SLE-FAULTMGMT-MIB

File: SLE-FAULTMGMT-MIB.mib (763616 bytes)

Imported modules

DASAN-SMI SLE-TC-MIB SNMPv2-CONF
SNMPv2-SMI SNMPv2-TC

Imported symbols

sleMgmt SleControlStatusType SleControlRequestResultType
OBJECT-GROUP NOTIFICATION-GROUP TimeTicks
IpAddress Integer32 Unsigned32
Gauge32 Counter32 Counter64
OBJECT-TYPE MODULE-IDENTITY NOTIFICATION-TYPE
MacAddress TimeStamp TEXTUAL-CONVENTION

Defined Types

SpecificNum  
Description.
TEXTUAL-CONVENTION    
  INTEGER portDown(1), portUp(2), portRemoved(3), portInstalled(4), powerFail(5), powerOK(6), powerRemoved(7), powerInstalled(8), fanFail(9), fanOK(10), fanRemoved(11), fanInstalled(12), moduleRemoved(13), moduleInstalled(14), systemRestart(15), systemStart(16), broadcastOver(17), broadcastUnder(18), cpuOverLoad(19), cpuUnderLoad(20), memoryOverUsed(21), memoryUnderUsed(22), portOverThreshold(23), portUnderThreshold(24), temperatureHigh(25), temperatureLow(26), mfgdBlocked(27), mfgdReleased(28), ipConflict(29), ipUnconflict(30), dhcpLeaseShortage(31), dhcpLeaseSufficient(32), dhcpOccuredIllegalEntry(33), dhcpRemovedIllegalEntry(34), rmonAlarmRising(35), rmonAlarmNoRising(36), rmonAlarmFalling(37), rmonAlarmNoFalling(38), bpduGuardDisabled(39), rootGuardDisabled(40), portSecurity(41), userLogin(42), userLogout(43), systemWarmStart(44), igmpGroupJoined(51), igmpGroupLeaved(52), dhcpIpaddressBound(53), dhcpIpaddressFree(54), doorOpened(55), doorClosed(56), powerModeChangedPowerToBattery(57), powerModeChangedBatteryToPower(58), batterylowcapacity(59), batterynormalcapacity(60), batteryhighTemperature(61), batterynormalTemperature(62), authenticationFail(63), authenticationNoFail(64), psuAcHighTemperature(65), psuAcNormalTemperature(66), batteryRemoved(67), batteryEquipped(68), batteryLowVoltage(69), batteryNormalVoltage(70), adminAccessLogin(71), adminAccessLogout(72), cfgdBlocked(73), cfgdReleased(74), sfgdBlocked(75), sfgdReleased(76), swWatchdogAbnomalState(77), swWatchdogNomalState(78), swWatchdogDetectError(79), swWatchdogClearError(80), ppsControlBlocked(81), ppsControlReleased(82), gotDMITempHighOverAlarm(83), gotDMITempHighFallAlarm(84), gotDMITempLowOverAlarm(85), gotDMITempLowFallAlarm(86), gotDMITempHighOverWarning(87), gotDMITempHighFallWarning(88), gotDMITempLowOverWarning(89), gotDMITempLowFallWarning(90), gotDMIVolHighOverAlarm(91), gotDMIVolHighFallAlarm(92), gotDMIVolLowOverAlarm(93), gotDMIVolLowFallAlarm(94), gotDMIVolHighOverWarning(95), gotDMIVolHighFallWarning(96), gotDMIVolLowOverWarning(97), gotDMIVolLowFallWarning(98), gotDMITxBiasHighOverAlarm(99), gotDMITxBiasHighFallAlarm(100), gotDMITxBiasLowOverAlarm(101), gotDMITxBiasLowFallAlarm(102), gotDMITxBiasHighOverWarning(103), gotDMITxBiasHighFallWarning(104), gotDMITxBiasLowOverWarning(105), gotDMITxBiasLowFallWarning(106), gotDMITxPowerHighOverAlarm(107), gotDMITxPowerHighFallAlarm(108), gotDMITxPowerLowOverAlarm(109), gotDMITxPowerLowFallAlarm(110), gotDMITxPowerHighOverWarning(111), gotDMITxPowerHighFallWarning(112), gotDMITxPowerLowOverWarning(113), gotDMITxPowerLowFallWarning(114), gotDMIRxPowerHighOverAlarm(115), gotDMIRxPowerHighFallAlarm(116), gotDMIRxPowerLowOverAlarm(117), gotDMIRxPowerLowFallAlarm(118), gotDMIRxPowerHighOverWarning(119), gotDMIRxPowerHighFallWarning(120), gotDMIRxPowerLowOverWarning(121), gotDMIRxPowerLowFallWarning(122), nosRemoteUpgradeRequest(123), nosRemoteUpgradeSuccess(124), nosRemoteUpgradeFailAbort(125), nosRemoteUpgradeFailHeaderError(126), nosRemoteUpgradeFailDownloadError(127), nosRemoteUpgradeFailFlashError(128), nosRemoteUpgradeStart(129), systemDyingGasp(130), remoteOamDyingGasp(131), remoteOamDyingGaspRestoration(132), cliHistory(133), cliHistoryNo(134), ntpConnectionFail(135), nmsConnectionTypeChanged(137), fanSpeedFallUnderThreshold(138), fanSpeedRisingOverThreshold(139), userLoginFail(140), temperatureHighContinued(142), swWatchdogInetAbnormalState(150), swWatchdogInetNormalState(151), swWatchdogInetDetectError(152), swWatchdogInetClearError(153), swWatchdogPonAbnormalState(154), swWatchdogPonNormalState(155), swWatchdogPonDetectError(156), swWatchdogPonClearError(157), arpInspectInvalid(158), clockModuleRemoved(159), clockModuleInstalled(160), clockModuleInitFail(161), clockModuleInitOk(162), cliHistoryLog(163), cliHistoryLogNo(164), slotActionEvent(165), slotStateChange(166), interfaceAdminDown(167), interfaceAdminUp(168), slotPowerMonAbnormal(169), slotPowerMonNormal(170), slotErrorLEDChanged(171), bfdSessionStateChanged(172), clockModuleOPModeChanged(173), clockModuleRefChanged(174), clockModuleInSrcStatusChanged(175), clockModuleInSrcAISStatusChanged(176), clockModuleInSrcLoSStatusChanged(177), clockModuleInSrcLSDCStatusChanged(178), clockModuleInSrcNtrClockChanged(179), portRxOverThreshold(181), portRxUnderThreshold(182), portTxOverThreshold(183), portTxUnderThreshold(184), cpuPpsOverThreshold(185), cpuPpsUnderThreshold(186), pairFanPowerOff(191), pairFanPowerOn(192), slotHealthStatusTimeout(199), slotHealthStatusTimeoutCleared(200), advaTemperature(201), advaTemperatureNo(202), advaPSUFailure(203), advaPSUFailureNo(204), advaFanFailure(205), advaFanFailureNo(206), advaInterfaceReceiveFailure(207), advaInterfaceReceiveFailureNo(208), advaInterfaceOpticalThreshold(209), advaInterfaceOpticalThresholdNo(210), advaInterfaceTransmitFault(211), advaInterfaceTransmitFaultNo(212), advaInterfaceMisconfiguration(213), advaInterfaceMisconfigurationNo(214), advaInterfaceSFPMismatch(215), advaInterfaceSFPMismatchNo(216), advaVoltageLow(217), advaVoltageLowNo(218), advaVoltageHigh(219), advaVoltageHighNo(220), criticalAlarmLedOn(251), criticalAlarmLedOff(252), majorAlarmLedOn(253), majorAlarmLedOff(254), minorAlarmLedOn(255), minorAlarmLedOff(256), systemTemperPowerCutOff(291), systemTemperPowerCutoffCleared(292), slotTemperPowerCutOff(294), erpDomainLotp(301), erpDomainLotpNo(302), erpDomainULotp(303), erpDomainULotpNo(304), erpDomainMultipleRM(305), erpDomainMultipleRMNo(306), erpDomainRMNodeReacheablity(307), erpDomainRMNodeReacheablityNo(308), startupConfigLoadEnded(391), eponOnuDeregister(401), eponOnuRegister(402), eponOnuRegistrationError(403), eponOnuNoRegistrationError(404), eponBadEncryptionKey(405), eponNoBadEncryptionKey(406), eponLlidMistmatch(407), eponNoLlidMismatch(408), eponTooManyRegister(409), eponNoTooManyRegister(410), eponDyingGASP(411), eponNoDyingGASP(412), eponOnuErrFramePeriod(413), eponOnuNoErrFramePeriod(414), eponOnuErrFrame(415), eponOnuNoErrFrame(416), eponOnuErrFrameSecondSummary(417), eponOnuNoErrFrameSecondSummary(418), eponOnuLastOnuDeregister(419), eponOnuNoLastOnuDeregister(420), eponOltCableDown(421), eponOltRecoverCableDown(422), eponOltHealthCheckError(423), eponOnuOpticSignalErr(424), eponOnuRecoverOpticSignalErr(425), standardLinkFault(428), standardLinkFaultCleared(429), lossOfSignal(430), lossOfSignalCleared(431), transmitFail(432), transmitFailCleared(433), macLearningOverflow(434), macLearningOverflowCleared(435), loopback(436), loopbackCleared(437), standardDyinggasp(438), standardDyinggaspCleared(439), externalDyinggasp(440), externalDyinggaspCleared(441), standardCriticalEvent(442), standardCriticalEventCleared(443), externalCriticalEvent(444), externalCriticalEventCleared(445), eponStandbyLos(446), eponStandbyLosCleared(447), eponOnuPingTest(448), eponOnuDmiThresholdTemperOverHighWarn(450), clearEponOnuDmiThresholdTemperOverHighWarn(451), eponOnuDmiThresholdTemperFallLowWarn(452), clearEponOnuDmiThresholdTemperFallLowWarn(453), eponOnuDmiThresholdTemperOverHighAlarm(454), clearEponOnuDmiThresholdTemperOverHighAlarm(455), eponOnuDmiThresholdTemperFallLowAlarm(456), clearEponOnuDmiThresholdTemperFallLowAlarm(457), eponOnuDmiThresholdVoltageOverHighWarn(458), clearEponOnuDmiThresholdVoltageOverHighWarn(459), eponOnuDmiThresholdVoltageFallLowWarn(460), clearEponOnuDmiThresholdVoltageFallLowWarn(461), eponOnuDmiThresholdVoltageOverHighAlarm(462), clearEponOnuDmiThresholdVoltageOverHighAlarm(463), eponOnuDmiThresholdVoltageFallLowAlarm(464), clearEponOnuDmiThresholdVoltageFallLowAlarm(465), eponOnuDmiThresholdTxbiasOverHighWarn(466), clearEponOnuDmiThresholdTxbiasOverHighWarn(467), eponOnuDmiThresholdTxbiasFallLowWarn(468), clearEponOnuDmiThresholdTxbiasFallLowWarn(469), eponOnuDmiThresholdTxbiasOverHighAlarm(470), clearEponOnuDmiThresholdTxbiasOverHighAlarm(471), eponOnuDmiThresholdTxbiasFallLowAlarm(472), clearEponOnuDmiThresholdTxbiasFallLowAlarm(473), eponOnuDmiThresholdTxpowerOverHighWarn(474), clearEponOnuDmiThresholdTxpowerOverHighWarn(475), eponOnuDmiThresholdTxpowerFallLowWarn(476), clearEponOnuDmiThresholdTxpowerFallLowWarn(477), eponOnuDmiThresholdTxpowerOverHighAlarm(478), clearEponOnuDmiThresholdTxpowerOverHighAlarm(479), eponOnuDmiThresholdTxpowerFallLowAlarm(480), clearEponOnuDmiThresholdTxpowerFallLowAlarm(481), eponOnuDmiThresholdRxpowerOverHighWarn(482), clearEponOnuDmiThresholdRxpowerOverHighWarn(483), eponOnuDmiThresholdRxpowerFallLowWarn(484), clearEponOnuDmiThresholdRxpowerFallLowWarn(485), eponOnuDmiThresholdRxpowerOverHighAlarm(486), clearEponOnuDmiThresholdRxpowerOverHighAlarm(487), eponOnuDmiThresholdRxpowerFallLowAlarm(488), clearEponOnuDmiThresholdRxpowerFallLowAlarm(489), eponDetectRouge(490), clearEpoonDetectRouge(491), eponDetectRougeOnuPowerOff(492), eponDetectRougeOnuPowerOffFailed(493), eponDetectRougeOnuDeregisterSuccess(494), eponDetectRougeOnuDeregisterFailed(495), eponDetectRougeOnuFoundFailed(496), eponOltRedundancyDetectRxpower(497), clearEponOltRedundancyDetectRxpower(498), eponOltRedundancySwitchoverReasonForce(499), eponOltRedundancySwitchoverReasonLos(500), autoCLIStart(501), autoCLINoStart(502), autoCLIComplete(503), autoCLINoComplete(504), autoCLIRemoveOutputFile(505), autoCLINoRemoveOutputFile(506), autoResetSystem(507), autoResetNoSystem(508), autoResetPingReplyLoss(509), autoResetNoPingReplyLoss(510), autoResetMemoryLeakDetect(511), autoResetNoMemoryLeakDetect(512), loopDetectBlocked(551), loopDetectUnBlockedByExpireTimer(552), loopDetectUnBlockedByLinkDown(553), loopDetectUnBlockedByClearCmd(554), oamRemoteTestLoopback(562), arulePacketDropDetect(601), arulePacketDropRelease(602), autoCpeUpgradeStart(605), autoCpeUpgradeFail(607), autoCpeUpgradeSuccess(609), batteryUnderTemper(611), batteryTemperUnderToNormal(612), batteryCellAbnormal(613), batteryCellNormal(614), batteryCellTestChargeStarted(615), batteryCellTestChargeFinished(616), batteryAcPowerFault(617), batteryAcPowerOk(618), bME1CardNoDetect(620), clearBME1CardNoDetect(621), bME1CardAFEerror(622), clearBME1CardAFEerror(623), bME1CardIFEerror(624), clearBME1CardIFEerror(625), bME1CardFWerror(626), clearBME1CardFWerror(627), bME1CardPROVerror(628), clearBME1CardPROVerror(629), bME1CrashDetect(630), clearBME1CrashDetect(631), bME2CardNoDetect(632), clearBME2CardNoDetect(633), bME2CardAFEerror(634), clearBME2CardAFEerror(635), bME2CardIFEerror(636), clearBME2CardIFEerror(637), bME2CardFWerror(638), clearBME2CardFWerror(639), bME2CardPROVerror(640), clearBME2CardPROVerror(641), bME2CrashDetect(642), clearBME2CrashDetect(643), bME3CardNoDetect(644), clearBME3CardNoDetect(645), bME3CardAFEerror(646), clearBME3CardAFEerror(647), bME3CardIFEerror(648), clearBME3CardIFEerror(649), bME3CardFWerror(650), clearBME3CardFWerror(651), bME3CardPROVerror(652), clearBME3CardPROVerror(653), bME3CrashDetect(654), clearBME3CrashDetect(655), powerFromBattery(656), clearPowerFromBattery(657), invalidBatteryStatus(658), clearInvalidBatteryStatus(659), batteryChargeLow(660), clearBatteryChargeLow(661), batteryNotPresent(662), clearBatteryNotPresent(663), voltageLow(664), clearVoltageLow(665), tempOverThreshold(666), clearTempOverThreshold(667), tempUnderThreshold(668), clearTempUnderThreshold(669), cpuOverThreshold(670), clearCpuOverThreshold(671), trafficOverload(672), clearTrafficOverload(673), gEPONModuleNotDetect(674), clearGEPONModuleNotDetect(675), gEPONPortOperationDown(676), clearGEPONPortOperationDown(677), gEPONNoIncomingTraffic(678), clearGEPONNoIncomingTraffic(679), processCrashDetect(680), clearProcessCrashDetect(681), memoryLeakDetect(682), clearMemoryLeakDetect(683), memoryCorrupDetect(684), clearMemoryCorrupDetect(685), memoryLowDetect(686), clearMemoryLowDetect(687), dataLineerror(688), clearDataLineerror(689), addressLineerror(690), clearAddressLineerror(691), chipsetNotDetcet(692), clearChipsetNotDetcet(693), pciBuserror(694), clearPciBuserror(695), securityAdminConnect(696), clearSecurityAdminConnect(697), oNUPowerDown(698), clearONUPowerDown(699), oNUNotRegister(700), clearONUNotRegister(701), oNTOpticPre(702), clearONTOpticPre(703), writeMemroyFailSeveralTimes(721), writeMemroyFailSeveralTimesCleared(722), switchoverInitiated(800), switchoverDone(801), boardChangeState(802), redConfigurationMisMatch(803), aiuAlarmInput1(851), aiuAlarmInput1Cleared(852), aiuAlarmInput2(853), aiuAlarmInput2Cleared(854), aiuAlarmInput3(855), aiuAlarmInput3Cleared(856), aiuAlarmInput4(857), aiuAlarmInput4Cleared(858), aiuSlotUninstalled(859), aiuSlotInstalled(860), gponNoAuthCBU(901), gponDuplicateONU(902), gponDyingGasp(903), gponUpgradeComplete(904), gponDeregistered(905), gponRegistered(906), gponRogueOnu(907), gponOnuBatteryEvent(908), clearGponOnuBetteryEvent(909), gponOnuPortOperStatus(910), gponTransceiverChanged(911), gponOltLosOn(912), gponOltLosOff(913), gponOltLosiOn(914), gponOltLosiOff(915), gponDyingGaspOn(916), gponDyingGaspOff(917), gponOntOSUpgradeStatus(918), gponOntBLUpgradeStatus(919), gponOltRxPowerLoss(920), gponOltRxPowerDetected(921), gponOnuTemperatureHighOverThreshold(922), gponOnuTemperatureHighFallThreshold(923), gponOnuTemperatureLowOverThreshold(924), gponOnuTemperatureLowFallThreshold(925), gponOnuCpuOverThreshold(926), gponOnuCpuFallThreshold(927), gponOnuMemoryOverThreshold(928), gponOnuMemoryFallThreshold(929), gponOnuI2cFail(930), gponOnuRxOpticLowThreshAlarmOn(931), gponOnuRxOpticLowThreshAlarmOff(932), gponOnuRxOpticHighThreshAlarmOn(933), gponOnuRxOpticHighThreshAlarmOff(934), gponOltLOFIOn(935), gponOltLOFIOff(936), gponOltDOWOn(937), gponOltDOWOff(938), gponOltSFOn(939), gponOltSFOff(940), gponOltSDOn(941), gponOltSDOff(942), gponOltLCDGIOn(943), gponOltLCDGIOff(944), gponOltRDOn(945), gponOltRDOff(946), gponOltSUFOn(947), gponOltSUFOff(948), gponOltLOAOn(949), gponOltLOAOff(950), gponOltLOAMIOn(951), gponOltLOAMIOff(952), gponOltMEMOn(953), gponOltMEMOff(954), gponOltPEEOn(955), gponOltPEEOff(956), gponOltPSTOn(957), gponOltPSTOff(958), gponOltERROn(959), gponOltERROff(960), gponOltREIOn(961), gponOltREIOff(962), gponAntiSpoofingDupPortOn(963), gponAntiSpoofingDupPortOff(964), gponRedundancySwitchOver(965), gponDuplicatedRangingResponse(966), gponOnuPortOpticModuleRemove(967), gponOnuPortOpticModuleInstall(968), gponOnuOMCCProblemDetected(969), gponOnuOMCCProblemCleared(970), gponOltFixedTcontAlarmOn(971), gponOltFixedTcontAlarmOff(972), gponOltDynamicTcontAlarmOn(973), gponOltDynamicTcontAlarmOff(974), gponOltPortCountAlarmOn(975), gponOltPortCountAlarmOff(976), gponOltCableDownAlarmOn(977), gponOltCableDownAlarmOff(978), gponOltDeactiveMonitorAlarmOn(979), gponOltDeactiveMonitorAlarmOff(980), gponOltDfiOn(981), gponOltDfiOff(982), gponOltTransceiverPortChanged(984), gponOnuPortOperStatusDown(985), gponOnuPortOperStatusUp(986), gponOltRxPowerHighOver(987), gponOltRxPowerHighCleared(988), gponOltRxPowerLowUnder(989), gponOltRxPowerLowCleared(990), oamRapsEastPortStatusChanged(1001), oamRapsWestPortStatusChanged(1002), oamURNodePortStatusChanged(1003), oamRemoteLlcfLinkDown(1008), oamRemoteLlcfLinkUp(1009), oamInterfaceStatusChanged(1010), oamMepRDIDetected(1011), oamMepRDICleared(1012), oamMepLOCDetected(1013), oamMepLOCCleared(1014), oamMepUNPDetected(1015), oamMepUNPCleared(1016), oamMepUNMDetected(1017), oamMepUNMCleared(1018), oamMepMMGDetected(1019), oamMepMMGCleared(1020), oamMepUNLDetected(1021), oamMepUNLCleared(1022), oamMepAISDetected(1023), oamMepAISCleared(1024), oamMepLCKDetected(1025), oamMepLCKCleared(1026), oamMepMISSINGDetected(1027), oamMepMISSINGCleared(1028), voipPortStatusEnabled(1051), voipPortStatusDisabled(1052), emLogDefectCPUHighOver(1101), emLogDefectCPUHighUnder(1102), emLogTemperHighOver(1103), emLogTemperHighUnder(1104), emLogTemperLowUnder(1105), emLogTemperLowOver(1106), emLogMemLowUnder(1107), emLogMemLowOver(1108), emLogFanFail(1109), emLogFanFailCleared(1110), emLogPhyCRCFail(1111), emLogPhyCRCFailCleared(1112), emLogPhyDetectFail(1113), emLogPhyDetectFailCleared(1114), emLogSFUMateInitFail(1115), emLogSFUMateInitFailCleared(1116), emLogDaemonHealthBad(1117), emLogDaemonHealthBadCleared(1118), emLogGPIURavenLinkDown(1119), emLogGPIURavenLinkDownCleared(1120), emLogRPMLow(1121), emLogRPMLowCleared(1122), emLogNAKError(1123), emLogNAKErrorCleared(1124), snmpAllConfCleared(1141), slotNosUpgradeStart(1151), slotNosUpgradeEnd(1152), autonegoMissmatedSpeed(1171), autonegoMissmatedDuplex(1172), autonegoMismatched(1174), dmiTempHighOverDurationAlarmOld(1201), dmiTempLowFallDurationAlarmOld(1202), dmiTempHighOverDurationWarningOld(1203), dmiTempLowFallDurationWarningOld(1204), dmiVolHighOverDurationAlarmOld(1205), dmiVolLowFallDurationAlarmOld(1206), dmiVolHighOverDurationWarningOld(1207), dmiVolLowFallDurationWarningOld(1208), dmiTxBiasHighOverDurationAlarmOld(1209), dmiTxBiasLowFallDurationAlarmOld(1210), dmiTxBiasHighOverDurationWarningOld(1211), dmiTxBiasLowFallDurationWarningOld(1212), dmiTxPowerHighOverDurationAlarmOld(1213), dmiTxPowerLowFallDurationAlarmOld(1214), dmiTxPowerHighOverDurationWarningOld(1215), dmiTxPowerLowFallDurationWarningOld(1216), dmiRxPowerHighOverDurationAlarmOld(1217), dmiRxPowerLowFallDurationAlarmOld(1218), dmiRxPowerHighOverDurationWarningOld(1219), dmiRxPowerLowFallDurationWarningOld(1220), attackGuard(1221), attackGuardNo(1222), activeLinkDown(1223), activeLinkDownNo(1224), activeLinkUp(1225), activeLinkUpNo(1226), redundantLinkDown(1227), redundantLinkDownNo(1228), redundantLinkUp(1229), redundantLinkUpNo(1230), inputErrorThreshold(1231), inputErrorThresholdNo(1232), overSizeFrameThreshold(1233), overSizeFrameThresholdNo(1234), configLoadFail(1235), configLoadFailNo(1236), nosLoadFail(1237), nosLoadFailNo(1238), securityViolation(1239), securityViolationNo(1240), selfTestCompleted(1241), selfTestCompletedNo(1242), risingAlarm(1243), risingAlarmNo(1244), fallingAlarm(1245), fallingAlarmNo(1246), newRoot(1247), newRootNo(1248), topologyChange(1249), topologyChangeNo(1250), broadcastStormStart(1251), broadcastStormStartNo(1252), broadcastStormEnd(1253), broadcastStormEndNo(1254), duplicateMac(1255), duplicateMacNo(1256), trapLog(1257), trapLogNo(1258), scriptLoadFail(1259), scriptLoadFailNo(1260), monitorEvent(1261), monitorEventNo(1262), powerDetectFail(1263), powerDetectOk(1264), underSizeFrameThreshold(1265), underSizeFrameThresholdNo(1266), runtFrameThreshold(1267), runtFrameThresholdNo(1268), dyingGasp(1269), dyingGaspNo(1270), voipPortStatusEnable(1271), voipPortStatusDisable(1272), fanStop(1281), fanRun(1282), mllcfLinkDown(1301), mllcfLinkUp(1302), gponOnuAniVoltageLowThreshAlarmOn(1331), gponOnuAniVoltageLowThreshAlarmOff(1332), gponOnuAniVoltageHighThreshAlarmOn(1333), gponOnuAniVoltageHighThreshAlarmOff(1334), gponOnuAniTemperatureLowThreshAlarmOn(1335), gponOnuAniTemperatureLowThreshAlarmOff(1336), gponOnuAniTemperatureHighThreshAlarmOn(1337), gponOnuAniTemperatureHighThreshAlarmOff(1338), gponOnuAniTxBiasLowThreshAlarmOn(1339), gponOnuAniTxBiasLowThreshAlarmOff(1340), gponOnuAniTxBiasHighThreshAlarmOn(1341), gponOnuAniTxBiasHighThreshAlarmOff(1342), gponOnuAniTxpowerLowThreshAlarmOn(1343), gponOnuAniTxpowerLowThreshAlarmOff(1344), gponOnuAniTxpowerHighThreshAlarmOn(1345), gponOnuAniTxpowerHighThreshAlarmOff(1346), gponOnuServiceOpModeAlarm(1347), gponOnuServiceOpModeAlarmCleared(1348), gponOnuAuthErrorReasonUpdated(1350), portThresholdTxOverAlarm(1351), portThresholdTxOverAlarmCleared(1352), portThresholdTxOverWarn(1353), portThresholdTxOverWarnCleared(1354), portThresholdRxOverAlarm(1355), portThresholdRxOverAlarmCleared(1356), portThresholdRxOverWarn(1357), portThresholdRxOverWarnCleared(1358), tempThresholdHighOverAlarm(1361), tempThresholdHighOverAlarmCleared(1362), tempThresholdLowOverAlarm(1363), tempThresholdLowOverAlarmCleared(1364), tempThresholdHighOverWarn(1365), tempThresholdHighOverWarnCleared(1366), tempThresholdLowOverWarn(1367), tempThresholdLowOverWarnCleared(1368), moduleDmiReadError(1381), moduleDmiReadErrorCleared(1382), stormControlRxOver(1391), stormControlRxOverCleared(1392), rmonCrcAlignErrorRising(1401), rmonCrcAlignErrorRisingCleared(1402), rmonJabberRising(1403), rmonJabberRisingCleared(1404), rmonOversizePacketRising(1405), rmonOversizePacketRisingCleared(1406), rmonUndersizePacketRising(1407), rmonUndersizePacketRisingCleared(1408), rmonFragmentRising(1409), rmonFragmentRisingCleared(1410), rmonDropEventRising(1411), rmonDropEventRisingCleared(1412), rmonCollisionRising(1413), rmonCollisionRisingCleared(1414), rmonIfInDiscardsRising(1415), rmonIfInDiscardsRisingCleared(1416), rmonIfInErrosRising(1417), rmonIfInErrosRisingCleared(1418), rmonIfOutDiscardsRising(1419), rmonIfOutDiscardsRisingCleared(1420), rmonIfOutErrosRising(1421), rmonIfOutErrosRisingCleared(1422), rmonIfInPauseFrameRising(1423), rmonIfInPauseFrameRisingCleared(1424), rmonIfOutPauseFrameRising(1425), rmonIfOutPauseFrameRisingCleared(1426), rmonQueueTransmitRising(1427), rmonQueueTransmitRisingCleared(1428), rmonQueueDropRising(1429), rmonQueueDropRisingCleared(1430), eponOltRedundancySwitchoverReasonSlotRemove(1500), eponOltRedundancySwitchoverReasonSlotRestart(1501), eponOltRedundancySwitchoverReasonAutoDetect(1502), eponOltRedundancySwitchoverReasonWtrDetect(1503), eponOnuCrcUpStreamAlarmErr(1504), eponOnuCrcUpStreamAlarmErrClean(1505), eponOnuTooFrequentlyRegisteredErr(1506), eponOnuTooFrequentlyRegisteredErrClean(1507), eponOnuCrcDownStreamAlarmErr(1508), eponOnuCrcDownStreamAlarmErrClean(1509), eponOnuOpticPowerAlarmErr(1510), eponOnuOpticPowerAlarmErrClean(1511), eponOnuDcVoltageAlarmErr(1512), eponOnuDcVoltageAlarmErrClean(1513), eponOnuLoopingAlarmErr(1514), eponOnuLoopingAlarmErrClean(1515), eponOltRedundancyStandbyOltRxPowerOverHighThresholdAlarm(1516), eponOltRedundancyStandbyOltRxPowerUnderLowThresholdAlarm(1517), eponOnuBroadcastStormLlidUpAlarmErr(1518), eponOnuBroadcastStormLlidUpAlarmErrClean(1519), eponOnuBroadcastStormLlidDnAlarmErr(1520), eponOnuBroadcastStormLlidDnAlarmErrClean(1521), eponOnuBroadcastStormUniUpAlarmErr(1522), eponOnuBroadcastStormUniUpAlarmErrClean(1523), eponDetectRogueOnuTurn(1530), eponDetectRogueOnuTurnClean(1531), eponOnuLoopDetectErr(1532), eponOnuRecoverDetectErr(1533), eponThresholdAlarmLoopDetectErr(1534), eponThresholdAlarmRecoverLoopDetectErr(1535), eponThresholdAlarmOpticAlarmErr(1536), eponThresholdAlarmRecoverOpticAlarmErr(1537), eponThresholdAlarmOverVoltageErr(1538), eponThresholdAlarmRecoverOverVoltageErr(1539), eponOLTSFPModuleInstalled(1540), eponOLTSFPModuleRemoved(1541), eponOnuDailyRxPowerAlarm(1542), fiberLengthChangedWarningAlarm(1561), fiberLengthChangedWarningAlarmCleared(1562), cfmOnuMepRdiCcmDetected(1601), cfmOnuMepRdiCcmCleared(1602), cfmOnuMepMacStatusDetected(1603), cfmOnuMepMacStatusCleared(1604), cfmOnuMepRemoteCcmDetected(1605), cfmOnuMepRemoteCcmCleared(1606), cfmOnuMepErrorCcmDetected(1607), cfmOnuMepErrprCcmCleared(1608), cfmOnuMepXconCcmDetected(1609), cfmOnuMepXconCcmCleared(1610), cfmOnuMepUnexpectedPeriodDetected(1611), cfmOnuMepUnexpectedPeriodCleared(1612), cfmOnuMepAisDetected(1613), cfmOnuMepAisCleared(1614), tcpDosAttack(2001), tcpDosAttackCleared(2002), tcpPortFlooding(2003), tcpPortFloodingCleared(2004), tcpHostRandomFlooding(2005), tcpHostRandomFloodingCleared(2006), tcpHostScanning(2007), tcpHostScanningCleared(2008), ipSppfing(2009), ipSppfingCleared(2010), udpDosAttack(2011), udpDosAttackCleared(2012), udpPortFlooding(2013), udpPortFloodingCleared(2014), udpHostRandomFlooding(2015), udpHostRandomFloodingCleared(2016), udpHostScanning(2017), udpHostScanningCleared(2018), udpIPSppfing(2019), udpIPSppfingCleared(2020), icmpDosAttack(2021), icmpDosAttackCleared(2022), icmpIPSppfing(2023), icmpIPSppfingCleared(2024), icmpHostScanning(2025), icmpHostScanningCleared(2026), arpMacFlooding(2027), arpMacFloodingCleared(2028), arpSpoofing(2029), arpSpoofingCleared(2030), decoySnare(2031), decoySnareCleared(2032), hostScan(2033), hostScanCleared(2034), portScan(2035), portScanCleared(2036), tcpPortScanning(2037), tcpPortScanningCleared(2038), udpPortScanning(2039), udpPortScanningCleared(2040), staticAttack(2041), staticAttackCleared(2042), dmiTempHighOverDurationAlarm(2101), dmiTempHighOverDurationAlarmCleared(2102), dmiTempLowOverDurationAlarm(2103), dmiTempLowOverDurationAlarmCleared(2104), dmiTempHighOverDurationWarning(2105), dmiTempHighOverDurationWarningCleared(2106), dmiTempLowOverDurationWarning(2107), dmiTempLowOverDurationWarningCleared(2108), dmiVolHighOverDurationAlarm(2109), dmiVolHighOverDurationAlarmCleared(2110), dmiVolLowOverDurationAlarm(2111), dmiVolLowOverDurationAlarmCleared(2112), dmiVolHighOverDurationWarning(2113), dmiVolHighOverDurationWarningCleared(2114), dmiVolLowOverDurationWarning(2115), dmiVolLowOverDurationWarningCleared(2116), dmiTxBiasHighOverDurationAlarm(2117), dmiTxBiasHighOverDurationAlarmCleared(2118), dmiTxBiasLowOverDurationAlarm(2119), dmiTxBiasLowOverDurationAlarmCleared(2120), dmiTxBiasHighOverDurationWarning(2121), dmiTxBiasHighOverDurationWarningCleared(2122), dmiTxBiasLowOverDurationWarning(2123), dmiTxBiasLowOverDurationWarningCleared(2124), dmiTxPowerHighOverDurationAlarm(2125), dmiTxPowerHighOverDurationAlarmCleared(2126), dmiTxPowerLowOverDurationAlarm(2127), dmiTxPowerLowOverDurationAlarmCleared(2128), dmiTxPowerHighOverDurationWarning(2129), dmiTxPowerHighOverDurationWarningCleared(2130), dmiTxPowerLowOverDurationWarning(2131), dmiTxPowerLowOverDurationWarningCleared(2132), dmiRxPowerHighOverDurationAlarm(2133), dmiRxPowerHighOverDurationAlarmCleared(2134), dmiRxPowerLowOverDurationAlarm(2135), dmiRxPowerLowOverDurationAlarmCleared(2136), dmiRxPowerHighOverDurationWarning(2137), dmiRxPowerHighOverDurationWarningCleared(2138), dmiRxPowerLowOverDurationWarning(2139), dmiRxPowerLowOverDurationWarningCleared(2140), reloadMateInitiated(2201), reloadMateDone(2202), reloadSIUInitiated(2203), reloadSIUDone(2204)  

SleAlarmSeverityEntry  
SEQUENCE    
  sleAlarmSeverityIndex SpecificNum
  sleAlarmSeverityValue INTEGER

SleAlarmReportEntry  
SEQUENCE    
  sleAlarmSpecificCode SpecificNum
  sleAlarmReportingSourceType INTEGER
  sleAlarmReportingSource OCTET STRING
  sleAlarmSpecificSeverity INTEGER
  sleAlarmSpecificProblem Unsigned32
  sleAlarmSpecificProblemText OCTET STRING
  sleAlarmTimeAndDate Integer32
  sleAlarmSpecificSeqNum Counter32
  sleAlarmReportPairType INTEGER

SleAlarmHistoryEntry  
SEQUENCE    
  sleAlarmHistoryIndex INTEGER
  sleAlarmHistorySpecific SpecificNum
  sleAlarmHistorySeverity INTEGER
  sleAlarmHistoryText OCTET STRING
  sleAlarmHistoryTime Integer32
  sleAlarmHistorySeqNum Counter32
  sleAlarmHistoryPairType INTEGER

SleEfmOamEntry  
SEQUENCE    
  sleOamPortIndex INTEGER
  sleOamMuxAction INTEGER
  sleOamParAction INTEGER
  sleOamAdminState INTEGER
  sleOamMode INTEGER
  sleOamUnidirectionMode INTEGER
  sleOamFunctionsSupported BITS
  sleOamPeerStatus INTEGER
  sleOamPeerMacAddress MacAddress
  sleOamPeerMode INTEGER
  sleOamPeerFunctionsSupported BITS
  sleOamRemLoopback INTEGER
  sleOamRemLoopbackCnt INTEGER
  sleOamLm INTEGER
  sleOamLmAction INTEGER
  sleOamLmFrameWindow INTEGER
  sleOamLmFrameThresh INTEGER
  sleOamLmFrameTotal Counter64
  sleOamLmFramePeriodWindow Integer32
  sleOamLmFramePeriodThresh Integer32
  sleOamLmFramePeriodTotal Counter64
  sleOamLmFrameSecondSummaryWindow Integer32
  sleOamLmFrameSecondSummaryThresh Integer32
  sleOamLmFrameSecondSummaryTotal Counter64
  sleOamLmSymbolPeriodWindow INTEGER
  sleOamLmSymbolPeriodThresh INTEGER
  sleOamLmSymbolPeriodTotal Counter64
  sleOamLmRemSeqNum Integer32
  sleOamLmRemFrameLength Integer32
  sleOamLmRemFrameTimeStamp TimeTicks
  sleOamLmRemFrameWindow Integer32
  sleOamLmRemFrameThresh Integer32
  sleOamLmRemFrameErrors Integer32
  sleOamLmRemFrameErrorRunTotal Counter64
  sleOamLmRemFrameEventRunTotal Integer32
  sleOamLmRemFramePeriodLength Integer32
  sleOamLmRemFramePeriodTimeStamp TimeTicks
  sleOamLmRemFramePeriodWindow Integer32
  sleOamLmRemFramePeriodThresh Integer32
  sleOamLmRemFramePeriodErrors Integer32
  sleOamLmRemFramePeriodErrorRunTotal Counter64
  sleOamLmRemFramePeriodEventRunTotal Integer32
  sleOamLmRemFrameSecondSummaryLength Integer32
  sleOamLmRemFrameSecondSummaryTimeStamp TimeTicks
  sleOamLmRemFrameSecondSummaryWindow Integer32
  sleOamLmRemFrameSecondSummaryThresh Integer32
  sleOamLmRemFrameSecondSummaryErrors Integer32
  sleOamLmRemFrameSecondSummaryErrorRunTotal Integer32
  sleOamLmRemFrameSecondSummaryEventRunTotal Integer32
  sleOamLmRemSymbolPeriodLength Integer32
  sleOamLmRemSymbolPeriodTimeStamp TimeTicks
  sleOamLmRemSymbolPeriodWindow Counter64
  sleOamLmRemSymbolPeriodThresh Counter64
  sleOamLmRemSymbolPeriodErrors Counter64
  sleOamLmRemSymbolPeriodErrorRunTotal Counter64
  sleOamLmRemSymbolPeriodEventRunTotal Counter64

SleAdvaSystemEntry  
SEQUENCE    
  sleAdvaFSPOperationMode INTEGER
  sleAdvaActiveNetworkInterface INTEGER
  sleAdvaForceNetworkInterface INTEGER
  sleAdvaReportingInterval INTEGER
  sleAdvaNEMIFitted INTEGER
  sleAdvaForceReset INTEGER
  sleAdvaManagerAddress IpAddress
  sleAdvaMinRailVoltageThreshold INTEGER
  sleAdvaMaxRailVoltageThreshold INTEGER
  sleAdvaTemperatureThreshold INTEGER
  sleAdvaPartNumber OCTET STRING
  sleAdvaSerialNumber OCTET STRING
  sleAdvaFirmwareVersion OCTET STRING
  sleAdvaFPGAVersion OCTET STRING
  sleAdvaHardwareRevision OCTET STRING
  sleAdvaCLEICode OCTET STRING
  sleAdvaTemperature INTEGER
  sleAdvaRailVoltage INTEGER
  sleAdvaPSUStates INTEGER
  sleAdvaPSUType INTEGER
  sleAdvaFansFitted INTEGER
  sleAdvaFanState INTEGER
  sleAdvaTransmitMode INTEGER

SleAdvaGeneralEntry  
SEQUENCE    
  sleAdvaRemInstance INTEGER
  sleAdvaOperationalStatus INTEGER
  sleAdvaLineSpeed Integer32
  sleAdvaMACAddress MacAddress
  sleAdvaConnectorType INTEGER
  sleAdvaAutonegiotation INTEGER
  sleAdvaLinkLossForwarding INTEGER
  sleAdvaAdminState INTEGER
  sleAdvaRemoteInterfaceIndex INTEGER
  sleAdvaUserDefinedString OCTET STRING
  sleAdvaRemoteSignalling INTEGER
  sleAdvaConfiguration INTEGER
  sleAdvaLocalTechnologyAbility BITS
  sleAdvaAdvertisedTechnologyAbility BITS
  sleAdvaReceivedTechnologyAbility BITS
  sleAdvaLocalSectorAbility BITS
  sleAdvaAdvertisedSectorAbility BITS
  sleAdvaReceivedSectorAbility BITS
  sleAdvaDuplexCapabilities INTEGER
  sleAdvaPHYType INTEGER
  sleAdvaPHYTypeList BITS
  sleAdvaMIIDetect INTEGER
  sleAdvaPHYState INTEGER
  sleAdvaGoodFramesTransmitted Integer32
  sleAdvaSingleCollisionFrames Integer32
  sleAdvaMultipleCollisionFrames Integer32
  sleAdvaGoodFramesReceived Integer32
  sleAdvaFCSErrors Integer32
  sleAdvaAlignmentErrors Integer32
  sleAdvaFramesTooLong Integer32
  sleAdvaBytesTransmitted Integer32
  sleAdvaBytesReceived Integer32
  sleAdvaSymbolErrors Integer32

SleAdvaModuleEntry  
SEQUENCE    
  sleAdvaModuleType INTEGER
  sleAdvaModulePartNumber OCTET STRING
  sleAdvaModuleSerialNumber OCTET STRING
  sleAdvaModuleFirmwareVersion OCTET STRING
  sleAdvaModuleSoftwareVersion OCTET STRING
  sleAdvaModuleHardwareRevision OCTET STRING
  sleAdvaModuleCLEICode OCTET STRING

SleAdvaOpticalEntry  
SEQUENCE    
  sleAdvaOpticalThresholdLevel INTEGER
  sleAdvaLinkLength1 INTEGER
  sleAdvaLinkLength2 INTEGER
  sleAdvaLinkLength3 INTEGER
  sleAdvaLinkLength4 INTEGER
  sleAdvaLinkLengthCu INTEGER
  sleAdvaWaveLength INTEGER
  sleAdvaLaserBias INTEGER
  sleAdvaTransmitPower INTEGER
  sleAdvaReceivePower INTEGER
  sleAdvaLaserTxTemperature INTEGER

SleAdvaOamEntry  
SEQUENCE    
  sleAdvaAdminStatus INTEGER
  sleAdvaMode INTEGER
  sleAdvaRemMACAddress OCTET STRING
  sleAdvaRemConfig BITS
  sleAdvaRemPduConfig INTEGER
  sleAdvaLocFlags BITS
  sleAdvaRemFlags BITS
  sleAdvaRemState BITS
  sleAdvaRemVendorOUI INTEGER
  sleAdvaRemDeviceNumber INTEGER
  sleAdvaRemVendorVersion INTEGER
  sleAdvaLocErrSymbolPeriodEventConfig INTEGER
  sleAdvaLocErrFrameEventConfig INTEGER
  sleAdvaLocErrFramePeriodEventConfig INTEGER
  sleAdvaLocErrFrameSecsSummaryEventConfig INTEGER
  sleAdvaPDUsTx Integer32
  sleAdvaPDUsRx Integer32
  sleAdvaUnsupportedCodesRx Integer32
  sleAdvaInfoPDUsTx Integer32
  sleAdvaInfoPDUsRx Integer32
  sleAdvaEventNotificationPDUsTx Integer32
  sleAdvaUniqueEventNotificationPDUsTx Integer32
  sleAdvaDupEventNotificationPDUsTx Integer32
  sleAdvaLoopbackControlPDUsTx Integer32
  sleAdvaLoopbackControlPDUsRx Integer32
  sleAdvaVariableRequestPDUsTx Integer32
  sleAdvaVariableRequestPDUsRx Integer32
  sleAdvaVariableResponsePDUsTx Integer32
  sleAdvaVariableResponsePDUsRx Integer32
  sleAdvaVendorPDUsTx Integer32
  sleAdvaVendorPDUsRx Integer32
  sleAdvaRemFramesLostDuetoOAMErr Integer32
  sleAdvaLocErrSymbolPeriodEvent Integer32
  sleAdvaLocErrFrameSecsEvent Integer32
  sleAdvaLocErrFramePeriodEvent Integer32
  sleAdvaLocErrFrameSecsSummaryEvent Integer32
  sleAdvaRemErrSymbolPeriodEvent Integer32
  sleAdvaRemErrFrameSecsEvent Integer32
  sleAdvaRemoteErrorFramePeriodEvent Integer32
  sleAdvaRemoteErrorFrameSecsSummaryEvent Integer32

SleAlarmLEDEntry  
SEQUENCE    
  sleAlarmLEDType INTEGER
  sleAlarmLEDStatus INTEGER
  sleAlarmLEDLevel INTEGER

SleAlarmLEDLevelEntry  
SEQUENCE    
  sleAlarmLEDLevelIndex INTEGER
  sleAlarmLEDLevelBlock INTEGER
  sleAlarmLEDLevelOperStatus INTEGER

SleY1731TrunkEntry  
SEQUENCE    
  sleY1731TrunkIndex INTEGER
  sleY1731TrunkOamStatus INTEGER
  sleY1731TrunkMeg OCTET STRING

SleY1731MegEntry  
SEQUENCE    
  sleY1731MegIndex Integer32
  sleY1731MegName OCTET STRING
  sleY1731MegLevel Integer32
  sleY1731MegVid Integer32
  sleY1731MegMepEnable INTEGER
  sleY1731MegCcEnable INTEGER
  sleY1731MegCcInterval Integer32
  sleY1731MegCcPriority Integer32
  sleY1731MegCcLossThreshold Integer32
  sleY1731MegCcHoldTime Integer32
  sleY1731MegFaultPriority Integer32
  sleY1731MegFaultKeepTime Integer32
  sleY1731MegFaultClearTime Integer32
  sleY1731MegXcheckEnable INTEGER
  sleY1731MegAisEnable INTEGER
  sleY1731MegAisTransmitEnable INTEGER
  sleY1731MegAisInterval INTEGER
  sleY1731MegAisLevel Integer32
  sleY1731MegAisPriority Integer32
  sleY1731MegLckEnable INTEGER
  sleY1731MegLckTransmitEnable INTEGER
  sleY1731MegLckInterval INTEGER
  sleY1731MegLckLevel Integer32
  sleY1731MegLckPriority Integer32
  sleY1731MegOutOfService INTEGER
  sleY1731MegRapsEnable INTEGER
  sleY1731MegRapsRplOwner INTEGER
  sleY1731MegRapsEastPort Integer32
  sleY1731MegRapsWestPort Integer32
  sleY1731MegRapsRplPort INTEGER
  sleY1731MegRapsHoldOffTime Integer32
  sleY1731MegRapsGuardTime Integer32
  sleY1731MegRapsWaitToRestore Integer32
  sleY1731MegRapsState INTEGER
  sleY1731MegRapsEastPortStatus INTEGER
  sleY1731MegRapsWestPortStatus INTEGER
  sleY1731MegRapsNonRevertive INTEGER
  sleY1731MegRapsForcedSwitchEast INTEGER
  sleY1731MegRapsForcedSwitchWest INTEGER
  sleY1731MegMd OCTET STRING

SleY1731MepEntry  
SEQUENCE    
  sleY1731MepIdentifier Integer32
  sleY1731MepIfIndex Integer32
  sleY1731MepDirection INTEGER
  sleY1731MepEnable INTEGER
  sleY1731MepFngState INTEGER
  sleY1731MepCcEnable INTEGER
  sleY1731MepMacAddress OCTET STRING
  sleY1731MepFaultPriority INTEGER
  sleY1731MepFaultKeepTime Integer32
  sleY1731MepFaultClearTime Integer32
  sleY1731MepHighestPrDefect INTEGER
  sleY1731MepAisEnable INTEGER
  sleY1731MepAisTransmitEnable INTEGER
  sleY1731MepLckEnable INTEGER
  sleY1731MepLckTransmitEnable INTEGER
  sleY1731MepOutOfService INTEGER
  sleY1731MepDlmEnabledRmep Integer32
  sleY1731MepDefects BITS
  sleY1731MepCcmSequenceErrors Counter32
  sleY1731MepCciSentCcms Counter32
  sleY1731MepNextLbmTransId Integer32
  sleY1731MepLbSuccessRate Integer32
  sleY1731MepLbRoundtripMin Counter32
  sleY1731MepLbRoundtripMax Counter32
  sleY1731MepLbRoundtripAvg Counter32
  sleY1731MepLbrIn Counter32
  sleY1731MepLbrInOutOfOrder Counter32
  sleY1731MepTstLbrInBitError Counter32
  sleY1731MepTstLbrInCrcError Counter32
  sleY1731MepLtmNextSeqNumber Integer32
  sleY1731MepUnexpLtrIn Counter32
  sleY1731MepLbrOut Counter32
  sleY1731MepTmLbmCount Integer32
  sleY1731MepTmLbrCount Integer32
  sleY1731MepTmLbrFirstLostId Integer32
  sleY1731MepTmLbrMaxRate Integer32
  sleY1731MepTmTstCount Integer32
  sleY1731MepCcmFrameLossNearMin Integer32
  sleY1731MepCcmFrameLossNearMax Integer32
  sleY1731MepCcmFrameLossNearSum Integer32
  sleY1731MepCcmFrameLossFarMin Integer32
  sleY1731MepCcmFrameLossFarMax Integer32
  sleY1731MepCcmFrameLossFarSum Integer32
  sleY1731MepPmEnable INTEGER
  sleY1731MepCcmFrameLossNearRatio Integer32
  sleY1731MepCcmFrameLossNearAvgRatio Integer32
  sleY1731MepCcmFrameLossFarRatio Integer32
  sleY1731MepCcmFrameLossFarAvgRatio Integer32
  sleY1731MepRllcf INTEGER
  sleY1731MepRllcfHoldOff Integer32
  sleY1731MepRllcfGuardTime Integer32

SleY1731MipEntry  
SEQUENCE    
  sleY1731MipPort Integer32
  sleY1731MipLevel Integer32
  sleY1731MipType INTEGER

SleY1731XcheckEntry  
SEQUENCE    
  sleY1731XcheckMepIdentifier Integer32
  sleY1731XcheckMepState INTEGER

SleY1731CcMacEntry  
SEQUENCE    
  sleY1731CcMacAddress OCTET STRING

SleY1731AisMacEntry  
SEQUENCE    
  sleY1731AisMacAddress OCTET STRING

SleY1731LckMacEntry  
SEQUENCE    
  sleY1731LckMacAddress OCTET STRING

SleY1731RmepEntry  
SEQUENCE    
  sleY1731RmepIdentifier Integer32
  sleY1731RmepState INTEGER
  sleY1731RmepFailedOkTime TimeTicks
  sleY1731RmepMacAddress OCTET STRING
  sleY1731RmepIfIndex Integer32
  sleY1731RmepRdi INTEGER
  sleY1731RmepLoc INTEGER
  sleY1731RmepReceiveTstCount Counter32
  sleY1731RmepReceiveTstOutOfOrder Counter32
  sleY1731RmepReceiveTstBitError Counter32
  sleY1731RmepReceiveTstCrcError Counter32
  sleY1731RmepReceiveTmTstCount Counter32
  sleY1731RmepReceiveTmTstLostId Integer32
  sleY1731RmepLmrFrameLossNearMin Integer32
  sleY1731RmepLmrFrameLossNearMax Integer32
  sleY1731RmepLmrFrameLossNearSum Integer32
  sleY1731RmepLmrFrameLossFarMin Integer32
  sleY1731RmepLmrFrameLossFarMax Integer32
  sleY1731RmepLmrFrameLossFarSum Integer32
  sleY1731RmepReceive1dmCount Counter32
  sleY1731Rmep1dmFrameDelayMin Integer32
  sleY1731Rmep1dmFrameDelayMax Integer32
  sleY1731Rmep1dmFrameDelayAvg Integer32
  sleY1731Rmep1dmFrameDelayVar Integer32
  sleY1731RmepReceiveDmrCount Counter32
  sleY1731RmepDmrFrameDelayMin Integer32
  sleY1731RmepDmrFrameDelayMax Integer32
  sleY1731RmepDmrFrameDelayAvg Integer32
  sleY1731RmepDmrFrameDelayVar Integer32
  sleY1731RmepLmrFrameLossNearRatio Integer32
  sleY1731RmepLmrFrameLossNearAvgRatio Integer32
  sleY1731RmepLmrFrameLossFarRatio Integer32
  sleY1731RmepLmrFrameLossFarAvgRatio Integer32

SleY1731LbrMcastEntry  
SEQUENCE    
  sleY1731LbrReceiveOrder Integer32
  sleY1731LbrRemoteMacAddress OCTET STRING

SleY1731LbrUcastEntry  
SEQUENCE    
  sleY1731LbrTransId Integer32
  sleY1731LbrRoundTripTime Integer32

SleY1731LtrEntry  
SEQUENCE    
  sleY1731LtrSeqNumber Integer32
  sleY1731LtrReceiveOrder Integer32
  sleY1731LtrRoundTripTime Integer32
  sleY1731LtrTtl Integer32
  sleY1731LtrForwarded INTEGER
  sleY1731LtrTerminalMep INTEGER
  sleY1731LtrLastEgressIdentifier OCTET STRING
  sleY1731LtrNextEgressIdentifier OCTET STRING
  sleY1731LtrRelay INTEGER
  sleY1731LtrIngress INTEGER
  sleY1731LtrIngressMac OCTET STRING
  sleY1731LtrIngressPort Integer32
  sleY1731LtrEgress INTEGER
  sleY1731LtrEgressMac OCTET STRING
  sleY1731LtrEgressPort Integer32

SleY1731ConfigErrorEntry  
SEQUENCE    
  sleY1731ConfigErrorVid Integer32
  sleY1731ConfigErrorIfIndex Integer32
  sleY1731ConfigErrorType BITS

SleY1731MipCcdbEntry  
SEQUENCE    
  sleY1731MipCcdbIndex Integer32
  sleY1731MipCcdbVlanId Integer32
  sleY1731MipCcdbMacAddr OCTET STRING
  sleY1731MipCcdbPort Integer32
  sleY1731MipCcdbKeepTime TimeTicks

SleY1731UREntry  
SEQUENCE    
  sleY1731URMegIndex INTEGER
  sleY1731URMegName OCTET STRING
  sleY1731URDedicatedVlan INTEGER
  sleY1731UREnableStatus INTEGER
  sleY1731URConnectivityCheckMeg OCTET STRING
  sleY1731URPrimaryMepId INTEGER
  sleY1731URSecondaryMepId INTEGER
  sleY1731URControlVlan INTEGER
  sleY1731URNodeConf INTEGER
  sleY1731URNodeConfPortNum INTEGER
  sleY1731URNodeConfPortStatus INTEGER
  sleY1731URNonRevertive INTEGER
  sleY1731URTrustMemberCount INTEGER
  sleY1731URWaitToRestore INTEGER
  sleY1731URForceSwitch INTEGER
  sleY1731URSFCondition INTEGER
  sleY1731URTrafficVlan OCTET STRING
  sleY1731URState INTEGER
  sleY1731URManualSwitch INTEGER

SleY1731LocRefMepEntry  
SEQUENCE    
  sleY1731LRMepIndex Integer32
  sleY1731LRMepDMegIndex Integer32
  sleY1731LRMepDMepIdentifier Integer32
  sleY1731LRMepDRmepIdentifier Integer32

SleCfmTrunkEntry  
SEQUENCE    
  sleCfmTrunkIndex INTEGER
  sleCfmTrunkMdName OCTET STRING
  sleCfmTrunkMaVid INTEGER

SleCfmMdEntry  
SEQUENCE    
  sleCfmMdIndex Integer32
  sleCfmMdName OCTET STRING
  sleCfmMdLevel Integer32
  sleCfmMdMepEnable INTEGER
  sleCfmMdCcEnable INTEGER
  sleCfmMdCcInterval Integer32
  sleCfmMdCcPriority Integer32
  sleCfmMdCcLossThreshold Integer32
  sleCfmMdCcHoldTime Integer32
  sleCfmMdFaultPriority INTEGER
  sleCfmMdFaultKeepTime Integer32
  sleCfmMdFaultClearTime Integer32
  sleCfmMdXcheckEnable INTEGER

SleCfmMaEntry  
SEQUENCE    
  sleCfmMaIndex Integer32
  sleCfmMaName OCTET STRING
  sleCfmMaVid Integer32
  sleCfmMaMepEnable INTEGER
  sleCfmMaCcEnable INTEGER
  sleCfmMaCcInterval Integer32
  sleCfmMaCcPriority Integer32
  sleCfmMaCcLossThreshold Integer32
  sleCfmMaCcFaultPriority INTEGER
  sleCfmMaCcFaultKeepTime Integer32
  sleCfmMaCcFaultClearTime Integer32
  sleCfmMaXcheckEnable INTEGER

SleCfmMepEntry  
SEQUENCE    
  sleCfmMepIdentifier Integer32
  sleCfmMepIfIndex Integer32
  sleCfmMepDirection INTEGER
  sleCfmMepEnable INTEGER
  sleCfmMepFngState INTEGER
  sleCfmMepCcEnable INTEGER
  sleCfmMepMacAddress OCTET STRING
  sleCfmMepCcPriority Integer32
  sleCfmMepFaultPriority INTEGER
  sleCfmMepFaultKeepTime Integer32
  sleCfmMepFaultClearTime Integer32
  sleCfmMepHighestPrDefect INTEGER
  sleCfmMepDefects BITS
  sleCfmMepCciSentCcms Counter32
  sleCfmMepNextLbmTransId Integer32
  sleCfmMepLbrIn Counter32
  sleCfmMepLbrInOutOfOrder Counter32
  sleCfmMepLtmNextSeqNumber Integer32
  sleCfmMepUnexpLtrIn Counter32

SleCfmMipEntry  
SEQUENCE    
  sleCfmMipPort Integer32
  sleCfmMipLevel Integer32
  sleCfmMipType INTEGER

SleCfmXcheckEntry  
SEQUENCE    
  sleCfmXcheckMepIdentifier Integer32
  sleCfmXcheckMepState INTEGER

SleCfmRmepEntry  
SEQUENCE    
  sleCfmRmepIdentifier Integer32
  sleCfmRmepState INTEGER
  sleCfmRmepMacAddress OCTET STRING
  sleCfmRmepIfIndex Integer32
  sleCfmRmepRdi INTEGER
  sleCfmRmepPortStatus INTEGER
  sleCfmRmepInterfaceStatus INTEGER

SleCfmLtrEntry  
SEQUENCE    
  sleCfmLtrSeqNumber Integer32
  sleCfmLtrReceiveOrder Integer32
  sleCfmLtrTtl Integer32
  sleCfmLtrForwarded INTEGER
  sleCfmLtrTerminalMep INTEGER
  sleCfmLtrLastEgressIdentifier OCTET STRING
  sleCfmLtrNextEgressIdentifier OCTET STRING
  sleCfmLtrRelay INTEGER
  sleCfmLtrIngress INTEGER
  sleCfmLtrIngressMac OCTET STRING
  sleCfmLtrIngressPort Integer32
  sleCfmLtrEgress INTEGER
  sleCfmLtrEgressMac OCTET STRING
  sleCfmLtrEgressPort Integer32

SleCfmConfigErrorEntry  
SEQUENCE    
  sleCfmConfigErrorVid Integer32
  sleCfmConfigErrorIfIndex Integer32
  sleCfmConfigErrorType BITS

SleCfmMipCcdbEntry  
SEQUENCE    
  sleCfmMipCcdbIndex Integer32
  sleCfmMipCcdbVlanId Integer32
  sleCfmMipCcdbMacAddr OCTET STRING
  sleCfmMipCcdbPort Integer32
  sleCfmMipCcdbKeepTime OCTET STRING

SleRapsRingEntry  
SEQUENCE    
  sleRapsRingId Integer32
  sleRapsRingType INTEGER
  sleRapsRingLevel INTEGER
  sleRapsRingCtrlVlan INTEGER
  sleRapsRingTrafficVlans OCTET STRING
  sleRapsRingVirtualVlan INTEGER
  sleRapsRingNodeId OCTET STRING
  sleRapsRingEnable INTEGER
  sleRapsRingBridgeRole INTEGER
  sleRapsRingState INTEGER
  sleRapsRingEastPort Integer32
  sleRapsRingEastPortStatus INTEGER
  sleRapsRingWestPort Integer32
  sleRapsRingWestPortStatus INTEGER
  sleRapsRingRplPort INTEGER
  sleRapsRingIcPort INTEGER
  sleRapsRingIcNode INTEGER
  sleRapsRingMultipleFailure INTEGER
  sleRapsRingPropagateTc INTEGER
  sleRapsRingNonRevertive INTEGER
  sleRapsRingForcedSwitch INTEGER
  sleRapsRingManualSwitch INTEGER
  sleRapsRingHoldOffTime INTEGER
  sleRapsRingGuardTime INTEGER
  sleRapsRingWaitToRestore INTEGER
  sleRapsRingWaitToBlock INTEGER
  sleRapsRingInstId Integer32
  sleRapsRingChannel INTEGER
  sleRapsRingPassThrough INTEGER
  sleRapsRingVerifiedTime INTEGER

SleFaultMonitorDaemonEntry  
SEQUENCE    
  sleFaultMonitorDaemonName OCTET STRING
  sleFaultMonitorDaemonPid Integer32
  sleFaultMonitorDaemonAdminStatus INTEGER
  sleFaultMonitorDaemonCrashAction INTEGER
  sleFaultMonitorDaemonTimeoutAction INTEGER
  sleFaultMonitorDaemonThreshold Integer32
  sleFaultMonitorDaemonThresholded Integer32
  sleFaultMonitorDaemonStartupThresholded Integer32
  sleFaultMonitorDaemonWatchdogAdminStatus INTEGER
  sleFaultMonitorDaemonWatchdogThreshold Integer32
  sleFaultMonitorDaemonWatchdogCount Integer32

SleFaultMonitorRHMHostEntry  
SEQUENCE    
  sleFaultMonitorRHMHostAddr IpAddress

Sle2EthCfmBridgeEntry  
SEQUENCE    
  sle2EthCfmBridgeId Integer32
  sle2EthCfmBridgeDefaultMdLevel Integer32
  sle2EthCfmBridgeDefaultMepId Integer32
  sle2EthCfmBridgeAutomatic INTEGER
  sle2EthCfmBridgeConfigDefaultMdLevel Integer32
  sle2EthCfmBridgeConfigDefaultMdMipCreation INTEGER
  sle2EthCfmBridgeLtrCacheEnable INTEGER
  sle2EthCfmBridgeLtrCacheSize Integer32

Sle2EthCfmVlanConfigEntry  
SEQUENCE    
  sle2EthCfmVlanConfigPrimaryVid Integer32
  sle2EthCfmVlanConfigSecondaryVid Integer32
  sle2EthCfmVlanConfigSecondaryBridgeId Integer32

Sle2EthCfmVlanInfoEntry  
SEQUENCE    
  sle2EthCfmVlanInfoVid Integer32
  sle2EthCfmVlanInfoPriority Integer32

Sle2EthCfmDefMdLevelEntryEntry  
SEQUENCE    
  sle2EthCfmDefMdLevelEntryVid Integer32
  sle2EthCfmDefMdLevelEntryLevel Integer32
  sle2EthCfmDefMdLevelEntryMipCreation INTEGER

Sle2EthCfmMdEntry  
SEQUENCE    
  sle2EthCfmMdName OCTET STRING
  sle2EthCfmMdType INTEGER
  sle2EthCfmMdLevel Integer32
  sle2EthCfmMdMipCreation INTEGER

Sle2EthCfmMaEntry  
SEQUENCE    
  sle2EthCfmMaName OCTET STRING
  sle2EthCfmMaVid Integer32
  sle2EthCfmMaType INTEGER
  sle2EthCfmMaMipCreation INTEGER
  sle2EthCfmMaCcInterval Integer32
  sle2EthCfmMaElmi INTEGER
  sle2EthCfmMaConnectivityStatus INTEGER
  sle2EthCfmMaConfiguredRmepCount Integer32
  sle2EthCfmMaConvergedRmepCount Integer32

Sle2EthCfmMepInfoEntry  
SEQUENCE    
  sle2EthCfmMepInfoId Integer32
  sle2EthCfmMepInfoIfindex Integer32
  sle2EthCfmMepInfoLocalVid Integer32
  sle2EthCfmMepInfoDirection INTEGER
  sle2EthCfmMepInfoActive INTEGER
  sle2EthCfmMepInfoUNI INTEGER
  sle2EthCfmMepInfoCcmStatus INTEGER
  sle2EthCfmMepInfoCcmType INTEGER
  sle2EthCfmMepInfoCcmRmepId Integer32
  sle2EthCfmMepInfoLocalMacAddr OCTET STRING
  sle2EthCfmMepInfoRdi INTEGER
  sle2EthCfmMepInfoService INTEGER
  sle2EthCfmMepInfoLckLevel Integer32
  sle2EthCfmMepInfoDlmState INTEGER
  sle2EthCfmMepInfoDlmRmepId Integer32
  sle2EthCfmMepInfoConnectivityStatus INTEGER
  sle2EthCfmMepInfoInterval Integer32

Sle2EthCfmMepAttrEntry  
SEQUENCE    
  sle2EthCfmMepAttrActive INTEGER
  sle2EthCfmMepAttrCcmLtmPriority Integer32
  sle2EthCfmMepAttrLowPrDef INTEGER
  sle2EthCfmMepAttrFngAlarmTime Integer32
  sle2EthCfmMepAttrResetFngTime Integer32
  sle2EthCfmMepAttrCcmLtmFlag Integer32
  sle2EthCfmMepAttrTxLtmTargetMac OCTET STRING
  sle2EthCfmMepAttrTxLtmTargetMepId Integer32
  sle2EthCfmMepAttrTxLtmTargetIsMepId INTEGER
  sle2EthCfmMepAttrTxLtmTtl Integer32
  sle2EthCfmMepAttrTxLtmEgressId OCTET STRING
  sle2EthCfmMepAttrTxLbmStatus INTEGER
  sle2EthCfmMepAttrTxLbmDestMac OCTET STRING
  sle2EthCfmMepAttrTxLbmDestMepId Integer32
  sle2EthCfmMepAttrTxLbmDestIsMepId INTEGER
  sle2EthCfmMepAttrTxLbmMessages Integer32
  sle2EthCfmMepAttrTxLbmDataTlv OCTET STRING
  sle2EthCfmMepAttrTxLbmVlanPriority Integer32
  sle2EthCfmMepAttrTxLbmVlanDropEnable INTEGER
  sle2EthCfmMepAttrTxLbmTimeOut Integer32
  sle2EthCfmMepAttrLbrTimeOut Integer32

Sle2EthCfmXcheckEntry  
SEQUENCE    
  sle2EthCfmXcheckRmepId Integer32
  sle2EthCfmXcheckRmepMac OCTET STRING

Sle2EthCfmLoopbackEntry  
SEQUENCE    
  sle2EthCfmLbFrameType INTEGER
  sle2EthCfmLbReceivedCount Integer32
  sle2EthCfmLbTxMessages Integer32
  sle2EthCfmLbResponseCount Integer32
  sle2EthCfmLbRemoteMacAddress OCTET STRING

Sle2EthCfmLinkTraceEntry  
SEQUENCE    
  sle2EthCfmLtrMepMac OCTET STRING
  sle2EthCfmLtrHops Integer32
  sle2EthCfmLtrRelay INTEGER
  sle2EthCfmLtrIngressEgress INTEGER
  sle2EthCfmLtrIngress INTEGER
  sle2EthCfmLtrEgress INTEGER

Sle2EthCfmAisInfoEntry  
SEQUENCE    
  sle2EthCfmAisInfoStatus INTEGER
  sle2EthCfmAisInfoDefectConditions INTEGER
  sle2EthCfmAisInfoLevel Integer32
  sle2EthCfmAisInfoFrameType INTEGER
  sle2EthCfmAisInfoRmepMac OCTET STRING
  sle2EthCfmAisInfoInterval Integer32
  sle2EthCfmAisInfoReceivedDefectConditions INTEGER
  sle2EthCfmAisInfoLastReceivedDefectCondition INTEGER

Sle2EthCfmSrvAisEntry  
SEQUENCE    
  sle2EthCfmSrvAisIfIndex Integer32
  sle2EthCfmSrvAisEnable INTEGER
  sle2EthCfmSrvAislevel Integer32
  sle2EthCfmSrvAisInterval Integer32

Sle2EthCfmLmmStatusEntry  
SEQUENCE    
  sle2EthCfmLmmStatusRmepId Integer32
  sle2EthCfmLmmStatusStartTime TimeTicks
  sle2EthCfmLmmStatusCurrentTime TimeTicks
  sle2EthCfmLmmStatusEndTime TimeTicks
  sle2EthCfmLmmStatusNeerLoss Integer32
  sle2EthCfmLmmStatusFarLoss Integer32
  sle2EthCfmLmmStatusCurNeerLoss Integer32
  sle2EthCfmLmmStatusCurFarLoss Integer32

Sle2EthCfmRmepEntry  
SEQUENCE    
  sle2EthCfmRmepId Integer32
  sle2EthCfmRempMepId Integer32
  sle2EthCfmRmepLevel Integer32
  sle2EthCfmRmepMaVid Integer32
  sle2EthCfmRmepActiveState INTEGER
  sle2EthCfmRmepRemoteMac OCTET STRING
  sle2EthCfmRmepRdi INTEGER
  sle2EthCfmRmepFlags INTEGER

Sle2EthCfmMipEntry  
SEQUENCE    
  sle2EthCfmMipVid Integer32
  sle2EthCfmMipMdLevel Integer32
  sle2EthCfmMipIfindex Integer32
  sle2EthCfmMipLocalMac OCTET STRING

Sle2EthCfmStatisticsEntry  
SEQUENCE    
  sle2EthCfmStatCcmSent Gauge32
  sle2EthCfmStatCcmRevOutOfSeq Gauge32
  sle2EthCfmStatLbrSent Gauge32
  sle2EthCfmStatLbrRevValid Gauge32
  sle2EthCfmStatLbrRevBadMsdu Gauge32
  sle2EthCfmStatLbrRevOutOfSeq Gauge32
  sle2EthCfmStatLtrRevUnexpected Counter32

Sle2EthCfmActiveLevelEntry  
SEQUENCE    
  sle2EthCfmAcitveLevelIfIndex Integer32
  sle2EthCfmActiveLevelStatus BITS

Sle2EthCfmErrorEntry  
SEQUENCE    
  sle2EthCfmErrorIndex Integer32
  sle2EthCfmErrorMdLevel Integer32
  sle2EthCfmErrorMaVid Integer32
  sle2EthCfmErrorMepId Integer32
  sle2EthCfmErrorRmepMac OCTET STRING
  sle2EthCfmErrorReason INTEGER
  sle2EthCfmErrorServiceId OCTET STRING

Sle2EthCfmLtCacheEntry  
SEQUENCE    
  sle2EthCfmLtCacheIndex Integer32
  sle2EthCfmLtCacheSrcMac OCTET STRING
  sle2EthCfmLtCacheHops Integer32
  sle2EthCfmLtCacheRelay INTEGER

Sle2ErpsPhyRingEntry  
SEQUENCE    
  sle2ErpsPhyRingBridgeId Integer32
  sle2ErpsPhyRingName OCTET STRING
  sle2ErpsPhyRingEastPort Integer32
  sle2ErpsPhyRingEastMepId Integer32
  sle2ErpsPhyRingEastRmepId Integer32
  sle2ErpsPhyRingWestPort Integer32
  sle2ErpsPhyRingWestMepId Integer32
  sle2ErpsPhyRingWestRmepId Integer32

Sle2ErpsProfileEntry  
SEQUENCE    
  sle2ErpsProfileBridgeId Integer32
  sle2ErpsProfileName OCTET STRING
  sle2ErpsProfileHoldOffTime INTEGER
  sle2ErpsProfileGuardTime INTEGER
  sle2ErpsProfileWaitToRestore INTEGER
  sle2ErpsProfileNonRevertive INTEGER

Sle2ErpsInstanceEntry  
SEQUENCE    
  sle2ErpsInstBridgeId Integer32
  sle2ErpsInstName OCTET STRING
  sle2ErpsInstPhyRingName OCTET STRING
  sle2ErpsInstProfileName OCTET STRING
  sle2ErpsInstRingId Integer32
  sle2ErpsInstLevel Integer32
  sle2ErpsInstRplRole INTEGER
  sle2ErpsInstRplRolePort INTEGER
  sle2ErpsInstSubRingBlock INTEGER
  sle2ErpsInstCtrlVlan Integer32
  sle2ErpsInstTafficVlans OCTET STRING
  sle2ErpsInstChannelMode INTEGER
  sle2ErpsInstVChannelVid Integer32
  sle2ErpsInstVChannelAttachInstName OCTET STRING
  sle2ErpsInstPropagateTc INTEGER
  sle2ErpsInstActive INTEGER
  sle2ErpsInstStatus INTEGER
  sle2ErpsInstEastIfindex Integer32
  sle2ErpsInstEastPortStatus INTEGER
  sle2ErpsInstWestIfindex Integer32
  sle2ErpsInstWestPortStatus INTEGER
  sle2ErpsInstVersion INTEGER
  sle2ErpsInstDataTrafficInheritanceInstName OCTET STRING

Defined Values

sleFaultMgmt 1.3.6.1.4.1.6296.101.4
The MIB module representing multiple logical entities for the SLE alarm management.
MODULE-IDENTITY    

sleFaultMgmtBase 1.3.6.1.4.1.6296.101.4.1
OBJECT IDENTIFIER    

sleFaultMgmtBaseGroup 1.3.6.1.4.1.6296.101.4.1.1
OBJECT IDENTIFIER    

sleFaultDefaultSeverity 1.3.6.1.4.1.6296.101.4.1.1.1
The severity of alarm.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), warning(4), intermediate(5)  

sleFaultCriteriaSeverity 1.3.6.1.4.1.6296.101.4.1.1.2
The severity of alarm.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), warning(4), intermediate(5)  

sleFaultNotifiyActivity 1.3.6.1.4.1.6296.101.4.1.1.3
The severity of alarm.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disabled(0), enabled(1)  

sleFaultNextSeqNum 1.3.6.1.4.1.6296.101.4.1.1.4
Sequence number for the alarm synchronization. This value has a number to be used for the next alarm trap.
Status: current Access: read-only
OBJECT-TYPE    
  Counter32  

sleFaultMgmtBaseControl 1.3.6.1.4.1.6296.101.4.1.2
OBJECT IDENTIFIER    

sleFaultControlRequest 1.3.6.1.4.1.6296.101.4.1.2.1
This attribute identifies the control commands. updateAlarmList: the NE updates entries of alarms in the sleAlarmListTable after having changed alarm severities of alarms (due to change profile pointers in managed entities or after modification of alarm severities in profiles). This command should be applied once after having finisled modifications of severties. modifyAlarmSeverity: modifies the severity of an alarm in specific profile. createAlarmSeverityProfile: creates a new profile with default severities. The severities then have to be modified with command changeAlarmSeverity. deleteAlarmSeverityProfile: deletes a profile. Profile 1 is not allowed to be deleted. Notifications : none
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER setAlarmDefaultSeverity(1), setAlarmCriteriaSeverity(2), setNotificationActivity(3)  

sleFaultControlStatus 1.3.6.1.4.1.6296.101.4.1.2.2
The status of a control request.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleFaultControlTimer 1.3.6.1.4.1.6296.101.4.1.2.3
The maximum wait time for the manager for command ending. For long running commands. The manager reads this value from the DSLAM.
Status: current Access: read-write
OBJECT-TYPE    
  Unsigned32  

sleFaultControlTimeStamp 1.3.6.1.4.1.6296.101.4.1.2.4
The time stamp of the last command (end of command).
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleFaultControlReqResult 1.3.6.1.4.1.6296.101.4.1.2.5
The result of the last user command.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlRequestResultType  

sleFaultControlDefaultSeverity 1.3.6.1.4.1.6296.101.4.1.2.6
The severity of alarm.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), warning(4), intermediate(5)  

sleFaultControlCriteriaSeverity 1.3.6.1.4.1.6296.101.4.1.2.7
The severity of alarm.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), warning(4), intermediate(5)  

sleFaultControlNotifiyActivity 1.3.6.1.4.1.6296.101.4.1.2.8
The severity of alarm.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER diabled(0), enabled(1)  

sleFaultMgmtBaseNotification 1.3.6.1.4.1.6296.101.4.1.3
OBJECT IDENTIFIER    

sleAlarmDefaultSeverityChanged 1.3.6.1.4.1.6296.101.4.1.3.1
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmDefaultCriteriaChanged 1.3.6.1.4.1.6296.101.4.1.3.2
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleNotificationActivityChanged 1.3.6.1.4.1.6296.101.4.1.3.3
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmSeverity 1.3.6.1.4.1.6296.101.4.2
OBJECT IDENTIFIER    

sleAlarmSeverityTable 1.3.6.1.4.1.6296.101.4.2.1
The alarm severity table. The alarm severity table associates profile index and AlarmID pairs with severities to be used for alarm traps. (Note that this table does not apply to cleared alarms).
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAlarmSeverityEntry

sleAlarmSeverityEntry 1.3.6.1.4.1.6296.101.4.2.1.1
Entry of the alarm severity table.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAlarmSeverityEntry  

sleAlarmSeverityIndex 1.3.6.1.4.1.6296.101.4.2.1.1.1
The following alarms is devided by the specific character, ===============. The division basis is that alarms is bounded or released. 001: portDown: To detect whether physical or logical interface's link status is up or down. 002: portUp: =============== 003: portRemoved: To detect whether physical interface is installed or not. 004: portInstalled: =============== 005: powerFail: To detect whether power module's operation status is good or not. (Without doubt, more than 1 power module should be equipped.) 006: powerOK: =============== 007: powerRemoved: To detect whether power module is installed or not, through the PLD access. (Without doubt, more than 1 power module should be equipped.) 008: powerInstalled: =============== 009: fanFail: To detect whether FAN module's operation status is good or not. 010: fanOK: =============== 011: fanRemoved: To detect whether FAN module is installed or not, through the PLD access. 012: fanInstalled: =============== 013: moduleRemoved: To detect whether physical interface module is installed or not, through the S/W I2C 014: moduleInstalled: =============== 015: systemRestart: Network system is restarted by operator. This is not H/W start but S/W start. =============== 016: systemStart: Network system is restarted by operator or system status. This is not S/W start but H/W start. (This alarm isn't used current) =============== 017: broadcastOver: To detect the receipt of broadcast packet. (This alarm isn't used current) 018: broadcastUnder: =============== 019: cpuOverLoad: To detect whether the configured CPU load threshold is less than current CPU load usage or not. 020: cpuUnderLoad: =============== 021: memoryOverUsed: To detect whether the configured memory threshold is less than current memory usage or not. 022: memoryUnderUsed: =============== 023: portOverThreshold: To detect whether the configured physical or logical interface threshold is less than delta value of current interface's InOctects or not. 024: portUnderThreshold: =============== 025: temperatureHigh: To detect whether the configured system's temperature threshold is less than current temperature or not. 026: temperatureLow: =============== 027: mfgdBlocked: To detect whether the specific MAC by MAC flood guard is blocked or not. 028: mfgdReleased: =============== 029: ipConflict: To detect whether the same IP address on different network node is configured or not. 030: ipUnconflict: =============== 031: dhcpLeaseShortage: To detect whether IP address that can be assigned to subscriber by DHCP server is sufficient or not. 032: dhcpLeaseSufficient: =============== 033: dhcpOccuredIllegalEntry: To detect whether a subsceiber is using a static IP address or not. 034: dhcpRemovedIllegalEntry: =============== 035: rmonAlarmRising: To detect whether rising threshold of a specific MO in RMON alarm sampling is less than current calculated value by alarm sample type or not. But alarm generation would be issued by means of event type in RMON event. 036: rmonAlarmNoRising: =============== 037: rmonAlarmFalling: To detect whether falling threshold of a specific MO in RMON alarm sampling is less than current calculated value by alarm sample type or not. But alarm generation would be issued by means of event type in RMON event. 038: rmonAlarmNoFalling: =============== 039: bpduGuardDisabled: To detect whether edge ports is guarded about superior BPDU or not. In case of insertion edge node with 0 or lower priority than priority of current root bridge node, it will be disarrangement during a short time because of recognition a new inserted node as root bridge. So these edge ports is guarded, and then edge ports is blocked about all superior BPDU. So STP reconfiguration doesn't use this edge ports. =============== 040: rootGuardDisabled: To detect whether edge ports is guarded about superior BPDU or not. In case of insertion edge node with 0 or lower priority than priority of current root bridge node, it will be disarrangement during a short time because of recognition a new inserted node as root bridge. So, Root guard prevents a new inserted node from being root bridge as well as receiving a superior BPDU from root bridge. but this node participates in STP topology reconfiguration. If root bridge does not send a superior BPDU, then this node acts usually though STP state change. =============== 041: portSecurity: To detect whether interface is configured for security or not. This can be used to prevent MAC from flooding as well as spoofing. That is, As a result, this will obstruct an attack as like DoS attack. =============== 042: userLogin: 043: userLogout: =============== 051: igmpGroupJoined: To detect whether a subscriber is joined a multicast group or not. 052: igmpGroupLeaved: =============== 053: dhcpIpaddressBound: To detect wether a dynamic IP address is assigned to a subscriber or not. 054: dhcpIpaddressFree: =============== 055: doorOpened: To detect whether outer door is opeded or not, as external alarm. 056: doorClosed: =============== 057: powerModeChangedPowerToBattery: To detect whether a system is using AC power or battery. A system is using AC power usually. If there is any power problems as like a power failure, a system is using battery instead of AC power. 058: powerModeChangedBatteryToPower: =============== 059: batterylowcapacity: To detect whether current battery capacity is less capacity threshold according to battery usage or not. The capacity of AC power is 16 voltage and battery is 20. Capacity threshold is configured by H/W specification. So operator can't change it. 060: batterynormalcapacity: =============== 061: batteryhighTemperature: To detect whether current temperature of battery is greater than temperature threshold or not. 062: batterynormalTemperature: =============== 063: authenticationFail: To detect whether the connected user is authentic or non-authentic. 064: authenticationNofail: =============== 065: psuAcHighTemperature: To detect whether current temperature of Power Supply Unit is greater than temperature threshold or not. 066: psuAcNormalTemperature: =============== 067: batteryRemoved: To detect whether battery is equipped at network system or not. Battery is used as redundancy power service. So operator can decide the installation of battery. 068: batteryEquipped: =============== 069: batteryLowVoltage: To detect whether battery voltage is less than 12.5 volt or not. 12.5 volt value is configured by H/W specification. So operator can't change it. 070: batteryNormalVoltage: =============== 071: adminAccessLogin: To detect whether a operator connects at this network system or not. 072: adminAccessLogout: =============== 073: cfgdBlocked: To detect whether it is blocked flood to CPU or not. 074: cfgdReleased: =============== 075: sfgdBlocked: To detect whether it is blocked flood to system or not. 076: sfgdReleased: =============== 077: swWatchdogAbnormalState: To detect whether a specific process acts normally or not. 078: swWatchdogNormalState: =============== 079: swWatchdogDetectError: To detect whether a specific process is detected a error related to itself or cleared. 080: swWatchdogClearError: =============== 081: ppsControlBlocked: To detect whether it is blocked by pps-control or not. 082: ppsControlReleased: =============== 083: gotDMITempHighOverAlarm: To detect whether internal temperature exceeds high alarm level or not. 084: gotDMITempHighFallAlarm: =============== 085: gotDMITempLowOverAlarm: To detect whether internal temperature is below low alarm level or not. 086: gotDMITempLowFallAlarm: =============== 087: gotDMITempHighOverWarning: To detect whether internal temperature exceeds high warning level or not. 088: gotDMITempHighFallWarning: =============== 089: gotDMITempLowOverWarning: To detect whether internal temperature is below low warning level or not. 090: gotDMITempLowFallWarning: =============== 091: gotDMIVolHighOverAlarm: To detect whether internal supply voltage exceeds high alarm level or not. 092: gotDMIVolHighFallAlarm: =============== 093: gotDMIVolLowOverAlarm: To detect whether internal supply voltage is below low alarm level or not. 094: gotDMIVolLowFallAlarm: =============== 095: gotDMIVolHighOverWarning: To detect whether internal supply voltage exceeds high warning level or not. 096: gotDMIVolHighFallWarning: =============== 097: gotDMIVolLowOverWarning: To detect whether internal supply voltage is below low warning level or not. 098: gotDMIVolLowFallWarning: =============== 099: gotDMITxBiasHighOverAlarm: To detect whether TX Bias current exceeds high alarm level or not. 100: gotDMITxBiasHighFallAlarm: =============== 101: gotDMITxBiasLowOverAlarm: To detect whether TX Bias current is below low alarm level or not. 102: gotDMITxBiasLowFallAlarm: =============== 103: gotDMITxBiasHighOverWarning: To detect whether TX Bias current exceeds high warning level or not. 104: gotDMITxBiasHighFallWarning: =============== 105: gotDMITxBiasLowOverWarning: To detect whether TX Bias current is below low warning level or not. 106: gotDMITxBiasLowFallWarning: =============== 107: gotDMITxPowerHighOverAlarm: To detect whether TX output power exceeds high alarm level or not. 108: gotDMITxPowerHighFallAlarm: =============== 109: gotDMITxPowerLowOverAlarm: To detect whether TX output power is below low alarm level or not. 110: gotDMITxPowerLowFallAlarm: =============== 111: gotDMITxPowerHighOverWarning: To detect whether TX output power exceeds high warning level or not. 112: gotDMITxPowerHighFallWarning: =============== 113: gotDMITxPowerLowOverWarning: To detect whether TX output power is below low warning level or not. 114: gotDMITxPowerLowFallWarning: =============== 115: gotDMIRxPowerHighOverAlarm: To detect whether RX output power exceeds high alarm level or not. 116: gotDMIRxPowerHighFallAlarm: =============== 117: gotDMIRxPowerLowOverAlarm: To detect whether RX output power is below low alarm level or not. 118: gotDMIRxPowerLowFallAlarm: =============== 119: gotDMIRxPowerHighOverWarning: To detect whether RX output power exceeds high warning level or not. 120: gotDMIRxPowerHighFallWarning: =============== 121: gotDMIRxPowerLowOverWarning: To detect whether RX output power is below low warning level or not. 122: gotDMIRxPowerLowFallWarning: =============== 123: nosRemoteUpgradeRequest: 124: nosRemoteUpgradeSuccess: 125: nosRemoteUpgradeFailAbort: 126: nosRemoteUpgradeFailHeaderError: 127: nosRemoteUpgradeFailDownloadError: 128: nosRemoteUpgradeFailFlashError: 129: nosRemoteUpgradeStart: =============== 130: systemDyingGasp: =============== 133: cliHistory: To detect whether CLI history is detected or not. 134: cliHistoryNo: =============== 135: ntpConnectionFail: To detect whether NTP connection is failed or not. 136: ntpConnectionFailNo: =============== 137: nmsConnectionTypeChanged: To detect whether NMS connection type is changed. =============== 159: clockModuleRemoved: To detect whether clock module is removed or installed. 160: clockModuleInstalled: 161: clockModuleInitFail: To detect whether clock module initiolization is failed or not. 162: clockModuleInitOk: =============== 163: cliHistoryLog: To detect whether CLI history log is over or not. 164: cliHistoryLogNo: =============== 165: slotActionEvent: To detect whether slot action is changed. 166: slotStateChange: To detect whether slot state is changed. =============== 167: interfaceAdminDown: To detect whether physical or logical interface's admin link status is up or down. 168: interfaceAdminUp: =============== 169: slotPowerMonAbnormal: To detect whether slot power monitor abnormal or normal is detected. 170: slotPowerMonNormal: =============== 171: slotErrorLEDChanged: To detect whether error LED is changed. =============== 185: cpuPpsOverThreshold: To detect whether PPS is over threshold or not. 186: cpuPpsUnderThreshold: =============== 199: slotHealthStatusTimeout: To detect whether slot health status is time out or not. 200: slotHealthStatusTimeoutCleared: =============== 201: advaTemperature: To detect whether current chassis temperature is less than chassis temperature threshold or not. 202: advaTemperatureNo: =============== 203: advaPSUFailure: To detect whether ADVA system's power supply unit has a failure or not. 204: advaPSUFailureNo: =============== 205: advaFanFailure: To detect whether ADVA system's FAN has a failure or not. 206: advaFanFailureNo: =============== 207: advaInterfaceReceiveFailure: To detect whether ADVA system's receipt has a failure or not. 208: advaInterfaceReceiveFailureNo: =============== 209: advaInterfaceOpticalThreshold: To detect whether Adva system's optical receive power level is less than optical threshold or not. 210: advaInterfaceOpticalThresholdNo: =============== 211: advaInterfaceTransmitFault: To detect whether ADVA system's transmission has a failure or not. 212: advaInterfaceTransmitFaultNo: =============== 213: dvaInterfaceMisconfiguration: To detect whether ADVA system's interface is configured rightly or not. 214: advaInterfaceMisconfigurationNo: =============== 215: advaInterfaceSFPMismatch: To detect whether ADVA system's SFP interface is mismatched or not. 216: advaInterfaceSFPMismatchNo: =============== 217: advaVoltageLow: To detect whether ADVA system's current voltage is less than voltage threshold or not. 218: advaVoltageLowNo: =============== 219: advaVoltageHigh: To detect whether ADVA system's current voltage is greater than voltage threshold or not. 220: advaVoltageHighNo: =============== 301: erpDomainLotp: To detect whether LOTP(Loss of Test Packet) exists a domain of ERP or not. The Loss of Test Packet defect is defined when a node does not receive any test packet at any of its ports for a period of 3 times. 302: erpDomainLotpNo: =============== 303: erpDomainULotp: To detect whether undirectional LOTP(Loss of Test Packet) exists a domain of ERP or not. The Loss of Test Packet defect is defined when a RM node of one domain does not receive any test packet at one port for a period of 3 times. 304: erpDomainULotpNo: =============== 305: erpDomainMultipleRM: To detect whether Multiple RM node is supported or not. The defect is raised when a RM node receives its own test packets with an Ack destination address field with a non-zero value. 306: erpDomainMultipleRMNo: =============== 307: erpDomainRMNodeReacheablity: To detect whether RM reachability is raised or not. The detection of multiple failures indicates that the ring is segmented and that the RM Node is unreacheable. This is only possible at normal ring nodes isolated from the RM node. 308: erpDomainRMNodeReacheablityNo: =============== 391: startupConfigLoadEnded: To detect whether startup configuration load is ended. =============== 401: eponOnuDeregister: To detect whether ONU is registered into OLT or not. That is, ONU that its operation is service on should be sent registration information to OLT. 402: eponOnuRegister: =============== 403: eponOnuRegistrationError: To detect whether ONU is failed registeration process into OLT. 404: eponOnuNoRegistrationError: =============== 405: eponBadEncryptionKey: To detect wwhether the encryption key is valid or not. A message between ONU and OLT is encrypted using random encryption key. There is that the encryption key is invalid as transmission failure from time to time. 406: eponNoBadEncryptionKey: =============== 407: eponLlidMistmatch: To detect whether Llid of message between ONU and OLT is valid or not. On registering, ONU informs unique ID to OLT. And then, all communication between ONU and OLT must use the unique ID. The unique ID is called Llid. 408: eponNoLlidMismatch: =============== 409: eponTooManyRegister: To detect whether the registered ONU per 1 OLT is greater than 32 or not. That is, ONU can be registered from 1 to the maximum 32 at 1 OLT. 410: eponNoTooManyRegister: =============== 411: eponDyingGASP: To detect whether a ONU is down from dying gasp or not. A ONU could be changed to down state as a number of reasons. By the way, ONU that is changed to down as dying gasp would be sent dying gasp signal to OLT and then ONU's link would be changed to down. 412: eponNoDyingGASP: =============== 413: eponOnuErrFramePeriod: 414: eponOnuNoErrFramePeriod: =============== 415: eponOnuErrFrame: 416: eponOnuNoErrFrame: =============== 417: eponOnuErrFrameSecondSummary: 418: eponOnuNoErrFrameSecondSummary: =============== 419: eponOnuLastOnuDeregister: To detect whether a deregistered ONU is last ONU or not. If a deregistered ONU is last ONU, the OLT would be changed to serviceable status. 420: eponOnuNoLastOnuDeregister: =============== 421: eponOltCableDown: 422: eponOltRecoverCableDown: =============== 501: autoCLIStart: To detect whether the scheduled auto CLI is started or not. 502: autoCLINoStart: =============== 503: autoCLIComplete: To detect whether the scheduled auto CLI is completed or not. 504: autoCLINoComplete: =============== 505: autoCLIRemoveOutputFile: To detect whether the result file of the scheduled auto CLI is removed or not. The reason that the result file is removed is that the configured file size for the result is less than the stored result file size. If so, the oldest file would be removed before everything. 506: autoCLINoRemoveOutputFile: =============== 507: autoResetSystem: To detect whether the system is restarted or not. The conditions that system is restarted is that ping loss threshold is less than current ping loss count during the configured interval and that current free memory size is less than configured free memory size. 508: autoResetNoSystem: =============== 509: autoResetPingReplyLoss: To detect whether ping reply from the designated network node is received or not. Operator designates any gateway system that can communicate to detect current network environment. System sends ICMP packet to the designated gateway system periodically. If the system doesn't receive ping reply packet within any interval, operator recognizes that the system can't communicate any more because of some problems of the system. 510: autoResetNoPingReplyLoss: =============== 511: autoResetMemoryLeakDetect: To detect whether current free memory size is less than the configured free memory size or not. Periodically, free memory size is checked to confirm system availability. 512: autoResetNoMemoryLeakDetect: =============== 601: arulePacketDropDetect: To detect whether it is dropped some packet by arule or not. 602: arulePacketDropRelease: =============== 620: bME1CardNoDetect: 621: clearBME1CardNoDetect: =============== 622: bME1CardAFEerror: 623: clearBME1CardAFEerror: =============== 624: bME1CardIFEerror: 625: clearBME1CardIFEerror: =============== 626: bME1CardFWerror: 627: clearBME1CardFWerror: =============== 628: bME1CardPROVerror: 629: clearBME1CardPROVerror: =============== 630: bME1CrashDetect: 631: clearBME1CrashDetect: =============== 632: bME2CardNoDetect: 633: clearBME2CardNoDetect: =============== 634: bME2CardAFEerror: 635: clearBME2CardAFEerror: =============== 636: bME2CardIFEerror: 637: clearBME2CardIFEerror: =============== 638: bME2CardFWerror: 639: clearBME2CardFWerror: =============== 640: bME2CardPROVerror: 641: clearBME2CardPROVerror: =============== 642: bME2CrashDetect: 643: clearBME2CrashDetect: =============== 644: bME3CardNoDetect: 645: clearBME3CardNoDetect: =============== 646: bME3CardAFEerror: 647: clearBME3CardAFEerror: =============== 648: bME3CardIFEerror: 649: clearBME3CardIFEerror: =============== 650: bME3CardFWerror: 651: clearBME3CardFWerror: =============== 652: bME3CardPROVerror: 653: clearBME3CardPROVerror: =============== 654: bME3CrashDetect: 655: clearBME3CrashDetect: =============== 656: powerFromBattery: 657: clearPowerFromBattery: =============== 658: invalidBatteryStatus: 659: clearInvalidBatteryStatus: =============== 660: batteryChargeLow: 661: clearBatteryChargeLow: =============== 662: batteryNotPresent: 663: clearBatteryNotPresent: =============== 664: voltageLow: 665: clearVoltageLow: =============== 666: tempOverThreshold: 667: clearTempOverThreshold: =============== 668: tempUnderThreshold: 669: clearTempUnderThreshold: =============== 670: cpuOverThreshold: 671: clearCpuOverThreshold: =============== 672: trafficOverload: 673: clearTrafficOverload: =============== 674: gEPONModuleNotDetect: 675: clearGEPONModuleNotDetect: =============== 676: gEPONPortOperationDown: 677: clearGEPONPortOperationDown: =============== 678: gEPONNoIncomingTraffic: 679: clearGEPONNoIncomingTraffic: =============== 680: processCrashDetect: 681: clearProcessCrashDetect: =============== 682: memoryLeakDetect: 683: clearMemoryLeakDetect: =============== 684: memoryCorrupDetect: 685: clearMemoryCorrupDetect: =============== 686: memoryLowDetect: 687: clearMemoryLowDetect: =============== 688: dataLineerror: 689: clearDataLineerror: =============== 690: addressLineerror: 691: clearAddressLineerror: =============== 692: chipsetNotDetcet: 693: clearChipsetNotDetcet: =============== 694: pciBuserror: 695: clearPciBuserror: =============== 696: securityAdminConnect: 697: clearSecurityAdminConnect: =============== 698: oNUPowerDown: 699: clearONUPowerDown: =============== 700: oNUNotRegister: 701: clearONUNotRegister: =============== 702: oNTOpticPre: 703: clearONTOpticPre: =============== 800: switchoverInitiated: =============== 801: switchoverDone: =============== 803: redConfigurationMisMatch: To detect whether redundancy configuration is mismatched. =============== 901: gponNoAuthCBU: To detect no auth CBU is detected. 902: gponDuplicateONU: To detect ONU is duplicated. 903: gponDyingGasp: To detect dying GASP is detected. 904: gponUpgradeComplete: To detect upgrade complete is detected. 905: gponDeregistered: To detect whether deregistered is detected or not. 906: gponRegistered: 907: gponRogueOnu: To detect rogue ONU is detected 908: gponOnuBatteryEvent: To detect whether ONU battery event is detected or not. 909: clearGponOnuBetteryEvent: 910: gponOnuPortOperStatus: To detectONU port operation statue is chagned. 911: gponTransceiverChanged: To detect transceiver is changed. 912: gponOltLosOn: To detect whether OLT LOS is on or off 913: gponOltLosOff: 914: gponOltLosiOn: To detect whether OLT LOSI is on or off 915: gponOltLosiOff: 916: gponDyingGaspOn: To detect whether dying GASP is on or off 917: gponDyingGaspOff: 918: gponOntOSUpgradeStatus: To detect ONT OS upgrade status is changed. 919: gponOntBLUpgradeStatus: To detect BL upgrade status is changed. 920: gponOltRxPowerLoss: To detect OLT RX power is loss. 921: gponOltRxPowerDetected: To detect OLT RX power status is changed. 922: gponOnuTemperatureHighOverThreshold: To detect whether ONU temperature exceeds high threshold or not. 923: gponOnuTemperatureHighFallThreshold: 924: gponOnuTemperatureLowOverThreshold: To detect whether ONU temperature belows low threshold or not. 925: gponOnuTemperatureLowFallThreshold: 926: gponOnuCpuOverThreshold: To detect whether ONU CPU exceeds threshold or not. 927: gponOnuCpuFallThreshold: 928: gponOnuMemoryOverThreshold: To detect whether memory exceeds threshold or not. 929: gponOnuMemoryFallThreshold: 930: gponOnuI2cFail: To detect ONU L2C fail is detected. 931: gponOnuRxOpticLowThreshAlarmOn: To detect whether ONU RX optic belows low threshold or not. 932: gponOnuRxOpticLowThreshAlarmOff: 933: gponOnuRxOpticHighThreshAlarmOn: To detect whether ONU RX optic exceeds high threshold or not. 934: gponOnuRxOpticHighThreshAlarmOff: 935: gponOltLOFIOn: To detect whether OLT LOFL is on or off 936: gponOltLOFIOff: 937: gponOltDOWOn: To detect whether OLT DOW is on or off 938: gponOltDOWOff: 939: gponOltSFOn: To detect whether OLT SF is on or off 940: gponOltSFOff: 941: gponOltSDOn: To detect whether OLT SD is on or off 942: gponOltSDOff: 943: gponOltLCDGIOn: To detect whether OLT LCDGL is on or off 944: gponOltLCDGIOff: 945: gponOltRDOn: To detect whether OLT RD is on or off 946: gponOltRDOff: 947: gponOltSUFOn: To detect whether OLT SUF is on or off 948: gponOltSUFOff: 949: gponOltLOAOn: To detect whether OLT LOA is on or off 950: gponOltLOAOff: 951: gponOltLOAMIOn: To detect whether OLT LOAML is on or off 952: gponOltLOAMIOff: 953: gponOltMEMOn: To detect whether OLT MEM is on or off 954: gponOltMEMOff: 955: gponOltPEEOn: To detect whether OLT PEE is on or off 956: gponOltPEEOff: 957: gponOltPSTOn: To detect whether OLT PST is on or off 958: gponOltPSTOff: 959: gponOltERROn: To detect whether OLT ERR is on or off 960: gponOltERROff: 961: gponOltREIOn: To detect whether OLT REI is on or off 962: gponOltREIOff: 963: gponAntiSpoofingDupPortOn: To detect whether anti spoofing port is duplicated or not. 964: gponAntiSpoofingDupPortOff: 965: gponRedundancySwitchOver: To detect redundancy switchover is changed. 966: gponDuplicatedRangingResponse: To detect ranging response is changed. 967: gponOnuPortOpticModuleRemove: To detect whether ONU port optic module is removed or installed. 968: gponOnuPortOpticModuleInstall: 969: gponOnuOMCCProblemDetected: To detect whether ONU OMCC problem is detected or not. 970: gponOnuOMCCProblemCleared: 971: gponOltFixedTcontAlarmOn: To detect whether OLT fixed Tcont alarm is on or off. 972: gponOltFixedTcontAlarmOff: 973: gponOltDynamicTcontAlarmOn: To detect whether OLT dynamic Tcont alarm is on or off. 974: gponOltDynamicTcontAlarmOff: 975: gponOltPortCountAlarmOn: To detect whether OLT port count alarm is on or off. 976: gponOltPortCountAlarmOff: 977: gponOltCableDownAlarmOn: To detect whether OLT cable down alarm is on or off. 978: gponOltCableDownAlarmOff: 979: gponOltDeactiveMonitorAlarmOn: To detect whether deactive monitor alarm is on or off. 980: gponOltDeactiveMonitorAlarmOff: 981: gponOltDfiOn: To detect whether OLT DFI is on or off. 982: gponOltDfiOff: 984: gponOltTransceiverPortChanged: To detect OLT transeiver port is changed. 985: gponOnuPortOperStatusDown: To detect whether ONU port operation status is down or up. 986: gponOnuPortOperStatusUp:: =============== 1101: emLogDefectCPUHighOver: To detect whether EM log detect CPU exceeds threshold or not. 1102: emLogDefectCPUHighUnder: 1103: emLogTemperHighOver: To detect whether EM log temperature exceeds high threshold or not. 1104: emLogTemperHighUnder: 1105: emLogTemperLowUnder: To detect whether EM log CPU belows low threshold or not. 1106: emLogTemperLowOver: 1107: emLogMemLowUnder: To detect whether EM log memory belows low threshold or not. 1108: emLogMemLowOver: 1109: emLogFanFail: To detect whether EM log fan status is failed or not. 1110: emLogFanFailCleared: 1111: emLogPhyCRCFail: To detect whether EM log physical CRC is failed or not. 1112: emLogPhyCRCFailCleared: 1113: emLogPhyDetectFail: To detect whether EM log physical status is failed or not. 1114: emLogPhyDetectFailCleared: 1115: emLogSFUMateInitFail: To detect whether EM log SFU mate initialization is failed or not. 1116: emLogSFUMateInitFailCleared: 1117: emLogDaemonHealthBad: To detect whether EM log daemon health is bad or not. 1118: emLogDaemonHealthBadCleared: 1119: emLogGPIURavenLinkDown: To detect whether EM log GPIU RAVEN link is down or not. 1120: emLogGPIURavenLinkDownCleared: =============== 1151: slotNosUpgradeStart: To detect whether slot NOS upgrade is started or ended. 1152: slotNosUpgradeEnd: =============== 1331: gponOnuAniVoltageLowThreshAlarmOn: To detect whether ONU ANI voltage belows low threshold or not. 1332: gponOnuAniVoltageLowThreshAlarmOff: 1333: gponOnuAniVoltageHighThreshAlarmOn: To detect whether ONU ANI voltage exceeds high threshold or not. 1334: gponOnuAniVoltageHighThreshAlarmOff: 1335: gponOnuAniTemperatureLowThreshAlarmOn: To detect whether ONU ANI temperature belows low threshold or not. 1336: gponOnuAniTemperatureLowThreshAlarmOff: 1337: gponOnuAniTemperatureHighThreshAlarmOn: To detect whether ONU ANI temperature exceeds high threshold or not. 1338: gponOnuAniTemperatureHighThreshAlarmOff: 1339: gponOnuAniTxBiasLowThreshAlarmOn: To detect whether ONU ANI TX bias belows low threshold or not. 1340: gponOnuAniTxBiasLowThreshAlarmOff: 1341: gponOnuAniTxBiasHighThreshAlarmOn: To detect whether ONU ANI TX bias exceeds high threshold or not. 1342: gponOnuAniTxBiasHighThreshAlarmOff: 1343: gponOnuAniTxpowerLowThreshAlarmOn: To detect whether ONU ANI TX power belows low threshold or not. 1344: gponOnuAniTxpowerLowThreshAlarmOff: 1345: gponOnuAniTxpowerHighThreshAlarmOn: To detect whether ONU ANI TX power exceeds high threshold or not. 1346: gponOnuAniTxpowerHighThreshAlarmOff:
Status: current Access: read-only
OBJECT-TYPE    
  SpecificNum  

sleAlarmSeverityValue 1.3.6.1.4.1.6296.101.4.2.1.1.2
The severity of alarm.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), warning(4), intermediate(5)  

sleAlarmSeverityControl 1.3.6.1.4.1.6296.101.4.2.2
OBJECT IDENTIFIER    

sleAlarmSeverityControlRequest 1.3.6.1.4.1.6296.101.4.2.2.1
This attribute identifies the control commands. updateAlarmList: the NE updates entries of alarms in the sleAlarmListTable after having changed alarm severities of alarms (due to change profile pointers in managed entities or after modification of alarm severities in profiles). This command should be applied once after having finisled modifications of severties. modifyAlarmSeverity: modifies the severity of an alarm in specific profile. createAlarmSeverityProfile: creates a new profile with default severities. The severities then have to be modified with command changeAlarmSeverity. deleteAlarmSeverityProfile: deletes a profile. Profile 1 is not allowed to be deleted. Notifications : none
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER createAlarmSeveriity(1), destroyAlarmSeveriity(2), setAlarmSeveriity(3)  

sleAlarmSeverityControlStatus 1.3.6.1.4.1.6296.101.4.2.2.2
The status of a control request.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleAlarmSeverityControlTimer 1.3.6.1.4.1.6296.101.4.2.2.3
The maximum wait time for the manager for command ending. For long running commands. The manager reads this value from the DSLAM.
Status: current Access: read-write
OBJECT-TYPE    
  Unsigned32  

sleAlarmSeverityControlTimeStamp 1.3.6.1.4.1.6296.101.4.2.2.4
The time stamp of the last command (end of command).
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleAlarmSeverityControlReqResult 1.3.6.1.4.1.6296.101.4.2.2.5
The result of the last user command.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlRequestResultType  

sleAlarmSeverityControlIndex 1.3.6.1.4.1.6296.101.4.2.2.6
A number identifying this alarm severity profile. The following alarms is devided by the specific character, ===============. The division basis is that alarms is bounded or released. 001: portDown: To detect whether physical or logical interface's link status is up or down. 002: portUp: =============== 003: portRemoved: To detect whether physical interface is installed or not. 004: portInstalled: =============== 005: powerFail: To detect whether power module's operation status is good or not. (Without doubt, more than 1 power module should be equipped.) 006: powerOK: =============== 007: powerRemoved: To detect whether power module is installed or not, through the PLD access. (Without doubt, more than 1 power module should be equipped.) 008: powerInstalled: =============== 009: fanFail: To detect whether FAN module's operation status is good or not. 010: fanOK: =============== 011: fanRemoved: To detect whether FAN module is installed or not, through the PLD access. 012: fanInstalled: =============== 013: moduleRemoved: To detect whether physical interface module is installed or not, through the S/W I2C 014: moduleInstalled: =============== 015: systemRestart: Network system is restarted by operator. This is not H/W start but S/W start. =============== 016: systemStart: Network system is restarted by operator or system status. This is not S/W start but H/W start. (This alarm isn't used current) =============== 017: broadcastOver: To detect the receipt of broadcast packet. (This alarm isn't used current) 018: broadcastUnder: =============== 019: cpuOverLoad: To detect whether the configured CPU load threshold is less than current CPU load usage or not. 020: cpuUnderLoad: =============== 021: memoryOverUsed: To detect whether the configured memory threshold is less than current memory usage or not. 022: memoryUnderUsed: =============== 023: portOverThreshold: To detect whether the configured physical or logical interface threshold is less than delta value of current interface's InOctects or not. 024: portUnderThreshold: =============== 025: temperatureHigh: To detect whether the configured system's temperature threshold is less than current temperature or not. 026: temperatureLow: =============== 027: mfgdBlocked: To detect whether the specific MAC by MAC flood guard is blocked or not. 028: mfgdReleased: =============== 029: ipConflict: To detect whether the same IP address on different network node is configured or not. 030: ipUnconflict: =============== 031: dhcpLeaseShortage: To detect whether IP address that can be assigned to subscriber by DHCP server is sufficient or not. 032: dhcpLeaseSufficient: =============== 033: dhcpOccuredIllegalEntry: To detect whether a subsceiber is using a static IP address or not. 034: dhcpRemovedIllegalEntry: =============== 035: rmonAlarmRising: To detect whether rising threshold of a specific MO in RMON alarm sampling is less than current calculated value by alarm sample type or not. But alarm generation would be issued by means of event type in RMON event. 036: rmonAlarmNoRising: =============== 037: rmonAlarmFalling: To detect whether falling threshold of a specific MO in RMON alarm sampling is less than current calculated value by alarm sample type or not. But alarm generation would be issued by means of event type in RMON event. 038: rmonAlarmNoFalling: =============== 039: bpduGuardDisabled: To detect whether edge ports is guarded about superior BPDU or not. In case of insertion edge node with 0 or lower priority than priority of current root bridge node, it will be disarrangement during a short time because of recognition a new inserted node as root bridge. So these edge ports is guarded, and then edge ports is blocked about all superior BPDU. So STP reconfiguration doesn't use this edge ports. =============== 040: rootGuardDisabled: To detect whether edge ports is guarded about superior BPDU or not. In case of insertion edge node with 0 or lower priority than priority of current root bridge node, it will be disarrangement during a short time because of recognition a new inserted node as root bridge. So, Root guard prevents a new inserted node from being root bridge as well as receiving a superior BPDU from root bridge. but this node participates in STP topology reconfiguration. If root bridge does not send a superior BPDU, then this node acts usually though STP state change. =============== 041: portSecurity: To detect whether interface is configured for security or not. This can be used to prevent MAC from flooding as well as spoofing. That is, As a result, this will obstruct an attack as like DoS attack. =============== 042: userLogin: 043: userLogout: =============== 051: igmpGroupJoined: To detect whether a subscriber is joined a multicast group or not. 052: igmpGroupLeaved: =============== 053: dhcpIpaddressBound: To detect wether a dynamic IP address is assigned to a subscriber or not. 054: dhcpIpaddressFree: =============== 055: doorOpened: To detect whether outer door is opeded or not, as external alarm. 056: doorClosed: =============== 057: powerModeChangedPowerToBattery: To detect whether a system is using AC power or battery. A system is using AC power usually. If there is any power problems as like a power failure, a system is using battery instead of AC power. 058: powerModeChangedBatteryToPower: =============== 059: batterylowcapacity: To detect whether current battery capacity is less capacity threshold according to battery usage or not. The capacity of AC power is 16 voltage and battery is 20. Capacity threshold is configured by H/W specification. So operator can't change it. 060: batterynormalcapacity: =============== 061: batteryhighTemperature: To detect whether current temperature of battery is greater than temperature threshold or not. 062: batterynormalTemperature: =============== 063: authenticationFail: To detect whether the connected user is authentic or non-authentic. 064: authenticationNofail: =============== 065: psuAcHighTemperature: To detect whether current temperature of Power Supply Unit is greater than temperature threshold or not. 066: psuAcNormalTemperature: =============== 067: batteryRemoved: To detect whether battery is equipped at network system or not. Battery is used as redundancy power service. So operator can decide the installation of battery. 068: batteryEquipped: =============== 069: batteryLowVoltage: To detect whether battery voltage is less than 12.5 volt or not. 12.5 volt value is configured by H/W specification. So operator can't change it. 070: batteryNormalVoltage: =============== 071: adminAccessLogin: To detect whether a operator connects at this network system or not. 072: adminAccessLogout: =============== 073: cfgdBlocked: To detect whether it is blocked flood to CPU or not. 074: cfgdReleased: =============== 075: sfgdBlocked: To detect whether it is blocked flood to system or not. 076: sfgdReleased: =============== 077: swWatchdogAbnormalState: To detect whether a specific process acts normally or not. 078: swWatchdogNormalState: =============== 079: swWatchdogDetectError: To detect whether a specific process is detected a error related to itself or cleared. 080: swWatchdogClearError: =============== 081: ppsControlBlocked: To detect whether it is blocked by pps-control or not. 082: ppsControlReleased: =============== 083: gotDMITempHighOverAlarm: To detect whether internal temperature exceeds high alarm level or not. 084: gotDMITempHighFallAlarm: =============== 085: gotDMITempLowOverAlarm: To detect whether internal temperature is below low alarm level or not. 086: gotDMITempLowFallAlarm: =============== 087: gotDMITempHighOverWarning: To detect whether internal temperature exceeds high warning level or not. 088: gotDMITempHighFallWarning: =============== 089: gotDMITempLowOverWarning: To detect whether internal temperature is below low warning level or not. 090: gotDMITempLowFallWarning: =============== 091: gotDMIVolHighOverAlarm: To detect whether internal supply voltage exceeds high alarm level or not. 092: gotDMIVolHighFallAlarm: =============== 093: gotDMIVolLowOverAlarm: To detect whether internal supply voltage is below low alarm level or not. 094: gotDMIVolLowFallAlarm: =============== 095: gotDMIVolHighOverWarning: To detect whether internal supply voltage exceeds high warning level or not. 096: gotDMIVolHighFallWarning: =============== 097: gotDMIVolLowOverWarning: To detect whether internal supply voltage is below low warning level or not. 098: gotDMIVolLowFallWarning: =============== 099: gotDMITxBiasHighOverAlarm: To detect whether TX Bias current exceeds high alarm level or not. 100: gotDMITxBiasHighFallAlarm: =============== 101: gotDMITxBiasLowOverAlarm: To detect whether TX Bias current is below low alarm level or not. 102: gotDMITxBiasLowFallAlarm: =============== 103: gotDMITxBiasHighOverWarning: To detect whether TX Bias current exceeds high warning level or not. 104: gotDMITxBiasHighFallWarning: =============== 105: gotDMITxBiasLowOverWarning: To detect whether TX Bias current is below low warning level or not. 106: gotDMITxBiasLowFallWarning: =============== 107: gotDMITxPowerHighOverAlarm: To detect whether TX output power exceeds high alarm level or not. 108: gotDMITxPowerHighFallAlarm: =============== 109: gotDMITxPowerLowOverAlarm: To detect whether TX output power is below low alarm level or not. 110: gotDMITxPowerLowFallAlarm: =============== 111: gotDMITxPowerHighOverWarning: To detect whether TX output power exceeds high warning level or not. 112: gotDMITxPowerHighFallWarning: =============== 113: gotDMITxPowerLowOverWarning: To detect whether TX output power is below low warning level or not. 114: gotDMITxPowerLowFallWarning: =============== 115: gotDMIRxPowerHighOverAlarm: To detect whether RX output power exceeds high alarm level or not. 116: gotDMIRxPowerHighFallAlarm: =============== 117: gotDMIRxPowerLowOverAlarm: To detect whether RX output power is below low alarm level or not. 118: gotDMIRxPowerLowFallAlarm: =============== 119: gotDMIRxPowerHighOverWarning: To detect whether RX output power exceeds high warning level or not. 120: gotDMIRxPowerHighFallWarning: =============== 121: gotDMIRxPowerLowOverWarning: To detect whether RX output power is below low warning level or not. 122: gotDMIRxPowerLowFallWarning: =============== 123: nosRemoteUpgradeRequest: 124: nosRemoteUpgradeSuccess: 125: nosRemoteUpgradeFailAbort: 126: nosRemoteUpgradeFailHeaderError: 127: nosRemoteUpgradeFailDownloadError: 128: nosRemoteUpgradeFailFlashError: 129: nosRemoteUpgradeStart: =============== 130: systemDyingGasp: =============== 133: cliHistory: To detect whether CLI history is detected or not. 134: cliHistoryNo: =============== 135: ntpConnectionFail: To detect whether NTP connection is failed or not. 136: ntpConnectionFailNo: =============== 137: nmsConnectionTypeChanged: To detect whether NMS connection type is changed. =============== 159: clockModuleRemoved: To detect whether clock module is removed or installed. 160: clockModuleInstalled: 161: clockModuleInitFail: To detect whether clock module initiolization is failed or not. 162: clockModuleInitOk: =============== 163: cliHistoryLog: To detect whether CLI history log is over or not. 164: cliHistoryLogNo: =============== 165: slotActionEvent: To detect whether slot action is changed. 166: slotStateChange: To detect whether slot state is changed. =============== 167: interfaceAdminDown: To detect whether physical or logical interface's admin link status is up or down. 168: interfaceAdminUp: =============== 169: slotPowerMonAbnormal: To detect whether slot power monitor abnormal or normal is detected. 170: slotPowerMonNormal: =============== 171: slotErrorLEDChanged: To detect whether error LED is changed. =============== 185: cpuPpsOverThreshold: To detect whether PPS is over threshold or not. 186: cpuPpsUnderThreshold: =============== 199: slotHealthStatusTimeout: To detect whether slot health status is time out or not. 200: slotHealthStatusTimeoutCleared: =============== 201: advaTemperature: To detect whether current chassis temperature is less than chassis temperature threshold or not. 202: advaTemperatureNo: =============== 203: advaPSUFailure: To detect whether ADVA system's power supply unit has a failure or not. 204: advaPSUFailureNo: =============== 205: advaFanFailure: To detect whether ADVA system's FAN has a failure or not. 206: advaFanFailureNo: =============== 207: advaInterfaceReceiveFailure: To detect whether ADVA system's receipt has a failure or not. 208: advaInterfaceReceiveFailureNo: =============== 209: advaInterfaceOpticalThreshold: To detect whether Adva system's optical receive power level is less than optical threshold or not. 210: advaInterfaceOpticalThresholdNo: =============== 211: advaInterfaceTransmitFault: To detect whether ADVA system's transmission has a failure or not. 212: advaInterfaceTransmitFaultNo: =============== 213: dvaInterfaceMisconfiguration: To detect whether ADVA system's interface is configured rightly or not. 214: advaInterfaceMisconfigurationNo: =============== 215: advaInterfaceSFPMismatch: To detect whether ADVA system's SFP interface is mismatched or not. 216: advaInterfaceSFPMismatchNo: =============== 217: advaVoltageLow: To detect whether ADVA system's current voltage is less than voltage threshold or not. 218: advaVoltageLowNo: =============== 219: advaVoltageHigh: To detect whether ADVA system's current voltage is greater than voltage threshold or not. 220: advaVoltageHighNo: =============== 301: erpDomainLotp: To detect whether LOTP(Loss of Test Packet) exists a domain of ERP or not. The Loss of Test Packet defect is defined when a node does not receive any test packet at any of its ports for a period of 3 times. 302: erpDomainLotpNo: =============== 303: erpDomainULotp: To detect whether undirectional LOTP(Loss of Test Packet) exists a domain of ERP or not. The Loss of Test Packet defect is defined when a RM node of one domain does not receive any test packet at one port for a period of 3 times. 304: erpDomainULotpNo: =============== 305: erpDomainMultipleRM: To detect whether Multiple RM node is supported or not. The defect is raised when a RM node receives its own test packets with an Ack destination address field with a non-zero value. 306: erpDomainMultipleRMNo: =============== 307: erpDomainRMNodeReacheablity: To detect whether RM reachability is raised or not. The detection of multiple failures indicates that the ring is segmented and that the RM Node is unreacheable. This is only possible at normal ring nodes isolated from the RM node. 308: erpDomainRMNodeReacheablityNo: =============== 391: startupConfigLoadEnded: To detect whether startup configuration load is ended. =============== 401: eponOnuDeregister: To detect whether ONU is registered into OLT or not. That is, ONU that its operation is service on should be sent registration information to OLT. 402: eponOnuRegister: =============== 403: eponOnuRegistrationError: To detect whether ONU is failed registeration process into OLT. 404: eponOnuNoRegistrationError: =============== 405: eponBadEncryptionKey: To detect wwhether the encryption key is valid or not. A message between ONU and OLT is encrypted using random encryption key. There is that the encryption key is invalid as transmission failure from time to time. 406: eponNoBadEncryptionKey: =============== 407: eponLlidMistmatch: To detect whether Llid of message between ONU and OLT is valid or not. On registering, ONU informs unique ID to OLT. And then, all communication between ONU and OLT must use the unique ID. The unique ID is called Llid. 408: eponNoLlidMismatch: =============== 409: eponTooManyRegister: To detect whether the registered ONU per 1 OLT is greater than 32 or not. That is, ONU can be registered from 1 to the maximum 32 at 1 OLT. 410: eponNoTooManyRegister: =============== 411: eponDyingGASP: To detect whether a ONU is down from dying gasp or not. A ONU could be changed to down state as a number of reasons. By the way, ONU that is changed to down as dying gasp would be sent dying gasp signal to OLT and then ONU's link would be changed to down. 412: eponNoDyingGASP: =============== 413: eponOnuErrFramePeriod: 414: eponOnuNoErrFramePeriod: =============== 415: eponOnuErrFrame: 416: eponOnuNoErrFrame: =============== 417: eponOnuErrFrameSecondSummary: 418: eponOnuNoErrFrameSecondSummary: =============== 419: eponOnuLastOnuDeregister: To detect whether a deregistered ONU is last ONU or not. If a deregistered ONU is last ONU, the OLT would be changed to serviceable status. 420: eponOnuNoLastOnuDeregister: =============== 421: eponOltCableDown: 422: eponOltRecoverCableDown: =============== 501: autoCLIStart: To detect whether the scheduled auto CLI is started or not. 502: autoCLINoStart: =============== 503: autoCLIComplete: To detect whether the scheduled auto CLI is completed or not. 504: autoCLINoComplete: =============== 505: autoCLIRemoveOutputFile: To detect whether the result file of the scheduled auto CLI is removed or not. The reason that the result file is removed is that the configured file size for the result is less than the stored result file size. If so, the oldest file would be removed before everything. 506: autoCLINoRemoveOutputFile: =============== 507: autoResetSystem: To detect whether the system is restarted or not. The conditions that system is restarted is that ping loss threshold is less than current ping loss count during the configured interval and that current free memory size is less than configured free memory size. 508: autoResetNoSystem: =============== 509: autoResetPingReplyLoss: To detect whether ping reply from the designated network node is received or not. Operator designates any gateway system that can communicate to detect current network environment. System sends ICMP packet to the designated gateway system periodically. If the system doesn't receive ping reply packet within any interval, operator recognizes that the system can't communicate any more because of some problems of the system. 510: autoResetNoPingReplyLoss: =============== 511: autoResetMemoryLeakDetect: To detect whether current free memory size is less than the configured free memory size or not. Periodically, free memory size is checked to confirm system availability. 512: autoResetNoMemoryLeakDetect: =============== 601: arulePacketDropDetect: To detect whether it is dropped some packet by arule or not. 602: arulePacketDropRelease: =============== 620: bME1CardNoDetect: 621: clearBME1CardNoDetect: =============== 622: bME1CardAFEerror: 623: clearBME1CardAFEerror: =============== 624: bME1CardIFEerror: 625: clearBME1CardIFEerror: =============== 626: bME1CardFWerror: 627: clearBME1CardFWerror: =============== 628: bME1CardPROVerror: 629: clearBME1CardPROVerror: =============== 630: bME1CrashDetect: 631: clearBME1CrashDetect: =============== 632: bME2CardNoDetect: 633: clearBME2CardNoDetect: =============== 634: bME2CardAFEerror: 635: clearBME2CardAFEerror: =============== 636: bME2CardIFEerror: 637: clearBME2CardIFEerror: =============== 638: bME2CardFWerror: 639: clearBME2CardFWerror: =============== 640: bME2CardPROVerror: 641: clearBME2CardPROVerror: =============== 642: bME2CrashDetect: 643: clearBME2CrashDetect: =============== 644: bME3CardNoDetect: 645: clearBME3CardNoDetect: =============== 646: bME3CardAFEerror: 647: clearBME3CardAFEerror: =============== 648: bME3CardIFEerror: 649: clearBME3CardIFEerror: =============== 650: bME3CardFWerror: 651: clearBME3CardFWerror: =============== 652: bME3CardPROVerror: 653: clearBME3CardPROVerror: =============== 654: bME3CrashDetect: 655: clearBME3CrashDetect: =============== 656: powerFromBattery: 657: clearPowerFromBattery: =============== 658: invalidBatteryStatus: 659: clearInvalidBatteryStatus: =============== 660: batteryChargeLow: 661: clearBatteryChargeLow: =============== 662: batteryNotPresent: 663: clearBatteryNotPresent: =============== 664: voltageLow: 665: clearVoltageLow: =============== 666: tempOverThreshold: 667: clearTempOverThreshold: =============== 668: tempUnderThreshold: 669: clearTempUnderThreshold: =============== 670: cpuOverThreshold: 671: clearCpuOverThreshold: =============== 672: trafficOverload: 673: clearTrafficOverload: =============== 674: gEPONModuleNotDetect: 675: clearGEPONModuleNotDetect: =============== 676: gEPONPortOperationDown: 677: clearGEPONPortOperationDown: =============== 678: gEPONNoIncomingTraffic: 679: clearGEPONNoIncomingTraffic: =============== 680: processCrashDetect: 681: clearProcessCrashDetect: =============== 682: memoryLeakDetect: 683: clearMemoryLeakDetect: =============== 684: memoryCorrupDetect: 685: clearMemoryCorrupDetect: =============== 686: memoryLowDetect: 687: clearMemoryLowDetect: =============== 688: dataLineerror: 689: clearDataLineerror: =============== 690: addressLineerror: 691: clearAddressLineerror: =============== 692: chipsetNotDetcet: 693: clearChipsetNotDetcet: =============== 694: pciBuserror: 695: clearPciBuserror: =============== 696: securityAdminConnect: 697: clearSecurityAdminConnect: =============== 698: oNUPowerDown: 699: clearONUPowerDown: =============== 700: oNUNotRegister: 701: clearONUNotRegister: =============== 702: oNTOpticPre: 703: clearONTOpticPre: =============== 800: switchoverInitiated: =============== 801: switchoverDone: =============== 803: redConfigurationMisMatch: To detect whether redundancy configuration is mismatched. =============== 901: gponNoAuthCBU: To detect no auth CBU is detected. 902: gponDuplicateONU: To detect ONU is duplicated. 903: gponDyingGasp: To detect dying GASP is detected. 904: gponUpgradeComplete: To detect upgrade complete is detected. 905: gponDeregistered: To detect whether deregistered is detected or not. 906: gponRegistered: 907: gponRogueOnu: To detect rogue ONU is detected 908: gponOnuBatteryEvent: To detect whether ONU battery event is detected or not. 909: clearGponOnuBetteryEvent: 910: gponOnuPortOperStatus: To detectONU port operation statue is chagned. 911: gponTransceiverChanged: To detect transceiver is changed. 912: gponOltLosOn: To detect whether OLT LOS is on or off 913: gponOltLosOff: 914: gponOltLosiOn: To detect whether OLT LOSI is on or off 915: gponOltLosiOff: 916: gponDyingGaspOn: To detect whether dying GASP is on or off 917: gponDyingGaspOff: 918: gponOntOSUpgradeStatus: To detect ONT OS upgrade status is changed. 919: gponOntBLUpgradeStatus: To detect BL upgrade status is changed. 920: gponOltRxPowerLoss: To detect OLT RX power is loss. 921: gponOltRxPowerDetected: To detect OLT RX power status is changed. 922: gponOnuTemperatureHighOverThreshold: To detect whether ONU temperature exceeds high threshold or not. 923: gponOnuTemperatureHighFallThreshold: 924: gponOnuTemperatureLowOverThreshold: To detect whether ONU temperature belows low threshold or not. 925: gponOnuTemperatureLowFallThreshold: 926: gponOnuCpuOverThreshold: To detect whether ONU CPU exceeds threshold or not. 927: gponOnuCpuFallThreshold: 928: gponOnuMemoryOverThreshold: To detect whether memory exceeds threshold or not. 929: gponOnuMemoryFallThreshold: 930: gponOnuI2cFail: To detect ONU L2C fail is detected. 931: gponOnuRxOpticLowThreshAlarmOn: To detect whether ONU RX optic belows low threshold or not. 932: gponOnuRxOpticLowThreshAlarmOff: 933: gponOnuRxOpticHighThreshAlarmOn: To detect whether ONU RX optic exceeds high threshold or not. 934: gponOnuRxOpticHighThreshAlarmOff: 935: gponOltLOFIOn: To detect whether OLT LOFL is on or off 936: gponOltLOFIOff: 937: gponOltDOWOn: To detect whether OLT DOW is on or off 938: gponOltDOWOff: 939: gponOltSFOn: To detect whether OLT SF is on or off 940: gponOltSFOff: 941: gponOltSDOn: To detect whether OLT SD is on or off 942: gponOltSDOff: 943: gponOltLCDGIOn: To detect whether OLT LCDGL is on or off 944: gponOltLCDGIOff: 945: gponOltRDOn: To detect whether OLT RD is on or off 946: gponOltRDOff: 947: gponOltSUFOn: To detect whether OLT SUF is on or off 948: gponOltSUFOff: 949: gponOltLOAOn: To detect whether OLT LOA is on or off 950: gponOltLOAOff: 951: gponOltLOAMIOn: To detect whether OLT LOAML is on or off 952: gponOltLOAMIOff: 953: gponOltMEMOn: To detect whether OLT MEM is on or off 954: gponOltMEMOff: 955: gponOltPEEOn: To detect whether OLT PEE is on or off 956: gponOltPEEOff: 957: gponOltPSTOn: To detect whether OLT PST is on or off 958: gponOltPSTOff: 959: gponOltERROn: To detect whether OLT ERR is on or off 960: gponOltERROff: 961: gponOltREIOn: To detect whether OLT REI is on or off 962: gponOltREIOff: 963: gponAntiSpoofingDupPortOn: To detect whether anti spoofing port is duplicated or not. 964: gponAntiSpoofingDupPortOff: 965: gponRedundancySwitchOver: To detect redundancy switchover is changed. 966: gponDuplicatedRangingResponse: To detect ranging response is changed. 967: gponOnuPortOpticModuleRemove: To detect whether ONU port optic module is removed or installed. 968: gponOnuPortOpticModuleInstall: 969: gponOnuOMCCProblemDetected: To detect whether ONU OMCC problem is detected or not. 970: gponOnuOMCCProblemCleared: 971: gponOltFixedTcontAlarmOn: To detect whether OLT fixed Tcont alarm is on or off. 972: gponOltFixedTcontAlarmOff: 973: gponOltDynamicTcontAlarmOn: To detect whether OLT dynamic Tcont alarm is on or off. 974: gponOltDynamicTcontAlarmOff: 975: gponOltPortCountAlarmOn: To detect whether OLT port count alarm is on or off. 976: gponOltPortCountAlarmOff: 977: gponOltCableDownAlarmOn: To detect whether OLT cable down alarm is on or off. 978: gponOltCableDownAlarmOff: 979: gponOltDeactiveMonitorAlarmOn: To detect whether deactive monitor alarm is on or off. 980: gponOltDeactiveMonitorAlarmOff: 981: gponOltDfiOn: To detect whether OLT DFI is on or off. 982: gponOltDfiOff: 984: gponOltTransceiverPortChanged: To detect OLT transeiver port is changed. 985: gponOnuPortOperStatusDown: To detect whether ONU port operation status is down or up. 986: gponOnuPortOperStatusUp:: =============== 1101: emLogDefectCPUHighOver: To detect whether EM log detect CPU exceeds threshold or not. 1102: emLogDefectCPUHighUnder: 1103: emLogTemperHighOver: To detect whether EM log temperature exceeds high threshold or not. 1104: emLogTemperHighUnder: 1105: emLogTemperLowUnder: To detect whether EM log CPU belows low threshold or not. 1106: emLogTemperLowOver: 1107: emLogMemLowUnder: To detect whether EM log memory belows low threshold or not. 1108: emLogMemLowOver: 1109: emLogFanFail: To detect whether EM log fan status is failed or not. 1110: emLogFanFailCleared: 1111: emLogPhyCRCFail: To detect whether EM log physical CRC is failed or not. 1112: emLogPhyCRCFailCleared: 1113: emLogPhyDetectFail: To detect whether EM log physical status is failed or not. 1114: emLogPhyDetectFailCleared: 1115: emLogSFUMateInitFail: To detect whether EM log SFU mate initialization is failed or not. 1116: emLogSFUMateInitFailCleared: 1117: emLogDaemonHealthBad: To detect whether EM log daemon health is bad or not. 1118: emLogDaemonHealthBadCleared: 1119: emLogGPIURavenLinkDown: To detect whether EM log GPIU RAVEN link is down or not. 1120: emLogGPIURavenLinkDownCleared: =============== 1151: slotNosUpgradeStart: To detect whether slot NOS upgrade is started or ended. 1152: slotNosUpgradeEnd: =============== 1331: gponOnuAniVoltageLowThreshAlarmOn: To detect whether ONU ANI voltage belows low threshold or not. 1332: gponOnuAniVoltageLowThreshAlarmOff: 1333: gponOnuAniVoltageHighThreshAlarmOn: To detect whether ONU ANI voltage exceeds high threshold or not. 1334: gponOnuAniVoltageHighThreshAlarmOff: 1335: gponOnuAniTemperatureLowThreshAlarmOn: To detect whether ONU ANI temperature belows low threshold or not. 1336: gponOnuAniTemperatureLowThreshAlarmOff: 1337: gponOnuAniTemperatureHighThreshAlarmOn: To detect whether ONU ANI temperature exceeds high threshold or not. 1338: gponOnuAniTemperatureHighThreshAlarmOff: 1339: gponOnuAniTxBiasLowThreshAlarmOn: To detect whether ONU ANI TX bias belows low threshold or not. 1340: gponOnuAniTxBiasLowThreshAlarmOff: 1341: gponOnuAniTxBiasHighThreshAlarmOn: To detect whether ONU ANI TX bias exceeds high threshold or not. 1342: gponOnuAniTxBiasHighThreshAlarmOff: 1343: gponOnuAniTxpowerLowThreshAlarmOn: To detect whether ONU ANI TX power belows low threshold or not. 1344: gponOnuAniTxpowerLowThreshAlarmOff: 1345: gponOnuAniTxpowerHighThreshAlarmOn: To detect whether ONU ANI TX power exceeds high threshold or not. 1346: gponOnuAniTxpowerHighThreshAlarmOff:
Status: current Access: read-write
OBJECT-TYPE    
  SpecificNum  

sleAlarmSeverityControlValue 1.3.6.1.4.1.6296.101.4.2.2.7
The severity of alarm.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), warning(4), intermediate(5)  

sleAlarmSeverityNotification 1.3.6.1.4.1.6296.101.4.2.3
OBJECT IDENTIFIER    

sleAlarmSeveriityCreated 1.3.6.1.4.1.6296.101.4.2.3.1
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmSeveriityDestroyed 1.3.6.1.4.1.6296.101.4.2.3.2
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmSeverityChanged 1.3.6.1.4.1.6296.101.4.2.3.3
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmReport 1.3.6.1.4.1.6296.101.4.3
OBJECT IDENTIFIER    

sleAlarmReportTable 1.3.6.1.4.1.6296.101.4.3.1
The alarm list table is used to store all reported alarms.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAlarmReportEntry

sleAlarmReportEntry 1.3.6.1.4.1.6296.101.4.3.1.1
Entry of the alarm lis table.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAlarmReportEntry  

sleAlarmSpecificCode 1.3.6.1.4.1.6296.101.4.3.1.1.1
The OID of alarm. The following alarms is devided by the specific character, ===============. The division basis is that alarms is bounded or released. 001: portDown: To detect whether physical or logical interface's link status is up or down. 002: portUp: =============== 003: portRemoved: To detect whether physical interface is installed or not. 004: portInstalled: =============== 005: powerFail: To detect whether power module's operation status is good or not. (Without doubt, more than 1 power module should be equipped.) 006: powerOK: =============== 007: powerRemoved: To detect whether power module is installed or not, through the PLD access. (Without doubt, more than 1 power module should be equipped.) 008: powerInstalled: =============== 009: fanFail: To detect whether FAN module's operation status is good or not. 010: fanOK: =============== 011: fanRemoved: To detect whether FAN module is installed or not, through the PLD access. 012: fanInstalled: =============== 013: moduleRemoved: To detect whether physical interface module is installed or not, through the S/W I2C 014: moduleInstalled: =============== 015: systemRestart: Network system is restarted by operator. This is not H/W start but S/W start. =============== 016: systemStart: Network system is restarted by operator or system status. This is not S/W start but H/W start. (This alarm isn't used current) =============== 017: broadcastOver: To detect the receipt of broadcast packet. (This alarm isn't used current) 018: broadcastUnder: =============== 019: cpuOverLoad: To detect whether the configured CPU load threshold is less than current CPU load usage or not. 020: cpuUnderLoad: =============== 021: memoryOverUsed: To detect whether the configured memory threshold is less than current memory usage or not. 022: memoryUnderUsed: =============== 023: portOverThreshold: To detect whether the configured physical or logical interface threshold is less than delta value of current interface's InOctects or not. 024: portUnderThreshold: =============== 025: temperatureHigh: To detect whether the configured system's temperature threshold is less than current temperature or not. 026: temperatureLow: =============== 027: mfgdBlocked: To detect whether the specific MAC by MAC flood guard is blocked or not. 028: mfgdReleased: =============== 029: ipConflict: To detect whether the same IP address on different network node is configured or not. 030: ipUnconflict: =============== 031: dhcpLeaseShortage: To detect whether IP address that can be assigned to subscriber by DHCP server is sufficient or not. 032: dhcpLeaseSufficient: =============== 033: dhcpOccuredIllegalEntry: To detect whether a subsceiber is using a static IP address or not. 034: dhcpRemovedIllegalEntry: =============== 035: rmonAlarmRising: To detect whether rising threshold of a specific MO in RMON alarm sampling is less than current calculated value by alarm sample type or not. But alarm generation would be issued by means of event type in RMON event. 036: rmonAlarmNoRising: =============== 037: rmonAlarmFalling: To detect whether falling threshold of a specific MO in RMON alarm sampling is less than current calculated value by alarm sample type or not. But alarm generation would be issued by means of event type in RMON event. 038: rmonAlarmNoFalling: =============== 039: bpduGuardDisabled: To detect whether edge ports is guarded about superior BPDU or not. In case of insertion edge node with 0 or lower priority than priority of current root bridge node, it will be disarrangement during a short time because of recognition a new inserted node as root bridge. So these edge ports is guarded, and then edge ports is blocked about all superior BPDU. So STP reconfiguration doesn't use this edge ports. =============== 040: rootGuardDisabled: To detect whether edge ports is guarded about superior BPDU or not. In case of insertion edge node with 0 or lower priority than priority of current root bridge node, it will be disarrangement during a short time because of recognition a new inserted node as root bridge. So, Root guard prevents a new inserted node from being root bridge as well as receiving a superior BPDU from root bridge. but this node participates in STP topology reconfiguration. If root bridge does not send a superior BPDU, then this node acts usually though STP state change. =============== 041: portSecurity: To detect whether interface is configured for security or not. This can be used to prevent MAC from flooding as well as spoofing. That is, As a result, this will obstruct an attack as like DoS attack. =============== 042: userLogin: 043: userLogout: =============== 051: igmpGroupJoined: To detect whether a subscriber is joined a multicast group or not. 052: igmpGroupLeaved: =============== 053: dhcpIpaddressBound: To detect wether a dynamic IP address is assigned to a subscriber or not. 054: dhcpIpaddressFree: =============== 055: doorOpened: To detect whether outer door is opeded or not, as external alarm. 056: doorClosed: =============== 057: powerModeChangedPowerToBattery: To detect whether a system is using AC power or battery. A system is using AC power usually. If there is any power problems as like a power failure, a system is using battery instead of AC power. 058: powerModeChangedBatteryToPower: =============== 059: batterylowcapacity: To detect whether current battery capacity is less capacity threshold according to battery usage or not. The capacity of AC power is 16 voltage and battery is 20. Capacity threshold is configured by H/W specification. So operator can't change it. 060: batterynormalcapacity: =============== 061: batteryhighTemperature: To detect whether current temperature of battery is greater than temperature threshold or not. 062: batterynormalTemperature: =============== 063: authenticationFail: To detect whether the connected user is authentic or non-authentic. 064: authenticationNofail: =============== 065: psuAcHighTemperature: To detect whether current temperature of Power Supply Unit is greater than temperature threshold or not. 066: psuAcNormalTemperature: =============== 067: batteryRemoved: To detect whether battery is equipped at network system or not. Battery is used as redundancy power service. So operator can decide the installation of battery. 068: batteryEquipped: =============== 069: batteryLowVoltage: To detect whether battery voltage is less than 12.5 volt or not. 12.5 volt value is configured by H/W specification. So operator can't change it. 070: batteryNormalVoltage: =============== 071: adminAccessLogin: To detect whether a operator connects at this network system or not. 072: adminAccessLogout: =============== 073: cfgdBlocked: To detect whether it is blocked flood to CPU or not. 074: cfgdReleased: =============== 075: sfgdBlocked: To detect whether it is blocked flood to system or not. 076: sfgdReleased: =============== 077: swWatchdogAbnormalState: To detect whether a specific process acts normally or not. 078: swWatchdogNormalState: =============== 079: swWatchdogDetectError: To detect whether a specific process is detected a error related to itself or cleared. 080: swWatchdogClearError: =============== 081: ppsControlBlocked: To detect whether it is blocked by pps-control or not. 082: ppsControlReleased: =============== 083: gotDMITempHighOverAlarm: To detect whether internal temperature exceeds high alarm level or not. 084: gotDMITempHighFallAlarm: =============== 085: gotDMITempLowOverAlarm: To detect whether internal temperature is below low alarm level or not. 086: gotDMITempLowFallAlarm: =============== 087: gotDMITempHighOverWarning: To detect whether internal temperature exceeds high warning level or not. 088: gotDMITempHighFallWarning: =============== 089: gotDMITempLowOverWarning: To detect whether internal temperature is below low warning level or not. 090: gotDMITempLowFallWarning: =============== 091: gotDMIVolHighOverAlarm: To detect whether internal supply voltage exceeds high alarm level or not. 092: gotDMIVolHighFallAlarm: =============== 093: gotDMIVolLowOverAlarm: To detect whether internal supply voltage is below low alarm level or not. 094: gotDMIVolLowFallAlarm: =============== 095: gotDMIVolHighOverWarning: To detect whether internal supply voltage exceeds high warning level or not. 096: gotDMIVolHighFallWarning: =============== 097: gotDMIVolLowOverWarning: To detect whether internal supply voltage is below low warning level or not. 098: gotDMIVolLowFallWarning: =============== 099: gotDMITxBiasHighOverAlarm: To detect whether TX Bias current exceeds high alarm level or not. 100: gotDMITxBiasHighFallAlarm: =============== 101: gotDMITxBiasLowOverAlarm: To detect whether TX Bias current is below low alarm level or not. 102: gotDMITxBiasLowFallAlarm: =============== 103: gotDMITxBiasHighOverWarning: To detect whether TX Bias current exceeds high warning level or not. 104: gotDMITxBiasHighFallWarning: =============== 105: gotDMITxBiasLowOverWarning: To detect whether TX Bias current is below low warning level or not. 106: gotDMITxBiasLowFallWarning: =============== 107: gotDMITxPowerHighOverAlarm: To detect whether TX output power exceeds high alarm level or not. 108: gotDMITxPowerHighFallAlarm: =============== 109: gotDMITxPowerLowOverAlarm: To detect whether TX output power is below low alarm level or not. 110: gotDMITxPowerLowFallAlarm: =============== 111: gotDMITxPowerHighOverWarning: To detect whether TX output power exceeds high warning level or not. 112: gotDMITxPowerHighFallWarning: =============== 113: gotDMITxPowerLowOverWarning: To detect whether TX output power is below low warning level or not. 114: gotDMITxPowerLowFallWarning: =============== 115: gotDMIRxPowerHighOverAlarm: To detect whether RX output power exceeds high alarm level or not. 116: gotDMIRxPowerHighFallAlarm: =============== 117: gotDMIRxPowerLowOverAlarm: To detect whether RX output power is below low alarm level or not. 118: gotDMIRxPowerLowFallAlarm: =============== 119: gotDMIRxPowerHighOverWarning: To detect whether RX output power exceeds high warning level or not. 120: gotDMIRxPowerHighFallWarning: =============== 121: gotDMIRxPowerLowOverWarning: To detect whether RX output power is below low warning level or not. 122: gotDMIRxPowerLowFallWarning: =============== 123: nosRemoteUpgradeRequest: 124: nosRemoteUpgradeSuccess: 125: nosRemoteUpgradeFailAbort: 126: nosRemoteUpgradeFailHeaderError: 127: nosRemoteUpgradeFailDownloadError: 128: nosRemoteUpgradeFailFlashError: 129: nosRemoteUpgradeStart: =============== 130: systemDyingGasp: =============== 133: cliHistory: To detect whether CLI history is detected or not. 134: cliHistoryNo: =============== 135: ntpConnectionFail: To detect whether NTP connection is failed or not. 136: ntpConnectionFailNo: =============== 137: nmsConnectionTypeChanged: To detect whether NMS connection type is changed. =============== 159: clockModuleRemoved: To detect whether clock module is removed or installed. 160: clockModuleInstalled: 161: clockModuleInitFail: To detect whether clock module initiolization is failed or not. 162: clockModuleInitOk: =============== 163: cliHistoryLog: To detect whether CLI history log is over or not. 164: cliHistoryLogNo: =============== 165: slotActionEvent: To detect whether slot action is changed. 166: slotStateChange: To detect whether slot state is changed. =============== 167: interfaceAdminDown: To detect whether physical or logical interface's admin link status is up or down. 168: interfaceAdminUp: =============== 169: slotPowerMonAbnormal: To detect whether slot power monitor abnormal or normal is detected. 170: slotPowerMonNormal: =============== 171: slotErrorLEDChanged: To detect whether error LED is changed. =============== 185: cpuPpsOverThreshold: To detect whether PPS is over threshold or not. 186: cpuPpsUnderThreshold: =============== 199: slotHealthStatusTimeout: To detect whether slot health status is time out or not. 200: slotHealthStatusTimeoutCleared: =============== 201: advaTemperature: To detect whether current chassis temperature is less than chassis temperature threshold or not. 202: advaTemperatureNo: =============== 203: advaPSUFailure: To detect whether ADVA system's power supply unit has a failure or not. 204: advaPSUFailureNo: =============== 205: advaFanFailure: To detect whether ADVA system's FAN has a failure or not. 206: advaFanFailureNo: =============== 207: advaInterfaceReceiveFailure: To detect whether ADVA system's receipt has a failure or not. 208: advaInterfaceReceiveFailureNo: =============== 209: advaInterfaceOpticalThreshold: To detect whether Adva system's optical receive power level is less than optical threshold or not. 210: advaInterfaceOpticalThresholdNo: =============== 211: advaInterfaceTransmitFault: To detect whether ADVA system's transmission has a failure or not. 212: advaInterfaceTransmitFaultNo: =============== 213: dvaInterfaceMisconfiguration: To detect whether ADVA system's interface is configured rightly or not. 214: advaInterfaceMisconfigurationNo: =============== 215: advaInterfaceSFPMismatch: To detect whether ADVA system's SFP interface is mismatched or not. 216: advaInterfaceSFPMismatchNo: =============== 217: advaVoltageLow: To detect whether ADVA system's current voltage is less than voltage threshold or not. 218: advaVoltageLowNo: =============== 219: advaVoltageHigh: To detect whether ADVA system's current voltage is greater than voltage threshold or not. 220: advaVoltageHighNo: =============== 301: erpDomainLotp: To detect whether LOTP(Loss of Test Packet) exists a domain of ERP or not. The Loss of Test Packet defect is defined when a node does not receive any test packet at any of its ports for a period of 3 times. 302: erpDomainLotpNo: =============== 303: erpDomainULotp: To detect whether undirectional LOTP(Loss of Test Packet) exists a domain of ERP or not. The Loss of Test Packet defect is defined when a RM node of one domain does not receive any test packet at one port for a period of 3 times. 304: erpDomainULotpNo: =============== 305: erpDomainMultipleRM: To detect whether Multiple RM node is supported or not. The defect is raised when a RM node receives its own test packets with an Ack destination address field with a non-zero value. 306: erpDomainMultipleRMNo: =============== 307: erpDomainRMNodeReacheablity: To detect whether RM reachability is raised or not. The detection of multiple failures indicates that the ring is segmented and that the RM Node is unreacheable. This is only possible at normal ring nodes isolated from the RM node. 308: erpDomainRMNodeReacheablityNo: =============== 391: startupConfigLoadEnded: To detect whether startup configuration load is ended. =============== 401: eponOnuDeregister: To detect whether ONU is registered into OLT or not. That is, ONU that its operation is service on should be sent registration information to OLT. 402: eponOnuRegister: =============== 403: eponOnuRegistrationError: To detect whether ONU is failed registeration process into OLT. 404: eponOnuNoRegistrationError: =============== 405: eponBadEncryptionKey: To detect wwhether the encryption key is valid or not. A message between ONU and OLT is encrypted using random encryption key. There is that the encryption key is invalid as transmission failure from time to time. 406: eponNoBadEncryptionKey: =============== 407: eponLlidMistmatch: To detect whether Llid of message between ONU and OLT is valid or not. On registering, ONU informs unique ID to OLT. And then, all communication between ONU and OLT must use the unique ID. The unique ID is called Llid. 408: eponNoLlidMismatch: =============== 409: eponTooManyRegister: To detect whether the registered ONU per 1 OLT is greater than 32 or not. That is, ONU can be registered from 1 to the maximum 32 at 1 OLT. 410: eponNoTooManyRegister: =============== 411: eponDyingGASP: To detect whether a ONU is down from dying gasp or not. A ONU could be changed to down state as a number of reasons. By the way, ONU that is changed to down as dying gasp would be sent dying gasp signal to OLT and then ONU's link would be changed to down. 412: eponNoDyingGASP: =============== 413: eponOnuErrFramePeriod: 414: eponOnuNoErrFramePeriod: =============== 415: eponOnuErrFrame: 416: eponOnuNoErrFrame: =============== 417: eponOnuErrFrameSecondSummary: 418: eponOnuNoErrFrameSecondSummary: =============== 419: eponOnuLastOnuDeregister: To detect whether a deregistered ONU is last ONU or not. If a deregistered ONU is last ONU, the OLT would be changed to serviceable status. 420: eponOnuNoLastOnuDeregister: =============== 421: eponOltCableDown: 422: eponOltRecoverCableDown: =============== 501: autoCLIStart: To detect whether the scheduled auto CLI is started or not. 502: autoCLINoStart: =============== 503: autoCLIComplete: To detect whether the scheduled auto CLI is completed or not. 504: autoCLINoComplete: =============== 505: autoCLIRemoveOutputFile: To detect whether the result file of the scheduled auto CLI is removed or not. The reason that the result file is removed is that the configured file size for the result is less than the stored result file size. If so, the oldest file would be removed before everything. 506: autoCLINoRemoveOutputFile: =============== 507: autoResetSystem: To detect whether the system is restarted or not. The conditions that system is restarted is that ping loss threshold is less than current ping loss count during the configured interval and that current free memory size is less than configured free memory size. 508: autoResetNoSystem: =============== 509: autoResetPingReplyLoss: To detect whether ping reply from the designated network node is received or not. Operator designates any gateway system that can communicate to detect current network environment. System sends ICMP packet to the designated gateway system periodically. If the system doesn't receive ping reply packet within any interval, operator recognizes that the system can't communicate any more because of some problems of the system. 510: autoResetNoPingReplyLoss: =============== 511: autoResetMemoryLeakDetect: To detect whether current free memory size is less than the configured free memory size or not. Periodically, free memory size is checked to confirm system availability. 512: autoResetNoMemoryLeakDetect: =============== 601: arulePacketDropDetect: To detect whether it is dropped some packet by arule or not. 602: arulePacketDropRelease: =============== 620: bME1CardNoDetect: 621: clearBME1CardNoDetect: =============== 622: bME1CardAFEerror: 623: clearBME1CardAFEerror: =============== 624: bME1CardIFEerror: 625: clearBME1CardIFEerror: =============== 626: bME1CardFWerror: 627: clearBME1CardFWerror: =============== 628: bME1CardPROVerror: 629: clearBME1CardPROVerror: =============== 630: bME1CrashDetect: 631: clearBME1CrashDetect: =============== 632: bME2CardNoDetect: 633: clearBME2CardNoDetect: =============== 634: bME2CardAFEerror: 635: clearBME2CardAFEerror: =============== 636: bME2CardIFEerror: 637: clearBME2CardIFEerror: =============== 638: bME2CardFWerror: 639: clearBME2CardFWerror: =============== 640: bME2CardPROVerror: 641: clearBME2CardPROVerror: =============== 642: bME2CrashDetect: 643: clearBME2CrashDetect: =============== 644: bME3CardNoDetect: 645: clearBME3CardNoDetect: =============== 646: bME3CardAFEerror: 647: clearBME3CardAFEerror: =============== 648: bME3CardIFEerror: 649: clearBME3CardIFEerror: =============== 650: bME3CardFWerror: 651: clearBME3CardFWerror: =============== 652: bME3CardPROVerror: 653: clearBME3CardPROVerror: =============== 654: bME3CrashDetect: 655: clearBME3CrashDetect: =============== 656: powerFromBattery: 657: clearPowerFromBattery: =============== 658: invalidBatteryStatus: 659: clearInvalidBatteryStatus: =============== 660: batteryChargeLow: 661: clearBatteryChargeLow: =============== 662: batteryNotPresent: 663: clearBatteryNotPresent: =============== 664: voltageLow: 665: clearVoltageLow: =============== 666: tempOverThreshold: 667: clearTempOverThreshold: =============== 668: tempUnderThreshold: 669: clearTempUnderThreshold: =============== 670: cpuOverThreshold: 671: clearCpuOverThreshold: =============== 672: trafficOverload: 673: clearTrafficOverload: =============== 674: gEPONModuleNotDetect: 675: clearGEPONModuleNotDetect: =============== 676: gEPONPortOperationDown: 677: clearGEPONPortOperationDown: =============== 678: gEPONNoIncomingTraffic: 679: clearGEPONNoIncomingTraffic: =============== 680: processCrashDetect: 681: clearProcessCrashDetect: =============== 682: memoryLeakDetect: 683: clearMemoryLeakDetect: =============== 684: memoryCorrupDetect: 685: clearMemoryCorrupDetect: =============== 686: memoryLowDetect: 687: clearMemoryLowDetect: =============== 688: dataLineerror: 689: clearDataLineerror: =============== 690: addressLineerror: 691: clearAddressLineerror: =============== 692: chipsetNotDetcet: 693: clearChipsetNotDetcet: =============== 694: pciBuserror: 695: clearPciBuserror: =============== 696: securityAdminConnect: 697: clearSecurityAdminConnect: =============== 698: oNUPowerDown: 699: clearONUPowerDown: =============== 700: oNUNotRegister: 701: clearONUNotRegister: =============== 702: oNTOpticPre: 703: clearONTOpticPre: =============== 800: switchoverInitiated: =============== 801: switchoverDone: =============== 803: redConfigurationMisMatch: To detect whether redundancy configuration is mismatched. =============== 901: gponNoAuthCBU: To detect no auth CBU is detected. 902: gponDuplicateONU: To detect ONU is duplicated. 903: gponDyingGasp: To detect dying GASP is detected. 904: gponUpgradeComplete: To detect upgrade complete is detected. 905: gponDeregistered: To detect whether deregistered is detected or not. 906: gponRegistered: 907: gponRogueOnu: To detect rogue ONU is detected 908: gponOnuBatteryEvent: To detect whether ONU battery event is detected or not. 909: clearGponOnuBetteryEvent: 910: gponOnuPortOperStatus: To detectONU port operation statue is chagned. 911: gponTransceiverChanged: To detect transceiver is changed. 912: gponOltLosOn: To detect whether OLT LOS is on or off 913: gponOltLosOff: 914: gponOltLosiOn: To detect whether OLT LOSI is on or off 915: gponOltLosiOff: 916: gponDyingGaspOn: To detect whether dying GASP is on or off 917: gponDyingGaspOff: 918: gponOntOSUpgradeStatus: To detect ONT OS upgrade status is changed. 919: gponOntBLUpgradeStatus: To detect BL upgrade status is changed. 920: gponOltRxPowerLoss: To detect OLT RX power is loss. 921: gponOltRxPowerDetected: To detect OLT RX power status is changed. 922: gponOnuTemperatureHighOverThreshold: To detect whether ONU temperature exceeds high threshold or not. 923: gponOnuTemperatureHighFallThreshold: 924: gponOnuTemperatureLowOverThreshold: To detect whether ONU temperature belows low threshold or not. 925: gponOnuTemperatureLowFallThreshold: 926: gponOnuCpuOverThreshold: To detect whether ONU CPU exceeds threshold or not. 927: gponOnuCpuFallThreshold: 928: gponOnuMemoryOverThreshold: To detect whether memory exceeds threshold or not. 929: gponOnuMemoryFallThreshold: 930: gponOnuI2cFail: To detect ONU L2C fail is detected. 931: gponOnuRxOpticLowThreshAlarmOn: To detect whether ONU RX optic belows low threshold or not. 932: gponOnuRxOpticLowThreshAlarmOff: 933: gponOnuRxOpticHighThreshAlarmOn: To detect whether ONU RX optic exceeds high threshold or not. 934: gponOnuRxOpticHighThreshAlarmOff: 935: gponOltLOFIOn: To detect whether OLT LOFL is on or off 936: gponOltLOFIOff: 937: gponOltDOWOn: To detect whether OLT DOW is on or off 938: gponOltDOWOff: 939: gponOltSFOn: To detect whether OLT SF is on or off 940: gponOltSFOff: 941: gponOltSDOn: To detect whether OLT SD is on or off 942: gponOltSDOff: 943: gponOltLCDGIOn: To detect whether OLT LCDGL is on or off 944: gponOltLCDGIOff: 945: gponOltRDOn: To detect whether OLT RD is on or off 946: gponOltRDOff: 947: gponOltSUFOn: To detect whether OLT SUF is on or off 948: gponOltSUFOff: 949: gponOltLOAOn: To detect whether OLT LOA is on or off 950: gponOltLOAOff: 951: gponOltLOAMIOn: To detect whether OLT LOAML is on or off 952: gponOltLOAMIOff: 953: gponOltMEMOn: To detect whether OLT MEM is on or off 954: gponOltMEMOff: 955: gponOltPEEOn: To detect whether OLT PEE is on or off 956: gponOltPEEOff: 957: gponOltPSTOn: To detect whether OLT PST is on or off 958: gponOltPSTOff: 959: gponOltERROn: To detect whether OLT ERR is on or off 960: gponOltERROff: 961: gponOltREIOn: To detect whether OLT REI is on or off 962: gponOltREIOff: 963: gponAntiSpoofingDupPortOn: To detect whether anti spoofing port is duplicated or not. 964: gponAntiSpoofingDupPortOff: 965: gponRedundancySwitchOver: To detect redundancy switchover is changed. 966: gponDuplicatedRangingResponse: To detect ranging response is changed. 967: gponOnuPortOpticModuleRemove: To detect whether ONU port optic module is removed or installed. 968: gponOnuPortOpticModuleInstall: 969: gponOnuOMCCProblemDetected: To detect whether ONU OMCC problem is detected or not. 970: gponOnuOMCCProblemCleared: 971: gponOltFixedTcontAlarmOn: To detect whether OLT fixed Tcont alarm is on or off. 972: gponOltFixedTcontAlarmOff: 973: gponOltDynamicTcontAlarmOn: To detect whether OLT dynamic Tcont alarm is on or off. 974: gponOltDynamicTcontAlarmOff: 975: gponOltPortCountAlarmOn: To detect whether OLT port count alarm is on or off. 976: gponOltPortCountAlarmOff: 977: gponOltCableDownAlarmOn: To detect whether OLT cable down alarm is on or off. 978: gponOltCableDownAlarmOff: 979: gponOltDeactiveMonitorAlarmOn: To detect whether deactive monitor alarm is on or off. 980: gponOltDeactiveMonitorAlarmOff: 981: gponOltDfiOn: To detect whether OLT DFI is on or off. 982: gponOltDfiOff: 984: gponOltTransceiverPortChanged: To detect OLT transeiver port is changed. 985: gponOnuPortOperStatusDown: To detect whether ONU port operation status is down or up. 986: gponOnuPortOperStatusUp:: =============== 1101: emLogDefectCPUHighOver: To detect whether EM log detect CPU exceeds threshold or not. 1102: emLogDefectCPUHighUnder: 1103: emLogTemperHighOver: To detect whether EM log temperature exceeds high threshold or not. 1104: emLogTemperHighUnder: 1105: emLogTemperLowUnder: To detect whether EM log CPU belows low threshold or not. 1106: emLogTemperLowOver: 1107: emLogMemLowUnder: To detect whether EM log memory belows low threshold or not. 1108: emLogMemLowOver: 1109: emLogFanFail: To detect whether EM log fan status is failed or not. 1110: emLogFanFailCleared: 1111: emLogPhyCRCFail: To detect whether EM log physical CRC is failed or not. 1112: emLogPhyCRCFailCleared: 1113: emLogPhyDetectFail: To detect whether EM log physical status is failed or not. 1114: emLogPhyDetectFailCleared: 1115: emLogSFUMateInitFail: To detect whether EM log SFU mate initialization is failed or not. 1116: emLogSFUMateInitFailCleared: 1117: emLogDaemonHealthBad: To detect whether EM log daemon health is bad or not. 1118: emLogDaemonHealthBadCleared: 1119: emLogGPIURavenLinkDown: To detect whether EM log GPIU RAVEN link is down or not. 1120: emLogGPIURavenLinkDownCleared: =============== 1151: slotNosUpgradeStart: To detect whether slot NOS upgrade is started or ended. 1152: slotNosUpgradeEnd: =============== 1331: gponOnuAniVoltageLowThreshAlarmOn: To detect whether ONU ANI voltage belows low threshold or not. 1332: gponOnuAniVoltageLowThreshAlarmOff: 1333: gponOnuAniVoltageHighThreshAlarmOn: To detect whether ONU ANI voltage exceeds high threshold or not. 1334: gponOnuAniVoltageHighThreshAlarmOff: 1335: gponOnuAniTemperatureLowThreshAlarmOn: To detect whether ONU ANI temperature belows low threshold or not. 1336: gponOnuAniTemperatureLowThreshAlarmOff: 1337: gponOnuAniTemperatureHighThreshAlarmOn: To detect whether ONU ANI temperature exceeds high threshold or not. 1338: gponOnuAniTemperatureHighThreshAlarmOff: 1339: gponOnuAniTxBiasLowThreshAlarmOn: To detect whether ONU ANI TX bias belows low threshold or not. 1340: gponOnuAniTxBiasLowThreshAlarmOff: 1341: gponOnuAniTxBiasHighThreshAlarmOn: To detect whether ONU ANI TX bias exceeds high threshold or not. 1342: gponOnuAniTxBiasHighThreshAlarmOff: 1343: gponOnuAniTxpowerLowThreshAlarmOn: To detect whether ONU ANI TX power belows low threshold or not. 1344: gponOnuAniTxpowerLowThreshAlarmOff: 1345: gponOnuAniTxpowerHighThreshAlarmOn: To detect whether ONU ANI TX power exceeds high threshold or not. 1346: gponOnuAniTxpowerHighThreshAlarmOff:
Status: current Access: read-only
OBJECT-TYPE    
  SpecificNum  

sleAlarmReportingSourceType 1.3.6.1.4.1.6296.101.4.3.1.1.2
The type of Reporting source In case of source type 13 gponSourceTlv, It's shown as below. sleAlarmReportingSourceType.A.B.C.D.E.F A: sleAlarmSpecificCode B: sleAlarmReportingSourceType 13 C: sleAlarmReportingSource's length D: type 1-slot 2-port 3-vlan 4-MAC 5-ONU 6-UNI_type 7-UNI_index 255-etc E: legth F: value
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER entPhysicalEntity(1), ifIndex(2), vccTp(3), macAddress(4), ipv4(5), ipv6(6), threshold(7), advaSource(8), number(9), general(10), eponSource(11), gponSource(12), gponSourceTlv(13)  

sleAlarmReportingSource 1.3.6.1.4.1.6296.101.4.3.1.1.3
The alarm severity of alarm. In case of source type 13 gponSourceTlv, It's shown as below. sleAlarmReportingSourceType.A.B.C.D.E.F A: sleAlarmSpecificCode B: sleAlarmReportingSourceType 13 C: sleAlarmReportingSource's length D: type 1-slot 2-port 3-vlan 4-MAC 5-ONU 6-UNI_type 7-UNI_index 255-etc E: legth F: value
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..64)  

sleAlarmSpecificSeverity 1.3.6.1.4.1.6296.101.4.3.1.1.4
The alarm severity. The value cleared indicates the clearing of alarm.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), warning(4), intermediate(5), cleared(6)  

sleAlarmSpecificProblem 1.3.6.1.4.1.6296.101.4.3.1.1.5
Describes the spefic problems e.g. when a shePhysCardFailure is sent here the termperature alarm is specified
Status: current Access: read-only
OBJECT-TYPE    
  Unsigned32  

sleAlarmSpecificProblemText 1.3.6.1.4.1.6296.101.4.3.1.1.6
Textual description of specific problem reported by alarming. To be discussed: Option is to define an alarm for every problem
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..255)  

sleAlarmTimeAndDate 1.3.6.1.4.1.6296.101.4.3.1.1.7
The date and time when the alarm appeared or cleared
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAlarmSpecificSeqNum 1.3.6.1.4.1.6296.101.4.3.1.1.8
Sequence number for the alarm synchronization. This value has a number to be used for the next alarm trap.
Status: current Access: read-only
OBJECT-TYPE    
  Counter32  

sleAlarmReportPairType 1.3.6.1.4.1.6296.101.4.3.1.1.9
The type is whether alarm trap is pair or mono.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER pair(0), mono(1)  

sleAlarmReportNotification 1.3.6.1.4.1.6296.101.4.3.2
OBJECT IDENTIFIER    

sleAlarmReportNotified 1.3.6.1.4.1.6296.101.4.3.2.1
Description.
Status: current Access: read-only
NOTIFICATION-TYPE    

sleAlarmReportControl 1.3.6.1.4.1.6296.101.4.3.3
OBJECT IDENTIFIER    

sleAlarmReportControlRequest 1.3.6.1.4.1.6296.101.4.3.3.1
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER clearAlarmReport(1), delAlarmReport(2)  

sleAlarmReportControlStatus 1.3.6.1.4.1.6296.101.4.3.3.2
Description.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleAlarmReportControlTimer 1.3.6.1.4.1.6296.101.4.3.3.3
Description.
Status: current Access: read-write
OBJECT-TYPE    
  Gauge32  

sleAlarmReportControlTimeStamp 1.3.6.1.4.1.6296.101.4.3.3.4
Description.
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleAlarmReportControlReqResult 1.3.6.1.4.1.6296.101.4.3.3.5
Description.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlRequestResultType  

sleAlarmReportControlSpecificCode 1.3.6.1.4.1.6296.101.4.3.3.6
Alarm specific code
Status: current Access: read-write
OBJECT-TYPE    
  SpecificNum  

sleAlarmReportControlSourceType 1.3.6.1.4.1.6296.101.4.3.3.7
The type of Reporting source
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER entPhysicalEntity(1), ifIndex(2), vccTp(3), macAddress(4), ipv4(5), ipv6(6), threshold(7), advaSource(8), number(9), general(10), eponSource(11), gponSource(12)  

sleAlarmReportControlSource 1.3.6.1.4.1.6296.101.4.3.3.8
The index of the failed component which reports the alarm. It is the entPhysicalIndex in case of a card is reporting, or the ifIndex in case of an interface reporting
Status: current Access: read-write
OBJECT-TYPE    
  OCTET STRING Size(0..255)  

sleAlarmReportNotifications 1.3.6.1.4.1.6296.101.4.3.4
OBJECT IDENTIFIER    

sleAlarmReportCleared 1.3.6.1.4.1.6296.101.4.3.4.1
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmReportDeleted 1.3.6.1.4.1.6296.101.4.3.4.2
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmHistory 1.3.6.1.4.1.6296.101.4.4
OBJECT IDENTIFIER    

sleAlarmHistoryTable 1.3.6.1.4.1.6296.101.4.4.1
The alarm severity table. The alarm severity table associates profile index and AlarmID pairs with severities to be used for alarm traps. (Note that this table does not apply to cleared alarms).
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAlarmHistoryEntry

sleAlarmHistoryEntry 1.3.6.1.4.1.6296.101.4.4.1.1
Entry of the alarm severity table.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAlarmHistoryEntry  

sleAlarmHistoryIndex 1.3.6.1.4.1.6296.101.4.4.1.1.1
The OID of alarm.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 1..65535  

sleAlarmHistorySpecific 1.3.6.1.4.1.6296.101.4.4.1.1.2
The OID of alarm. The following alarms is devided by the specific character, ===============. The division basis is that alarms is bounded or released. 001: portDown: To detect whether physical or logical interface's link status is up or down. 002: portUp: =============== 003: portRemoved: To detect whether physical interface is installed or not. 004: portInstalled: =============== 005: powerFail: To detect whether power module's operation status is good or not. (Without doubt, more than 1 power module should be equipped.) 006: powerOK: =============== 007: powerRemoved: To detect whether power module is installed or not, through the PLD access. (Without doubt, more than 1 power module should be equipped.) 008: powerInstalled: =============== 009: fanFail: To detect whether FAN module's operation status is good or not. 010: fanOK: =============== 011: fanRemoved: To detect whether FAN module is installed or not, through the PLD access. 012: fanInstalled: =============== 013: moduleRemoved: To detect whether physical interface module is installed or not, through the S/W I2C 014: moduleInstalled: =============== 015: systemRestart: Network system is restarted by operator. This is not H/W start but S/W start. =============== 016: systemStart: Network system is restarted by operator or system status. This is not S/W start but H/W start. (This alarm isn't used current) =============== 017: broadcastOver: To detect the receipt of broadcast packet. (This alarm isn't used current) 018: broadcastUnder: =============== 019: cpuOverLoad: To detect whether the configured CPU load threshold is less than current CPU load usage or not. 020: cpuUnderLoad: =============== 021: memoryOverUsed: To detect whether the configured memory threshold is less than current memory usage or not. 022: memoryUnderUsed: =============== 023: portOverThreshold: To detect whether the configured physical or logical interface threshold is less than delta value of current interface's InOctects or not. 024: portUnderThreshold: =============== 025: temperatureHigh: To detect whether the configured system's temperature threshold is less than current temperature or not. 026: temperatureLow: =============== 027: mfgdBlocked: To detect whether the specific MAC by MAC flood guard is blocked or not. 028: mfgdReleased: =============== 029: ipConflict: To detect whether the same IP address on different network node is configured or not. 030: ipUnconflict: =============== 031: dhcpLeaseShortage: To detect whether IP address that can be assigned to subscriber by DHCP server is sufficient or not. 032: dhcpLeaseSufficient: =============== 033: dhcpOccuredIllegalEntry: To detect whether a subsceiber is using a static IP address or not. 034: dhcpRemovedIllegalEntry: =============== 035: rmonAlarmRising: To detect whether rising threshold of a specific MO in RMON alarm sampling is less than current calculated value by alarm sample type or not. But alarm generation would be issued by means of event type in RMON event. 036: rmonAlarmNoRising: =============== 037: rmonAlarmFalling: To detect whether falling threshold of a specific MO in RMON alarm sampling is less than current calculated value by alarm sample type or not. But alarm generation would be issued by means of event type in RMON event. 038: rmonAlarmNoFalling: =============== 039: bpduGuardDisabled: To detect whether edge ports is guarded about superior BPDU or not. In case of insertion edge node with 0 or lower priority than priority of current root bridge node, it will be disarrangement during a short time because of recognition a new inserted node as root bridge. So these edge ports is guarded, and then edge ports is blocked about all superior BPDU. So STP reconfiguration doesn't use this edge ports. =============== 040: rootGuardDisabled: To detect whether edge ports is guarded about superior BPDU or not. In case of insertion edge node with 0 or lower priority than priority of current root bridge node, it will be disarrangement during a short time because of recognition a new inserted node as root bridge. So, Root guard prevents a new inserted node from being root bridge as well as receiving a superior BPDU from root bridge. but this node participates in STP topology reconfiguration. If root bridge does not send a superior BPDU, then this node acts usually though STP state change. =============== 041: portSecurity: To detect whether interface is configured for security or not. This can be used to prevent MAC from flooding as well as spoofing. That is, As a result, this will obstruct an attack as like DoS attack. =============== 042: userLogin: 043: userLogout: =============== 051: igmpGroupJoined: To detect whether a subscriber is joined a multicast group or not. 052: igmpGroupLeaved: =============== 053: dhcpIpaddressBound: To detect wether a dynamic IP address is assigned to a subscriber or not. 054: dhcpIpaddressFree: =============== 055: doorOpened: To detect whether outer door is opeded or not, as external alarm. 056: doorClosed: =============== 057: powerModeChangedPowerToBattery: To detect whether a system is using AC power or battery. A system is using AC power usually. If there is any power problems as like a power failure, a system is using battery instead of AC power. 058: powerModeChangedBatteryToPower: =============== 059: batterylowcapacity: To detect whether current battery capacity is less capacity threshold according to battery usage or not. The capacity of AC power is 16 voltage and battery is 20. Capacity threshold is configured by H/W specification. So operator can't change it. 060: batterynormalcapacity: =============== 061: batteryhighTemperature: To detect whether current temperature of battery is greater than temperature threshold or not. 062: batterynormalTemperature: =============== 063: authenticationFail: To detect whether the connected user is authentic or non-authentic. 064: authenticationNofail: =============== 065: psuAcHighTemperature: To detect whether current temperature of Power Supply Unit is greater than temperature threshold or not. 066: psuAcNormalTemperature: =============== 067: batteryRemoved: To detect whether battery is equipped at network system or not. Battery is used as redundancy power service. So operator can decide the installation of battery. 068: batteryEquipped: =============== 069: batteryLowVoltage: To detect whether battery voltage is less than 12.5 volt or not. 12.5 volt value is configured by H/W specification. So operator can't change it. 070: batteryNormalVoltage: =============== 071: adminAccessLogin: To detect whether a operator connects at this network system or not. 072: adminAccessLogout: =============== 073: cfgdBlocked: To detect whether it is blocked flood to CPU or not. 074: cfgdReleased: =============== 075: sfgdBlocked: To detect whether it is blocked flood to system or not. 076: sfgdReleased: =============== 077: swWatchdogAbnormalState: To detect whether a specific process acts normally or not. 078: swWatchdogNormalState: =============== 079: swWatchdogDetectError: To detect whether a specific process is detected a error related to itself or cleared. 080: swWatchdogClearError: =============== 081: ppsControlBlocked: To detect whether it is blocked by pps-control or not. 082: ppsControlReleased: =============== 083: gotDMITempHighOverAlarm: To detect whether internal temperature exceeds high alarm level or not. 084: gotDMITempHighFallAlarm: =============== 085: gotDMITempLowOverAlarm: To detect whether internal temperature is below low alarm level or not. 086: gotDMITempLowFallAlarm: =============== 087: gotDMITempHighOverWarning: To detect whether internal temperature exceeds high warning level or not. 088: gotDMITempHighFallWarning: =============== 089: gotDMITempLowOverWarning: To detect whether internal temperature is below low warning level or not. 090: gotDMITempLowFallWarning: =============== 091: gotDMIVolHighOverAlarm: To detect whether internal supply voltage exceeds high alarm level or not. 092: gotDMIVolHighFallAlarm: =============== 093: gotDMIVolLowOverAlarm: To detect whether internal supply voltage is below low alarm level or not. 094: gotDMIVolLowFallAlarm: =============== 095: gotDMIVolHighOverWarning: To detect whether internal supply voltage exceeds high warning level or not. 096: gotDMIVolHighFallWarning: =============== 097: gotDMIVolLowOverWarning: To detect whether internal supply voltage is below low warning level or not. 098: gotDMIVolLowFallWarning: =============== 099: gotDMITxBiasHighOverAlarm: To detect whether TX Bias current exceeds high alarm level or not. 100: gotDMITxBiasHighFallAlarm: =============== 101: gotDMITxBiasLowOverAlarm: To detect whether TX Bias current is below low alarm level or not. 102: gotDMITxBiasLowFallAlarm: =============== 103: gotDMITxBiasHighOverWarning: To detect whether TX Bias current exceeds high warning level or not. 104: gotDMITxBiasHighFallWarning: =============== 105: gotDMITxBiasLowOverWarning: To detect whether TX Bias current is below low warning level or not. 106: gotDMITxBiasLowFallWarning: =============== 107: gotDMITxPowerHighOverAlarm: To detect whether TX output power exceeds high alarm level or not. 108: gotDMITxPowerHighFallAlarm: =============== 109: gotDMITxPowerLowOverAlarm: To detect whether TX output power is below low alarm level or not. 110: gotDMITxPowerLowFallAlarm: =============== 111: gotDMITxPowerHighOverWarning: To detect whether TX output power exceeds high warning level or not. 112: gotDMITxPowerHighFallWarning: =============== 113: gotDMITxPowerLowOverWarning: To detect whether TX output power is below low warning level or not. 114: gotDMITxPowerLowFallWarning: =============== 115: gotDMIRxPowerHighOverAlarm: To detect whether RX output power exceeds high alarm level or not. 116: gotDMIRxPowerHighFallAlarm: =============== 117: gotDMIRxPowerLowOverAlarm: To detect whether RX output power is below low alarm level or not. 118: gotDMIRxPowerLowFallAlarm: =============== 119: gotDMIRxPowerHighOverWarning: To detect whether RX output power exceeds high warning level or not. 120: gotDMIRxPowerHighFallWarning: =============== 121: gotDMIRxPowerLowOverWarning: To detect whether RX output power is below low warning level or not. 122: gotDMIRxPowerLowFallWarning: =============== 123: nosRemoteUpgradeRequest: 124: nosRemoteUpgradeSuccess: 125: nosRemoteUpgradeFailAbort: 126: nosRemoteUpgradeFailHeaderError: 127: nosRemoteUpgradeFailDownloadError: 128: nosRemoteUpgradeFailFlashError: 129: nosRemoteUpgradeStart: =============== 130: systemDyingGasp: =============== 133: cliHistory: To detect whether CLI history is detected or not. 134: cliHistoryNo: =============== 135: ntpConnectionFail: To detect whether NTP connection is failed or not. 136: ntpConnectionFailNo: =============== 137: nmsConnectionTypeChanged: To detect whether NMS connection type is changed. =============== 159: clockModuleRemoved: To detect whether clock module is removed or installed. 160: clockModuleInstalled: 161: clockModuleInitFail: To detect whether clock module initiolization is failed or not. 162: clockModuleInitOk: =============== 163: cliHistoryLog: To detect whether CLI history log is over or not. 164: cliHistoryLogNo: =============== 165: slotActionEvent: To detect whether slot action is changed. 166: slotStateChange: To detect whether slot state is changed. =============== 167: interfaceAdminDown: To detect whether physical or logical interface's admin link status is up or down. 168: interfaceAdminUp: =============== 169: slotPowerMonAbnormal: To detect whether slot power monitor abnormal or normal is detected. 170: slotPowerMonNormal: =============== 171: slotErrorLEDChanged: To detect whether error LED is changed. =============== 185: cpuPpsOverThreshold: To detect whether PPS is over threshold or not. 186: cpuPpsUnderThreshold: =============== 199: slotHealthStatusTimeout: To detect whether slot health status is time out or not. 200: slotHealthStatusTimeoutCleared: =============== 201: advaTemperature: To detect whether current chassis temperature is less than chassis temperature threshold or not. 202: advaTemperatureNo: =============== 203: advaPSUFailure: To detect whether ADVA system's power supply unit has a failure or not. 204: advaPSUFailureNo: =============== 205: advaFanFailure: To detect whether ADVA system's FAN has a failure or not. 206: advaFanFailureNo: =============== 207: advaInterfaceReceiveFailure: To detect whether ADVA system's receipt has a failure or not. 208: advaInterfaceReceiveFailureNo: =============== 209: advaInterfaceOpticalThreshold: To detect whether Adva system's optical receive power level is less than optical threshold or not. 210: advaInterfaceOpticalThresholdNo: =============== 211: advaInterfaceTransmitFault: To detect whether ADVA system's transmission has a failure or not. 212: advaInterfaceTransmitFaultNo: =============== 213: dvaInterfaceMisconfiguration: To detect whether ADVA system's interface is configured rightly or not. 214: advaInterfaceMisconfigurationNo: =============== 215: advaInterfaceSFPMismatch: To detect whether ADVA system's SFP interface is mismatched or not. 216: advaInterfaceSFPMismatchNo: =============== 217: advaVoltageLow: To detect whether ADVA system's current voltage is less than voltage threshold or not. 218: advaVoltageLowNo: =============== 219: advaVoltageHigh: To detect whether ADVA system's current voltage is greater than voltage threshold or not. 220: advaVoltageHighNo: =============== 301: erpDomainLotp: To detect whether LOTP(Loss of Test Packet) exists a domain of ERP or not. The Loss of Test Packet defect is defined when a node does not receive any test packet at any of its ports for a period of 3 times. 302: erpDomainLotpNo: =============== 303: erpDomainULotp: To detect whether undirectional LOTP(Loss of Test Packet) exists a domain of ERP or not. The Loss of Test Packet defect is defined when a RM node of one domain does not receive any test packet at one port for a period of 3 times. 304: erpDomainULotpNo: =============== 305: erpDomainMultipleRM: To detect whether Multiple RM node is supported or not. The defect is raised when a RM node receives its own test packets with an Ack destination address field with a non-zero value. 306: erpDomainMultipleRMNo: =============== 307: erpDomainRMNodeReacheablity: To detect whether RM reachability is raised or not. The detection of multiple failures indicates that the ring is segmented and that the RM Node is unreacheable. This is only possible at normal ring nodes isolated from the RM node. 308: erpDomainRMNodeReacheablityNo: =============== 391: startupConfigLoadEnded: To detect whether startup configuration load is ended. =============== 401: eponOnuDeregister: To detect whether ONU is registered into OLT or not. That is, ONU that its operation is service on should be sent registration information to OLT. 402: eponOnuRegister: =============== 403: eponOnuRegistrationError: To detect whether ONU is failed registeration process into OLT. 404: eponOnuNoRegistrationError: =============== 405: eponBadEncryptionKey: To detect wwhether the encryption key is valid or not. A message between ONU and OLT is encrypted using random encryption key. There is that the encryption key is invalid as transmission failure from time to time. 406: eponNoBadEncryptionKey: =============== 407: eponLlidMistmatch: To detect whether Llid of message between ONU and OLT is valid or not. On registering, ONU informs unique ID to OLT. And then, all communication between ONU and OLT must use the unique ID. The unique ID is called Llid. 408: eponNoLlidMismatch: =============== 409: eponTooManyRegister: To detect whether the registered ONU per 1 OLT is greater than 32 or not. That is, ONU can be registered from 1 to the maximum 32 at 1 OLT. 410: eponNoTooManyRegister: =============== 411: eponDyingGASP: To detect whether a ONU is down from dying gasp or not. A ONU could be changed to down state as a number of reasons. By the way, ONU that is changed to down as dying gasp would be sent dying gasp signal to OLT and then ONU's link would be changed to down. 412: eponNoDyingGASP: =============== 413: eponOnuErrFramePeriod: 414: eponOnuNoErrFramePeriod: =============== 415: eponOnuErrFrame: 416: eponOnuNoErrFrame: =============== 417: eponOnuErrFrameSecondSummary: 418: eponOnuNoErrFrameSecondSummary: =============== 419: eponOnuLastOnuDeregister: To detect whether a deregistered ONU is last ONU or not. If a deregistered ONU is last ONU, the OLT would be changed to serviceable status. 420: eponOnuNoLastOnuDeregister: =============== 421: eponOltCableDown: 422: eponOltRecoverCableDown: =============== 501: autoCLIStart: To detect whether the scheduled auto CLI is started or not. 502: autoCLINoStart: =============== 503: autoCLIComplete: To detect whether the scheduled auto CLI is completed or not. 504: autoCLINoComplete: =============== 505: autoCLIRemoveOutputFile: To detect whether the result file of the scheduled auto CLI is removed or not. The reason that the result file is removed is that the configured file size for the result is less than the stored result file size. If so, the oldest file would be removed before everything. 506: autoCLINoRemoveOutputFile: =============== 507: autoResetSystem: To detect whether the system is restarted or not. The conditions that system is restarted is that ping loss threshold is less than current ping loss count during the configured interval and that current free memory size is less than configured free memory size. 508: autoResetNoSystem: =============== 509: autoResetPingReplyLoss: To detect whether ping reply from the designated network node is received or not. Operator designates any gateway system that can communicate to detect current network environment. System sends ICMP packet to the designated gateway system periodically. If the system doesn't receive ping reply packet within any interval, operator recognizes that the system can't communicate any more because of some problems of the system. 510: autoResetNoPingReplyLoss: =============== 511: autoResetMemoryLeakDetect: To detect whether current free memory size is less than the configured free memory size or not. Periodically, free memory size is checked to confirm system availability. 512: autoResetNoMemoryLeakDetect: =============== 601: arulePacketDropDetect: To detect whether it is dropped some packet by arule or not. 602: arulePacketDropRelease: =============== 620: bME1CardNoDetect: 621: clearBME1CardNoDetect: =============== 622: bME1CardAFEerror: 623: clearBME1CardAFEerror: =============== 624: bME1CardIFEerror: 625: clearBME1CardIFEerror: =============== 626: bME1CardFWerror: 627: clearBME1CardFWerror: =============== 628: bME1CardPROVerror: 629: clearBME1CardPROVerror: =============== 630: bME1CrashDetect: 631: clearBME1CrashDetect: =============== 632: bME2CardNoDetect: 633: clearBME2CardNoDetect: =============== 634: bME2CardAFEerror: 635: clearBME2CardAFEerror: =============== 636: bME2CardIFEerror: 637: clearBME2CardIFEerror: =============== 638: bME2CardFWerror: 639: clearBME2CardFWerror: =============== 640: bME2CardPROVerror: 641: clearBME2CardPROVerror: =============== 642: bME2CrashDetect: 643: clearBME2CrashDetect: =============== 644: bME3CardNoDetect: 645: clearBME3CardNoDetect: =============== 646: bME3CardAFEerror: 647: clearBME3CardAFEerror: =============== 648: bME3CardIFEerror: 649: clearBME3CardIFEerror: =============== 650: bME3CardFWerror: 651: clearBME3CardFWerror: =============== 652: bME3CardPROVerror: 653: clearBME3CardPROVerror: =============== 654: bME3CrashDetect: 655: clearBME3CrashDetect: =============== 656: powerFromBattery: 657: clearPowerFromBattery: =============== 658: invalidBatteryStatus: 659: clearInvalidBatteryStatus: =============== 660: batteryChargeLow: 661: clearBatteryChargeLow: =============== 662: batteryNotPresent: 663: clearBatteryNotPresent: =============== 664: voltageLow: 665: clearVoltageLow: =============== 666: tempOverThreshold: 667: clearTempOverThreshold: =============== 668: tempUnderThreshold: 669: clearTempUnderThreshold: =============== 670: cpuOverThreshold: 671: clearCpuOverThreshold: =============== 672: trafficOverload: 673: clearTrafficOverload: =============== 674: gEPONModuleNotDetect: 675: clearGEPONModuleNotDetect: =============== 676: gEPONPortOperationDown: 677: clearGEPONPortOperationDown: =============== 678: gEPONNoIncomingTraffic: 679: clearGEPONNoIncomingTraffic: =============== 680: processCrashDetect: 681: clearProcessCrashDetect: =============== 682: memoryLeakDetect: 683: clearMemoryLeakDetect: =============== 684: memoryCorrupDetect: 685: clearMemoryCorrupDetect: =============== 686: memoryLowDetect: 687: clearMemoryLowDetect: =============== 688: dataLineerror: 689: clearDataLineerror: =============== 690: addressLineerror: 691: clearAddressLineerror: =============== 692: chipsetNotDetcet: 693: clearChipsetNotDetcet: =============== 694: pciBuserror: 695: clearPciBuserror: =============== 696: securityAdminConnect: 697: clearSecurityAdminConnect: =============== 698: oNUPowerDown: 699: clearONUPowerDown: =============== 700: oNUNotRegister: 701: clearONUNotRegister: =============== 702: oNTOpticPre: 703: clearONTOpticPre: =============== 800: switchoverInitiated: =============== 801: switchoverDone: =============== 803: redConfigurationMisMatch: To detect whether redundancy configuration is mismatched. =============== 901: gponNoAuthCBU: To detect no auth CBU is detected. 902: gponDuplicateONU: To detect ONU is duplicated. 903: gponDyingGasp: To detect dying GASP is detected. 904: gponUpgradeComplete: To detect upgrade complete is detected. 905: gponDeregistered: To detect whether deregistered is detected or not. 906: gponRegistered: 907: gponRogueOnu: To detect rogue ONU is detected 908: gponOnuBatteryEvent: To detect whether ONU battery event is detected or not. 909: clearGponOnuBetteryEvent: 910: gponOnuPortOperStatus: To detectONU port operation statue is chagned. 911: gponTransceiverChanged: To detect transceiver is changed. 912: gponOltLosOn: To detect whether OLT LOS is on or off 913: gponOltLosOff: 914: gponOltLosiOn: To detect whether OLT LOSI is on or off 915: gponOltLosiOff: 916: gponDyingGaspOn: To detect whether dying GASP is on or off 917: gponDyingGaspOff: 918: gponOntOSUpgradeStatus: To detect ONT OS upgrade status is changed. 919: gponOntBLUpgradeStatus: To detect BL upgrade status is changed. 920: gponOltRxPowerLoss: To detect OLT RX power is loss. 921: gponOltRxPowerDetected: To detect OLT RX power status is changed. 922: gponOnuTemperatureHighOverThreshold: To detect whether ONU temperature exceeds high threshold or not. 923: gponOnuTemperatureHighFallThreshold: 924: gponOnuTemperatureLowOverThreshold: To detect whether ONU temperature belows low threshold or not. 925: gponOnuTemperatureLowFallThreshold: 926: gponOnuCpuOverThreshold: To detect whether ONU CPU exceeds threshold or not. 927: gponOnuCpuFallThreshold: 928: gponOnuMemoryOverThreshold: To detect whether memory exceeds threshold or not. 929: gponOnuMemoryFallThreshold: 930: gponOnuI2cFail: To detect ONU L2C fail is detected. 931: gponOnuRxOpticLowThreshAlarmOn: To detect whether ONU RX optic belows low threshold or not. 932: gponOnuRxOpticLowThreshAlarmOff: 933: gponOnuRxOpticHighThreshAlarmOn: To detect whether ONU RX optic exceeds high threshold or not. 934: gponOnuRxOpticHighThreshAlarmOff: 935: gponOltLOFIOn: To detect whether OLT LOFL is on or off 936: gponOltLOFIOff: 937: gponOltDOWOn: To detect whether OLT DOW is on or off 938: gponOltDOWOff: 939: gponOltSFOn: To detect whether OLT SF is on or off 940: gponOltSFOff: 941: gponOltSDOn: To detect whether OLT SD is on or off 942: gponOltSDOff: 943: gponOltLCDGIOn: To detect whether OLT LCDGL is on or off 944: gponOltLCDGIOff: 945: gponOltRDOn: To detect whether OLT RD is on or off 946: gponOltRDOff: 947: gponOltSUFOn: To detect whether OLT SUF is on or off 948: gponOltSUFOff: 949: gponOltLOAOn: To detect whether OLT LOA is on or off 950: gponOltLOAOff: 951: gponOltLOAMIOn: To detect whether OLT LOAML is on or off 952: gponOltLOAMIOff: 953: gponOltMEMOn: To detect whether OLT MEM is on or off 954: gponOltMEMOff: 955: gponOltPEEOn: To detect whether OLT PEE is on or off 956: gponOltPEEOff: 957: gponOltPSTOn: To detect whether OLT PST is on or off 958: gponOltPSTOff: 959: gponOltERROn: To detect whether OLT ERR is on or off 960: gponOltERROff: 961: gponOltREIOn: To detect whether OLT REI is on or off 962: gponOltREIOff: 963: gponAntiSpoofingDupPortOn: To detect whether anti spoofing port is duplicated or not. 964: gponAntiSpoofingDupPortOff: 965: gponRedundancySwitchOver: To detect redundancy switchover is changed. 966: gponDuplicatedRangingResponse: To detect ranging response is changed. 967: gponOnuPortOpticModuleRemove: To detect whether ONU port optic module is removed or installed. 968: gponOnuPortOpticModuleInstall: 969: gponOnuOMCCProblemDetected: To detect whether ONU OMCC problem is detected or not. 970: gponOnuOMCCProblemCleared: 971: gponOltFixedTcontAlarmOn: To detect whether OLT fixed Tcont alarm is on or off. 972: gponOltFixedTcontAlarmOff: 973: gponOltDynamicTcontAlarmOn: To detect whether OLT dynamic Tcont alarm is on or off. 974: gponOltDynamicTcontAlarmOff: 975: gponOltPortCountAlarmOn: To detect whether OLT port count alarm is on or off. 976: gponOltPortCountAlarmOff: 977: gponOltCableDownAlarmOn: To detect whether OLT cable down alarm is on or off. 978: gponOltCableDownAlarmOff: 979: gponOltDeactiveMonitorAlarmOn: To detect whether deactive monitor alarm is on or off. 980: gponOltDeactiveMonitorAlarmOff: 981: gponOltDfiOn: To detect whether OLT DFI is on or off. 982: gponOltDfiOff: 984: gponOltTransceiverPortChanged: To detect OLT transeiver port is changed. 985: gponOnuPortOperStatusDown: To detect whether ONU port operation status is down or up. 986: gponOnuPortOperStatusUp:: =============== 1101: emLogDefectCPUHighOver: To detect whether EM log detect CPU exceeds threshold or not. 1102: emLogDefectCPUHighUnder: 1103: emLogTemperHighOver: To detect whether EM log temperature exceeds high threshold or not. 1104: emLogTemperHighUnder: 1105: emLogTemperLowUnder: To detect whether EM log CPU belows low threshold or not. 1106: emLogTemperLowOver: 1107: emLogMemLowUnder: To detect whether EM log memory belows low threshold or not. 1108: emLogMemLowOver: 1109: emLogFanFail: To detect whether EM log fan status is failed or not. 1110: emLogFanFailCleared: 1111: emLogPhyCRCFail: To detect whether EM log physical CRC is failed or not. 1112: emLogPhyCRCFailCleared: 1113: emLogPhyDetectFail: To detect whether EM log physical status is failed or not. 1114: emLogPhyDetectFailCleared: 1115: emLogSFUMateInitFail: To detect whether EM log SFU mate initialization is failed or not. 1116: emLogSFUMateInitFailCleared: 1117: emLogDaemonHealthBad: To detect whether EM log daemon health is bad or not. 1118: emLogDaemonHealthBadCleared: 1119: emLogGPIURavenLinkDown: To detect whether EM log GPIU RAVEN link is down or not. 1120: emLogGPIURavenLinkDownCleared: =============== 1151: slotNosUpgradeStart: To detect whether slot NOS upgrade is started or ended. 1152: slotNosUpgradeEnd: =============== 1331: gponOnuAniVoltageLowThreshAlarmOn: To detect whether ONU ANI voltage belows low threshold or not. 1332: gponOnuAniVoltageLowThreshAlarmOff: 1333: gponOnuAniVoltageHighThreshAlarmOn: To detect whether ONU ANI voltage exceeds high threshold or not. 1334: gponOnuAniVoltageHighThreshAlarmOff: 1335: gponOnuAniTemperatureLowThreshAlarmOn: To detect whether ONU ANI temperature belows low threshold or not. 1336: gponOnuAniTemperatureLowThreshAlarmOff: 1337: gponOnuAniTemperatureHighThreshAlarmOn: To detect whether ONU ANI temperature exceeds high threshold or not. 1338: gponOnuAniTemperatureHighThreshAlarmOff: 1339: gponOnuAniTxBiasLowThreshAlarmOn: To detect whether ONU ANI TX bias belows low threshold or not. 1340: gponOnuAniTxBiasLowThreshAlarmOff: 1341: gponOnuAniTxBiasHighThreshAlarmOn: To detect whether ONU ANI TX bias exceeds high threshold or not. 1342: gponOnuAniTxBiasHighThreshAlarmOff: 1343: gponOnuAniTxpowerLowThreshAlarmOn: To detect whether ONU ANI TX power belows low threshold or not. 1344: gponOnuAniTxpowerLowThreshAlarmOff: 1345: gponOnuAniTxpowerHighThreshAlarmOn: To detect whether ONU ANI TX power exceeds high threshold or not. 1346: gponOnuAniTxpowerHighThreshAlarmOff:
Status: current Access: read-only
OBJECT-TYPE    
  SpecificNum  

sleAlarmHistorySeverity 1.3.6.1.4.1.6296.101.4.4.1.1.3
The severity of alarm.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), warning(4), intermediate(5)  

sleAlarmHistoryText 1.3.6.1.4.1.6296.101.4.4.1.1.4
Textual description of specific problem reported by alarming. To be discussed: Option is to define an alarm for every problem
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..255)  

sleAlarmHistoryTime 1.3.6.1.4.1.6296.101.4.4.1.1.5
The severity of alarm.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAlarmHistorySeqNum 1.3.6.1.4.1.6296.101.4.4.1.1.6
Sequence number for the alarm synchronization. This value has a number to be used for the next alarm trap.
Status: current Access: read-only
OBJECT-TYPE    
  Counter32  

sleAlarmHistoryPairType 1.3.6.1.4.1.6296.101.4.4.1.1.7
The type is whether alarm trap is pair or mono.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER pair(0), mono(1)  

sleAlarmHistoryControl 1.3.6.1.4.1.6296.101.4.4.2
OBJECT IDENTIFIER    

sleAlarmHistoryControlRequest 1.3.6.1.4.1.6296.101.4.4.2.1
This attribute identifies the control commands. updateAlarmList: the NE updates entries of alarms in the sleAlarmListTable after having changed alarm severities of alarms (due to change profile pointers in managed entities or after modification of alarm severities in profiles). This command should be applied once after having finisled modifications of severties. modifyAlarmSeverity: modifies the severity of an alarm in specific profile. createAlarmSeverityProfile: creates a new profile with default severities. The severities then have to be modified with command changeAlarmSeverity. deleteAlarmSeverityProfile: deletes a profile. Profile 1 is not allowed to be deleted. Notifications : none
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER clearAlarmHistory(1)  

sleAlarmHistoryControlStatus 1.3.6.1.4.1.6296.101.4.4.2.2
The status of a control request.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleAlarmHistoryControlTimer 1.3.6.1.4.1.6296.101.4.4.2.3
The maximum wait time for the manager for command ending. For long running commands. The manager reads this value from the DSLAM.
Status: current Access: read-write
OBJECT-TYPE    
  Unsigned32  

sleAlarmHistoryControlTimeStamp 1.3.6.1.4.1.6296.101.4.4.2.4
The time stamp of the last command (end of command).
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleAlarmHistoryControlReqResult 1.3.6.1.4.1.6296.101.4.4.2.5
The result of the last user command.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlRequestResultType  

sleAlarmHistoryNotification 1.3.6.1.4.1.6296.101.4.4.3
OBJECT IDENTIFIER    

sleAlarmHistoryCleared 1.3.6.1.4.1.6296.101.4.4.3.1
Description.
Status: current Access: read-only
NOTIFICATION-TYPE    

sleEfmOam 1.3.6.1.4.1.6296.101.4.5
OBJECT IDENTIFIER    

sleEfmOamTable 1.3.6.1.4.1.6296.101.4.5.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleEfmOamEntry

sleEfmOamEntry 1.3.6.1.4.1.6296.101.4.5.1.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleEfmOamEntry  

sleOamPortIndex 1.3.6.1.4.1.6296.101.4.5.1.1.1
Description.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 1..255  

sleOamMuxAction 1.3.6.1.4.1.6296.101.4.5.1.1.2
This value governs the flow of frames from the MAC client to the Muliplexer function.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER fwd(1), discard(2)  

sleOamParAction 1.3.6.1.4.1.6296.101.4.5.1.1.3
This value governs the flow of non-OAMPDUs within the Parser function.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER fwd(1), lb(2), discard(3)  

sleOamAdminState 1.3.6.1.4.1.6296.101.4.5.1.1.4
This object is used to provision the default administrative OAM mode for this interface.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleOamMode 1.3.6.1.4.1.6296.101.4.5.1.1.5
This object configures the mode of OAM operation for this Ethernet like interface.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER passive(0), active(1)  

sleOamUnidirectionMode 1.3.6.1.4.1.6296.101.4.5.1.1.6
Description.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER notAvaliable(-2), disable(0), enable(1)  

sleOamFunctionsSupported 1.3.6.1.4.1.6296.101.4.5.1.1.7
The OAM functions supported on this Ethernet like interface.
Status: current Access: read-only
OBJECT-TYPE    
  BITS unidirectionalSupport(0), loopbackSupport(1), eventSupport(2), variableSupport(3)  

sleOamPeerStatus 1.3.6.1.4.1.6296.101.4.5.1.1.8
This object indicates whether the information in this row should be considered valid.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER inactive(0), active(1)  

sleOamPeerMacAddress 1.3.6.1.4.1.6296.101.4.5.1.1.9
The MAC address of the peer OAM entity.
Status: current Access: read-only
OBJECT-TYPE    
  MacAddress  

sleOamPeerMode 1.3.6.1.4.1.6296.101.4.5.1.1.10
The mode Info of the OAM peer as reflected in the latest Information OAMPDU received with a Local Information TLV.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER passive(0), active(1), unknown(2)  

sleOamPeerFunctionsSupported 1.3.6.1.4.1.6296.101.4.5.1.1.11
The OAM functions supported on this Ethernet like interface.
Status: current Access: read-only
OBJECT-TYPE    
  BITS unidirectionalSupport(0), loopbackSupport(1), eventSupport(2), variableSupport(3)  

sleOamRemLoopback 1.3.6.1.4.1.6296.101.4.5.1.1.12
Description.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleOamRemLoopbackCnt 1.3.6.1.4.1.6296.101.4.5.1.1.13
The number of test Packet
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 1..100  

sleOamLm 1.3.6.1.4.1.6296.101.4.5.1.1.14
This value indicates whether Link-Monitor supports or not for port index.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleOamLmAction 1.3.6.1.4.1.6296.101.4.5.1.1.15
The Action of Link-Monitor for port index.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER syslog(0), snmpTrap(1)  

sleOamLmFrameWindow 1.3.6.1.4.1.6296.101.4.5.1.1.16
This value is the Window size of Errored Frame. Default : 10, Unit : 100ms
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 10..600  

sleOamLmFrameThresh 1.3.6.1.4.1.6296.101.4.5.1.1.17
This value is the Threshold size of Errored Frame. Default: 1
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleOamLmFrameTotal 1.3.6.1.4.1.6296.101.4.5.1.1.18
Total Count of Errored Frame
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmFramePeriodWindow 1.3.6.1.4.1.6296.101.4.5.1.1.19
This value is size of Errored Period Window. Default : 1000000 frames
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 1000..200000000  

sleOamLmFramePeriodThresh 1.3.6.1.4.1.6296.101.4.5.1.1.20
This value is size of Errored Period Threshold. Default : 10
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 0..65535  

sleOamLmFramePeriodTotal 1.3.6.1.4.1.6296.101.4.5.1.1.21
Total Count of Errored Period Frame
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmFrameSecondSummaryWindow 1.3.6.1.4.1.6296.101.4.5.1.1.22
This value is the Window size of errored frame in a second Default : 60 secs
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 10..900  

sleOamLmFrameSecondSummaryThresh 1.3.6.1.4.1.6296.101.4.5.1.1.23
This value is the Threshold size of errored frame in a second Default: 1
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 0..900  

sleOamLmFrameSecondSummaryTotal 1.3.6.1.4.1.6296.101.4.5.1.1.24
Total Count of Errored Frame Second
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmSymbolPeriodWindow 1.3.6.1.4.1.6296.101.4.5.1.1.25
This value is the window size of symbol errors. Default: 625 millions, Unit: 1 million
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 1..1000000  

sleOamLmSymbolPeriodThresh 1.3.6.1.4.1.6296.101.4.5.1.1.26
This value is the Threshold size of symbol errors Default : 1
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleOamLmSymbolPeriodTotal 1.3.6.1.4.1.6296.101.4.5.1.1.27
Total Count of Symbol errors
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmRemSeqNum 1.3.6.1.4.1.6296.101.4.5.1.1.28
This value is the Sequence Number for event
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameLength 1.3.6.1.4.1.6296.101.4.5.1.1.29
This value is the Length of Errored Frame
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 0..255  

sleOamLmRemFrameTimeStamp 1.3.6.1.4.1.6296.101.4.5.1.1.30
This value is the TimeStamp of Errored Frame
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleOamLmRemFrameWindow 1.3.6.1.4.1.6296.101.4.5.1.1.31
This value is the Window Size of Errored Frame
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameThresh 1.3.6.1.4.1.6296.101.4.5.1.1.32
This value is the Threshold Size of Errored Frame
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameErrors 1.3.6.1.4.1.6296.101.4.5.1.1.33
This value is the Count of Errored Frame
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameErrorRunTotal 1.3.6.1.4.1.6296.101.4.5.1.1.34
This value is the Total Count of Errored Frame
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmRemFrameEventRunTotal 1.3.6.1.4.1.6296.101.4.5.1.1.35
This value is the Total Count of Errored Frame Event
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFramePeriodLength 1.3.6.1.4.1.6296.101.4.5.1.1.36
This value is the Length of Errored Frame Period
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 0..255  

sleOamLmRemFramePeriodTimeStamp 1.3.6.1.4.1.6296.101.4.5.1.1.37
This value is the TimeStamp of Errored Frame Period
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleOamLmRemFramePeriodWindow 1.3.6.1.4.1.6296.101.4.5.1.1.38
This value is the Window Size of Errored Frame Period
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFramePeriodThresh 1.3.6.1.4.1.6296.101.4.5.1.1.39
This value is the Threshold Size of Errored Frame Period
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFramePeriodErrors 1.3.6.1.4.1.6296.101.4.5.1.1.40
This value is the Count of Errored Frame Period
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFramePeriodErrorRunTotal 1.3.6.1.4.1.6296.101.4.5.1.1.41
This value is the Total Count of Errored Frame Period
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmRemFramePeriodEventRunTotal 1.3.6.1.4.1.6296.101.4.5.1.1.42
This value is the Total Count of Errored Frame Period Event
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameSecondSummaryLength 1.3.6.1.4.1.6296.101.4.5.1.1.43
This value is the Length of Errored Frame Second Summary
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 0..255  

sleOamLmRemFrameSecondSummaryTimeStamp 1.3.6.1.4.1.6296.101.4.5.1.1.44
This value is the TimeStamp of Errored Frame Second Summary
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleOamLmRemFrameSecondSummaryWindow 1.3.6.1.4.1.6296.101.4.5.1.1.45
This value is the Window size of Errored Frame Second Summary
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameSecondSummaryThresh 1.3.6.1.4.1.6296.101.4.5.1.1.46
This value is the Threshold size of Errored Frame Second Summary
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameSecondSummaryErrors 1.3.6.1.4.1.6296.101.4.5.1.1.47
This value is the Count of Errored Frame Second Summary
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameSecondSummaryErrorRunTotal 1.3.6.1.4.1.6296.101.4.5.1.1.48
This value is the Total Count of Errored Frame Second Summary
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemFrameSecondSummaryEventRunTotal 1.3.6.1.4.1.6296.101.4.5.1.1.49
This value is the Total Count of Errored Frame Second Summary Event
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemSymbolPeriodLength 1.3.6.1.4.1.6296.101.4.5.1.1.50
This value is the Length of Errored Symbols
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleOamLmRemSymbolPeriodTimeStamp 1.3.6.1.4.1.6296.101.4.5.1.1.51
This value is the TimeStamp of Errored Symbols
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleOamLmRemSymbolPeriodWindow 1.3.6.1.4.1.6296.101.4.5.1.1.52
This value is the Window size of Errored Symbols
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmRemSymbolPeriodThresh 1.3.6.1.4.1.6296.101.4.5.1.1.53
This value is the Threshold size of Errored Symbols
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmRemSymbolPeriodErrors 1.3.6.1.4.1.6296.101.4.5.1.1.54
This value is the Count of Errored Symbols
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmRemSymbolPeriodErrorRunTotal 1.3.6.1.4.1.6296.101.4.5.1.1.55
This value is the Total Count of Errored Symbols
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleOamLmRemSymbolPeriodEventRunTotal 1.3.6.1.4.1.6296.101.4.5.1.1.56
This value is the Total Count of Errored Symbols Event
Status: current Access: read-only
OBJECT-TYPE    
  Counter64  

sleEfmOamControl 1.3.6.1.4.1.6296.101.4.5.2
OBJECT IDENTIFIER    

sleOamControlRequest 1.3.6.1.4.1.6296.101.4.5.2.1
The MIB object for the user command..
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER setEfmOamPortProfile(1), setEfmOamPortRemLoopback(2), setEfmOamPortLinkMonitor(3)  

sleOamControlStatus 1.3.6.1.4.1.6296.101.4.5.2.2
Describes the status of a user command group, used for block commands while a command execution in process.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleOamControlTimer 1.3.6.1.4.1.6296.101.4.5.2.3
Maximum command duration time in case of long running
Status: current Access: read-write
OBJECT-TYPE    
  Gauge32  

sleOamControlTimeStamp 1.3.6.1.4.1.6296.101.4.5.2.4
Time stamp attribute set at end of command.
Status: current Access: read-only
OBJECT-TYPE    
  TimeStamp  

sleOamControlReqResult 1.3.6.1.4.1.6296.101.4.5.2.5
Command result attribute
Status: current Access: read-only
OBJECT-TYPE    
  SleControlRequestResultType  

sleOamControlIndex 1.3.6.1.4.1.6296.101.4.5.2.6
Description.
Status: current Access: read-write
OBJECT-TYPE    
  Integer32  

sleOamControlPortAdminState 1.3.6.1.4.1.6296.101.4.5.2.7
This object is used to provision the default administrative OAM mode for this interface.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleOamControlPortMode 1.3.6.1.4.1.6296.101.4.5.2.8
This object configures the mode of OAM operation for this Ethernet like interface.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER passive(0), active(1)  

sleOamControlPortUnidirectionMode 1.3.6.1.4.1.6296.101.4.5.2.9
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER notAvaliable(-2), disable(0), enable(1)  

sleOamControlPortRemLoopback 1.3.6.1.4.1.6296.101.4.5.2.10
The value indicates an optional data link layer frame-level loopback mode, which is controlled remotely.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1), start(2)  

sleOamControlRemLoopbackPkCnt 1.3.6.1.4.1.6296.101.4.5.2.11
The number of test Packet
Status: current Access: read-write
OBJECT-TYPE    
  Integer32 1..100  

sleOamControlLm 1.3.6.1.4.1.6296.101.4.5.2.12
This value indicates whether Link-Monitor supports or not for port index.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleOamControlLmAction 1.3.6.1.4.1.6296.101.4.5.2.13
The Action of Link-Monitor for port index.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER syslog(0), snmpTrap(1)  

sleOamControlLmFrameWindow 1.3.6.1.4.1.6296.101.4.5.2.14
This value is the Window size of Errored Frame. Default : 30 secs
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 10..600  

sleOamControlLmFrameThresh 1.3.6.1.4.1.6296.101.4.5.2.15
This value is the Threshold size of Errored Frame. Default: 1
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..65535  

sleOamControlLmFramePeriodWindow 1.3.6.1.4.1.6296.101.4.5.2.16
This value is size of Errored Period Window. Default : 1000000 frames
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1000..200000000  

sleOamControlLmFramePeriodThresh 1.3.6.1.4.1.6296.101.4.5.2.17
This value is size of Errored Period Threshold. Default : 10
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..65535  

sleOamControlLmFrameSecondSummaryWindow 1.3.6.1.4.1.6296.101.4.5.2.18
This value is the Window size of errored frame in a second Default : 60 secs
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 10..900  

sleOamControlLmFrameSecondSummaryThresh 1.3.6.1.4.1.6296.101.4.5.2.19
This value is the Threshold size of errored frame in a second Default: 1
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..900  

sleOamControlLmSymbolPeriodWindow 1.3.6.1.4.1.6296.101.4.5.2.20
This value is the window size of symbol errors. Default: 625 millions, Unit: 1 million
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..1000000  

sleOamControlLmSymbolPeriodThresh 1.3.6.1.4.1.6296.101.4.5.2.21
This value is the Threshold size of symbol errors Default : 1
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..65535  

sleEfmOamNotification 1.3.6.1.4.1.6296.101.4.5.3
OBJECT IDENTIFIER    

sleEfmOamPortProfileChanged 1.3.6.1.4.1.6296.101.4.5.3.1
Status: current Access: read-write
NOTIFICATION-TYPE    

sleEfmOamPortRemLoopback 1.3.6.1.4.1.6296.101.4.5.3.2
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleEfmOamPortLinkMonitorChanged 1.3.6.1.4.1.6296.101.4.5.3.3
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAdvaSystem 1.3.6.1.4.1.6296.101.4.6
OBJECT IDENTIFIER    

sleAdvaSystemTable 1.3.6.1.4.1.6296.101.4.6.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAdvaSystemEntry

sleAdvaSystemEntry 1.3.6.1.4.1.6296.101.4.6.1.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAdvaSystemEntry  

sleAdvaFSPOperationMode 1.3.6.1.4.1.6296.101.4.6.1.1.1
Mode in which the FSP 150 is to operate
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER master(1), slave(2)  

sleAdvaActiveNetworkInterface 1.3.6.1.4.1.6296.101.4.6.1.1.2
Which of the network interfaces is the active one
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER both(0), portA(1), portB(2)  

sleAdvaForceNetworkInterface 1.3.6.1.4.1.6296.101.4.6.1.1.3
Description.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER unforced(0), forceA(1), forceB(2)  

sleAdvaReportingInterval 1.3.6.1.4.1.6296.101.4.6.1.1.4
Repeat period in 1/10th seconds for Organisation Specific Alarm Status OAMPDU. If non-zero and there are any alarms active, repeat the last-sent AS after this interval from when it was last sent.If zero then only send on changes.As a special action, writing zero to this will cause the Alarm Status OAMPDU to be sent (poll).
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaNEMIFitted 1.3.6.1.4.1.6296.101.4.6.1.1.5
Indicator as to whether a NEMI is fitted.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..1  

sleAdvaForceReset 1.3.6.1.4.1.6296.101.4.6.1.1.6
Writing True (1) causes the system to be reset.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..1  

sleAdvaManagerAddress 1.3.6.1.4.1.6296.101.4.6.1.1.7
The IP address of the Management station monitoring this sytem.
Status: current Access: read-only
OBJECT-TYPE    
  IpAddress  

sleAdvaMinRailVoltageThreshold 1.3.6.1.4.1.6296.101.4.6.1.1.8
Threshold in mV below which the Voltage low alarm will be activated. (Alarm Configuration)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaMaxRailVoltageThreshold 1.3.6.1.4.1.6296.101.4.6.1.1.9
Threshold in mV above which the Voltage high alarm will be activated. (Alarm Configuration)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaTemperatureThreshold 1.3.6.1.4.1.6296.101.4.6.1.1.10
Threshold in C above which the Temperature alarm will be activated. (Alarm Configuration)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaPartNumber 1.3.6.1.4.1.6296.101.4.6.1.1.11
Part number for the chassis. (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..32)  

sleAdvaSerialNumber 1.3.6.1.4.1.6296.101.4.6.1.1.12
Serial number for the chassis. (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..32)  

sleAdvaFirmwareVersion 1.3.6.1.4.1.6296.101.4.6.1.1.13
Firmware version for the chassis. (Chassis) (0-length string if unknown).
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..32)  

sleAdvaFPGAVersion 1.3.6.1.4.1.6296.101.4.6.1.1.14
FPGA version for the chassis. (Chassis) (0-length string if unknown).
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..32)  

sleAdvaHardwareRevision 1.3.6.1.4.1.6296.101.4.6.1.1.15
Hardware revision for the chassis. (Chassis)(0-length string if unknown).
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..4)  

sleAdvaCLEICode 1.3.6.1.4.1.6296.101.4.6.1.1.16
CLEI for the chassis. (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..14)  

sleAdvaTemperature 1.3.6.1.4.1.6296.101.4.6.1.1.17
Current chassis temperature in degrees C. (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaRailVoltage 1.3.6.1.4.1.6296.101.4.6.1.1.18
Current DC power rail voltage (mV). (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaPSUStates 1.3.6.1.4.1.6296.101.4.6.1.1.19
Bit-mask representing the state of the PSUs. Starting at the LSB, each failed PSU is indicated by a bit set to '1'. (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaPSUType 1.3.6.1.4.1.6296.101.4.6.1.1.20
Type of PSUs fitted. (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER ac(1), dc(2)  

sleAdvaFansFitted 1.3.6.1.4.1.6296.101.4.6.1.1.21
Bit-mask representing which fans are fitted. Starting at the LSB, each bit set to '1' indicates a fitted fan. Knowledge of which fans ought to be fitted is assumed. (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaFanState 1.3.6.1.4.1.6296.101.4.6.1.1.22
Bit-mask representing the state of the fan. Starting at the LSB, each failed fan is indicated by a bit set to '1'. (Chassis)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaTransmitMode 1.3.6.1.4.1.6296.101.4.6.1.1.23
Electrical Interface for remote instance 4
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER halfDuplex(0), fullDuplex(1)  

sleAdvaSystemControl 1.3.6.1.4.1.6296.101.4.6.2
OBJECT IDENTIFIER    

sleAdvaSystemControlRequest 1.3.6.1.4.1.6296.101.4.6.2.1
The MIB object for the user command..
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER setAdvaSystemProfile(1), setAdvaAlarmProfile(2), setAdvaElectricalInterface(3)  

sleAdvaSystemControlStatus 1.3.6.1.4.1.6296.101.4.6.2.2
Describes the status of a user command group, used for block commands while a command execution in process.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleAdvaSystemControlTimer 1.3.6.1.4.1.6296.101.4.6.2.3
Description.
Status: current Access: read-write
OBJECT-TYPE    
  Gauge32  

sleAdvaSystemControlTimeStamp 1.3.6.1.4.1.6296.101.4.6.2.4
Description.
Status: current Access: read-write
OBJECT-TYPE    
  TimeTicks  

sleAdvaSystemControlReqResult 1.3.6.1.4.1.6296.101.4.6.2.5
Description.
Status: current Access: read-write
OBJECT-TYPE    
  SleControlRequestResultType  

sleAdvaSystemControlPortIndex 1.3.6.1.4.1.6296.101.4.6.2.6
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..255  

sleAdvaSystemControlFSPOperationMode 1.3.6.1.4.1.6296.101.4.6.2.7
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER master(1), save(2)  

sleAdvaSystemControlForceNetworkInterface 1.3.6.1.4.1.6296.101.4.6.2.8
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER unforced(0), forceA(1), forceB(2)  

sleAdvaSystemControlReportingInterval 1.3.6.1.4.1.6296.101.4.6.2.9
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaSystemControlForceReset 1.3.6.1.4.1.6296.101.4.6.2.10
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..1  

sleAdvaSystemControlMinRailVoltageThreshold 1.3.6.1.4.1.6296.101.4.6.2.11
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaSystemControlMaxRailVoltageThreshold 1.3.6.1.4.1.6296.101.4.6.2.12
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaSystemControlTemperatureThreshold 1.3.6.1.4.1.6296.101.4.6.2.13
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaSystemControlTransmitMode 1.3.6.1.4.1.6296.101.4.6.2.14
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER halfDuplex(0), fullDuplex(1)  

sleAdvaSystemNotification 1.3.6.1.4.1.6296.101.4.6.3
OBJECT IDENTIFIER    

sleAdvaSystemProfileChanged 1.3.6.1.4.1.6296.101.4.6.3.1
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAdvaAlarmProfileChanged 1.3.6.1.4.1.6296.101.4.6.3.2
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAdvaElectricalInterfaceChanged 1.3.6.1.4.1.6296.101.4.6.3.3
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAdvaGeneral 1.3.6.1.4.1.6296.101.4.7
OBJECT IDENTIFIER    

sleAdvaGeneralTable 1.3.6.1.4.1.6296.101.4.7.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAdvaGeneralEntry

sleAdvaGeneralEntry 1.3.6.1.4.1.6296.101.4.7.1.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAdvaGeneralEntry  

sleAdvaRemInstance 1.3.6.1.4.1.6296.101.4.7.1.1.1
Description.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..4  

sleAdvaOperationalStatus 1.3.6.1.4.1.6296.101.4.7.1.1.2
encoding TBD. (General)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER up(1), down(2), outofservice(3), unknown(4)  

sleAdvaLineSpeed 1.3.6.1.4.1.6296.101.4.7.1.1.3
Line speed in kbit/s. (General)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaMACAddress 1.3.6.1.4.1.6296.101.4.7.1.1.4
The Ethernet address of the interface. (General)
Status: current Access: read-only
OBJECT-TYPE    
  MacAddress  

sleAdvaConnectorType 1.3.6.1.4.1.6296.101.4.7.1.1.5
encoding TBD. (General)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER sc(1), fc(2), mu(3), rj45(4), lu(5)  

sleAdvaAutonegiotation 1.3.6.1.4.1.6296.101.4.7.1.1.6
Autonegiotation package - aAutoNegAdminState. (General)Enabled or disabled.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER enable(1), disable(2)  

sleAdvaLinkLossForwarding 1.3.6.1.4.1.6296.101.4.7.1.1.7
When enabled access interface is brought down, when both network interfaces are down. (General)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..1  

sleAdvaAdminState 1.3.6.1.4.1.6296.101.4.7.1.1.8
Whether the interface is available. (General)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER up(1), down(2)  

sleAdvaRemoteInterfaceIndex 1.3.6.1.4.1.6296.101.4.7.1.1.9
The index of the remote interface the interface is connected to. (General)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaUserDefinedString 1.3.6.1.4.1.6296.101.4.7.1.1.10
User definable string associated with interface. (General)
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..32)  

sleAdvaRemoteSignalling 1.3.6.1.4.1.6296.101.4.7.1.1.11
Autonegiotation package - aAutoNegRemoteSignalling. (AutoNego)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER detected(1), notdetected(2)  

sleAdvaConfiguration 1.3.6.1.4.1.6296.101.4.7.1.1.12
Autonegiotation package - aAutoNegConfig. (AutoNego)Indicates whether Auto-Negotiation signaling is in progress or has completed.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER other(1), configuring(2), completed(3), disabled(4), parallelDetectFail(5)  

sleAdvaLocalTechnologyAbility 1.3.6.1.4.1.6296.101.4.7.1.1.13
Autonegiotation package - aAutoNegLocalTechnologyAbility. (AutoNego)This indicates the technology ability of the local device
Status: current Access: read-only
OBJECT-TYPE    
  BITS global(0), unknown(1), base10T(2), base10TFD(3), base100T4(4), base100TX(5), base100TXFD(6), fdxpause(7), fdxapause(8), fdxspause(9), fdxbpause(10), base100T2(11), base100T2FD(12), base1000X(13), base1000XFD(14), base1000T(15), base1000TFD(16), remFault1(17), remFault2(18), isoEthernet(19)  

sleAdvaAdvertisedTechnologyAbility 1.3.6.1.4.1.6296.101.4.7.1.1.14
Autonegiotation package - aAutoNegAdvertisedTechnologyAbility. (AutoNego)The advertised technology ability of the local device.
Status: current Access: read-only
OBJECT-TYPE    
  BITS global(0), unknown(1), base10T(2), base10TFD(3), base100T4(4), base100TX(5), base100TXFD(6), fdxpause(7), fdxapause(8), fdxspause(9), fdxbpause(10), base100T2(11), base100T2FD(12), base1000X(13), base1000XFD(14), base1000T(15), base1000TFD(16), remFault1(17), remFault2(18), isoEthernet(19)  

sleAdvaReceivedTechnologyAbility 1.3.6.1.4.1.6296.101.4.7.1.1.15
Autonegiotation package - aAutoNegReceivedTechnologyAbility. (AutoNego)Indicates the advertised technology ability of the remote hardware.
Status: current Access: read-only
OBJECT-TYPE    
  BITS global(0), unknown(1), base10T(2), base10TFD(3), base100T4(4), base100TX(5), base100TXFD(6), fdxpause(7), fdxapause(8), fdxspause(9), fdxbpause(10), base100T2(11), base100T2FD(12), base1000X(13), base1000XFD(14), base1000T(15), base1000TFD(16), remFault1(17), remFault2(18), isoEthernet(19)  

sleAdvaLocalSectorAbility 1.3.6.1.4.1.6296.101.4.7.1.1.16
Autonegiotation package - aAutoNegLocalSectorAbility. (AutoNego)
Status: current Access: read-only
OBJECT-TYPE    
  BITS other(0), ethernet(1), isoethernet(2)  

sleAdvaAdvertisedSectorAbility 1.3.6.1.4.1.6296.101.4.7.1.1.17
Autonegiotation package - aAutoNegLocalSectorAbility. (AutoNego)
Status: current Access: read-only
OBJECT-TYPE    
  BITS other(0), ethernet(1), isoethernet(2)  

sleAdvaReceivedSectorAbility 1.3.6.1.4.1.6296.101.4.7.1.1.18
Autonegiotation package - aAutoNegLocalSectorAbility. (AutoNego)
Status: current Access: read-only
OBJECT-TYPE    
  BITS other(0), ethernet(1), isoethernet(2)  

sleAdvaDuplexCapabilities 1.3.6.1.4.1.6296.101.4.7.1.1.19
Mandatory package - aMacCapabilities. (PHY)The modes of duplex the access interface can support
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER halfduplex(0), fullduplex(1)  

sleAdvaPHYType 1.3.6.1.4.1.6296.101.4.7.1.1.20
Basic Package - aPhyType. (PHY)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER other(1), unknown(2), none(3), base10(4), base100T4(5), base100X(6), base100T2(7), base1000X(8), base1000T(9)  

sleAdvaPHYTypeList 1.3.6.1.4.1.6296.101.4.7.1.1.21
Basic Package - aPhyTypeList. (PHY)
Status: current Access: read-only
OBJECT-TYPE    
  BITS other(0), unknown(1), none(2), base10(3), base100T4(4), base100X(5), base100T2(6), base1000X(7), base1000T(8)  

sleAdvaMIIDetect 1.3.6.1.4.1.6296.101.4.7.1.1.22
Basic Package - aMIIDetect. (PHY)
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER unknown(1), nothingConnected(2), connected(3), absent(4)  

sleAdvaPHYState 1.3.6.1.4.1.6296.101.4.7.1.1.23
Description.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER enable(1), disable(2)  

sleAdvaGoodFramesTransmitted 1.3.6.1.4.1.6296.101.4.7.1.1.24
Mandatory package - aFramesTransmittedOK. (PHY)Non-resettable, wrapping count of good frames transmitted since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaSingleCollisionFrames 1.3.6.1.4.1.6296.101.4.7.1.1.25
Mandatory package - aSingleCollisionFrames. (PHY)Non-resettable, wrapping count of single collisions since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaMultipleCollisionFrames 1.3.6.1.4.1.6296.101.4.7.1.1.26
Mandatory package - aMultipleCollisionFrames. (PHY)Non-resettable, wrapping count of multiple collisions since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaGoodFramesReceived 1.3.6.1.4.1.6296.101.4.7.1.1.27
Mandatory package - aFramesReceivedOKNon-resettable, wrapping count of good frames received since OAM enabled
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaFCSErrors 1.3.6.1.4.1.6296.101.4.7.1.1.28
Mandatory package - aFrameCheckSequenceErrors. (PHY)Non-resettable, wrapping count of frames received with frame check sequence error since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaAlignmentErrors 1.3.6.1.4.1.6296.101.4.7.1.1.29
Mandatory package - aAlignmentErrors. (PHY)Non-resettable, wrapping count of frames received with alignment error since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaFramesTooLong 1.3.6.1.4.1.6296.101.4.7.1.1.30
aFrameTooLongErrors. (PHY)Non-resettable, wrapping count of frames received longer than maxFrameSize
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaBytesTransmitted 1.3.6.1.4.1.6296.101.4.7.1.1.31
Non-resettable, wrapping count of bytes transmitted since OAM enabled. (PHY)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaBytesReceived 1.3.6.1.4.1.6296.101.4.7.1.1.32
Non-resettable, wrapping count of bytes received since OAM enabled. (PHY)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaSymbolErrors 1.3.6.1.4.1.6296.101.4.7.1.1.33
Non-resettable, wrapping count of symbol errors received. Note: some interfaces may only report one symbol error per frame. (PHY)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaGeneralControl 1.3.6.1.4.1.6296.101.4.7.2
OBJECT IDENTIFIER    

sleAdvaGeneralControlRequest 1.3.6.1.4.1.6296.101.4.7.2.1
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER setAdvaGeneralProfile(1), setAdvaAutonegProfile(2)  

sleAdvaGeneralControlStatus 1.3.6.1.4.1.6296.101.4.7.2.2
Description.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleAdvaGeneralControlTimer 1.3.6.1.4.1.6296.101.4.7.2.3
Description.
Status: current Access: read-write
OBJECT-TYPE    
  Gauge32  

sleAdvaGeneralControlTimeStamp 1.3.6.1.4.1.6296.101.4.7.2.4
Description.
Status: current Access: read-write
OBJECT-TYPE    
  TimeTicks  

sleAdvaGeneralControlReqResult 1.3.6.1.4.1.6296.101.4.7.2.5
Description.
Status: current Access: read-write
OBJECT-TYPE    
  SleControlRequestResultType  

sleAdvaGeneralControlPortIndex 1.3.6.1.4.1.6296.101.4.7.2.6
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..255  

sleAdvaGeneralControlRemInstance 1.3.6.1.4.1.6296.101.4.7.2.7
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..4  

sleAdvaGeneralControlLineSpeed 1.3.6.1.4.1.6296.101.4.7.2.8
Description.
Status: current Access: read-write
OBJECT-TYPE    
  Integer32  

sleAdvaGeneralControlAutonegiotation 1.3.6.1.4.1.6296.101.4.7.2.9
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER enable(1), disable(2)  

sleAdvaGeneralControlLinkLossForwarding 1.3.6.1.4.1.6296.101.4.7.2.10
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..1  

sleAdvaGeneralControlUserDefinedString 1.3.6.1.4.1.6296.101.4.7.2.11
Description.
Status: current Access: read-write
OBJECT-TYPE    
  OCTET STRING Size(0..32)  

sleAdvaGeneralControlAdvertisedTechnologyAbility 1.3.6.1.4.1.6296.101.4.7.2.12
Description.
Status: current Access: read-write
OBJECT-TYPE    
  BITS global(0), unknown(1), base10T(2), base10TFD(3), base100T4(4), base100TX(5), base100TXFD(6), fdxpause(7), fdxapause(8), fdxspause(9), fdxbpause(10), base100T2(11), base100T2FD(12), base1000X(13), base1000XFD(14), base1000T(15), base1000TFD(16), remFault1(17), remFault2(18), isoEthernet(19)  

sleAdvaGeneralControlAdvertisedSectorAbility 1.3.6.1.4.1.6296.101.4.7.2.13
Description.
Status: current Access: read-write
OBJECT-TYPE    
  BITS other(0), ethernet(1), isoethernet(2)  

sleAdvaGeneralNotification 1.3.6.1.4.1.6296.101.4.7.3
OBJECT IDENTIFIER    

sleAdvaGeneralProfileChanged 1.3.6.1.4.1.6296.101.4.7.3.1
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAdvaAutonegProfileChanged 1.3.6.1.4.1.6296.101.4.7.3.2
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAdvaModule 1.3.6.1.4.1.6296.101.4.8
OBJECT IDENTIFIER    

sleAdvaModuleTable 1.3.6.1.4.1.6296.101.4.8.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAdvaModuleEntry

sleAdvaModuleEntry 1.3.6.1.4.1.6296.101.4.8.1.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAdvaModuleEntry  

sleAdvaModuleType 1.3.6.1.4.1.6296.101.4.8.1.1.1
encoding TBD
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER sfp(1), nemi(2), other(3)  

sleAdvaModulePartNumber 1.3.6.1.4.1.6296.101.4.8.1.1.2
Part number for the module
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..16)  

sleAdvaModuleSerialNumber 1.3.6.1.4.1.6296.101.4.8.1.1.3
Serial number for the module
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..16)  

sleAdvaModuleFirmwareVersion 1.3.6.1.4.1.6296.101.4.8.1.1.4
Firmware version for the module.
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..16)  

sleAdvaModuleSoftwareVersion 1.3.6.1.4.1.6296.101.4.8.1.1.5
Software version for the module
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..16)  

sleAdvaModuleHardwareRevision 1.3.6.1.4.1.6296.101.4.8.1.1.6
Hardware revision for the module.
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..4)  

sleAdvaModuleCLEICode 1.3.6.1.4.1.6296.101.4.8.1.1.7
CLEI for the module.
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING Size(0..14)  

sleAdvaOptical 1.3.6.1.4.1.6296.101.4.9
OBJECT IDENTIFIER    

sleAdvaOpticalTable 1.3.6.1.4.1.6296.101.4.9.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAdvaOpticalEntry

sleAdvaOpticalEntry 1.3.6.1.4.1.6296.101.4.9.1.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAdvaOpticalEntry  

sleAdvaOpticalThresholdLevel 1.3.6.1.4.1.6296.101.4.9.1.1.1
Threshold for the receive power level in dBm below which the Interface optical threshold alarm will be activated.Per interface.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaLinkLength1 1.3.6.1.4.1.6296.101.4.9.1.1.2
Link length supported for 9/125 mm fiber, units of km
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaLinkLength2 1.3.6.1.4.1.6296.101.4.9.1.1.3
Link length supported for 9/125 mm fiber, units of 100 m
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaLinkLength3 1.3.6.1.4.1.6296.101.4.9.1.1.4
Link length supported for 50/125 mm fiber, units of 10 m
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaLinkLength4 1.3.6.1.4.1.6296.101.4.9.1.1.5
Link length supported for 62.5/125 mm fiber, units of 10 m
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaLinkLengthCu 1.3.6.1.4.1.6296.101.4.9.1.1.6
Link length supported for copper, units of meters
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..255  

sleAdvaWaveLength 1.3.6.1.4.1.6296.101.4.9.1.1.7
Nominal wavelength in nm
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaLaserBias 1.3.6.1.4.1.6296.101.4.9.1.1.8
Current laser bias current in mA.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaTransmitPower 1.3.6.1.4.1.6296.101.4.9.1.1.9
Current transmit power in dBm as reported by optics.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaReceivePower 1.3.6.1.4.1.6296.101.4.9.1.1.10
Current receive power in dBm as reported by optics.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaLaserTxTemperature 1.3.6.1.4.1.6296.101.4.9.1.1.11
Current temperature of laser in degrees C.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaOpticalControl 1.3.6.1.4.1.6296.101.4.9.2
OBJECT IDENTIFIER    

sleAdvaOpticalControlRequest 1.3.6.1.4.1.6296.101.4.9.2.1
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER setAdvaOpticalAlarm(1)  

sleAdvaOpticalControlStatus 1.3.6.1.4.1.6296.101.4.9.2.2
Description.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleAdvaOpticalControlTimer 1.3.6.1.4.1.6296.101.4.9.2.3
Description.
Status: current Access: read-write
OBJECT-TYPE    
  Gauge32  

sleAdvaOpticalControlTimeStamp 1.3.6.1.4.1.6296.101.4.9.2.4
Description.
Status: current Access: read-write
OBJECT-TYPE    
  TimeTicks  

sleAdvaOpticalControlReqResult 1.3.6.1.4.1.6296.101.4.9.2.5
Description.
Status: current Access: read-write
OBJECT-TYPE    
  SleControlRequestResultType  

sleAdvaOpticalControlPortIndex 1.3.6.1.4.1.6296.101.4.9.2.6
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..255  

sleAdvaOpticalControlRemInstance 1.3.6.1.4.1.6296.101.4.9.2.7
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..3  

sleAdvaOpticalControlThresholdLevel 1.3.6.1.4.1.6296.101.4.9.2.8
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaOpticalNotification 1.3.6.1.4.1.6296.101.4.9.3
OBJECT IDENTIFIER    

sleAdvaOpticalAlarmChanged 1.3.6.1.4.1.6296.101.4.9.3.1
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAdvaOam 1.3.6.1.4.1.6296.101.4.10
OBJECT IDENTIFIER    

sleAdvaOamTable 1.3.6.1.4.1.6296.101.4.10.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAdvaOamEntry

sleAdvaOamEntry 1.3.6.1.4.1.6296.101.4.10.1.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAdvaOamEntry  

sleAdvaAdminStatus 1.3.6.1.4.1.6296.101.4.10.1.1.1
OAM package - aOAMAdminState (Configuration)Whether the OAM sublayer is enabled or disabled.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleAdvaMode 1.3.6.1.4.1.6296.101.4.10.1.1.2
OAM package - aOAMMode. (Configuration)Mode of the OAM client
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER passive(0), active(1)  

sleAdvaRemMACAddress 1.3.6.1.4.1.6296.101.4.10.1.1.3
OAM package - aOAMRemoteMACAddress. (Configuration)
Status: current Access: read-only
OBJECT-TYPE    
  OCTET STRING  

sleAdvaRemConfig 1.3.6.1.4.1.6296.101.4.10.1.1.4
OAM package - aOAMRemoteConfiguration. (Configuration)Bit-mask corresponding to the OAM configuration field:
Status: current Access: read-only
OBJECT-TYPE    
  BITS unidirSupport(0), loopbackSupport(1), linkEvents(2), variableRetrieval(3), orgSpecific(4), orgSpecificEvents(5), orgSpecificInfoTLV(6)  

sleAdvaRemPduConfig 1.3.6.1.4.1.6296.101.4.10.1.1.5
OAM package - aOAMRemotePDUConfiguration. (Configuration)The maximum PDU size supported
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaLocFlags 1.3.6.1.4.1.6296.101.4.10.1.1.6
OAM package - aOAMLocalFlags. (Configuration)Bit-mask corresponding to the OAM flag field transmitted:
Status: current Access: read-only
OBJECT-TYPE    
  BITS linkFault(0), dyingGasp(1), criticalEvent(2), localStableDiscovering(3), localStable(4), remoteStableDiscovering(5), remoteStable(6)  

sleAdvaRemFlags 1.3.6.1.4.1.6296.101.4.10.1.1.7
OAM package - aOAMRemoteFlags. (Configuration)Bit-mask corresponding to the OAM flag field received
Status: current Access: read-only
OBJECT-TYPE    
  BITS linkFault(0), dyingGasp(1), criticalEvent(2), localStableDiscovering(3), localStable(4), remoteStableDiscovering(5), remoteStable(6)  

sleAdvaRemState 1.3.6.1.4.1.6296.101.4.10.1.1.8
OAM package - aOAMRemoteState. (Configuration)Bit-mask corresponding to the OAM State field received
Status: current Access: read-only
OBJECT-TYPE    
  BITS reserved(0), parserAction1(1), parserAction2(2), muxAction(3)  

sleAdvaRemVendorOUI 1.3.6.1.4.1.6296.101.4.10.1.1.9
OAM package - aOAMRemoteVendorOUI. (Configuration)The value of the OUI from the remote end of the OAM link.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaRemDeviceNumber 1.3.6.1.4.1.6296.101.4.10.1.1.10
OAM package - aOAMRemoteVendorIdDeviceNumber. (Configuration) The value of the Device Identifier from the remote end of the OAM link.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaRemVendorVersion 1.3.6.1.4.1.6296.101.4.10.1.1.11
OAM package - aOAMRemoteVendorIdVersion. (Configuration) The value of the Version Identifier from the remote end of the OAM link.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaLocErrSymbolPeriodEventConfig 1.3.6.1.4.1.6296.101.4.10.1.1.12
OAM package - aOAMLocalErrSymPeriodConfig. (Configuration) Configuration for the event indicating the duration of the period and the number of symbols that must be exceeded.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaLocErrFrameEventConfig 1.3.6.1.4.1.6296.101.4.10.1.1.13
OAM package - aOAMLocalErrFrameConfig. (Configuration) Configuration for the event indicating the duration and the number of errored frames that must be exceeded.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaLocErrFramePeriodEventConfig 1.3.6.1.4.1.6296.101.4.10.1.1.14
OAM package - aOAMLocalErrFramePeriodConfig. (Configuration) Configuration for the event indicating the durationin terms of minFrameSize that can be transmitted and that number of errored frames that must be exceeded.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaLocErrFrameSecsSummaryEventConfig 1.3.6.1.4.1.6296.101.4.10.1.1.15
OAM package - aOAMLocalErrFrameSecsSummaryConfig. (Configuration) Configuration for the evert indicating duration window and number of errored frame seconds in that duration that must be exceeded.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER 0..65535  

sleAdvaPDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.16
OAM package - aOAMPDUTx. (PDU Performance)Non-resettable, wrapping count of OAM PDUs transmitted since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaPDUsRx 1.3.6.1.4.1.6296.101.4.10.1.1.17
OAM package - aOAMPDURx. (PDU Performance)Non-resettable, wrapping count of OAM PDUs received since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaUnsupportedCodesRx 1.3.6.1.4.1.6296.101.4.10.1.1.18
OAM package - aOAMUnsupportedCodesRx. (PDU Performance)Non-resettable, wrapping count of OAM PDUs received that are not supported by device since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaInfoPDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.19
OAM package - aOAMInformationTx. (PDU Performance)Non-resettable, wrapping count of OAM Info PDUs transmitted since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaInfoPDUsRx 1.3.6.1.4.1.6296.101.4.10.1.1.20
OAM package - aOAMInformationRx. (PDU Performance)Non-resettable, wrapping count of OAM Info PDUs received since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaEventNotificationPDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.21
OAM package - aOAMEventNotificationTx. (PDU Performance)Non-resettable, wrapping count of OAM Event PDUs transmitted since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaUniqueEventNotificationPDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.22
OAM package - aOAMUniqueEventNotificationTx. (PDU Performance) Non-resettable, wrapping count of OAM Event PDUs received with a different sequence number than previously since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaDupEventNotificationPDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.23
OAM package - aOAMDuplicateEventNotificationTx. (PDU Performance) Non-resettable, wrapping count of OAM Event PDUs received with the same sequence number as previously since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaLoopbackControlPDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.24
OAM package - aOAMLoopbackControlTx. (PDU Performance) Non-resettable, wrapping count of OAM Loopback Control PDUs transmitted since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaLoopbackControlPDUsRx 1.3.6.1.4.1.6296.101.4.10.1.1.25
OAM package - aOAMLoopbackControlRx. (PDU Performance) Non-resettable, wrapping count of OAM Loopback Control PDUs received since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaVariableRequestPDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.26
OAM package - aOAMVariableRequestTx. (PDU Performance) Non-resettable, wrapping count of OAM Variable Request PDUs transmitted since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaVariableRequestPDUsRx 1.3.6.1.4.1.6296.101.4.10.1.1.27
OAM package - aOAMVariableRequestRx. (PDU Performance) Non-resettable, wrapping count of OAM Variable Request PDUs received since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaVariableResponsePDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.28
OAM package - aOAMVariableResponseTx. (PDU Performance) Non-resettable, wrapping count of OAM Variable Response PDUs transmitted since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaVariableResponsePDUsRx 1.3.6.1.4.1.6296.101.4.10.1.1.29
OAM package - aOAMVariableResponseRx. (PDU Performance) Non-resettable, wrapping count of OAM Variable Response PDUs received since OAM enabled
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaVendorPDUsTx 1.3.6.1.4.1.6296.101.4.10.1.1.30
OAM package - aOAMOrganizationSpecificTx . (PDU Performance) Non-resettable, wrapping count of OAM Vendor PDUs transmitted since OAM enabled.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaVendorPDUsRx 1.3.6.1.4.1.6296.101.4.10.1.1.31
OAM package - aOAMOrganizationSpecificRx. (PDU Performance)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaRemFramesLostDuetoOAMErr 1.3.6.1.4.1.6296.101.4.10.1.1.32
OAM package - aFramesLostDueToOAMError. (PDU Performance) Non-resettable, wrapping count of frames that would have been transmitted but for an OAM sublayer error.
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaLocErrSymbolPeriodEvent 1.3.6.1.4.1.6296.101.4.10.1.1.33
The most recently transmitted event of this type. (Error)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaLocErrFrameSecsEvent 1.3.6.1.4.1.6296.101.4.10.1.1.34
The most recently transmitted event of this type. (Error)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaLocErrFramePeriodEvent 1.3.6.1.4.1.6296.101.4.10.1.1.35
The most recently transmitted event of this type. (Error)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaLocErrFrameSecsSummaryEvent 1.3.6.1.4.1.6296.101.4.10.1.1.36
The most recently transmitted event of this type. (Error)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaRemErrSymbolPeriodEvent 1.3.6.1.4.1.6296.101.4.10.1.1.37
The most recently received event of this type. (Error)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaRemErrFrameSecsEvent 1.3.6.1.4.1.6296.101.4.10.1.1.38
The most recently received event of this type. (Error)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaRemoteErrorFramePeriodEvent 1.3.6.1.4.1.6296.101.4.10.1.1.39
The most recently received event of this type. (Error)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaRemoteErrorFrameSecsSummaryEvent 1.3.6.1.4.1.6296.101.4.10.1.1.40
The most recently received event of this type. (Error)
Status: current Access: read-only
OBJECT-TYPE    
  Integer32  

sleAdvaOamControl 1.3.6.1.4.1.6296.101.4.10.2
OBJECT IDENTIFIER    

sleAdvaOamControlRequest 1.3.6.1.4.1.6296.101.4.10.2.1
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER setAdvaOamProfile(1)  

sleAdvaOamControlStatus 1.3.6.1.4.1.6296.101.4.10.2.2
Description.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleAdvaOamControlTimer 1.3.6.1.4.1.6296.101.4.10.2.3
Description.
Status: current Access: read-write
OBJECT-TYPE    
  Gauge32  

sleAdvaOamControlTimeStamp 1.3.6.1.4.1.6296.101.4.10.2.4
Description.
Status: current Access: read-write
OBJECT-TYPE    
  TimeTicks  

sleAdvaOamControlReqResult 1.3.6.1.4.1.6296.101.4.10.2.5
Description.
Status: current Access: read-write
OBJECT-TYPE    
  SleControlRequestResultType  

sleAdvaOamControlPortIndex 1.3.6.1.4.1.6296.101.4.10.2.6
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..255  

sleAdvaOamControlRemInstance 1.3.6.1.4.1.6296.101.4.10.2.7
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..2  

sleAdvaOamControlAdminStatus 1.3.6.1.4.1.6296.101.4.10.2.8
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleAdvaOamControlMode 1.3.6.1.4.1.6296.101.4.10.2.9
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER passive(0), active(1)  

sleAdvaOamNotification 1.3.6.1.4.1.6296.101.4.10.3
OBJECT IDENTIFIER    

setAdvaOamProfileChanged 1.3.6.1.4.1.6296.101.4.10.3.1
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmLED 1.3.6.1.4.1.6296.101.4.11
OBJECT IDENTIFIER    

sleAlarmLEDTable 1.3.6.1.4.1.6296.101.4.11.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAlarmLEDEntry

sleAlarmLEDEntry 1.3.6.1.4.1.6296.101.4.11.1.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAlarmLEDEntry  

sleAlarmLEDType 1.3.6.1.4.1.6296.101.4.11.1.1.1
The alarm that LED indicate.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER fanFail(1), fanRemove(2), memoryOver(3), moduleRemove(4), portLinkDown(5), portRemove(6), portThreadOver(7), powerFail(8), powerRemove(9), temperatureHigh(10), slotRemove(11), ponLOS(12)  

sleAlarmLEDStatus 1.3.6.1.4.1.6296.101.4.11.1.1.2
The status of alarm LED.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER enable(1), disable(2), unknown(255)  

sleAlarmLEDLevel 1.3.6.1.4.1.6296.101.4.11.1.1.3
The Level of alarm LED.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), unrated(255)  

sleAlarmLEDLevelTable 1.3.6.1.4.1.6296.101.4.11.2
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SEQUENCE OF  
    SleAlarmLEDLevelEntry

sleAlarmLEDLevelEntry 1.3.6.1.4.1.6296.101.4.11.2.1
Description.
Status: current Access: not-accessible
OBJECT-TYPE    
  SleAlarmLEDLevelEntry  

sleAlarmLEDLevelIndex 1.3.6.1.4.1.6296.101.4.11.2.1.1
LED level index.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), error(4), unrated(255)  

sleAlarmLEDLevelBlock 1.3.6.1.4.1.6296.101.4.11.2.1.2
LED level block.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER unblock(1), block(2), unknown(255)  

sleAlarmLEDLevelOperStatus 1.3.6.1.4.1.6296.101.4.11.2.1.3
Alarm current operation status.
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER on(1), off(2)  

sleAlarmLEDControl 1.3.6.1.4.1.6296.101.4.11.3
OBJECT IDENTIFIER    

sleAlarmLEDControlRequest 1.3.6.1.4.1.6296.101.4.11.3.1
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER alarmLedOff(1), setAlarmLedLevel(2), clearAlarmLed(3), alarmLedBlock(4)  

sleAlarmLEDControlStatus 1.3.6.1.4.1.6296.101.4.11.3.2
Description.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleAlarmLEDControlTimer 1.3.6.1.4.1.6296.101.4.11.3.3
Description.
Status: current Access: read-write
OBJECT-TYPE    
  Gauge32  

sleAlarmLEDControlTimeStamp 1.3.6.1.4.1.6296.101.4.11.3.4
Description.
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleAlarmLEDControlReqResult 1.3.6.1.4.1.6296.101.4.11.3.5
Description.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlRequestResultType  

sleAlarmLEDControlType 1.3.6.1.4.1.6296.101.4.11.3.6
The alarm that LED indicate.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER fanFail(1), fanRemove(2), memoryOver(3), moduleRemove(4), portLinkDown(5), portRemove(6), portThreadOver(7), powerFail(8), powerRemove(9), temperatureHigh(10), slotRemove(11), ponLOS(12)  

sleAlarmLEDControlLevel 1.3.6.1.4.1.6296.101.4.11.3.7
The Level of alarm LED.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER critical(1), major(2), minor(3), all(254)  

sleAlarmLEDControlBlock 1.3.6.1.4.1.6296.101.4.11.3.8
LED level block.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER unblock(1), block(2)  

sleAlarmLEDNotification 1.3.6.1.4.1.6296.101.4.11.4
OBJECT IDENTIFIER    

sleAlarmLEDOffChanged 1.3.6.1.4.1.6296.101.4.11.4.1
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmLEDLevelChanged 1.3.6.1.4.1.6296.101.4.11.4.2
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmLEDCleared 1.3.6.1.4.1.6296.101.4.11.4.3
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleAlarmLEDBlockChanged 1.3.6.1.4.1.6296.101.4.11.4.4
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731Oam 1.3.6.1.4.1.6296.101.4.12
OBJECT IDENTIFIER    

sleY1731Base 1.3.6.1.4.1.6296.101.4.12.1
OBJECT IDENTIFIER    

sleY1731BaseGroup 1.3.6.1.4.1.6296.101.4.12.1.1
OBJECT IDENTIFIER    

sleY1731Enable 1.3.6.1.4.1.6296.101.4.12.1.1.1
Enables/Ddisables ITU-T Y.1731 OAM function
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731TrunkEnable 1.3.6.1.4.1.6296.101.4.12.1.1.2
Enables/Disables Y.1731 OAM on a trunk port
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731LtrCacheHoldTime 1.3.6.1.4.1.6296.101.4.12.1.1.3
Indicates the time that cache entries will be retained
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 1..65535  

sleY1731LtrCacheSize 1.3.6.1.4.1.6296.101.4.12.1.1.4
Indicates the number of entries in the traceroute cache
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 1..4095  

sleY1731SnmpServerTraps 1.3.6.1.4.1.6296.101.4.12.1.1.5
Indicates the SNMP traps
Status: current Access: read-only
OBJECT-TYPE    
  BITS rdi(0), loc(1), unp(2), unm(3), mmg(4), unl(5), ais(6), lck(7)  

sleY1731XcheckStartDelay 1.3.6.1.4.1.6296.101.4.12.1.1.6
Indicates the delay before the cross-check is started
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 1..65535  

sleY1731DefaultMegLevel 1.3.6.1.4.1.6296.101.4.12.1.1.7
Indicates the level to be created dynamic MHF
Status: current Access: read-only
OBJECT-TYPE    
  Integer32 0..7  

sleY1731DefaultMegMhfCreation 1.3.6.1.4.1.6296.101.4.12.1.1.8
Indicates the mode of MHF creation
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER none(0), default(1), explicit(2)  

sleY1731PduToCfm 1.3.6.1.4.1.6296.101.4.12.1.1.9
Enables/Disables changing from Y.1731 PDU format to CFM PDU format
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731DedicatedVlan 1.3.6.1.4.1.6296.101.4.12.1.1.10
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731RmepCreation 1.3.6.1.4.1.6296.101.4.12.1.1.11
RMEP creation mode
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER dynamic(1), static(2)  

sleY1731CCIgnoreDefect 1.3.6.1.4.1.6296.101.4.12.1.1.12
CC Ignore Defect Mode
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731RapsFloodingBlock 1.3.6.1.4.1.6296.101.4.12.1.1.13
R-APS Flooding Block Mode
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731TlvPermission 1.3.6.1.4.1.6296.101.4.12.1.1.14
Indicates TLV Permission
Status: current Access: read-only
OBJECT-TYPE    
  INTEGER none(1), chassis(2)  

sleY1731BaseControl 1.3.6.1.4.1.6296.101.4.12.1.2
OBJECT IDENTIFIER    

sleY1731BaseControlRequest 1.3.6.1.4.1.6296.101.4.12.1.2.1
This attribute identifies the control commands. updateAlarmList: the NE updates entries of alarms in the sleAlarmListTable after having changed alarm severities of alarms (due to change profile pointers in managed entities or after modification of alarm severities in profiles). This command should be applied once after having finisled modifications of severties. modifyAlarmSeverity: modifies the severity of an alarm in specific profile. createAlarmSeverityProfile: creates a new profile with default severities. The severities then have to be modified with command changeAlarmSeverity. deleteAlarmSeverityProfile: deletes a profile. Profile 1 is not allowed to be deleted. Notifications : none
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER setY1731Enable(1), setY1731TrunkEnable(2), setY1731LtrCacheProfile(3), setY1731SnmpProfile(4), setY1731XcheckProfile(5), setY1731DefaultMegProfile(6), setY1731PduToCfm(7), setY1731DedicatedVlan(8), destroyMipCcdb(9), destroyLtrCache(10), setRmepCreation(11), setTrunkOamstatus(12), setY1731CCIgnoreDefect(13), setY1731RapsFloodingBlock(14), setY1731TlvPermission(15)  

sleY1731BaseControlStatus 1.3.6.1.4.1.6296.101.4.12.1.2.2
The status of a control request.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlStatusType  

sleY1731BaseControlTimer 1.3.6.1.4.1.6296.101.4.12.1.2.3
The maximum wait time for the manager for command ending. For long running commands. The manager reads this value from the DSLAM.
Status: current Access: read-write
OBJECT-TYPE    
  Gauge32  

sleY1731BaseControlTimeStamp 1.3.6.1.4.1.6296.101.4.12.1.2.4
The time stamp of the last command (end of command).
Status: current Access: read-only
OBJECT-TYPE    
  TimeTicks  

sleY1731BaseControlReqResult 1.3.6.1.4.1.6296.101.4.12.1.2.5
The result of the last user command.
Status: current Access: read-only
OBJECT-TYPE    
  SleControlRequestResultType  

sleY1731BaseControlEnable 1.3.6.1.4.1.6296.101.4.12.1.2.6
Enables/Ddisables ITU-T Y.1731 OAM function
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731BaseControlTrunkEnable 1.3.6.1.4.1.6296.101.4.12.1.2.7
Enables/Disables Y.1731 OAM on a trunk port
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731BaseControlLtrCacheHoldTime 1.3.6.1.4.1.6296.101.4.12.1.2.8
Indicates the time that cache entries will be retained
Status: current Access: read-write
OBJECT-TYPE    
  Integer32 1..65535  

sleY1731BaseControlLtrCacheSize 1.3.6.1.4.1.6296.101.4.12.1.2.9
Indicates the number of entries in the traceroute cache
Status: current Access: read-write
OBJECT-TYPE    
  Integer32 1..4095  

sleY1731BaseControlSnmpServerTraps 1.3.6.1.4.1.6296.101.4.12.1.2.10
Indicates the SNMP traps
Status: current Access: read-write
OBJECT-TYPE    
  BITS rdi(0), loc(1), unp(2), unm(3), mmg(4), unl(5), ais(6), lck(7)  

sleY1731BaseControlXcheckStartDelay 1.3.6.1.4.1.6296.101.4.12.1.2.11
Indicates the delay before the cross-check is started
Status: current Access: read-write
OBJECT-TYPE    
  Integer32 1..65535  

sleY1731BaseControlDefaultMegLevel 1.3.6.1.4.1.6296.101.4.12.1.2.12
Indicates the level to be created dynamic MHF
Status: current Access: read-write
OBJECT-TYPE    
  Integer32 0..7  

sleY1731BaseControlDefaultMegMhfCreation 1.3.6.1.4.1.6296.101.4.12.1.2.13
Indicates the mode of MHF creation
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER none(0), default(1), explicit(2)  

sleY1731BaseControlPduToCfm 1.3.6.1.4.1.6296.101.4.12.1.2.14
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731BaseControlDedicatedVlan 1.3.6.1.4.1.6296.101.4.12.1.2.15
Description.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731BaseControlRmepCreation 1.3.6.1.4.1.6296.101.4.12.1.2.16
RMEP creation mode
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER dynamic(1), static(2)  

sleY1731BaseControlTrunkIndex 1.3.6.1.4.1.6296.101.4.12.1.2.17
Trunk Index
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER 1..65535  

sleY1731BaseControlTrunkOamStatus 1.3.6.1.4.1.6296.101.4.12.1.2.18
OAM status per each Trunk port.
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731BaseControlTrunkMeg 1.3.6.1.4.1.6296.101.4.12.1.2.19
trunk port meg name.
Status: current Access: read-write
OBJECT-TYPE    
  OCTET STRING  

sleY1731BaseControlCCIgnoreDefect 1.3.6.1.4.1.6296.101.4.12.1.2.20
CC Ignore Defect Mode
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731BaseControlRapsFloodingBlock 1.3.6.1.4.1.6296.101.4.12.1.2.21
R-APS Flooding Block Mode
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER disable(0), enable(1)  

sleY1731BaseControlTlvPermission 1.3.6.1.4.1.6296.101.4.12.1.2.22
Indicates TLV Permission
Status: current Access: read-write
OBJECT-TYPE    
  INTEGER none(1), chassis(2)  

sleY1731BaseNotification 1.3.6.1.4.1.6296.101.4.12.1.3
OBJECT IDENTIFIER    

sleY1731EnableChanged 1.3.6.1.4.1.6296.101.4.12.1.3.1
setY1731Enable
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731TrunkEnableChanged 1.3.6.1.4.1.6296.101.4.12.1.3.2
setY1731TrunkEnable
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731LtrCacheProfileChanged 1.3.6.1.4.1.6296.101.4.12.1.3.3
setY1731LtrCacheProfile
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731SnmpProfileChanged 1.3.6.1.4.1.6296.101.4.12.1.3.4
setY1731SnmpProfile
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731XcheckProfileChanged 1.3.6.1.4.1.6296.101.4.12.1.3.5
setY1731XcheckProfile
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731DefaultMegProfileChanged 1.3.6.1.4.1.6296.101.4.12.1.3.6
setY1731DefaultMegProfile
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731PduToCfmChanged 1.3.6.1.4.1.6296.101.4.12.1.3.7
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731DedicatedVlanChanged 1.3.6.1.4.1.6296.101.4.12.1.3.8
Description.
Status: current Access: read-write
NOTIFICATION-TYPE    

sleY1731MipCcdbDestroyed 1.3.6.1.4.1.6296.101.4.12.1.3.9
destroyMipCcdb
Status: current Access: read-write