EZ5 MIB Catalog

CISCO-PROXY-CONTROL-MIB

2009-02-11

Download CISCO-PROXY-CONTROL-MIB.txt Open CISCO-PROXY-CONTROL-MIB.txt in a new tab

This MIB module enhances the IETF Dial Control MIB (RFC2128) by providing Proxy management information. *** ABBREVIATIONS, ACRONYMS AND SYMBOLS *** GSM - Global System for Mobile Communication AMR-NB - Adaptive Multi Rate - Narrow Band iLBC - internet Low Bitrate Codec iSAC - internet Speech Audio Codec

TABLES (2)

Tables (2)

NameOID
cProxyCallActiveTable1.3.6.1.4.1.9.10.57.1.1.1
cProxyCallHistoryTable1.3.6.1.4.1.9.10.57.1.2.1

END OF TOC

Table details

cProxyCallActiveTable

1.3.6.1.4.1.9.10.57.1.1.1

Index: callActiveSetupTime · callActiveIndex

This table is the Proxy extension to the call Active table of IETF Dial Control MIB. It contains Proxy call leg information about specific proxied calls.

from DIAL-CONTROL-MIB

callActiveSetupTime

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 call associated to this entry was started. This will be useful for an NMS to retrieve all calls after a specific time. Also, this object can be useful in finding large delays between the time the call was started and the time the call was connected. For ISDN media, this will be the time when the setup message was received from or sent to the network.

callActiveIndex

INTEGER (1..2147483647) · Integer32

Small index variable to distinguish calls that start in the same hundredth of a second.

cProxyCallActiveConnectionId

1.3.6.1.4.1.9.10.57.1.1.1.1.1

CvcGUidRepresents a Global Call Identifier. The global call identifier is used as an unique identifier for an end-to-end call. A zero length CvcGUid indicates no value for the global call identifier. SIZE (0..16) · OCTET STRING

The global call identifier for the Proxy call.

cProxyCallActiveRemoteIPAddress

1.3.6.1.4.1.9.10.57.1.1.1.1.2

IpAddress SIZE (4)

Remote system IP address for the call.

cProxyCallActiveAudioUDPPort

1.3.6.1.4.1.9.10.57.1.1.1.1.3

INTEGER (0..65535) · Integer32

Remote system UDP listener port to which to transmit voice packets for the call. A value of zero indicates that no port was used.

cProxyCallActiveVideoUDPPort

1.3.6.1.4.1.9.10.57.1.1.1.1.4

INTEGER (0..65535) · Integer32

Remote system UDP listener port to which to transmit video packets for the call. A value of zero indicates that no port was used.

cProxyCallActiveT120TCPPort1

1.3.6.1.4.1.9.10.57.1.1.1.1.5

INTEGER (0..65535) · Integer32

First remote system UDP listener port to which to transmit T120 packets for the call. A value of zero indicates that no port was used.

cProxyCallActiveT120TCPPort2

1.3.6.1.4.1.9.10.57.1.1.1.1.6

INTEGER (0..65535) · Integer32

Second remote system UDP listener port to which to transmit T120 packets for the call. A value of zero indicates that no port was used.

cProxyCallActiveT120TCPPort3

1.3.6.1.4.1.9.10.57.1.1.1.1.7

INTEGER (0..65535) · Integer32

Third remote system UDP listener port to which to transmit T120 packets for the call. A value of zero indicates that no port was used.

cProxyCallActiveT120TCPPort4

1.3.6.1.4.1.9.10.57.1.1.1.1.8

INTEGER (0..65535) · Integer32

Fourth remote system UDP listener port to which to transmit T120 packets for the call. A value of zero indicates that no port was used.

cProxyCallActiveEndpointType

1.3.6.1.4.1.9.10.57.1.1.1.1.9

CProxyEndptType0 = other1 = proxy2 = gatewayA tag to identify the type of end point that the Proxy is connected to. · Integer32

The type of end point this proxy call leg is connected to.

cProxyCallActiveEndpointVendor

1.3.6.1.4.1.9.10.57.1.1.1.1.10

INTEGER (0..65535) · Integer32

The H225 Manufacturers code for this endpoint. Zero indicates unknown vendor.

cProxyCallActiveRequestBandwidth

1.3.6.1.4.1.9.10.57.1.1.1.1.11

Integer32 (0..10000000) · kilobits per second

The requested bandwidth for this proxied call leg.

cProxyCallActiveActualBandwidth

1.3.6.1.4.1.9.10.57.1.1.1.1.12

Integer32 (0..10000000) · kilobits per second

The actual bandwidth used by the proxied call.

cProxyCallActiveAudioCoderRate

1.3.6.1.4.1.9.10.57.1.1.1.1.13

CProxyAudioCodec0 = other1 = nonStandard2 = g711Alawr64k3 = g711Alawr56k4 = g711Ulawr64k5 = g711Ulawr56k6 = g722r64k7 = g722r56k8 = g722r48k9 = g723110 = g72811 = g72912 = g729AnnexA13 = is1117214 = is1381815 = g729AnnexB16 = g729AnnexAB17 = g729AnnexC18 = gsmFullRate19 = gsmHalfRate20 = gsmEnhancedFullRate21 = gsmAmrNb22 = iLBC23 = iSACA tag to identify the type of encoding used to compress the voice data of the call. iLBC - iILBC 13330 or 15200 bps iSAC - iSAC 10 to 32 kbpsReference: [1] RFC 3267: For introduction about GSM AMR-NB codec, section 3.1 [2] RFC 3952: For introduction about iLBC codec, section 2 [3] iSAC Codec Description Document from GIPS · Integer32

The negotiated coder rate. It specifies the transmit rate of audio compression to its associated call leg for the call.

cProxyCallActiveVideoCoderRate

1.3.6.1.4.1.9.10.57.1.1.1.1.14

CProxyVideoCodec0 = other1 = nonStandard2 = h2613 = h2624 = h2635 = is11172A tag to identify the type of encoding used to compress the video data of the call. · Integer32

The negotiated coder rate. It specifies the transmit rate of video compression to its associated call leg for the call.

cProxyCallActiveRxAudioPackets

1.3.6.1.4.1.9.10.57.1.1.1.1.15

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of audio packets received from the remote end for this call.

cProxyCallActiveRxAudioBytes

1.3.6.1.4.1.9.10.57.1.1.1.1.16

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of audio bytes received from the remote end for this call.

cProxyCallActiveTxAudioPackets

1.3.6.1.4.1.9.10.57.1.1.1.1.17

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of audio packets transmitted to the remote end for this call.

cProxyCallActiveTxAudioBytes

1.3.6.1.4.1.9.10.57.1.1.1.1.18

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of audio bytes transmitted to the remote end for this call.

cProxyCallActiveRxVideoPackets

1.3.6.1.4.1.9.10.57.1.1.1.1.19

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of video packets received from the remote end for this call.

cProxyCallActiveRxVideoBytes

1.3.6.1.4.1.9.10.57.1.1.1.1.20

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of video bytes received from the remote end for this call.

cProxyCallActiveTxVideoPackets

1.3.6.1.4.1.9.10.57.1.1.1.1.21

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of video packets transmitted to the remote end for this call.

cProxyCallActiveTxVideoBytes

1.3.6.1.4.1.9.10.57.1.1.1.1.22

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of video bytes transmitted to the remote end for this call.

cProxyCallActiveRxT120Packets

1.3.6.1.4.1.9.10.57.1.1.1.1.23

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of T120 data packets received from the remote end for this call.

cProxyCallActiveRxT120Bytes

1.3.6.1.4.1.9.10.57.1.1.1.1.24

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of T120 data bytes received from the remote end of this call.

cProxyCallActiveTxT120Packets

1.3.6.1.4.1.9.10.57.1.1.1.1.25

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of T120 data packets transmitted to the remote end for this call.

cProxyCallActiveTxT120Bytes

1.3.6.1.4.1.9.10.57.1.1.1.1.26

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of T120 data bytes transmitted to the remote end of this call.

cProxyCallHistoryTable

1.3.6.1.4.1.9.10.57.1.2.1

Index: cCallHistoryIndex

This table is the Proxy extension to the History call table of IETF Dial Control MIB. It contains PROXY call leg information about proxied call.

from CISCO-DIAL-CONTROL-MIB

cCallHistoryIndex

Unsigned32 (1..4294967295)

A monotonically increasing integer for the sole purpose of indexing call disconnection events. When it reaches the maximum value, an extremely unlikely event, the agent wraps the value back to 1 and may flush existing entries.

cProxyCallHistoryConnectionId

1.3.6.1.4.1.9.10.57.1.2.1.1.1

CvcGUidRepresents a Global Call Identifier. The global call identifier is used as an unique identifier for an end-to-end call. A zero length CvcGUid indicates no value for the global call identifier. SIZE (0..16) · OCTET STRING

The global call identifier for the Proxy call.

cProxyCallHistoryRemoteIPAddress

1.3.6.1.4.1.9.10.57.1.2.1.1.2

IpAddress SIZE (4)

Remote system IP address for the call.

cProxyCallHistoryAudioUDPPort

1.3.6.1.4.1.9.10.57.1.2.1.1.3

INTEGER (0..65535) · Integer32

Remote system UDP listener port to which to transmit voice packets for the call. A value of zero indicates that no port was used.

cProxyCallHistoryVideoUDPPort

1.3.6.1.4.1.9.10.57.1.2.1.1.4

INTEGER (0..65535) · Integer32

Remote system UDP listener port to which to transmit video packets for the call. A value of zero indicates that no port was used.

cProxyCallHistoryT120TCPPort1

1.3.6.1.4.1.9.10.57.1.2.1.1.5

INTEGER (0..65535) · Integer32

First remote system UDP listener port to which to transmit T120 packets for the call. A value of zero indicates that no port was used.

cProxyCallHistoryT120TCPPort2

1.3.6.1.4.1.9.10.57.1.2.1.1.6

INTEGER (0..65535) · Integer32

Second remote system UDP listener port to which to transmit T120 packets for the call. A value of zero indicates that no port was used.

cProxyCallHistoryT120TCPPort3

1.3.6.1.4.1.9.10.57.1.2.1.1.7

INTEGER (0..65535) · Integer32

Third remote system UDP listener port to which to transmit T120 packets for the call. A value of zero indicates that no port was used.

cProxyCallHistoryT120TCPPort4

1.3.6.1.4.1.9.10.57.1.2.1.1.8

INTEGER (0..65535) · Integer32

Fourth remote system UDP listener port to which to transmit T120 packets for the call. A value of zero indicates that no port was used.

cProxyCallHistoryEndpointType

1.3.6.1.4.1.9.10.57.1.2.1.1.9

CProxyEndptType0 = other1 = proxy2 = gatewayA tag to identify the type of end point that the Proxy is connected to. · Integer32

The type of end point this proxy call leg is connected to.

cProxyCallHistoryEndpointVendor

1.3.6.1.4.1.9.10.57.1.2.1.1.10

INTEGER (0..65535) · Integer32

The H225 Manufacturers code for this endpoint. Zero indicates unknown vendor.

cProxyCallHistoryRequestBandwidth

1.3.6.1.4.1.9.10.57.1.2.1.1.11

Integer32 (0..10000000) · kilobits per second

The requested bandwidth for this proxied call leg.

cProxyCallHistoryActualBandwidth

1.3.6.1.4.1.9.10.57.1.2.1.1.12

Integer32 (0..10000000) · kilobits per second

The actual bandwidth used by the proxied call.

cProxyCallHistoryAudioCoderRate

1.3.6.1.4.1.9.10.57.1.2.1.1.13

CProxyAudioCodec0 = other1 = nonStandard2 = g711Alawr64k3 = g711Alawr56k4 = g711Ulawr64k5 = g711Ulawr56k6 = g722r64k7 = g722r56k8 = g722r48k9 = g723110 = g72811 = g72912 = g729AnnexA13 = is1117214 = is1381815 = g729AnnexB16 = g729AnnexAB17 = g729AnnexC18 = gsmFullRate19 = gsmHalfRate20 = gsmEnhancedFullRate21 = gsmAmrNb22 = iLBC23 = iSACA tag to identify the type of encoding used to compress the voice data of the call. iLBC - iILBC 13330 or 15200 bps iSAC - iSAC 10 to 32 kbpsReference: [1] RFC 3267: For introduction about GSM AMR-NB codec, section 3.1 [2] RFC 3952: For introduction about iLBC codec, section 2 [3] iSAC Codec Description Document from GIPS · Integer32

The negotiated coder rate. It specifies the transmit rate of audio compression to its associated call leg for the call.

cProxyCallHistoryVideoCoderRate

1.3.6.1.4.1.9.10.57.1.2.1.1.14

CProxyVideoCodec0 = other1 = nonStandard2 = h2613 = h2624 = h2635 = is11172A tag to identify the type of encoding used to compress the video data of the call. · Integer32

The negotiated coder rate. It specifies the transmit rate of video compression to its associated call leg for the call.

cProxyCallHistoryRxAudioPackets

1.3.6.1.4.1.9.10.57.1.2.1.1.15

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of audio packets received from the remote end for this call.

cProxyCallHistoryRxAudioBytes

1.3.6.1.4.1.9.10.57.1.2.1.1.16

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of audio bytes received from the remote end for this call.

cProxyCallHistoryTxAudioPackets

1.3.6.1.4.1.9.10.57.1.2.1.1.17

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of audio packets transmitted to the remote end for this call.

cProxyCallHistoryTxAudioBytes

1.3.6.1.4.1.9.10.57.1.2.1.1.18

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of audio bytes transmitted to the remote end for this call.

cProxyCallHistoryRxVideoPackets

1.3.6.1.4.1.9.10.57.1.2.1.1.19

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of video packets received from the remote end for this call.

cProxyCallHistoryRxVideoBytes

1.3.6.1.4.1.9.10.57.1.2.1.1.20

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of video bytes received from the remote end for this call.

cProxyCallHistoryTxVideoPackets

1.3.6.1.4.1.9.10.57.1.2.1.1.21

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of video packets transmitted to the remote end for this call.

cProxyCallHistoryTxVideoBytes

1.3.6.1.4.1.9.10.57.1.2.1.1.22

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of video bytes transmitted to the remote end for this call.

cProxyCallHistoryRxT120Packets

1.3.6.1.4.1.9.10.57.1.2.1.1.23

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of T120 data packets received from the remote end for this call.

cProxyCallHistoryRxT120Bytes

1.3.6.1.4.1.9.10.57.1.2.1.1.24

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of T120 data bytes received from the remote end for this call.

cProxyCallHistoryTxT120Packets

1.3.6.1.4.1.9.10.57.1.2.1.1.25

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · packets

The number of T120 data packets transmitted to the remote end for this call.

cProxyCallHistoryTxT120Bytes

1.3.6.1.4.1.9.10.57.1.2.1.1.26

AbsoluteCounter32Represents a Counter32-like value that starts at zero, does not decrease, and does not wrap. This may be used only in situations where wrapping is not possible or extremely unlikely. Should such a counter overflow, it locks at the maxium value of 4,294,967,295. The primary use of this type of counter is situations where a counter value is to be recorded as history and is thus no longer subject to reading for changing values. · Unsigned32 · bytes

The number of T120 data bytes transmitted to the remote end for this call.

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