Home/Catalog/Nortel-Magellan-Passport-LogicalProcessorMIB

Nortel-Magellan-Passport-LogicalProcessorMIB

AI MIB Summary

Standard SNMP MIB module defining data structures for Nortel-Magellan-Passport-LogicalProcessorMIB.

1852
Objects
Active
Status
4
Dependencies

Imported Objects

Objects

1852 total
Object Name
logicalProcessorMIB
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11
IMPORTS
Unknown
.1.3.6.1.4.1.562.2.4.2.11
logicalProcessorGroup
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11.1
logicalProcessorGroupBE
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11.1.5
logicalProcessorGroupBE01
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11.1.5.2
logicalProcessorGroupBE01A
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11.1.5.2.2
logicalProcessorCapabilities
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11.3
logicalProcessorCapabilitiesBE
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11.3.5
logicalProcessorCapabilitiesBE01
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11.3.5.2
logicalProcessorCapabilitiesBE01A
OBJECT IDENTIFIER
.1.3.6.1.4.1.562.2.4.2.11.3.5.2.2
lp
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12
lpRowStatusTableThis entry controls the addition and deletion of lp components.
SEQUENCE OF LpRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.1
lpRowStatusEntryA single entry in the table represents a single lp component.
LpRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.1.1
lpRowStatusThis variable is used as the basis for SNMP naming of lp components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.1.1.1
lpComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.1.1.2
lpStorageTypeThis variable represents the storage type value for the lp tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.1.1.4
lpIndexThis variable represents the index for the lp tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.1.1.10
lpDS3
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5
lpDS3RowStatusTableThis entry controls the addition and deletion of lpDS3 components.
SEQUENCE OF LpDS3RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.1
lpDS3RowStatusEntryA single entry in the table represents a single lpDS3 component.
LpDS3RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.1.1
lpDS3RowStatusThis variable is used as the basis for SNMP naming of lpDS3 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.1.1.1
lpDS3ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.1.1.2
lpDS3StorageTypeThis variable represents the storage type value for the lpDS3 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.1.1.4
lpDS3IndexThis variable represents the index for the lpDS3 tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.5.1.1.10
lpDS3Test
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.2
lpDS3TestRowStatusTableThis entry controls the addition and deletion of lpDS3Test components.
SEQUENCE OF LpDS3TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.2.1
lpDS3TestRowStatusEntryA single entry in the table represents a single lpDS3Test component.
LpDS3TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.2.1.1
lpDS3TestRowStatusThis variable is used as the basis for SNMP naming of lpDS3Test components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.2.1.1.1
lpDS3TestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.2.1.1.2
lpDS3TestStorageTypeThis variable represents the storage type value for the lpDS3Test tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.2.1.1.4
lpDS3TestIndexThis variable represents the index for the lpDS3Test tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.5.2.1.1.10
lpDS3TestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS3TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.2.10
lpDS3TestStateEntryAn entry in the lpDS3TestStateTable.
LpDS3TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.2.10.1
lpDS3TestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.2.10.1.1
lpDS3TestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.2.10.1.2
lpDS3TestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.2.10.1.3
lpDS3TestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpDS3TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11
lpDS3TestSetupEntryAn entry in the lpDS3TestSetupTable.
LpDS3TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1
lpDS3TestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1.1
lpDS3TestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1.2
lpDS3TestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1.3
lpDS3TestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1.4
lpDS3TestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1.5
lpDS3TestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1.6
lpDS3TestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1.7
lpDS3TestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.2.11.1.8
lpDS3TestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpDS3TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12
lpDS3TestResultsEntryAn entry in the lpDS3TestResultsTable.
LpDS3TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1
lpDS3TestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.1
lpDS3TestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.2
lpDS3TestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.3
lpDS3TestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.4
lpDS3TestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.5
lpDS3TestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.6
lpDS3TestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.7
lpDS3TestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.8
lpDS3TestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.9
lpDS3TestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.10
lpDS3TestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.2.12.1.11
lpDS3CBit
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.3
lpDS3CBitRowStatusTableThis entry controls the addition and deletion of lpDS3CBit components.
SEQUENCE OF LpDS3CBitRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.3.1
lpDS3CBitRowStatusEntryA single entry in the table represents a single lpDS3CBit component.
LpDS3CBitRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.3.1.1
lpDS3CBitRowStatusThis variable is used as the basis for SNMP naming of lpDS3CBit components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.3.1.1.1
lpDS3CBitComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.3.1.1.2
lpDS3CBitStorageTypeThis variable represents the storage type value for the lpDS3CBit tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.3.1.1.4
lpDS3CBitIndexThis variable represents the index for the lpDS3CBit tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.5.3.1.1.10
lpDS3CBitOperationalTableThis group contains the DS3 C-Bit Parity operational data for the CBIT component.
SEQUENCE OF LpDS3CBitOperationalEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.3.10
lpDS3CBitOperationalEntryAn entry in the lpDS3CBitOperationalTable.
LpDS3CBitOperationalEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.3.10.1
lpDS3CBitFarEndAlarmThis attribute indicates the Far-End alarm signal that is currently received at the DS3 interface. This signal is carried over the Far- End Alarm and Control (FEAC) bits of DS3 frames. Five far-end alarm signals can be received: far-end equipment failure that is received when the far-end terminal has detected a local equipment failure; far-end Loss Of Signal (LOS) that is received when the far- end DS3 terminal has declared a LOS failure condition; far-end Loss of Frame (LOF) when the far-end DS3 terminal has declared a Loss Of Frame (LOF) failure condition; far-end Alarm Indication Signal (AIS) when the far-end has declared an AIS failure condition; far-end Idle when the far-end has declared an Idle signal condition.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.3.10.1.1
lpDS3CBitLoopedbackToFarEndThis indicates whether or not the DS3 component is currently looping back the incoming DS3 signal or one of its DS1 tributaries to the far-end DS3 terminal. This is activated when the far-end DS3 equipment has ordered the local terminal to do so. Description of bits: notused0(0) n1(1) n2(2) n3(3) n4(4) n5(5) n6(6) n7(7) n8(8) n9(9) n10(10) n11(11) n12(12) n13(13) n14(14) n15(15) n16(16) n17(17) n18(18) n19(19) n20(20) n21(21) n22(22) n23(23) n24(24) n25(25) n26(26) n27(27) n28(28) notused29(29) notused30(30) ds3Line(31)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.3.10.1.2
lpDS3CBitLoopbackAtFarEndRequestedThis attribute indicates which DS1 tributaries are being looped back, or if the DS3 line is being looped back. Each value listed indicates a loopback request has been made. When a loopback deactivation command has been sent to the far end, the corresponding value will be removed from the list. Description of bits: notused0(0) n1(1) n2(2) n3(3) n4(4) n5(5) n6(6) n7(7) n8(8) n9(9) n10(10) n11(11) n12(12) n13(13) n14(14) n15(15) n16(16) n17(17) n18(18) n19(19) n20(20) n21(21) n22(22) n23(23) n24(24) n25(25) n26(26) n27(27) n28(28) notused29(29) notused30(30) ds3Line(31)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.3.10.1.3
lpDS3CBitStatsTableThis group contains the DS3 C-Bit Parity statistical data for the CBIT component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpDS3CBitStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11
lpDS3CBitStatsEntryAn entry in the lpDS3CBitStatsTable.
LpDS3CBitStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1
lpDS3CBitCbitErrorFreeSecThis attribute indicates the number of seconds that the DS3 port has not suffered any C-Bit errors.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.1
lpDS3CBitCbitCodeViolationsThis attribute indicates the total count of C-Bit Parity Code Violations (CCV). A CCV is obtained when the parity calculated over the previous DS3 frame and the value of the CP-bits appearing in the current DS3 frame differ. The value of this attribute will wrap around to 0 if it does reach its maximum value. CCV counting is inhibited for second intervals where C-Bit Parity Severely Errored Seconds (CSES) are counted. It is also inhibited for second intervals where C-Bit Unavailable Seconds (CUAS) are counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.2
lpDS3CBitCbitErroredSecThis attribute indicates the total number of C-Bit Parity Errored Seconds (CES). A CES second is declared for second intervals containing one or more CCVs or when one or more SEF (Severely Errored Frame) or AIS (Alarm Indication Signal) defects. CES counting is inhibited for second intervals where C-Bit Unavailable Seconds (CUAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.3
lpDS3CBitCbitSevErroredSecThis attribute indicates the total number of C-Bit Parity Severely Errored Seconds (CSES). A CSES is declared for second intervals containing more than 44 CCVs or one or more SEF or AIS defects. The occurrence of CSES in a one second interval causes the inhibition of CCV counting during that second interval. CSES counting is also inhibited for second intervals where C-Bit Unavailable Seconds (CUAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.4
lpDS3CBitCbitUnavailSecThis attribute indicates the total number of one second intervals for which the DS3 path is unavailable. The DS3 path becomes unavailable at the onset of 10 consecutive C-Bit Severely Errored Seconds (CSES). The 10 CSESs are included in the unavailable time. Once unavailable, the DS3 path becomes available at the onset of 10 contiguous seconds with no CSES. The 10 seconds with no CSES are excluded from the unavailable time. For second intervals where CUAS is counted, counting of C-Bit Coding Violations (CCV), C-Bit Errored Seconds (CES) and C-Bit Severely Errored Seconds (CSES) is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.5
lpDS3CBitFarEndErrorFreeSecThis attribute indicates the number of seconds that the DS3 port has not suffered of any far-end errors.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.6
lpDS3CBitFarEndCodeViolationsThis attribute indicates the total count of DS3 frames containing a Coding Violation on the Far-End (FECV), also known as a Far-End Block Error (FEBE). Each FEBE is reported over the FEBE bits each time the far-end DS3 terminal detects a C-BIT Parity error over a received DS3 frame. For second intervals where Far-End Unavailable Seconds (FEAUS) or Far-End Severely Errored Seconds (FESES) are counted, counting of FECVs is inhibited. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.7
lpDS3CBitFarEndErroredSecThis attribute indicates the total number of Far-End Errored Seconds (FEES). A FEES is declared for second intervals containing with one or more FECVs or one or more far-end SEF/ AIS defects. A far-end SEF/AIS defect occurs when the X-Bits of the DS3 frame are received as being set to zero. For second intervals where Far-End Unavailable Seconds (FEUAS) are counted, counting of FEESs is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.8
lpDS3CBitFarEndSevErroredSecThis attribute indicates the total number of Far-End Severely Errored Seconds (FESES). A FESES is declared for second intervals containing more than 44 FECVs or one or more far-end SEF/AIS defects. For second intervals where a FESES is counted, counting of FECVs is inhibited. For second intervals where Far-End Unavailable Seconds (FEUAS) are counted, counting of FESESs is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.9
lpDS3CBitFarEndSefAisSecThis attribute indicates the total number of Far-End SEF/AIS Seconds (FESAS). A FESAS is declared for second intervals containing one or more far-end SEF/AIS defects.For second intervals where Far-End Unavailable Seconds (FEUAS) are counted, counting of FESASs is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.10
lpDS3CBitFarEndUnavailSecThis attribute indicates the total number of one second intervals for which the DS3 far-end path is unavailable. The DS3 far-end path becomes unavailable at the onset of 10 consecutive Far-End Severely Errored Seconds (FESES). The 10 FESESs are included in the unavailable time. Once unavailable, the DS3 far-end path becomes available at the onset of 10 contiguous seconds with no FESES. The 10 seconds with no FESES are excluded from the unavailable time. For second intervals where FEUAS is counted, counting of Far-End Coding Violations (FECV), Far-End Errored Seconds (FEES), Far-End Severely Errored Seconds (FESES) and Far-End Sef/Ais Seconds (FESAS) is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.11
lpDS3CBitFarEndFailuresThis attribute indicates the total number of times that a far-end path failure (i.e. a Far-End SEF/AIS defect) has been declared. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.3.11.1.12
lpDS3Plcp
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.4
lpDS3PlcpRowStatusTableThis entry controls the addition and deletion of lpDS3Plcp components.
SEQUENCE OF LpDS3PlcpRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.4.1
lpDS3PlcpRowStatusEntryA single entry in the table represents a single lpDS3Plcp component.
LpDS3PlcpRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.4.1.1
lpDS3PlcpRowStatusThis variable is used as the basis for SNMP naming of lpDS3Plcp components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.4.1.1.1
lpDS3PlcpComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.4.1.1.2
lpDS3PlcpStorageTypeThis variable represents the storage type value for the lpDS3Plcp tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.4.1.1.4
lpDS3PlcpIndexThis variable represents the index for the lpDS3Plcp tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.5.4.1.1.10
lpDS3PlcpOperationalTableThis group contains the operational data for the PLCP component.
SEQUENCE OF LpDS3PlcpOperationalEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.4.10
lpDS3PlcpOperationalEntryAn entry in the lpDS3PlcpOperationalTable.
LpDS3PlcpOperationalEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.4.10.1
lpDS3PlcpLofAlarmThis attribute displays whether a PLCP Loss Of Frame (LOF) failure alarm state has been entered. An LOF failure is declared when a PLCP LOF defect persists for 2.5 s +/- 0.5 s. An LOF defect occurs when an OOF (Out of Frame) state persists for more than 1 ms. If the OOF events are intermittent, the LOF defect counter is decremented at a rate of 1/12 (for DS3 PLCP) or 1/9 (for G.751 E3 PLCP) of the incrementing rate, with all measurements based on a 200 ms polling cycle. An OOF event (also known as a PLCP SEF event) is declared when an error is detected in both the A1 and A2 octets, or when two consecutive POHIDs are found in error. OOF is removed when two valid sets of framing octets and two valid and sequential POHID octets have been found. The LOF defect is removed when the defect counter reaches zero, i.e. when OOF events are absent for more than 12 ms (DS3 PLCP) or 9 ms (G.751 E3 PLCP). LOF failure alarm is cleared when LOF defect is absent for 10.0 s +/- 0.5 s The DS3 or E3 component goes into an operational state of disabled until the LOF failure alarm is cleared. The terminal declaring the LOF failure alarm will transmit a PLCP RAI signal to the far-end for the duration of the alarm. The lofAlarm attribute is always set to off when the DS3 or E3 component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.4.10.1.1
lpDS3PlcpRxRaiAlarmThis attribute displays whether a PLCP Remote Alarm Indication (RAI) failure alarm state has been entered. An RAI failure alarm occurs when ten consecutive PLCP RAI bits (bit 5 in the G1 byte) are high on the incoming line. An RAI failure alarm is cleared when ten consecutive RAI bits are set to 0. Note: Some standards call this alarm RFI. The rxRaiAlarm attribute is always set to off when the DS3 or E3 component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.4.10.1.2
lpDS3PlcpStatsTableThis group contains the statistical data for the PLCP component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpDS3PlcpStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11
lpDS3PlcpStatsEntryAn entry in the lpDS3PlcpStatsTable.
LpDS3PlcpStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1
lpDS3PlcpErrorFreeSecThis attribute indicates the number of seconds during which the near-end PLCP path layer had no errors.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.1
lpDS3PlcpCodingViolationsThis attribute indicates the total number of BIP-8 Errors, framing pattern octet errors, and path overhead identification errors detected in received PLCP frames. Counting of PLCP CV is inhibited for second intervals where PLCP Severely Errored Framing Seconds (SEFS) or PLCP Unavailable Seconds (UAS) are counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.2
lpDS3PlcpErroredSecThis attribute indicates the number of seconds containing one or more PLCP Coding Violations (CV) or in which a PLCP Severely Errored Framing Second (SEFS) was counted. Counting of PLCP ES is inhibited during second intervals where PLCP Unavailable Seconds (UAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.3
lpDS3PlcpSevErroredSecThis attribute indicates the number of seconds containing 5 or more PLCPCVs or in which a PLCPSEFS was counted (i.e. a PLCP OOF event occurred). Counting of PLCP SES is inhibited during second intervals where PLCP Unavailable Seconds (UAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.4
lpDS3PlcpSevErroredFramingSecThis attribute indicates the number of seconds containing one or more PLCP Severely Errored Frame (SEF) events. An SEF event is equivalent to a PLCP OOF (Out of Frame) event. Counting of PLCPP SEFSs is inhibited for second intervals where PLCP Unavailable Seconds (UAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.5
lpDS3PlcpUnavailSecThis attribute indicates the number of seconds when the near-end PLCP layer is unavailable. The PLCP Path Layer becomes unavailable at the declaration of PLCP LOF (Loss of Frame) failure alarm state. The PLCP Path Layer becomes available again only after clearing this condition. For second intervals where PLCP UAS are counted, counting of PLCP Severely Errored Framing Seconds (SEFS), PLCP Coding Violations (CV), PLCP Errored Seconds (ES), PLCP Severely Errored Seconds (SES) and PLCP Far-End Severely Errored Seconds (FESES) is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.6
lpDS3PlcpFarEndErrorFreeSecThis attribute indicates the number of seconds during which the far- end PLCP path layer had no errors.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.7
lpDS3PlcpFarEndCodingViolationsThis attribute indicates the total number of PLCP Far-End Block Errors (FEBE) reported by the far-end terminal. Counting of FEBEs is inhibited for second intervals where PLCP Far-End Unavailable Seconds (FEUAS) are counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.8
lpDS3PlcpFarEndErroredSecThis attribute indicates the number of seconds containing one or more PLCP Far-End Coding Violations (FECV). Counting of PLCP FEES is inhibited during second intervals where PLCP Far-End Unavailable Seconds (FEUAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.9
lpDS3PlcpFarEndSevErroredSecThis attribute indicates the number of seconds containing 5 or more PLCP Far-End Coding Violations (FECV). Counting of PLCP FESES is inhibited for second intervals where PLCP Far-End Unavailable Seconds (FEUAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.10
lpDS3PlcpFarEndUnavailableSecThis attribute indicates the number of seconds during which the PLCP far end is unavailable. The PLCP Path Layer becomes unavailable at the declaration of PLCP RAI (Remote Alarm Indication). Service becomes available again after this condition is cleared. For second intervals where PLCP FEUAS are counted, counting of PLCP Far-End Coding Violations (FECV), PLCP Far- End Errored Seconds (FEES), and PLCP Far-End Severely Errored Seconds (FESES) is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.4.11.1.11
lpDS3Cell
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.5
lpDS3CellRowStatusTableThis entry controls the addition and deletion of lpDS3Cell components.
SEQUENCE OF LpDS3CellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.5.1
lpDS3CellRowStatusEntryA single entry in the table represents a single lpDS3Cell component.
LpDS3CellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.5.1.1
lpDS3CellRowStatusThis variable is used as the basis for SNMP naming of lpDS3Cell components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.5.1.1.1
lpDS3CellComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.5.1.1.2
lpDS3CellStorageTypeThis variable represents the storage type value for the lpDS3Cell tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.5.1.1.4
lpDS3CellIndexThis variable represents the index for the lpDS3Cell tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.5.5.1.1.10
lpDS3CellProvTableThis group contains the provisioning attributes for the AtmCell component.
SEQUENCE OF LpDS3CellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.5.10
lpDS3CellProvEntryAn entry in the lpDS3CellProvTable.
LpDS3CellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.5.10.1
lpDS3CellAlarmActDelayThis attribute defines the time during which a Loss of Cell Delineation (LCD) defect should be observed before declaring an LCD alarm (alarm 70115501). The time is specified in milliseconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.5.10.1.1
lpDS3CellScrambleCellPayloadCell scrambling, as defined by ITU-T Recommendation I.432., can provide a solution to the problem of transmission equipment which is sensitive to certain bit patterns in the ATM cell payload. This attribute controls whether or not the cell payload is scrambled. It defaults to off for DS1 interfaces, and on for all other interfaces. Note that this setting must be the same at both ends of the link.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.5.10.1.2
lpDS3CellCorrectSingleBitHeaderErrorsThis attribute specifies whether the port corrects single bit errors detected in the headers of received cells. If single bit errors are corrected, the affected cells are passed up to the ATM layer according to normal operation. If single bit errors are not corrected, these errored cells are discarded by the physical layer. Note that cells containing multiple bit errors in their headers are always discarded. Single bit HEC error correction must remain off for the following card types: 3pDS1Atm, 8pDS1Atm, 3pE1Atm, 8pE1Atm, 2pJ6MAtm, 3pDS3Atm, and 3pE3Atm.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.5.10.1.3
lpDS3CellOperTableThis group contains the common operational attributes for the AtmCell component.
SEQUENCE OF LpDS3CellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.5.11
lpDS3CellOperEntryAn entry in the lpDS3CellOperTable.
LpDS3CellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.5.11.1
lpDS3CellLcdAlarmThis attribute displays whether the Loss of Cell Delineation (LCD) failure alarm state has been entered. This state is entered when LCD defects have been observed and accumulated for a period of time specified through the alarmActDelay attribute. In ATM cell direct mapping mode, an LCD defect occurs when Out of Cell Delineation (OCD) anomaly persists for x milliseconds, and disappears when the Out of Cell Delineation (OCD) is absent for x msec. An OCD anomaly occurs when 7 consecutive incorrect HECs have been detected. An OCD anomaly terminates when 6 consecutive correct HECs have been detected. For an AtmCell component located under a DS3 or E3 component with mapping = PLCP, the LCD defect is directly derived from the PLCP LOF defect. If LCD defects are intermittently occurring, the LCD defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle The component under which is located the AtmCell component goes into an operational state of disabled until the LCD alarm condition is cleared. The condition is cleared after the LCD defect has not been reported for a period of 10 seconds +/- 0.5 seconds. The lcdAlarm attribute is always set to off when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.5.11.1.1
lpDS3CellStatsTableThis group contains the Statistics attribute for the AtmCell component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpDS3CellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.5.12
lpDS3CellStatsEntryAn entry in the lpDS3CellStatsTable.
LpDS3CellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.5.12.1
lpDS3CellUncorrectableHecErrorsThis attribute indicates the number of uncorrectable ATM cell header errors that have been detected. Counting of uncorrectableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.5.12.1.1
lpDS3CellSevErroredSecThis attribute indicates the total number of ATM Cell Severely Errored Seconds (SESs) that have been counted. In direct mapping mode, an ATM Cell SES is declared for second intervals containing one or more Out of Cell Delineation (OCD) defects. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected. In PLCP mapping mode, an ATM Cell SES is declared for second intervals containing one or more PLCP LOF defects. Counting of uncorrectableHeaderErrors (ucErr) and correctableHeaderErrors (cErr) is inhibited when the OCD defect is present.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.5.12.1.2
lpDS3CellReceiveCellUtilizationThis attribute is the ratio of the number of valid, assigned cells received on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.5.5.12.1.3
lpDS3CellTransmitCellUtilizationThis attribute is the ratio of the number of valid, assigned cells transmitted on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.5.5.12.1.4
lpDS3CellCorrectableHeaderErrorsThis attribute indicates the number of correctable ATM cell header errors that have been detected and corrected. Counting of correctableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detectedro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.5.12.1.5
lpDS3DS1
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.6
lpDS3DS1RowStatusTableThis entry controls the addition and deletion of lpDS3DS1 components.
SEQUENCE OF LpDS3DS1RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.1
lpDS3DS1RowStatusEntryA single entry in the table represents a single lpDS3DS1 component.
LpDS3DS1RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.1.1
lpDS3DS1RowStatusThis variable is used as the basis for SNMP naming of lpDS3DS1 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.1.1.1
lpDS3DS1ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.1.1.2
lpDS3DS1StorageTypeThis variable represents the storage type value for the lpDS3DS1 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.1.1.4
lpDS3DS1IndexThis variable represents the index for the lpDS3DS1 tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.1.1.10
lpDS3DS1Chan
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2
lpDS3DS1ChanRowStatusTableThis entry controls the addition and deletion of lpDS3DS1Chan components.
SEQUENCE OF LpDS3DS1ChanRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.1
lpDS3DS1ChanRowStatusEntryA single entry in the table represents a single lpDS3DS1Chan component.
LpDS3DS1ChanRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.1.1
lpDS3DS1ChanRowStatusThis variable is used as the basis for SNMP naming of lpDS3DS1Chan components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.1.1.1
lpDS3DS1ChanComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.1.1.2
lpDS3DS1ChanStorageTypeThis variable represents the storage type value for the lpDS3DS1Chan tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.1.1.4
lpDS3DS1ChanIndexThis variable represents the index for the lpDS3DS1Chan tables.
Integer32 (0)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.1.1.10
lpDS3DS1ChanTest
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2
lpDS3DS1ChanTestRowStatusTableThis entry controls the addition and deletion of lpDS3DS1ChanTest components.
SEQUENCE OF LpDS3DS1ChanTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.1
lpDS3DS1ChanTestRowStatusEntryA single entry in the table represents a single lpDS3DS1ChanTest component.
LpDS3DS1ChanTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.1.1
lpDS3DS1ChanTestRowStatusThis variable is used as the basis for SNMP naming of lpDS3DS1ChanTest components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.1.1.1
lpDS3DS1ChanTestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.1.1.2
lpDS3DS1ChanTestStorageTypeThis variable represents the storage type value for the lpDS3DS1ChanTest tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.1.1.4
lpDS3DS1ChanTestIndexThis variable represents the index for the lpDS3DS1ChanTest tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.1.1.10
lpDS3DS1ChanTestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS3DS1ChanTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.10
lpDS3DS1ChanTestStateEntryAn entry in the lpDS3DS1ChanTestStateTable.
LpDS3DS1ChanTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.10.1
lpDS3DS1ChanTestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.10.1.1
lpDS3DS1ChanTestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.10.1.2
lpDS3DS1ChanTestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.10.1.3
lpDS3DS1ChanTestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpDS3DS1ChanTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11
lpDS3DS1ChanTestSetupEntryAn entry in the lpDS3DS1ChanTestSetupTable.
LpDS3DS1ChanTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1
lpDS3DS1ChanTestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1.1
lpDS3DS1ChanTestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1.2
lpDS3DS1ChanTestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1.3
lpDS3DS1ChanTestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1.4
lpDS3DS1ChanTestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1.5
lpDS3DS1ChanTestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1.6
lpDS3DS1ChanTestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1.7
lpDS3DS1ChanTestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.11.1.8
lpDS3DS1ChanTestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpDS3DS1ChanTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12
lpDS3DS1ChanTestResultsEntryAn entry in the lpDS3DS1ChanTestResultsTable.
LpDS3DS1ChanTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1
lpDS3DS1ChanTestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.1
lpDS3DS1ChanTestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.2
lpDS3DS1ChanTestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.3
lpDS3DS1ChanTestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.4
lpDS3DS1ChanTestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.5
lpDS3DS1ChanTestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.6
lpDS3DS1ChanTestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.7
lpDS3DS1ChanTestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.8
lpDS3DS1ChanTestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.9
lpDS3DS1ChanTestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.10
lpDS3DS1ChanTestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.2.12.1.11
lpDS3DS1ChanCell
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3
lpDS3DS1ChanCellRowStatusTableThis entry controls the addition and deletion of lpDS3DS1ChanCell components.
SEQUENCE OF LpDS3DS1ChanCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.1
lpDS3DS1ChanCellRowStatusEntryA single entry in the table represents a single lpDS3DS1ChanCell component.
LpDS3DS1ChanCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.1.1
lpDS3DS1ChanCellRowStatusThis variable is used as the basis for SNMP naming of lpDS3DS1ChanCell components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.1.1.1
lpDS3DS1ChanCellComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.1.1.2
lpDS3DS1ChanCellStorageTypeThis variable represents the storage type value for the lpDS3DS1ChanCell tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.1.1.4
lpDS3DS1ChanCellIndexThis variable represents the index for the lpDS3DS1ChanCell tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.1.1.10
lpDS3DS1ChanCellProvTableThis group contains the provisioning attributes for the AtmCell component.
SEQUENCE OF LpDS3DS1ChanCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.10
lpDS3DS1ChanCellProvEntryAn entry in the lpDS3DS1ChanCellProvTable.
LpDS3DS1ChanCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.10.1
lpDS3DS1ChanCellAlarmActDelayThis attribute defines the time during which a Loss of Cell Delineation (LCD) defect should be observed before declaring an LCD alarm (alarm 70115501). The time is specified in milliseconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.10.1.1
lpDS3DS1ChanCellScrambleCellPayloadCell scrambling, as defined by ITU-T Recommendation I.432., can provide a solution to the problem of transmission equipment which is sensitive to certain bit patterns in the ATM cell payload. This attribute controls whether or not the cell payload is scrambled. It defaults to off for DS1 interfaces, and on for all other interfaces. Note that this setting must be the same at both ends of the link.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.10.1.2
lpDS3DS1ChanCellCorrectSingleBitHeaderErrorsThis attribute specifies whether the port corrects single bit errors detected in the headers of received cells. If single bit errors are corrected, the affected cells are passed up to the ATM layer according to normal operation. If single bit errors are not corrected, these errored cells are discarded by the physical layer. Note that cells containing multiple bit errors in their headers are always discarded. Single bit HEC error correction must remain off for the following card types: 3pDS1Atm, 8pDS1Atm, 3pE1Atm, 8pE1Atm, 2pJ6MAtm, 3pDS3Atm, and 3pE3Atm.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.10.1.3
lpDS3DS1ChanCellOperTableThis group contains the common operational attributes for the AtmCell component.
SEQUENCE OF LpDS3DS1ChanCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.11
lpDS3DS1ChanCellOperEntryAn entry in the lpDS3DS1ChanCellOperTable.
LpDS3DS1ChanCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.11.1
lpDS3DS1ChanCellLcdAlarmThis attribute displays whether the Loss of Cell Delineation (LCD) failure alarm state has been entered. This state is entered when LCD defects have been observed and accumulated for a period of time specified through the alarmActDelay attribute. In ATM cell direct mapping mode, an LCD defect occurs when Out of Cell Delineation (OCD) anomaly persists for x milliseconds, and disappears when the Out of Cell Delineation (OCD) is absent for x msec. An OCD anomaly occurs when 7 consecutive incorrect HECs have been detected. An OCD anomaly terminates when 6 consecutive correct HECs have been detected. For an AtmCell component located under a DS3 or E3 component with mapping = PLCP, the LCD defect is directly derived from the PLCP LOF defect. If LCD defects are intermittently occurring, the LCD defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle The component under which is located the AtmCell component goes into an operational state of disabled until the LCD alarm condition is cleared. The condition is cleared after the LCD defect has not been reported for a period of 10 seconds +/- 0.5 seconds. The lcdAlarm attribute is always set to off when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.11.1.1
lpDS3DS1ChanCellStatsTableThis group contains the Statistics attribute for the AtmCell component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpDS3DS1ChanCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.12
lpDS3DS1ChanCellStatsEntryAn entry in the lpDS3DS1ChanCellStatsTable.
LpDS3DS1ChanCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.12.1
lpDS3DS1ChanCellUncorrectableHecErrorsThis attribute indicates the number of uncorrectable ATM cell header errors that have been detected. Counting of uncorrectableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.12.1.1
lpDS3DS1ChanCellSevErroredSecThis attribute indicates the total number of ATM Cell Severely Errored Seconds (SESs) that have been counted. In direct mapping mode, an ATM Cell SES is declared for second intervals containing one or more Out of Cell Delineation (OCD) defects. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected. In PLCP mapping mode, an ATM Cell SES is declared for second intervals containing one or more PLCP LOF defects. Counting of uncorrectableHeaderErrors (ucErr) and correctableHeaderErrors (cErr) is inhibited when the OCD defect is present.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.12.1.2
lpDS3DS1ChanCellReceiveCellUtilizationThis attribute is the ratio of the number of valid, assigned cells received on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.12.1.3
lpDS3DS1ChanCellTransmitCellUtilizationThis attribute is the ratio of the number of valid, assigned cells transmitted on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.12.1.4
lpDS3DS1ChanCellCorrectableHeaderErrorsThis attribute indicates the number of correctable ATM cell header errors that have been detected and corrected. Counting of correctableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detectedro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.3.12.1.5
lpDS3DS1ChanTc
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4
lpDS3DS1ChanTcRowStatusTableThis entry controls the addition and deletion of lpDS3DS1ChanTc components.
SEQUENCE OF LpDS3DS1ChanTcRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.1
lpDS3DS1ChanTcRowStatusEntryA single entry in the table represents a single lpDS3DS1ChanTc component.
LpDS3DS1ChanTcRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.1.1
lpDS3DS1ChanTcRowStatusThis variable is used as the basis for SNMP naming of lpDS3DS1ChanTc components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.1.1.1
lpDS3DS1ChanTcComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.1.1.2
lpDS3DS1ChanTcStorageTypeThis variable represents the storage type value for the lpDS3DS1ChanTc tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.1.1.4
lpDS3DS1ChanTcIndexThis variable represents the index for the lpDS3DS1ChanTc tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.1.1.10
lpDS3DS1ChanTcProvTableThis group contains all specific provisioning data for a Tc component.
SEQUENCE OF LpDS3DS1ChanTcProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.10
lpDS3DS1ChanTcProvEntryAn entry in the lpDS3DS1ChanTcProvTable.
LpDS3DS1ChanTcProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.10.1
lpDS3DS1ChanTcReplacementDataThis attribute specifies the trunk conditioning data byte to be substituted into the timeslots defined by the Chan component under fault conditions. replacementData can be set to any two digit hexadecimal number. The following are recommended values: DS1 MUX Out Of Service Code = 0x1A E1 MUX Out Of Service Code = 0xFFrw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.10.1.1
lpDS3DS1ChanTcSignalOneDurationThis attribute specifies the time duration in seconds for which signalOne is substituted into the appropriate signaling bits, when a lineType that uses CAS has been defined. When signalOneDuration has expired signalTwo is substituted into the appropriate signaling bits. If signalOneDuration is set to zero then only signalTwo is substituted into the appropriate signaling bits during error conditions. signalOneDuration can be set to any integer value from 0 to 60 seconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.10.1.2
lpDS3DS1ChanTcOpTableThis group contains all specific operational data for a Tc component.
SEQUENCE OF LpDS3DS1ChanTcOpEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.11
lpDS3DS1ChanTcOpEntryAn entry in the lpDS3DS1ChanTcOpTable.
LpDS3DS1ChanTcOpEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.11.1
lpDS3DS1ChanTcIngressConditioningThis attribute indicates the status of locally generated trunk conditioning towards the ATM network. When trunk conditioning is being locally generated towards the ATM network, ingressConditioning is set to on. When trunk conditioning is not being locally generated towards the ATM network, ingressConditioning is set to off. Trunk conditioning is transmitted towards the ATM network under the following conditions: lossOfSignal (LOS) lossOfFrame (LOF) remoteAlarmIndication (RAI) alarmIndicationSignal (AIS) bufferUnderflow (BU) and in addition for E1: lossOfMultiframe (LOMF) receiveMultiframeRemoteAlarmIndication (RMRAI)ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.11.1.1
lpDS3DS1ChanTcEgressConditioningThis attribute indicates the status of locally generated trunk conditioning towards the PDH line. When trunk conditioning is being locally generated towards the PDH line, egressConditioning is set to on. When trunk conditioning is not being locally generated towards the PDH line, egressConditioning is set to off. Trunk conditioning is transmitted towards the PDH line under the following conditions: bufferUnderflow (BU) AAL1 protocol errors.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.11.1.2
lpDS3DS1ChanTcSigOneTableThis attribute specifies the value to be substituted into the ABCD signaling bits for the timeslots defined by the Chan component under fault conditions. The value will be substituted for the duration provisioned in signalOneDuration when a lineType that uses CAS has been defined. For a lineType of d4Cas (Super Frame), signaling bits C and D are required to equal bits A and B respectively.
SEQUENCE OF LpDS3DS1ChanTcSigOneEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.398
lpDS3DS1ChanTcSigOneEntryAn entry in the lpDS3DS1ChanTcSigOneTable.
LpDS3DS1ChanTcSigOneEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.398.1
lpDS3DS1ChanTcSigOneIndexThis variable represents the lpDS3DS1ChanTcSigOneTable specific index for the lpDS3DS1ChanTcSigOneTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.398.1.1
lpDS3DS1ChanTcSigOneValueThis variable represents an individual value for the lpDS3DS1ChanTcSigOneTable.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.398.1.2
lpDS3DS1ChanTcSigTwoTableThis attribute specifies the value to be substituted into the ABCD signaling bits for the timeslots defined by the Chan component under fault conditions. The value will be substituted after the duration provisioned in signalOneDuration has expired and when a lineType that uses CAS has been defined. For a lineType of d4Cas (Super Frame), signaling bits C and D are required to equal bits A and B respectively.
SEQUENCE OF LpDS3DS1ChanTcSigTwoEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.399
lpDS3DS1ChanTcSigTwoEntryAn entry in the lpDS3DS1ChanTcSigTwoTable.
LpDS3DS1ChanTcSigTwoEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.399.1
lpDS3DS1ChanTcSigTwoIndexThis variable represents the lpDS3DS1ChanTcSigTwoTable specific index for the lpDS3DS1ChanTcSigTwoTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.399.1.1
lpDS3DS1ChanTcSigTwoValueThis variable represents an individual value for the lpDS3DS1ChanTcSigTwoTable.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.4.399.1.2
lpDS3DS1ChanProvTableThis group contains all of the provisional data for a Channel component.
SEQUENCE OF LpDS3DS1ChanProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.10
lpDS3DS1ChanProvEntryAn entry in the lpDS3DS1ChanProvTable.
LpDS3DS1ChanProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.10.1
lpDS3DS1ChanTimeslotsThis attribute contains the list of timeslots that are used by the Channel component. Valid numbers are 1-24 for a Channel used by a DS1 component, and 1-31 for a Channel used by an E1 component. Description of bits: notused0(0) n1(1) n2(2) n3(3) n4(4) n5(5) n6(6) n7(7) n8(8) n9(9) n10(10) n11(11) n12(12) n13(13) n14(14) n15(15) n16(16) n17(17) n18(18) n19(19) n20(20) n21(21) n22(22) n23(23) n24(24) n25(25) n26(26) n27(27) n28(28) n29(29) n30(30) n31(31)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.10.1.1
lpDS3DS1ChanTimeslotDataRateThis attribute selects the data rate of the timeslots in a channel of a DS1 component. For E1, the data rate of the timeslots will always be 64kbit/s regardless of this attribute. When doNotOverride is selected for a channel on a DS1, the data rate of the channel's timeslots are dependent on the zeroCoding selection of the DS1 component. If the zeroCoding is B8ZS (where supported on the FP) or none, the timeslot's data rate will be 64kbit/s. If the zeroCoding option is bit7Stuffing, the data rate of a timeslot will be 56kbit/s. When 56kbit/s is selected for a channel on a DS1, the least significant bit of each timeslot of this Channel will always be set to 1 and not used for data. The data rate for the timeslots of this channel is therefore restricted to 56kbit/s. One application of this attribute is to allow a DS1 line to support mixing channels that originate from lines that use different zeroCoding schemes.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.10.1.2
lpDS3DS1ChanApplicationFramerNameThis attribute defines the link to the software stack. It defines which application is running on top of this hardware component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.10.1.3
lpDS3DS1ChanCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpDS3DS1ChanCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.11
lpDS3DS1ChanCidDataEntryAn entry in the lpDS3DS1ChanCidDataTable.
LpDS3DS1ChanCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.11.1
lpDS3DS1ChanCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.11.1.1
lpDS3DS1ChanIfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpDS3DS1ChanIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.12
lpDS3DS1ChanIfEntryEntryAn entry in the lpDS3DS1ChanIfEntryTable.
LpDS3DS1ChanIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.12.1
lpDS3DS1ChanIfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.12.1.1
lpDS3DS1ChanIfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.12.1.2
lpDS3DS1ChanOperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpDS3DS1ChanOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.13
lpDS3DS1ChanOperStatusEntryAn entry in the lpDS3DS1ChanOperStatusTable.
LpDS3DS1ChanOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.13.1
lpDS3DS1ChanSnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.13.1.1
lpDS3DS1ChanStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS3DS1ChanStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14
lpDS3DS1ChanStateEntryAn entry in the lpDS3DS1ChanStateTable.
LpDS3DS1ChanStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1
lpDS3DS1ChanAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.1
lpDS3DS1ChanOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.2
lpDS3DS1ChanUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.3
lpDS3DS1ChanAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.4
lpDS3DS1ChanProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.5
lpDS3DS1ChanControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.6
lpDS3DS1ChanAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.7
lpDS3DS1ChanStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.8
lpDS3DS1ChanUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.14.1.9
lpDS3DS1ChanOperTableThis group contains all of the operational data for a Channel component.
SEQUENCE OF LpDS3DS1ChanOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.15
lpDS3DS1ChanOperEntryAn entry in the lpDS3DS1ChanOperTable.
LpDS3DS1ChanOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.15.1
lpDS3DS1ChanActualChannelSpeedThis attribute displays the measured link speed of the Channel component.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.15.1.1
lpDS3DS1ChanAdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpDS3DS1ChanAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.16
lpDS3DS1ChanAdminInfoEntryAn entry in the lpDS3DS1ChanAdminInfoTable.
LpDS3DS1ChanAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.16.1
lpDS3DS1ChanVendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.16.1.1
lpDS3DS1ChanCommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.6.2.16.1.2
lpDS3DS1Test
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3
lpDS3DS1TestRowStatusTableThis entry controls the addition and deletion of lpDS3DS1Test components.
SEQUENCE OF LpDS3DS1TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.1
lpDS3DS1TestRowStatusEntryA single entry in the table represents a single lpDS3DS1Test component.
LpDS3DS1TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.1.1
lpDS3DS1TestRowStatusThis variable is used as the basis for SNMP naming of lpDS3DS1Test components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.1.1.1
lpDS3DS1TestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.1.1.2
lpDS3DS1TestStorageTypeThis variable represents the storage type value for the lpDS3DS1Test tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.1.1.4
lpDS3DS1TestIndexThis variable represents the index for the lpDS3DS1Test tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.1.1.10
lpDS3DS1TestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS3DS1TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.10
lpDS3DS1TestStateEntryAn entry in the lpDS3DS1TestStateTable.
LpDS3DS1TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.10.1
lpDS3DS1TestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.10.1.1
lpDS3DS1TestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.10.1.2
lpDS3DS1TestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.10.1.3
lpDS3DS1TestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpDS3DS1TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11
lpDS3DS1TestSetupEntryAn entry in the lpDS3DS1TestSetupTable.
LpDS3DS1TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1
lpDS3DS1TestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1.1
lpDS3DS1TestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1.2
lpDS3DS1TestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1.3
lpDS3DS1TestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1.4
lpDS3DS1TestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1.5
lpDS3DS1TestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1.6
lpDS3DS1TestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1.7
lpDS3DS1TestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.11.1.8
lpDS3DS1TestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpDS3DS1TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12
lpDS3DS1TestResultsEntryAn entry in the lpDS3DS1TestResultsTable.
LpDS3DS1TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1
lpDS3DS1TestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.1
lpDS3DS1TestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.2
lpDS3DS1TestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.3
lpDS3DS1TestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.4
lpDS3DS1TestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.5
lpDS3DS1TestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.6
lpDS3DS1TestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.7
lpDS3DS1TestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.8
lpDS3DS1TestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.9
lpDS3DS1TestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.10
lpDS3DS1TestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.6.3.12.1.11
lpDS3DS1ProvTableThis group contains all of the provisioning data for a DS1 component.
SEQUENCE OF LpDS3DS1ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.10
lpDS3DS1ProvEntryAn entry in the lpDS3DS1ProvTable.
LpDS3DS1ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.10.1
lpDS3DS1LineTypeThis attribute defines the framing of the DS1 tributary. d4 defines a framing pattern of 12 frames per multiframe. esf defines a framing pattern of 24 frames per multiframe. d4Cas defines a framing pattern of 12 frames per multiframe with channel associated signalling. esfCas defines a framing pattern of 24 frames per multiframe with channel associated signalling.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.10.1.1
lpDS3DS1ZeroCodingThis attribute defines the zero encoding on the DS1 tributary. bit7Stuffing sets bit 7 of every timeslot to a one to guarantee ones's density. This reduces the available bandwidth of the channel by 1/8. none does no zero encoding.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.10.1.2
lpDS3DS1ClockingSourceThis attribute defines the source of the transmit clock for the DS1 tributary. When the clocking source is selected from local, the crystal on the port generates the clocking for the DS1 tributary. When the clocking source is selected from line, the port synchronizes to the clock from the DS1 tributary. When the clocking source is selected from module, the ports clock synchronizes to the clock provided by the oscillator on the active CP. On a 1pDS3C card, if the NetworkSynchronization (NS) component is present the default value of this attribute will be module otherwise it will be line. On a 2pDS3cAal card, the only valid values are local and module. If the NS component is present the default value of this attribute will be module otherwise it will be local.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.10.1.3
lpDS3DS1CidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpDS3DS1CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.11
lpDS3DS1CidDataEntryAn entry in the lpDS3DS1CidDataTable.
LpDS3DS1CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.11.1
lpDS3DS1CustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.5.6.11.1.1
lpDS3DS1AdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpDS3DS1AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.12
lpDS3DS1AdminInfoEntryAn entry in the lpDS3DS1AdminInfoTable.
LpDS3DS1AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.12.1
lpDS3DS1VendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.6.12.1.1
lpDS3DS1CommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.6.12.1.2
lpDS3DS1IfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpDS3DS1IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.13
lpDS3DS1IfEntryEntryAn entry in the lpDS3DS1IfEntryTable.
LpDS3DS1IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.13.1
lpDS3DS1IfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.13.1.1
lpDS3DS1IfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.5.6.13.1.2
lpDS3DS1OperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpDS3DS1OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.14
lpDS3DS1OperStatusEntryAn entry in the lpDS3DS1OperStatusTable.
LpDS3DS1OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.14.1
lpDS3DS1SnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.14.1.1
lpDS3DS1StateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS3DS1StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15
lpDS3DS1StateEntryAn entry in the lpDS3DS1StateTable.
LpDS3DS1StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1
lpDS3DS1AdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.1
lpDS3DS1OperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.2
lpDS3DS1UsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.3
lpDS3DS1AvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.4
lpDS3DS1ProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.5
lpDS3DS1ControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.6
lpDS3DS1AlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.7
lpDS3DS1StandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.8
lpDS3DS1UnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.15.1.9
lpDS3DS1OperTableThis group contains the common operational data for a component in a digital hierarchy interface.
SEQUENCE OF LpDS3DS1OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.16
lpDS3DS1OperEntryAn entry in the lpDS3DS1OperTable.
LpDS3DS1OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.16.1
lpDS3DS1RxAisAlarmThis attribute indicates whether an AIS (Alarm Indication Signal) alarm state has been entered. The AIS Alarm state is entered when AIS defects have been observed and accumulated for 2.5 seconds +/- 0.5 seconds. An AIS defect is detected after having received less than 3 zeros in a 2048 bit period. If the AIS defects are intermittently occurring, the AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. This tributary goes into an operationalState of disabled for the duration of an AIS alarm state. The AIS alarm state is cleared when AIS defects are absent for 10 seconds +/- 0.5 seconds.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.16.1.1
lpDS3DS1LofAlarmThis attribute indicates whether a LOF (Loss of Frame) alarm state has been entered. The LOF alarm state is entered when LOF defects (2 out of 5 framing bits in error ) have been detected for 3 seconds +/- 0.5 seconds. If the LOF defects are intermittently occurring, the LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. This tributary goes into an operationalState of disabled until the LOF alarm state is cleared. Also, an RAI alarm is transmitted to the far end for the duration of the LOF alarm state The condition is cleared when framing has been achieved for 10 seconds +/- 0.5 seconds.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.16.1.2
lpDS3DS1RxRaiAlarmThis attribute indicates whether an RAI (Remote Alarm Indication) alarm state has been entered. An RAI alarm state is entered when the RAI defect indicator has been observed and accumulated for 3.5 seconds +/- 0.5 seconds. If the RAI defects are intermittently occurring, the RAI defect accumulator is decremented at a rate of 1/ 10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The RAI alarm state is cleared when the RAI defect indicator has been absent for 10 seconds +/- 0.5 seconds. The RAI alarm is usually an indication that the far end facility is unable to gain synchronization.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.16.1.3
lpDS3DS1TxAisAlarmThis attribute indicates whether an AIS (Alarm Indication Signal) alarm is being transmitted on the line. An AIS alarm is transmitted when the tributary is in a locked state.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.16.1.4
lpDS3DS1TxRaiAlarmThis attribute indicates whether a RAI signal is being sent on the outgoing line. The RAI signal is transmitted when the tributary detects a LOF alarm condition.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.6.16.1.5
lpDS3DS1StatsTableThis group contains the common statistical data for a component in a digital hierarchy interface.
SEQUENCE OF LpDS3DS1StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17
lpDS3DS1StatsEntryAn entry in the lpDS3DS1StatsTable.
LpDS3DS1StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1
lpDS3DS1RunningTimeThis attribute counts the number of seconds since the tributary was activated.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.1
lpDS3DS1ErrorFreeSecThis attribute counts the number of seconds that the tributary has been in an error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.2
lpDS3DS1ErroredSecThis attribute counts the number of errored seconds the tributary has counted since it was activated. An errored second is declared when a second with one or more Code Violation Error events, or one or more Out Of Frame events occurs. A code violation error may be a CRC error or a BPV error. An Out Of Frame event occurs when 2 out of 5 framing bits are in error.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.3
lpDS3DS1SevErroredSecThis attribute counts the number of severely errored seconds the tributary has counted since it was activated. A severely errored second occurs when a second with 320 or more Code Violation Error events or one or more Out Of Frame events occurs.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.4
lpDS3DS1SevErroredFrmSecThis attribute counts the number of severely errored framing seconds the tributary has counted since it was activated A severely errored framing second occurs when a second with one or more Out Of Frame events occurs.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.5
lpDS3DS1UnavailSecThis attribute counts the total number of seconds that the tributary has been in an unavailable signal state. An unavailable signal state occurs at the onset of 10 consecutive Severely Errored Seconds. The state is cleared at the onset of 10 seconds with no Severely Errored Seconds.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.6
lpDS3DS1CrcErrorsThis attribute counts the total number of CRC-6 errors. These will only be counted when the lineType is esf.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.7
lpDS3DS1FrmErrorsThis attribute counts the total number of frame errors. A frame error is an error in the framing bits.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.8
lpDS3DS1SlipErrorsThe total number of times that the line experienced a controlled frame slip.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.6.17.1.9
lpDS3ProvTableThis group contains all of the provisioning data for a DS3 component.
SEQUENCE OF LpDS3ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.10
lpDS3ProvEntryAn entry in the lpDS3ProvTable.
LpDS3ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.10.1
lpDS3CbitParityThis attribute indicates if C-Bit parity has been turned ON or OFF. The CBIT component will appear under the DS3 component when the cbitParity attribute is set to on.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.10.1.1
lpDS3LineLengthThis attribute defines the line length for equalization calculations for the DS3 line. The range is between 0 and 450 feet (1 metre = 3.28 feet). Note: There are currently only two ranges as far as the equalization calculation performed on the FP is concerned: 0 to 224ft and 225 to 450ft.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.5.10.1.2
lpDS3ClockingSourceThis attribute defines the type of clocking source used for synchronizing the DS3 transmit clock: local means direct use of the local clock oscillator at its centre frequency; line means use of a signal phase-locked to the incoming DS3 line rate; module means the use of a signal phase-locked to the CP reference clock. Note that the multiport cell-based cards have one common clock source for all ports. For this reason, the following rules apply for the value of clockingSource across the board's three ports: All three clockingSource values must be 'local' OR All three clockingSource values must be 'module' OR One clockingSource value must be 'line' and the other two must be 'otherPort'. The there is no NS component provisioned, the default value for this attribute will be local. If the NS component has been provisioned, the default value is module, except for the 1pDS3C cards. For the 1pDS3C cards, the default and only valid value for this attribute is local. The clockingSource of the DS1 sub-component becomes the effective clocking source for this attribute. All the DS1 sub-components have the same clocking source.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.10.1.3
lpDS3ApplicationFramerNameThis attribute defines the link to the software stack. It defines which application is running on top of the DS3 component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.5.10.1.4
lpDS3MappingThis attribute indicates if ATM cells will be mapped directly into the DS3 payload, or whether PLCP mapping will be used. The PLCP component will appear under the DS3 component when this attribute is set to plcp. This attribute will be ignored when set on frame-based cards.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.10.1.5
lpDS3CidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpDS3CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.11
lpDS3CidDataEntryAn entry in the lpDS3CidDataTable.
LpDS3CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.11.1
lpDS3CustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.5.11.1.1
lpDS3AdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpDS3AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.12
lpDS3AdminInfoEntryAn entry in the lpDS3AdminInfoTable.
LpDS3AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.12.1
lpDS3VendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.12.1.1
lpDS3CommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.5.12.1.2
lpDS3IfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpDS3IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.13
lpDS3IfEntryEntryAn entry in the lpDS3IfEntryTable.
LpDS3IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.13.1
lpDS3IfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.13.1.1
lpDS3IfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.5.13.1.2
lpDS3OperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpDS3OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.14
lpDS3OperStatusEntryAn entry in the lpDS3OperStatusTable.
LpDS3OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.14.1
lpDS3SnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.14.1.1
lpDS3StateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS3StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.15
lpDS3StateEntryAn entry in the lpDS3StateTable.
LpDS3StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1
lpDS3AdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.1
lpDS3OperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.2
lpDS3UsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.3
lpDS3AvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.4
lpDS3ProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.5
lpDS3ControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.6
lpDS3AlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.7
lpDS3StandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.8
lpDS3UnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.15.1.9
lpDS3OperTableThis group contains the common operational data for DS3 component.
SEQUENCE OF LpDS3OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.16
lpDS3OperEntryAn entry in the lpDS3OperTable.
LpDS3OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1
lpDS3LosAlarmThis attribute displays whether a Loss Of Signal (LOS) alarm state has been entered. An LOS alarm state is entered when LOS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. An LOS defect is detected at the DS3 line interface upon observing 175 +/- 75 continuous pulse positions with no pulses of either positive or negative polarity. If the LOS defects are intermittently occurring, the LOS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The DS3 component goes into an operational state of disabled until the LOS alarm condition is cleared. The LOS alarm state is cleared after LOS defects have been absent for a period of 10 seconds +/- 0.5 seconds. The losAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1.1
lpDS3LofAlarmThis attribute displays whether a Loss Of Frame (LOF) alarm state has been entered. An LOF alarm state is entered when Severely Errored Frame (SEF) defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. A SEF defect is detected when 3 (or more) out of 16 (or fewer) F-bits are in error, or one (or more) M-bits in two (or more) out of four (or fewer) consecutive M-frames are in error. If the LOF defects are intermittently occurring, the LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The DS3 component goes into an operational state of disabled until the LOF alarm condition is cleared. The condition is cleared when framing has been achieved for a period of 10 seconds +/- 0.5 seconds. As long as SEF defects are detected, the node also transmits the far-end SEF/AIS defect indicator over the outgoing line. When not running in C-Bit Parity mode, the txRai attribute is also set to on when transmitting the far-end SEF/AIS defect indicator on the outgoing line. The lofAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1.2
lpDS3RxAisAlarmThis attribute displays whether an Alarm Indication Signal (AIS) alarm state has been entered. An AIS alarm state is entered when AIS defects have been observed and accumulated for 2.5 seconds +/ - 0.5 seconds. An AIS defect is the occurrence of AIS (valid DS3 frame with payload containing the 1010...sequence and with C-Bits set to zero) in contiguous M-frames for a time greater than 100 milliseconds. If the AIS defects are intermittently occurring, the AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The DS3 component goes into an operational state of disabled until the AIS alarm condition is cleared (after AIS has been no longer detected for a period of 10 seconds +/- 0.5 seconds). As long as AIS is detected, the node also transmits the far-end SEF/AIS defect indicator over the outgoing line. When not running in C-Bit Parity mode, the txRai attribute is also set to on when transmitting the far- end SEF/AIS defect indicator on the outgoing line. The rxAisAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1.3
lpDS3RxRaiAlarmThis attribute displays whether a Remote Alarm Indication (RAI) alarm state has been entered. When not running the C-Bit Parity mode, the RAI alarm state is entered when the far-end SEF/AIS defect indicator has been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds on the incoming DS3 line. If the RAI defects are intermittently occurring, the RAI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The DS3 component goes into an operational state of disabled until the RAI alarm condition is cleared. The condition is cleared when the far-end SEF/AIS defect indicator has not been detected for 10 seconds +/- 0.5 seconds. When running the C-Bit Parity mode, the RAI alarm state is entered upon detection of a far-end alarm over the Far-End Alarm and Control (FEAC) channel. The RAI alarm state is exited as soon as no more far-end alarm is detected on the FEAC channel. The far- end alarms that can be detected on the FEAC channel and that cause the RAI alarm state to be entered are: equipment failure alarm (service affecting), LOS alarm, LOF alarm, idle and AIS alarm. The rxRaiAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1.4
lpDS3RxIdleThis attribute displays whether an Idle failure condition has been reported on the DS3 port. An Idle condition is reported when DS3 Idle defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The DS3 Idle defect is the occurrence of a valid DS3 frame with the information bits set to a 11001100.. sequence. If the DS3 Idle defects are intermittently occurring, the DS3 Idle defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The DS3 component goes into an operational state of disabled until the Idle failure condition is cleared. The failure condition is cleared when the DS3 idle pattern has not been detected for at least 10 seconds +/- 0.5 seconds. The rxIdle attribute is always set to off when the component has been locked and left offline. The idle pattern indicates that the far-end is physically connected but not put in service. For instance, DS3 idle is transmitted on the outgoing line when the DS3 component is locked and not used for operational testing.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1.5
lpDS3TxAisThis attribute displays whether an Alarm Indication Signal (AIS) alarm is being transmitted on the DS3 line. Currently, AIS is never transmitted by a Passport DS3 node.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1.6
lpDS3TxRaiWhen not running C-Bit Parity mode, this attribute displays whether the far-end SEF/AIS defect indicator is transmitted over the outgoing line when the DS3 component has been unlocked or used in operational testing. When running in C-Bit Parity mode, this attribute displays whether a far-end alarm is sent over the Far-End Alarm and Control (FEAC) channel when the DS3 component has been unlocked or used in operational testing. When the DS3 component is locked and not used in operational testing, this attribute is always set to off.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1.7
lpDS3TxIdleThis attribute displays whether the DS3 Idle signal is transmitted over the outgoing line. DS3 Idle is sent when the DS3 component has been locked and not used in operational testing.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.5.16.1.8
lpDS3StatsTableThis group contains the specific DS3 common operational data for a DS3 component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpDS3StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.17
lpDS3StatsEntryAn entry in the lpDS3StatsTable.
LpDS3StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1
lpDS3RunningTimeThis attribute indicates the total number of seconds since the DS3 component has been activated and been in unlocked state or used for operational testing. All the other error counts that follow as well as each DS3 subcomponent's error counts can be updated when this count is active.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.1
lpDS3ErrorFreeSecThis attribute indicates the number of seconds that the DS3 port has been in an error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.2
lpDS3LineCodeViolationsThis attribute indicates the total number of Line Code Violations (LCV) detected. A DS3 Line Code Violation is a B3Zs error. LCV counting is inhibited for second intervals where Line Severely Errored Second (LSES) is counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.3
lpDS3LineErroredSecThis attribute indicates the total number of Line Errored Seconds (LES) that have been counted. A LES is declared for second intervals containing one or more LCV or one or more Loss Of Signal (LOS) defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.4
lpDS3LineSevErroredSecThis attribute indicates the total number of Line Severely Errored Seconds (LSES) that have been counted. A LSES is declared for second intervals containing more than 44 LCVs or one or more LOS defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.5
lpDS3LineLosSecThis attribute indicates the total number of Line LOS Seconds (LOSS) that have been counted. A LOSS is declared for second intervals containing one or more LOS defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.6
lpDS3LineFailuresThis attribute indicates the total number of times that a line failure (LOS failure) has been declared. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.7
lpDS3PathCodeViolationsThis attribute indicates the total number of Path Code Violations (PCVs) detected. Each PCV corresponds to a P-bit parity error, or possibly a frame error or a disagreement between P-bits or X-bits. PCV counting is inhibited over second intervals where a Path Severely Errored Second (PSES) is counted. Counting of PCVs is also inhibited over second intervals where a Path Unavailable Second (PUAS) is counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.8
lpDS3PathErroredSecThis attribute indicates the total number of Path Errored Seconds (PESs) that have been counted. A PES is declared for second intervals containing one or more Path Code Violations (PCV) or one or more Severely Errored Frame (SEF) or Alarm Indication Signal (AIS) defects. Counting of Path Errored Seconds is inhibited when Path Unavailable Seconds (PUAS) is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.9
lpDS3PathSevErroredSecThis attribute indicates the total number of Path Severely Errored Seconds (PSESs) that have been counted. A PSES is declared for second intervals containing more than 44 PCVs or one or more SEF or AIS defects. Counting of PSESs is inhibited when Path Unavailable Seconds (PUAS) is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.10
lpDS3PathSefAisSecThis attribute indicates the total number of SEF/AIS Seconds (PSASs). A PSAS is declared for second intervals containing one or more Severely Errored Frame (SEF) or Alarm Indication Signal (AIS) defects. Counting of PSAS is inhibited when Path Unavailable Seconds (PUAS) is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.11
lpDS3PathUnavailSecThis attribute indicates the total number of one second intervals for which the DS3 path is unavailable. The DS3 path becomes unavailable at the onset of 10 consecutive Path Severely Errored Seconds (PSES). The 10 PSESs are included in the unavailable time. Once unavailable, the DS3 path becomes available at the onset of 10 contiguous seconds with no PSES. The 10 seconds with no PSES are excluded from the unavailable time. For second intervals where PUAS is counted, counting of Path Coding Violations (PCV), Path Errored Seconds (PES), Path Severely Errored Seconds (PSES) and Path Sef/Ais Seconds (PSAS) is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.12
lpDS3PathFailuresThis attribute indicates the total number of times that a path failure (LOF/AIS failure) has been declared. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.5.17.1.13
lpE3
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.6
lpE3RowStatusTableThis entry controls the addition and deletion of lpE3 components.
SEQUENCE OF LpE3RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.1
lpE3RowStatusEntryA single entry in the table represents a single lpE3 component.
LpE3RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.1.1
lpE3RowStatusThis variable is used as the basis for SNMP naming of lpE3 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.1.1.1
lpE3ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.1.1.2
lpE3StorageTypeThis variable represents the storage type value for the lpE3 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.1.1.4
lpE3IndexThis variable represents the index for the lpE3 tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.6.1.1.10
lpE3Test
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.6.2
lpE3TestRowStatusTableThis entry controls the addition and deletion of lpE3Test components.
SEQUENCE OF LpE3TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.2.1
lpE3TestRowStatusEntryA single entry in the table represents a single lpE3Test component.
LpE3TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.2.1.1
lpE3TestRowStatusThis variable is used as the basis for SNMP naming of lpE3Test components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.2.1.1.1
lpE3TestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.2.1.1.2
lpE3TestStorageTypeThis variable represents the storage type value for the lpE3Test tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.2.1.1.4
lpE3TestIndexThis variable represents the index for the lpE3Test tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.6.2.1.1.10
lpE3TestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpE3TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.2.10
lpE3TestStateEntryAn entry in the lpE3TestStateTable.
LpE3TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.2.10.1
lpE3TestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.2.10.1.1
lpE3TestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.2.10.1.2
lpE3TestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.2.10.1.3
lpE3TestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpE3TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11
lpE3TestSetupEntryAn entry in the lpE3TestSetupTable.
LpE3TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1
lpE3TestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1.1
lpE3TestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1.2
lpE3TestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1.3
lpE3TestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1.4
lpE3TestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1.5
lpE3TestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1.6
lpE3TestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1.7
lpE3TestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.2.11.1.8
lpE3TestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpE3TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12
lpE3TestResultsEntryAn entry in the lpE3TestResultsTable.
LpE3TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1
lpE3TestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.1
lpE3TestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.2
lpE3TestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.3
lpE3TestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.4
lpE3TestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.5
lpE3TestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.6
lpE3TestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.7
lpE3TestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.8
lpE3TestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.9
lpE3TestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.10
lpE3TestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.6.2.12.1.11
lpE3G832
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.6.3
lpE3G832RowStatusTableThis entry controls the addition and deletion of lpE3G832 components.
SEQUENCE OF LpE3G832RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.3.1
lpE3G832RowStatusEntryA single entry in the table represents a single lpE3G832 component.
LpE3G832RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.3.1.1
lpE3G832RowStatusThis variable is used as the basis for SNMP naming of lpE3G832 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.3.1.1.1
lpE3G832ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.3.1.1.2
lpE3G832StorageTypeThis variable represents the storage type value for the lpE3G832 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.3.1.1.4
lpE3G832IndexThis variable represents the index for the lpE3G832 tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.6.3.1.1.10
lpE3G832ProvisionedTableThis group contains the provisionable data for the G832 component.
SEQUENCE OF LpE3G832ProvisionedEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.3.10
lpE3G832ProvisionedEntryAn entry in the lpE3G832ProvisionedTable.
LpE3G832ProvisionedEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.3.10.1
lpE3G832TrailTraceTransmittedThis attribute indicates the E.164 address which is to be encoded in the trail access point identifier, which is transmitted using the Trail Trace (TR) field of the transmitted E3 Frame. Both the expected trail access point identifier and the transmitted trail access point identifier are provisionable attributes of the G832 component. The 16 byte Trail Trace frame is composed of one byte containing a frame start marker and a CRC-7 calculation over the previous frame, and 15 bytes for transporting an E.164 address. If less than the full 15 bytes are used, the address is padded with NULL characters.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.6.3.10.1.1
lpE3G832TrailTraceExpectedThis attribute indicates the E.164 address which is expected in the trail access point identifier, which is transmitted using the Trail Trace (TR) field of the transmitted E3 Frame. Both the expected trail access point identifier and the transmitted trail access point identifier are provisionable attributes of the G832 component. The 16 byte Trail Trace frame is composed of one byte containing a frame start marker and a CRC-7 calculation over the previous frame, and 15 bytes for transporting an E.164 address. If less than the full 15 bytes are used, the address is padded with NULL characters.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.6.3.10.1.2
lpE3G832OperationalTableThis group contains the operational data for the G832 component.
SEQUENCE OF LpE3G832OperationalEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.3.11
lpE3G832OperationalEntryAn entry in the lpE3G832OperationalTable.
LpE3G832OperationalEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.3.11.1
lpE3G832UnexpectedPayloadTypeThis attribute displays whether the Unexpected Payload Type (UPT) alarm state has been entered. The UPT alarm state is entered when UPT defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The UPT defect is reported when a received frame fails to agree with the expected Payload Type. If the UPT defects are intermittently occurring, the UPT defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle.. The UPT alarm is cleared when the Payload Type in the received frame agrees with the expected Payload Type for a period of 10 seconds +/- 0.5 seconds. The unexpectedPayloadType attribute is always set to off when the E3 component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.3.11.1.1
lpE3G832TrailTraceMismatchThis attribute displays whether the Trail Trace Mismatch (TTM) alarm state has been entered. The TTM alarm state is entered when TTM defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The TTM defect is reported when the trail access point identifier contained in the Trail Trace (TR) field in the received frame fails to agree with the expected identifier. If the TTM defects are intermittently occurring, the TTM defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The TTM alarm is cleared when the trail access point identifier in the received frame agrees with the expected identifier for a period of 10 seconds +/- 0.5 seconds. The trailTraceMismatch attribute is always set to off when the E3 component has been locked and left offline. Both the expected trail access identifier and the transmitted trail access identifier are provisionable attributes of the G832 component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.3.11.1.2
lpE3G832TimingMarkerIndicates whether or not the timing source at the far-end node is traceable to a Primary Reference Clock. The timingMarker indication is controlled by the timing marker bit in the G832 MA byte. If the received timing marker bit is 1 for five consecutive frames, and five consecutive 0s are not received for two seconds, the timingMarker indication will be set to not traceable. If the received timing marker bit is 0 for five consecutive frames and five consecutive 1s are not received for two seconds, the timingMarker indication will be set to traceable.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.3.11.1.3
lpE3G832TrailTraceReceivedThis attribute indicates the 15 byte E.164 address which is currently being received in the trail trace (TR) field of the E3 G832 frame. If this attribute differs from the provisioned trailTraceTransmitted string a trail trace mismatch (TTM) defect is reported, possibly resulting in a TTM alarm, as described for operational attribute trailTraceMismatch.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.6.3.11.1.4
lpE3G832StatsTableThis group contains the statistical data for the G832 component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpE3G832StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.3.12
lpE3G832StatsEntryAn entry in the lpE3G832StatsTable.
LpE3G832StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.3.12.1
lpE3G832FarEndErrorFreeSecThis attribute indicates the number of seconds that the E3 line has not suffered any G832 errors.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.3.12.1.1
lpE3G832FarEndCodeViolationsA count of E3 frames containing a Far-End Block Error (FEBE). A FEBE is reported over the FEBE bit each time the far-end terminal detects a BIP-8 error in a received E3 frame. For second intervals where Far End Unavailable Seconds (FEUAS) or Far End Severely Errored Seconds (FESES) are counted, counting of FECVs is inhibited. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.3.12.1.2
lpE3G832FarEndErroredSecThis attribute indicates the total number of Far-End Errored Seconds (FEES). A FEES is declared for second intervals containing with one or more Far-End Coding Violations (FECV) or one or more Far-End Receive Failure (FERF) defects. A FERF defect occurs when the FERF bit in the received frame is set to one. For second intervals where Far End Unavailable Seconds (FEUAS) are counted, counting of FEESs is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.3.12.1.3
lpE3G832FarEndSevErroredSecThis attribute indicates the total number of Far-End Severely Errored Seconds (FESESs). A FESES is declared for second intervals containing more than 34 Far-End Coding Violations (FECV) or one or more Far-End Receive Failure (FERF) defects. For second intervals where a Far-End Severely Errored Seconds (FESES) is counted, counting of FECVs is inhibited. For second intervals where Far End Unavailable Seconds (FEUAS) are counted, counting of FESESs is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.3.12.1.4
lpE3G832FarEndSefAisSecThis attribute indicates the total number of Far-End SEF/AIS Seconds (FESAS). A FESAS is declared for second intervals containing one or more Far-End Receive Failure (FERF) defects. For second intervals where Far End Unavailable Seconds (FEUAS) are counted, counting of FESAS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.3.12.1.5
lpE3G832FarEndUnavailSecThis attribute indicates the total number of one second intervals for which the E3 far-end path is unavailable. The E3 far-end path becomes unavailable at the onset of 10 consecutive Far End Severely Errored Seconds (FESES). It comes available at the onset of 10 contiguous seconds with no FESES. The unavailable time includes the initial 10 seconds to enter the unavailable state but not the 10 seconds to exit the state For second intervals where FEUAS is counted, counting of Far End Coding Violations (FECV), Far- End Errored Seconds (FEES), Far-End Severely Errored Seconds (FESES) and Far-End SefAis Seconds (FESAS) are inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.3.12.1.6
lpE3Plcp
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.6.4
lpE3PlcpRowStatusTableThis entry controls the addition and deletion of lpE3Plcp components.
SEQUENCE OF LpE3PlcpRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.4.1
lpE3PlcpRowStatusEntryA single entry in the table represents a single lpE3Plcp component.
LpE3PlcpRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.4.1.1
lpE3PlcpRowStatusThis variable is used as the basis for SNMP naming of lpE3Plcp components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.4.1.1.1
lpE3PlcpComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.4.1.1.2
lpE3PlcpStorageTypeThis variable represents the storage type value for the lpE3Plcp tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.4.1.1.4
lpE3PlcpIndexThis variable represents the index for the lpE3Plcp tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.6.4.1.1.10
lpE3PlcpOperationalTableThis group contains the operational data for the PLCP component.
SEQUENCE OF LpE3PlcpOperationalEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.4.10
lpE3PlcpOperationalEntryAn entry in the lpE3PlcpOperationalTable.
LpE3PlcpOperationalEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.4.10.1
lpE3PlcpLofAlarmThis attribute displays whether a PLCP Loss Of Frame (LOF) failure alarm state has been entered. An LOF failure is declared when a PLCP LOF defect persists for 2.5 s +/- 0.5 s. An LOF defect occurs when an OOF (Out of Frame) state persists for more than 1 ms. If the OOF events are intermittent, the LOF defect counter is decremented at a rate of 1/12 (for DS3 PLCP) or 1/9 (for G.751 E3 PLCP) of the incrementing rate, with all measurements based on a 200 ms polling cycle. An OOF event (also known as a PLCP SEF event) is declared when an error is detected in both the A1 and A2 octets, or when two consecutive POHIDs are found in error. OOF is removed when two valid sets of framing octets and two valid and sequential POHID octets have been found. The LOF defect is removed when the defect counter reaches zero, i.e. when OOF events are absent for more than 12 ms (DS3 PLCP) or 9 ms (G.751 E3 PLCP). LOF failure alarm is cleared when LOF defect is absent for 10.0 s +/- 0.5 s The DS3 or E3 component goes into an operational state of disabled until the LOF failure alarm is cleared. The terminal declaring the LOF failure alarm will transmit a PLCP RAI signal to the far-end for the duration of the alarm. The lofAlarm attribute is always set to off when the DS3 or E3 component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.4.10.1.1
lpE3PlcpRxRaiAlarmThis attribute displays whether a PLCP Remote Alarm Indication (RAI) failure alarm state has been entered. An RAI failure alarm occurs when ten consecutive PLCP RAI bits (bit 5 in the G1 byte) are high on the incoming line. An RAI failure alarm is cleared when ten consecutive RAI bits are set to 0. Note: Some standards call this alarm RFI. The rxRaiAlarm attribute is always set to off when the DS3 or E3 component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.4.10.1.2
lpE3PlcpStatsTableThis group contains the statistical data for the PLCP component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpE3PlcpStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11
lpE3PlcpStatsEntryAn entry in the lpE3PlcpStatsTable.
LpE3PlcpStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1
lpE3PlcpErrorFreeSecThis attribute indicates the number of seconds during which the near-end PLCP path layer had no errors.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.1
lpE3PlcpCodingViolationsThis attribute indicates the total number of BIP-8 Errors, framing pattern octet errors, and path overhead identification errors detected in received PLCP frames. Counting of PLCP CV is inhibited for second intervals where PLCP Severely Errored Framing Seconds (SEFS) or PLCP Unavailable Seconds (UAS) are counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.2
lpE3PlcpErroredSecThis attribute indicates the number of seconds containing one or more PLCP Coding Violations (CV) or in which a PLCP Severely Errored Framing Second (SEFS) was counted. Counting of PLCP ES is inhibited during second intervals where PLCP Unavailable Seconds (UAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.3
lpE3PlcpSevErroredSecThis attribute indicates the number of seconds containing 5 or more PLCPCVs or in which a PLCPSEFS was counted (i.e. a PLCP OOF event occurred). Counting of PLCP SES is inhibited during second intervals where PLCP Unavailable Seconds (UAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.4
lpE3PlcpSevErroredFramingSecThis attribute indicates the number of seconds containing one or more PLCP Severely Errored Frame (SEF) events. An SEF event is equivalent to a PLCP OOF (Out of Frame) event. Counting of PLCPP SEFSs is inhibited for second intervals where PLCP Unavailable Seconds (UAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.5
lpE3PlcpUnavailSecThis attribute indicates the number of seconds when the near-end PLCP layer is unavailable. The PLCP Path Layer becomes unavailable at the declaration of PLCP LOF (Loss of Frame) failure alarm state. The PLCP Path Layer becomes available again only after clearing this condition. For second intervals where PLCP UAS are counted, counting of PLCP Severely Errored Framing Seconds (SEFS), PLCP Coding Violations (CV), PLCP Errored Seconds (ES), PLCP Severely Errored Seconds (SES) and PLCP Far-End Severely Errored Seconds (FESES) is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.6
lpE3PlcpFarEndErrorFreeSecThis attribute indicates the number of seconds during which the far- end PLCP path layer had no errors.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.7
lpE3PlcpFarEndCodingViolationsThis attribute indicates the total number of PLCP Far-End Block Errors (FEBE) reported by the far-end terminal. Counting of FEBEs is inhibited for second intervals where PLCP Far-End Unavailable Seconds (FEUAS) are counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.8
lpE3PlcpFarEndErroredSecThis attribute indicates the number of seconds containing one or more PLCP Far-End Coding Violations (FECV). Counting of PLCP FEES is inhibited during second intervals where PLCP Far-End Unavailable Seconds (FEUAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.9
lpE3PlcpFarEndSevErroredSecThis attribute indicates the number of seconds containing 5 or more PLCP Far-End Coding Violations (FECV). Counting of PLCP FESES is inhibited for second intervals where PLCP Far-End Unavailable Seconds (FEUAS) are counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.10
lpE3PlcpFarEndUnavailableSecThis attribute indicates the number of seconds during which the PLCP far end is unavailable. The PLCP Path Layer becomes unavailable at the declaration of PLCP RAI (Remote Alarm Indication). Service becomes available again after this condition is cleared. For second intervals where PLCP FEUAS are counted, counting of PLCP Far-End Coding Violations (FECV), PLCP Far- End Errored Seconds (FEES), and PLCP Far-End Severely Errored Seconds (FESES) is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.4.11.1.11
lpE3Cell
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.6.5
lpE3CellRowStatusTableThis entry controls the addition and deletion of lpE3Cell components.
SEQUENCE OF LpE3CellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.5.1
lpE3CellRowStatusEntryA single entry in the table represents a single lpE3Cell component.
LpE3CellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.5.1.1
lpE3CellRowStatusThis variable is used as the basis for SNMP naming of lpE3Cell components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.5.1.1.1
lpE3CellComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.5.1.1.2
lpE3CellStorageTypeThis variable represents the storage type value for the lpE3Cell tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.6.5.1.1.4
lpE3CellIndexThis variable represents the index for the lpE3Cell tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.6.5.1.1.10
lpE3CellProvTableThis group contains the provisioning attributes for the AtmCell component.
SEQUENCE OF LpE3CellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.5.10
lpE3CellProvEntryAn entry in the lpE3CellProvTable.
LpE3CellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.5.10.1
lpE3CellAlarmActDelayThis attribute defines the time during which a Loss of Cell Delineation (LCD) defect should be observed before declaring an LCD alarm (alarm 70115501). The time is specified in milliseconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.5.10.1.1
lpE3CellScrambleCellPayloadCell scrambling, as defined by ITU-T Recommendation I.432., can provide a solution to the problem of transmission equipment which is sensitive to certain bit patterns in the ATM cell payload. This attribute controls whether or not the cell payload is scrambled. It defaults to off for DS1 interfaces, and on for all other interfaces. Note that this setting must be the same at both ends of the link.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.5.10.1.2
lpE3CellCorrectSingleBitHeaderErrorsThis attribute specifies whether the port corrects single bit errors detected in the headers of received cells. If single bit errors are corrected, the affected cells are passed up to the ATM layer according to normal operation. If single bit errors are not corrected, these errored cells are discarded by the physical layer. Note that cells containing multiple bit errors in their headers are always discarded. Single bit HEC error correction must remain off for the following card types: 3pDS1Atm, 8pDS1Atm, 3pE1Atm, 8pE1Atm, 2pJ6MAtm, 3pDS3Atm, and 3pE3Atm.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.5.10.1.3
lpE3CellOperTableThis group contains the common operational attributes for the AtmCell component.
SEQUENCE OF LpE3CellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.5.11
lpE3CellOperEntryAn entry in the lpE3CellOperTable.
LpE3CellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.5.11.1
lpE3CellLcdAlarmThis attribute displays whether the Loss of Cell Delineation (LCD) failure alarm state has been entered. This state is entered when LCD defects have been observed and accumulated for a period of time specified through the alarmActDelay attribute. In ATM cell direct mapping mode, an LCD defect occurs when Out of Cell Delineation (OCD) anomaly persists for x milliseconds, and disappears when the Out of Cell Delineation (OCD) is absent for x msec. An OCD anomaly occurs when 7 consecutive incorrect HECs have been detected. An OCD anomaly terminates when 6 consecutive correct HECs have been detected. For an AtmCell component located under a DS3 or E3 component with mapping = PLCP, the LCD defect is directly derived from the PLCP LOF defect. If LCD defects are intermittently occurring, the LCD defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle The component under which is located the AtmCell component goes into an operational state of disabled until the LCD alarm condition is cleared. The condition is cleared after the LCD defect has not been reported for a period of 10 seconds +/- 0.5 seconds. The lcdAlarm attribute is always set to off when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.5.11.1.1
lpE3CellStatsTableThis group contains the Statistics attribute for the AtmCell component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpE3CellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.5.12
lpE3CellStatsEntryAn entry in the lpE3CellStatsTable.
LpE3CellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.5.12.1
lpE3CellUncorrectableHecErrorsThis attribute indicates the number of uncorrectable ATM cell header errors that have been detected. Counting of uncorrectableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.5.12.1.1
lpE3CellSevErroredSecThis attribute indicates the total number of ATM Cell Severely Errored Seconds (SESs) that have been counted. In direct mapping mode, an ATM Cell SES is declared for second intervals containing one or more Out of Cell Delineation (OCD) defects. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected. In PLCP mapping mode, an ATM Cell SES is declared for second intervals containing one or more PLCP LOF defects. Counting of uncorrectableHeaderErrors (ucErr) and correctableHeaderErrors (cErr) is inhibited when the OCD defect is present.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.5.12.1.2
lpE3CellReceiveCellUtilizationThis attribute is the ratio of the number of valid, assigned cells received on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.6.5.12.1.3
lpE3CellTransmitCellUtilizationThis attribute is the ratio of the number of valid, assigned cells transmitted on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.6.5.12.1.4
lpE3CellCorrectableHeaderErrorsThis attribute indicates the number of correctable ATM cell header errors that have been detected and corrected. Counting of correctableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detectedro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.5.12.1.5
lpE3ProvTableThis group contains all of the provisioning data for a E3 component.
SEQUENCE OF LpE3ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.10
lpE3ProvEntryAn entry in the lpE3ProvTable.
LpE3ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.10.1
lpE3LineLengthThis attribute defines the line length for equalization calculations for the E3 line. The line length range is between 0 and 300 metres (1 metres = 3.28 feet).rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.10.1.1
lpE3ClockingSourceThis attribute defines the type of clocking source used for synchronizing the E3 transmit clock: local means direct use of the local clock oscillator at its centre frequency; line means use of a signal phase-locked to the incoming E3 line rate; module means the use of a signal phase-locked to the CP reference clock. Note that the multiport cell-based cards have one common clock source for each of the three ports. For this reason, the following rules apply for the value of clockingSource across the board's three ports: All three clockingSource values must be 'local' OR All three clockingSource values must be 'module' OR One clockingSource value must be 'line' and the other two must be 'otherPort'. The default value for this attribute will be module if a CP clock is available, and local otherwise.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.10.1.2
lpE3ApplicationFramerNameThis attribute defines the link to the software stack. It defines which application is running on top of the E3 component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.6.10.1.3
lpE3MappingThis attribute indicates if ATM cells will be mapped directly into the E3 payload, or whether PLCP mapping will be used. The PLCP component will appear under the E3 component when this attribute is set to plcp. This attribute will be ignored when set on frame- based cards.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.10.1.4
lpE3FramingThis attribute indicates if the framing mode will be in accordance with the CCITT G.751 or G.832 specification. The G832 component will appear under the E3 component when this attribute is set to g832. This attribute may only be set on cell-based card types. Note also that this attribute may only be set to g751 if the mapping attribute is set to plcp. The default value of this attribute will be g751 for frame-based cards, and g832 for cell-based cards. Note: when E3 framing is changed from g832 to g751, the G832 component must be deleted.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.10.1.5
lpE3LinkAlarmActivationThresholdThis attribute specifies the time interval between the detection of a sustained link failure and the activation of an alarm. It is provisionable for E3 cards.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.10.1.6
lpE3LinkAlarmScanIntervalThis attribute specifies the alarm scan timer polling interval. It determines how frequently the status of the link is monitored after a first link error interrupt. It is provisionable for E3 cards.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.6.10.1.7
lpE3CidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpE3CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.11
lpE3CidDataEntryAn entry in the lpE3CidDataTable.
LpE3CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.11.1
lpE3CustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.6.11.1.1
lpE3AdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpE3AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.12
lpE3AdminInfoEntryAn entry in the lpE3AdminInfoTable.
LpE3AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.12.1
lpE3VendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.6.12.1.1
lpE3CommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.6.12.1.2
lpE3IfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpE3IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.13
lpE3IfEntryEntryAn entry in the lpE3IfEntryTable.
LpE3IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.13.1
lpE3IfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.13.1.1
lpE3IfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.6.13.1.2
lpE3OperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpE3OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.14
lpE3OperStatusEntryAn entry in the lpE3OperStatusTable.
LpE3OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.14.1
lpE3SnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.14.1.1
lpE3StateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpE3StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.15
lpE3StateEntryAn entry in the lpE3StateTable.
LpE3StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1
lpE3AdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.1
lpE3OperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.2
lpE3UsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.3
lpE3AvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.4
lpE3ProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.5
lpE3ControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.6
lpE3AlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.7
lpE3StandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.8
lpE3UnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.15.1.9
lpE3OperTableThis group contains the common operational data for E3 component.
SEQUENCE OF LpE3OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.16
lpE3OperEntryAn entry in the lpE3OperTable.
LpE3OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.16.1
lpE3LosAlarmThis attribute displays whether a Loss Of Signal (LOS) alarm state has been entered. An LOS alarm state is entered when LOS defects has been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. An LOS defect is detected at the E3 line interface upon observing N continuous pulse positions with no pulses of either positive or negative polarity, where N is between 10 and 255. If the LOS defects are intermittently occurring, the LOS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The E3 component goes into an operational state of disabled until the LOS alarm condition is cleared. The LOS alarm state is cleared when the LOS defects are absent for a period of 10 seconds +/- 0.5 seconds. The losAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.16.1.1
lpE3LofAlarmThis attribute displays whether a Loss Of Frame (LOF) alarm state has been entered. An LOF alarm state is entered when Severely Errored Frame (SEF) defects have been detected and accumulated for a period of 2.5 seconds +/- 0.5 seconds. An E3 SEF defect is reported after detecting Frame Alignment Signal (FAS) errors on 4 consecutive E3 frames received on the incoming line. If the LOF defects are intermittently occurring, the LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The E3 component goes into an operational state of disabled until the LOF alarm condition is cleared. The condition is cleared when E3 framing has been achieved for a period of 10 seconds +/- 0.5 seconds. As long as SEF defects are detected, the node also transmits the far-end SEF/AIS (in G.751 E3) or FERF (in G.832) defect indicator over the outgoing line. The txRai attribute is set to on when transmitting the far-end SEF/AIS defect indicator on the outgoing line. The lofAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.16.1.2
lpE3RxAisAlarmThis attribute displays whether an Alarm Indication Signal (AIS) alarm when state has been entered. An AIS alarm state is entered when AIS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds on the incoming E3 line. An AIS defect is the occurrence of the AIS (unframed signal with a density of zeros below a certain threshold such as defined by ITU Recommendation G.775). If the AIS defects are intermittently occurring, the AIS defect accumulator is decremented at a rate of 1/ 10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The E3 component goes into an operational state of disabled until the AIS alarm condition is cleared (after AIS has been no longer detected for a period of 10 seconds +/- 0.5 seconds). As long as AIS is detected on the incoming line, the node also transmits the far-end SEF/AIS (in G.751 E3) or FERF (in G.832) defect indicator over the outgoing line. The txRai attribute is set to on when transmitting the far-end SEF/AIS defect indicator on the outgoing line. The rxAisAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.16.1.3
lpE3RxRaiAlarmThis attribute displays whether a Remote Alarm Indication (RAI) alarm state has been entered. A RAI alarm state is entered when far- end SEF/AIS defects (or Far-End Receive Failure (FERF) defects in G.832 E3 Framing mode) have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds on the E3 incoming line. If the RAI defects are intermittently occurring, the RAI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The E3 component goes into an operational state of disabled until the RAI alarm condition is cleared. The condition is cleared when the far-end defect indicator has not been detected for 10 seconds +/- 0.5 seconds. The declaration of a RAI Alarm is usually a signal that the far end facility is unable to gain synchronization. The rxRaiAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.16.1.4
lpE3TxAisThis attribute displays whether an AIS alarm is being transmitted on the E3 line. AIS is transmitted on the outgoing line when the E3 component is locked and not used for operational testing.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.16.1.5
lpE3TxRaiThis attribute displays whether the far-end SEF/AIS defect indicator is transmitted over the outgoing line when the E3 component has been unlocked or used in operational testing. When the E3 component is locked and not used in operational testing, this attribute is always set to off. The far-end SEF/AIS defect indicator is transmitted over the outgoing line when SEF/AIS defects are detected on the incoming line. In G.832 E3 Framing mode, the FERF bit is set to '1' to transmit the SEF/AIS defect indicator.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.6.16.1.6
lpE3StatsTableThis group contains the common operational data for E3 component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpE3StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.17
lpE3StatsEntryAn entry in the lpE3StatsTable.
LpE3StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1
lpE3RunningTimeThis attribute indicates the total number of seconds since the E3 component has been activated and been in unlocked state or used for operational testing. All the other error counts that follow as well as each E3 subcomponent's error counts can be updated when this count is active.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.1
lpE3ErrorFreeSecThis attribute indicates the number of seconds that the E3 port has been in an error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.2
lpE3LineCodeViolationsThis attribute indicates the total number of Line Code Violations (LCV) detected. An E3 Line Code Violation is an HDB3 coded signal error. LCV counting is inhibited for second intervals where a Line Severely Errored Second (LSES) is counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.3
lpE3LineErroredSecThis attribute indicates the total number of Line Errored Seconds (LES) that have been counted. A LES is declared for interval seconds containing one or more Line Code Violations (LCV) or one or more Loss Of Signal (LOS) defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.4
lpE3LineSevErroredSecThis attribute indicates the total number of Line Severely Errored Seconds (LSES) that have been counted. A LSES is declared for second intervals containing more than 34 Line Code Violations (LCV) or one or more Loss of Signal (LOS) defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.5
lpE3LineLosSecThis attribute indicates the total number of Line LOS Seconds (LOSS) that have been counted. A LOSS is declared for second intervals containing one or more Loss of Signal (LOS) defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.6
lpE3LineFailuresThis attribute indicates the total number of times that a line failure (LOS failure) has been declared. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.7
lpE3PathCodeViolationsThis attribute indicates the total number of Path Code Violations (PCV) detected. An E3 PCV is an error in the Frame Alignment (FA) signal, or, in G.832 Framing Mode, an error in the Frame Alignment signal or a BIP-8 error. PCV counting is inhibited over second intervals where a Path Severely Errored Second (PSES) is counted. Counting of PCVs is also inhibited over second intervals where a Path Unavailable Second (PUAS) is counted. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.8
lpE3PathErroredSecThis attribute indicates the total number of Path Errored Seconds (PES) that have been counted. A PES is declared for second intervals containing one or more Path Code Violations (PCV) or one or more Severely Errored Frame (SEF) or Alarm Indication Signal (AIS) defects. Counting of Path Errored Seconds is inhibited when a Path Unavailable Second (PUAS) is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.9
lpE3PathSevErroredSecThis attribute indicates the total number of Path Severely Errored Seconds (PSES) that have been counted. A PSES is declared for second intervals containing more than 22 (G.751 E3) or 34 (G.832 E3) Path Code Violations (PCV) or one or more Severely Errored Frame (SEF) or Alarm Indication Signal (AIS) defects. Counting of PSESs is inhibited when a Path Unavailable Second (PUAS) is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.10
lpE3PathSefAisSecThis attribute indicates the total number of Path SEF/AIS Seconds (PSAS). A PSAS is declared for second intervals containing one or more Severely Errored Frame (SEF) or Alarm Indication Signal (AIS) defects. Counting of PSAS is inhibited when Path Unavailable Seconds (PUAS) is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.11
lpE3PathUnavailSecThis attribute indicates the total number of one second intervals for which the E3 path is unavailable. The E3 path becomes unavailable at the onset of 10 consecutive Path Severely Errored Seconds (PSES). The 10 PSESs are included in the unavailable time. Once unavailable, the E3 path becomes available at the onset of 10 contiguous seconds with no PSES. The 10 seconds with no PSES are excluded from the unavailable time. For second intervals where PUAS is counted, counting of Path Code Violations (PCV), Path Errored Seconds (PES), Path Severely Errored Seconds (PSES) and Path SefAis Seconds (PSAS) is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.12
lpE3PathFailuresThis attribute indicates the total number of times that a path failure (LOF/AIS failure) has been declared. This attribute is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.6.17.1.13
lpDS1
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.7
lpDS1RowStatusTableThis entry controls the addition and deletion of lpDS1 components.
SEQUENCE OF LpDS1RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.1
lpDS1RowStatusEntryA single entry in the table represents a single lpDS1 component.
LpDS1RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.1.1
lpDS1RowStatusThis variable is used as the basis for SNMP naming of lpDS1 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.1.1.1
lpDS1ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.1.1.2
lpDS1StorageTypeThis variable represents the storage type value for the lpDS1 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.1.1.4
lpDS1IndexThis variable represents the index for the lpDS1 tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.7.1.1.10
lpDS1Chan
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.7.2
lpDS1ChanRowStatusTableThis entry controls the addition and deletion of lpDS1Chan components.
SEQUENCE OF LpDS1ChanRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.1
lpDS1ChanRowStatusEntryA single entry in the table represents a single lpDS1Chan component.
LpDS1ChanRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.1.1
lpDS1ChanRowStatusThis variable is used as the basis for SNMP naming of lpDS1Chan components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.1.1.1
lpDS1ChanComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.1.1.2
lpDS1ChanStorageTypeThis variable represents the storage type value for the lpDS1Chan tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.1.1.4
lpDS1ChanIndexThis variable represents the index for the lpDS1Chan tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.1.1.10
lpDS1ChanTest
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2
lpDS1ChanTestRowStatusTableThis entry controls the addition and deletion of lpDS1ChanTest components.
SEQUENCE OF LpDS1ChanTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.1
lpDS1ChanTestRowStatusEntryA single entry in the table represents a single lpDS1ChanTest component.
LpDS1ChanTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.1.1
lpDS1ChanTestRowStatusThis variable is used as the basis for SNMP naming of lpDS1ChanTest components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.1.1.1
lpDS1ChanTestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.1.1.2
lpDS1ChanTestStorageTypeThis variable represents the storage type value for the lpDS1ChanTest tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.1.1.4
lpDS1ChanTestIndexThis variable represents the index for the lpDS1ChanTest tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.1.1.10
lpDS1ChanTestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS1ChanTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.10
lpDS1ChanTestStateEntryAn entry in the lpDS1ChanTestStateTable.
LpDS1ChanTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.10.1
lpDS1ChanTestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.10.1.1
lpDS1ChanTestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.10.1.2
lpDS1ChanTestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.10.1.3
lpDS1ChanTestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpDS1ChanTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11
lpDS1ChanTestSetupEntryAn entry in the lpDS1ChanTestSetupTable.
LpDS1ChanTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1
lpDS1ChanTestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1.1
lpDS1ChanTestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1.2
lpDS1ChanTestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1.3
lpDS1ChanTestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1.4
lpDS1ChanTestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1.5
lpDS1ChanTestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1.6
lpDS1ChanTestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1.7
lpDS1ChanTestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.11.1.8
lpDS1ChanTestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpDS1ChanTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12
lpDS1ChanTestResultsEntryAn entry in the lpDS1ChanTestResultsTable.
LpDS1ChanTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1
lpDS1ChanTestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.1
lpDS1ChanTestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.2
lpDS1ChanTestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.3
lpDS1ChanTestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.4
lpDS1ChanTestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.5
lpDS1ChanTestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.6
lpDS1ChanTestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.7
lpDS1ChanTestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.8
lpDS1ChanTestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.9
lpDS1ChanTestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.10
lpDS1ChanTestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.7.2.2.12.1.11
lpDS1ChanCell
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3
lpDS1ChanCellRowStatusTableThis entry controls the addition and deletion of lpDS1ChanCell components.
SEQUENCE OF LpDS1ChanCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.1
lpDS1ChanCellRowStatusEntryA single entry in the table represents a single lpDS1ChanCell component.
LpDS1ChanCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.1.1
lpDS1ChanCellRowStatusThis variable is used as the basis for SNMP naming of lpDS1ChanCell components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.1.1.1
lpDS1ChanCellComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.1.1.2
lpDS1ChanCellStorageTypeThis variable represents the storage type value for the lpDS1ChanCell tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.1.1.4
lpDS1ChanCellIndexThis variable represents the index for the lpDS1ChanCell tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.1.1.10
lpDS1ChanCellProvTableThis group contains the provisioning attributes for the AtmCell component.
SEQUENCE OF LpDS1ChanCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.10
lpDS1ChanCellProvEntryAn entry in the lpDS1ChanCellProvTable.
LpDS1ChanCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.10.1
lpDS1ChanCellAlarmActDelayThis attribute defines the time during which a Loss of Cell Delineation (LCD) defect should be observed before declaring an LCD alarm (alarm 70115501). The time is specified in milliseconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.10.1.1
lpDS1ChanCellScrambleCellPayloadCell scrambling, as defined by ITU-T Recommendation I.432., can provide a solution to the problem of transmission equipment which is sensitive to certain bit patterns in the ATM cell payload. This attribute controls whether or not the cell payload is scrambled. It defaults to off for DS1 interfaces, and on for all other interfaces. Note that this setting must be the same at both ends of the link.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.10.1.2
lpDS1ChanCellCorrectSingleBitHeaderErrorsThis attribute specifies whether the port corrects single bit errors detected in the headers of received cells. If single bit errors are corrected, the affected cells are passed up to the ATM layer according to normal operation. If single bit errors are not corrected, these errored cells are discarded by the physical layer. Note that cells containing multiple bit errors in their headers are always discarded. Single bit HEC error correction must remain off for the following card types: 3pDS1Atm, 8pDS1Atm, 3pE1Atm, 8pE1Atm, 2pJ6MAtm, 3pDS3Atm, and 3pE3Atm.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.10.1.3
lpDS1ChanCellOperTableThis group contains the common operational attributes for the AtmCell component.
SEQUENCE OF LpDS1ChanCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.11
lpDS1ChanCellOperEntryAn entry in the lpDS1ChanCellOperTable.
LpDS1ChanCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.11.1
lpDS1ChanCellLcdAlarmThis attribute displays whether the Loss of Cell Delineation (LCD) failure alarm state has been entered. This state is entered when LCD defects have been observed and accumulated for a period of time specified through the alarmActDelay attribute. In ATM cell direct mapping mode, an LCD defect occurs when Out of Cell Delineation (OCD) anomaly persists for x milliseconds, and disappears when the Out of Cell Delineation (OCD) is absent for x msec. An OCD anomaly occurs when 7 consecutive incorrect HECs have been detected. An OCD anomaly terminates when 6 consecutive correct HECs have been detected. For an AtmCell component located under a DS3 or E3 component with mapping = PLCP, the LCD defect is directly derived from the PLCP LOF defect. If LCD defects are intermittently occurring, the LCD defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle The component under which is located the AtmCell component goes into an operational state of disabled until the LCD alarm condition is cleared. The condition is cleared after the LCD defect has not been reported for a period of 10 seconds +/- 0.5 seconds. The lcdAlarm attribute is always set to off when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.11.1.1
lpDS1ChanCellStatsTableThis group contains the Statistics attribute for the AtmCell component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpDS1ChanCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.12
lpDS1ChanCellStatsEntryAn entry in the lpDS1ChanCellStatsTable.
LpDS1ChanCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.12.1
lpDS1ChanCellUncorrectableHecErrorsThis attribute indicates the number of uncorrectable ATM cell header errors that have been detected. Counting of uncorrectableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.12.1.1
lpDS1ChanCellSevErroredSecThis attribute indicates the total number of ATM Cell Severely Errored Seconds (SESs) that have been counted. In direct mapping mode, an ATM Cell SES is declared for second intervals containing one or more Out of Cell Delineation (OCD) defects. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected. In PLCP mapping mode, an ATM Cell SES is declared for second intervals containing one or more PLCP LOF defects. Counting of uncorrectableHeaderErrors (ucErr) and correctableHeaderErrors (cErr) is inhibited when the OCD defect is present.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.12.1.2
lpDS1ChanCellReceiveCellUtilizationThis attribute is the ratio of the number of valid, assigned cells received on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.12.1.3
lpDS1ChanCellTransmitCellUtilizationThis attribute is the ratio of the number of valid, assigned cells transmitted on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.12.1.4
lpDS1ChanCellCorrectableHeaderErrorsThis attribute indicates the number of correctable ATM cell header errors that have been detected and corrected. Counting of correctableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detectedro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.3.12.1.5
lpDS1ChanTc
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4
lpDS1ChanTcRowStatusTableThis entry controls the addition and deletion of lpDS1ChanTc components.
SEQUENCE OF LpDS1ChanTcRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.1
lpDS1ChanTcRowStatusEntryA single entry in the table represents a single lpDS1ChanTc component.
LpDS1ChanTcRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.1.1
lpDS1ChanTcRowStatusThis variable is used as the basis for SNMP naming of lpDS1ChanTc components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.1.1.1
lpDS1ChanTcComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.1.1.2
lpDS1ChanTcStorageTypeThis variable represents the storage type value for the lpDS1ChanTc tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.1.1.4
lpDS1ChanTcIndexThis variable represents the index for the lpDS1ChanTc tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.1.1.10
lpDS1ChanTcProvTableThis group contains all specific provisioning data for a Tc component.
SEQUENCE OF LpDS1ChanTcProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.10
lpDS1ChanTcProvEntryAn entry in the lpDS1ChanTcProvTable.
LpDS1ChanTcProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.10.1
lpDS1ChanTcReplacementDataThis attribute specifies the trunk conditioning data byte to be substituted into the timeslots defined by the Chan component under fault conditions. replacementData can be set to any two digit hexadecimal number. The following are recommended values: DS1 MUX Out Of Service Code = 0x1A E1 MUX Out Of Service Code = 0xFFrw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.10.1.1
lpDS1ChanTcSignalOneDurationThis attribute specifies the time duration in seconds for which signalOne is substituted into the appropriate signaling bits, when a lineType that uses CAS has been defined. When signalOneDuration has expired signalTwo is substituted into the appropriate signaling bits. If signalOneDuration is set to zero then only signalTwo is substituted into the appropriate signaling bits during error conditions. signalOneDuration can be set to any integer value from 0 to 60 seconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.10.1.2
lpDS1ChanTcOpTableThis group contains all specific operational data for a Tc component.
SEQUENCE OF LpDS1ChanTcOpEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.11
lpDS1ChanTcOpEntryAn entry in the lpDS1ChanTcOpTable.
LpDS1ChanTcOpEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.11.1
lpDS1ChanTcIngressConditioningThis attribute indicates the status of locally generated trunk conditioning towards the ATM network. When trunk conditioning is being locally generated towards the ATM network, ingressConditioning is set to on. When trunk conditioning is not being locally generated towards the ATM network, ingressConditioning is set to off. Trunk conditioning is transmitted towards the ATM network under the following conditions: lossOfSignal (LOS) lossOfFrame (LOF) remoteAlarmIndication (RAI) alarmIndicationSignal (AIS) bufferUnderflow (BU) and in addition for E1: lossOfMultiframe (LOMF) receiveMultiframeRemoteAlarmIndication (RMRAI)ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.11.1.1
lpDS1ChanTcEgressConditioningThis attribute indicates the status of locally generated trunk conditioning towards the PDH line. When trunk conditioning is being locally generated towards the PDH line, egressConditioning is set to on. When trunk conditioning is not being locally generated towards the PDH line, egressConditioning is set to off. Trunk conditioning is transmitted towards the PDH line under the following conditions: bufferUnderflow (BU) AAL1 protocol errors.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.11.1.2
lpDS1ChanTcSigOneTableThis attribute specifies the value to be substituted into the ABCD signaling bits for the timeslots defined by the Chan component under fault conditions. The value will be substituted for the duration provisioned in signalOneDuration when a lineType that uses CAS has been defined. For a lineType of d4Cas (Super Frame), signaling bits C and D are required to equal bits A and B respectively.
SEQUENCE OF LpDS1ChanTcSigOneEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.398
lpDS1ChanTcSigOneEntryAn entry in the lpDS1ChanTcSigOneTable.
LpDS1ChanTcSigOneEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.398.1
lpDS1ChanTcSigOneIndexThis variable represents the lpDS1ChanTcSigOneTable specific index for the lpDS1ChanTcSigOneTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.398.1.1
lpDS1ChanTcSigOneValueThis variable represents an individual value for the lpDS1ChanTcSigOneTable.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.398.1.2
lpDS1ChanTcSigTwoTableThis attribute specifies the value to be substituted into the ABCD signaling bits for the timeslots defined by the Chan component under fault conditions. The value will be substituted after the duration provisioned in signalOneDuration has expired and when a lineType that uses CAS has been defined. For a lineType of d4Cas (Super Frame), signaling bits C and D are required to equal bits A and B respectively.
SEQUENCE OF LpDS1ChanTcSigTwoEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.399
lpDS1ChanTcSigTwoEntryAn entry in the lpDS1ChanTcSigTwoTable.
LpDS1ChanTcSigTwoEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.399.1
lpDS1ChanTcSigTwoIndexThis variable represents the lpDS1ChanTcSigTwoTable specific index for the lpDS1ChanTcSigTwoTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.399.1.1
lpDS1ChanTcSigTwoValueThis variable represents an individual value for the lpDS1ChanTcSigTwoTable.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.4.399.1.2
lpDS1ChanProvTableThis group contains all of the provisional data for a Channel component.
SEQUENCE OF LpDS1ChanProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.10
lpDS1ChanProvEntryAn entry in the lpDS1ChanProvTable.
LpDS1ChanProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.10.1
lpDS1ChanTimeslotsThis attribute contains the list of timeslots that are used by the Channel component. Valid numbers are 1-24 for a Channel used by a DS1 component, and 1-31 for a Channel used by an E1 component. Description of bits: notused0(0) n1(1) n2(2) n3(3) n4(4) n5(5) n6(6) n7(7) n8(8) n9(9) n10(10) n11(11) n12(12) n13(13) n14(14) n15(15) n16(16) n17(17) n18(18) n19(19) n20(20) n21(21) n22(22) n23(23) n24(24) n25(25) n26(26) n27(27) n28(28) n29(29) n30(30) n31(31)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.2.10.1.1
lpDS1ChanTimeslotDataRateThis attribute selects the data rate of the timeslots in a channel of a DS1 component. For E1, the data rate of the timeslots will always be 64kbit/s regardless of this attribute. When doNotOverride is selected for a channel on a DS1, the data rate of the channel's timeslots are dependent on the zeroCoding selection of the DS1 component. If the zeroCoding is B8ZS (where supported on the FP) or none, the timeslot's data rate will be 64kbit/s. If the zeroCoding option is bit7Stuffing, the data rate of a timeslot will be 56kbit/s. When 56kbit/s is selected for a channel on a DS1, the least significant bit of each timeslot of this Channel will always be set to 1 and not used for data. The data rate for the timeslots of this channel is therefore restricted to 56kbit/s. One application of this attribute is to allow a DS1 line to support mixing channels that originate from lines that use different zeroCoding schemes.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.10.1.2
lpDS1ChanApplicationFramerNameThis attribute defines the link to the software stack. It defines which application is running on top of this hardware component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.7.2.10.1.3
lpDS1ChanCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpDS1ChanCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.11
lpDS1ChanCidDataEntryAn entry in the lpDS1ChanCidDataTable.
LpDS1ChanCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.11.1
lpDS1ChanCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.7.2.11.1.1
lpDS1ChanIfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpDS1ChanIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.12
lpDS1ChanIfEntryEntryAn entry in the lpDS1ChanIfEntryTable.
LpDS1ChanIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.12.1
lpDS1ChanIfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.12.1.1
lpDS1ChanIfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.7.2.12.1.2
lpDS1ChanOperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpDS1ChanOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.13
lpDS1ChanOperStatusEntryAn entry in the lpDS1ChanOperStatusTable.
LpDS1ChanOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.13.1
lpDS1ChanSnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.13.1.1
lpDS1ChanStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS1ChanStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14
lpDS1ChanStateEntryAn entry in the lpDS1ChanStateTable.
LpDS1ChanStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1
lpDS1ChanAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.1
lpDS1ChanOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.2
lpDS1ChanUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.3
lpDS1ChanAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.4
lpDS1ChanProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.5
lpDS1ChanControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.6
lpDS1ChanAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.7
lpDS1ChanStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.8
lpDS1ChanUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.2.14.1.9
lpDS1ChanOperTableThis group contains all of the operational data for a Channel component.
SEQUENCE OF LpDS1ChanOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.15
lpDS1ChanOperEntryAn entry in the lpDS1ChanOperTable.
LpDS1ChanOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.15.1
lpDS1ChanActualChannelSpeedThis attribute displays the measured link speed of the Channel component.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.7.2.15.1.1
lpDS1ChanAdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpDS1ChanAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.16
lpDS1ChanAdminInfoEntryAn entry in the lpDS1ChanAdminInfoTable.
LpDS1ChanAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.2.16.1
lpDS1ChanVendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.7.2.16.1.1
lpDS1ChanCommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.7.2.16.1.2
lpDS1Test
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.7.3
lpDS1TestRowStatusTableThis entry controls the addition and deletion of lpDS1Test components.
SEQUENCE OF LpDS1TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.3.1
lpDS1TestRowStatusEntryA single entry in the table represents a single lpDS1Test component.
LpDS1TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.3.1.1
lpDS1TestRowStatusThis variable is used as the basis for SNMP naming of lpDS1Test components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.3.1.1.1
lpDS1TestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.3.1.1.2
lpDS1TestStorageTypeThis variable represents the storage type value for the lpDS1Test tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.3.1.1.4
lpDS1TestIndexThis variable represents the index for the lpDS1Test tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.7.3.1.1.10
lpDS1TestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS1TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.3.10
lpDS1TestStateEntryAn entry in the lpDS1TestStateTable.
LpDS1TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.3.10.1
lpDS1TestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.3.10.1.1
lpDS1TestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.3.10.1.2
lpDS1TestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.3.10.1.3
lpDS1TestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpDS1TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11
lpDS1TestSetupEntryAn entry in the lpDS1TestSetupTable.
LpDS1TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1
lpDS1TestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1.1
lpDS1TestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1.2
lpDS1TestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1.3
lpDS1TestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1.4
lpDS1TestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1.5
lpDS1TestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1.6
lpDS1TestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1.7
lpDS1TestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.3.11.1.8
lpDS1TestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpDS1TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12
lpDS1TestResultsEntryAn entry in the lpDS1TestResultsTable.
LpDS1TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1
lpDS1TestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.1
lpDS1TestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.2
lpDS1TestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.3
lpDS1TestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.4
lpDS1TestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.5
lpDS1TestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.6
lpDS1TestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.7
lpDS1TestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.8
lpDS1TestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.9
lpDS1TestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.10
lpDS1TestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.7.3.12.1.11
lpDS1Dsp
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.7.4
lpDS1DspRowStatusTableThis entry controls the addition and deletion of lpDS1Dsp components.
SEQUENCE OF LpDS1DspRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.4.1
lpDS1DspRowStatusEntryA single entry in the table represents a single lpDS1Dsp component.
LpDS1DspRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.4.1.1
lpDS1DspRowStatusThis variable is used as the basis for SNMP naming of lpDS1Dsp components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.4.1.1.1
lpDS1DspComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.4.1.1.2
lpDS1DspStorageTypeThis variable represents the storage type value for the lpDS1Dsp tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.4.1.1.4
lpDS1DspIndexThis variable represents the index for the lpDS1Dsp tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.7.4.1.1.10
lpDS1Audio
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.7.5
lpDS1AudioRowStatusTableThis entry controls the addition and deletion of lpDS1Audio components.
SEQUENCE OF LpDS1AudioRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.5.1
lpDS1AudioRowStatusEntryA single entry in the table represents a single lpDS1Audio component.
LpDS1AudioRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.5.1.1
lpDS1AudioRowStatusThis variable is used as the basis for SNMP naming of lpDS1Audio components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.5.1.1.1
lpDS1AudioComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.5.1.1.2
lpDS1AudioStorageTypeThis variable represents the storage type value for the lpDS1Audio tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.7.5.1.1.4
lpDS1AudioIndexThis variable represents the index for the lpDS1Audio tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.7.5.1.1.10
lpDS1ProvTableThis group contains all of the provisioning data for a DS1 component.
SEQUENCE OF LpDS1ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.10
lpDS1ProvEntryAn entry in the lpDS1ProvTable.
LpDS1ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.10.1
lpDS1LineTypeThis attribute defines the framing of the DS1 line. d4 defines a framing pattern of 12 frames per multiframe. esf defines a framing pattern of 24 frames per multiframe. d4Cas defines a framing pattern of 12 frames per multiframe with channel associated signalling. esfCas defines a framing pattern of 24 frames per multiframe with channel associated signalling. unframed defines an unknown framing pattern for clear channels. For cell-based cards only the default option esf is permitted.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.10.1.1
lpDS1ZeroCodingThis attribute defines the zero encoding on the DS1 line. bit7Stuffing sets bit 7 of every timeslot to a one to guarantee ones's density. This reduces the available bandwidth of the channel by 1/8. b8zs substitutes a pattern of bipolar violations if more than 7 zeros in a row are to be transported. ami specifies Alternate Mark Inversion, in which successive marks (ones) alternate between positive and negative polarity voltage signals, and spaces (zeros) are sent as a zero amplitude signal. When zeroCoding is set to ami and lineType is set to d4, it is recommended that raiAlarmType be set to SBit in order to avoid possible mimic RAI alarm. For cell-based cards only the default value b8zs is permitted.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.10.1.2
lpDS1ClockingSourceThis attribute defines the source of the transmit clock for the DS1 line. When local is selected, the crystal on the port generates the clocking for the line. When line is selected, the port synchronizes to the clock from the facility. When module is selected, the ports clock synchronizes to the clock provided by the oscillator on the active CP. When otherPort is selected, the port synchronizes to the port with a clocking source of line. When srtsMode is selected, the port synchronization is taken from the SRTS (Synchronous Residual Time-Stamp) bits extracted from the AAL1 cells. This option is only available for unstructured AAL1 data services when the other ports on the card have their clocking source set to module. If the NetworkSynchronization (NS) component is present the default value of this attribute will be module otherwise it will default to local. Note that 3pDS1Atm cards have one common clock source for all ports and do not support the line clock source; all three ports must have the same value, either local or module.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.10.1.3
lpDS1RaiAlarmTypeThis attribute defines the method of sending a RAI (Remote Alarm Indication) alarm on a DS1 line. When SBit is selected, RAI alarm is sent by setting the S bit in frame 12. When Bit2 is selected, RAI alarm is sent by setting bit 2 in all timeslots to 0. When fdl is selected, RAI alarm is sent by a repeating pattern of 00 hex and FF hex on the FDL link. Note that for lineType of d4, only the SBit and the Bit2 methods are applicable. Whereas for lineType of esf, only the Bit2 and the fdl methods are applicable. SBit method is recommended if lineType is set to d4 and zeroCoding is set to ami. This will help to avoid potential mimic RAI alarm when 1's density is too low in the data transmitted. For cell-based cards only the default value fdl is permitted.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.10.1.4
lpDS1LineLengthThis attribute defines the line length (in feet) for equalization calculations for the DS1 line. The value ranges between 0-655. For 8pDS1Atm cards the actual value used for equalization is rounded up to the nearest 110 feet; for all other card types the actual value used is rounded to the nearest 50 feet.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.7.10.1.5
lpDS1CidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpDS1CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.11
lpDS1CidDataEntryAn entry in the lpDS1CidDataTable.
LpDS1CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.11.1
lpDS1CustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.7.11.1.1
lpDS1AdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpDS1AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.12
lpDS1AdminInfoEntryAn entry in the lpDS1AdminInfoTable.
LpDS1AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.12.1
lpDS1VendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.7.12.1.1
lpDS1CommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.7.12.1.2
lpDS1IfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpDS1IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.13
lpDS1IfEntryEntryAn entry in the lpDS1IfEntryTable.
LpDS1IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.13.1
lpDS1IfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.13.1.1
lpDS1IfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.7.13.1.2
lpDS1OperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpDS1OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.14
lpDS1OperStatusEntryAn entry in the lpDS1OperStatusTable.
LpDS1OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.14.1
lpDS1SnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.14.1.1
lpDS1StateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpDS1StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.15
lpDS1StateEntryAn entry in the lpDS1StateTable.
LpDS1StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1
lpDS1AdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.1
lpDS1OperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.2
lpDS1UsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.3
lpDS1AvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.4
lpDS1ProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.5
lpDS1ControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.6
lpDS1AlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.7
lpDS1StandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.8
lpDS1UnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.15.1.9
lpDS1OperTableThis group contains the common operational data for a component in a digital hierarchy interface.
SEQUENCE OF LpDS1OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.16
lpDS1OperEntryAn entry in the lpDS1OperTable.
LpDS1OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.16.1
lpDS1LosAlarmThis attribute displays whether a LOS (Loss of Signal) alarm state has been entered. A LOS alarm is declared after LOS defects have been observed and accumulated for a period of 2 seconds +/- 0.5 seconds (for 3pDS1Atm, 3pE1Atm, 8pDS1Atm, and 8pE1Atm cards: 2.5 seconds +/- 0.5 seconds). A LOS defect is detected upon observing all zeros for 150 ms (for 3pDS1Atm, 3pE1Atm, 8pDS1Atm, and 8pE1Atm cards: upon observing 175 +/- 75 pulse positions with no pulses of either positive or negative polarity). If the LOS defects are intermittently occurring, the LOS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The port goes into an operational state of disabled until the LOS alarm state is cleared. Also, an RAI alarm is transmitted to the far end for the duration of the LOS alarm state. The LOS alarm state is cleared when LOS defects are absent for 10 seconds +/- 0.5 seconds.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.16.1.1
lpDS1RxAisAlarmThis attribute displays whether an AIS (Alarm Indication Signal) alarm state has been entered. The AIS Alarm state is entered when AIS defects have been observed and accumulated for 2.5 seconds +/ - 0.5 seconds. An AIS defect is detected after having received less than 3 zeros in a 2048 bit period (for 8pDS1Atm cards: when both an Out Of Frame condition exists and a 1's density of at least 99.9% is present for a time T, where 3 ms T 75 ms; for 8pE1Atm cards: when both an Out Of Frame condition exists and fewer than three 0's have been received in 512 bit periods). If the AIS defects are intermittently occurring, the AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The port goes into an operational state of disabled for the duration of an AIS alarm state. The AIS alarm state is cleared when AIS defects are absent for 10 seconds +/- 0.5 seconds.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.16.1.2
lpDS1LofAlarmThis attribute displays whether a LOF (Loss of Frame) alarm state has been entered. The LOF alarm state is entered when LOF defects (for DS1: 2 out of 5 framing bits in error; for E1: 3 consecutive frame alignment patterns in error) have been detected for 3 seconds +/- 0.5 seconds (for 3pDS1Atm, 3pE1Atm, 8pDS1Atm, and 8pE1Atm cards: 2.5 seconds +/- 0.5 seconds). If the LOF defects are intermittently occurring, the LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The port goes into an operational state of disabled until the LOF alarm state is cleared. Also, an RAI alarm is transmitted to the far end for the duration of the LOF alarm state The condition is cleared when framing has been achieved for 10 seconds +/- 0.5 seconds.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.16.1.3
lpDS1RxRaiAlarmThis attribute displays whether an RAI (Remote Alarm Indication) alarm state has been entered. An RAI alarm state is entered when the RAI defect indicator has been observed and accumulated for 3.5 seconds +/- 0.5 seconds. For 3pDS1Atm, and 8pDS1Atm cards: alarm is declared immediately upon observing the defect is present, with no integration time. For 3pE1Atm, and 8pE1Atm cards: alarm state is entered when the RAI defect indicator has been observed and accumulated for 2.5 seconds +/- 0.5 seconds. If the RAI defects are intermittently occurring, the RAI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The RAI alarm state is cleared when the RAI defect indicator has been absent for 10 seconds +/- 0.5 seconds (for 3pDS1Atm, and 8pDS1Atm cards: alarm is cleared immediately upon observing the defect is absent, with no integration time). The RAI alarm is usually an indication that the far end facility is unable to gain synchronization.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.16.1.4
lpDS1TxAisAlarmThis attribute displays whether an AIS (Alarm Indication Signal) alarm is being transmitted on the line. An AIS alarm is transmitted when the port is in a locked state.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.16.1.5
lpDS1TxRaiAlarmThis attribute displays whether a RAI signal is being sent on the outgoing line. The RAI signal is transmitted when the port detects a LOF alarm condition (for 3pDS1Atm, 3pE1Atm, 8pDS1Atm, and 8pE1Atm cards: RAI is transmitted when the port detects a LOS, LOF, or AIS condition).ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.7.16.1.6
lpDS1StatsTableThis group contains the common statistical data for a component in a digital hierarchy interface.
SEQUENCE OF LpDS1StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.17
lpDS1StatsEntryAn entry in the lpDS1StatsTable.
LpDS1StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1
lpDS1RunningTimeThe number of seconds since the port component was activated.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.1
lpDS1ErrorFreeSecThe number of seconds that the port has been in an error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.2
lpDS1ErroredSecAn errored second is declared when a second with one or more Code Violation Error events, or one or more Out Of Frame events occurs. A code violation error may be a CRC error or a BPV error. An Out Of Frame event occurs when 2 out of 5 framing bits are in error.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.3
lpDS1SevErroredSecA severely errored second occurs when a second with 320 or more Code Violation Error events or one or more Out Of Frame events occurs.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.4
lpDS1SevErroredFrmSecA severely errored framing second occurs when a second with one or more Out Of Frame events occurs.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.5
lpDS1UnavailSecThe total number of seconds that the interface is in an unavailable signal state. An unavailable signal state occurs at the onset of 10 consecutive Severely Errored Seconds. The state is cleared at the onset of 10 seconds with no Severely Errored Seconds.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.6
lpDS1BpvErrorsThe current count of Bipolar Violations. A bipolar violation is an error in the alternate mark inversion pattern (AMI) on the line.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.7
lpDS1CrcErrorsIf the interface is a DS1 line, it is the current count of CRC-6 errors. These will only be counted when the lineType is ESF. If the interface is an E1 line, it is the total number of CRC-4 errors. These will only be counted when crc4Mode is on.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.8
lpDS1FrmErrorsThe current count of frame errors. A frame error is an error in the framing bitsro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.9
lpDS1LosStateChangesThe total number of times that the line lost signal.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.10
lpDS1SlipErrorsThe total number of times that the line experienced a controlled frame slip. This attribute is incremented for ports on the voice cards (for example the 1pDS1V and the 1pE1V function processors) only.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.7.17.1.11
lpE1
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.8
lpE1RowStatusTableThis entry controls the addition and deletion of lpE1 components.
SEQUENCE OF LpE1RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.1
lpE1RowStatusEntryA single entry in the table represents a single lpE1 component.
LpE1RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.1.1
lpE1RowStatusThis variable is used as the basis for SNMP naming of lpE1 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.1.1.1
lpE1ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.1.1.2
lpE1StorageTypeThis variable represents the storage type value for the lpE1 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.1.1.4
lpE1IndexThis variable represents the index for the lpE1 tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.8.1.1.10
lpE1Chan
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.8.2
lpE1ChanRowStatusTableThis entry controls the addition and deletion of lpE1Chan components.
SEQUENCE OF LpE1ChanRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.1
lpE1ChanRowStatusEntryA single entry in the table represents a single lpE1Chan component.
LpE1ChanRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.1.1
lpE1ChanRowStatusThis variable is used as the basis for SNMP naming of lpE1Chan components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.1.1.1
lpE1ChanComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.1.1.2
lpE1ChanStorageTypeThis variable represents the storage type value for the lpE1Chan tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.1.1.4
lpE1ChanIndexThis variable represents the index for the lpE1Chan tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.1.1.10
lpE1ChanTest
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2
lpE1ChanTestRowStatusTableThis entry controls the addition and deletion of lpE1ChanTest components.
SEQUENCE OF LpE1ChanTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.1
lpE1ChanTestRowStatusEntryA single entry in the table represents a single lpE1ChanTest component.
LpE1ChanTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.1.1
lpE1ChanTestRowStatusThis variable is used as the basis for SNMP naming of lpE1ChanTest components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.1.1.1
lpE1ChanTestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.1.1.2
lpE1ChanTestStorageTypeThis variable represents the storage type value for the lpE1ChanTest tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.1.1.4
lpE1ChanTestIndexThis variable represents the index for the lpE1ChanTest tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.1.1.10
lpE1ChanTestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpE1ChanTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.10
lpE1ChanTestStateEntryAn entry in the lpE1ChanTestStateTable.
LpE1ChanTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.10.1
lpE1ChanTestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.10.1.1
lpE1ChanTestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.10.1.2
lpE1ChanTestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.10.1.3
lpE1ChanTestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpE1ChanTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11
lpE1ChanTestSetupEntryAn entry in the lpE1ChanTestSetupTable.
LpE1ChanTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1
lpE1ChanTestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1.1
lpE1ChanTestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1.2
lpE1ChanTestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1.3
lpE1ChanTestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1.4
lpE1ChanTestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1.5
lpE1ChanTestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1.6
lpE1ChanTestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1.7
lpE1ChanTestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.11.1.8
lpE1ChanTestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpE1ChanTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12
lpE1ChanTestResultsEntryAn entry in the lpE1ChanTestResultsTable.
LpE1ChanTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1
lpE1ChanTestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.1
lpE1ChanTestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.2
lpE1ChanTestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.3
lpE1ChanTestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.4
lpE1ChanTestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.5
lpE1ChanTestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.6
lpE1ChanTestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.7
lpE1ChanTestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.8
lpE1ChanTestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.9
lpE1ChanTestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.10
lpE1ChanTestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.8.2.2.12.1.11
lpE1ChanCell
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3
lpE1ChanCellRowStatusTableThis entry controls the addition and deletion of lpE1ChanCell components.
SEQUENCE OF LpE1ChanCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.1
lpE1ChanCellRowStatusEntryA single entry in the table represents a single lpE1ChanCell component.
LpE1ChanCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.1.1
lpE1ChanCellRowStatusThis variable is used as the basis for SNMP naming of lpE1ChanCell components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.1.1.1
lpE1ChanCellComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.1.1.2
lpE1ChanCellStorageTypeThis variable represents the storage type value for the lpE1ChanCell tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.1.1.4
lpE1ChanCellIndexThis variable represents the index for the lpE1ChanCell tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.1.1.10
lpE1ChanCellProvTableThis group contains the provisioning attributes for the AtmCell component.
SEQUENCE OF LpE1ChanCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.10
lpE1ChanCellProvEntryAn entry in the lpE1ChanCellProvTable.
LpE1ChanCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.10.1
lpE1ChanCellAlarmActDelayThis attribute defines the time during which a Loss of Cell Delineation (LCD) defect should be observed before declaring an LCD alarm (alarm 70115501). The time is specified in milliseconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.10.1.1
lpE1ChanCellScrambleCellPayloadCell scrambling, as defined by ITU-T Recommendation I.432., can provide a solution to the problem of transmission equipment which is sensitive to certain bit patterns in the ATM cell payload. This attribute controls whether or not the cell payload is scrambled. It defaults to off for DS1 interfaces, and on for all other interfaces. Note that this setting must be the same at both ends of the link.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.10.1.2
lpE1ChanCellCorrectSingleBitHeaderErrorsThis attribute specifies whether the port corrects single bit errors detected in the headers of received cells. If single bit errors are corrected, the affected cells are passed up to the ATM layer according to normal operation. If single bit errors are not corrected, these errored cells are discarded by the physical layer. Note that cells containing multiple bit errors in their headers are always discarded. Single bit HEC error correction must remain off for the following card types: 3pDS1Atm, 8pDS1Atm, 3pE1Atm, 8pE1Atm, 2pJ6MAtm, 3pDS3Atm, and 3pE3Atm.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.10.1.3
lpE1ChanCellOperTableThis group contains the common operational attributes for the AtmCell component.
SEQUENCE OF LpE1ChanCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.11
lpE1ChanCellOperEntryAn entry in the lpE1ChanCellOperTable.
LpE1ChanCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.11.1
lpE1ChanCellLcdAlarmThis attribute displays whether the Loss of Cell Delineation (LCD) failure alarm state has been entered. This state is entered when LCD defects have been observed and accumulated for a period of time specified through the alarmActDelay attribute. In ATM cell direct mapping mode, an LCD defect occurs when Out of Cell Delineation (OCD) anomaly persists for x milliseconds, and disappears when the Out of Cell Delineation (OCD) is absent for x msec. An OCD anomaly occurs when 7 consecutive incorrect HECs have been detected. An OCD anomaly terminates when 6 consecutive correct HECs have been detected. For an AtmCell component located under a DS3 or E3 component with mapping = PLCP, the LCD defect is directly derived from the PLCP LOF defect. If LCD defects are intermittently occurring, the LCD defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle The component under which is located the AtmCell component goes into an operational state of disabled until the LCD alarm condition is cleared. The condition is cleared after the LCD defect has not been reported for a period of 10 seconds +/- 0.5 seconds. The lcdAlarm attribute is always set to off when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.11.1.1
lpE1ChanCellStatsTableThis group contains the Statistics attribute for the AtmCell component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpE1ChanCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.12
lpE1ChanCellStatsEntryAn entry in the lpE1ChanCellStatsTable.
LpE1ChanCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.12.1
lpE1ChanCellUncorrectableHecErrorsThis attribute indicates the number of uncorrectable ATM cell header errors that have been detected. Counting of uncorrectableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.12.1.1
lpE1ChanCellSevErroredSecThis attribute indicates the total number of ATM Cell Severely Errored Seconds (SESs) that have been counted. In direct mapping mode, an ATM Cell SES is declared for second intervals containing one or more Out of Cell Delineation (OCD) defects. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected. In PLCP mapping mode, an ATM Cell SES is declared for second intervals containing one or more PLCP LOF defects. Counting of uncorrectableHeaderErrors (ucErr) and correctableHeaderErrors (cErr) is inhibited when the OCD defect is present.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.12.1.2
lpE1ChanCellReceiveCellUtilizationThis attribute is the ratio of the number of valid, assigned cells received on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.12.1.3
lpE1ChanCellTransmitCellUtilizationThis attribute is the ratio of the number of valid, assigned cells transmitted on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.12.1.4
lpE1ChanCellCorrectableHeaderErrorsThis attribute indicates the number of correctable ATM cell header errors that have been detected and corrected. Counting of correctableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detectedro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.3.12.1.5
lpE1ChanTc
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4
lpE1ChanTcRowStatusTableThis entry controls the addition and deletion of lpE1ChanTc components.
SEQUENCE OF LpE1ChanTcRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.1
lpE1ChanTcRowStatusEntryA single entry in the table represents a single lpE1ChanTc component.
LpE1ChanTcRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.1.1
lpE1ChanTcRowStatusThis variable is used as the basis for SNMP naming of lpE1ChanTc components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.1.1.1
lpE1ChanTcComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.1.1.2
lpE1ChanTcStorageTypeThis variable represents the storage type value for the lpE1ChanTc tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.1.1.4
lpE1ChanTcIndexThis variable represents the index for the lpE1ChanTc tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.1.1.10
lpE1ChanTcProvTableThis group contains all specific provisioning data for a Tc component.
SEQUENCE OF LpE1ChanTcProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.10
lpE1ChanTcProvEntryAn entry in the lpE1ChanTcProvTable.
LpE1ChanTcProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.10.1
lpE1ChanTcReplacementDataThis attribute specifies the trunk conditioning data byte to be substituted into the timeslots defined by the Chan component under fault conditions. replacementData can be set to any two digit hexadecimal number. The following are recommended values: DS1 MUX Out Of Service Code = 0x1A E1 MUX Out Of Service Code = 0xFFrw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.10.1.1
lpE1ChanTcSignalOneDurationThis attribute specifies the time duration in seconds for which signalOne is substituted into the appropriate signaling bits, when a lineType that uses CAS has been defined. When signalOneDuration has expired signalTwo is substituted into the appropriate signaling bits. If signalOneDuration is set to zero then only signalTwo is substituted into the appropriate signaling bits during error conditions. signalOneDuration can be set to any integer value from 0 to 60 seconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.10.1.2
lpE1ChanTcOpTableThis group contains all specific operational data for a Tc component.
SEQUENCE OF LpE1ChanTcOpEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.11
lpE1ChanTcOpEntryAn entry in the lpE1ChanTcOpTable.
LpE1ChanTcOpEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.11.1
lpE1ChanTcIngressConditioningThis attribute indicates the status of locally generated trunk conditioning towards the ATM network. When trunk conditioning is being locally generated towards the ATM network, ingressConditioning is set to on. When trunk conditioning is not being locally generated towards the ATM network, ingressConditioning is set to off. Trunk conditioning is transmitted towards the ATM network under the following conditions: lossOfSignal (LOS) lossOfFrame (LOF) remoteAlarmIndication (RAI) alarmIndicationSignal (AIS) bufferUnderflow (BU) and in addition for E1: lossOfMultiframe (LOMF) receiveMultiframeRemoteAlarmIndication (RMRAI)ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.11.1.1
lpE1ChanTcEgressConditioningThis attribute indicates the status of locally generated trunk conditioning towards the PDH line. When trunk conditioning is being locally generated towards the PDH line, egressConditioning is set to on. When trunk conditioning is not being locally generated towards the PDH line, egressConditioning is set to off. Trunk conditioning is transmitted towards the PDH line under the following conditions: bufferUnderflow (BU) AAL1 protocol errors.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.11.1.2
lpE1ChanTcSigOneTableThis attribute specifies the value to be substituted into the ABCD signaling bits for the timeslots defined by the Chan component under fault conditions. The value will be substituted for the duration provisioned in signalOneDuration when a lineType that uses CAS has been defined. For a lineType of d4Cas (Super Frame), signaling bits C and D are required to equal bits A and B respectively.
SEQUENCE OF LpE1ChanTcSigOneEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.398
lpE1ChanTcSigOneEntryAn entry in the lpE1ChanTcSigOneTable.
LpE1ChanTcSigOneEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.398.1
lpE1ChanTcSigOneIndexThis variable represents the lpE1ChanTcSigOneTable specific index for the lpE1ChanTcSigOneTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.398.1.1
lpE1ChanTcSigOneValueThis variable represents an individual value for the lpE1ChanTcSigOneTable.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.398.1.2
lpE1ChanTcSigTwoTableThis attribute specifies the value to be substituted into the ABCD signaling bits for the timeslots defined by the Chan component under fault conditions. The value will be substituted after the duration provisioned in signalOneDuration has expired and when a lineType that uses CAS has been defined. For a lineType of d4Cas (Super Frame), signaling bits C and D are required to equal bits A and B respectively.
SEQUENCE OF LpE1ChanTcSigTwoEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.399
lpE1ChanTcSigTwoEntryAn entry in the lpE1ChanTcSigTwoTable.
LpE1ChanTcSigTwoEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.399.1
lpE1ChanTcSigTwoIndexThis variable represents the lpE1ChanTcSigTwoTable specific index for the lpE1ChanTcSigTwoTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.399.1.1
lpE1ChanTcSigTwoValueThis variable represents an individual value for the lpE1ChanTcSigTwoTable.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.4.399.1.2
lpE1ChanProvTableThis group contains all of the provisional data for a Channel component.
SEQUENCE OF LpE1ChanProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.10
lpE1ChanProvEntryAn entry in the lpE1ChanProvTable.
LpE1ChanProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.10.1
lpE1ChanTimeslotsThis attribute contains the list of timeslots that are used by the Channel component. Valid numbers are 1-24 for a Channel used by a DS1 component, and 1-31 for a Channel used by an E1 component. Description of bits: notused0(0) n1(1) n2(2) n3(3) n4(4) n5(5) n6(6) n7(7) n8(8) n9(9) n10(10) n11(11) n12(12) n13(13) n14(14) n15(15) n16(16) n17(17) n18(18) n19(19) n20(20) n21(21) n22(22) n23(23) n24(24) n25(25) n26(26) n27(27) n28(28) n29(29) n30(30) n31(31)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.2.10.1.1
lpE1ChanTimeslotDataRateThis attribute selects the data rate of the timeslots in a channel of a DS1 component. For E1, the data rate of the timeslots will always be 64kbit/s regardless of this attribute. When doNotOverride is selected for a channel on a DS1, the data rate of the channel's timeslots are dependent on the zeroCoding selection of the DS1 component. If the zeroCoding is B8ZS (where supported on the FP) or none, the timeslot's data rate will be 64kbit/s. If the zeroCoding option is bit7Stuffing, the data rate of a timeslot will be 56kbit/s. When 56kbit/s is selected for a channel on a DS1, the least significant bit of each timeslot of this Channel will always be set to 1 and not used for data. The data rate for the timeslots of this channel is therefore restricted to 56kbit/s. One application of this attribute is to allow a DS1 line to support mixing channels that originate from lines that use different zeroCoding schemes.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.10.1.2
lpE1ChanApplicationFramerNameThis attribute defines the link to the software stack. It defines which application is running on top of this hardware component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.8.2.10.1.3
lpE1ChanCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpE1ChanCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.11
lpE1ChanCidDataEntryAn entry in the lpE1ChanCidDataTable.
LpE1ChanCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.11.1
lpE1ChanCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.8.2.11.1.1
lpE1ChanIfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpE1ChanIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.12
lpE1ChanIfEntryEntryAn entry in the lpE1ChanIfEntryTable.
LpE1ChanIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.12.1
lpE1ChanIfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.12.1.1
lpE1ChanIfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.8.2.12.1.2
lpE1ChanOperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpE1ChanOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.13
lpE1ChanOperStatusEntryAn entry in the lpE1ChanOperStatusTable.
LpE1ChanOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.13.1
lpE1ChanSnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.13.1.1
lpE1ChanStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpE1ChanStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14
lpE1ChanStateEntryAn entry in the lpE1ChanStateTable.
LpE1ChanStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1
lpE1ChanAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.1
lpE1ChanOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.2
lpE1ChanUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.3
lpE1ChanAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.4
lpE1ChanProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.5
lpE1ChanControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.6
lpE1ChanAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.7
lpE1ChanStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.8
lpE1ChanUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.2.14.1.9
lpE1ChanOperTableThis group contains all of the operational data for a Channel component.
SEQUENCE OF LpE1ChanOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.15
lpE1ChanOperEntryAn entry in the lpE1ChanOperTable.
LpE1ChanOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.15.1
lpE1ChanActualChannelSpeedThis attribute displays the measured link speed of the Channel component.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.8.2.15.1.1
lpE1ChanAdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpE1ChanAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.16
lpE1ChanAdminInfoEntryAn entry in the lpE1ChanAdminInfoTable.
LpE1ChanAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.2.16.1
lpE1ChanVendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.8.2.16.1.1
lpE1ChanCommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.8.2.16.1.2
lpE1Test
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.8.3
lpE1TestRowStatusTableThis entry controls the addition and deletion of lpE1Test components.
SEQUENCE OF LpE1TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.3.1
lpE1TestRowStatusEntryA single entry in the table represents a single lpE1Test component.
LpE1TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.3.1.1
lpE1TestRowStatusThis variable is used as the basis for SNMP naming of lpE1Test components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.3.1.1.1
lpE1TestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.3.1.1.2
lpE1TestStorageTypeThis variable represents the storage type value for the lpE1Test tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.3.1.1.4
lpE1TestIndexThis variable represents the index for the lpE1Test tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.8.3.1.1.10
lpE1TestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpE1TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.3.10
lpE1TestStateEntryAn entry in the lpE1TestStateTable.
LpE1TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.3.10.1
lpE1TestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.3.10.1.1
lpE1TestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.3.10.1.2
lpE1TestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.3.10.1.3
lpE1TestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpE1TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11
lpE1TestSetupEntryAn entry in the lpE1TestSetupTable.
LpE1TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1
lpE1TestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1.1
lpE1TestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1.2
lpE1TestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1.3
lpE1TestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1.4
lpE1TestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1.5
lpE1TestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1.6
lpE1TestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1.7
lpE1TestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.3.11.1.8
lpE1TestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpE1TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12
lpE1TestResultsEntryAn entry in the lpE1TestResultsTable.
LpE1TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1
lpE1TestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.1
lpE1TestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.2
lpE1TestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.3
lpE1TestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.4
lpE1TestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.5
lpE1TestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.6
lpE1TestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.7
lpE1TestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.8
lpE1TestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.9
lpE1TestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.10
lpE1TestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.8.3.12.1.11
lpE1Dsp
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.8.4
lpE1DspRowStatusTableThis entry controls the addition and deletion of lpE1Dsp components.
SEQUENCE OF LpE1DspRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.4.1
lpE1DspRowStatusEntryA single entry in the table represents a single lpE1Dsp component.
LpE1DspRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.4.1.1
lpE1DspRowStatusThis variable is used as the basis for SNMP naming of lpE1Dsp components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.4.1.1.1
lpE1DspComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.4.1.1.2
lpE1DspStorageTypeThis variable represents the storage type value for the lpE1Dsp tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.4.1.1.4
lpE1DspIndexThis variable represents the index for the lpE1Dsp tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.8.4.1.1.10
lpE1Audio
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.8.5
lpE1AudioRowStatusTableThis entry controls the addition and deletion of lpE1Audio components.
SEQUENCE OF LpE1AudioRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.5.1
lpE1AudioRowStatusEntryA single entry in the table represents a single lpE1Audio component.
LpE1AudioRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.5.1.1
lpE1AudioRowStatusThis variable is used as the basis for SNMP naming of lpE1Audio components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.5.1.1.1
lpE1AudioComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.5.1.1.2
lpE1AudioStorageTypeThis variable represents the storage type value for the lpE1Audio tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.8.5.1.1.4
lpE1AudioIndexThis variable represents the index for the lpE1Audio tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.8.5.1.1.10
lpE1ProvTableThis group contains all of the provisioning data for an E1 component.
SEQUENCE OF LpE1ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.10
lpE1ProvEntryAn entry in the lpE1ProvTable.
LpE1ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.10.1
lpE1LineTypeThis attribute specifies the framing of the E1 line. When cas (channel associated signalling) is selected, timeslot 16 is reserved for multiframe signalling and only 30 timeslots are available for data. The signalling bits are not interpreted. When ccs (common channel signalling) is selected, timeslot 16 is not reserved for multiframe signalling and 31 timeslots are available for data. The signalling bits are not interpreted. When unframed is selected, a clear channel is defined whereby data from all timeslots including the framing data (in timeslot 0) and timeslot 16 are passed transparently. This value is valid only for AAL1 cards. For cell-based cards the ATM Forum specifies that timeslot 16 be reserved, leaving 30 timeslots available for data. The default value is cas except for the 8pE1Atm card, for which the default and only valid value is ccs.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.10.1.1
lpE1ClockingSourceThis attribute defines the source of the transmit clock for the E1 line. When local is selected, the crystal on the port generates the clocking for the line. When line is selected, the port synchronizes to the clock from the facility. When module is selected, the ports clock synchronizes to the clock provided by the oscillator on the active CP. When otherPort is selected, the port synchronizes to the port with a clocking source of line. When srtsMode is selected, the port sychronization is taken from the SRTS (Synchronous Residual Time Stamp) bits within the ATM cell. If the NetworkSynchronization (NS) component is present the default value of this attribute will be module otherwise it will default to line except for the 3pE1Atm card which defaults to local. The 3pE1Atm card has one common clock source for all ports and does not support the line clock source; all three ports must have the same value, either local or module. The clockingSource values otherPort and srtsMode are only valid for the AAL1 cards. For the AAL1 cards either: all four ports' clockingSource values must be local OR all four ports' clockingSource values must be module OR one port's clockingSource value must be line and the other three must be otherPort. A port can only have srtsMode selected if the other ports are module or srtsMode.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.10.1.2
lpE1Crc4ModeThis attribute defines whether the CRC-4 checking and generation on the E1 line is enabled or disabled. The default CRC-4 mode is off except for the cell-based cards which default to on as per the ATM Forum.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.10.1.3
lpE1SendRaiOnAisThis attribute defines whether the Remote Alarm Indicator (RAI) will be sent when receiving an AIS alarm. The value is yes by default; it can be changed to no only for ports on J2MV cards.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.10.1.4
lpE1RaiDeclareAlarmTimeThis attribute specifies the period of time that a Remote Alarm Indicator (RAI) must be present before declaring an RAI alarm. The value of auto sets the RAI declare time to the default value for E1 and E1C card types which do not have hardware support for RAI response. On E1C card types with hardware support, if the value of auto is set, RAI response is done according to the standards. If auto is set, the value of the raiClearAlarmTime attribute is ignored and auto is used. This attribute is for E1 and E1C card types only. For all other card types, the default value must be used. VALUES ( 0 = auto )rw
Unsigned32 (0 | 1..20000)
.1.3.6.1.4.1.3764.1.1.30.12.8.10.1.5
lpE1RaiClearAlarmTimeThis attribute specifies the period of time that a Remote Alarm Indicator (RAI) has been absent before clearing an RAI alarm. The value of auto sets the RAI clear time to the default value for E1 and E1C card types which do not have hardware support for RAI response. On E1C card types with hardware support, if the value of auto is set, RAI response is done according to the standards. If auto is set, the value of the raiDeclareAlarmTime attribute is ignored and auto is used. This attribute is for E1 and E1C card types only. For all other card types, the default value must be used. VALUES ( 0 = auto )rw
Unsigned32 (0 | 1..20000)
.1.3.6.1.4.1.3764.1.1.30.12.8.10.1.6
lpE1CidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpE1CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.11
lpE1CidDataEntryAn entry in the lpE1CidDataTable.
LpE1CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.11.1
lpE1CustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.8.11.1.1
lpE1AdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpE1AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.12
lpE1AdminInfoEntryAn entry in the lpE1AdminInfoTable.
LpE1AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.12.1
lpE1VendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.8.12.1.1
lpE1CommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.8.12.1.2
lpE1IfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpE1IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.13
lpE1IfEntryEntryAn entry in the lpE1IfEntryTable.
LpE1IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.13.1
lpE1IfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.13.1.1
lpE1IfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.8.13.1.2
lpE1OperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpE1OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.14
lpE1OperStatusEntryAn entry in the lpE1OperStatusTable.
LpE1OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.14.1
lpE1SnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.14.1.1
lpE1StateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpE1StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.15
lpE1StateEntryAn entry in the lpE1StateTable.
LpE1StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1
lpE1AdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.1
lpE1OperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.2
lpE1UsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.3
lpE1AvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.4
lpE1ProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.5
lpE1ControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.6
lpE1AlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.7
lpE1StandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.8
lpE1UnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.15.1.9
lpE1OperTableThis group contains the common operational data for a component in a digital hierarchy interface.
SEQUENCE OF LpE1OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.16
lpE1OperEntryAn entry in the lpE1OperTable.
LpE1OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.16.1
lpE1LosAlarmThis attribute displays whether a LOS (Loss of Signal) alarm state has been entered. A LOS alarm is declared after LOS defects have been observed and accumulated for a period of 2 seconds +/- 0.5 seconds (for 3pDS1Atm, 3pE1Atm, 8pDS1Atm, and 8pE1Atm cards: 2.5 seconds +/- 0.5 seconds). A LOS defect is detected upon observing all zeros for 150 ms (for 3pDS1Atm, 3pE1Atm, 8pDS1Atm, and 8pE1Atm cards: upon observing 175 +/- 75 pulse positions with no pulses of either positive or negative polarity). If the LOS defects are intermittently occurring, the LOS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The port goes into an operational state of disabled until the LOS alarm state is cleared. Also, an RAI alarm is transmitted to the far end for the duration of the LOS alarm state. The LOS alarm state is cleared when LOS defects are absent for 10 seconds +/- 0.5 seconds.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.16.1.1
lpE1RxAisAlarmThis attribute displays whether an AIS (Alarm Indication Signal) alarm state has been entered. The AIS Alarm state is entered when AIS defects have been observed and accumulated for 2.5 seconds +/ - 0.5 seconds. An AIS defect is detected after having received less than 3 zeros in a 2048 bit period (for 8pDS1Atm cards: when both an Out Of Frame condition exists and a 1's density of at least 99.9% is present for a time T, where 3 ms T 75 ms; for 8pE1Atm cards: when both an Out Of Frame condition exists and fewer than three 0's have been received in 512 bit periods). If the AIS defects are intermittently occurring, the AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The port goes into an operational state of disabled for the duration of an AIS alarm state. The AIS alarm state is cleared when AIS defects are absent for 10 seconds +/- 0.5 seconds.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.16.1.2
lpE1LofAlarmThis attribute displays whether a LOF (Loss of Frame) alarm state has been entered. The LOF alarm state is entered when LOF defects (for DS1: 2 out of 5 framing bits in error; for E1: 3 consecutive frame alignment patterns in error) have been detected for 3 seconds +/- 0.5 seconds (for 3pDS1Atm, 3pE1Atm, 8pDS1Atm, and 8pE1Atm cards: 2.5 seconds +/- 0.5 seconds). If the LOF defects are intermittently occurring, the LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The port goes into an operational state of disabled until the LOF alarm state is cleared. Also, an RAI alarm is transmitted to the far end for the duration of the LOF alarm state The condition is cleared when framing has been achieved for 10 seconds +/- 0.5 seconds.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.16.1.3
lpE1RxRaiAlarmThis attribute displays whether an RAI (Remote Alarm Indication) alarm state has been entered. An RAI alarm state is entered when the RAI defect indicator has been observed and accumulated for 3.5 seconds +/- 0.5 seconds. For 3pDS1Atm, and 8pDS1Atm cards: alarm is declared immediately upon observing the defect is present, with no integration time. For 3pE1Atm, and 8pE1Atm cards: alarm state is entered when the RAI defect indicator has been observed and accumulated for 2.5 seconds +/- 0.5 seconds. If the RAI defects are intermittently occurring, the RAI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The RAI alarm state is cleared when the RAI defect indicator has been absent for 10 seconds +/- 0.5 seconds (for 3pDS1Atm, and 8pDS1Atm cards: alarm is cleared immediately upon observing the defect is absent, with no integration time). The RAI alarm is usually an indication that the far end facility is unable to gain synchronization.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.16.1.4
lpE1TxAisAlarmThis attribute displays whether an AIS (Alarm Indication Signal) alarm is being transmitted on the line. An AIS alarm is transmitted when the port is in a locked state.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.16.1.5
lpE1TxRaiAlarmThis attribute displays whether a RAI signal is being sent on the outgoing line. The RAI signal is transmitted when the port detects a LOF alarm condition (for 3pDS1Atm, 3pE1Atm, 8pDS1Atm, and 8pE1Atm cards: RAI is transmitted when the port detects a LOS, LOF, or AIS condition).ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.16.1.6
lpE1E1OperTableThis group contains all of the operational data for a E1 component that are not defined in the DSCommonOp group.
SEQUENCE OF LpE1E1OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.17
lpE1E1OperEntryAn entry in the lpE1E1OperTable.
LpE1E1OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.17.1
lpE1MultifrmLofAlarmThis attribute indicates whether a multiframe LOF (loss of frame) alarm state is entered. A multiframe LOF alarm state is entered when a multiframe LOF defect (2 consecutive errors in the multiframe alignment signal) has been detected and accumulated for 2.5 seconds +/- 0.5 seconds. If the multiframe LOF defects are intermittently occurring, the multiframe LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The alarm is cleared when the defect is not detected for 10 seconds +/- 0.5 seconds. When the multiframe LOF alarm is on, a multiframe RAI alarm indicator is transmitted on the line. The 8pE1Atm card does not support the multiframe LOF alarm.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.17.1.1
lpE1RxMultifrmRaiAlarmThis attribute displays whether a multiframe RAI (remote alarm indicator) alarm state has been entered. A multiframe RAI alarm state is entered when a multiframe RAI alarm indicator (bit 6 of timeslot 16 in frame 0 is set to a one) is observed and accumulated for 2.5 seconds +/- 0.5 seconds. If the multiframe RAI indicator is intermittently received, the multiframe RAI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The multiframe RAI alarm condition is cleared when the multiframe RAI alarm indication is not received for 10 seconds +/- 0.5 seconds. The multiframe RAI alarm is usually an indication that the far end facility is unable to gain multiframe synchronization. The 8pE1Atm card does not support the multiframe RAI alarm.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.17.1.2
lpE1TxMultifrmRaiAlarmThis attribute displays whether a multiframe RAI (remote alarm indicator) alarm is being sent on the E1 line. This is transmitted when the E1 port detects a multiframe LOF condition. The 8pE1Atm card does not generate the multiframe RAI alarm.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.8.17.1.3
lpE1StatsTableThis group contains the common statistical data for a component in a digital hierarchy interface.
SEQUENCE OF LpE1StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.18
lpE1StatsEntryAn entry in the lpE1StatsTable.
LpE1StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1
lpE1RunningTimeThe number of seconds since the port component was activated.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.1
lpE1ErrorFreeSecThe number of seconds that the port has been in an error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.2
lpE1ErroredSecAn errored second is declared when a second with one or more Code Violation Error events, or one or more Out Of Frame events occurs. A code violation error may be a CRC error or a BPV error. An Out Of Frame event occurs when 2 out of 5 framing bits are in error.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.3
lpE1SevErroredSecA severely errored second occurs when a second with 320 or more Code Violation Error events or one or more Out Of Frame events occurs.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.4
lpE1SevErroredFrmSecA severely errored framing second occurs when a second with one or more Out Of Frame events occurs.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.5
lpE1UnavailSecThe total number of seconds that the interface is in an unavailable signal state. An unavailable signal state occurs at the onset of 10 consecutive Severely Errored Seconds. The state is cleared at the onset of 10 seconds with no Severely Errored Seconds.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.6
lpE1BpvErrorsThe current count of Bipolar Violations. A bipolar violation is an error in the alternate mark inversion pattern (AMI) on the line.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.7
lpE1CrcErrorsIf the interface is a DS1 line, it is the current count of CRC-6 errors. These will only be counted when the lineType is ESF. If the interface is an E1 line, it is the total number of CRC-4 errors. These will only be counted when crc4Mode is on.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.8
lpE1FrmErrorsThe current count of frame errors. A frame error is an error in the framing bitsro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.9
lpE1LosStateChangesThe total number of times that the line lost signal.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.10
lpE1SlipErrorsThe total number of times that the line experienced a controlled frame slip. This attribute is incremented for ports on the voice cards (for example the 1pDS1V and the 1pE1V function processors) only.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.8.18.1.11
lpV35
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.9
lpV35RowStatusTableThis entry controls the addition and deletion of lpV35 components.
SEQUENCE OF LpV35RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.1
lpV35RowStatusEntryA single entry in the table represents a single lpV35 component.
LpV35RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.1.1
lpV35RowStatusThis variable is used as the basis for SNMP naming of lpV35 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.9.1.1.1
lpV35ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.9.1.1.2
lpV35StorageTypeThis variable represents the storage type value for the lpV35 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.9.1.1.4
lpV35IndexThis variable represents the index for the lpV35 tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.9.1.1.10
lpV35Test
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.9.2
lpV35TestRowStatusTableThis entry controls the addition and deletion of lpV35Test components.
SEQUENCE OF LpV35TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.2.1
lpV35TestRowStatusEntryA single entry in the table represents a single lpV35Test component.
LpV35TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.2.1.1
lpV35TestRowStatusThis variable is used as the basis for SNMP naming of lpV35Test components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.9.2.1.1.1
lpV35TestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.9.2.1.1.2
lpV35TestStorageTypeThis variable represents the storage type value for the lpV35Test tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.9.2.1.1.4
lpV35TestIndexThis variable represents the index for the lpV35Test tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.9.2.1.1.10
lpV35TestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpV35TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.2.10
lpV35TestStateEntryAn entry in the lpV35TestStateTable.
LpV35TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.2.10.1
lpV35TestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.2.10.1.1
lpV35TestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.2.10.1.2
lpV35TestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.2.10.1.3
lpV35TestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpV35TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11
lpV35TestSetupEntryAn entry in the lpV35TestSetupTable.
LpV35TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1
lpV35TestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1.1
lpV35TestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1.2
lpV35TestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1.3
lpV35TestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1.4
lpV35TestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1.5
lpV35TestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1.6
lpV35TestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1.7
lpV35TestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.9.2.11.1.8
lpV35TestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpV35TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12
lpV35TestResultsEntryAn entry in the lpV35TestResultsTable.
LpV35TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1
lpV35TestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.1
lpV35TestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.2
lpV35TestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.3
lpV35TestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.4
lpV35TestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.5
lpV35TestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.6
lpV35TestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.7
lpV35TestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.8
lpV35TestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.9
lpV35TestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.10
lpV35TestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.9.2.12.1.11
lpV35ProvTableThis group contains all specific provisioning data for a V35 component.
SEQUENCE OF LpV35ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.10
lpV35ProvEntryAn entry in the lpV35ProvTable.
LpV35ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1
lpV35LinkModeThis attribute defines the intended gender of the V.35 interface. The actual gender of the interface is determined by the physical connection to the patch panel. If the hardware setup does not match this attribute, an alarm will be generated. In dte mode, the RTS line signal is driven as specified by the attribute readyLineState when the interface passes its initial diagnostics. Then, the RTS line signal will be driven as specified in the attribute dataTransferLineState when the application is ready to transfer data. On the other hand, the input line signals (RFS, DSR, and DCD) are compared against those specified in the attributes readyLineState and dataTransferLineState. The application will be notified when the specified input line states are observed. In dce mode, the V35 component behaves similarly as when it is in dte mode. However, it will be driving the DCE line signals (RFS, DSR, and DCD) and monitoring the DTE line signal (RTS) as specified by the attributes readyLineState and dataTransferLineState.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.1
lpV35ReadyLineStateThis attribute specifies the line signals originating from the V.35 interface that will always be turned on, provided the interface passes its diagnostics. This set of signals is generally required for maintaining the connection. Note that both DTE and DCE signals are specified in this attribute. The appropriate set of specified signals will be turned on or checked according to the actualLinkMode. See also linkMode. Description of bits: rfs(0) dsr(1) dcd(2) rts(3)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.2
lpV35DataTransferLineStateThis attribute specifies the line signals required to indicate that the external equipment is in a good state (that is, data transfer can proceed). Note that both DTE and DCE signals are specified in this attribute. The appropriate set of specified signals will be turned on or checked according to the actualLinkMode. The value of this attribute must be a superset of that of the readyLineState attribute. See also linkMode. Description of bits: rfs(0) dsr(1) dcd(2) rts(3)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.3
lpV35LineStatusTimeOutThis attribute defines the time that the line state must be stable (good or bad) before a line state change is declared.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.4
lpV35LineSpeedThis attribute defines the speed of the line for source clocking. This attribute is ignored if the interface is not providing a clock. The clock rate is rounded up to the nearest available value. Note that the actual clock rates are available in the operational attributes actualTxLineSpeed and actualRxLineSpeed. The actual lineSpeeds configurable on a V.35 DCE interface are: 3840000, 2560000, 2048000, 1920000, 1536000, 1344000, 1280000, 1024000, 960000, 768000, 672000, 640000, 512000, 448000, 384000, 336000, 320000, 256000, 224000, 192000, 168000, 128000, 112000, 64000, 56000, 48000, 32000, 19200, 9600. Note that linspeeds of 1024000 and 2048000 cannot be provisioned on cards that have ports provisioned at 3840000, 2560000, 1920000, 1280000, 960000, 640000 or 320000.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.5
lpV35ClockingSourceThis attribute defines the source of synchronization of the outgoing clocks. This attribute is only used when the actualLinkMode is dce. If the value of the attribute is local, the outgoing clocks are synchronized to a local oscillator on the FP. If the value of the attribute is module, the outgoing clocks are synchronized to the oscillator on the active CP.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.6
lpV35DteDataClockSourceThis attribute is only used when the actualLinkMode is dce. It is used to determine the clock to be used to recover the receive data. A DTE interface uses TSET(DCE) and RSET(DCE) for timing. If the value of the attribute is fromDce, the DCE uses the internally generated transmit clock to supply both TSET(DCE) and RSET(DCE). If the value of the attribute is fromDte, the DCE still uses the internally generated transmit clock to supply TSET(DCE), but the receive timing is derived from TSET(DTE) on the link. The fromDte mode is recommended when the DTE is far away from the DCE interface. Note that TSET(DTE) is CCITT V.24 circuit 113; TSET(DCE) is CCITT V.24 circuit 114; and RSET(DCE) is CCITT V.24 circuit 115.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.7
lpV35ApplicationFramerNameThis attribute contains the component name of a Framer which is associated with the V35 component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.8
lpV35EnableDynamicSpeedWhen set to yes, this attribute specifies that the transmit link speed should be set to the calculated receiver link speed. This attribute can be set to yes only if the linkMode is dce and the dteDataClockSource is fromDte.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.10.1.9
lpV35CidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpV35CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.11
lpV35CidDataEntryAn entry in the lpV35CidDataTable.
LpV35CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.11.1
lpV35CustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.9.11.1.1
lpV35AdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpV35AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.12
lpV35AdminInfoEntryAn entry in the lpV35AdminInfoTable.
LpV35AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.12.1
lpV35VendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.9.12.1.1
lpV35CommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.9.12.1.2
lpV35IfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpV35IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.13
lpV35IfEntryEntryAn entry in the lpV35IfEntryTable.
LpV35IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.13.1
lpV35IfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.13.1.1
lpV35IfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.9.13.1.2
lpV35OperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpV35OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.14
lpV35OperStatusEntryAn entry in the lpV35OperStatusTable.
LpV35OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.14.1
lpV35SnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.14.1.1
lpV35StateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpV35StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.15
lpV35StateEntryAn entry in the lpV35StateTable.
LpV35StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1
lpV35AdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.1
lpV35OperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.2
lpV35UsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.3
lpV35AvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.4
lpV35ProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.5
lpV35ControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.6
lpV35AlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.7
lpV35StandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.8
lpV35UnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.15.1.9
lpV35OperTableThis group contains all specific operational data for a V35 component.
SEQUENCE OF LpV35OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.16
lpV35OperEntryAn entry in the lpV35OperTable.
LpV35OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.9.16.1
lpV35ActualLinkModeThis attribute contains the actual link mode defined by the hardware. Note that the hardware overrides the provisionable data. The interface behaves as a DCE or DTE according to the actualLinkMode.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.9.16.1.1
lpV35LineStateThis attribute contains the current state of the interface signals. Description of bits: rfs(0) dsr(1) dcd(2) rts(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.9.16.1.2
lpV35ActualTxLineSpeedThis attribute is the measured speed of the transmit clock.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.9.16.1.3
lpV35ActualRxLineSpeedThis attribute is the measured speed of the receive clock.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.9.16.1.4
lpV35DataXferStateChangesThis attribute contains the number of times that the line has entered or exited the data transfer state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.9.16.1.5
lpX21
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.10
lpX21RowStatusTableThis entry controls the addition and deletion of lpX21 components.
SEQUENCE OF LpX21RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.1
lpX21RowStatusEntryA single entry in the table represents a single lpX21 component.
LpX21RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.1.1
lpX21RowStatusThis variable is used as the basis for SNMP naming of lpX21 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.10.1.1.1
lpX21ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.10.1.1.2
lpX21StorageTypeThis variable represents the storage type value for the lpX21 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.10.1.1.4
lpX21IndexThis variable represents the index for the lpX21 tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.10.1.1.10
lpX21Test
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.10.2
lpX21TestRowStatusTableThis entry controls the addition and deletion of lpX21Test components.
SEQUENCE OF LpX21TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.2.1
lpX21TestRowStatusEntryA single entry in the table represents a single lpX21Test component.
LpX21TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.2.1.1
lpX21TestRowStatusThis variable is used as the basis for SNMP naming of lpX21Test components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.10.2.1.1.1
lpX21TestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.10.2.1.1.2
lpX21TestStorageTypeThis variable represents the storage type value for the lpX21Test tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.10.2.1.1.4
lpX21TestIndexThis variable represents the index for the lpX21Test tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.10.2.1.1.10
lpX21TestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpX21TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.2.10
lpX21TestStateEntryAn entry in the lpX21TestStateTable.
LpX21TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.2.10.1
lpX21TestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.2.10.1.1
lpX21TestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.2.10.1.2
lpX21TestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.2.10.1.3
lpX21TestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpX21TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11
lpX21TestSetupEntryAn entry in the lpX21TestSetupTable.
LpX21TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1
lpX21TestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1.1
lpX21TestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1.2
lpX21TestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1.3
lpX21TestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1.4
lpX21TestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1.5
lpX21TestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1.6
lpX21TestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1.7
lpX21TestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.10.2.11.1.8
lpX21TestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpX21TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12
lpX21TestResultsEntryAn entry in the lpX21TestResultsTable.
LpX21TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1
lpX21TestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.1
lpX21TestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.2
lpX21TestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.3
lpX21TestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.4
lpX21TestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.5
lpX21TestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.6
lpX21TestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.7
lpX21TestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.8
lpX21TestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.9
lpX21TestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.10
lpX21TestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.10.2.12.1.11
lpX21ProvTableThis group contains all specific provisioning data for an X21 component.
SEQUENCE OF LpX21ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.10
lpX21ProvEntryAn entry in the lpX21ProvTable.
LpX21ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1
lpX21LinkModeThis attribute defines the intended gender of the X21 component (V.11 interface). The actual gender of the interface is determined by the physical connection to the patch panel. If the hardware setup does not match this attribute, an alarm will be generated. In dte mode, the control line signal is driven as specified by the attribute readyLineState when the interface passes its initial diagnostics. Then, the control line signal will be driven as specified in the attribute dataTransferLineState when the application is ready to transfer data. On the other hand, the input line signal (indication) is compared against those specified in the attributes readyLineState and dataTransferLineState. The application will be notified when the specified line states are observed. In dce mode, the X21 component behaves similarly as when it is in dte mode. However, it will be driving the DCE line signal (control) and monitoring the DTE line signal (indication) as specified by the attributes readyLineState and dataTransferLineState.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.1
lpX21ReadyLineStateThis attribute specifies the line signals originating from the V.11 interface that will always be turned on, provided the interface passes its diagnostics. This set of signals is generally required to maintain the connection. Note that both DTE and DCE signals are specified in this attribute. The appropriate set of specified signals will be turned on or checked according to the actualLinkMode. See also linkMode. Description of bits: indication(0) control(1)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.2
lpX21DataTransferLineStateThe state of the line signals required to indicate that the external equipment is in a good state (that is, data transfer can proceed). Note that both DTE and DCE signals are specified in this attribute. The appropriate set of specified signals will be turned on or checked according to the actualLinkMode. The value of this attribute must be a superset of that of the readyLineState attribute. See also linkMode. Description of bits: indication(0) control(1)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.3
lpX21LineStatusTimeOutThis attribute defines the time the line state must be stable (good or bad) before a state change is declared.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.4
lpX21LineSpeedThis attribute defines the speed of the line for source clocking. This attribute is ignored if the interface is not providing a clock. The clock rate is rounded up to the nearest available value. Note that the actual clock rates are available in the operational attributes actualTxLineSpeed and actualRxLineSpeed. The actual lineSpeeds configurable on a V.11 DCE interface are: 7680000, 3840000, 2560000, 2048000, 1920000, 1536000, 1344000, 1280000, 1024000, 960000, 768000, 672000, 640000, 512000, 448000, 384000, 336000, 320000, 256000, 224000, 192000, 168000, 128000, 112000, 64000, 56000, 48000, 32000, 19200, 9600. Note that linspeeds of 1024000 and 2048000 cannot be provisioned on cards that have ports provisioned at 3840000, 2560000, 1920000, 1280000, 960000, 640000 or 320000. DESCRIPTIONrw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.5
lpX21ClockingSourceThis attribute defines the source of synchronization of the outgoing clocks. This attribute is only used when the actualLinkMode is dce. If the value of the attribute is local, the outgoing clocks are synchronized to a local oscillator on the FP. If the value of the attribute is module, the outgoing clocks are synchronized to the oscillator on the active CP.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.6
lpX21DteDataClockSourceThis attribute is only used when the actualLinkMode is dce. It is used to determine the clock to be used to recover the receive data. Note that a V.11 DTE interface uses the S clock (see X.21 standard) for both receive data and transmit data timing. The DTE interface always loops the received S clock back to the DCE as the X clock (see X.21 standard). If the value of the attribute is fromDce, the DCE V.11 interface uses the internally generated transmit clock as the S clock and for both receive and transmit data timing. The X clock is ignored. If the value of the attribute is fromDte, the DCE still uses the internally generated transmit clock as the S clock and for transmit data timing, but the receive data timing is derived from the X clock. The fromDte mode is recommended when the DTE is far away from the DCE interface.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.7
lpX21LineTerminationRequiredThis attribute specifies whether termination is required for this interface. If the hardware setup does not match this attribute, an alarm will be generated.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.8
lpX21ApplicationFramerNameThis attribute contains the component name of a Framer which is associated with the X21 component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.9
lpX21EnableDynamicSpeedWhen set to yes, this attribute specifies that the transmit link speed should be set to the calculated receiver link speed. This attribute can be set to yes only if the linkMode is dce and the dteDataClockSource is fromDte..rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.10.1.10
lpX21CidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpX21CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.11
lpX21CidDataEntryAn entry in the lpX21CidDataTable.
LpX21CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.11.1
lpX21CustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.10.11.1.1
lpX21AdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpX21AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.12
lpX21AdminInfoEntryAn entry in the lpX21AdminInfoTable.
LpX21AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.12.1
lpX21VendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.10.12.1.1
lpX21CommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.10.12.1.2
lpX21IfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpX21IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.13
lpX21IfEntryEntryAn entry in the lpX21IfEntryTable.
LpX21IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.13.1
lpX21IfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.13.1.1
lpX21IfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.10.13.1.2
lpX21OperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpX21OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.14
lpX21OperStatusEntryAn entry in the lpX21OperStatusTable.
LpX21OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.14.1
lpX21SnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.14.1.1
lpX21StateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpX21StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.15
lpX21StateEntryAn entry in the lpX21StateTable.
LpX21StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1
lpX21AdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.1
lpX21OperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.2
lpX21UsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.3
lpX21AvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.4
lpX21ProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.5
lpX21ControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.6
lpX21AlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.7
lpX21StandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.8
lpX21UnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.15.1.9
lpX21OperTableThis group contains all specific operational data for an X21 component.
SEQUENCE OF LpX21OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.16
lpX21OperEntryAn entry in the lpX21OperTable.
LpX21OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.10.16.1
lpX21ActualLinkModeThis attribute contains the actual link mode defined by the hardware. Note that the hardware overrides the provisionable data. The interface behaves as a DCE or DTE according to the actualLinkMode.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.10.16.1.1
lpX21LineStateThis attribute contains the current state of the interface signals. Description of bits: indication(0) control(1)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.10.16.1.2
lpX21ActualTxLineSpeedThis attribute is the measured speed of the transmit clock.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.10.16.1.3
lpX21ActualRxLineSpeedThis attribute is the measured speed of the receive clock.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.10.16.1.4
lpX21DataXferStateChangesThis attribute contains the number of times that the line has entered or exited the data transfer state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.10.16.1.5
lpSonet
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.14
lpSonetRowStatusTableThis entry controls the addition and deletion of lpSonet components.
SEQUENCE OF LpSonetRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.1
lpSonetRowStatusEntryA single entry in the table represents a single lpSonet component.
LpSonetRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.1.1
lpSonetRowStatusThis variable is used as the basis for SNMP naming of lpSonet components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.1.1.1
lpSonetComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.1.1.2
lpSonetStorageTypeThis variable represents the storage type value for the lpSonet tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.1.1.4
lpSonetIndexThis variable represents the index for the lpSonet tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.14.1.1.10
lpSonetPath
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.14.2
lpSonetPathRowStatusTableThis entry controls the addition and deletion of lpSonetPath components.
SEQUENCE OF LpSonetPathRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.1
lpSonetPathRowStatusEntryA single entry in the table represents a single lpSonetPath component.
LpSonetPathRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.1.1
lpSonetPathRowStatusThis variable is used as the basis for SNMP naming of lpSonetPath components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.2.1.1.1
lpSonetPathComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.2.1.1.2
lpSonetPathStorageTypeThis variable represents the storage type value for the lpSonetPath tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.2.1.1.4
lpSonetPathIndexThis variable represents the index for the lpSonetPath tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.1.1.10
lpSonetPathCell
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2
lpSonetPathCellRowStatusTableThis entry controls the addition and deletion of lpSonetPathCell components.
SEQUENCE OF LpSonetPathCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.1
lpSonetPathCellRowStatusEntryA single entry in the table represents a single lpSonetPathCell component.
LpSonetPathCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.1.1
lpSonetPathCellRowStatusThis variable is used as the basis for SNMP naming of lpSonetPathCell components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.1.1.1
lpSonetPathCellComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.1.1.2
lpSonetPathCellStorageTypeThis variable represents the storage type value for the lpSonetPathCell tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.1.1.4
lpSonetPathCellIndexThis variable represents the index for the lpSonetPathCell tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.1.1.10
lpSonetPathCellProvTableThis group contains the provisioning attributes for the AtmCell component.
SEQUENCE OF LpSonetPathCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.10
lpSonetPathCellProvEntryAn entry in the lpSonetPathCellProvTable.
LpSonetPathCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.10.1
lpSonetPathCellAlarmActDelayThis attribute defines the time during which a Loss of Cell Delineation (LCD) defect should be observed before declaring an LCD alarm (alarm 70115501). The time is specified in milliseconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.10.1.1
lpSonetPathCellScrambleCellPayloadCell scrambling, as defined by ITU-T Recommendation I.432., can provide a solution to the problem of transmission equipment which is sensitive to certain bit patterns in the ATM cell payload. This attribute controls whether or not the cell payload is scrambled. It defaults to off for DS1 interfaces, and on for all other interfaces. Note that this setting must be the same at both ends of the link.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.10.1.2
lpSonetPathCellCorrectSingleBitHeaderErrorsThis attribute specifies whether the port corrects single bit errors detected in the headers of received cells. If single bit errors are corrected, the affected cells are passed up to the ATM layer according to normal operation. If single bit errors are not corrected, these errored cells are discarded by the physical layer. Note that cells containing multiple bit errors in their headers are always discarded. Single bit HEC error correction must remain off for the following card types: 3pDS1Atm, 8pDS1Atm, 3pE1Atm, 8pE1Atm, 2pJ6MAtm, 3pDS3Atm, and 3pE3Atm.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.10.1.3
lpSonetPathCellOperTableThis group contains the common operational attributes for the AtmCell component.
SEQUENCE OF LpSonetPathCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.11
lpSonetPathCellOperEntryAn entry in the lpSonetPathCellOperTable.
LpSonetPathCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.11.1
lpSonetPathCellLcdAlarmThis attribute displays whether the Loss of Cell Delineation (LCD) failure alarm state has been entered. This state is entered when LCD defects have been observed and accumulated for a period of time specified through the alarmActDelay attribute. In ATM cell direct mapping mode, an LCD defect occurs when Out of Cell Delineation (OCD) anomaly persists for x milliseconds, and disappears when the Out of Cell Delineation (OCD) is absent for x msec. An OCD anomaly occurs when 7 consecutive incorrect HECs have been detected. An OCD anomaly terminates when 6 consecutive correct HECs have been detected. For an AtmCell component located under a DS3 or E3 component with mapping = PLCP, the LCD defect is directly derived from the PLCP LOF defect. If LCD defects are intermittently occurring, the LCD defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle The component under which is located the AtmCell component goes into an operational state of disabled until the LCD alarm condition is cleared. The condition is cleared after the LCD defect has not been reported for a period of 10 seconds +/- 0.5 seconds. The lcdAlarm attribute is always set to off when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.11.1.1
lpSonetPathCellStatsTableThis group contains the Statistics attribute for the AtmCell component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpSonetPathCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.12
lpSonetPathCellStatsEntryAn entry in the lpSonetPathCellStatsTable.
LpSonetPathCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.12.1
lpSonetPathCellUncorrectableHecErrorsThis attribute indicates the number of uncorrectable ATM cell header errors that have been detected. Counting of uncorrectableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.12.1.1
lpSonetPathCellSevErroredSecThis attribute indicates the total number of ATM Cell Severely Errored Seconds (SESs) that have been counted. In direct mapping mode, an ATM Cell SES is declared for second intervals containing one or more Out of Cell Delineation (OCD) defects. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected. In PLCP mapping mode, an ATM Cell SES is declared for second intervals containing one or more PLCP LOF defects. Counting of uncorrectableHeaderErrors (ucErr) and correctableHeaderErrors (cErr) is inhibited when the OCD defect is present.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.12.1.2
lpSonetPathCellReceiveCellUtilizationThis attribute is the ratio of the number of valid, assigned cells received on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.12.1.3
lpSonetPathCellTransmitCellUtilizationThis attribute is the ratio of the number of valid, assigned cells transmitted on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.12.1.4
lpSonetPathCellCorrectableHeaderErrorsThis attribute indicates the number of correctable ATM cell header errors that have been detected and corrected. Counting of correctableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detectedro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.2.12.1.5
lpSonetPathProvTableThis group contains all of the provisioning data for a Sonet/Sdh Path component.
SEQUENCE OF LpSonetPathProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.10
lpSonetPathProvEntryAn entry in the lpSonetPathProvTable.
LpSonetPathProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.10.1
lpSonetPathApplicationFramerNameThis attribute defines the link to the software stack. It defines which application is running on top of the Path component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.14.2.10.1.1
lpSonetPathCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpSonetPathCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.11
lpSonetPathCidDataEntryAn entry in the lpSonetPathCidDataTable.
LpSonetPathCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.11.1
lpSonetPathCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.14.2.11.1.1
lpSonetPathStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpSonetPathStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12
lpSonetPathStateEntryAn entry in the lpSonetPathStateTable.
LpSonetPathStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1
lpSonetPathAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.1
lpSonetPathOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.2
lpSonetPathUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.3
lpSonetPathAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.4
lpSonetPathProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.5
lpSonetPathControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.6
lpSonetPathAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.7
lpSonetPathStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.8
lpSonetPathUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.12.1.9
lpSonetPathIfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpSonetPathIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.13
lpSonetPathIfEntryEntryAn entry in the lpSonetPathIfEntryTable.
LpSonetPathIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.13.1
lpSonetPathIfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.13.1.1
lpSonetPathIfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.14.2.13.1.2
lpSonetPathOperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpSonetPathOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.14
lpSonetPathOperStatusEntryAn entry in the lpSonetPathOperStatusTable.
LpSonetPathOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.14.1
lpSonetPathSnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.14.1.1
lpSonetPathOperTableThis group contains the common operational data for Path component.
SEQUENCE OF LpSonetPathOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.15
lpSonetPathOperEntryAn entry in the lpSonetPathOperTable.
LpSonetPathOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.15.1
lpSonetPathLopAlarmThis attribute displays whether a Loss Of Pointer (LOP) alarm state has been entered. An LOP alarm state is entered when LOP defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. An LOP defect occurs when no valid SPE or VC pointer was received in 8 contiguous frames. If the LOP defects are intermittently occurring, the LOP defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Path component goes into an operational state of disabled until the LOP alarm condition is cleared. The condition is cleared when no more invalid pointer has been reported for 10 seconds +/- 0.5 seconds. The lopAlarm attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.15.1.1
lpSonetPathRxAisAlarmThis attribute displays whether an Path Alarm Indication Signal (P- AIS) alarm state has been entered. An P-AIS alarm state is entered when P-AIS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The P-AIS defect is the occurrence of the P-AIS signal in three contiguous valid STS or STM frames (all one's in bytes H1 and H2). If the P-AIS defects are intermittently occurring, the P-AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Path component goes into an operational state of disabled until the P-AIS alarm condition is cleared. The condition is cleared after no P-AIS defect has been detected for 10 seconds +/- 0.5 seconds. The rxAisAlarm attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.15.1.2
lpSonetPathRxRfiAlarmThis attribute displays whether the Path Remote Failure Indication (P-RFI) alarm state has been entered. An P-RFI alarm state is entered when Path Remote Defect Indicator (P-RDI) defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The P-RDI defect is the occurrence of the P-RDI signal in five contiguous valid STS or STM frames (bit 5 of the G1 byte set to 1). If the P-RDI defects are intermittently occurring, the P-RDI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10)with all measurements based on a 200 ms polling cycle. The Path component goes into an operational state of disabled until the P-RFI alarm condition is cleared. The condition is cleared after no P-RDI defect has been detected for 10 seconds +/- 0.5 seconds. The rxRfiAlarm attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.15.1.3
lpSonetPathSignalLabelMismatchThis attribute displays whether the Path Signal Label Mismatch (P- SLM) failure condition has been entered. An P-SLM failure condition is entered when P-SLM defects have been observed and accumulated for period of 2.5 seconds +/- 0.5 seconds. An P-SLM defect occurs when detecting an unexpected path signal label. The expected Path signal labels are 'Mapping for ATM' or 'Equipped - Non Specific Payload'. If the P-SLM defects are intermittently occurring, the P-SLM defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Path component goes into an operational state of disabled until the Path Signal Label Mismatch failure condition is cleared. The condition is cleared when an expected path signal label is received for 10 seconds +/- 0.5 seconds. The signalLabelMismatch attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.15.1.4
lpSonetPathTxAisThis attribute displays whether the Path Alarm Indication Signal (P- AIS) signal is being transmitted on the path. The P-AIS signal is transmitted when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.15.1.5
lpSonetPathTxRdiThis attribute displays whether the Path Remote Defect Indicator (P-RDI) signal is being transmitted over the path signal. The P-RDI signal is transmitted over the outgoing line upon detection of LOP, P-AIS or the occurrence of the LCD state. This attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.2.15.1.6
lpSonetPathStatsTableThis group contains the statistics data for a Sonet/Sdh Path component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpSonetPathStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16
lpSonetPathStatsEntryAn entry in the lpSonetPathStatsTable.
LpSonetPathStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1
lpSonetPathPathErrorFreeSecThis attribute indicates the number of seconds that the Sonet/Sdh Path component has been in an near-end error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.1
lpSonetPathPathCodeViolationsThis attribute indicates the total number of Path Code Violations (PCVs) detected. Each PCV corresponds to a path BIP-8 error. PCV counting is inhibited over second intervals where a Path Severely Errored Second (PSES) is counted. Counting of PCVs is also inhibited over second intervals where a Path Unavailable Second (PUAS) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.2
lpSonetPathPathErroredSecThis attribute indicates the total number of Path Errored Seconds (PESs) that have been counted. A PES is declared for second intervals containing one or more PCVs or one or more LOP or path AIS defects. Counting of PES is inhibited when PUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.3
lpSonetPathPathSevErroredSecThis attribute indicates the total number of Path Severely Errored Seconds (PSESs) that have been counted. A PSES is declared for second intervals containing more than x PCVs or one or more LOP or path AIS defects. The value of x is 2400 for a 155 Mbits/sec interface. Counting of PSES is inhibited when PUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.4
lpSonetPathPathAisLopSecThis attribute indicates the total number of path AIS and LOP Seconds (PALSs). A PALS is declared for second intervals containing one or more path AIS or LOP defects. Counting of PALS is inhibited when PUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.5
lpSonetPathPathUnavailSecThis attribute indicates the total number of one second intervals for which the STS/STM path is unavailable. The path becomes unavailable at the onset of 10 consecutive PSESs. The 10 PSESs are included in the unavailable time. Once unavailable, the path becomes available at the onset of 10 contiguous seconds with no PSES. The 10 seconds with no PSES are excluded from the unavailable time. For second intervals where a Path Unavailable Second (PUAS) is counted, counting of PCV, PES, PSES and PALS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.6
lpSonetPathPathFailuresThis attribute indicates the total number of times that a path failure (LOP, P-AIS or Path Signal Label Mismatch failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.7
lpSonetPathFarEndPathErrorFreeSecThis attribute indicates the number of seconds that the Sonet/Sdh Path component has been in an far-end error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.8
lpSonetPathFarEndPathCodeViolationsThis attribute indicates the total number of Far-End Path Code Violations (FEPCVs) detected. Each FEPCV corresponds to a path FEBE. FEPCV counting is inhibited over second intervals where a Far-End Path Severely Errored Second (FEPSES) is counted. Counting of PCVs is also inhibited over second intervals where a Far-End Path Unavailable Second (FEPUAS) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.9
lpSonetPathFarEndPathErroredSecThis attribute indicates the total number of Far-End Path Errored Seconds (FEPESs) that have been counted. A FEPES is declared for second intervals containing one or more FEPCVs or one or more path RDI (P-RDI) defects. Counting of FEPES is inhibited when FEPUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.10
lpSonetPathFarEndPathSevErroredSecThis attribute indicates the total number of Far-End Path Severely Errored Seconds (FEPSESs) that have been counted. A FEPSES is declared for second intervals containing more than x FEPCVs or one or more P-RDI defects. The value of x is 2400 for a 155 Mbits/ sec interface. Counting of FEPSESs is inhibited when FEPUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.11
lpSonetPathFarEndPathAisLopSecThis attribute indicates the total number of Far-End Path AIS and LOP Seconds (FEPALSs). A FEPALS is declared for second intervals containing one or more P-RDI defects. Counting of FEPALS is inhibited when FEPUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.12
lpSonetPathFarEndPathUnavailSecThis attribute indicates the total number of one second intervals for which the STS/STM far-end path is unavailable. The far-end path becomes unavailable at the onset of 10 consecutive FEPSESs. The 10 FEPSESs are included in the unavailable time. Once unavailable, the far-end path becomes available at the onset of 10 contiguous seconds with no FEPSES. The 10 seconds with no FEPSES are excluded from the unavailable time. For second intervals where a Far-End Path Unavailable Second (FEPUAS) is counted, counting of FEPCV, FEPES, FEPSES and FEPALS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.13
lpSonetPathFarEndPathFailuresThis attribute indicates the total number of times that a STS/STM far-end path failure (P-RFI failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.2.16.1.14
lpSonetTest
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.14.3
lpSonetTestRowStatusTableThis entry controls the addition and deletion of lpSonetTest components.
SEQUENCE OF LpSonetTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.3.1
lpSonetTestRowStatusEntryA single entry in the table represents a single lpSonetTest component.
LpSonetTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.3.1.1
lpSonetTestRowStatusThis variable is used as the basis for SNMP naming of lpSonetTest components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.3.1.1.1
lpSonetTestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.3.1.1.2
lpSonetTestStorageTypeThis variable represents the storage type value for the lpSonetTest tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.14.3.1.1.4
lpSonetTestIndexThis variable represents the index for the lpSonetTest tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.14.3.1.1.10
lpSonetTestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpSonetTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.3.10
lpSonetTestStateEntryAn entry in the lpSonetTestStateTable.
LpSonetTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.3.10.1
lpSonetTestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.3.10.1.1
lpSonetTestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.3.10.1.2
lpSonetTestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.3.10.1.3
lpSonetTestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpSonetTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11
lpSonetTestSetupEntryAn entry in the lpSonetTestSetupTable.
LpSonetTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1
lpSonetTestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1.1
lpSonetTestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1.2
lpSonetTestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1.3
lpSonetTestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1.4
lpSonetTestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1.5
lpSonetTestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1.6
lpSonetTestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1.7
lpSonetTestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.14.3.11.1.8
lpSonetTestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpSonetTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12
lpSonetTestResultsEntryAn entry in the lpSonetTestResultsTable.
LpSonetTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1
lpSonetTestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.1
lpSonetTestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.2
lpSonetTestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.3
lpSonetTestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.4
lpSonetTestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.5
lpSonetTestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.6
lpSonetTestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.7
lpSonetTestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.8
lpSonetTestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.9
lpSonetTestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.10
lpSonetTestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.14.3.12.1.11
lpSonetProvTableThis group contains all of the provisioning data for a Sonet or Sdh component.
SEQUENCE OF LpSonetProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.10
lpSonetProvEntryAn entry in the lpSonetProvTable.
LpSonetProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.10.1
lpSonetClockingSourceThis attribute defines the type of clocking source used for synchronizing the OC-3 transmit clock: local means direct use of the local clock oscillator at its centre frequency; line means the use of a signal phase-locked to the incoming OC-3 line rate; module means the use of a signal phase-locked to the CP reference clock. When adding a Sonet/Sdh component, the clockingSource attribute is set to module if the NetworkSynchronization component has been added and is set to local otherwise. Note that the multiport OC-3 cell-based cards has one common clock source for each of the three ports when either the clocking source local or module is selected. For this reason, it is not allowed to have at the same time the clockingSource attribute set to local on one port and module on another port. Furthermore, the clockingSource attribute cannot be set to module if the NetworkSynchronization component has not been added.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.10.1.1
lpSonetCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpSonetCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.11
lpSonetCidDataEntryAn entry in the lpSonetCidDataTable.
LpSonetCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.11.1
lpSonetCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.14.11.1.1
lpSonetAdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpSonetAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.12
lpSonetAdminInfoEntryAn entry in the lpSonetAdminInfoTable.
LpSonetAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.12.1
lpSonetVendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.14.12.1.1
lpSonetCommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.14.12.1.2
lpSonetIfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpSonetIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.13
lpSonetIfEntryEntryAn entry in the lpSonetIfEntryTable.
LpSonetIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.13.1
lpSonetIfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.13.1.1
lpSonetIfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.14.13.1.2
lpSonetOperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpSonetOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.14
lpSonetOperStatusEntryAn entry in the lpSonetOperStatusTable.
LpSonetOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.14.1
lpSonetSnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.14.1.1
lpSonetStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpSonetStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.15
lpSonetStateEntryAn entry in the lpSonetStateTable.
LpSonetStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1
lpSonetAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.1
lpSonetOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.2
lpSonetUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.3
lpSonetAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.4
lpSonetProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.5
lpSonetControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.6
lpSonetAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.7
lpSonetStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.8
lpSonetUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.15.1.9
lpSonetOperTableThis group contains the common operational data for Sonet or Sdh component.
SEQUENCE OF LpSonetOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.16
lpSonetOperEntryAn entry in the lpSonetOperTable.
LpSonetOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.16.1
lpSonetLosAlarmThis attribute indicates whether a Loss Of Signal (LOS) alarm state has been entered. An LOS alarm state is entered when LOS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds, or if an LOS defect is present when the criteria for LOF failure declaration have been met. A LOS defect is declared when 20+/-3 us of all-zeros pattern is detected. The LOS defect is cleared when two valid framing words are detected and no Loss Of Signal condition is detected during an interval of 20+/-3 us. If the LOS defects are intermittently occurring, the LOS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Sonet/Sdh component goes into an operational state of disabled until the LOS alarm condition is cleared. The LOS alarm state is cleared after LOS defects have been absent for a period of 10 seconds +/- 0.5 seconds. The losAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.16.1.1
lpSonetLofAlarmThis attribute displays whether a Loss Of Frame (LOF) alarm state has been entered. An LOF alarm state is entered when LOF defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds, except when an LOS defect or failure is present. An LOF defect is detected when getting contiguous errored frame alignment for at least 3 msec. If the LOF defects are intermittently occurring, the LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Sonet/Sdh component goes into an operational state of disabled until the LOF alarm condition is cleared. The condition is cleared when framing has been achieved for a period of 10 seconds +/- 0.5 seconds. The lofAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.16.1.2
lpSonetRxAisAlarmThis attribute displays whether a Line Alarm Indication Signal (L- AIS) alarm state has been entered. An L-AIS alarm state is entered when L-AIS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The L-AIS defect is the occurrence of the L-AIS signal in five contiguous STS (STM) frames (111 pattern in bits 6,7, and 8 of the K2 bytes). If the L-AIS defects are intermittently occurring, the L-AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Sonet/Sdh component goes into an operational state of disabled until the L-AIS alarm condition is cleared. The condition is cleared after not detecting the L-AIS signal for a period of 10 seconds +/- 0.5 seconds. The rxAisAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.16.1.3
lpSonetRxRfiAlarmThis attribute displays whether a Line Remote Failure Indication (LRFI) alarm state has been entered. An L-RFI alarm state is entered when Line Remote Failure Indication (L-RDI) defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The L-RDI defect is the occurrence of the L-RDI signal in five contiguous valid STS (STM) frame (110 pattern in bits 6,7, and 8 of the K2 bytes). If the L-RDI defects are intermittently occurring, the L-RDI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Sonet/Sdh component goes into an operational state of disabled until the L-RFI alarm condition is cleared. The condition is cleared after not detecting the L-RDI signal for a period of 10 seconds +/- 0.5 seconds. The rxRfiAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.16.1.4
lpSonetTxAisThis attribute displays whether the Line Alarm Indication Signal (L- AIS) signal is being transmitted on the outgoing line. This signal is transmitted when the Sonet/Sdh is locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.16.1.5
lpSonetTxRdiThis attribute displays whether the Line Remote Defect Indicator (L-RDI) signal is being transmitted over the OC-3 line. The L-RDI signal is transmitted upon the detection of the LOS, LOF or L-AIS defect. This attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.16.1.6
lpSonetUnusableTxClockRefAlarmThis attribute displays whether an Unusable Transmit Clock Reference (UTCR) alarm state has been entered. A UTCR alarm state is entered when a Sonet/Sdh port provisioned to act as a transmit clock reference has received the code 'do not use for synchronization' in the S1 byte (in the SONET/ SDH line overhead) for 2.5 +/- 0.5 seconds. The condition is cleared after not detecting the 'do not use for synchronization' code for a period of 10 +/- 0.5 seconds or when the port is no longer provisioned to act as a transmit clock reference. A port is acting as a transmit clock reference if it is provisioned with a) a clockingSource of line, or b) it has been provisioned as a primaryReference, secondaryReference or tertiaryReference in the NetworkSynchronization component. The unusableTxClockRefAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.14.16.1.7
lpSonetStatsTableThis group contains the statistics data for a Sonet or Sdh component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpSonetStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.17
lpSonetStatsEntryAn entry in the lpSonetStatsTable.
LpSonetStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1
lpSonetRunningTimeThis attribute indicates the total number of seconds since the Sonet/ Sdh component has been activated and been in unlocked state. All the other error counts that follow can be updated when this count is active.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.1
lpSonetErrorFreeSecThis attribute indicates the number of seconds that the Sonet/Sdh component has been in an near-end error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.2
lpSonetSectCodeViolationsThis attribute indicates the total number of Section Code Violations (SCVs) detected. A SCV corresponds to section BIP-8 error. SCV counting is inhibited for second intervals where a Section Severely Errored Second (SSES) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.3
lpSonetSectErroredSecThis attribute indicates the total number of Section Errored Seconds (SESs) that have been counted. A SES is declared for second intervals containing one or more SCVs or one or more Loss Of Signal (LOS) or Severely Errored Frame (SEF) defects. A SEF defect is the occurrence of 4 contiguous errored STS or STM frame alignment words.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.4
lpSonetSectSevErroredSecThis attribute indicates the total number of Section Severely Errored Seconds (SSESs) that have been counted. A SSES is declared for second intervals containing more than x SCVs or one or more LOS or SEF defects. The value of x is 155 for a 155 Mbits/sec interface.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.5
lpSonetSectLosSecThis attribute indicates the total number of Section LOS Seconds (SLOSSs) that have been counted. A SLOSS is declared for second intervals containing one or more LOS defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.6
lpSonetSectSevErroredFrmSecThis attribute indicates the total number of Section Severely Errored Frame Seconds (SSEFSs) that have been counted. A SSEFS is declared for second intervals containing one or more SEF defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.7
lpSonetSectFailuresThis attribute indicates the total number of times that a section failure (LOS or LOF failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.8
lpSonetLineCodeViolationsThis attribute indicates the total number of Line Code Violations (LCVs) detected. A LCV corresponds to a line BIP-24 errors. LCV counting is inhibited for second intervals where a Line Severely Errored Second (LSES) is counted. Counting of LCVs is also inhibited over second intervals where a Line Unavailable Second (LUAS) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.9
lpSonetLineErroredSecThis attribute indicates the total number of Line Errored Seconds (LESs) that have been counted. A LES is declared for second intervals containing one or more LCVs or one or more line AIS defects. Counting of LES is inhibited over second intervals where a LUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.10
lpSonetLineSevErroredSecThis attribute indicates the total number of Line Severely Errored Seconds (LSESs) that have been counted. A LSES is declared for second intervals containing more than x LCVs or one or more L- AIS defects. The value of x is 154 for a 155 Mbits/sec interface. Counting of LSES is inhibited over second intervals where a LUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.11
lpSonetLineAisSecThis attribute indicates the total number of Line AIS Seconds (LAISSs) that have been counted. A LAISS is declared for second intervals containing one or more L-AIS defects. Counting of LAISS is inhibited over second intervals where a LUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.12
lpSonetLineUnavailSecThis attribute indicates the total number of one second intervals for which the STS line is unavailable. The STS line becomes unavailable at the onset of 10 consecutive LSESs. The 10 LSESs are included in the unavailable time. Once unavailable, the STS line becomes available at the onset of 10 contiguous seconds with no LSES. The 10 seconds with no LSES are excluded from the unavailable time. For second intervals where a Line Unavailable Second (LUAS) is counted, counting of LCV, LES, LSES and LAISS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.13
lpSonetLineFailuresThis attribute indicates the total number of times that a line failure (L-AIS failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.14
lpSonetFarEndLineErrorFreeSecThis attribute indicates the number of seconds that the Sonet/Sdh component has been in an far-end error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.15
lpSonetFarEndLineCodeViolationsThis attribute indicates the total number of line FEBE detected from the incoming line. The counting of line FEBE is inhibited for second intervals where a Far-End Line Severely Errored Second (FELSES) is counted. Counting of FELCVs is also inhibited over second intervals where a Far-End Line Unavailable Second (FELUAS) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.16
lpSonetFarEndLineErroredSecThis attribute indicates the total number of Far-End Line Errored Seconds (FELESs) that have been counted. A FELES is declared for second intervals containing one or more Far-End Line CVs (FELCVs) or one or more L-RDI defects. Counting of FELES is inhibited over second intervals where a FELUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.17
lpSonetFarEndLineSevErroredSecThis attribute indicates the total number of Far-End Line Severely Errored Seconds (FELSESs) that have been counted. A FELSES is declared for second intervals containing more than x FELCVs or one or more L-RDI defects. The value of x is 154 for a 155 Mbits/ sec interface. Counting of FELSES is inhibited over second intervals where a FELUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.18
lpSonetFarEndLineAisSecThis attribute indicates the total number of Far-End Line AIS Seconds (FELAISSs) that have been counted. A FELAISS is declared for second intervals one or more L-RDI defects. Counting of FELAISS is inhibited over second intervals where a FELUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.19
lpSonetFarEndLineUnavailSecThis attribute indicates the total number of one second intervals for which the STS far-end line is unavailable. The STS far-end line becomes unavailable at the onset of 10 consecutive FELSESs. The 10 FELSESs are included in the unavailable time. Once unavailable, the STS far-end line becomes available at the onset of 10 contiguous seconds with no FELSES. The 10 seconds with no FELSES are excluded from the unavailable time. For second intervals where a Far-End Line Unavailable Second (FELUAS) is counted, counting of FELCV, FELES, FELSES and FELAISS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.20
lpSonetFarEndLineFailuresThis attribute indicates the total number of times that a far-end line failure (L-RFI failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.14.17.1.21
lpSdh
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.15
lpSdhRowStatusTableThis entry controls the addition and deletion of lpSdh components.
SEQUENCE OF LpSdhRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.1
lpSdhRowStatusEntryA single entry in the table represents a single lpSdh component.
LpSdhRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.1.1
lpSdhRowStatusThis variable is used as the basis for SNMP naming of lpSdh components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.1.1.1
lpSdhComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.1.1.2
lpSdhStorageTypeThis variable represents the storage type value for the lpSdh tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.1.1.4
lpSdhIndexThis variable represents the index for the lpSdh tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.15.1.1.10
lpSdhPath
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.15.2
lpSdhPathRowStatusTableThis entry controls the addition and deletion of lpSdhPath components.
SEQUENCE OF LpSdhPathRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.1
lpSdhPathRowStatusEntryA single entry in the table represents a single lpSdhPath component.
LpSdhPathRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.1.1
lpSdhPathRowStatusThis variable is used as the basis for SNMP naming of lpSdhPath components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.2.1.1.1
lpSdhPathComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.2.1.1.2
lpSdhPathStorageTypeThis variable represents the storage type value for the lpSdhPath tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.2.1.1.4
lpSdhPathIndexThis variable represents the index for the lpSdhPath tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.1.1.10
lpSdhPathCell
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2
lpSdhPathCellRowStatusTableThis entry controls the addition and deletion of lpSdhPathCell components.
SEQUENCE OF LpSdhPathCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.1
lpSdhPathCellRowStatusEntryA single entry in the table represents a single lpSdhPathCell component.
LpSdhPathCellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.1.1
lpSdhPathCellRowStatusThis variable is used as the basis for SNMP naming of lpSdhPathCell components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.1.1.1
lpSdhPathCellComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.1.1.2
lpSdhPathCellStorageTypeThis variable represents the storage type value for the lpSdhPathCell tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.1.1.4
lpSdhPathCellIndexThis variable represents the index for the lpSdhPathCell tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.1.1.10
lpSdhPathCellProvTableThis group contains the provisioning attributes for the AtmCell component.
SEQUENCE OF LpSdhPathCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.10
lpSdhPathCellProvEntryAn entry in the lpSdhPathCellProvTable.
LpSdhPathCellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.10.1
lpSdhPathCellAlarmActDelayThis attribute defines the time during which a Loss of Cell Delineation (LCD) defect should be observed before declaring an LCD alarm (alarm 70115501). The time is specified in milliseconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.10.1.1
lpSdhPathCellScrambleCellPayloadCell scrambling, as defined by ITU-T Recommendation I.432., can provide a solution to the problem of transmission equipment which is sensitive to certain bit patterns in the ATM cell payload. This attribute controls whether or not the cell payload is scrambled. It defaults to off for DS1 interfaces, and on for all other interfaces. Note that this setting must be the same at both ends of the link.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.10.1.2
lpSdhPathCellCorrectSingleBitHeaderErrorsThis attribute specifies whether the port corrects single bit errors detected in the headers of received cells. If single bit errors are corrected, the affected cells are passed up to the ATM layer according to normal operation. If single bit errors are not corrected, these errored cells are discarded by the physical layer. Note that cells containing multiple bit errors in their headers are always discarded. Single bit HEC error correction must remain off for the following card types: 3pDS1Atm, 8pDS1Atm, 3pE1Atm, 8pE1Atm, 2pJ6MAtm, 3pDS3Atm, and 3pE3Atm.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.10.1.3
lpSdhPathCellOperTableThis group contains the common operational attributes for the AtmCell component.
SEQUENCE OF LpSdhPathCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.11
lpSdhPathCellOperEntryAn entry in the lpSdhPathCellOperTable.
LpSdhPathCellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.11.1
lpSdhPathCellLcdAlarmThis attribute displays whether the Loss of Cell Delineation (LCD) failure alarm state has been entered. This state is entered when LCD defects have been observed and accumulated for a period of time specified through the alarmActDelay attribute. In ATM cell direct mapping mode, an LCD defect occurs when Out of Cell Delineation (OCD) anomaly persists for x milliseconds, and disappears when the Out of Cell Delineation (OCD) is absent for x msec. An OCD anomaly occurs when 7 consecutive incorrect HECs have been detected. An OCD anomaly terminates when 6 consecutive correct HECs have been detected. For an AtmCell component located under a DS3 or E3 component with mapping = PLCP, the LCD defect is directly derived from the PLCP LOF defect. If LCD defects are intermittently occurring, the LCD defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle The component under which is located the AtmCell component goes into an operational state of disabled until the LCD alarm condition is cleared. The condition is cleared after the LCD defect has not been reported for a period of 10 seconds +/- 0.5 seconds. The lcdAlarm attribute is always set to off when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.11.1.1
lpSdhPathCellStatsTableThis group contains the Statistics attribute for the AtmCell component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpSdhPathCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.12
lpSdhPathCellStatsEntryAn entry in the lpSdhPathCellStatsTable.
LpSdhPathCellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.12.1
lpSdhPathCellUncorrectableHecErrorsThis attribute indicates the number of uncorrectable ATM cell header errors that have been detected. Counting of uncorrectableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.12.1.1
lpSdhPathCellSevErroredSecThis attribute indicates the total number of ATM Cell Severely Errored Seconds (SESs) that have been counted. In direct mapping mode, an ATM Cell SES is declared for second intervals containing one or more Out of Cell Delineation (OCD) defects. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected. In PLCP mapping mode, an ATM Cell SES is declared for second intervals containing one or more PLCP LOF defects. Counting of uncorrectableHeaderErrors (ucErr) and correctableHeaderErrors (cErr) is inhibited when the OCD defect is present.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.12.1.2
lpSdhPathCellReceiveCellUtilizationThis attribute is the ratio of the number of valid, assigned cells received on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.12.1.3
lpSdhPathCellTransmitCellUtilizationThis attribute is the ratio of the number of valid, assigned cells transmitted on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.12.1.4
lpSdhPathCellCorrectableHeaderErrorsThis attribute indicates the number of correctable ATM cell header errors that have been detected and corrected. Counting of correctableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detectedro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.2.12.1.5
lpSdhPathProvTableThis group contains all of the provisioning data for a Sonet/Sdh Path component.
SEQUENCE OF LpSdhPathProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.10
lpSdhPathProvEntryAn entry in the lpSdhPathProvTable.
LpSdhPathProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.10.1
lpSdhPathApplicationFramerNameThis attribute defines the link to the software stack. It defines which application is running on top of the Path component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.15.2.10.1.1
lpSdhPathCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpSdhPathCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.11
lpSdhPathCidDataEntryAn entry in the lpSdhPathCidDataTable.
LpSdhPathCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.11.1
lpSdhPathCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.15.2.11.1.1
lpSdhPathStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpSdhPathStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12
lpSdhPathStateEntryAn entry in the lpSdhPathStateTable.
LpSdhPathStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1
lpSdhPathAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.1
lpSdhPathOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.2
lpSdhPathUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.3
lpSdhPathAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.4
lpSdhPathProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.5
lpSdhPathControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.6
lpSdhPathAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.7
lpSdhPathStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.8
lpSdhPathUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.12.1.9
lpSdhPathIfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpSdhPathIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.13
lpSdhPathIfEntryEntryAn entry in the lpSdhPathIfEntryTable.
LpSdhPathIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.13.1
lpSdhPathIfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.13.1.1
lpSdhPathIfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.15.2.13.1.2
lpSdhPathOperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpSdhPathOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.14
lpSdhPathOperStatusEntryAn entry in the lpSdhPathOperStatusTable.
LpSdhPathOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.14.1
lpSdhPathSnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.14.1.1
lpSdhPathOperTableThis group contains the common operational data for Path component.
SEQUENCE OF LpSdhPathOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.15
lpSdhPathOperEntryAn entry in the lpSdhPathOperTable.
LpSdhPathOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.15.1
lpSdhPathLopAlarmThis attribute displays whether a Loss Of Pointer (LOP) alarm state has been entered. An LOP alarm state is entered when LOP defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. An LOP defect occurs when no valid SPE or VC pointer was received in 8 contiguous frames. If the LOP defects are intermittently occurring, the LOP defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Path component goes into an operational state of disabled until the LOP alarm condition is cleared. The condition is cleared when no more invalid pointer has been reported for 10 seconds +/- 0.5 seconds. The lopAlarm attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.15.1.1
lpSdhPathRxAisAlarmThis attribute displays whether an Path Alarm Indication Signal (P- AIS) alarm state has been entered. An P-AIS alarm state is entered when P-AIS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The P-AIS defect is the occurrence of the P-AIS signal in three contiguous valid STS or STM frames (all one's in bytes H1 and H2). If the P-AIS defects are intermittently occurring, the P-AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Path component goes into an operational state of disabled until the P-AIS alarm condition is cleared. The condition is cleared after no P-AIS defect has been detected for 10 seconds +/- 0.5 seconds. The rxAisAlarm attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.15.1.2
lpSdhPathRxRfiAlarmThis attribute displays whether the Path Remote Failure Indication (P-RFI) alarm state has been entered. An P-RFI alarm state is entered when Path Remote Defect Indicator (P-RDI) defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The P-RDI defect is the occurrence of the P-RDI signal in five contiguous valid STS or STM frames (bit 5 of the G1 byte set to 1). If the P-RDI defects are intermittently occurring, the P-RDI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10)with all measurements based on a 200 ms polling cycle. The Path component goes into an operational state of disabled until the P-RFI alarm condition is cleared. The condition is cleared after no P-RDI defect has been detected for 10 seconds +/- 0.5 seconds. The rxRfiAlarm attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.15.1.3
lpSdhPathSignalLabelMismatchThis attribute displays whether the Path Signal Label Mismatch (P- SLM) failure condition has been entered. An P-SLM failure condition is entered when P-SLM defects have been observed and accumulated for period of 2.5 seconds +/- 0.5 seconds. An P-SLM defect occurs when detecting an unexpected path signal label. The expected Path signal labels are 'Mapping for ATM' or 'Equipped - Non Specific Payload'. If the P-SLM defects are intermittently occurring, the P-SLM defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Path component goes into an operational state of disabled until the Path Signal Label Mismatch failure condition is cleared. The condition is cleared when an expected path signal label is received for 10 seconds +/- 0.5 seconds. The signalLabelMismatch attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.15.1.4
lpSdhPathTxAisThis attribute displays whether the Path Alarm Indication Signal (P- AIS) signal is being transmitted on the path. The P-AIS signal is transmitted when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.15.1.5
lpSdhPathTxRdiThis attribute displays whether the Path Remote Defect Indicator (P-RDI) signal is being transmitted over the path signal. The P-RDI signal is transmitted over the outgoing line upon detection of LOP, P-AIS or the occurrence of the LCD state. This attribute is always set to off when the Path component has been locked and left offline by the operator or when the Path component has been suspended since the parent component has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.2.15.1.6
lpSdhPathStatsTableThis group contains the statistics data for a Sonet/Sdh Path component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpSdhPathStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16
lpSdhPathStatsEntryAn entry in the lpSdhPathStatsTable.
LpSdhPathStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1
lpSdhPathPathErrorFreeSecThis attribute indicates the number of seconds that the Sonet/Sdh Path component has been in an near-end error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.1
lpSdhPathPathCodeViolationsThis attribute indicates the total number of Path Code Violations (PCVs) detected. Each PCV corresponds to a path BIP-8 error. PCV counting is inhibited over second intervals where a Path Severely Errored Second (PSES) is counted. Counting of PCVs is also inhibited over second intervals where a Path Unavailable Second (PUAS) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.2
lpSdhPathPathErroredSecThis attribute indicates the total number of Path Errored Seconds (PESs) that have been counted. A PES is declared for second intervals containing one or more PCVs or one or more LOP or path AIS defects. Counting of PES is inhibited when PUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.3
lpSdhPathPathSevErroredSecThis attribute indicates the total number of Path Severely Errored Seconds (PSESs) that have been counted. A PSES is declared for second intervals containing more than x PCVs or one or more LOP or path AIS defects. The value of x is 2400 for a 155 Mbits/sec interface. Counting of PSES is inhibited when PUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.4
lpSdhPathPathAisLopSecThis attribute indicates the total number of path AIS and LOP Seconds (PALSs). A PALS is declared for second intervals containing one or more path AIS or LOP defects. Counting of PALS is inhibited when PUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.5
lpSdhPathPathUnavailSecThis attribute indicates the total number of one second intervals for which the STS/STM path is unavailable. The path becomes unavailable at the onset of 10 consecutive PSESs. The 10 PSESs are included in the unavailable time. Once unavailable, the path becomes available at the onset of 10 contiguous seconds with no PSES. The 10 seconds with no PSES are excluded from the unavailable time. For second intervals where a Path Unavailable Second (PUAS) is counted, counting of PCV, PES, PSES and PALS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.6
lpSdhPathPathFailuresThis attribute indicates the total number of times that a path failure (LOP, P-AIS or Path Signal Label Mismatch failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.7
lpSdhPathFarEndPathErrorFreeSecThis attribute indicates the number of seconds that the Sonet/Sdh Path component has been in an far-end error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.8
lpSdhPathFarEndPathCodeViolationsThis attribute indicates the total number of Far-End Path Code Violations (FEPCVs) detected. Each FEPCV corresponds to a path FEBE. FEPCV counting is inhibited over second intervals where a Far-End Path Severely Errored Second (FEPSES) is counted. Counting of PCVs is also inhibited over second intervals where a Far-End Path Unavailable Second (FEPUAS) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.9
lpSdhPathFarEndPathErroredSecThis attribute indicates the total number of Far-End Path Errored Seconds (FEPESs) that have been counted. A FEPES is declared for second intervals containing one or more FEPCVs or one or more path RDI (P-RDI) defects. Counting of FEPES is inhibited when FEPUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.10
lpSdhPathFarEndPathSevErroredSecThis attribute indicates the total number of Far-End Path Severely Errored Seconds (FEPSESs) that have been counted. A FEPSES is declared for second intervals containing more than x FEPCVs or one or more P-RDI defects. The value of x is 2400 for a 155 Mbits/ sec interface. Counting of FEPSESs is inhibited when FEPUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.11
lpSdhPathFarEndPathAisLopSecThis attribute indicates the total number of Far-End Path AIS and LOP Seconds (FEPALSs). A FEPALS is declared for second intervals containing one or more P-RDI defects. Counting of FEPALS is inhibited when FEPUAS is counted over the monitored second.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.12
lpSdhPathFarEndPathUnavailSecThis attribute indicates the total number of one second intervals for which the STS/STM far-end path is unavailable. The far-end path becomes unavailable at the onset of 10 consecutive FEPSESs. The 10 FEPSESs are included in the unavailable time. Once unavailable, the far-end path becomes available at the onset of 10 contiguous seconds with no FEPSES. The 10 seconds with no FEPSES are excluded from the unavailable time. For second intervals where a Far-End Path Unavailable Second (FEPUAS) is counted, counting of FEPCV, FEPES, FEPSES and FEPALS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.13
lpSdhPathFarEndPathFailuresThis attribute indicates the total number of times that a STS/STM far-end path failure (P-RFI failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.2.16.1.14
lpSdhTest
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.15.3
lpSdhTestRowStatusTableThis entry controls the addition and deletion of lpSdhTest components.
SEQUENCE OF LpSdhTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.3.1
lpSdhTestRowStatusEntryA single entry in the table represents a single lpSdhTest component.
LpSdhTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.3.1.1
lpSdhTestRowStatusThis variable is used as the basis for SNMP naming of lpSdhTest components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.3.1.1.1
lpSdhTestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.3.1.1.2
lpSdhTestStorageTypeThis variable represents the storage type value for the lpSdhTest tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.15.3.1.1.4
lpSdhTestIndexThis variable represents the index for the lpSdhTest tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.15.3.1.1.10
lpSdhTestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpSdhTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.3.10
lpSdhTestStateEntryAn entry in the lpSdhTestStateTable.
LpSdhTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.3.10.1
lpSdhTestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.3.10.1.1
lpSdhTestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.3.10.1.2
lpSdhTestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.3.10.1.3
lpSdhTestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpSdhTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11
lpSdhTestSetupEntryAn entry in the lpSdhTestSetupTable.
LpSdhTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1
lpSdhTestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1.1
lpSdhTestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1.2
lpSdhTestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1.3
lpSdhTestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1.4
lpSdhTestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1.5
lpSdhTestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1.6
lpSdhTestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1.7
lpSdhTestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.15.3.11.1.8
lpSdhTestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpSdhTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12
lpSdhTestResultsEntryAn entry in the lpSdhTestResultsTable.
LpSdhTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1
lpSdhTestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.1
lpSdhTestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.2
lpSdhTestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.3
lpSdhTestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.4
lpSdhTestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.5
lpSdhTestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.6
lpSdhTestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.7
lpSdhTestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.8
lpSdhTestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.9
lpSdhTestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.10
lpSdhTestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.15.3.12.1.11
lpSdhProvTableThis group contains all of the provisioning data for a Sonet or Sdh component.
SEQUENCE OF LpSdhProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.10
lpSdhProvEntryAn entry in the lpSdhProvTable.
LpSdhProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.10.1
lpSdhClockingSourceThis attribute defines the type of clocking source used for synchronizing the OC-3 transmit clock: local means direct use of the local clock oscillator at its centre frequency; line means the use of a signal phase-locked to the incoming OC-3 line rate; module means the use of a signal phase-locked to the CP reference clock. When adding a Sonet/Sdh component, the clockingSource attribute is set to module if the NetworkSynchronization component has been added and is set to local otherwise. Note that the multiport OC-3 cell-based cards has one common clock source for each of the three ports when either the clocking source local or module is selected. For this reason, it is not allowed to have at the same time the clockingSource attribute set to local on one port and module on another port. Furthermore, the clockingSource attribute cannot be set to module if the NetworkSynchronization component has not been added.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.10.1.1
lpSdhCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpSdhCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.11
lpSdhCidDataEntryAn entry in the lpSdhCidDataTable.
LpSdhCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.11.1
lpSdhCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.15.11.1.1
lpSdhAdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpSdhAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.12
lpSdhAdminInfoEntryAn entry in the lpSdhAdminInfoTable.
LpSdhAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.12.1
lpSdhVendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.15.12.1.1
lpSdhCommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.15.12.1.2
lpSdhIfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpSdhIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.13
lpSdhIfEntryEntryAn entry in the lpSdhIfEntryTable.
LpSdhIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.13.1
lpSdhIfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.13.1.1
lpSdhIfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.15.13.1.2
lpSdhOperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpSdhOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.14
lpSdhOperStatusEntryAn entry in the lpSdhOperStatusTable.
LpSdhOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.14.1
lpSdhSnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.14.1.1
lpSdhStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpSdhStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.15
lpSdhStateEntryAn entry in the lpSdhStateTable.
LpSdhStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1
lpSdhAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.1
lpSdhOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.2
lpSdhUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.3
lpSdhAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.4
lpSdhProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.5
lpSdhControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.6
lpSdhAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.7
lpSdhStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.8
lpSdhUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.15.1.9
lpSdhOperTableThis group contains the common operational data for Sonet or Sdh component.
SEQUENCE OF LpSdhOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.16
lpSdhOperEntryAn entry in the lpSdhOperTable.
LpSdhOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.16.1
lpSdhLosAlarmThis attribute indicates whether a Loss Of Signal (LOS) alarm state has been entered. An LOS alarm state is entered when LOS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds, or if an LOS defect is present when the criteria for LOF failure declaration have been met. A LOS defect is declared when 20+/-3 us of all-zeros pattern is detected. The LOS defect is cleared when two valid framing words are detected and no Loss Of Signal condition is detected during an interval of 20+/-3 us. If the LOS defects are intermittently occurring, the LOS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Sonet/Sdh component goes into an operational state of disabled until the LOS alarm condition is cleared. The LOS alarm state is cleared after LOS defects have been absent for a period of 10 seconds +/- 0.5 seconds. The losAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.16.1.1
lpSdhLofAlarmThis attribute displays whether a Loss Of Frame (LOF) alarm state has been entered. An LOF alarm state is entered when LOF defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds, except when an LOS defect or failure is present. An LOF defect is detected when getting contiguous errored frame alignment for at least 3 msec. If the LOF defects are intermittently occurring, the LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Sonet/Sdh component goes into an operational state of disabled until the LOF alarm condition is cleared. The condition is cleared when framing has been achieved for a period of 10 seconds +/- 0.5 seconds. The lofAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.16.1.2
lpSdhRxAisAlarmThis attribute displays whether a Line Alarm Indication Signal (L- AIS) alarm state has been entered. An L-AIS alarm state is entered when L-AIS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The L-AIS defect is the occurrence of the L-AIS signal in five contiguous STS (STM) frames (111 pattern in bits 6,7, and 8 of the K2 bytes). If the L-AIS defects are intermittently occurring, the L-AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Sonet/Sdh component goes into an operational state of disabled until the L-AIS alarm condition is cleared. The condition is cleared after not detecting the L-AIS signal for a period of 10 seconds +/- 0.5 seconds. The rxAisAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.16.1.3
lpSdhRxRfiAlarmThis attribute displays whether a Line Remote Failure Indication (LRFI) alarm state has been entered. An L-RFI alarm state is entered when Line Remote Failure Indication (L-RDI) defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. The L-RDI defect is the occurrence of the L-RDI signal in five contiguous valid STS (STM) frame (110 pattern in bits 6,7, and 8 of the K2 bytes). If the L-RDI defects are intermittently occurring, the L-RDI defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The Sonet/Sdh component goes into an operational state of disabled until the L-RFI alarm condition is cleared. The condition is cleared after not detecting the L-RDI signal for a period of 10 seconds +/- 0.5 seconds. The rxRfiAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.16.1.4
lpSdhTxAisThis attribute displays whether the Line Alarm Indication Signal (L- AIS) signal is being transmitted on the outgoing line. This signal is transmitted when the Sonet/Sdh is locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.16.1.5
lpSdhTxRdiThis attribute displays whether the Line Remote Defect Indicator (L-RDI) signal is being transmitted over the OC-3 line. The L-RDI signal is transmitted upon the detection of the LOS, LOF or L-AIS defect. This attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.16.1.6
lpSdhUnusableTxClockRefAlarmThis attribute displays whether an Unusable Transmit Clock Reference (UTCR) alarm state has been entered. A UTCR alarm state is entered when a Sonet/Sdh port provisioned to act as a transmit clock reference has received the code 'do not use for synchronization' in the S1 byte (in the SONET/ SDH line overhead) for 2.5 +/- 0.5 seconds. The condition is cleared after not detecting the 'do not use for synchronization' code for a period of 10 +/- 0.5 seconds or when the port is no longer provisioned to act as a transmit clock reference. A port is acting as a transmit clock reference if it is provisioned with a) a clockingSource of line, or b) it has been provisioned as a primaryReference, secondaryReference or tertiaryReference in the NetworkSynchronization component. The unusableTxClockRefAlarm attribute is always set to off when the component has been locked and left offline.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.15.16.1.7
lpSdhStatsTableThis group contains the statistics data for a Sonet or Sdh component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpSdhStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.17
lpSdhStatsEntryAn entry in the lpSdhStatsTable.
LpSdhStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1
lpSdhRunningTimeThis attribute indicates the total number of seconds since the Sonet/ Sdh component has been activated and been in unlocked state. All the other error counts that follow can be updated when this count is active.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.1
lpSdhErrorFreeSecThis attribute indicates the number of seconds that the Sonet/Sdh component has been in an near-end error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.2
lpSdhSectCodeViolationsThis attribute indicates the total number of Section Code Violations (SCVs) detected. A SCV corresponds to section BIP-8 error. SCV counting is inhibited for second intervals where a Section Severely Errored Second (SSES) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.3
lpSdhSectErroredSecThis attribute indicates the total number of Section Errored Seconds (SESs) that have been counted. A SES is declared for second intervals containing one or more SCVs or one or more Loss Of Signal (LOS) or Severely Errored Frame (SEF) defects. A SEF defect is the occurrence of 4 contiguous errored STS or STM frame alignment words.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.4
lpSdhSectSevErroredSecThis attribute indicates the total number of Section Severely Errored Seconds (SSESs) that have been counted. A SSES is declared for second intervals containing more than x SCVs or one or more LOS or SEF defects. The value of x is 155 for a 155 Mbits/sec interface.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.5
lpSdhSectLosSecThis attribute indicates the total number of Section LOS Seconds (SLOSSs) that have been counted. A SLOSS is declared for second intervals containing one or more LOS defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.6
lpSdhSectSevErroredFrmSecThis attribute indicates the total number of Section Severely Errored Frame Seconds (SSEFSs) that have been counted. A SSEFS is declared for second intervals containing one or more SEF defects.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.7
lpSdhSectFailuresThis attribute indicates the total number of times that a section failure (LOS or LOF failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.8
lpSdhLineCodeViolationsThis attribute indicates the total number of Line Code Violations (LCVs) detected. A LCV corresponds to a line BIP-24 errors. LCV counting is inhibited for second intervals where a Line Severely Errored Second (LSES) is counted. Counting of LCVs is also inhibited over second intervals where a Line Unavailable Second (LUAS) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.9
lpSdhLineErroredSecThis attribute indicates the total number of Line Errored Seconds (LESs) that have been counted. A LES is declared for second intervals containing one or more LCVs or one or more line AIS defects. Counting of LES is inhibited over second intervals where a LUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.10
lpSdhLineSevErroredSecThis attribute indicates the total number of Line Severely Errored Seconds (LSESs) that have been counted. A LSES is declared for second intervals containing more than x LCVs or one or more L- AIS defects. The value of x is 154 for a 155 Mbits/sec interface. Counting of LSES is inhibited over second intervals where a LUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.11
lpSdhLineAisSecThis attribute indicates the total number of Line AIS Seconds (LAISSs) that have been counted. A LAISS is declared for second intervals containing one or more L-AIS defects. Counting of LAISS is inhibited over second intervals where a LUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.12
lpSdhLineUnavailSecThis attribute indicates the total number of one second intervals for which the STS line is unavailable. The STS line becomes unavailable at the onset of 10 consecutive LSESs. The 10 LSESs are included in the unavailable time. Once unavailable, the STS line becomes available at the onset of 10 contiguous seconds with no LSES. The 10 seconds with no LSES are excluded from the unavailable time. For second intervals where a Line Unavailable Second (LUAS) is counted, counting of LCV, LES, LSES and LAISS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.13
lpSdhLineFailuresThis attribute indicates the total number of times that a line failure (L-AIS failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.14
lpSdhFarEndLineErrorFreeSecThis attribute indicates the number of seconds that the Sonet/Sdh component has been in an far-end error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.15
lpSdhFarEndLineCodeViolationsThis attribute indicates the total number of line FEBE detected from the incoming line. The counting of line FEBE is inhibited for second intervals where a Far-End Line Severely Errored Second (FELSES) is counted. Counting of FELCVs is also inhibited over second intervals where a Far-End Line Unavailable Second (FELUAS) is counted. The count wraps at its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.16
lpSdhFarEndLineErroredSecThis attribute indicates the total number of Far-End Line Errored Seconds (FELESs) that have been counted. A FELES is declared for second intervals containing one or more Far-End Line CVs (FELCVs) or one or more L-RDI defects. Counting of FELES is inhibited over second intervals where a FELUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.17
lpSdhFarEndLineSevErroredSecThis attribute indicates the total number of Far-End Line Severely Errored Seconds (FELSESs) that have been counted. A FELSES is declared for second intervals containing more than x FELCVs or one or more L-RDI defects. The value of x is 154 for a 155 Mbits/ sec interface. Counting of FELSES is inhibited over second intervals where a FELUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.18
lpSdhFarEndLineAisSecThis attribute indicates the total number of Far-End Line AIS Seconds (FELAISSs) that have been counted. A FELAISS is declared for second intervals one or more L-RDI defects. Counting of FELAISS is inhibited over second intervals where a FELUAS is counted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.19
lpSdhFarEndLineUnavailSecThis attribute indicates the total number of one second intervals for which the STS far-end line is unavailable. The STS far-end line becomes unavailable at the onset of 10 consecutive FELSESs. The 10 FELSESs are included in the unavailable time. Once unavailable, the STS far-end line becomes available at the onset of 10 contiguous seconds with no FELSES. The 10 seconds with no FELSES are excluded from the unavailable time. For second intervals where a Far-End Line Unavailable Second (FELUAS) is counted, counting of FELCV, FELES, FELSES and FELAISS is inhibited.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.20
lpSdhFarEndLineFailuresThis attribute indicates the total number of times that a far-end line failure (L-RFI failure) has been declared.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.15.17.1.21
lpJT2
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.16
lpJT2RowStatusTableThis entry controls the addition and deletion of lpJT2 components.
SEQUENCE OF LpJT2RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.1
lpJT2RowStatusEntryA single entry in the table represents a single lpJT2 component.
LpJT2RowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.1.1
lpJT2RowStatusThis variable is used as the basis for SNMP naming of lpJT2 components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.1.1.1
lpJT2ComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.1.1.2
lpJT2StorageTypeThis variable represents the storage type value for the lpJT2 tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.1.1.4
lpJT2IndexThis variable represents the index for the lpJT2 tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.16.1.1.10
lpJT2Test
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.16.2
lpJT2TestRowStatusTableThis entry controls the addition and deletion of lpJT2Test components.
SEQUENCE OF LpJT2TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.2.1
lpJT2TestRowStatusEntryA single entry in the table represents a single lpJT2Test component.
LpJT2TestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.2.1.1
lpJT2TestRowStatusThis variable is used as the basis for SNMP naming of lpJT2Test components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.2.1.1.1
lpJT2TestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.2.1.1.2
lpJT2TestStorageTypeThis variable represents the storage type value for the lpJT2Test tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.2.1.1.4
lpJT2TestIndexThis variable represents the index for the lpJT2Test tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.16.2.1.1.10
lpJT2TestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpJT2TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.2.10
lpJT2TestStateEntryAn entry in the lpJT2TestStateTable.
LpJT2TestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.2.10.1
lpJT2TestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.2.10.1.1
lpJT2TestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.2.10.1.2
lpJT2TestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.2.10.1.3
lpJT2TestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpJT2TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11
lpJT2TestSetupEntryAn entry in the lpJT2TestSetupTable.
LpJT2TestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1
lpJT2TestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1.1
lpJT2TestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1.2
lpJT2TestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1.3
lpJT2TestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1.4
lpJT2TestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1.5
lpJT2TestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1.6
lpJT2TestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1.7
lpJT2TestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.16.2.11.1.8
lpJT2TestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpJT2TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12
lpJT2TestResultsEntryAn entry in the lpJT2TestResultsTable.
LpJT2TestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1
lpJT2TestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.1
lpJT2TestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.2
lpJT2TestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.3
lpJT2TestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.4
lpJT2TestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.5
lpJT2TestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.6
lpJT2TestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.7
lpJT2TestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.8
lpJT2TestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.9
lpJT2TestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.10
lpJT2TestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.16.2.12.1.11
lpJT2Cell
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.16.3
lpJT2CellRowStatusTableThis entry controls the addition and deletion of lpJT2Cell components.
SEQUENCE OF LpJT2CellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.3.1
lpJT2CellRowStatusEntryA single entry in the table represents a single lpJT2Cell component.
LpJT2CellRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.3.1.1
lpJT2CellRowStatusThis variable is used as the basis for SNMP naming of lpJT2Cell components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.3.1.1.1
lpJT2CellComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.3.1.1.2
lpJT2CellStorageTypeThis variable represents the storage type value for the lpJT2Cell tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.16.3.1.1.4
lpJT2CellIndexThis variable represents the index for the lpJT2Cell tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.16.3.1.1.10
lpJT2CellProvTableThis group contains the provisioning attributes for the AtmCell component.
SEQUENCE OF LpJT2CellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.3.10
lpJT2CellProvEntryAn entry in the lpJT2CellProvTable.
LpJT2CellProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.3.10.1
lpJT2CellAlarmActDelayThis attribute defines the time during which a Loss of Cell Delineation (LCD) defect should be observed before declaring an LCD alarm (alarm 70115501). The time is specified in milliseconds.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.16.3.10.1.1
lpJT2CellScrambleCellPayloadCell scrambling, as defined by ITU-T Recommendation I.432., can provide a solution to the problem of transmission equipment which is sensitive to certain bit patterns in the ATM cell payload. This attribute controls whether or not the cell payload is scrambled. It defaults to off for DS1 interfaces, and on for all other interfaces. Note that this setting must be the same at both ends of the link.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.3.10.1.2
lpJT2CellCorrectSingleBitHeaderErrorsThis attribute specifies whether the port corrects single bit errors detected in the headers of received cells. If single bit errors are corrected, the affected cells are passed up to the ATM layer according to normal operation. If single bit errors are not corrected, these errored cells are discarded by the physical layer. Note that cells containing multiple bit errors in their headers are always discarded. Single bit HEC error correction must remain off for the following card types: 3pDS1Atm, 8pDS1Atm, 3pE1Atm, 8pE1Atm, 2pJ6MAtm, 3pDS3Atm, and 3pE3Atm.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.3.10.1.3
lpJT2CellOperTableThis group contains the common operational attributes for the AtmCell component.
SEQUENCE OF LpJT2CellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.3.11
lpJT2CellOperEntryAn entry in the lpJT2CellOperTable.
LpJT2CellOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.3.11.1
lpJT2CellLcdAlarmThis attribute displays whether the Loss of Cell Delineation (LCD) failure alarm state has been entered. This state is entered when LCD defects have been observed and accumulated for a period of time specified through the alarmActDelay attribute. In ATM cell direct mapping mode, an LCD defect occurs when Out of Cell Delineation (OCD) anomaly persists for x milliseconds, and disappears when the Out of Cell Delineation (OCD) is absent for x msec. An OCD anomaly occurs when 7 consecutive incorrect HECs have been detected. An OCD anomaly terminates when 6 consecutive correct HECs have been detected. For an AtmCell component located under a DS3 or E3 component with mapping = PLCP, the LCD defect is directly derived from the PLCP LOF defect. If LCD defects are intermittently occurring, the LCD defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle The component under which is located the AtmCell component goes into an operational state of disabled until the LCD alarm condition is cleared. The condition is cleared after the LCD defect has not been reported for a period of 10 seconds +/- 0.5 seconds. The lcdAlarm attribute is always set to off when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.3.11.1.1
lpJT2CellStatsTableThis group contains the Statistics attribute for the AtmCell component. Each attribute type is a non-negative integer which monotonically increases until it reaches a maximum value, at which point it wraps around and starts increasing again from zero.
SEQUENCE OF LpJT2CellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.3.12
lpJT2CellStatsEntryAn entry in the lpJT2CellStatsTable.
LpJT2CellStatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.3.12.1
lpJT2CellUncorrectableHecErrorsThis attribute indicates the number of uncorrectable ATM cell header errors that have been detected. Counting of uncorrectableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.3.12.1.1
lpJT2CellSevErroredSecThis attribute indicates the total number of ATM Cell Severely Errored Seconds (SESs) that have been counted. In direct mapping mode, an ATM Cell SES is declared for second intervals containing one or more Out of Cell Delineation (OCD) defects. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detected. In PLCP mapping mode, an ATM Cell SES is declared for second intervals containing one or more PLCP LOF defects. Counting of uncorrectableHeaderErrors (ucErr) and correctableHeaderErrors (cErr) is inhibited when the OCD defect is present.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.3.12.1.2
lpJT2CellReceiveCellUtilizationThis attribute is the ratio of the number of valid, assigned cells received on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.16.3.12.1.3
lpJT2CellTransmitCellUtilizationThis attribute is the ratio of the number of valid, assigned cells transmitted on the link to the nominal link capacity. The utilization is calculated over a period of one minute. This attribute is always set to 0 when the parent of the AtmCell component has been locked and left offline. This can also happen when the Path or Channel component has been suspended since its parent has been locked.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.16.3.12.1.4
lpJT2CellCorrectableHeaderErrorsThis attribute indicates the number of correctable ATM cell header errors that have been detected and corrected. Counting of correctableHeaderErrors is inhibited when an Out of Cell Delineation (OCD) defect is present. An OCD defect occurs when seven consecutive incorrect HECs have been detected. An OCD defect terminates when six consecutive correct HECs have been detectedro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.3.12.1.5
lpJT2CidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpJT2CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.10
lpJT2CidDataEntryAn entry in the lpJT2CidDataTable.
LpJT2CidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.10.1
lpJT2CustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.16.10.1.1
lpJT2ProvTableThis group contains all of the JT2 specific provisioning data for a JT2 component.
SEQUENCE OF LpJT2ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.11
lpJT2ProvEntryAn entry in the lpJT2ProvTable.
LpJT2ProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.11.1
lpJT2ClockingSourceThis attribute defines the source of the transmit clock for the JT2 line. When the clocking source is selected from local, the oscillator on the port generates the clocking for the line. When the clocking source is selected from line, the port synchronizes to the clock recovered from the incoming line signal. When the clocking source is selected from module, the port's clock synchronizes to the clock provided by the oscillator on the active CP. Note:- that when one port is set to local, the other port must also be set to local, and when one port is set to module, the other port must also be set to module. If one of the ports is set to line, the other port must be set to otherPort. Also, if a CP reference clock is available when the JT2 component is added, the clocking source defaults to module, whereas if a CP reference clock is not available when the component is added, the clocking source defaults to local.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.11.1.1
lpJT2LineLengthThis attribute defines the line length for equalization calculations for the JT2 line. The range is between 0 and 480 feet (1 metre = 3.28 feet).rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.16.11.1.2
lpJT2ApplicationFramerNameThis attribute defines the link to the software stack. It defines which application is running on top of the JT2 component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.16.11.1.3
lpJT2IfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpJT2IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.12
lpJT2IfEntryEntryAn entry in the lpJT2IfEntryTable.
LpJT2IfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.12.1
lpJT2IfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.12.1.1
lpJT2IfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.16.12.1.2
lpJT2OperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpJT2OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.13
lpJT2OperStatusEntryAn entry in the lpJT2OperStatusTable.
LpJT2OperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.13.1
lpJT2SnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.13.1.1
lpJT2StateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpJT2StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.14
lpJT2StateEntryAn entry in the lpJT2StateTable.
LpJT2StateEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1
lpJT2AdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.1
lpJT2OperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.2
lpJT2UsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.3
lpJT2AvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.4
lpJT2ProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.5
lpJT2ControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.6
lpJT2AlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.7
lpJT2StandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.8
lpJT2UnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.14.1.9
lpJT2OperTableThis group contains the JT2 specific operational data for a JT2 component in a digital hierarchy interface.
SEQUENCE OF LpJT2OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.15
lpJT2OperEntryAn entry in the lpJT2OperTable.
LpJT2OperEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.15.1
lpJT2LosAlarmThis attribute displays whether a LOS (Loss of Signal) alarm state is entered. An LOS alarm state is entered when LOS defects have been observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. An LOS defect is declared at the JT2 line interface when the input data is zero for 20 - 32 clock cycles. If the LOS defects are intermittently occurring, the LOS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. An LOS failure alarm is cleared when the LOS defect is absent for a period of 10 seconds +/- 0.5 seconds. The JT2 port goes into an operationalState of disabled for the duration of the LOS alarm condition. While the port is in the LOS alarm state, the port also transmits the far-end RAI defect indicator on the out-going JT2 line.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.15.1.1
lpJT2LofAlarmThis attribute indicates whether a LOF (Loss of Frame) alarm state is entered. A LOF alarm state is entered when LOF defects are observed and accumulated for 2.5 seconds +/- 0.5 seconds or more. A LOF defect occurs when seven or more consecutive incorrect frame alignment patterns (4 multiframes) are received. If the LOF defects are intermittently occurring, the LOF defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. The LOF alarm is cleared when framing has been achieved for 10 seconds +/- 0.5 seconds. The port goes into an operationalState of disabled for the duration of the LOF alarm condition. While the port is in the LOF alarm state, the node also transmits the far-end RAI defect indicator on the out-going JT2 line.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.15.1.2
lpJT2RxAisPhysicalAlarmThis attribute indicates whether a Physical AIS alarm state is entered. A Physical AIS alarm state is entered when a Physical AIS defect is observed and accumulated for a period of 2.5 seconds +/- 0.5 seconds. A Physical AIS defect is declared when the incoming signal has two or less zeros in a sequence of 3,156 bits (0.5 ms). If the physical AIS defects are intermittently occurring, the physical AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. A Physical AIS alarm is cleared when the Physical AIS defect is absent for a period of 10 seconds +/- 0.5 seconds. The port goes into an operationalState of disabled until the AIS alarm condition is cleared. While the port is in the Physical AIS alarm state, the node also transmits the far-end RAI defect indicator on the out-going JT2 line.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.15.1.3
lpJT2RxAisPayloadAlarmThis attribute indicates whether a Payload AIS alarm state is entered. A Payload AIS alarm state is entered when a Payload AIS defect persists for a period of 2.5 seconds +/- 0.5 seconds. A Payload AIS defect is declared when the incoming signal of the 6312 kbit/s frame payload (TS1 - TS96) has two or less zeros in a sequence of 3,072 bits (0.5 ms). If the payload AIS defects are intermittently occurring, the payload AIS defect accumulator is decremented at a rate of 1/10 of the incrementing rate (alarm integration ratio of 1/10), with all measurements based on a 200 ms polling cycle. A Payload AIS failure alarm is cleared when the Payload AIS defect is absent for a period of 10 seconds +/- 0.5 seconds. The port goes into an operationalState of disabled until the AIS alarm condition is cleared. While the port is in the Payload AIS alarm state, the node also transmits the far-end RAI defect indicator on the out-going JT2 line.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.15.1.4
lpJT2RxRaiAlarmThis attribute indicates whether a Received RAI alarm state is entered. A received RAI alarm state is entered when the RAI signal is detected on the incoming JT2 Line (when 16 or more consecutive RAI patterns of 1111111100000000 are received on the 4 kbit/s data channel (m-bits) within the framing bits of the JT2 frame). The JT2 port goes into an operationalState of Disabled until the RAI alarm condition is cleared. The RAI alarm is cleared when four or more consecutive non-RAI patterns (anything other than 1111111100000000) are received.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.15.1.5
lpJT2TxAisPhysicalAlarmThis attribute indicates whether an AIS (Alarm Indication Signal) alarm is being transmitted on the outgoing JT2 line. Currently the JT2 port only transmits a Physical AIS (no Payload AIS) on the outgoing JT2 line. Since there is no Idle signal defined for JT2, the AIS signal is transmitted when the JT2 port is in the operationalState of locked. The AIS signal may also be transmitted for diagnostic testing.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.15.1.6
lpJT2TxRaiAlarmThis attribute indicates whether an RAI defect indication pattern is being sent on the out-going JT2 line. The RAI alarm pattern is transmitted in the 4 kbit/s data channel (m-bits) when the port detects a LOS, AIS or LOF alarm condition.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.16.15.1.7
lpJT2StatsTableThis group contains the statistical data for a JT2 component in a digital hierarchy interface.
SEQUENCE OF LpJT2StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.16
lpJT2StatsEntryAn entry in the lpJT2StatsTable.
LpJT2StatsEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1
lpJT2RunningTimeThis attribute indicates the number of seconds since the JT2 component was activated and placed in an unlocked state or used for operational testing. All the other error counts that follow as well as each JT2 subcomponent's error counts can be updated when this count is active.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.1
lpJT2ErrorFreeSecThis attribute indicates the number of seconds that the JT2 port has been in an error free state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.2
lpJT2ErroredSecThis attribute indicates the total number of errored seconds for the JT2 port. An errored second is declared when a second with one or more Code Violation Error events, or one or more LOF or LOS defects occur. A code violation error may be a cyclic redundancy check (CRC) error or a bipolar violation (BPV) error.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.3
lpJT2SevErroredSecThis attribute indicates the total number of severely errored seconds for the JT2 port. A severely errored second occurs when a second with 255 or more Code Violation Error events or one or more LOF or LOS defects occur.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.4
lpJT2SevErroredFrmSecThis attribute indicates the total number of severely errored framing seconds for the JT2 port. A severely errored framing second occurs when a second with one or more Framing Errors occur.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.5
lpJT2UnavailSecThis attribute indicates the total number of seconds that the interface has been in an unavailable state. An unavailable state occurs at the onset of 10 consecutive Severely Errored Seconds. When the unavailable state is entered, the 10 Severely Errored Seconds are immediately transfered to the count of unavailableSeconds by incrementing the count of unavailSec by 10 and decrementing the count of sevErroredSec by 10. Whilst in the unavailable state, an unavailableSecond is counted for each SES or SEFS that occurs, and the count of SES and SEFS are both inhibited. The unavailable state is cleared at the onset of 10 consecutive seconds which are not Severely Errored Seconds.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.6
lpJT2BpvErrorsThis attribute indicates the total count of bipolar violations (BPV). A bipolar violation is an error in the alternate mark inversion pattern (AMI) on the line. The value of this attribute will wrap to zero when it reaches its maximum value.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.7
lpJT2CrcErrorsThis attribute indicates the total number of cyclic redundancy check (CRC-5) errors detected on the incoming JT2 line. The value of this attribute will wrap to 0 when its maximum value is reached.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.8
lpJT2FrameErrorsThis attribute indicates the total number of Framing Errors that have occured on the JT2 port. A Framing Error is an error in the framing bits. The value of this attribute will wrap to 0 when its maximum value is reached.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.9
lpJT2LosStateChangesThis attribute indicates the total number of times that the incoming signal on the JT2 line has been lost. The value of this attribute will wrap to 0 when its maximum value is reached.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.16.16.1.10
lpJT2AdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpJT2AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.17
lpJT2AdminInfoEntryAn entry in the lpJT2AdminInfoTable.
LpJT2AdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.16.17.1
lpJT2VendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.16.17.1.1
lpJT2CommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.16.17.1.2
lpHssi
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.17
lpHssiRowStatusTableThis entry controls the addition and deletion of lpHssi components.
SEQUENCE OF LpHssiRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.1
lpHssiRowStatusEntryA single entry in the table represents a single lpHssi component.
LpHssiRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.1.1
lpHssiRowStatusThis variable is used as the basis for SNMP naming of lpHssi components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.17.1.1.1
lpHssiComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.17.1.1.2
lpHssiStorageTypeThis variable represents the storage type value for the lpHssi tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.17.1.1.4
lpHssiIndexThis variable represents the index for the lpHssi tables.
Integer32
.1.3.6.1.4.1.3764.1.1.30.12.17.1.1.10
lpHssiTest
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.17.2
lpHssiTestRowStatusTableThis entry controls the addition and deletion of lpHssiTest components.
SEQUENCE OF LpHssiTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.2.1
lpHssiTestRowStatusEntryA single entry in the table represents a single lpHssiTest component.
LpHssiTestRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.2.1.1
lpHssiTestRowStatusThis variable is used as the basis for SNMP naming of lpHssiTest components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.17.2.1.1.1
lpHssiTestComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.17.2.1.1.2
lpHssiTestStorageTypeThis variable represents the storage type value for the lpHssiTest tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.17.2.1.1.4
lpHssiTestIndexThis variable represents the index for the lpHssiTest tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.17.2.1.1.10
lpHssiTestStateTableThis group contains the three OSI State attributes. The descriptions generically indicate what each state attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241-7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpHssiTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.2.10
lpHssiTestStateEntryAn entry in the lpHssiTestStateTable.
LpHssiTestStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.2.10.1
lpHssiTestAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.2.10.1.1
lpHssiTestOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.2.10.1.2
lpHssiTestUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.2.10.1.3
lpHssiTestSetupTableThis group contains all of the operational data for a Test component.
SEQUENCE OF LpHssiTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11
lpHssiTestSetupEntryAn entry in the lpHssiTestSetupTable.
LpHssiTestSetupEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1
lpHssiTestPurposeThis attribute records the purpose of the test so that the test results can be associated and properly analyzed.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1.1
lpHssiTestTypeThis attribute is the type of test to be run. The available test types include the following: card test sets up an internal loop on the board and runs a bit error rate test. manual test assumes the line is looped back externally and a bit error rate test is performed. localLoop test loops back the local modem and performs a bit error rate test. remoteLoop test loops back the remote modem (or CSU) and performs a bit error rate test. externalLoop test loops back the line to the far end. payloadLoop test only loops back the payload data received from the incoming line. remoteLoopThisTrib loops this particular tributary back at the far end, using services provided by the parent. v54RemoteLoop initiates a V.54 Remote Loopback test. pn127RemoteLoop initiates a PN127 Remote Loopback test. Note that not all test types are not supported by all function processors.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1.2
lpHssiTestFrmSizeThis attribute defines the size of the test data frames in number of bytes.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1.3
lpHssiTestFrmPatternTypeThis attribute defines the type of data pattern generation to use. The following lists the available pattern types: ccitt32kBitPattern is a pseudo-random sequence of 32 kbit. ccitt8MBitPattern is a pseudo-random sequence of 8Mbit. customizedPattern is the pattern defined in the customizedPattern attribute.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1.4
lpHssiTestCustomizedPatternThis attribute allows a customized 32 bit pattern to be defined for use in the test data frames. This attribute is used when the attribute frmPatternType is set to CustomizedPattern. Note that a 55 hex pattern is an alternating 1 and 0 pattern.rw
Hex
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1.5
lpHssiTestDataStartDelayThis attribute specifies the time delay (in seconds) between when the test expects the loop to have been set up, to when the test data actually starts to be transmitted. This attribute is to accommodate some non-standard equipment that requires extra time for setting up a requested loop. This attribute is ignored when the test type is set to externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1.6
lpHssiTestDisplayIntervalThis attribute defines the interval (in minutes) between which interim test results are to be displayed. Results are displayed at the operator console at which the test was started. When the test type is set to externalLoop, this attribute is ignored. There will be no display of results if displayInterval is set to 0. This attribute can be changed anytime.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1.7
lpHssiTestDurationThis attribute is the duration (in minutes) that test data will be transmitted. In the case of an externalLoop, this is the time that the loop is in effect. Note that dataStartDelay does not apply to the externalLoop.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.17.2.11.1.8
lpHssiTestResultsTableThis group contains all the statistics related attributes of the Test component.
SEQUENCE OF LpHssiTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12
lpHssiTestResultsEntryAn entry in the lpHssiTestResultsTable.
LpHssiTestResultsEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1
lpHssiTestElapsedTimeThis attribute is the number of minutes elapsed since the test started for an externalLoop test. For a data test, this is the time since test data was first transmitted.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.1
lpHssiTestTimeRemainingThis attribute is the number of minutes remaining before the test is to be stopped according to the duration attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.2
lpHssiTestCauseOfTerminationThis attribute records the reason the test is terminated.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.3
lpHssiTestBitsTxThis attribute is the total number of bits sent during the test period. As long as the line speed of the hardware interface is less than 70 Mbit/s, this counter is not expected to reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.4
lpHssiTestBytesTxThis attribute is the total number of bytes sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.5
lpHssiTestFrmTxThis attribute is the total number of frames sent during the test period. This counter is not expected to reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.6
lpHssiTestBitsRxThis attribute is the total number of bits received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach the maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.7
lpHssiTestBytesRxThis attribute is the total number of bytes received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.8
lpHssiTestFrmRxThis attribute is the total number of frames received during the test period. This counter is not expected to reach its maximum value. The counter will wrap around to 0 if it does reach its maximum value.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.9
lpHssiTestErroredFrmRxThis attribute counts the errored frames received during the test period. This counter is not expected to reach its maximum value. The counter wraps to 0 if it exceeds its maximum value. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
PassportCounter64
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.10
lpHssiTestBitErrorRateThis attribute indicates the calculated bit error rate on the link. Test data are generated and sent in frames of a preset size (frameSize). The Test component tries to estimate the number of bit errors in any errored frame which is identifiable. The statistics are updated accordingly. A lost frame (possibly due to an error on the flag sequence) is not used for the bit error rate calculation. The result is presented in the form of xEsyy, where x is the mantissa; and syy is the exponent, for example 0E+00, 2E-09. Note that the bitErrorRate is an estimate only. For more reliable test results, the test should be done over a long period. Multiple tests would also improve the confidence level of the test results. This attribute is not displayed for ATM cards because the physical layer drops all errored frames at the controller interface.ro
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.17.2.12.1.11
lpHssiProvTableThis group contains the specific provisioning data for a Hssi component.
SEQUENCE OF LpHssiProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.10
lpHssiProvEntryAn entry in the lpHssiProvTable.
LpHssiProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.10.1
lpHssiLinkModeThis attribute defines the intended gender of the HSSI port. The actual gender of the port is determined by the hardware setup. In dte mode, the ta line signal is driven as specified by the attribute readyLineState when the HSSI port passes its diagnostics. The ta line signal is then driven as specified by the attribute dataTransferLineState when the application is ready to transfer data. On the other hand, the input line signal ca is compared against those specified in the attributes readyLineState and dataTransferLineState. The application will be notified when the specified input line states are observed. In dce mode, the Hssi component behaves similarly as when it is in dte mode. However, it will be driving the dce line signal (ca) and monitoring the dte line signal (ta) as specified by the attributes readyLineState and dataTransferLineState.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.10.1.1
lpHssiReadyLineStateThis attribute specifies the line signal originating from the HSSI interface that will always be turned on, provided the HSSI interface passes it diagnostics. This set of signal is generally required for maintaining the connection. Note that both dte and dce signals are specified in this attribute. The appropriate set of specified signals will be turned on or checked according to the operational attribute actualLinkMode. See also linkMode. Description of bits: ca(0) ta(1)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.17.10.1.2
lpHssiDataTransferLineStateThis attribute specifies the line signals required to indicate that the external equipment is in a good state (that is, data transfer can proceed). Note that both dte and dce signals are specified in this attribute. The appropriate set of specified signals will be turned on or checked according to the operational attribute actualLinkMode. The value of this attribute must be a superset of that of the readyLineState attribute. See also linkMode. Description of bits: ca(0) ta(1)rw
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.17.10.1.3
lpHssiLineSpeedThis attribute defines the speed of the line for source clocking. This attribute is ignored if the interface is not providing a clock. Note that the actual clock rate are available in the operational attributes actualTxLineSpeed and actualRxLineSpeed.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.17.10.1.5
lpHssiApplicationFramerNameThis attribute contains the component name of a Framer which is associated with the Hssi component.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.17.10.1.7
lpHssiCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpHssiCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.11
lpHssiCidDataEntryAn entry in the lpHssiCidDataTable.
LpHssiCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.11.1
lpHssiCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.17.11.1.1
lpHssiAdminInfoTableThis group contains the attributes pertaining to the vendor of the equipment.
SEQUENCE OF LpHssiAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.12
lpHssiAdminInfoEntryAn entry in the lpHssiAdminInfoTable.
LpHssiAdminInfoEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.12.1
lpHssiVendorThis is the name of the vendor supplying the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.17.12.1.1
lpHssiCommentTextAny miscellaneous text about the facility.rw
AsciiString
.1.3.6.1.4.1.3764.1.1.30.12.17.12.1.2
lpHssiIfEntryTableThis group contains the provisionable attributes for the ifEntry.
SEQUENCE OF LpHssiIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.13
lpHssiIfEntryEntryAn entry in the lpHssiIfEntryTable.
LpHssiIfEntryEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.13.1
lpHssiIfAdminStatusThe desired state of the interface. The up state indicates the interface is operational. The down state indicates the interface is not operational. The testing state indicates that no operational packets can be passed.rw
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.13.1.1
lpHssiIfIndexThis is the index for the IfEntry. Its value is automatically initialized during the provisioning process.ro
InterfaceIndex
.1.3.6.1.4.1.3764.1.1.30.12.17.13.1.2
lpHssiOperStatusTableThis group includes the Operational Status attribute. This attribute defines the current operational state of this component.
SEQUENCE OF LpHssiOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.14
lpHssiOperStatusEntryAn entry in the lpHssiOperStatusTable.
LpHssiOperStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.14.1
lpHssiSnmpOperStatusThe current state of the interface. The up state indicates the interface is operational and capable of forwarding packets. The down state indicates the interface is not operational, thus unable to forward packets. testing state indicates that no operational packets can be passed.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.14.1.1
lpHssiStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpHssiStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.15
lpHssiStateEntryAn entry in the lpHssiStateTable.
LpHssiStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1
lpHssiAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.1
lpHssiOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.2
lpHssiUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.3
lpHssiAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.4
lpHssiProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.5
lpHssiControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.6
lpHssiAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.7
lpHssiStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.8
lpHssiUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.15.1.9
lpHssiOperTableThis group contains all specific operational data for a Hssi component.
SEQUENCE OF LpHssiOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.16
lpHssiOperEntryAn entry in the lpHssiOperTable.
LpHssiOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.17.16.1
lpHssiActualLinkModeThis attribute contains the actual link mode defined by the hardware. Note that the hardware overrides the provisionable data. The port behaves as a dce or dte according to the actualLinkMode.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.17.16.1.1
lpHssiLineStateThis attribute contains the state of the interface signals. Description of bits: ca(0) ta(1) tm(2) la(3) lb(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.17.16.1.2
lpHssiActualTxLineSpeedThis attribute is the measured speed of the transmit clock. Note the reported transmit speed is in an error of +/- 10000 bit/sro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.17.16.1.3
lpHssiActualRxLineSpeedThis attribute is the measured speed of the receive clock. Note the reported receive speed is in an error of +/- 10000 bit/sro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.17.16.1.4
lpHssiDataXferStateChangesThis attribute contains the number of times that the line has entered or exited the data transfer state.ro
Counter32
.1.3.6.1.4.1.3764.1.1.30.12.17.16.1.5
lpEng
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.23
lpEngRowStatusTableThis entry controls the addition and deletion of lpEng components.
SEQUENCE OF LpEngRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.1
lpEngRowStatusEntryA single entry in the table represents a single lpEng component.
LpEngRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.1.1
lpEngRowStatusThis variable is used as the basis for SNMP naming of lpEng components. These components cannot be added nor deleted.ro
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.1.1.1
lpEngComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.1.1.2
lpEngStorageTypeThis variable represents the storage type value for the lpEng tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.1.1.4
lpEngIndexThis variable represents the index for the lpEng tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.23.1.1.10
lpEngDs
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.23.2
lpEngDsRowStatusTableThis entry controls the addition and deletion of lpEngDs components.
SEQUENCE OF LpEngDsRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.2.1
lpEngDsRowStatusEntryA single entry in the table represents a single lpEngDs component.
LpEngDsRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.2.1.1
lpEngDsRowStatusThis variable is used as the basis for SNMP naming of lpEngDs components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.2.1.1.1
lpEngDsComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.2.1.1.2
lpEngDsStorageTypeThis variable represents the storage type value for the lpEngDs tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.2.1.1.4
lpEngDsIndexThis variable represents the index for the lpEngDs tables.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.23.2.1.1.10
lpEngDsOv
OBJECT IDENTIFIER
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2
lpEngDsOvRowStatusTableThis entry controls the addition and deletion of lpEngDsOv components.
SEQUENCE OF LpEngDsOvRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.1
lpEngDsOvRowStatusEntryA single entry in the table represents a single lpEngDsOv component.
LpEngDsOvRowStatusEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.1.1
lpEngDsOvRowStatusThis variable is used as the basis for SNMP naming of lpEngDsOv components. These components can be added and deleted.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.1.1.1
lpEngDsOvComponentNameThis variable provides the component's string name for use with the ASCII Console Interfacero
DisplayString (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.1.1.2
lpEngDsOvStorageTypeThis variable represents the storage type value for the lpEngDsOv tables.ro
StorageType (SNMPv2-TC)
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.1.1.4
lpEngDsOvIndexThis variable represents the index for the lpEngDsOv tables.
NonReplicated
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.1.1.10
lpEngDsOvProvTableThis group contains provisionable attributes for the DataStream Ov components under Lp Engineering. DESCRIPTION
SEQUENCE OF LpEngDsOvProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.10
lpEngDsOvProvEntryAn entry in the lpEngDsOvProvTable.
LpEngDsOvProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.10.1
lpEngDsOvAgentQueueSizeThis attribute specifies the maximum size of the DCS Agent's queue for this data stream on this LP. For more details on the defaults and other information, refer to the parent component's agentQueueSize attribute. The size should be set to 0 if absolutely no data is to be accepted from applications. There are threshold alarms based on the value of the Agent's currentQueueSize attribute (a Set when the queue becomes 75% full and a Clear after dropping back to 50% full). To properly determine what to set this to, consult the 'Magellan Passport Engineering Notes and Guidelines'.rw
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.23.2.2.10.1.1
lpEngDsOperTableThis group contains operational attributes for the DataStream components under Lp Engineering.
SEQUENCE OF LpEngDsOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.2.10
lpEngDsOperEntryAn entry in the lpEngDsOperTable.
LpEngDsOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.23.2.10.1
lpEngDsAgentQueueSizeThis attribute indicates the maximum size of the DCS Agent queue size maximum for a DCS data stream on the LP. It is the maximum size to which the Agent's currentQueueSize can grow. When the queue is full and more data is offered to the Agent, it will be discarded. The following are the system defaults (in number of records): - alarm: 100 - accounting: 10000 - debug: 0 - log: 50 - scn: 200 - trap: 50 - stats: 0 To override the system defaults, see Lp Eng Ds Ov's agentQueueSize attribute.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.23.2.10.1.1
lpProvTableThis Group contains the provisionable attributes for the LP component.
SEQUENCE OF LpProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.100
lpProvEntryAn entry in the lpProvTable.
LpProvEntry
.1.3.6.1.4.1.3764.1.1.30.12.100.1
lpMainCardThis is the preferred processor card on which this LP should be assigned.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.100.1.1
lpSpareCardThis is the spare processor card on which this LP should be assigned.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.100.1.2
lpLogicalProcessorTypeThis is the Logical Processor Type (LPT) that determines which software this LP will run.rw
Link
.1.3.6.1.4.1.3764.1.1.30.12.100.1.3
lpCidDataTableThis group contains the attribute for a component's Customer Identifier (CID). Refer to the attribute description for a detailed explanation of CIDs.
SEQUENCE OF LpCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.101
lpCidDataEntryAn entry in the lpCidDataTable.
LpCidDataEntry
.1.3.6.1.4.1.3764.1.1.30.12.101.1
lpCustomerIdentifierThis attribute holds the Customer Identifier (CID). Every component has a CID. If a component has a cid attribute, the component's CID is the provisioned value of that attribute; otherwise the component inherits the CID of its parent. The top- level component has a CID of 0. Every operator session also has a CID, which is the CID provisioned for the operator's user ID. An operator will see only the stream data for components having a matching CID. Also, the operator will be allowed to issue commands for only those components which have a matching CID. An operator CID of 0 is used to identify the Network Manager (referred to as 'NetMan' in DPN). This CID matches the CID of any component. Values 1 to 8191 inclusive (equivalent to 'basic CIDs' in DPN) may be assigned to specific customers.rw
Unsigned32 (0 | 1..8191)
.1.3.6.1.4.1.3764.1.1.30.12.101.1.1
lpStateTableThis group contains the three OSI State attributes and the six OSI Status attributes. The descriptions generically indicate what each attribute implies about the component. Note that not all the values and state combinations described here are supported by every component which uses this group. For component-specific information and the valid state combinations, refer to NTP 241- 7001-150, Passport Operations and Maintenance Guide.
SEQUENCE OF LpStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.102
lpStateEntryAn entry in the lpStateTable.
LpStateEntry
.1.3.6.1.4.1.3764.1.1.30.12.102.1
lpAdminStateThis attribute indicates the OSI Administrative State of the component. The value locked indicates that the component is administratively prohibited from providing services for its users. A Lock or Lock - force command has been previously issued for this component. When the value is locked, the value of usageState must be idle. The value shuttingDown indicates that the component is administratively permitted to provide service to its existing users only. A Lock command was issued against the component and it is in the process of shutting down. The value unlocked indicates that the component is administratively permitted to provide services for its users. To enter this state, issue an Unlock command to this component. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.102.1.1
lpOperationalStateThis attribute indicates the OSI Operational State of the component. The value enabled indicates that the component is available for operation. Note that if adminState is locked, it would still not be providing service. The value disabled indicates that the component is not available for operation. For example, something is wrong with the component itself, or with another component on which this one depends. If the value is disabled, the usageState must be idle. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.102.1.2
lpUsageStateThis attribute indicates the OSI Usage State of the component. The value idle indicates that the component is not currently in use. The value active indicates that the component is in use and has spare capacity to provide for additional users. The value busy indicates that the component is in use and has no spare operating capacity for additional users at this time. The OSI Status attributes, if supported by the component, may provide more details, qualifying the state of the component.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.102.1.3
lpAvailabilityStatusIf supported by the component, this attribute indicates the OSI Availability status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value inTest indicates that the resource is undergoing a test procedure. If adminState is locked or shuttingDown, the normal users are precluded from using the resource and controlStatus is reservedForTest. Tests that do not exclude additional users can be present in any operational or administrative state but the reservedForTest condition should not be present. The value failed indicates that the component has an internal fault that prevents it from operating. The operationalState is disabled. The value dependency indicates that the component cannot operate because some other resource on which it depends is unavailable. The operationalState is disabled. The value powerOff indicates the resource requires power to be applied and it is not powered on. The operationalState is disabled. The value offLine indicates the resource requires a routine operation (either manual, automatic, or both) to be performed to place it on-line and make it available for use. The operationalState is disabled. The value offDuty indicates the resource is inactive in accordance with a predetermined time schedule. In the absence of other disabling conditions, the operationalState is enabled or disabled. The value degraded indicates the service provided by the component is degraded in some way, such as in speed or operating capacity. However, the resource remains available for service. The operationalState is enabled. The value notInstalled indicates the resource is not present. The operationalState is disabled. The value logFull is not used. Description of bits: inTest(0) failed(1) powerOff(2) offLine(3) offDuty(4) dependency(5) degraded(6) notInstalled(7) logFull(8)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.102.1.4
lpProceduralStatusIf supported by the component, this attribute indicates the OSI Procedural status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value initializationRequired indicates (for a resource which doesn't initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState is disabled. The value notInitialized indicates (for a resource which does initialize autonomously) that initialization is required before it can perform its normal functions, and this procedure has not been initiated. The operationalState may be enabled or disabled. The value initializing indicates that initialization has been initiated but is not yet complete. The operationalState may be enabled or disabled. The value reporting indicates the resource has completed some processing operation and is notifying the results. The operationalState is enabled. The value terminating indicates the component is in a termination phase. If the resource doesn't reinitialize autonomously, operationalState is disabled; otherwise it is enabled or disabled. Description of bits: initializationRequired(0) notInitialized(1) initializing(2) reporting(3) terminating(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.102.1.5
lpControlStatusIf supported by the component, this attribute indicates the OSI Control status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value subjectToTest indicates the resource is available but tests may be conducted simultaneously at unpredictable times, which may cause it to exhibit unusual characteristics. The value partOfServicesLocked indicates that part of the service is restricted from users of a resource. The adminState is unlocked. The value reservedForTest indicates that the component is administratively unavailable because it is undergoing a test procedure. The adminState is locked. The value suspended indicates that the service has been administratively suspended. Description of bits: subjectToTest(0) partOfServicesLocked(1) reservedForTest(2) suspended(3)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.102.1.6
lpAlarmStatusIf supported by the component, this attribute indicates the OSI Alarm status of the component. Note that, even though it is defined as a multi-valued set, at most one value is shown to the user. When no values are in the set, this indicates that either the attribute is not supported or that none of the status conditions described below are present. The value underRepair indicates the component is currently being repaired. The operationalState is enabled or disabled. The value critical indicates one or more critical alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value major indicates one or more major alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value minor indicates one or more minor alarms are outstanding against the component. Other, less severe, alarms may also be outstanding. The operationalState is enabled or disabled. The value alarmOutstanding generically indicates that an alarm of some severity is outstanding against the component. Description of bits: underRepair(0) critical(1) major(2) minor(3) alarmOutstanding(4)ro
OCTET STRING
.1.3.6.1.4.1.3764.1.1.30.12.102.1.7
lpStandbyStatusIf supported by the component, this attribute indicates the OSI Standby status of the component. The value notSet indicates that either the attribute is not supported or that none of the status conditions described below are present. Note that this is a non-standard value, used because the original specification indicated this attribute was set-valued and thus, did not provide a value to indicate that none of the other three are applicable. The value hotStandby indicates that the resource is not providing service but will be immediately able to take over the role of the resource to be backed up, without initialization activity, and containing the same information as the resource to be backed up. The value coldStandby indicates the resource is a backup for another resource but will not be immediately able to take over the role of the backed up resource and will require some initialization activity. The value providingService indicates that this component, as a backup resource, is currently backing up another resource.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.102.1.8
lpUnknownStatusThis attribute indicates the OSI Unknown status of the component. The value false indicates that all of the other OSI State and Status attribute values can be considered accurate. The value true indicates that the actual state of the component is not known for sure.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.102.1.9
lpOperTableThis Group contains the operational attributes for the LP component.
SEQUENCE OF LpOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.103
lpOperEntryAn entry in the lpOperTable.
LpOperEntry
.1.3.6.1.4.1.3764.1.1.30.12.103.1
lpActiveCardThis attribute indicates on which card this LP is currently running (if any).ro
RowPointer
.1.3.6.1.4.1.3764.1.1.30.12.103.1.1
lpMainCardStatusThis attribute specifies the status of this LP's main card. The following values have been defined: notProvisioned No main card has been provisioned notAvailable The main card is not available available The main card is available (running as standby) active The main card is running as activero
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.103.1.2
lpSpareCardStatusThis attribute specifies the status of this LP's spare card. The following values have been defined: notProvisioned No spare card has been provisioned notAvailable The spare card is not available alreadyInUse The spare card is already in use by another LP available The spare card is available (running as standby) active The spare card is running as activero
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.103.1.3
lpRestartOnCpSwitchThis attribute indicates whether the Lp always restarts upon a CP switchover. The value is true if the featureList of the associated Sw Lpt component contains a feature that does not support hitless CP switchover. The value is also true when the feature noHitlessCpSwitch is provisioned on the CP. A value of false does not guarantee 'no restart'; dynamic conditions may still result in an FP restart when a CP switchover occurs.ro
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.103.1.4
lpScheduledSwitchoverThis attribute indicates the execution time of the scheduled switchover. When there is no switchover scheduled the time is equals to 0 (0000-00-00 00:00).ro
EnterpriseDateAndTime
.1.3.6.1.4.1.3764.1.1.30.12.103.1.5
lpUtilTableThis group contains the operational attributes that specify the processor's utilization levels. When this group exists for an LP component, the attributes are representative of the active card.
SEQUENCE OF LpUtilEntry
.1.3.6.1.4.1.3764.1.1.30.12.104
lpUtilEntryAn entry in the lpUtilTable.
LpUtilEntry
.1.3.6.1.4.1.3764.1.1.30.12.104.1
lpTimeIntervalThis attribute indicates the time period (in minutes) for which the average, minimum and maximum utilization values are calculated. This attribute is reset to 0 every 15 minutes.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.1
lpCpuUtilThis attribute indicates an approximation of the current processor utilization level (expressed as a percentage).ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.2
lpCpuUtilAvgThis attribute indicates an average processor utilization level over the specified time period, timeInterval. This average is calculated based on one minute CPU utilization averages.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.3
lpCpuUtilAvgMinThis attribute indicates the minimum processor utilization level over a specified time period, timeInterval. This is based on one minute CPU utilization averages.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.4
lpCpuUtilAvgMaxThis attribute indicates the maximum processor utilization level over a specified time period, timeInterval. This is based on one minute CPU utilization averages.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.5
lpMsgBlockUsageThis attribute indicates the processor's current shared message block memory utilization (in kilobytes). If there is no shared memory on the card, this attribute indicates 0.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.6
lpMsgBlockUsageAvgThis attribute indicates the processor's average memory utilization (in kilobytes) of shared message blocks, calculated over a specified time period, timeInterval. This utilization value is calculated using 15 second samples. At the start of each timeInterval, this average memory utilization is reset to the current usage, sharedMsgBlockUsage. If there is no shared memory on the card, this attribute indicates 0.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.7
lpMsgBlockUsageAvgMinThis attribute indicates the processor's minimum memory utilization (in kilobytes) of shared message blocks, calculated over a specified time period, timeInterval. This utilization value is calculated using 15 second samples. At the start of each timeInterval, this minimum memory utilization is reset to the current usage, sharedMsgBlockUsage. If there is no shared memory on the card, this attribute indicates 0.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.8
lpMsgBlockUsageAvgMaxThis attribute indicates the processor's maximum memory utilization (in kilobytes) of shared message blocks, calculated over a specified time period, timeInterval. This utilization value is calculated using 15 second samples. At the start of each timeInterval, this maximum memory utilization is reset to the current usage, sharedMsgBlockUsage. If there is no shared memory on the card, this attribute indicates 0.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.9
lpLocalMsgBlockUsageThis attribute indicates the processor's current memory utilization (in kilobytes) of message blocks which are used for local messaging on the card.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.10
lpLocalMsgBlockUsageAvgThis attribute indicates the processor's average memory utilization (in kilobytes) of message blocks used for local messaging on the card, calculated over a specified time period, timeInterval. This utilization value is calculated using 15 second samples. At the start of each timeInterval, this average memory utilization is reset to the current usage, localMsgBlockUsage.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.11
lpLocalMsgBlockUsageMinThis attribute indicates the processor's minimum memory utilization (in kilobytes) of message blocks used for local messaging on the card, calculated over a specified time period, timeInterval. This utilization value is updated at 15 second intervals. At the start of each timeInterval, this minimum memory utilization is reset to the current usage, localMsgBlockUsage.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.12
lpLocalMsgBlockUsageMaxThis attribute indicates the processor's maximum memory utilization (in kilobytes) of message blocks used for local messaging on the card, calculated over a specified time period, timeInterval. This utilization value is updated at 15 second intervals. At the start of each timeInterval, this maximum memory utilization is reset to the current usage, localMsgBlockUsage.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.104.1.13
lpCapTableThis group contains the operational attributes that specify the processor's capacity levels. When this group exists for an LP component, the attributes are representative of the active Card.
SEQUENCE OF LpCapEntry
.1.3.6.1.4.1.3764.1.1.30.12.105
lpCapEntryAn entry in the lpCapTable.
LpCapEntry
.1.3.6.1.4.1.3764.1.1.30.12.105.1
lpMsgBlockCapacityThis attribute indicates the processor card's shared message block memory capacity (in kilobytes).ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.105.1.1
lpLocalMsgBlockCapacityThis attribute indicates the processor card's local message block memory capacity (in kilobytes). These message blocks are used for local messaging on the card.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.105.1.2
lpLinkToApplicationsTableThis attribute allows applications to link themselves directly to the LP component.
SEQUENCE OF LpLinkToApplicationsEntry
.1.3.6.1.4.1.3764.1.1.30.12.242
lpLinkToApplicationsEntryAn entry in the lpLinkToApplicationsTable.
LpLinkToApplicationsEntry
.1.3.6.1.4.1.3764.1.1.30.12.242.1
lpLinkToApplicationsValueThis variable represents both the value and the index for the lpLinkToApplicationsTable.ro
Link
.1.3.6.1.4.1.3764.1.1.30.12.242.1.1
lpMemoryCapacityTableThis attribute indicates the processor card's memory capacity (in kilobytes) for each type of memory.
SEQUENCE OF LpMemoryCapacityEntry
.1.3.6.1.4.1.3764.1.1.30.12.244
lpMemoryCapacityEntryAn entry in the lpMemoryCapacityTable.
LpMemoryCapacityEntry
.1.3.6.1.4.1.3764.1.1.30.12.244.1
lpMemoryCapacityIndexThis variable represents the lpMemoryCapacityTable specific index for the lpMemoryCapacityTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.244.1.1
lpMemoryCapacityValueThis variable represents an individual value for the lpMemoryCapacityTable.ro
Unsigned32
.1.3.6.1.4.1.3764.1.1.30.12.244.1.2
lpMemoryUsageTableThis attribute indicates the processor's current memory utilization (in kilobytes) for each type of memory.
SEQUENCE OF LpMemoryUsageEntry
.1.3.6.1.4.1.3764.1.1.30.12.245
lpMemoryUsageEntryAn entry in the lpMemoryUsageTable.
LpMemoryUsageEntry
.1.3.6.1.4.1.3764.1.1.30.12.245.1
lpMemoryUsageIndexThis variable represents the lpMemoryUsageTable specific index for the lpMemoryUsageTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.245.1.1
lpMemoryUsageValueThis variable represents an individual value for the lpMemoryUsageTable.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.245.1.2
lpMemoryUsageAvgTableThis attribute indicates the processor's average memory utilization (in kilobytes) for each type of memory in the specified time period, timeInterval. This value is calculated using 15 second samples.
SEQUENCE OF LpMemoryUsageAvgEntry
.1.3.6.1.4.1.3764.1.1.30.12.276
lpMemoryUsageAvgEntryAn entry in the lpMemoryUsageAvgTable.
LpMemoryUsageAvgEntry
.1.3.6.1.4.1.3764.1.1.30.12.276.1
lpMemoryUsageAvgIndexThis variable represents the lpMemoryUsageAvgTable specific index for the lpMemoryUsageAvgTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.276.1.1
lpMemoryUsageAvgValueThis variable represents an individual value for the lpMemoryUsageAvgTable.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.276.1.2
lpMemoryUsageAvgMinTableThis attribute indicates the processor's minimum memory utilization (in kilobytes) for each type of memory in the specified time period, timeInterval. This value is calculated using 15 second samples.
SEQUENCE OF LpMemoryUsageAvgMinEntry
.1.3.6.1.4.1.3764.1.1.30.12.277
lpMemoryUsageAvgMinEntryAn entry in the lpMemoryUsageAvgMinTable.
LpMemoryUsageAvgMinEntry
.1.3.6.1.4.1.3764.1.1.30.12.277.1
lpMemoryUsageAvgMinIndexThis variable represents the lpMemoryUsageAvgMinTable specific index for the lpMemoryUsageAvgMinTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.277.1.1
lpMemoryUsageAvgMinValueThis variable represents an individual value for the lpMemoryUsageAvgMinTable.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.277.1.2
lpMemoryUsageAvgMaxTableThis attribute indicates the processor's maximum memory utilization (in kilobytes) for each type of memory in the specified time period, timeInterval. This value is calculated using 15 second samples.
SEQUENCE OF LpMemoryUsageAvgMaxEntry
.1.3.6.1.4.1.3764.1.1.30.12.278
lpMemoryUsageAvgMaxEntryAn entry in the lpMemoryUsageAvgMaxTable.
LpMemoryUsageAvgMaxEntry
.1.3.6.1.4.1.3764.1.1.30.12.278.1
lpMemoryUsageAvgMaxIndexThis variable represents the lpMemoryUsageAvgMaxTable specific index for the lpMemoryUsageAvgMaxTable.
Enumeration
.1.3.6.1.4.1.3764.1.1.30.12.278.1.1
lpMemoryUsageAvgMaxValueThis variable represents an individual value for the lpMemoryUsageAvgMaxTable.ro
Gauge32
.1.3.6.1.4.1.3764.1.1.30.12.278.1.2