EZ5 MIB Catalog

CISCO-CDMA-AHDLC-MIB

2005-11-14

This MIB module provides details concerning AHDLC engine state, performance, configuration and notification. An AHDLC channel handles one AHDLC session. AN AHDLC engine controls a set of AHDLC channels. The following diagram illustrates a typical usage of an AHDLC service adapter in a 3G CDMA wireless data network +==========+ +========+==========+ | RAdio | AHDLC packets |AHDLC | | | Network |============== |engine | PDSN | | (RAN) | | | router | +==========+ +--------+ | /|\ | | | +===================+ Mobile Node using PPP over AHDLC Two types of AHDLC engines are available - software and hardware based. A dedicated hardware allows better ahdlc framing performance. Acronyms and terms AHDLC Asynchronous High-level Data Link Control. AHDLC A dedicated resource used to channel handle one AHDLC session. AHDLC An entity managing a group of engine AHDLC channels. An AHDLC engine may be hardware assisted. CDMA Code Division Multiple Access. PDSN Packet Data Serving Node, a router connecting a CDMA wireless network to the internet. RAN Radio Network.

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TABLES (2) · TRAPS (1)

Tables (2)

NameOID
cCdmaAhdlcEngineTable1.3.6.1.4.1.9.9.997.1.1.1
cCdmaAhdlcPerfTableaugments cCdmaAhdlcEngineTable1.3.6.1.4.1.9.9.997.1.1.2

Traps (1)

NameOID
cCdmaAhdlcEngineDownNotif1.3.6.1.4.1.9.9.997.0.1

END OF TOC

Table details

cCdmaAhdlcEngineTable

1.3.6.1.4.1.9.9.997.1.1.1

Index: cCdmaAhdlcEngineIndex

A list of AHDLC engines available in the system.

cCdmaAhdlcEngineIndex

1.3.6.1.4.1.9.9.997.1.1.1.1.1

Unsigned32

An arbitrary non-zero integer-value that uniquely identifies an AHDLC engine. An implementation should assign AHDLC engines consecutive monotonically increasing values.

cCdmaAhdlcEngineName

1.3.6.1.4.1.9.9.997.1.1.1.1.2

SnmpAdminStringAn octet string containing administrative information, preferably in human-readable form. To facilitate internationalization, this information is represented using the ISO/IEC IS 10646-1 character set, encoded as an octet string using the UTF-8 transformation format described in [RFC2279]. Since additional code points are added by amendments to the 10646 standard from time to time, implementations must be prepared to encounter any code point from 0x00000000 to 0x7fffffff. Byte sequences that do not correspond to the valid UTF-8 encoding of a code point or are outside this range are prohibited. The use of control codes should be avoided. When it is necessary to represent a newline, the control code sequence CR LF should be used. The use of leading or trailing white space should be avoided. For code points not directly supported by user interface hardware or software, an alternative means of entry and display, such as hexadecimal, may be provided. For information encoded in 7-bit US-ASCII, the UTF-8 encoding is identical to the US-ASCII encoding. UTF-8 may require multiple bytes to represent a single character / code point; thus the length of this object in octets may be different from the number of characters encoded. Similarly, size constraints refer to the number of encoded octets, not the number of characters represented by an encoding. Note that when this TC is used for an object that is used or envisioned to be used as an index, then a SIZE restriction MUST be specified so that the number of sub-identifiers for any object instance does not exceed the limit of 128, as defined by [RFC3416]. Note that the size of an SnmpAdminString object is measured in octets, not characters. SIZE (0..255) · OCTET STRING · hint 255t

Textual name of the AHDLC engine. The value of this object should be the name of the component as assigned by the local device.

cCdmaAhdlcEngineType

1.3.6.1.4.1.9.9.997.1.1.1.1.3

INTEGER0 = unknown1 = software2 = hardware · Integer32

AHDLC engine type. Three main types are defined: - a 'hardware' based engine requires the use of AHDLC hardware assist. Each hardware based engine is peer to one unique AHDLC hardware assist. - a 'software' based engine is not peer to an AHDLC hardware assist but it relies on the system cpu(s) to perform AHDLC framing. If the engine type cannot be determined, this object value should return 'unknown'.

cCdmaAhdlcEngineChannelsInUse

1.3.6.1.4.1.9.9.997.1.1.1.1.4

Gauge32

Number of current active channels handled by this engine.

cCdmaAhdlcEngineMaxChannels

1.3.6.1.4.1.9.9.997.1.1.1.1.5

Unsigned32

Maximum number of channels that can be supported by this engine.

cCdmaAhdlcEngineConfMaxChannels

1.3.6.1.4.1.9.9.997.1.1.1.1.6

Unsigned32

Maximum number of channels configured by the user. This value may not be higher than cCdmaAhdlcEngineMaxChannels.

cCdmaAhdlcEngineOperState

1.3.6.1.4.1.9.9.997.1.1.1.1.7

INTEGER0 = unknown1 = up2 = down · Integer32

This object defines the current AHDLC engine operational state. The 'up' indicates the engine is ready to receive ahdlc packets. If cCdmaAhdlcEngineAdminState is 'down' then cCdmaAhdlcEngineOperState should be 'down'. If cCdmaAhdlcEngineAdminState is changed to 'up' then cCdmaAhdlcEngineOperState should change to 'up' if the engine is ready to receive ahdlc packets; it should remain in the 'down' state if and only if there is a fault that prevents it from going to the 'up' state.

cCdmaAhdlcEngineAdminState

1.3.6.1.4.1.9.9.997.1.1.1.1.8

INTEGER1 = up2 = down · Integer32

This object defines the AHDLC engine desired state. When a managed system initializes, all interfaces start with 'down' state. As a result of either explicit management action or per configuration information retained by the managed system, cCdmaAhdlcEngineAdminState is then changed to either 'up' or remains in the 'down' state.

cCdmaAhdlcEngineDownNotifEnabled

1.3.6.1.4.1.9.9.997.1.1.1.1.9

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

'true' indicates notification will be sent out when cCdmaAhdlcEngineAdminState is 'up' and cCdmaAhdlcEngineOperState is 'down'.

cCdmaAhdlcPhysicalIndex

1.3.6.1.4.1.9.9.997.1.1.1.1.10

EntPhysicalIndexOrZeroThis textual convention is an extension of entPhysicalIndex. If non-zero, the object is an entPhysicalIndex. If zero, no appropriate entPhysicalIndex exists. Any additional semantics are object specific. (0..2147483647) · Integer32

Corresponding AHDLC service adapter entry in the ENTITY-MIB (RFC-2737). This object value should return the corresponding entPhysicalIndex value of the service adapter or 0 if it cannot be determined or is not applicable.

cCdmaAhdlcPerfTable

1.3.6.1.4.1.9.9.997.1.1.2

augments cCdmaAhdlcEngineTable

Index: cCdmaAhdlcEngineIndex

A list of statistics for those AHDLC engines supported by the system.

cCdmaAhdlcOutgoingOctetsToEncode

1.3.6.1.4.1.9.9.997.1.1.2.1.1

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

Total number of outgoing-traffic octets delivered to the AHDLC engine for AHDLC encoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcOutgoingOctetsEncoded

1.3.6.1.4.1.9.9.997.1.1.2.1.2

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

Total number of outgoing-traffic octets generated by the AHDLC engine through AHDLC encoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcOutgoingPktsToEncode

1.3.6.1.4.1.9.9.997.1.1.2.1.3

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

Total number of outgoing-traffic packets delivered to the AHDLC engine for AHDLC encoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcOutgoingPktsEncoded

1.3.6.1.4.1.9.9.997.1.1.2.1.4

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

Total number of outgoing-traffic packets generated by the AHDLC engine through AHDLC encoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcIncomingOctetsToDecode

1.3.6.1.4.1.9.9.997.1.1.2.1.5

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

Total number of incoming-traffic octets delivered to the AHDLC engine for AHDLC decoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcIncomingOctetsDecoded

1.3.6.1.4.1.9.9.997.1.1.2.1.6

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

Total number of incoming-traffic octets generated by the AHDLC engine through AHDLC decoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcIncomingPktsToDecode

1.3.6.1.4.1.9.9.997.1.1.2.1.7

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

Total number of incoming-traffic packets delivered to the AHDLC engine for AHDLC decoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcIncomingPktsDecoded

1.3.6.1.4.1.9.9.997.1.1.2.1.8

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

Total number of incoming-traffic packets generated by the AHDLC engine through AHDLC decoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcDropPktsDec

1.3.6.1.4.1.9.9.997.1.1.2.1.9

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine during AHDLC decoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcDropPktsEnc

1.3.6.1.4.1.9.9.997.1.1.2.1.10

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine during AHDLC encoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcCRCDropPkts

1.3.6.1.4.1.9.9.997.1.1.2.1.11

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine because of CRC errors since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcMemDropPktsDec

1.3.6.1.4.1.9.9.997.1.1.2.1.12

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine due to insufficient memory during AHDLC decoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcMemDropPktsEnc

1.3.6.1.4.1.9.9.997.1.1.2.1.13

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine due to insufficient memory during AHDLC encoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcOverflowDropPktsDec

1.3.6.1.4.1.9.9.997.1.1.2.1.14

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine due to queue overflow during AHDLC decoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcOverflowDropPktsEnc

1.3.6.1.4.1.9.9.997.1.1.2.1.15

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine due to queue overflow during AHDLC encoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcInvSizeDropPktsDec

1.3.6.1.4.1.9.9.997.1.1.2.1.16

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine due to invalid size during AHDLC decoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcInvSizeDropPktsEnc

1.3.6.1.4.1.9.9.997.1.1.2.1.17

ZeroBasedCounter32This TC describes an object that counts events with the following semantics: objects of this type will be set to zero(0) on creation and will thereafter count appropriate events, wrapping back to zero(0) when the value 2^32 is reached. Provided that an application discovers the new object within the minimum time to wrap, it can use the initial value as a delta since it last polled the table of which this object is part. It is important for a management station to be aware of this minimum time and the actual time between polls, and to discard data if the actual time is too long or there is no defined minimum time. Typically, this TC is used in tables where the INDEX space is constantly changing and/or the TimeFilter mechanism is in use. · Gauge32

The number of packets dropped by the engine due to invalid size during AHDLC encoding since system was last restarted. Discontinuities in the value of this counter can occur at re-initialization of the management system, and at other times as indicated by the value of cCdmaAhdlcDiscontinuityTime.

cCdmaAhdlcDiscontinuityTime

1.3.6.1.4.1.9.9.997.1.1.2.1.18

TimeStampThe value of the sysUpTime object at which a specific occurrence happened. The specific occurrence must be defined in the description of any object defined using this type. If sysUpTime is reset to zero as a result of a re- initialization of the network management (sub)system, then the values of all TimeStamp objects are also reset. However, after approximately 497 days without a re- initialization, the sysUpTime object will reach 2^^32-1 and then increment around to zero; in this case, existing values of TimeStamp objects do not change. This can lead to ambiguities in the value of TimeStamp objects. · TimeTicks

The value of sysUpTime when the AHDLC Engine's counters last experienced a discontinuity. If no discontinuities have occurred since the last re-initialization of the local management subsystem, then this object contains a zero value.

Trap details

cCdmaAhdlcEngineDownNotif

1.3.6.1.4.1.9.9.997.0.1

This notification indicates an AHDLC engine is 'down' due to some fault though the desired state of the engine is 'up'.

cCdmaAhdlcEngineOperState

1.3.6.1.4.1.9.9.997.1.1.1.1.7

INTEGER0 = unknown1 = up2 = down · Integer32

This object defines the current AHDLC engine operational state. The 'up' indicates the engine is ready to receive ahdlc packets. If cCdmaAhdlcEngineAdminState is 'down' then cCdmaAhdlcEngineOperState should be 'down'. If cCdmaAhdlcEngineAdminState is changed to 'up' then cCdmaAhdlcEngineOperState should change to 'up' if the engine is ready to receive ahdlc packets; it should remain in the 'down' state if and only if there is a fault that prevents it from going to the 'up' state.

cCdmaAhdlcEngineAdminState

1.3.6.1.4.1.9.9.997.1.1.1.1.8

INTEGER1 = up2 = down · Integer32

This object defines the AHDLC engine desired state. When a managed system initializes, all interfaces start with 'down' state. As a result of either explicit management action or per configuration information retained by the managed system, cCdmaAhdlcEngineAdminState is then changed to either 'up' or remains in the 'down' state.

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