Table Of Contents
TL1 Command Descriptions
3.1 TL1 Commands by Category
3.2 TL1 Commands by Card (Cisco ONS 15454)
3.3 TL1 Commands by Card (ONS 15327)
3.4 TL1 Commands
3.4.1 ACT-USER: Activate User
3.4.2 ALW-MSG-ALL: Allow Message All
3.4.3 ALW-MSG-DBCHG: Allow Database Change Message
3.4.4 ALW-MSG-SECU: Allow Message Security
3.4.5 ALW-PMREPT-ALL: Allow Performance Report All
3.4.6 ALW-SWDX-EQPT: Allow Switch Duplex Equipment
3.4.7 ALW-SWTOPROTN-EQPT: Allow Switch to Protection Equipment
3.4.8 ALW-SWTOWKG-EQPT: Allow Switch to Working Equipment
3.4.9 ALW-USER-SECU: Allow User Security
3.4.10 APPLY: Apply
3.4.11 CANC: Cancel
3.4.12 CANC-USER: Cancel User
3.4.13 CANC-USER-SECU: Cancel User Security
3.4.14 CHG-ACCMD-<MOD_TACC>: Change Test Access Mode (DS1, DS3I, E1, E3, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.15 CONN-TACC-<MOD_TACC>: Connect Test Access (DS1, DS3I, E1, E3, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.16 COPY-IOSCFG: Copy IOS Config File
3.4.17 COPY-RFILE: Copy RFILE
3.4.18 DISC-TACC: Disconnect Test Access
3.4.19 DLT-<MOD_RING>: Delete (BLSR)
3.4.20 DLT-CRS-<PATH>: Delete Cross Connection (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
3.4.21 DLT-EQPT: Delete Equipment
3.4.22 DLT-FFP-<OCN_TYPE>: Delete Facility Protection Group (OC3, OC12, OC48, OC192)
3.4.23 DLT-FFP-CLNT: Delete Facility Protection Group Client
3.4.24 DLT-LNK-<MOD2O>: Delete Optical Link (OCH, OMS, OTS)
3.4.25 DLT-OSC: Delete OSC
3.4.26 DLT-UCP-CC: Delete Unified Control Plane Control Channel
3.4.27 DLT-UCP-IF: Delete Unified Control Plane Interface
3.4.28 DLT-UCP-NBR: Delete Unified Control Plane Neighbor
3.4.29 DLT-USER-SECU: Delete User Security
3.4.30 DLT-VCG: Delete Virtual Concatenated Group
3.4.31 DLT-WLEN: Delete Wavelength
3.4.32 ED-<MOD_PATH>: Edit (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
3.4.33 ED-<MOD_RING>: Edit Bidirectional Line Switched Ring
3.4.34 ED-<OCN_TYPE>: Edit (OC3, OC12, OC48, OC192)
3.4.35 ED-BITS: Edit Building Integrated Timing Supply
3.4.36 ED-CLNT: Edit Client
3.4.37 ED-CMD-SECU: Edit Command Security
3.4.38 ED-CRS-<PATH>:ED Cross Connect (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS 48C, STS192C, VT1, VT2)
3.4.39 ED-DAT: Edit Date and Time
3.4.40 ED-DS1: Edit DS1
3.4.41 ED-DWDM: Edit Dense Wavelength Division Multiplexing
3.4.42 ED-EC1: Edit Electrical Carrier
3.4.43 ED-EQPT: Edit Equipment
3.4.44 ED-FC: Edit Fiber Channel Facility
3.4.45 ED-FFP-<OCN_TYPE>: Edit Facility Protection Group (OC3, OC12, OC48, OC192)
3.4.46 ED-FFP-CLNT: Edit Facility Protection Group Client
3.4.47 ED-FFP-OCH: Edit Facility Protection Group OCH
3.4.48 ED-G1000: Edit G1000
3.4.49 ED-LNK-<MOD2O>: Edit Link (OCH, OMS, OTS)
3.4.50 ED-NE-GEN: Edit Network Element General
3.4.51 ED-NE-PATH: Edit Network Element Paths
3.4.52 ED-NE-SYNCN: Edit Network Element Synchronization
3.4.53 ED-OCH: Edit Optical Channel
3.4.54 ED-OMS: Edit Optical Multiplex Section
3.4.55 ED-OSC: Edit Optical Service Channel
3.4.56 ED-OTS: Edit OTS
3.4.57 ED-PID: Edit Password
3.4.58 ED-SYNCN: Edit Synchronization
3.4.59 ED-T1: Edit T1
3.4.60 ED-T3: Edit T3
3.4.61 ED-TRC-CLNT: Edit Trace Client
3.4.62 ED-TRC-OCH: Edit Trace Optical Channel Facilities
3.4.63 ED-UCP-CC: Edit Unified Control Plane Control Channel
3.4.64 ED-UCP-IF: Edit Unified Control Plane Interface
3.4.65 ED-UCP-NBR: Edit Unified Control Plane Neighbor
3.4.66 ED-UCP-NODE: Edit Unified Control Plane Node
3.4.67 ED-USER-SECU: Edit User Security
3.4.68 ED-WDMANS: Edit Wavelength Division Multiplexing Automatic Node Setup
3.4.69 ED-WLEN: Edit Wavelength
3.4.70 ENT-<MOD_RING>: Enter BLSR
3.4.71 ENT-CRS-<PATH>: Enter Cross Connection (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
3.4.72 ENT-EQPT: Enter Equipment
3.4.73 ENT-FFP-<OCN_TYPE>: Enter Facility Protection Group (OC3, OC12, OC48, OC192)
3.4.74 ENT-FFP-CLNT: Enter Facility Protection Group Client
3.4.75 ENT-LNK-<MOD2O>: Enter Optical Link (OCH, OMS, OTS)
3.4.76 ENT-OSC: Enter Optical Service Channel
3.4.77 ENT-UCP-CC: Enter Unified Control Plane Control Channel
3.4.78 ENT-UCP-IF: Enter Unified Control Plane Interface
3.4.79 ENT-UCP-NBR: Enter Unified Control Plane Neighbor
3.4.80 ENT-USER-SECU: Enter User Security
3.4.81 ENT-VCG: Enter Virtual Concatenated Group
3.4.82 ENT-WLEN: Enter Wavelength
3.4.83 EX-SW-<OCN_BLSR>: Operate Protection Switch (OC12, OC48, OC192)
3.4.84 INH-MSG-ALL: Inhibit Message All
3.4.85 INH-MSG-DBCHG: Inhibit Database Change Message
3.4.86 INH-MSG-SECU: Inhibit Message Security
3.4.87 INH-PMREPT-ALL: Inhibit Performance Report All
3.4.88 INH-SWDX-EQPT: Inhibit Switch Duplex Equipment
3.4.89 INH-SWTOPROTN-EQPT: Inhibit Switch to Protection Equipment
3.4.90 INH-SWTOWKG-EQPT: Inhibit Switch to Working Equipment
3.4.91 INH-USER-SECU: Inhibit User Security
3.4.92 INIT-REG-<MOD2>: Initialize Register (CLNT, DS1, DS3I, EC1, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.93 INIT-SYS: Initialize System
3.4.94 OPR-ACO-ALL: Operate Alarm Cutoff All
3.4.95 OPR-EXT-CONT: Operate External Control
3.4.96 OPR-LASER-OTS: Operate Laser Optical Transport Section
3.4.97 OPR-LNK: Operate Link
3.4.98 OPR-LPBK-<MOD2>: Operate Loopback (CLNT, DS1, DS3I, EC1, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.99 OPR-PROTNSW-<OCN_TYPE>: Operate Protection Switch (OC3, OC12, OC48, OC192)
3.4.100 OPR-PROTNSW-<PATH>: Operate Protection Switch (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
3.4.101 OPR-PROTNSW-CLNT: Operate Protection Switch Client
3.4.102 OPR-PROTNSW-OCH: Operate Protection Switch OCH
3.4.103 OPR-SYNCNSW: Operate Synchronization Switch
3.4.104 OPR-WDMANS: Operate Wavelength Division Multiplexing Automatic Node Setup
3.4.105 REPT ALM <MOD2ALM>: Report Alarm (CLNT, DS1, DS3I, E100, E1000, EC1, FSTE, G1000, GIGE, OC12, OC192, OC3, OC48, OCH, OMS, OSC, OTS, POS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, UDCDCC, UDCF, VT1, VT2, WLEN)
3.4.106 REPT ALM BITS: Report Alarm Building Integrated Timing Supply
3.4.107 REPT ALM COM: Report Alarm COM
3.4.108 REPT ALM ENV: Report Alarm Environment
3.4.109 REPT ALM EQPT: Report Alarm Equipment
3.4.110 REPT ALM SECU: Report Alarm Security
3.4.111 REPT ALM SYNCN: Report Alarm Synchronization
3.4.112 REPT ALM UCP: Report Alarm Unified Control Plane
3.4.113 REPT DBCHG: Report Database Change Message
3.4.114 REPT EVT <MOD2ALM>: Report Event (CLNT, DS1, DS3I, FSTE, G1000, GIGE, OC12, OC192, OC3, OC48, OCH, OMS, OSC, OTS, POS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, UDCDCC, UDCF, VT1, VT2, WLEN)
3.4.115 REPT EVT BITS: Report Event BITS
3.4.116 REPT EVT COM: Report Event COM
3.4.117 REPT EVT ENV: Report Event Environment
3.4.118 REPT EVT EQPT: Report Event Equipment
3.4.119 REPT EVT FXFR: Report Event Software Download
3.4.120 REPT EVT IOSCFG: Report Event IOS Config File
3.4.121 REPT EVT SECU: Report Event Security
3.4.122 REPT EVT SESSION: Report Event Session
3.4.123 REPT EVT SYNCN: Report Event Synchronization
3.4.124 REPT EVT UCP: Report Event Unified Control Plane
3.4.125 REPT PM <MOD2>: Report Performance Monitoring (CLNT, DS1, DS3I, EC1, FC, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.126 REPT SW: Report Switch
3.4.127 RLS-EXT-CONT: Release External Control
3.4.128 RLS-LASER-OTS: Release Laser Optical Transport Section
3.4.129 RLS-LPBK-<MOD2>: Release Loopback (CLNT, DS1, DS3I, EC1, FC, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.130 RLS-PROTNSW-<OCN_TYPE>: Release Protection Switch (OC3, OC12, OC48, OC192)
3.4.131 RLS-PROTNSW-<PATH>: Release Protection Switch (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
3.4.132 RLS-PROTNSW-CLNT: Release Protection Switch Client
3.4.133 RLS-PROTNSW-OCH: Release Protection Switch OCH
3.4.134 RLS-SYNCNSW: Release Synchronization Switch
3.4.135 RMV-<MOD2_IO>: Remove (CLNT, DS1, DS3I, EC1, FC, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, T1, T3)
3.4.136 RST-<MOD2_IO>: Restore (CLNT, DS1, DS3I, EC1, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, T1, T3)
3.4.137 RTRV-<MOD_RING>: Retrieve Bidirectional Line Switched Ring
3.4.138 RTRV-<OCN_TYPE>: Retrieve (OC3, OC12, OC48, OC192)
3.4.139 RTRV-<PATH>: Retrieve (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
3.4.140 RTRV-ALM-<MOD2ALM>:Retrieve Alarm (CLNT, DS1, DS3I, EC1, FC, FSTE, G1000, GIGE, OC12, OC192, OC3, OC48, OCH, OMS, OSC, OTS, POS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, UDCDCC, UDCF, VT1, VT2, WLEN)
3.4.141 RTRV-ALM-ALL: Retrieve Alarm All
3.4.142 RTRV-ALM-BITS: Retrieve Alarm Building Integrated Timing Supply
3.4.143 RTRV-ALM-ENV: Retrieve Alarm Environment
3.4.144 RTRV-ALM-EQPT: Retrieve Alarm Equipment
3.4.145 RTRV-ALM-SYNCN: Retrieve Alarm Synchronization
3.4.146 RTRV-ALM-UCP: Retrieve Alarm Unified Control Plane
3.4.147 RTRV-ALMTH-<MOD2>: Retrieve Alarm Threshold (CLNT, DS1, DS3I, EC1, FC, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STM1E, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.148 RTRV-ALMTH-EQPT: Retrieve Alarm Threshold Equipment
3.4.149 RTRV-ATTR-CONT: Retrieve Attribute Control
3.4.150 RTRV-ATTR-ENV: Retrieve Attribute Environment
3.4.151 RTRV-BITS: Retrieve Building Integrated Timing Supply
3.4.152 RTRV-CLNT: Retrieve Client
3.4.153 RTRV-CMD-SECU: Retrieve Command Security
3.4.154 RTRV-COND-<MOD2ALM>: Retrieve Condition (CLNT, DS1, EC1, FC, FSTE, G1000, GIGE, OC12, OC192, OC3, OC48, OCH, OMS, OSC, OTS, POS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, UDCDCC, UDCF, VT1, VT2, WLEN)
3.4.155 RTRV-COND-ALL: Retrieve Condition All
3.4.156 RTRV-COND-BITS: Retrieve Condition Building Integrated Timing Supply
3.4.157 RTRV-COND-ENV: Retrieve Environmental Condition
3.4.158 RTRV-COND-EQPT: Retrieve Condition Equipment
3.4.159 RTRV-COND-SYNCN: Retrieve Condition Synchronization
3.4.160 RTRV-COND-UCP: Retrieve Condition Unified Control Plane
3.4.161 RTRV-CRS: Retrieve Cross Connect
3.4.162 RTRV-CRS-<PATH>: Retrieve Cross Connect (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
3.4.163 RTRV-DFLT-SECU: Retrieve Default Security
3.4.164 RTRV-DS1: Retrieve DS1
3.4.165 RTRV-DWDM: Retrieve Dense Wavelength Division Multiplexing
3.4.166 RTRV-EC1: Retrieve EC1
3.4.167 RTRV-EQPT: Retrieve Equipment
3.4.168 RTRV-EXT-CONT: Retrieve External Control
3.4.169 RTRV-FC: Retrieve Fiber Channel Facility
3.4.170 RTRV-FFP-<OCN_TYPE>: Retrieve Facility Protection Group (OC3, OC12, OC48, OC192)
3.4.171 RTRV-FFP-CLNT: Retrieve Facility Protection Group Client
3.4.172 RTRV-FFP-OCH: Retrieve Facility Protection Group OCH
3.4.173 RTRV-FSTE: Retrieve Fast Ethernet
3.4.174 RTRV-G1000: Retrieve G1000 Facility
3.4.175 RTRV-GIGE: Retrieve Gigabit Ethernet
3.4.176 RTRV-HDR: Retrieve Header
3.4.177 RTRV-INV: Retrieve Inventory
3.4.178 RTRV-LNK: Retrieve Link
3.4.179 RTRV-LNK-<MOD2O>: Retrieve Optical Link (OCH, OMS, OTS)
3.4.180 RTRV-LOG: Retrieve Log
3.4.181 RTRV-MAP-NETWORK: Retrieve Map Network
3.4.182 RTRV-NE-GEN: Retrieve Network Element General
3.4.183 RTRV-NE-IPMAP: Retrieve Network Element IPMAP
3.4.184 RTRV-NE-PATH: Retrieve Network Element Path
3.4.185 RTRV-NE-SYNCN: Retrieve Network Element Synchronization
3.4.186 RTRV-NE-WDMANS: Retrieve NE Wavelength Division Multiplexing Automatic Node Setup
3.4.187 RTRV-OCH: Retrieve Optical Channel
3.4.188 RTRV-OMS: Retrieve Optical Multiplex Section
3.4.189 RTRV-OSC: Retrieve Optical Service Channel
3.4.190 RTRV-OTS: Retrieve Optical Transport System
3.4.191 RTRV-PM-<MOD2>: Retrieve Performance (CLNT, DS1, DS3I, EC1, FC, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.192 RTRV-PMMODE-<STS_PATH>: Retrieve Performance Mode of PM Data Collection (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C)
3.4.193 RTRV-PMSCHED-<MOD2>:Retrieve Performance Monitoring Schedule (CLNT, DS1, DS3I, EC1, FC, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.194 RTRV-PMSCHED-ALL: Retrieve Performance Schedule All
3.4.195 RTRV-POS: Retrieve Packet Over SONET
3.4.196 RTRV-PROTNSW-<OCN_TYPE>: Retrieve Protection Switch (OC3, OC12, OC48, OC192)
3.4.197 RTRV-PROTNSW-<PATH>: Retrieve Protection Switch (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
3.4.198 RTRV-PROTNSW-CLNT: Retrieve Protection Switch Client
3.4.199 RTRV-PROTNSW-OCH: Retrieve Protection Switch OCH
3.4.200 RTRV-PTHTRC-<STS_PATH>: Retrieve Path Trace (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C)
3.4.201 RTRV-STS: Retrieve STS
3.4.202 RTRV-SYNCN: Retrieve Synchronization
3.4.203 RTRV-T1: Retrieve T1 Facility
3.4.204 RTRV-T3: Retrieve T3
3.4.205 RTRV-TACC: Retrieve Test Access
3.4.206 RTRV-TH-<MOD2>: Retrieve Threshold (CLNT, DS1, DS3I, EC1, FC, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.207 RTRV-TH-ALL: Retrieve Threshold ALL
3.4.208 RTRV-TOD: Retrieve Time of Day
3.4.209 RTRV-TRC-<OCN_BLSR>: Retrieve Trace Client (OC12, OC192, OC48)
3.4.210 RTRV-TRC-CLNT: Retrieve Trace Client
3.4.211 RTRV-TRC-OCH: Retrieve Trace Optical Channel
3.4.212 RTRV-UCP-CC: Retrieve Unified Control Plane Control Channel
3.4.213 RTRV-UCP-IF: Retrieve Unified Control Plane Interface
3.4.214 RTRV-UCP-NBR: Retrieve Unified Control Plane Neighbor
3.4.215 RTRV-UCP-NODE: Retrieve Unified Control Plane Node
3.4.216 RTRV-USER-SECU: Retrieve User Security
3.4.217 RTRV-VCG: Retrieve Virtual Concatenated Group
3.4.218 RTRV-VT: RTRV VT
3.4.219 RTRV-WDMANS: Retrieve Wavelength Division Multiplexing Automatic Node Setup
3.4.220 RTRV-WLEN: Retrieve Wavelength
3.4.221 SCHED-PMREPT-<MOD2>: Schedule Performance Monitoring Report (CLNT, DS1, DS3I, FC, EC1, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STM1E, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.222 SET-ALMTH-<MOD2>: Set Alarm Threshold (CLNT, DS1, DS3I, FC, EC1, G1000, OC12, OC192, OC3, OC48, OCH, OMS, OTS, STM1E, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
3.4.223 SET-ALMTH-EQPT: Set Alarm Equipment
3.4.224 SET-ATTR-CONT: Set Attribute Control
3.4.225 SET-ATTR-ENV: Set Attribute Environment
3.4.226 SET-ATTR-SECUDFLT: Set Attribute Security Default
3.4.227 SET-PMMODE-<STS_PATH>: Set Performance Mode of PM Data Collection (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C)
3.4.228 SET-TH-<MOD2>: Set Threshold (CLNT, DS1, DS3I, EC1, FC, G1000, OC3, OC12,OC48, OC192, OCH, OMS, OTS, STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C,T1, T3, VT1)
3.4.229 SET-TOD: Set Time of Day
3.4.230 SW-DX-EQPT: Switch Duplex Equipment
3.4.231 SW-TOPROTN-EQPT: Switch to Protection Equipment
3.4.232 SW-TOWKG-EQPT: Switch to Working Equipment
TL1 Command Descriptions
This chapter provides specific information on TL1 commands and autonomous messages for the
Cisco ONS 15454 and Cisco ONS 15327, Release 4.6, including:
•
TL1 commands by category
•
TL1 commands by card
•
TL1 commands
For information on command components, such as parameters, see Chapter 4, "TL1 Command Components."
Note
The terms "Unidirectional Path Switched Ring" and "UPSR" may appear in Cisco literature. These terms do not refer to using Cisco ONS 15xxx products in a unidirectional path switched ring configuration. Rather, these terms, as well as "Path Protected Mesh Network" and "PPMN," refer generally to Cisco's path protection feature, which may be used in any topological network configuration. Cisco does not recommend using its path protection feature in any particular topological network configuration.
3.1 TL1 Commands by Category
Table 3-1 TL1 Commands by Category
Category
|
Command or Autonomous Message
|
BLSR
|
DLT-<MOD_RING> ED-<MOD_RING> ENT-<MOD_RING>
|
EX-SW-<OCN_BLSR> RTRV-<MOD_RING> RTRV-TRC-<OCN_BLSR>
|
Cross Connections
|
DLT-CRS-<PATH> ED-CRS-<PATH> ENT-CRS-<PATH>
|
RTRV-CRS RTRV-CRS-<PATH>
|
DWDM (Cisco ONS 15454 only)
|
DLT-FFP-CLNT DLT-LNK-<MOD2O> DLT-OSC DLT-WLEN ED-CLNT ED-DWDM ED-FFP-CLNT ED-FFP-OCH ED-LNK-<MOD2O> ED-OCH ED-OMS ED-OSC ED-OTS ED-TRC-CLNT ED-TRC-OCH ED-WDMANS ED-WLEN ENT-FFP-CLNT ENT-LNK-<MOD2O> ENT-OSC ENT-WLEN OPR-LASER-OTS OPR-LNK OPR-PROTNSW-CLNT
|
OPR-PROTNSW-OCH OPR-WDMANS RLS-LASER-OTS RLS-PROTNSW-CLNT RLS-PROTNSW-OCH RTRV-ALMTH-<MOD2> RTRV-CLNT RTRV-DWDM RTRV-FFP-CLNT RTRV-FFP-OCH RTRV-LNK RTRV-LNK-<MOD2O> RTRV-NE-WDMANS RTRV-OCH RTRV-OMS RTRV-OSC RTRV-OTS RTRV-PROTNSW-CLNT RTRV-PROTNSW-OCH RTRV-TRC-CLNT RTRV-TRC-OCH RTRV-WDMANS RTRV-WLEN SET-ALMTH-<MOD2>
|
Environment
|
RTRV-ATTR-CONT RTRV-ATTR-ENV
|
SET-ATTR-CONT SET-ATTR-ENV
|
Environment Alarms and Controls
|
OPR-ACO-ALL OPR-EXT-CONT REPT ALM ENV REPT EVT ENV
|
RLS-EXT-CONT RTRV-ALM-ENV RTRV-COND-ENV RTRV-EXT-CONT
|
Equipment
|
ALW-SWDX-EQPT ALW-SWTOPROTN-EQPT ALW-SWTOWKG-EQPT DLT-EQPT ED-EQPT ENT-EQPT INH-SWDX-EQPT INH-SWTOPROTN-EQPT INH-SWTOWKG-EQPT REPT ALM EQPT
|
REPT EVT EQPT RTRV-ALM-EQPT RTRV-ALMTH-EQPT RTRV-COND-EQPT RTRV-EQPT SET-ALMTH-EQPT SW-DX-EQPT SW-TOPROTN-EQPT SW-TOWKG-EQPT
|
Fault
|
REPT ALM <MOD2ALM> REPT ALM COM REPT EVT <MOD2ALM> REPT EVT COM
|
RTRV-ALM-ALL RTRV-COND-<MOD2ALM> RTRV-COND-ALL
|
File Transfer
|
APPLY COPY-RFILE REPT EVT FXFR
|
|
IOS
|
COPY-IOSCFG REPT EVT IOSCFG
|
|
Log
|
ALW-MSG-DBCHG INH-MSG-DBCHG
|
REPT DBCHG RTRV-LOG
|
Network
|
RTRV-MAP-NETWORK RTRV-NE-IPMAP
|
|
Paths
|
ED-<MOD_PATH> RTRV-<PATH>
|
RTRV-STS
|
Performance
|
ALW-PMREPT-ALL INH-PMREPT-ALL INIT-REG-<MOD2> REPT PM <MOD2> RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH>
|
RTRV-PMSCHED-<MOD2> RTRV-PMSCHED-ALL RTRV-TH-<MOD2> RTRV-TH-ALL SCHED-PMREPT-<MOD2> SET-TH-<MOD2>
|
Ports
|
ED-<OCN_TYPE> ED-DS1 ED-EC1 ED-FC ED-G1000 ED-T1 ED-T3 RMV-<MOD2_IO> RST-<MOD2_IO> RTRV-<OCN_TYPE>
|
RTRV-DS1 RTRV-EC1 RTRV-FC RTRV-FSTE RTRV-G1000 RTRV-GIGE RTRV-POS RTRV-T1 RTRV-T3
|
Security
|
ACT-USER ALW-MSG-SECU ALW-USER-SECU CANC CANC-USER-SECU DLT-USER-SECU ED-CMD-SECU ED-PID ED-USER-SECU ENT-USER-SECU
|
INH-MSG-SECU INH-USER-SECU REPT ALM SECU REPT EVT SECU REPT EVT SESSION RTRV-CMD-SECU RTRV-DFLT-SECU RTRV-USER-SECU SET-ATTR-SECUDFLT
|
SONET Line Protection
|
DLT-FFP-<OCN_TYPE> ED-FFP-<OCN_TYPE> ENT-FFP-<OCN_TYPE> OPR-PROTNSW-<OCN_TYPE>
|
RLS-PROTNSW-<OCN_TYPE> RTRV-FFP-<OCN_TYPE> RTRV-PROTNSW-<OCN_TYPE>
|
Switch
|
RTRV-PROTNSW-<PATH>
|
|
Synchronization
|
ED-BITS ED-NE-SYNCN ED-SYNCN OPR-SYNCNSW REPT ALM BITS REPT ALM SYNCN REPT EVT BITS REPT EVT SYNCN
|
RLS-SYNCNSW RTRV-ALM-BITS RTRV-ALM-SYNCN RTRV-BITS RTRV-COND-BITS RTRV-COND-SYNCN RTRV-NE-SYNCN RTRV-SYNCN
|
System
|
ALW-MSG-ALL ED-DAT ED-NE-GEN ED-NE-PATH INH-MSG-ALL INIT-SYS
|
RTRV-HDR RTRV-INV RTRV-NE-GEN RTRV-NE-PATH RTRV-TOD SET-TOD
|
Test Access
|
CHG-ACCMD-<MOD_TACC> CONN-TACC-<MOD_TACC>
|
DISC-TACC RTRV-TACC
|
Testing
|
OPR-LPBK-<MOD2> RLS-LPBK-<MOD2>
|
|
Trace
|
RTRV-PTHTRC-<STS_PATH>
|
|
UCP
|
DLT-UCP-CC DLT-UCP-IF DLT-UCP-NBR ED-UCP-CC ED-UCP-IF ED-UCP-NBR ED-UCP-NODE ENT-UCP-CC ENT-UCP-IF
|
ENT-UCP-NBR REPT ALM UCP REPT EVT UCP RTRV-ALM-UCP RTRV-COND-UCP RTRV-UCP-CC RTRV-UCP-IF RTRV-UCP-NBR RTRV-UCP-NODE
|
Path Protection Switching
|
REPT SW
|
|
VCAT
|
DLT-VCG ENT-VCG
|
RTRV-VCG
|
3.2 TL1 Commands by Card (Cisco ONS 15454)
Table 3-2 TL1 Commands by Card (Cisco ONS 15454)
Card
|
Applicable Commands
|
AD-1B, AD-4B, AD-1C, AD-2C, AD-4C, MD-4, MUX-32, DMUX-32
|
DLT-EQPT
DLT-LNK-<MOD20>
DLT-WLEN
ED-EQPT
ED-OCH (not for AD-1B, AD-4B) ED-LNK-<MOD20>
ED-OMS (AD-1B, AD-4B, MD-4)
ED-OTS (not for MD-4) ED-WDMANS
ED-WLEN
ENT-EQPT
ENT-LNK-<MOD20> ENT-WLEN
INIT-REG-<MOD2>
OPR-LNK
OPR-WDMANS
REPT ALM WLEN
REPT ALM <MOD2ALM>
REPT EVT WLEN
REPT EVT <MOD2ALM>
REPT PM <MOD2> RMV-<MOD2_IO> RST-<MOD2_IO>
RTRV-ALM-ALL
RTRV-ALM-EQPT
|
RTRV-ALM-WLEN RTRV-ALMTH-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-WLEN RTRV-EQPT
RTRV-INV
RTRV-OCH (not for AD-1B, AD-4B)
RTRV-LNK-<MOD20> RTRV-OMS (AD-1B, AD-4B, MD-4)
RTRV-OTS (not for MD-4) RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH> RTRV-PMSCHED-<MOD2> RTRV-PMSCHED-ALL RTRV-TH-<MOD2> RTRV-WDMANS
RTRV-WLEN SCHED-PMREPT-<MOD2> SET-ALMTH-<MOD2> SET-ALMTH-EQPT SET-TH-<MOD2>
|
AIC, AIC-I
|
DLT-EQPT
ENT-EQPT
INIT-SYS
OPR-ACO-ALL
OPR-EXT-CONT
REPT ALM ENV
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT ENV
REPT EVT EQPT
REPT EVT <MOD2ALM>
RLS-EXT-CONT RTRV-ALM-ALL
|
RTRV-ALM-ENV RTRV-ALM-EQPT
RTRV-ALM-<MOD2ALM> RTRV-ATTR-CONT RTRV-ATTR-ENV RTRV-COND-ALL RTRV-COND-ENV RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-EQPT
RTRV-EXT-CONT
RTRV-INV
SET-ATTR-CONT SET-ATTR-ENV
|
DS1, DS1N, DS3, DS3N, DS3E, DS3NE
|
ALW-SWTOPROTN-EQPT ALW-SWTOWKG-EQPT CHG-ACCMD-<MOD_TACC>
CONN-TACC-<MOD_TACC> DISC-TACC
DLT-CRS-<PATH>
DLT-EQPT
ED-<MOD_PATH> ED-CRS-<PATH>
ED-EQPT
ED-NE-PATH
ED-T1 (DS1)
ED-T3 (DS1N,DS3, DS3N, DS3E, DS3NE)
ED-VT1 (DS1)
ENT-CRS-<PATH>
ENT-EQPT INH-SWTOPROTN-EQPT INH-SWTOWKG-EQPT INIT-REG-<MOD2>
INIT-SYS
OPR-LPBK-<MOD2_IO>
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM <MOD2> RLS-LPBK-<MOD2_IO>
RMV-<MOD2_IO>
|
RST-<MOD2_IO> RTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM>
RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-CRS
RTRV-CRS-VT1 (DS1) RTRV-CRS-<PATH>
RTRV-EQPT
RTRV-INV
RTRV-NE-PATH
RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH> RTRV-PMSCHED-<MOD2> RTRV-PTHTRC-<STS_PATH> RTRV-TACC
RTRV-T1 (DS1)
RTRV-T3
RTRV-TH-<MOD2>
RTRV-TH-ALL (except DS1, DS1N)
RTRV-<PATH>
SCHED-PM
REPT-<MOD2> SET-PMMODE-<STS_PATH> SET-TH-<MOD2> SW-TOPROTN-EQPT SW-TOWKG-EQPT
|
DS3XM
|
ALW-SWTOPROTN-EQPT ALW-SWTOWKG-EQPT CHG-ACCMD-<MOD_TACC> CONN-TACC-<MOD_TACC> DISC-TACC
DLT-CRS-<PATH>
DLT-EQPT
ED-<MOD_PATH>
ED-CRS-<PATH>
ED-DS1
ED-EQPT
ED-NE-PATH
ED-T1
ED-T3
ED-VT1
ENT-CRS-<PATH>
ENT-EQPT
ENT-CRS-VT1 INH-SWTOPROTN-EQPT INH-SWTOWKG-EQPT INIT-REG-<MOD2>
INIT-SYS
OPR-LPBK-<MOD2_IO>
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM <MOD2>
RLS-LPBK-<MOD2_IO>
|
RMV-<MOD2_IO> RST-<MOD2_IO> RTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-CRS
RTRV-CRS-<PATH>
RTRV-DS1
RTRV-EQPT
RTRV-INV
RTRV-NE-PATH
RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH> RTRV-PMSCHED-<MOD2> RTRV-PTHTRC-<STS_PATH> RTRV-TACC
RTRV-T1
RTRV-T3
RTRV-TH-<MOD2>
RTRV-TH-ALL
RTRV-VT
RTRV-<PATH> SCHED-PMREPT-<MOD2> SET-PMMODE-<STS_PATH> SET-TH-<MOD2> SW-TOPROTN-EQPT SW-TOWKG-EQPT
|
E100T, E1000T
|
DLT-EQPT
ENT-EQPT
INIT-SYS
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
|
RTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-EQPT
RTRV-INV
|
EC1
|
ALW-SWTOPROTN-EQPT ALW-SWTOWKG-EQPT CHG-ACCMD-<MOD_TACC>
CONN-TACC-<MOD_TACC> DISC-TACC
DLT-CRS-<PATH>
DLT-EQPT
ED-<MOD_PATH> ED-CRS-<PATH>
ED-EC1
ED-EQPT
ED-NE-PATH
ED-VT1
ENT-CRS-<PATH>
ENT-EQPT INH-SWTOPROTN-EQPT INH-SWTOWKG-EQPT INIT-REG-<MOD2>
INIT-SYS OPR-LPBK-<MOD2_IO> REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM <MOD2>
RLS-LPBK-<MOD2_IO>
RMV-<MOD2_IO>
|
RST-<MOD2_IO>
RTRV-<PATH>
RTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EC1
RTRV-EQPT
RTRV-INV
RTRV-NE-PATH
RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH> RTRV-PMSCHED-<MOD2> RTRV-PTHTRC-<STS_PATH> RTRV-TACC
RTRV-TH-<MOD2>
RTRV-TH-ALL
RTRV-VT
SCHED-PMREPT-<MOD2> SET-PMMODE-<STS_PATH> SET-TH-<MOD2> SW-TOPROTN-EQPT SW-TOWKG-EQPT
|
FC-MR-4
|
DLT-CRS-<PATH>
DLT-EQPT
DLT-VCG
ED-<MOD_PATH>
ED-CRS-<PATH>
ED-FC
ED-NE-PATH
ENT-CRS-<PATH>
ENT-EQPT
ENT-VCG
INIT-REG-FC
INIT-SYS
REPT ALM <MOD2ALM>
REPT ALM EQPT
REPT DBCHG
REPT EVT <MOD2ALM>
REPT EVT EQPT
RMV-<MOD2_IO>
RST-<MOD2_IO>
RTRV-<PATH> RTRV-ALM-<MOD2ALM>
|
RTRV-ALM-ALL
RTRV-ALM-EQPT
RTRV-ALM-FC
RTRV-COND-<MOD2ALM>
RTRV-COND-ALL
RTRV-COND-EQPT
RTRV-COND-FC
RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EQPT
RTRV-FC
RTRV-INV
RTRV-NE-PATH
RTRV-POS
RTRV-PROTNSW-<PATH>
RTRV-PTHTRC-<STS_PATH>
RTRV-STS
RTRV-TH-ALL
RTRV-VCG
SET-TH-<MOD2>
|
G1000-4
|
DLT-CRS-<PATH>
DLT-EQPT
ED-<MOD_PATH> ED-CRS-<PATH>
ED-G1000
ED-NE-PATH
ENT-CRS-<PATH>
ENT-EQPT
INIT-REG-G1000
INIT-SYS
OPR-LPBK-<MOD2_IO>
REPT ALM EQPT REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM> RLS-LPBK-<MOD2_IO>
RLS-PROTNSW-<PATH>
RMV-<MOD2_IO>
|
RST-<MOD2_IO>
RTRV-<PATH>
RTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EQPT
RTRV-G1000
RTRV-INV
RTRV-NE-PATH RTRV-PROTNSW-<PATH>
RTRV-PTHTRC-<STS_PATH>
RTRV-STS
RTRV-TH-ALL
|
ML1000-2, ML100T-12
|
COPY-IOSCFG
DLT-CRS-<PATH>
DLT-EQPT
ED-<MOD_PATH> ED-CRS-<PATH>
ED-NE-PATH
ENT-CRS-<PATH>
ENT-EQPT
INIT-SYS
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT ALM <MOD2ALM> REPT DBCHG
REPT EVT EQPT
REPT EVT IOSCFG REPT EVT <MOD2ALM>
RMV-<MOD2_IO> RST-<MOD2_IO>
RTRV-<PATH>
|
RTRV-ALM-ALL RTRV-ALM-EQPT
RTRV-ALM-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EQPT
RTRV-FSTE
RTRV-GIGE
RTRV-INV
RTRV-NE-PATH
RTRV-POS RTRV-PROTNSW-<PATH>
RTRV-PTHTRC-<STS_PATH>
RTRV-STS
RTRV-TH-ALL
|
MXP_2.5G_10G, TXP_MR_10G
|
DLT-EQPT
DLT-FFP-CLNT
ED-CLNT
ED-DWDM
ED-FFP-CLNT
ED-OCH
ED-SYNCN (MXP) ED-TRC-CLNT
ENT-EQPT
ENT-FFP-CLNT INIT-REG-CLNT
INIT-SYS OPR-LPBK-<MOD2_IO> OPR-PROTNSW-CLNT
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM <MOD2> RLS-PROTNSW-CLNT RMV-<MOD2_IO> RST-<MOD2_IO> RTRV-ALM-ALL,
|
RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM> RTRV-ALMTH-<MOD2ALM> RTRV-CLNT
RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-DWDM
RTRV-EQPT
RTRV-FFP-CLNT
RTRV-INV
RTRV-OCH
RTRV-PM-<MOD2> RTRV-PMSCHED-<MOD2> RTRV-PMSCHED-ALL RTRV-PROTNSW-CLNT RTRV-SYNCN (MXP) RTRV-TH-<MOD2> RTRV-TRC-CLNT RTRV-TRC-OCH SCHED-PMREPT-<MOD2>
SET-ALMTH-<MOD2>
SET-ALMTH-EQPT
SET-TH-<MOD2>
|
OC12, OC12-4, OC48, OC48AS, OC192
|
CHG-ACCMD-<MOD_TACC> CONN-TACC-<MOD_TACC> DISC-TACC
DLT-<MOD_RING>
DLT-CRS-<PATH>
DLT-EQPT DLT-FFP-<OCN_TYPE> DLT-UCP-CC
DLT-UCP-IF
ED-<MOD_PATH>
ED-<MOD_RING>
ED-CRS-<PATH> ED-FFP-<OCN_TYPE>
ED-NE-PATH
ED-UCP-CC
ED-UCP-IF
ED-VT1
ED-<OCN_TYPE>
ENT-CRS-VT1 ENT-CRS-<PATH>
ENT-EQPT ENT-FFP-<OCN_TYPE> ENT-UCP-CC
ENT-UCP-IF EX-SW-<OCN_BLSR> INIT-REG-<MOD2>
INIT-SYS OPR-LPBK-<MOD2_IO> OPR-PROTNSW-VT1 OPR-PROTNSW-<OCN_TYPE> OPR-PROTNSW-<PATH> OPR-SYNCNSW REPT ALM EQPT
REPT ALM RING
REPT ALM SYNCN
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT RING
REPT EVT SYNCN
REPT EVT <MOD2ALM> REPT PM <MOD2>
RLS-LPBK-<MOD2_IO>
|
RLS-PROTNSW-<OCN_TYPE> RLS-PROTNSW-<PATH> RLS-SYNCNSW RMV-<MOD2_IO> RST-<MOD2_IO> RTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-RING RTRV-ALM-SYNCN RTRV-ALM-<MOD2ALM> RTRV-<MOD_RING>
RTRV-COND-ALL
RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-COND-RING
RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EQPT RTRV-FFP-<OCN_TYPE> RTRV-INV
RTRV-NE-IPMAP
RTRV-NE-PATH RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH> RTRV-PMSCHED-<MOD2>
RTRV-PROTNSW-<OCN_TYPE>RTRV-PROTNSW-<PATH> RTRV-PROTNSW-VT1 RTRV-PTHTRC-<STS_PATH> (OC48 AS, OC192)
RTRV-TACC
RTRV-TH-<MOD2>
RTRV-TH-ALL
RTRV-VT1 (OC48, OC48AS, OC192)
RTRV-<OCN_TYPE> RTRV-<PATH> RTRV-TRC-<OCN_BLSR> RTRV-UCP-CC
RTRV-UCP-IF SCHED-PMREPT-<MOD2>
SET-PMMODE-<STS_PATH> SET-TH-<MOD2>
|
OC3, OC3-8
|
CHG-ACCMD-<MOD_TACC> CONN-TACC-<MOD_TACC> DISC-TACC
DLT-CRS-VT1 DLT-CRS-<PATH>
DLT-EQPT DLT-FFP-<OCN_TYPE> DLT-UCP-CC
DLT-UCP-IF
ED-<MOD_PATH> ED-<MOD_RING>
ED-<OCN_TYPE>
ED-CRS-<PATH> ED-FFP-<OCN_TYPE>
ED-NE-PATH
ED-UCP-CC
ED-UCP-IF
ENT-CRS-<PATH>
ENT-EQPT ENT-FFP-<OCN_TYPE> ENT-UCP-CC
ENT-UCP-IF EX-SW-<OCN_BLSR> (OC3-8) INIT-REG-<MOD2>
INIT-SYS
OPR-LPBK-<MOD2_IO> OPR-PROTNSW-<OCN_TYPE> OPR-PROTNSW-<PATH> OPR-SYNCNSW
REPT ALM EQPT
REPT ALM SYNCN REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT SYNCN
REPT EVT <MOD2ALM> REPT PM <MOD2>
RLS-LPBK-<MOD2_IO>
|
RLS-PROTNSW-<OCN_TYPE> RLS-PROTNSW-<PATH> RLS-SYNCNSW RMV-<MOD2_IO> RST-<MOD2_IO> (OC3, OC3-8) RTRV-TACCRTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-SYNCN
RTRV-ALM-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-CRS
RTRV-CRS-VT1 RTRV-CRS-<PATH>
RTRV-EQPT RTRV-FFP-<OCN_TYPE> RTRV-INV
RTRV-NE-IPMAP
RTRV-NE-PATH RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH>
RTRV-PMSCHED-<MOD2> RTRV-PROTNSW-<OCN_TYPE> RTRV-PROTNSW-<PATH> RTRV-PTHTRC-<STS_PATH>
RTRV-TH-<MOD2>
RTRV-TH-ALL
RTRV-VT
RTRV-<OCN_TYPE> RTRV-<PATH>
RTRV-UCP-CC
RTRV-UCP-IF SCHED-PMREPT-<MOD2> SET-PMMODE-<STS_PATH> SET-TH-<MOD2>
|
OPT-BST, OPT-PRE
|
DLT-EQPT
DLT-LNK-<MOD20>
DLT-OSC (OPT-BST)
DLT-WLEN
ED-EQPT
ED-LNK-<MOD20>
ED-OSC (OPT-BST)
ED-OTS
ED-WDMANS ED-WLEN
ENT-EQPT
ENT-LNK-<MOD20> ENT-WLEN
INIT-REG-<MOD2> OPR-LASER-OTS
OPR-LNK
OPR-WDMANS
REPT ALM RING (OPT-PRE) REPT ALM WLEN
REPT ALM <MOD2ALM>
REPT EVT OSC (OPT-PRE) REPT EVT WLEN
REPT EVT <MOD2ALM>
REPT PM <MOD2> RLS-LASER-OTS
RMV-<MOD2_IO>
RST-<MOD2_IO>
|
RTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-OSC (OPT-PRE) RTRV-ALM-WLEN RTRV-ALMTH-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT
RTRV-COND-OSC (OPT-PRE) RTRV-COND-WLEN RTRV-EQPT
RTRV-INV RTRV-LNK-<MOD20> RTRV-OSC (OPT-PRE) RTRV-OTS
RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH> RTRV-PMSCHED-<MOD2> RTRV-PMSCHED-ALL RTRV-TH-<MOD2> RTRV-WDMANS
RTRV-WLEN SCHED-PMREPT-<MOD2> SET-ALMTH-<MOD2>
SET-ALMTH-EQPT SET-TH-<MOD2>
|
OSCM, OSCMS
|
DLT-EQPT
DLT-LNK-<MOD20>
DLT-OSC
DLT-WLEN
ED-EQPT
ED-LNK-<MOD20>
ED-OSC
ED-OTS
ED-SYNCN
ED-WDMANS
ED-WLEN
ED-<OCN_TYPE>
ENT-EQPT
ENT-LNK-<MOD20> ENT-WLEN
INIT-REG-<MOD2>
OPR-LNK
OPR-WDMANS
REPT ALM RING
REPT ALM WLEN
REPT ALM <MOD2ALM>
REPT EVT OSC
REPT EVT WLEN
REPT EVT <MOD2ALM>
REPT PM <MOD2> RMV-<MOD2_IO>
RST-<MOD2_IO>
|
RTRV-ALM-ALL RTRV-ALM-EQPT RTRV-ALM-OSC
RTRV-ALM-WLEN RTRV-ALMTH-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-OSC RTRV-COND-WLEN RTRV-EQPT
RTRV-INV RTRV-LNK-<MOD20> RTRV-OSC
RTRV-OTS
RTRV-PM-<MOD2> RTRV-PMMODE-<STS_PATH> RTRV-PMSCHED-<MOD2> RTRV-PMSCHED-ALL RTRV-SYNCN RTRV-TH-<MOD2> RTRV-<OCN_TYPE> RTRV-WDMANS
RTRV-WLEN SCHED-PMREPT-<MOD2> SET-ALMTH-<MOD2>
SET-ALMTH-EQPT SET-TH-<MOD2>
|
TCC2
|
APPLY
COPY-RFILE
|
REPT DBCHG
REPT EVT FXFR
|
TXP_MR_2.5G, TXPP_MR_2.5G
|
DLT-EQPT
DLT-FFP-CLNT (TXP)
ED-CLNT
ED-DWDM
ED-FFP-CLNT (TXP) ED-FFP-OCH (TXP-P)
ED-OCH
ED-TRC-OCH
ENT-EQPT
ENT-FFP-CLNT (TXP) INIT-REG-CLNT
INIT-SYS OPR-LPBK-<MOD2_IO> OPR-PROTNSW-CLNT (TXP) OPR-PROTNSW-OCH (TXP-P) REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM <MOD2> RLS-PROTNSW-CLNT (TXP) RLS-PROTNSW-OCH (TXP-P) RMV-<MOD2_IO> RST-<MOD2_IO> RTRV-ALM-ALL
|
RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM> RTRV-ALMTH-<MOD2ALM> RTRV-CLNT
RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-DWDM
RTRV-EQPT
RTRV-FFP-CLNT (TXP) RTRV-FFP-OCH (TXP-P) RTRV-INV
RTRV-OCH
RTRV-PM-<MOD2> RTRV-PMSCHED-<MOD2> RTRV-PMSCHED-ALL RTRV-PROTNSW-CLNT (TXP) RTRV-PROTNSW-OCH (TXP-P) RTRV-TH-<MOD2> RTRV-TRC-CLNT RTRV-TRC-OCH SCHED-PMREPT-<MOD2> SET-ALMTH-<MOD2>
SET-ALMTH-EQPT SET-TH-<MOD2>
|
XC, XCVT, XC192
|
ALW-SWDX-EQPT
DLT-EQPT
ENT-EQPT
INH-SWDX-EQPT
INIT-SYS
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
|
REPT SW
RTRV-ALM-ALL
RTRV-ALM-EQPT
RTRV-ALM-<MOD2ALM> RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-EQPT
RTRV-INV
SW-DX-EQPT
|
XCVXL
|
REPT DBCHG
|
|
3.3 TL1 Commands by Card (ONS 15327)
Table 3-3 TL1 Commands by Card (Cisco ONS 15327)
Card
|
Applicable Commands
|
XTC/DS1
|
CHG-ACCMD-<MOD_TACC>
CONN-TACC-<MOD_TACC>
DISC-TACC
DLT-CRS-<PATH>
ED-<MOD_PATH>
ED-CRS-<PATH>
ED-EQPT
ED-T1
ENT-CRS-<PATH>
ENT-EQPT
INH-SWTOPROTN-EQPT
INH-SWTOWKG-EQPT
INIT-REG-<MOD2>
INIT-SYS
OPR-LPBK-<MOD2_IO>
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM
RLS-LPBK-<MOD2_IO>
RMV-<MOD2_IO>
RST-<MOD2_IO>
|
RTRV-<PATH>
RTRV-ALM-ALL
RTRV-ALM-EQPT
RTRV-ALM-<MOD2ALM>
RTRV-COND-ALL
RTRV-COND-EQPT
RTRV-COND-<MOD2ALM>
RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EQPT
RTRV-INV
RTRV-PM-<MOD2>
RTRV-PMSCHED-ALL
RTRV-PMSCHED-<MOD2>
RTRV-PTHTRC-<STS_PATH>
RTRV-T1
RTRV-TACC
RTRV-TH-<MOD2>
RTRV-VT
SET-PMMODE-<STS_PATH>
SET-TH-<MOD2>
SW-TOPROTN-EQPT
SW-TOWKG-EQPT
|
XTC/DS3
|
CHG-ACCMD-<MOD_TACC>
CONN-TACC-<MOD_TACC>
DISC-TACC
DLT-CRS-<PATH>
ED-<MOD_PATH>
ED-CRS-<PATH>
ED-EQPT
ED-T3
ENT-CRS-<PATH>
ENT-EQPT
INH-SWTOPROTN-EQPT
INH-SWTOWKG-EQPT
INIT-REG-<MOD2>
INIT-SYS
OPR-LPBK-<MOD2_IO>
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM
RLS-LPBK-<MOD2_IO>
RMV-<MOD2_IO>
|
RST-<MOD2_IO>
RTRV-<PATH>
RTRV-ALM-ALL
RTRV-ALM-EQPT
RTRV-ALM-<MOD2ALM>
RTRV-COND-ALL
RTRV-COND-EQPT
RTRV-COND-<MOD2ALM>
RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EQPT
RTRV-INV
RTRV-PM-<MOD2>
RTRV-PMMODE-<STS_PATH>
RTRV-PMSCHED-ALL
RTRV-PMSCHED-<MOD2>
RTRV-PTHTRC-<STS_PATH>
RTRV-T3
RTRV-TACC
RTRV-TH-<MOD2>
SET-PMMODE-<STS_PATH>
SET-TH-<MOD2>
|
OC3, OC12, OC48
|
CHG-ACCMD-<MOD_TACC>
CONN-TACC-<MOD_TACC>
DISC-TACC
DLT-<MOD_RING> (OC12, OC48)
DLT-CRS-<PATH>
DLT-EQPT
DLT-FFP-<OCN_TYPE>
ED-<MOD_PATH>
ED-<MOD_RING> (OC12, OC48)
ED-<OCN_TYPE>
ED-CRS-<PATH>
ED-FFP-<OCN_TYPE>
ENT-<MOD_RING> (OC12, OC48)
ENT-CRS-<PATH>
ENT-EQPT
ENT-FFP-<OCN_TYPE>
EX-SW-<OCN_BLSR> (OC12, OC48)
INIT-REG-<MOD2>
INIT-SYS
OPR-LPBK-<MOD2_IO>
OPR-PROTNSW-<OCN_TYPE>
OPR-PROTNSW-<PATH>
OPR-SYNCNSW
REPT ALM EQPT
REPT ALM RING (OC12, OC48)
REPT ALM SYNCN
REPT ALM <MOD2ALM>
REPT EVT EQPT
REPT EVT RING (OC12, OC48)
REPT EVT SYNCN
REPT EVT <MOD2ALM>
REPT PM
RLS-LPBK-<MOD2_IO>
RLS-PROTNSW-<OCN_TYPE>
|
RLS-PROTNSW-<PATH>
RLS-SYNCNSW
RMV-<MOD2_IO>
RST-<MOD2_IO>
RTRV-<PATH>
RTRV-ALM-ALL
RTRV-ALM-EQPT
RTRV-ALM-SYNCN
RTRV-ALM-<MOD2ALM>
RTRV-<MOD_RING> (OC12, OC48)
RTRV-COND-ALL
RTRV-COND-EQPT
RTRV-COND-<MOD2ALM>
RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EQPT
RTRV-FFP-<OCN_TYPE>
RTRV-INV
RTRV-NE-IPMAP
RTRV-PM-<MOD2>
RTRV-PMMODE-<STS_PATH>
RTRV-PMSCHED-ALL
RTRV-PMSCHED-<MOD2>
RTRV-PROTNSW-VT1
RTRV-PROTNSW-<OCN_TYPE>
RTRV-PROTNSW-<PATH>
RTRV-PTHTRC-<STS_PATH> (OC3)
RTRV-TACC
RTRV-TH-<MOD2>
RTRV-TRC-<OCN_BLSR> (OC12, OC48)
RTRV-VT
RTRV-<OCN_TYPE>
SET-PMMODE-<STS_PATH>
SET-TH-<MOD2>
|
E100T, E1000T
|
DLT-EQPT
ENT-EQPT
INIT-SYS
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM (E100T)
|
RTRV-ALM-ALL
RTRV-ALM-EQPT
RTRV-ALM-<MOD2ALM>
RTRV-COND-ALL
RTRV-COND-EQPT
RTRV-COND-<MOD2ALM>
RTRV-EQPT
RTRV-INV
|
XTC
|
APPLY
COPY-RFILE
DLT-EQPT
ED-BITS
ED-NE-GEN
ED-NE-SYNCN
ED-SYNCN
ENT-EQPT
INIT-SYS
OPR-ACO-ALL
OPR-SYNCNSW
REPT ALM BITS
REPT ALM EQPT
REPT ALM SYNCN
REPT ALM <MOD2ALM>
REPT EVT BITS
REPT EVT EQPT
REPT EVT FXFR
REPT EVT SYNCN
|
REPT EVT <MOD2ALM>
RLS-SYNCNSW
RTRV-ALM-ALL
RTRV-ALM-BITS
RTRV-ALM-EQPT
RTRV-ALM-SYNCN
RTRV-ALM-<MOD2ALM>
RTRV-BITS
RTRV-COND-ALL
RTRV-COND-BITS
RTRV-COND-EQPT
RTRV-COND-SYNCN
RTRV-COND-<MOD2ALM>
RTRV-EQPT
RTRV-INV
RTRV-NE-GEN
RTRV-NE-SYNCN
RTRV-SYNCN
|
G1000-2
|
DLT-CRS-<PATH>
DLT-EQPT
ED-<MOD_PATH>
ED-CRS-<PATH>
ED-G1000
ENT-CRS-<PATH>
ENT-EQPT
INIT-REG-G1000
INIT-SYS
OPR-LPBK-<MOD2_IO>
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
RLS-LPBK-<MOD2_IO>
|
RMV-<MOD2_IO>
RST-<MOD2_IO>
RTRV-<PATH>
RTRV-ALM-ALL
RTRV-ALM-EQPT
RTRV-ALM-<MOD2ALM>
RTRV-COND-ALL
RTRV-COND-EQPT
RTRV-COND-<MOD2ALM>
RTRV-CRS
RTRV-CRS-<PATH>
RTRV-EQPT
RTRV-G1000
RTRV-INV
RTRV-PTHTRC-<STS_PATH>
|
XTC/XCVT
|
ENT-EQPT
INH-SWDX-EQPT
INIT-SYS
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT SW
RTRV-ALM-ALL
|
RTRV-ALM-EQPT
RTRV-ALM-<MOD2ALM>
RTRV-COND-ALL
RTRV-COND-EQPT
RTRV-COND-<MOD2ALM>
RTRV-EQPT
RTRV-INV
SW-DX-EQPT
|
XTC/AIC
|
ENT-EQPT
INIT-SYS
OPR-EXT-CONT
REPT ALM ENV
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT EVT ENV
REPT EVT EQPT
REPT EVT <MOD2ALM>
RLS-EXT-CONT
RTRV-ALM-ALL
RTRV-ALM-ENV
RTRV-ALM-EQPT
|
RTRV-ALM-<MOD2ALM>
RTRV-ATTR-CONT
RTRV-ATTR-ENV
RTRV-COND-ALL
RTRV-COND-ENV
RTRV-COND-EQPT
RTRV-COND-<MOD2ALM>
RTRV-EQPT
RTRV-EXT-CONT
RTRV-INV
SET-ATTR-CONT
SET-ATTR-ENV
|
MXP_2.5G_10G, TXP_MR_10G
|
DLT-EQPT
DLT-FFP-CLNT
ED-CLNT
ED-DWDM
ED-FFP-CLNT
ED-OCH
ED-SYNCN (MXP) ED-TRC-CLNT
ENT-EQPT
ENT-FFP-CLNT INIT-REG-CLNT
INIT-SYS OPR-LPBK-<MOD2_IO> OPR-PROTNSW-CLNT
REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM <MOD2> RLS-PROTNSW-CLNT RMV-<MOD2_IO> RST-<MOD2_IO> RTRV-ALM-ALL,
|
RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM> RTRV-ALMTH-<MOD2ALM> RTRV-CLNT
RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-DWDM
RTRV-EQPT
RTRV-FFP-CLNT
RTRV-INV
RTRV-OCH
RTRV-PM-<MOD2> RTRV-PMSCHED-<MOD2> RTRV-PMSCHED-ALL RTRV-PROTNSW-CLNT RTRV-SYNCN (MXP) RTRV-TH-<MOD2> RTRV-TRC-CLNT RTRV-TRC-OCH SCHED-PMREPT-<MOD2>
SET-ALMTH-<MOD2>
SET-ALMTH-EQPT
SET-TH-<MOD2>
|
TXP_MR_2.5G, TXPP_MR_2.5G
|
DLT-EQPT
DLT-FFP-CLNT (TXP)
ED-CLNT
ED-DWDM
ED-FFP-CLNT (TXP) ED-FFP-OCH (TXP-P)
ED-OCH
ED-TRC-OCH
ENT-EQPT
ENT-FFP-CLNT (TXP) INIT-REG-CLNT
INIT-SYS OPR-LPBK-<MOD2_IO> OPR-PROTNSW-CLNT (TXP) OPR-PROTNSW-OCH (TXP-P) REPT ALM EQPT
REPT ALM <MOD2ALM>
REPT DBCHG
REPT EVT EQPT
REPT EVT <MOD2ALM>
REPT PM <MOD2> RLS-PROTNSW-CLNT (TXP) RLS-PROTNSW-OCH (TXP-P) RMV-<MOD2_IO> RST-<MOD2_IO>
RTRV-ALM-ALL
|
RTRV-ALM-EQPT RTRV-ALM-<MOD2ALM> RTRV-ALMTH-<MOD2ALM> RTRV-CLNT
RTRV-COND-ALL RTRV-COND-EQPT RTRV-COND-<MOD2ALM> RTRV-DWDM
RTRV-EQPT
RTRV-FFP-CLNT (TXP) RTRV-FFP-OCH (TXP-P) RTRV-INV
RTRV-OCH
RTRV-PM-<MOD2> RTRV-PMSCHED-<MOD2> RTRV-PMSCHED-ALL RTRV-PROTNSW-CLNT (TXP) RTRV-PROTNSW-OCH (TXP-P) RTRV-TH-<MOD2> RTRV-TRC-CLNT RTRV-TRC-OCH SCHED-PMREPT-<MOD2> SET-ALMTH-<MOD2>
SET-ALMTH-EQPT SET-TH-<MOD2>
|
3.4 TL1 Commands
The commands and autonomous messages used for ONS 15454 and ONS 15327 are described in detail in this section and are listed alphabetically according to the first alpha character of the command string.
Each TL1 command must be less than or equal to 255 characters. Any command larger than 255 characters must be split into multiple commands. For example, if you use the ED-<MOD_PATH> command to edit the J1 EXPTRC/TRC message, path protection attributes, and TACC attributes and the command exceeds 255 characters the command will not be processed. You must use multiple ED-<MOD_PATH> commands instead.
Note
The CTAG of any TL1 line mode command is a mandatory field in this TL1 release.
Note
The AID definitions provided are supersets of the actual AID definitions.
Note
TL1 commands that are entered incorrectly are not completed.
Note
In release 3.3 and later, the ACT-USER command will return a DENY without any error message. Any other command will return DENY with the PLNA (Login Not Active) error message.
3.4.1 ACT-USER: Activate User
This command set-ups a session with the Network Element (NE).
Notes:
1.
Passwords are masked for the following security commands: ACT-USER, COPY-RFILE, COPY-IOSCFG, ED-PID, ENT-USER-SECU and ED-USER-SECU. Access to a TL1 session via any means will have the password masked. The CTC Request History and Message Log will also show the masked commands. When a password-masked command is re-issued by double-clicking the command from CTC Request History, the password will still be masked in the CTC Request History and Message Log. The actual password that was previously issued will be sent to the NE. To use a former command as a template only, single-click the command in CTC Request History. The command will be placed in the Command Request text box, where you can edit the appropriate fields prior to re-issuing it.
2.
This command is backwards compatible with userids and passwords from ONS 15454 2.X software versions according to the following rules:
ACT-USER:[TID]:[STRING]:CTAG::[STRING]
a.
The syntax of the userid (first [STRING]) and the password (second [STRING]) are not checked.
b.
Invalid syntax for both the userid and password is permitted, but the user can only log in if the userid/password match what is in the database.
c.
The userid and password cannot exceed 10 characters.
3.
For the ACT-USER command, it is required that no error code be transmitted except to convey that the login is granted or denied. Per TR-835, Appendix A, Section A.2:
"... the error codes corresponding to ACT ... do not apply to the ACT-USER command because this command requires that no error code be provided to the session request except to indicate that it has been denied. Before a session is established, a specific error code may reveal clues to an intruder attempting unauthorized entry."
Note
Starting with this release (R4.6) the following feature can be turned on or off and the default is off: A new user must change his or her password after establishing a session for the first time before continuing. All TL1 commands except for ED-PID and CANC-USER will be denied until the password is changed. Once the password has been changed, a user can execute any command that his security level allows. If the user logs out without changing his password each following session will DENY all commands, except ED-PID and CANC-USER, until the password is changed.
Section
|
ACT-USER Description
|
Category
|
System
|
Security
|
N/A
|
Related Messages
|
ALW-MSG-SECU ALW-USER-SECU
CANC
CANC-USER
CANC-USER-SECU DLT-USER-SECU
ED-CMD-SECU
ED-PID
ED-USER-SECU ENT-USER-SECU
|
INH-MSG-SECU
INH-USER-SECU
REPT ALM SECU
REPT EVT SECU
REPT EVT SESSION
RTRV-CMD-SECU
RTRV-DFLT-SECU
RTRV-USER-SECU
SET-ATTR-SECUDFLT
|
Input Format
|
ACT-USER:[<TID>]:<UID>:<CTAG>::<PID>;
where:
• <UID> is the user identifier; <UID> is any combination of up to 10 alphanumeric characters. <UID> is a string and must not be null
• <PID> is the user password; <PID> is any combination of up to 10 alphanumeric characters. <PID> is a string and must not be null
Note CTC allows <UID> and <PID> of up to 20 characters. The 20 character CTC-entered <UID> and <PID> are not valid TL1 <UID> and <PID>
|
Input Example
|
ACT-USER:PETALUMA:TERRI:100::MYPASSWD;
|
Output Format
|
SID DATE TIME A CTAG COMPLD "<UID>:<LASTLOGINTIME>,<UNSUCCESSFULLOGINS>" ;
where:
• <UID> userid of the person logging in; <UID> is a string
• <LASTLOGINTIME> date and time of the last successful connection to the NE (not including current login); <LASTLOGINTIME> is a string
• <UNSUCCESSFULLOGINS> number of unsuccessful login attempts since the last successful login; <UNSUCCESSFULLOGINS> is an integer
|
Output Example
|
TID-000 1998-06-20 14:30:00 A 001 COMPLD "TERRI:2003-01-02 14-04-49,0" ;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.2 ALW-MSG-ALL: Allow Message All
This command instructs the NE to enter a mode in which all the REPT ALM and REPT EVT autonomous messages are transmitted. See the INH-MSG-ALL command to inhibit these autonomous messages. When a TL1 session starts, the REPT ALM and REPT EVT messages are allowed by default.
Note
If this command is issued twice in the same session, the SAAL (Status, Already Allowed) error message will be returned. The optional fields in the e block are not supported.
Section
|
ALW-MSG-ALL Description
|
Category
|
System
|
Security
|
Retrieve
|
Related Messages
|
INH-MSG-ALL
|
|
Input Format
|
ALW-MSG-ALL:[<TID>]::<CTAG>[::,,];
|
Input Example
|
ALW-MSG-ALL:PETALUMA::549;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.3 ALW-MSG-DBCHG: Allow Database Change Message
This command enables REPT DBCHG. When a TL1 session starts, the REPT DBCHG messages are not allowed by default.
Note
This command is not defined in the GR.
Section
|
ALW-MSG-DBCHG Description
|
Category
|
Log
|
Security
|
Retrieve
|
Related Messages
|
INH-MSG-DBCHG
REPT DBCHG
|
|
Input Format
|
ALW-MSG-DBCHG:[<TID>]::<CTAG>[::,,];
|
Input Example
|
ALW-MSG-DBCHG:CISCO::123;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.4 ALW-MSG-SECU: Allow Message Security
This command enables REPT EVT SECU and REPT ALM SECU
Section
|
ALW-MSG-SECU Description
|
Category
|
Security
|
Security
|
Superuser
|
Related Messages
|
ACT-USER
ALW-USER-SECU
CANC
CANC-USER
CANC-USER-SECU DLT-USER-SECU
ED-CMD-SECU
ED-PID
ED-USER-SECU
ENT-USER-SECU
|
INH-MSG-SECU
INH-USER-SECU
REPT ALM SECU
REPT EVT SECU
REPT EVT SESSION
RTRV-CMD-SECU
RTRV-DFLT-SECU
RTRV-USER-SECU SET-ATTR-SECUDFLT
|
Input Format
|
ALW-MSG-SECU:[<TID>]::<CTAG>;
|
Input Example
|
ALW-MSG-SECU:PETALUMA::123;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.5 ALW-PMREPT-ALL: Allow Performance Report All
This command resumes processing all the PM reports that are inhibited. The allowance of the PM reporting is session-based, which means the command is only effective to the TL1 session that issues this command. REPT PM messages are inhibited by default for a session.
Section
|
ALW-PMREPT-ALL Description
|
Category
|
Performance
|
Security
|
Retrieve
|
Related Messages
|
INH-PMREPT-ALL
INIT-REG-<MOD2>
REPT PM <MOD2>
RTRV-PM-<MOD2>
RTRV-PMMODE-<STS_PATH>
RTRV-PMSCHED-<MOD2>
|
RTRV-PMSCHED-ALL
RTRV-TH-<MOD2>
RTRV-TH-ALL
SCHED-PMREPT-<MOD2>
SET-PMMODE-<STS_PATH>
SET-TH-<MOD2>
|
Input Format
|
ALW-PMREPT-ALL:[<TID>]::<CTAG>;
|
Input Example
|
ALW-PMREPT-ALL:CISCONODE::123;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.6 ALW-SWDX-EQPT: Allow Switch Duplex Equipment
(Cisco ONS 15454 only)
This command allows automatic or manual switching on a duplex system containing duplexed or redundant equipment. To inhibit an NE switching to duplex, use the INH-SWDX-EQPT command.
ALW-SWDX-EQPT is not used for SONET line or electrical card protection switching. For SONET line or path protection switching commands, see OPR-PROTNSW and RLS-PROTNSW commands. For the electrical card protection switching, see the SW-TOWKG-EQPT and SW-TOPROTN-EQPT commands.
Note
This command applies to the XC, XCVT, or XC10G equipment units only in this release.
Section
|
ALW-SWDX-EQPT Description
|
Category
|
Equipment
|
Security
|
Maintenance
|
Related Messages
|
ALW-SWTOPROTN-EQPT ALW-SWTOWKG-EQPT
DLT-EQPT
ED-EQPT ENT-EQPT EX-SW-<OCN_BLSR> INH-SWDX-EQPT INH-SWTOPROTN-EQPT INH-SWTOWKG-EQPT
REPT ALM EQPT
REPT EVT EQPT
|
REPT SW
RTRV-ALM-EQPT
RTRV-ALMTH-EQPT RTRV-COND-EQPT
RTRV-EQPT
SET-ALMTH-EQPT
SW-DX-EQPT
SW-TOPROTN-EQPT SW-TOWKG-EQPT
|
Input Format
|
ALW-SWDX-EQPT:[<TID>]:<AID>:<CTAG>[::];
where:
• <AID> is the XC/XCVT/XC10G equipment AID from the "EQPT" section on page 4-27
|
Input Example
|
ALW-SWDX-EQPT:CISCO:SLOT-8:1234;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.7 ALW-SWTOPROTN-EQPT: Allow Switch to Protection Equipment
(Cisco ONS 15454 only)
This command allows automatic or manual switching of an equipment unit back to a protection status. Use the INH-SWTOPROTN-EQPT command to inhibit an NE from switching to protection.
ALW-SWTOPROTN-EQPT is used for non-SONET line cards (e.g. DS1, DS3, DS3XM, and EC1). DS1 and DS3 cards have 1:1 and 1:N equipment protection. DS3XM and EC1 cards have only 1:1 equipment protection. When this command is given to a working unit, the working unit will be allowed to switch to the protection unit. When this command is given to a protection unit, any working unit in the protection group is allowed to switch to the protection unit.
The standing condition of INHSWPR on the unit specified by the AID will be cleared.
Notes:
1.
This command only supports one value of the <DIRN> parameter - BTH. A command with any other value is considered an incorrect use of the command. An IDNV (Input, Data Not Valid) error message should be responsed.
2.
This command is not used for the common control (TCC2 or XC/XCVT/XC10G) cards. A command on a common control card will receive an IIAC (Input, Invalid Access Identifier) error message. To use the common control card switching commands, use the SW-DX-EQPT and ALW-SWDX-EQPT commands.
3.
This command is not used for SONET (OCN) cards. A command on a SONET card will receive an IIAC (Input, Invalid Access identifier) error message. To use a SONET card switching command, use OPR-PROTNSW and RLS-PROTNSW commands.
4.
If this command is used on a card that is not in a protection group, the SNVS (Status, Not in Valid State) error message should be responsed.
5.
If this command is used on a card that is not in the inhibit state, the SAAL (Status, Already Allowed) error message should be responsed.
6.
The following situation(s) are allowed and will not generate any error response: Sending this command to missing cards so long as none of the previous error conditions apply.
Section
|
ALW-SWTOPROTN-EQPT Description
|
Category
|
Equipment
|
Security
|
Maintenance
|
Related Messages
|
ALW-SWDX-EQPT ALW-SWTOWKG-EQPT DLT-EQPT
ED-EQPT
ENT-EQPT
EX-SW-<OCN_BLSR> INH-SWDX-EQPT INH-SWTOPROTN-EQPT INH-SWTOWKG-EQPT
REPT ALM EQPT
|
REPT EVT EQPT
REPT SW
RTRV-ALM-EQPT RTRV-ALMTH-EQPT RTRV-COND-EQPT
RTRV-EQPT
SET-ALMTH-EQPT
SW-DX-EQPT SW-TOPROTN-EQPT SW-TOWKG-EQPT
|
Input Format
|
ALW-SWTOPROTN-EQPT:[<TID>]:<AID>:<CTAG>[::<DIRN>];
where:
• <AID> This parameter can either be the protection unit for which carrying traffic is to be allowed (release of lockout) or the working unit for which switching to protect is to be allowed (release of lock on); <AID> is from the "EQPT" section on page 4-27
• <DIRN> is the direction of the switching. The command only supports one value of the <DIRN> parameter - BTH. This parameter defaults to BTH; valid values for <DIRN> are shown in the "DIRECTION" section on page 4-56
|
Input Example
|
ALW-SWTOPROTN-EQPT:CISCO:SLOT-2:123::BTH;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.8 ALW-SWTOWKG-EQPT: Allow Switch to Working Equipment
(Cisco ONS 15454 only)
This command allows automatic or manual switching of an equipment unit back to a working status. Use the INH-SWTOWKG-EQPT command to inhibit an NE from switching to working. ALW-SWTOWKG-EQPT is used for non-SONET line cards (e.g. DS1, DS3, DS3XM, and EC1). DS1 and DS3 cards have 1:1 and 1:N equipment protection. DS3XM and EC1 cards have only 1:1 equipment protection.
When this command is given to a working unit, the working unit will be allowed to carry traffic. In the case of revertive protection, the traffic will switch immediately from the protection unit to the working unit regardless of the reversion time setting.
When this command is given to a protection unit, the protection unit will be allowed to switch back to the working unit currently protected as long as the working unit has not raised INHSWWKG. In the case of revertive protection, the traffic will switch immediately from the protection unit to the working unit regardless of the reversion time setting. In the case of non-revertive protection, the protection unit will continue to carry the traffic.
The standing condition of INHSWWKG on the unit specified by the AID will be cleared.
Notes:
1.
This command only supports one value of the <DIRN> parameter - BTH. A command with any other value is considered an incorrect use of the command. An IDNV (Input, Data Not Valid) error message should be responsed.
2.
This command is not used for the common control (TCC2 or XC/XCVT/XC10G) cards. A command on a common control card will receive an IIAC (Input, Invalid Access Identifier) error message. To use the common control card switching commands, use the SW-DX-EQPT and ALW-SWDX-EQPT commands.
3.
This command is not used for SONET (OCN) cards. A command on a SONET card will receive an IIAC (Input, Invalid Access Identifier) error message. To use a SONET card switching command, use the OPR-PROTNSW and RLS-PROTNSW commands.
4.
If this command is used on a card that is not in a protection group, the SNVS (Status, Not in Valid State) error message should be responsed.
5.
If this command is used on a card that is not in the inhibit state, the SAAL (Status, Already Allowed) error message should be responsed.
6.
The following situation(s) are allowed and will not generate any error response: sending this command to missing cards as long as none of the previous error conditions apply.
Section
|
ALW-SWTOWKG-EQPT Description
|
Category
|
Equipment
|
Security
|
Maintenance
|
Related Messages
|
ALW-SWDX-EQPT
ALW-SWTOPROTN-EQPT
DLT-EQPT
ED-EQPT
ENT-EQPT
EX-SW-<OCN_BLSR>
INH-SWDX-EQPT
INH-SWTOPROTN-EQPT
INH-SWTOWKG-EQPT
REPT ALM EQPT
|
REPT EVT EQPT
REPT SW
RTRV-ALM-EQPT
RTRV-ALMTH-EQPT
RTRV-COND-EQPT
RTRV-EQPT
SET-ALMTH-EQPT
SW-DX-EQPT
SW-TOPROTN-EQPT
SW-TOWKG-EQPT
|
Input Format
|
ALW-SWTOWKG-EQPT:[<TID>]:<AID>:<CTAG>[::<DIRN>];
where:
• <AID> This parameter can either be the protection unit for which switching back to working is to be allowed (release of lock on) or the working unit for which carrying traffic is to be allowed (release of lockout); <AID> is from the "EQPT" section on page 4-27
• <DIRN> is the direction of the switching. The command only supports one value of the <DIRN> parameter - BTH. This parameter defaults to BTH; valid values for <DIRN> are shown in the "DIRECTION" section on page 4-56
|
Input Example
|
ALW-SWTOWKG-EQPT:CISCO:SLOT-2:123::BTH;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.9 ALW-USER-SECU: Allow User Security
This command enables a userid that has been disabled (e.g., via the INH-USER-SECU command) so the user can establish a session with the NE.
Section
|
ALW-USER-SECU Description
|
Category
|
Security
|
Security
|
Superuser
|
Related Messages
|
ACT-USER
ALW-MSG-SECU
CANC
CANC-USER
CANC-USER-SECU DLT-USER-SECU
ED-CMD-SECU
ED-PID
ED-USER-SECU
ENT-USER-SECU
|
INH-MSG-SECU
INH-USER-SECU
REPT ALM SECU
REPT EVT SECU
REPT EVT SESSION
RTRV-CMD-SECU
RTRV-DFLT-SECU
RTRV-USER-SECU
SET-ATTR-SECUDFLT
|
Input Format
|
ALW-USER-SECU:[<TID>]::<CTAG>::<UID>;
where:
• <UID> is the userid to enable. The userid can be a list of userids separated by `&'. The keyword ALL cannot be used to specify all users on an NE. <UID> is a string
|
Input Example
|
ALW-USER-SECU:PETALUMA::123::UID;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.10 APPLY: Apply
This command activates or reverts a software load during a software upgrade or downgrade process.
Note
An error will be generated if you attempt to activate an older software load or attempt to revert to a newer software load.
Section
|
APPLY Description
|
Category
|
File Transfer
|
Security
|
Superuser
|
Related Messages
|
COPY-RFILE
REPT EVT FXFR
|
|
Input Format
|
APPLY:[<TID>]::<CTAG>[::<MEM_SW_TYPE>];
where:
• <MEM_SW_TYPE> indicates memory switch action during the software upgrade; valid values are shown in the "DL_TYPE" section on page 4-57
|
Input Example
|
APPLY:CISCO::123::ACT;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.11 CANC: Cancel
Reports the occurrence of a session timeout event.
CANC is an autonomous message transmitted by the NE to a user when a session established by that user is terminated because no messages were exchanged for a long period of time, a timeout. There is a default timeout period based on the user's privilege/security level, and starting with Release 4.0 timeouts can be provisioned. The default timeouts based on privilege/security level are: superuser [SUPER] has the timeout period of 15 minutes., the Provision user [PROV] has the timeout period of 30 minutes, the Maintenance [MAINT] user has the timeout period of 60 minutes, the Retrieve user [RTRV] has no timeout.
When a timeout occurs, the corresponding port drops and the next session initiation at that port requires the regular login procedure.
The CANC message is only used to indicate that a session has been terminated because of a timeout. If a session is terminated for a different reason (e.g., forced logout, loss of communication), the REPT EVT SESSION message is used.
Section
|
CANC Description
|
Category
|
Security
|
Security
|
Retrieve
|
Related Messages
|
ACT-USER
ALW-MSG-SECU ALW-USER-SECU
CANC-USER
CANC-USER-SECU DLT-USER-SECU
ED-CMD-SECU
ED-PID
ED-USER-SECU
ENT-USER-SECU
|
INH-MSG-SECU
INH-USER-SECU
REPT ALM SECU
REPT EVT SECU
REPT EVT SESSION RTRV-CMD-SECU RTRV-DFLT-SECU RTRV-USER-SECU SET-ATTR-SECUDFLT
|
Output Format
|
SID DATE TIME A ATAG CANC "<UID>" ;
where:
• <UID> refers to the user's identification whose session is terminated due to timeout; <UID> is a string
|
Output Example
|
TID-000 1998-06-20 14:30:00 A 100.100 CANC "CISCO15" ;
|
3.4.12 CANC-USER: Cancel User
This command logs a user out of an active session with the NE.
Note
The USERID field of this command is a mandatory field.
For the CANC-USER command: CANC-USER:[TID]:[STRING]:CTAG
the syntax of the userid (first [STRING]) is not checked. Invalid syntax for the userid is permitted and the userid must not exceed 10 characters.
Section
|
CANC-USER Description
|
Category
|
Security
|
Security
|
Retrieve
|
Related Messages
|
ACT-USER
ALW-MSG-SECU ALW-USER-SECU
CANC
CANC-USER-SECU DLT-USER-SECU
ED-CMD-SECU
ED-PID
ED-USER-SECU ENT-USER-SECU
|
INH-MSG-SECU
INH-USER-SECU
REPT ALM SECU
REPT EVT SECU
REPT EVT SESSION
RTRV-CMD-SECU
RTRV-DFLT-SECU
RTRV-USER-SECU
SET-ATTR-SECUDFLT
|
Input Format
|
CANC-USER:[<TID>]:<USERID>:<CTAG>;
where:
• <USERID> identifies the user to the system; <USERID> is any combination of up to 10 alphanumeric characters. <USERID> is a string
Note CTC allows <UID> and <PID> of up to 20 characters. The 20 character CTC-entered <UID> and <PID> are not valid TL1 <UID> and <PID>
|
Input Example
|
CANC-USER:PETALUMA:TERRI:101;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.13 CANC-USER-SECU: Cancel User Security
This command forces a user off of the NE.
The UID specified can be a single userid or a list of userids separated by `&'. The keyword ALL is not permitted. The UID specified cannot be the userid of the administrator issuing the command.
Note
This command will log out ALL sessions on the NE (TL1 and CTC) of a user whose userid matches the UID specified in the command.
Section
|
CANC-USER-SECU Description
|
Category
|
Security
|
Security
|
Superuser
|
Related Messages
|
ACT-USER
ALW-MSG-SECU ALW-USER-SECU
CANC
CANC-USER
DLT-USER-SECU
ED-CMD-SECU
ED-PID
ED-USER-SECU ENT-USER-SECU
|
INH-MSG-SECU
INH-USER-SECU
REPT ALM SECU
REPT EVT SECU
REPT EVT SESSION
RTRV-CMD-SECU
RTRV-DFLT-SECU
RTRV-USER-SECU
SET-ATTR-SECUDFLT
|
Input Format
|
CANC-USER-SECU:[<TID>]:<UID>:<CTAG>;
where:
• <UID> is a user identifier, or list of UIDs separated by `&'. The keyword ALL is not permitted. <UID> is a string
|
Input Example
|
CANC-USER-SECU:PETALUMA:CISCO10:100;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.14 CHG-ACCMD-<MOD_TACC>: Change Test Access Mode (DS1, DS3I, E1, E3, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
See Table 4-11 on page 4-5 for supported modifiers by platform.
This command changes the test access (TACC) mode for the circuit being tested. For more information on TACC, refer to the "Test Access" section on page 1-21.
This may be a change from monitoring the data to inserting data into the STS. This command can only be applied to an existing TAP connection.
For this command to be applicable, you must first create the TAP using the ED-<MOD_PATH> command. Intrusive test access modes are traffic-affecting. If a facility/path is connected to a TAP in an intrusive test access mode, it is forced to go into the OOS-MT state. The forced transition could be traffic-affecting. The present state of the facility/path is stored by the NE and is restored when the TAP connection is brought down. Test access connections are dropped automatically if the TL1 session is terminated or is timed out.
Notes:
1.
If there is no TAP connection, a DENY error message is returned.
2.
If a requested condition already exists, a SRCN error message is returned.
3.
If a requested access configuration is invalid, a SRAC error message is returned
4.
If a requested TAP does not exist, a RTEN error message is returned.
Section
|
CHG-ACCMD-<MOD_TACC> Description
|
Category
|
Test Access
|
Security
|
Maintenance
|
Related Messages
|
CONN-TACC-<MOD_TACC>
DISC-TACC
RTRV-TACC
|
|
Input Format
|
CHG-ACCMD-<MOD_TACC>:[<TID>]:<TAP>:<CTAG>::<MD>;
where:
• <TAP> indicates the test access path number selected by the NE. The <TAP> is used to identify all messages between the TSC and NE until the access point is released. The <TAP> number must be an integer with a range of 1 to 999. <TAP> is a string
Note This command only changes a single TAP at a time.
• <MD> indicates the test access mode (SPLTE, SPLTF, LOOPE, AND LOOPF require an external QRS input signal); valid values for <MD> are shown in the "TACC_MODE" section on page 4-91
|
Input Example
|
CHG-ACCMD-STS1:CISCO:8:123::MONE;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.15 CONN-TACC-<MOD_TACC>: Connect Test Access (DS1, DS3I, E1, E3, STS1, STS12C, STS192C, STS24C, STS3C, STS48C, STS6C, STS9C, T1, T3, VT1, VT2)
See Table 4-11 on page 4-5 for supported modifiers by platform.
This command connects the STS or VT defined by AID to the STS specified by the TAP number. For more information on TACC, refer to the "Test Access" section on page 1-21.
For this command to be applicable, you must first create the TAP using the ED-<MOD_PATH> command. Intrusive test access modes are traffic-affecting. If a facility/path is connected to a TAP in an intrusive test access mode, it is forced to go into the OOS-MT state. The forced transition could be traffic-affecting. The present state of the facility/path is stored by the NE and is restored when the TAP connection is brought down. Test access connections are dropped automatically if the TL1 session is terminated or is timed out.
Notes:
1.
If all TAPs are busy, a RABY error message is returned.
2.
If a requested TAP is busy, a RTBY error message is returned.
3.
If a requested TAP does not exist, a RTEN error message is returned.
4.
If a circuit is already connected to another TAP, a SCAT error message is returned.
5.
If a requested condition already exists, a SRCN error message is returned.
6.
If the AID is invalid, an IIAC (Input, Invalid Access Identifier) error message is returned.
7.
If an access is not supported, an EANS error message is returned.
8.
If a requested access configuration is invalid, a SRAC error message is returned.
9.
A connection can be made to a cross-connection in which case all modes of access are supported. A connection to an Unmapped AID (AID without a cross-connect on it) will allow only MONE, SPLTE, and LOOPE modes.
10.
A connection to the protect path of a 1+1, 1:1, or 1:N is not allowed; however, connecting to the PCA path of a two-fiber or four-fiber is supported. This will be preempted when a BLSR switch occurs.
Section
|
CONN-TACC-<MOD_TACC> Description
|
Category
|
Test Access
|
Security
|
Provisioning
|
Related Messages
|
CHG-ACCMD-<MOD_TACC> DISC-TACC RTRV-TACC
|
|
Input Format
|
CONN-TACC-<MOD_TACC>:[<TID>]:<SRC>:<CTAG>::<TAP>:MD=<MD>;
where:
• <SRC> is the AID from the "ALL" section on page 4-9 and must not be null
• <TAP> indicates the test access path number selected by the NE. The <TAP> is used to identify all messages between the TSC and the NE until the access point is released. The <TAP> number must be an integer with a range of 1 to 999. A null <TAP> defaults to an appropriate <TAP> number selected by the NE. <TAP> is an integer and a null value is equivalent to ALL
• <MD> indicates the test access mode (SPLTE, SPLTF, LOOPE and LOOPF require an external QRS input signal); valid values for <MD> are shown in the "TACC_MODE" section on page 4-91. <MD> must not be null
|
Input Example
|
CONN-TACC-STS1:CISCO:STS-2-1-4:123::8:MD=MONE;
|
Output Format
|
SID DATE TIME M CTAG COMPLD "<TAP>" ;
where:
• <TAP> indicates the test access path number selected by the NE. The <TAP> is used to identify all messages between the TSC and NE until the access point is released. The <TAP> number must be an integer with a range of 1 - 999. A null <TAP> defaults to an appropriate <TAP> number selected by the NE. <TAP> is an integer
|
Output Example
|
TID-000 1998-06-20 14:30:00 M 001 COMPLD "8" ;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.16 COPY-IOSCFG: Copy IOS Config File
(Cisco ONS 15454 only)
This command supports the following types of operations on the IOS configuration file of ML-series Ethernet cards:
1.
Uploading of startup IOS configuration file from the network to the node.
FTP is the only protocol allowed for uploading. When doing this operation, the SRC field must be a FTP URL string specifying the user name and password for FTP authentication, and specifying the host and the directory to locate the startup config file from the network. The DEST field must be a string of "STARTUP".
2.
Downloading of startup IOS configuration file from the node to the network.
FTP is the only protocol allowed for downloading. When doing this operation, the SRC field must be a string of "STARTUP". The DEST field must be a FTP URL string specifying the user name and password for FTP authentication, and specifying the host and the directory to store the startup config file.
Notes:
1.
The IOS configuration file is unique for each ML-series card, and is specified by the SLOT number in the AID field of the command.
2.
In the GNE/ENE environment, if the GNE firewall exists, the download (backup) of IOS configuration file via TL1 is not allowed. Any such attempt will receive a "Data Connection Error" from the GNE. For the upload of IOS configuration file via TL1, GNE will allow it to go through the firewall only if the file contains the header "! Cisco IOS config <text>". If the configuration file does not contain this header, GNE will block the uploading with "Data Connection Error".
3.
The format of the FTP URL string used in the SRC or DEST field of the command is as follows:
In a non-firewall environment, the format of the URL should be
"FTP://[FTPUSER[:FTPPASSWORD]]@FTPHOST/PACKAGE_PATH" where:
<FTPUSER> is the userid to connect to the computer with the package file
<FTPPASSWORD> is the password used to connect to the computer with the package file
<FTPHOST> is the IP address of the computer with the package file, DNS lookup of hostnames is not supported
<PACKAGE_PATH> is the long path name to the package file
Note
Note that USERID and PASSWORD are optional if the user does not need to log into the host computer. Also note that the password may be optional if the user does not need to log in. All the other portions of the URL are required, including the initial "FTP:\\" string.
In a firewall environment, the hostname should be replaced with a list of IP addresses each separated by a @ character. The first IP address should be for the machine where the package file is stored. Subsequent IP addresses should then be for firewall machines moving outwards towards the edge of the network, until the final IP address listed was the machine that outside users first access the network.
For example: if your topology is "FTPHOST <-> GNE3 <->GNE2 <-> GNE1 <-> ENE", your FTP URL will be: FTP://FTPUSER:FTPPASSWORD@FTPHOST@GNE3@GNE2@GNE1/PACKAGE_PATH
Section
|
COPY-IOSCFG Description
|
Category
|
IOS
|
Security
|
Provisioning
|
Related Messages
|
REPT EVT IOSCFG
|
|
Input Format
|
COPY-IOSCFG:[<TID>]:<AID>:<CTAG>::SRC=<SRC>,DEST=<DEST>;
where:
• <AID> specifies the slot number of the card where the IOS configuration file belongs and is from the AID "EQPT" section on page 4-27
• <SRC> specifies where the IOS config file is copied from and is a string
• <DEST> specifies where the IOS config file is copied to and is a string
|
Input Example
|
COPY-IOSCFG::SLOT-1:CTAG::SRC="LONG_FTP_PATH",DEST="STARTUP";
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.17 COPY-RFILE: Copy RFILE
This command downloads a new software package from the location specified by the FTP URL. It is also used to backup and restore the system database.
In order to upload package files or restore databases from a host, the host must be running an FTP server application. If the host is not running an FTP server application, the command fails indicating that the NE was unable to connect to the remote IP address (host). A host can either be a PC or a workstation running an FTP Server Application.
•
Userid is the userid to connect to the computer with the package file or system database.
•
Password is the password used to connect to the computer with the package file or system database.
Note
Both the userid and password are optional if the user does not need to log into the host computer. The password may be optional if the user does not need to log in.
•
Hostname is the hostname or IP address of the computer with the package file or system database.
•
Package_path is the long path name to the package file or system database.
All the other portions of the URL are required, including the initial "FTP://" string.
Example:
COPY-RFILE:TID:RFILE-PKG:703::TYPE=SWDL,SRC="FTP://USERID:
PASSWORD@HOSTIP:21/DIR1/DIR2/DIR3/PACKAGE.PKG";
Notes:
1.
The SWDL type is used for software package uploads. The RFBU type is used for system database backups, and the RFR type is used for system database restores. The SRC input is required when the type is SWDL or RFR. The DEST input is needed when the type is RFBU. The SRC and DEST inputs cannot both be used in the same command.
2.
FTP is the only allowed file transfer method.
3.
The extended FTP URL syntax is required by the COPY-RFILE syntax.
4.
Port number (21) is optional. 21 is the only supported Port Number. Leaving this field blank defaults to 21.
Section
|
COPY-RFILE Description
|
Category
|
File Transfer
|
Security
|
Superuser
|
Related Messages
|
APPLY
REPT EVT FXFR
|
|
Input Format
|
COPY-RFILE:[<TID>]:[<SRC>]:<CTAG>::TYPE=<XFERTYPE>, [SRC=<SRC1>,][DEST=<DEST>,][OVWRT=<OVWRT>,][FTTD=<FTTD>];
where:
• <SRC> is the type of file being transferred; <SRC> is the AID from the "RFILE" section on page 4-31
• <XFERTYPE> is the file transfer protocol; valid values for <XFERTYPE> are shown in the "TX_TYPE" section on page 4-95
• <SRC1> specifies the source of the file to be transferred. Only the FTP URL is supported. In a non-firewall environment the format of the URL should be: "FTP://FTP_USER[:FTP_PASSWORD]]@FTP_HOST_IP[:21]/PACKAGE_PATH[;TYPE=I]" where:
– <FTP_USER> is the userid to connect to the computer with the package file
– <FTP_PASSWORD> is the password used to connect to the computer with the package file
– <FTP_HOST_IP> is the IP address of the computer with the package file, DNS lookup of hostnames is not supported
– <PACKAGE_PATH> is the long path name to the package file
Note Userid and password are optional if the user does not need to log into the host computer. The password may be optional if the user does not need to log in. All the other portions of the URL are required, including the initial "FTP://" string.
In a firewall environment, the hostname should be replaced with a list of IP addresses each separated by a @ character. The first IP address should be for the machine where the package file is stored. Subsequent IP addresses should then be for firewall machines moving outwards towards the edge of the network, until the final IP address listed is the machine that outside users first access the network.
|
Input Format (continued)
|
For example, if the topology is "FTP_HOST_IP <-> GNE3 <->GNE2 <-> GNE1 <-> ENE", the FTP URL is:
FTP://FTP_USER:FTP_PASSWORD@FTP_HOST_IP@GNE3@GNE2@ GNE1/PACKAGE_PATH
<SRC1> is a string.
• <DEST> specifies the destinations of the file to be transferred. Same values as <SRC1> above.
• <FTTD> the node does not support FTTD. If <FTTD> is used, the COPY-RFILE command will fail with and "FTTD Unsupported" error. <FTTD> is a string
|
Input Example
|
COPY-RFILE:HERNDON:RFILE-PKG:703::TYPE=SWDL, SRC="LONG_FTP_PATH",DEST="LONG_FTP_PATH",OVWRT=YES, FTTD="UNUSED";
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.18 DISC-TACC: Disconnect Test Access
This command disconnects the TAP and puts the connection back to its original state (no splits). For more information on TACC, refer to the "Test Access" section on page 1-21.
For this command to be applicable, you must first create the TAP using the ED-<MOD_PATH> command.
Notes:
1.
If you send this command to an already disconnected connection, a SADC error message is returned.
2.
If the system cannot release TAP, an SRTN error message is returned.
Section
|
DISC-TACC Description
|
Category
|
Test Access
|
Security
|
Provisioning
|
Related Messages
|
CHG-ACCMD-<MOD_TACC>
CONN-TACC-<MOD_TACC>
RTRV-TACC
|
|
Input Format
|
DISC-TACC:[<TID>]:<TAP>:<CTAG>;
where:
• <TAP> indicates the test access path number; <TAP> must be an integer with a range of 1- 999. <TAP> is a string
Note This command only supports disconnecting one <TAP> at a time.
|
Input Example
|
DISC-TACC:CISCO:8:123;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.19 DLT-<MOD_RING>: Delete (BLSR)
This command deletes the BLSR of the NE.
Note
ONS 15327 does not support four-fiber BLSR.
Error conditions:
1.
If the system fails on getting IOR, a SROG (Status, Get IOR Failed) error message is returned.
2.
If the AID is invalid, an IIAC (Invalid AID) error message is returned.
3.
If the BLSR does not exist, a SRQN (BLSR Does Not Exist) error message is returned.
4.
The ALL AID is invalid for this command.
5.
The list AID format is supported in this release (R4.6).
6.
The SROF (Facility Not Provisioned) or (Cannot Access BLSR) error message will be returned for the invalid query.
7.
If the BLSR is in use, a SROF (BLSR In Use) error message is returned.
8.
The SRQN (BLSR Deletion Failed) error message is returned for the invalid deletion query.
Section
|
DLT-<MOD_RING> Description
|
Category
|
BLSR
|
Security
|
Provisioning
|
Related Messages
|
ED-<MOD_RING>
ENT-<MOD_RING>
|
RTRV-<MOD_RING>
|
Input Format
|
DLT-<MOD_RING>:[<TID>]:<AID>:<CTAG>[:::];
where:
• <AID> identifies the BLSR of the NE. "ALL" or "BLSR-ALL" AID is not allowed for editing BLSR. <AID> is the AID from the "AidUnionId" section on page 4-15
|
Input Example
|
DLT-BLSR:PETALUMA:BLSR-2:123;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.20 DLT-CRS-<PATH>: Delete Cross Connection (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
See Table 4-11 on page 4-5 for supported modifiers by platform.
This command deletes a cross-connection between STS and VT paths. STS paths are specified using their STS AID.
Notes:
1.
The fields after CTAG (trailing colons) are optional.
2.
For the 1-way cross-connections the AIDs must be in the same order as originally entered; for the 2-way cross-connections, either order will work.
3.
This command does not support deleting multiple STS cross-connections.
4.
Using "&" in the AID field of this command can delete an path protection STS cross-connection.
a.
The following command is used to delete a 1-way selector or 2-way selector and bridge with:
from points: F1, F2
to points: T1
DLT-CRS-{STS_PATH}:[<TID>]:F1&F2,T1:<CTAG>;
b.
The following command is used to delete a 1-way bridge or 2-way selector and bridge with:
from point: F1
to points: T1, T2
DLT-CRS-{STS_PATH}:[<TID>]:F1,T1&T2:<CTAG>;
c.
The following command is used to delete a 1-way or 2-way subtending path protection connection with:
from point: F1, F2
to points: T1, T2
DLT-CRS-{STS_PATH}:[<TID>]:F1&F2,T1&T2:<CTAG>;
d.
The AID format in the deletion command is the same as the AID format in the retrieved response message. For example, if the output of any retrieved AID is "F1&F2,T1:CCT,STS3C", the deletion command with the AID format (F1&F2,T1) is required to delete this cross-connection.
e.
The following command is used to create a path protection IDRI Cross-Connection:
ENT-CRS-{STS_PATH}:[<TID>]:A&B,C&D:<CTAG>::2WAYDC;
A-Path on ring X to which traffic from ring Y is bridged
B-Path on ring X to which traffic from the same ring is bridged
C-Path on ring Y to which traffic from ring X is bridged
D-Path on ring Y to which traffic from the same ring is bridged
A, B, C, and D have a positional meaning. Connection type 2WAYDC is used for path protection IDRI cross-connections.
f.
The following command is used to create a path protection DRI Cross-Connection:
ENT-CRS-{STS_PATH}:[<TID>]:A&B,C:<CTAG>::2WAYDC;
A-Path on ring X to which traffic from ring Y is bridged
B-Path on ring X to which traffic from the same ring is bridged
C-Traffic to and from ring Y
A, B, C, and D have a positional meaning. Connection type 2WAYDC is used for path protection DRI cross-connections.
5.
All A&B AIDs in the TL1 cross-connection command are in the format of WorkingAID&ProtectAID.
6.
You can experience some implementation behavior problems if additional drops have been added to the connection object.
7.
The facility AID is only valid for slots holding the G1000-4 card.
8.
The virtual facility AID (VFAC) is only valid on slots holding an ML-series card.
9.
A TL1 cross-connect that has been upgraded to a CTC circuit can no longer be managed by TL1. For example, if you issue a DLT-CRS-<PATH> command to delete a circuit, you will see that the circuit still appears in CTC as "incomplete". The reason for this is because in addition to creating cross-connects (as TL1 does), CTC creates another object on the source node that stores network-level circuit attributes. CTC will continue to see that object after the cross-connect is deleted which is why it shows an incomplete circuit.
3.4.21 DLT-EQPT: Delete Equipment
This command deletes a card from the NE.
This command removes the card type and attributes that were entered for a particular slot. If any facilities are assigned, they are deleted too. The command will be denied if the card is part of a protection group or has a cross-connect end-point.
To delete a card that is part of a protection group, it has to be removed from the protection group first using the ED-EQPT command.
Error conditions for deleting equipment may be:
1.
If a card in a protection group that has a cross-connection, DCC or is a synchronization source, the SPLD (Equipment in use) error message will be returned.
2.
If a card is not provisioned, an error message will be returned.
Section
|
DLT-EQPT Description
|
Category
|
Equipment
|
Security
|
Provisioning
|
Related Messages
|
ALW-SWDX-EQPT
ALW-SWTOPROTN-EQPT
ALW-SWTOWKG-EQPT
ED-EQPT
ENT-EQPT
INH-SWDX-EQPT
INH-SWTOPROTN-EQPT
INH-SWTOWKG-EQPT
REPT ALM EQPT
|
REPT EVT EQPT
RTRV-ALM-EQPT
RTRV-ALMTH-EQPT
RTRV-COND-EQPT
RTRV-EQPT
SET-ALMTH-EQPT
SW-DX-EQPT
SW-TOPROTN-EQPT
SW-TOWKG-EQPT
|
Input Format
|
DLT-EQPT:[<TID>]:<AID>:<CTAG>[:::];
where:
• <AID> is the equipment unit (slot) to act on and is the AID from the "EQPT" section on page 4-27
|
Input Example
|
DLT-EQPT:SONOMA:SLOT-1:104;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.22 DLT-FFP-<OCN_TYPE>: Delete Facility Protection Group (OC3, OC12, OC48, OC192)
See Table 4-11 on page 4-5 for supported modifiers by platform.
This command deletes an OCN facility protection group in a 1+1 architecture.
Note
If the protection group does not exist, an error message will be returned.
Section
|
DLT-FFP-<OCN_TYPE> Description
|
Category
|
Facility Protection
|
Security
|
Provisioning
|
Related Messages
|
DLT-FFP-CLNT
ED-FFP-<OCN_TYPE>
ED-FFP-CLNT
ED-FFP-OCH
ENT-FFP-<OCN_TYPE>
ENT-FFP-CLNT
|
OPR-PROTNSW-<OCN_TYPE>
RLS-PROTNSW-<OCN_TYPE>
RTRV-FFP-<OCN_TYPE>
RTRV-FFP-CLNT
RTRV-FFP-OCH
RTRV-PROTNSW-<OCN_TYPE>
|
Input Format
|
DLT-FFP-<OCN_TYPE>:[<TID>]:<WORK>,<PROTECT>:<CTAG>[:::];
where:
• <WORK> identifies the working facility and is the AID from the "FACILITY" section on page 4-28
• <PROTECT> identifies the protect facility and is the AID "FACILITY" section on page 4-28
|
Input Example
|
DLT-FFP-OC3:PETALUMA:FAC-2-1,FAC-1-1:1;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.23 DLT-FFP-CLNT: Delete Facility Protection Group Client
(Cisco ONS 15454 only)
This command deletes Y cable protection on client facilities.
Section
|
DLT-FFP-CLNT Description
|
Category
|
DWDM
|
Security
|
Provisioning
|
Related Messages
|
DLT-FFP-<OCN_TYPE>
DLT-LNK-<MOD2O>
ED-CLNT
ED-DWDM
ED-FFP-<OCN_TYPE>
ED-FFP-CLNT
ED-FFP-OCH
ED-LNK-<MOD2O>
ED-OCH
ED-OMS
ED-OTS
ED-TRC-CLNT
ED-TRC-OCH
ENT-FFP-<OCN_TYPE>
ENT-FFP-CLNT
ENT-LNK-<MOD2O>
OPR-LASER-OTS
OPR-PROTNSW-<OCN_TYPE>
OPR-PROTNSW-CLNT
|
OPR-PROTNSW-OCH
RLS-LASER-OTS
RLS-PROTNSW-<OCN_TYPE>
RLS-PROTNSW-CLNT
RLS-PROTNSW-OCH
RTRV-CLNT
RTRV-DWDM
RTRV-FFP-<OCN_TYPE>
RTRV-FFP-CLNT
RTRV-FFP-OCH
RTRV-LNK-<MOD2O>
RTRV-OCH
RTRV-OMS
RTRV-OTS
RTRV-PROTNSW-<OCN_TYPE>
RTRV-PROTNSW-CLNT
RTRV-PROTNSW-OCH
RTRV-TRC-CLNT
RTRV-TRC-OCH
|
Input Format
|
DLT-FFP-CLNT:[<TID>]:<WORKAID>,<PROTAID>:<CTAG>[:::];
where:
• <WORKAID> identifies the working facility and is the AID from the "FACILITY" section on page 4-28
• <PROTECTAID> identifies the protect facility and is the AID "FACILITY" section on page 4-28
|
Input Example
|
DLT-FFP-CLNT:CISCO:FAC-1-1,FAC-2-1:100;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.24 DLT-LNK-<MOD2O>: Delete Optical Link (OCH, OMS, OTS)
(Cisco ONS 15454 only)
This command deletes an optical link between two optical connection points. Optical link is specified by using the AID of the involved Optical Connection points.
Section
|
DLT-LNK-<MOD2O> Description
|
Category
|
DWDM
|
Security
|
Provisioning
|
Related Messages
|
DLT-FFP-CLNT
ED-CLNT
ED-DWDM
ED-FFP-CLNT
ED-FFP-OCH
ED-LNK-<MOD2O>
ED-OCH
ED-OMS
ED-OTS
ED-TRC-CLNT
ED-TRC-OCH
ENT-FFP-CLNT
ENT-LNK-<MOD2O>
OPR-LASER-OTS
OPR-PROTNSW-CLNT
OPR-PROTNSW-OCH
|
RLS-LASER-OTS
RLS-PROTNSW-CLNT
RLS-PROTNSW-OCH
RTRV-CLNT
RTRV-DWDM
RTRV-FFP-CLNT
RTRV-FFP-OCH
RTRV-LNK-<MOD2O>
RTRV-OCH
RTRV-OMS
RTRV-OTS
RTRV-PROTNSW-CLNT
RTRV-PROTNSW-OCH
RTRV-TRC-CLNT
RTRV-TRC-OCH
|
Input Format
|
DLT-LNK-<MOD2O>:[<TID>]:<FROM>,<TO>:<CTAG>;
where:
• <FROM> indicates an identifier at one end of the optical link and is the AID from the "BAND" section on page 4-18
• <TO> indicates an identifier at the other end of the optical link and is the AID from the "BAND" section on page 4-18.
|
Input Example
|
DLT-LNK-OMS:PENNGROVE:BAND-6-1-TX,BAND-13-1-RX:114;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.25 DLT-OSC: Delete OSC
(Cisco ONS 15454 only)
This command deletes the OSC group of the NE.
Section
|
DLT-OSC Description
|
Category
|
DWDM
|
Security
|
Provisioning
|
Related Messages
|
ENT-OSC
ED-OSC
RTRV-OSC
|
|
Input Format
|
DLT-OSC:[<TID>]:<AID>:<CTAG>;
where:
• <AID> identifies the OSC group of the NE and is the AID "OSC" section on page 4-30
|
Input Example
|
DLT-OSC:PENNGROVE:OSC-1:114;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.26 DLT-UCP-CC: Delete Unified Control Plane Control Channel
(Cisco ONS 15454 only)
This command deletes a UCP IP control channel.
1.
If you send this command to a control channel that is in use, a SRQN (Status, Invalid Request) error message is returned.
2.
If sending this command to delete an SDCC IPCC with a complete result, the SDCC of the specified SONET line is deleted (or disabled) automatically with a DB change reporting (if the DB change report is enabled).
3.
If sending this command to delete an IPCC which is in use by a UCP Interface, an SROF (Delete UCP IPCC Failed - Object Is In Use) error message is returned.
Section
|
DLT-UCP-CC Description
|
Category
|
UCP
|
Security
|
Provisioning
|
Related Messages
|
DLT-UCP-IF
DLT-UCP-NBR
ED-UCP-CC
ED-UCP-IF
ED-UCP-NBR
ED-UCP-NODE
ENT-UCP-CC
ENT-UCP-IF
ENT-UCP-NBR
REPT ALM UCP
|
REPT EVT UCP
RTRV-ALM-UCP
RTRV-CKT-ORIG
RTRV-CKT-TERM
RTRV-COND-UCP
RTRV-UCP-CC
RTRV-UCP-IF
RTRV-UCP-NBR
RTRV-UCP-NODE
|
Input Format
|
DLT-UCP-CC:[<TID>]:<AID>:<CTAG>[::::];
where:
• <AID> indicates an individual IPCC ID; <AID> is the AID from the "IPCC" section on page 4-29
|
Input Example
|
DLT-UCP-CC:CISCO:CC-9:CTAG;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.27 DLT-UCP-IF: Delete Unified Control Plane Interface
This command deletes a UCP interface.
Note
If the UCP interface is not found or in use, a SRQN (Status, Invalid Request) error message is returned.
Section
|
DLT-UCP-IF Description
|
Category
|
UCP
|
Security
|
Provisioning
|
Related Messages
|
DLT-UCP-CC
DLT-UCP-NBR
ED-UCP-CC
ED-UCP-IF
ED-UCP-NBR
ED-UCP-NODE
ENT-UCP-CC
ENT-UCP-IF
ENT-UCP-NBR
|
REPT ALM UCP
REPT EVT UCP
RTRV-ALM-UCP
RTRV-COND-UCP
RTRV-UCP-CC
RTRV-UCP-IF
RTRV-UCP-NBR
RTRV-UCP-NODE
|
Input Format
|
DLT-UCP-IF:[<TID>]:<AID>:<CTAG>[::::];
where:
• <AID> indicates the interface port index of the data link; <AID> is the AID from the "FACILITY" section on page 4-28
|
Input Example
|
DLT-UCP-IF:CISCO:FAC-2-1:CTAG;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.28 DLT-UCP-NBR: Delete Unified Control Plane Neighbor
This command deletes a UCP neighbor.
Notes:
1.
If the neighbor is in use, an SRQN (Status, Invalid Request) error message is returned.
2.
If sending this command to delete a neighbor which is in use by IPCC, an SROF (Delete UCP neighbor Failed - Object Is In Use) error message is returned.
Section
|
DLT-UCP-NBR Description
|
Category
|
UCP
|
Security
|
Provisioning
|
Related Messages
|
DLT-UCP-CC
DLT-UCP-IF
ED-UCP-CC
ED-UCP-IF
ED-UCP-NBR
ED-UCP-NODE
ENT-UCP-CC
ENT-UCP-IF
ENT-UCP-NBR
|
REPT ALM UCP
REPT EVT UCP
RTRV-ALM-UCP
RTRV-COND-UCP
RTRV-UCP-CC
RTRV-UCP-IF
RTRV-UCP-NBR
RTRV-UCP-NODE
|
Input Format
|
DLT-UCP-NBR:[<TID>]:<AID>:<CTAG>[::::];
where:
• <AID> indicates an individual neighbor AID of the UCP; <AID> is the AID from the "NBR" section on page 4-30
|
Input Example
|
DLT-UCP-NBR:CISCO:NBR-8:CTAG;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.29 DLT-USER-SECU: Delete User Security
This command deletes a user and can only be performed by a Superuser. Privilege levels are described in the ENT-USER-SECU command.
This command cannot be used to delete a user that is currently logged on.
For the DLT-USER-SECU command:
DLT-USER-SECU:[TID]:<UID>:[CTAG];
the syntax of <UID> is not checked. The user is deleted if the <UID> exists in the database.
Section
|
DLT-USER-SECU Description
|
Category
|
Security
|
Security
|
Superuser
|
Related Messages
|
ACT-USER
ALW-MSG-SECU ALW-USER-SECU
CANC-USER
CANC-USER-SECU ED-CMD-SECU
ED-PID
ED-USER-SECU ENT-USER-SECU
|
INH-MSG-SECU
INH-USER-SECU
REPT ALM SECU
REPT EVT SECU
REPT EVT SESSION
RTRV-CMD-SECU
RTRV-DFLT-SECU
RTRV-USER-SECU
SET-ATTR-SECUDFLT
|
Input Format
|
DLT-USER-SECU:[<TID>]:<UID>:<CTAG>;
where:
• <UID> is the user identifier and is a string; <UID> is any combination of up to 10 alphanumeric characters
Note CTC allows <UID> and <PID> of up to 20 characters. The 20 character CTC-entered <UID> and <PID> are not valid TL1 <UID> and <PID>.
|
Input Example
|
DLT-USER-SECU:PETALUMA:CISCO15:123;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.30 DLT-VCG: Delete Virtual Concatenated Group
(Cisco ONS 15454 only)
This command deletes a VCG object.
Section
|
DLT-VCG Description
|
Category
|
VCAT
|
Security
|
Provisioning
|
Related Messages
|
ENT-VCG
RTRV-VCG
|
|
Input Format
|
DLT-VCG:[<TID>]:<SRC>:<CTAG>:::[CMDMDE=<CMDMDE>][:];
where:
• <SRC> AID to address the VCG from the "FACILITY" section on page 4-28
• <CMDMDE> command mode. FRCD deletes all the VCG members and member cross-connects of a VCG; valid values are shown in the "CMD_MODE" section on page 4-54
|
Input Example
|
DLT-VCG:NODE1:FAC-1-1:1234:::CMDMDE=FRCD;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.31 DLT-WLEN: Delete Wavelength
(Cisco ONS 15454 only)
This command deletes the provisioned wavelength (WLEN).
Note:
1.
The fields after CTAG (trailing colons) are the optional.
2.
This command does not support multiple deleting WLEN provisioning.
Section
|
DLT-WLEN Description
|
Category
|
DWDM
|
Security
|
Provisioning
|
Related Messages
|
ENT-WLEN
ED-WLEN
RTRV-WLEN
|
|
Input Format
|
DLT-WLEN:[<TID>]:<AID>:<CTAG>[:::CMDMDE=<CMDMDE>];
where:
• <AID> is the wavelength AID per ring direction from the "WLEN" section on page 4-37
• <CMDMDE> indicates the command execution mode. There are two options: NORM for normal (default), and FRCD for forced. Forced will override any safeguards that normally reject a request to delete an In Service resource. Valid values are shown in the "CMD_MODE" section on page 4-54
|
Input Example
|
DLT-WLEN:PENNGROVE:WLEN-W_E-1530.33:114:::CMDMDE=NORM;
|
Errors
|
Errors are listed in Table 7-33 on page 7-27.
|
3.4.32 ED-<MOD_PATH>: Edit (STS1, STS3C, STS6C, STS9C, STS12C, STS24C, STS48C, STS192C, VT1, VT2)
This command edits the attributes associated with STS and VT paths.
The SFBER, SDBER, RVRTV, and RVTM parameters only apply to path protection.
The path trace message is a 64 character string including the terminating CR (carriage return) and LF (line feed) that is transported in the J1 byte of the SONET STS Path overhead. Both the EXPTRC and TRC string can be provisioned by user with up to 62 character string.
The EXPTRC indicates the contents of the expected incoming path trace are provisioned by the user. The TRC indicates the contents of the outgoing path trace message. The INCTRC indicates the contents of the incoming path trace message.
The path trace mode has three modes: OFF, MANUAL, and AUTO. The path trace mode defaults to OFF. The MANUAL mode performs the comparison of the received string with the user-entered expected string. The AUTO mode performs the comparison of the present received string with an expected string set to a previously received string. If there is a mismatch, TIM-P alarm is raised. When the path trace mode is in OFF mode, there is no path trace processing, and all the alarm and state conditions are reset.
The TACC parameter edits an existing single STS or VT and changes it to a test access point. When an editing command on TACC is executed, it assigns the STS for the first 2-way connection and STS=1 as the second 2-way connection. For STS3C and STS12C, the next available STS of the same width is chosen. For more information on TACC, refer to the "Test Access" section on page 1-21.
J1 is implemented on the DS1/DS1N, DS3E/DS3NE, DS3XM, EC1, OC3, OC12, OC48AS and OC192 cards.
DS3/DS3N, OC48, E100, and E1000 cards do not support path trace.
DS1/DS1N, DS3E/DS3NE, and DS3XM support both TRC and EXPTRC in the ED-STS-PATH command.
EC1, OC3, OC48AS, and OC192 only support EXPTRC in the ED-STS-PATH command.
Note
Each TL1 command must be less than or equal to 255 characters. Any command larger than 255 characters must be split into multiple commands. For example, if you use the ED-<MOD_PATH> command to edit the J1 EXPTRC/TRC message, path protection attributes, and TACC attributes and the command exceeds 255 characters the command will not be processed. You must use multiple ED-<MOD_PATH> commands instead.
Error conditions:
<