_e_type;
@@ -769,7 +861,7 @@ sub e_type {
}
# Older Accelars use RAPID-CITY::rcCardTable
if ( defined $model and $model =~ /(105|11[05]0|12[05])/ ) {
if ( defined $model and $model =~ /^1[012][05]0/ ) {
my $rc_c_t = $passport->rc_c_type() || {};
foreach my $idx ( keys %$rc_c_t ) {
next unless $idx;
@@ -842,7 +934,7 @@ sub e_name {
$rc_e_name{$iid} = "Card $slot, MDA $mod";
}
elsif ( defined $model
and $model =~ /(105|11[05]0|12[05])/
and $model =~ /^1[012][05]0/
and $iid =~ /1$/ )
{
$rc_e_name{$iid} = "Card $slot";
@@ -878,7 +970,7 @@ sub e_hwver {
}
# Older Accelars use RAPID-CITY::rcCardTable
if ( defined $model and $model =~ /(105|11[05]0|12[05])/ ) {
if ( defined $model and $model =~ /^1[012][05]0/ ) {
my $rc_c_t = $passport->rc_c_rev() || {};
foreach my $idx ( keys %$rc_c_t ) {
next unless $idx;
@@ -927,7 +1019,7 @@ sub e_vendor {
my %rc_e_vendor;
foreach my $iid ( keys %$rc_e_idx ) {
$rc_e_vendor{$iid} = 'nortel';
$rc_e_vendor{$iid} = 'avaya';
}
return \%rc_e_vendor;
}
@@ -953,7 +1045,7 @@ sub e_serial {
}
# Older Accelars use RAPID-CITY::rcCardTable
if ( defined $model and $model =~ /(105|11[05]0|12[05])/ ) {
if ( defined $model and $model =~ /^1[012][05]0/ ) {
my $rc_c_t = $passport->rc_c_serial() || {};
foreach my $idx ( keys %$rc_c_t ) {
next unless $idx;
@@ -1051,8 +1143,8 @@ __END__
=head1 NAME
SNMP::Info::Layer3::Passport - SNMP Interface to modular Nortel Ethernet Routing
Switches (formerly Passport / Accelar)
SNMP::Info::Layer3::Passport - SNMP Interface to modular Avaya
Ethernet Routing Switch 8000 Series and VSP 9000 Series switches.
=head1 AUTHOR
@@ -1075,10 +1167,10 @@ Eric Miller
=head1 DESCRIPTION
Abstraction subclass for modular Nortel Ethernet Routing Switches (formerly
Passport and Accelar Series Switches).
Abstraction subclass for modular Avaya Ethernet Routing Switch 8000 Series
(formerly Nortel/Bay Passport/Accelar) and VSP 9000 Series switches.
These devices have some of the same characteristics as the stackable Nortel
These devices have some of the same characteristics as the stackable Avaya
Ethernet Switches (Baystack). For example, extended interface information is
gleaned from F<RAPID-CITY>.
@@ -1126,7 +1218,7 @@ F<RAPID-CITY-MIB> and then parses out C<rcA>.
=item $passport->vendor()
Returns 'nortel'
Returns 'avaya'
=item $passport->os()
@@ -1240,6 +1332,40 @@ problems with F<BRIDGE-MIB>
=back
=head2 Forwarding Table
These methods utilize, in order; F<Q-BRIDGE-MIB>, F<BRIDGE-MIB>, and
F<RAPID-CITY> to obtain the forwarding table information.
=over
=item $passport->fw_mac()
Returns reference to hash of forwarding table MAC Addresses
(C<dot1qTpFdbAddress>), (C<dot1dTpFdbAddress>), (C<rcBridgeTpFdbAddress>)
=item $passport->fw_port()
Returns reference to hash of forwarding table entries port interface
identifier (iid)
(C<dot1qTpFdbPort>), (C<dot1dTpFdbPort>), (C<rcBridgeTpFdbPort>)
=item $passport->fw_status()
Returns reference to hash of forwarding table entries status
(C<dot1qTpFdbStatus>), (C<dot1dTpFdbStatus>), (C<rcBridgeTpFdbStatus>)
=item $passport->qb_fw_vlan()
Returns reference to hash of forwarding table entries VLAN ID
(C<dot1qFdbId>), (C<rcBridgeTpFdbVlanId>)
=back
=head2 Pseudo F<ENTITY-MIB> information
These devices do not support F<ENTITY-MIB>. These methods emulate Physical
@@ -1273,7 +1399,7 @@ Returns reference to hash. Key: IID, Value: Hardware version.
=item $passport->e_vendor()
Returns reference to hash. Key: IID, Value: nortel.
Returns reference to hash. Key: IID, Value: avaya.
=item $passport->e_serial()

View File

@@ -41,7 +41,7 @@ use SNMP::Info::LLDP;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '2.10';
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
@@ -118,42 +118,6 @@ sub os_ver {
return $os_ver;
}
# Use LLDP
sub hasCDP {
my $pf = shift;
return $pf->hasLLDP();
}
sub c_ip {
my $pf = shift;
my $partial = shift;
return $pf->lldp_ip($partial);
}
sub c_if {
my $pf = shift;
my $partial = shift;
return $pf->lldp_if($partial);
}
sub c_port {
my $pf = shift;
my $partial = shift;
return $pf->lldp_port($partial);
}
sub c_id {
my $pf = shift;
my $partial = shift;
return $pf->lldp_id($partial);
}
sub c_platform {
my $pf = shift;
my $partial = shift;
return $pf->lldp_rem_sysdesc($partial);
}
1;
__END__
@@ -230,10 +194,6 @@ These are methods that return scalar values from SNMP
Returns 'FreeBSD'
=item $pf->hasCDP()
Returns whether LLDP is enabled.
=item $pf->model()
Grabs the os version from C<sysDescr>
@@ -259,30 +219,6 @@ See documentation in L<SNMP::Info::Layer3/"GLOBALS"> for details.
These are methods that return tables of information in the form of a reference
to a hash.
=over
=item $pf->c_id()
Returns LLDP information.
=item $pf->c_if()
Returns LLDP information.
=item $pf->c_ip()
Returns LLDP information.
=item $pf->c_platform()
Returns LLDP information.
=item $pf->c_port()
Returns LLDP information.
=back
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3/"TABLE METHODS"> for details.

191
Info/Layer3/Pica8.pm Normal file
View File

@@ -0,0 +1,191 @@
# SNMP::Info::Layer3::Pica8
#
# Copyright (c) 2013 Jeroen van Ingen
# All rights reserved.
#
# Redistribution and use in source and binary forms, with or without
# modification, are permitted provided that the following conditions are met:
#
# * Redistributions of source code must retain the above copyright notice,
# this list of conditions and the following disclaimer.
# * Redistributions in binary form must reproduce the above copyright
# notice, this list of conditions and the following disclaimer in the
# documentation and/or other materials provided with the distribution.
# * Neither the name of the University of California, Santa Cruz nor the
# names of its contributors may be used to endorse or promote products
# derived from this software without specific prior written permission.
#
# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
# LIABLE FOR # ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
# POSSIBILITY OF SUCH DAMAGE.
package SNMP::Info::Layer3::Pica8;
use strict;
use Exporter;
use SNMP::Info::Layer3;
use SNMP::Info::LLDP;
@SNMP::Info::Layer3::Pica8::ISA = qw/SNMP::Info::LLDP SNMP::Info::Layer3 Exporter/;
@SNMP::Info::Layer3::Pica8::EXPORT_OK = qw//;
use vars qw/$VERSION %GLOBALS %MIBS %FUNCS %MUNGE/;
$VERSION = '3.28';
%MIBS = (
%SNMP::Info::Layer3::MIBS,
%SNMP::Info::LLDP::MIBS,
);
%GLOBALS = (
%SNMP::Info::Layer3::GLOBALS,
%SNMP::Info::LLDP::GLOBALS,
);
%FUNCS = (
%SNMP::Info::Layer3::FUNCS,
%SNMP::Info::LLDP::FUNCS,
);
%MUNGE = (
%SNMP::Info::Layer3::MUNGE,
%SNMP::Info::LLDP::MUNGE,
);
sub vendor {
return 'Pica8';
}
sub os {
my $pica8 = shift;
my $descr = $pica8->description();
return $1 if ( $descr =~ /(\S+)\s+Platform Software/i );
return;
}
sub os_ver {
my $pica8 = shift;
my $descr = $pica8->description();
return $1 if ( $descr =~ /Software version ([\d\.]+)/i );
return;
}
sub model {
my $pica8 = shift;
my $descr = $pica8->description();
return $1 if ( $descr =~ /Hardware model (P-\d{4})/i );
return;
}
1;
__END__
=head1 NAME
SNMP::Info::Layer3::Pica8 - SNMP Interface to L3 Devices, Pica8
=head1 AUTHORS
Jeroen van Ingen
=head1 SYNOPSIS
# Let SNMP::Info determine the correct subclass for you.
my $pica8 = new SNMP::Info(
AutoSpecify => 1,
Debug => 1,
DestHost => 'myrouter',
Community => 'public',
Version => 2
)
or die "Can't connect to DestHost.\n";
my $class = $pica8->class();
print "SNMP::Info determined this device to fall under subclass : $class\n";
=head1 DESCRIPTION
Subclass for Pica8 devices
=head2 Inherited Classes
=over
=item SNMP::Info::Layer3
=item SNMP::Info::LLDP
=back
=head2 Required MIBs
=over
=item F<PICA-PRIVATE-MIB>
=item Inherited Classes' MIBs
See L<SNMP::Info::Layer3> for its own MIB requirements.
See L<SNMP::Info::LLDP> for its own MIB requirements.
=back
=head1 GLOBALS
These are methods that return scalar value from SNMP
=over
=item $pica8->vendor()
Returns 'Pica8'
=item $pica8->model()
Returns the model name extracted from C<sysDescr>.
=item $pica8->os()
Returns the OS extracted from C<sysDescr>.
=item $pica8->os_ver()
Returns the OS version extracted from C<sysDescr>.
=back
=head2 Globals imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3> for details.
=head2 Globals imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP> for details.
=head1 TABLE ENTRIES
These are methods that return tables of information in the form of a reference
to a hash.
=head2 Table Methods imported from SNMP::Info::Layer3
See documentation in L<SNMP::Info::Layer3> for details.
=head2 Table Methods imported from SNMP::Info::LLDP
See documentation in L<SNMP::Info::LLDP> for details.
=cut

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