Acronyms and Definitions
The following acronyms and terms are used in this document:
DMS: Digital Media Systems
DAM: Digital Asset Management System
DMM: Digital Media Manager Application
VP : Video Portal Application
DSM: Digital Signage Manager Application
ETV: Enterprise TV Manager Application
DMP: Cisco Digital Media Player
LAN: Local Area Network
Group: A collection of DMS users grouped and managed together as a single entity for administrative convenience.
Overview of the MIB
This is a MIB Module for managing and monitoring the physical and logical structures in Cisco Digital Media Management System. The MIB reflects the structure as follows: * show DMS as an coherent, abstract media management system * indicate the physical inventory of DMS * indicate the media management features active (licensed) in the system. * show the streaming and storage components and their activity * elements of DMS security * external servers used by the system * events and alarms
Hence, the MIB contains eight major groups of objects organized as follows: a) DMS System Group: This section models distributed DMS as a single abstract system.
b) DMS Features Group: This section lists the DMS functions that this installation is licensed to perform and those that it is not.
c) DMS Inventory Group: This section lists the physical elements that this installation of DMS comprises.
d) Servers Group: This section models the external servers used by this installation of DMS.
e) Digital Asset Management (DAM) Services Group: This section models the state and activity of various content management services that this installation of DMS is equipped with. The loose term 'content management' has been intentionally used to as to be able to accommodate more content management services in this model as they evolve.
f) Security Group: This section defines the security configuration and activity of this installation of DMS.
g) Fault Tolerance Group: This section models the redundancy (failover and load balancing) configuration of this installation of DMS and the associated activity.
h) User Management Group: This section models the configured DMS users, groups and the associated activity.
i) Events and Faults Group: This section models the events, alarms and notifications reported by this installation of DMS.
j) Capacity Group: This section is planned for the future and would define the limits and capacities of functions of DMS. These include limits such as the type of media encodings that are supported, the maximum number of media players that may be managed etc.
k) Resource Usage Group: This section is planned for the future and would define the current resource usage by DMS. This would include the amount of storage used by DMS, the number of encoders currently in use etc.
l) Threshold group (allows definition of high water marks) This section is planned for the future and would allow the management entity to define thresholds to set high water marks on critical metrics.
m) Notifications This section defines notifications to signal significant events pertaining to this installation of DMS.
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 (2) · OCTET STRING · hint 255t
A string which indicates the major version of this managed instance of Digital Media System.
cdmsMinorVersion
1.3.6.1.4.1.9.9.655.1.1.2
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 (2) · OCTET STRING · hint 255t
A string which indicates the minor version of this managed instance of Digital Media System.
cdmsPatchVersion
1.3.6.1.4.1.9.9.655.1.1.3
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 (2) · OCTET STRING · hint 255t
A string which indicates the patch version of this managed instance of Digital Media System.
cdmsAdministrator
1.3.6.1.4.1.9.9.655.1.1.4
CDmsEmailAddressThe type used to denote the email address. SIZE (0..128) · OCTET STRING
The email address of the administrator of this DMS system.
cdmsLicensableFeatures
1.3.6.1.4.1.9.9.655.1.2.1.1
Unsigned32
The total number of licensable features available in this version of DMS.
cdmsLicensedFeatures
1.3.6.1.4.1.9.9.655.1.2.1.2
Unsigned32
The number of licensable features licensed in this installation of DMS.
cdmsLastLicenseUpdate
1.3.6.1.4.1.9.9.655.1.2.1.3
DateAndTimeA date-time specification.
field octets contents range
----- ------ -------- -----
1 1-2 year* 0..65536
2 3 month 1..12
3 4 day 1..31
4 5 hour 0..23
5 6 minutes 0..59
6 7 seconds 0..60
(use 60 for leap-second)
7 8 deci-seconds 0..9
8 9 direction from UTC '+' / '-'
9 10 hours from UTC* 0..13
10 11 minutes from UTC 0..59
* Notes: - the value of year is in network-byte order - daylight saving time in New Zealand is +13
For example, Tuesday May 26, 1992 at 1:30:15 PM EDT would be displayed as:
1992-5-26,13:30:15.0,-4:0
Note that if only local time is known, then timezone information (fields 8-10) is not present. SIZE (8 | 11) · OCTET STRING · hint 2d-1d-1d,1d:1d:1d.1d,1a1d:1d
The date on which the last license upgrade was performed.
cdmsNumMediaIngestionDevices
1.3.6.1.4.1.9.9.655.1.3.1.1
Gauge32 · Encoders
The number of media ingestion devices managed by this installation of DMS.
cdmsNumMediaPlayerDevices
1.3.6.1.4.1.9.9.655.1.3.1.2
Gauge32 · Media Players
The number of media player devices managed by this installation of DMS.
cdmsNumVideoPortalDevices
1.3.6.1.4.1.9.9.655.1.3.1.3
Gauge32 · Video Portals
The number of video portal devices managed by this installation of DMS.
cdmsNumContentElements
1.3.6.1.4.1.9.9.655.1.5.1.1
Gauge32 · content elements
The number of content elements in the DMS catalog.
cdmsNumAuthenRequestsApproved
1.3.6.1.4.1.9.9.655.1.5.1.2
Counter64 (0..18446744073709551615) · requests
The number of user authentication requests approved by DMS since last reboot.
cdmsNumAuthenRequestsDeclined
1.3.6.1.4.1.9.9.655.1.5.1.3
Counter64 (0..18446744073709551615) · requests
The number of user authentication requests declined by DMS since last reboot.
cdmsNumAuthenRequests
1.3.6.1.4.1.9.9.655.1.6.1.1
Counter64 (0..18446744073709551615) · requests
The number of user authentication requests processed by DMS since last reboot.
cdmsAuthenticationMode
1.3.6.1.4.1.9.9.655.1.6.2.1
CDmsUserAuthenMethod1 = none2 = other3 = radius4 = tacacsPlus5 = kerberos6 = local7 = ldap8 = ntlm9 = sdiThe mechanism used to authenticate the user.
radius: User authentication is performed using RADIUS protocol.
tacacsPlus: Authentication is performed using TACACS+ protocol.
kerberos: Authentication is performed using Kerberos protocol.
local: Authentication is performed using local username/password database.
ldap: Authentication is performed using the Lightweight Directory Access Protocol.
ntlm: Authentication is performed using the NT LAN Manager Protocol.
sdi: Authentication is performed using the RSA SecurId Authentication Protocol.
The value 'other' has been listed to allow for the MIB to support proprietary authentication methods not listed here.
When the authentication method is 'none', authentication is disabled for all appliances of DMS except for the administrative module (DMM), which is still secured using local authentication. · Integer32
The mode of authenticating users in use by DMS.
cdmsNumUsers
1.3.6.1.4.1.9.9.655.1.7.1
Gauge32 · Users
The number of users who have access to this installation of DMS.
cdmsNumActiveDmmUsers
1.3.6.1.4.1.9.9.655.1.7.2
Gauge32 · Users
The number of users who are logged into DMS administrative appliance.
cdmsNumActiveVpUsers
1.3.6.1.4.1.9.9.655.1.7.3
Gauge32 · Users
The number of users who are logged into DMS Video Portal appliance.
cdmsLastUserLastChange
1.3.6.1.4.1.9.9.655.1.7.4
DateAndTimeA date-time specification.
field octets contents range
----- ------ -------- -----
1 1-2 year* 0..65536
2 3 month 1..12
3 4 day 1..31
4 5 hour 0..23
5 6 minutes 0..59
6 7 seconds 0..60
(use 60 for leap-second)
7 8 deci-seconds 0..9
8 9 direction from UTC '+' / '-'
9 10 hours from UTC* 0..13
10 11 minutes from UTC 0..59
* Notes: - the value of year is in network-byte order - daylight saving time in New Zealand is +13
For example, Tuesday May 26, 1992 at 1:30:15 PM EDT would be displayed as:
1992-5-26,13:30:15.0,-4:0
Note that if only local time is known, then timezone information (fields 8-10) is not present. SIZE (8 | 11) · OCTET STRING · hint 2d-1d-1d,1d:1d:1d.1d,1a1d:1d
The date and time at which the last user was added or deleted.
cdmsNumEvents
1.3.6.1.4.1.9.9.655.1.8.2.1
Counter64 (0..18446744073709551615) · Events
The number of events generated by this installation of DMS since last reboot.
cdmsNumEventRate
1.3.6.1.4.1.9.9.655.1.8.2.2
Gauge32 · Events per minute
The number of events per minute generated by this installation of DMS since last reboot.
cdmsNumAlarms
1.3.6.1.4.1.9.9.655.1.8.2.3
Counter64 (0..18446744073709551615) · Alarms
The number of events of severity greater than 'warning' ('alarms') generated by this installation of DMS since last reboot.
cdmsNumAlarmRate
1.3.6.1.4.1.9.9.655.1.8.2.4
Gauge32 · Alarms per minute
The number of alarms per minute generated by this installation of DMS since last reboot.
The number of notifications emitted by this installation of DMS since last reboot.
cdmsNumNotificationRate
1.3.6.1.4.1.9.9.655.1.8.2.6
Gauge32 · Notifications per minute
The number of notifications emitted per minute by this installation of DMS since last reboot.
cdmsHaClusterEnabled
1.3.6.1.4.1.9.9.655.1.10.1.1
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object indicates if high availability function is enabled in this installation of DMS.
The value 'true(1)', indicates that high availability function is enabled.
The value 'false(2)', indicates that high availability function is disabled.
cdmsHaClusterName
1.3.6.1.4.1.9.9.655.1.10.1.2
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 (1..255) · OCTET STRING · hint 255t
This human-readable string servers as the administrative label of this DMS cluster.
cdmsHaClusterNumTotalDmms
1.3.6.1.4.1.9.9.655.1.10.2.1.1
Integer32 (2..10) · Nodes
This object indicates the total number of DMM nodes in this cluster.
cdmsHaClusterNumActiveDmms
1.3.6.1.4.1.9.9.655.1.10.2.1.2
Gauge32 (1..10) · Nodes
This object indicates the total number of DMM nodes in this cluster which are in active state.
cdmsHaClusterDmmVipType
1.3.6.1.4.1.9.9.655.1.10.2.1.3
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
The type of the Virtual Internet Protocol address of the DMM cluster of this DMS cluster.
cdmsHaClusterDmmVip
1.3.6.1.4.1.9.9.655.1.10.2.1.4
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The value of the virtual address of the DMM cluster. The type of this address is determined by the value of 'cdmsHaClusterDmmVipType'.
cdmsHaVpClusterNumClusters
1.3.6.1.4.1.9.9.655.1.10.2.2.1
Integer32 (1..50)
This object indicates the number of Video Portal Clusters comprising this DMS cluster.
cdmsHaClusterLastDmmStatusChangeTime
1.3.6.1.4.1.9.9.655.1.10.3.1
DateAndTimeA date-time specification.
field octets contents range
----- ------ -------- -----
1 1-2 year* 0..65536
2 3 month 1..12
3 4 day 1..31
4 5 hour 0..23
5 6 minutes 0..59
6 7 seconds 0..60
(use 60 for leap-second)
7 8 deci-seconds 0..9
8 9 direction from UTC '+' / '-'
9 10 hours from UTC* 0..13
10 11 minutes from UTC 0..59
* Notes: - the value of year is in network-byte order - daylight saving time in New Zealand is +13
For example, Tuesday May 26, 1992 at 1:30:15 PM EDT would be displayed as:
1992-5-26,13:30:15.0,-4:0
Note that if only local time is known, then timezone information (fields 8-10) is not present. SIZE (8 | 11) · OCTET STRING · hint 2d-1d-1d,1d:1d:1d.1d,1a1d:1d
The time-stamp of the most recent occurrence of the status change of a DMM node in this cluster. A status change is defined as a transition in the value of the object 'cdmsHaDmmClusterMemberOperState'.
cdmsHaClusterLastDmmStatusChangeAddrType
1.3.6.1.4.1.9.9.655.1.10.3.2
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object indicates the type of the network address of the DMM node which changed status most recently in this cluster
(represented by the value of
'cdmsHaClusterLastDmmStatusChangeAddress' object). A status change is defined as a transition in the value of the object 'cdmsHaDmmClusterMemberOperState'.
cdmsHaClusterLastDmmStatusChangeAddress
1.3.6.1.4.1.9.9.655.1.10.3.3
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The network address of the DMM node which changed status most recently in this cluster. The type of address of an instance of this object is determined by the value of the corresponding instance of 'cdmsHaClusterLastDmmStatusChangeAddrType' object.
cdmsHaClusterLastVpStatusChangeTime
1.3.6.1.4.1.9.9.655.1.10.3.4
DateAndTimeA date-time specification.
field octets contents range
----- ------ -------- -----
1 1-2 year* 0..65536
2 3 month 1..12
3 4 day 1..31
4 5 hour 0..23
5 6 minutes 0..59
6 7 seconds 0..60
(use 60 for leap-second)
7 8 deci-seconds 0..9
8 9 direction from UTC '+' / '-'
9 10 hours from UTC* 0..13
10 11 minutes from UTC 0..59
* Notes: - the value of year is in network-byte order - daylight saving time in New Zealand is +13
For example, Tuesday May 26, 1992 at 1:30:15 PM EDT would be displayed as:
1992-5-26,13:30:15.0,-4:0
Note that if only local time is known, then timezone information (fields 8-10) is not present. SIZE (8 | 11) · OCTET STRING · hint 2d-1d-1d,1d:1d:1d.1d,1a1d:1d
The time-stamp of the most recent occurrence of the status change of a video portal node in this cluster. A status change is defined as a transition in the value of the object 'cdmsHaVpClusterMemberOperState'.
cdmsHaClusterLastVpStatusChangeCluster
1.3.6.1.4.1.9.9.655.1.10.3.5
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 (1..255) · OCTET STRING · hint 255t
The administrative label of the video portal cluster in which a video portal node changed its state most recently.
cdmsHaClusterLastStatusChangeVpAddrType
1.3.6.1.4.1.9.9.655.1.10.3.6
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object indicates the type of the network address of the VP node which changed status most recently in this cluster
(represented by the value of
'cdmsHaClusterLastVpStatusChangeAddress' object). A status change is defined as a transition in the value of the object 'cdmsHaVpClusterMemberOperState'.
cdmsHaClusterLastVpStatusChangeVpAddress
1.3.6.1.4.1.9.9.655.1.10.3.7
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The network address of the video portal node which changed status most recently in this cluster. The type of address of an instance of this object is determined by the value of the corresponding instance of 'cdmsHaClusterLastVpStatusChangeAddrType' object.
cdmsHaClusterHistoryMaxRecords
1.3.6.1.4.1.9.9.655.1.10.3.8.1
Integer32 (1..65535)
This object specifies the maximum number of history records pertaining to DMS Cluster history that would be maintained in the table 'cdmsHaClusterHistoryTable'.
cdmsMediaPlayerRegisteredEnable
1.3.6.1.4.1.9.9.655.1.13.1
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object defines the administrative state of sending the 'ciscoDmsMediaPlayerRegistered' notification to signal the fact that a digital media player which was shutdown is now operational.
cdmsMediaPlayerUpEnable
1.3.6.1.4.1.9.9.655.1.13.2
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object specifies the administrative state of sending the 'ciscoDmsMediaPlayerUp' notification to signal the fact that a digital media player which is registered with this installation of DMS has become operational.
cdmsMediaPlayerDownEnable
1.3.6.1.4.1.9.9.655.1.13.3
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object specifies the administrative state of sending the 'ciscoDmsMediaPlayerDown' notification to signal the fact that a digital media player which was operational and is registered with this installation of DMS is now shutdown.
cdmsMediaPlayerAddrTakenEnable
1.3.6.1.4.1.9.9.655.1.13.4
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object specifies the administrative state of sending the 'ciscoDmsMediaPlayerAddrTaken' notification to signal the fact that the IP address assigned to a managed digital media player has been acquired by another media player.
cdmsHaClusterNodeUpEnable
1.3.6.1.4.1.9.9.655.1.13.5
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object specifies the administrative state of sending the 'ciscoDmsHaClusterNodeUp' notification to signal the fact that a component in a DMS cluster has transitioned to active state.
cdmsHaClusterNodeDownEnable
1.3.6.1.4.1.9.9.655.1.13.6
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object specifies the administrative state of sending the 'ciscoDmsHaClusterNodeDown' notification to signal the fact that a component in a DMS cluster has transitioned to inactive state.
cdmsHaClusterConfigChangeEnable
1.3.6.1.4.1.9.9.655.1.13.7
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object specifies the administrative state of sending the 'ciscoDmsHaClusterConfigChange' notification to signal the fact that the configuration of the managed DMS cluster has changed.
This table lists all the DMS features licensed by this installation of DMS.
cdmsLicensedFeature
1.3.6.1.4.1.9.9.655.1.2.2.1.1
CDmsLicensedFeature1 = other2 = base3 = deskTopVideo4 = liveWebcastEnabler5 = digitalSignage6 = enterpriseTv7 = snmpManagement8 = digitalMediaPlayer9 = digitalMediaPlayerAuthorPack10 = digitalMedialPlayerProofOfPlayPack11 = clusteringThe identity of a licensed features of DMS.
other : a product function not covered by any of the other enumerations listed below.
base : Digital Media Manager Base License.
deskTopVideo : Show and Share Module.
liveWebcastEnabler : Show and share Live Event Module.
digitalSignage : Digital Signs Module.
enterpriseTv : Cast Module.
snmpManagement : SNMP Notifications Module.
digitalMediaPlayer : Digital Media Player Pack.
digitalMediaPlayerAuthorPack : Show and Share Content Authour Pack.
digitalMedialPlayerProofOfPlayPack : Proof of Play Module.
clustering : the function to configure DMS high availability. · Integer32
The identity of a DMS feature which is licensed by this installation.
cdmsLicensedFeatureIndex
1.3.6.1.4.1.9.9.655.1.2.2.1.2
Unsigned32 (1..4096)
The unique identifier of the DMS feature licensed by this installation. The same feature may be licensed multiple times with different limits. Hence this discriminator is required.
cdmsLicensedFeatureLimit
1.3.6.1.4.1.9.9.655.1.2.2.1.3
Unsigned32 (0..2147483647)
The limit on this licensed features in terms of number of elements that may be operational with this DMS feature. Limits do not apply to all DMS features; where the limit is inapplicable, the value of this object will be set to 0. cdmsLicensedFeatureLimit object is superseded by cdmsLicensedFeatureLimitRev1.
cdmsLicensedFeatureDescription
1.3.6.1.4.1.9.9.655.1.2.2.1.4
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
A human readable description of this DMS feature and its limits.
cdmsLicensedFeatureInstallDate
1.3.6.1.4.1.9.9.655.1.2.2.1.5
DateAndTimeA date-time specification.
field octets contents range
----- ------ -------- -----
1 1-2 year* 0..65536
2 3 month 1..12
3 4 day 1..31
4 5 hour 0..23
5 6 minutes 0..59
6 7 seconds 0..60
(use 60 for leap-second)
7 8 deci-seconds 0..9
8 9 direction from UTC '+' / '-'
9 10 hours from UTC* 0..13
10 11 minutes from UTC 0..59
* Notes: - the value of year is in network-byte order - daylight saving time in New Zealand is +13
For example, Tuesday May 26, 1992 at 1:30:15 PM EDT would be displayed as:
1992-5-26,13:30:15.0,-4:0
Note that if only local time is known, then timezone information (fields 8-10) is not present. SIZE (8 | 11) · OCTET STRING · hint 2d-1d-1d,1d:1d:1d.1d,1a1d:1d
The date on which the DMS licensed feature corresponding this conceptual row was first enabled.
cdmsLicensedFeatureLimitRev1
1.3.6.1.4.1.9.9.655.1.2.2.1.6
Integer32 (-3..2147483647)
The limit on this licensed features in terms of number of elements that may be operational with this DMS feature. Limits do not apply to all DMS features; Following are the meaning of negative limits for this field
>0 : Feature limit 0 : Unlimited -1 : Feature limit not supported -2 : DONT CARE about feaute limit -3 : DONT KNOW about feature limit
This table lists all the inventory elements currently managed by this installation of DMS.
cdmsInventoryElementType
1.3.6.1.4.1.9.9.655.1.3.2.1.1
CDmsElementType1 = other2 = encoder3 = videoPortal4 = mediaPlayer5 = transCoder6 = storageServer7 = streamingServer8 = dmmThe type of the DMS inventory element.
DMS supports the following inventory element types among other types:
'other': other type not represented by any other enum value
'encoder': device capable of encoding video media to be streamed to DMS endpoints
'videoPortal': endpoint that delivers video to desktops
'mediaPlayer': endpoint that delivers video to large LCDs
'transCoder': device capable of transcoding video from one format to another
'storageServer': device capable of storing media
'streamingServer': device capable of serving media as a stream
'dmm': DMS administrative node · Integer32
The type of the DMS inventory element that this conceptual row corresponds to.
cdmsInventoryElementId
1.3.6.1.4.1.9.9.655.1.3.2.1.2
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 (1..100) · OCTET STRING · hint 255t
The unique identifier of the DMS inventory element that this conceptual row corresponds to. For instance, in case of a media player, this identifier would be the unique symbolic name of the player. In case of a Video Portal instance, this would be the name of the Video Portal instance.
cdmsInventoryElementMacAddress
1.3.6.1.4.1.9.9.655.1.3.2.1.3
MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:
The MAC address of the DMS inventory element. This object may not be supportable for all inventory elements. For an element where the MAC address is not available, the value of this object would be empty.
cdmsInventoryElementAddrType
1.3.6.1.4.1.9.9.655.1.3.2.1.4
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
The type of Internet address of the DMS inventory element.
cdmsInventoryElementAddress
1.3.6.1.4.1.9.9.655.1.3.2.1.5
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The Internet address of the DMS inventory element. The type of this address is determined by the value of 'cdmsInventoryElementAddrType' object.
cdmsInventoryElementMetadata
1.3.6.1.4.1.9.9.655.1.3.2.1.6
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
A meta-data string associated with this inventory element. This information is interpreted by the DMS functional components using inventory elements programmatically within the system.
cdmsInventoryElementState
1.3.6.1.4.1.9.9.655.1.3.2.1.7
CDmsFunctionalStatus1 = other2 = initialize3 = active4 = shutdown5 = standbyThe status of a DMS functional component.
other: the component is in an unknown status.
initialize: the component is in the process of starting up.
active: the component is active and servicing requests.
shutdown: the component is shut down or is shutting down.
standby: the component is not servicing requests but is ready to do when needed.
Objects of this type may be used to reboot a DMS element by setting value of the object to initialize(1).
Management entity may not write values initialize(1) or active(2) onto objects of this type. Doing so would cause the managed entity to return an error condition. · Integer32
The state of the inventory element corresponding to this conceptual row as seen by the DMS server.
Set operations on this object are not supported for all inventory element types. Where it is not supported, the server would yield an error.
The effect of setting this object to the value 'initializing' would be to reboot the element corresponding to this conceptual row, if the element type supports this operation.
This table lists all the external servers used by this installation of DMS.
cdmsServerType
1.3.6.1.4.1.9.9.655.1.4.1.1.1
CDmsServerType1 = other2 = dnsServer3 = ldapServer4 = snmpServer5 = smtpServer6 = syslogServer7 = aaaServer8 = ntpServerThe type of the external server used by DMS. · Integer32
The type of the external server corresponding to this conceptual row used by DMS.
cdmsServerAddrType
1.3.6.1.4.1.9.9.655.1.4.1.1.2
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
The type of Internet address of the external server.
cdmsServerAddress
1.3.6.1.4.1.9.9.655.1.4.1.1.3
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (1..64) · OCTET STRING
The Internet address of the external server. The type of this address is determined by the value of the cdmsServerAddrType object.
cdmsServerState
1.3.6.1.4.1.9.9.655.1.4.1.1.4
CDmsFunctionalStatus1 = other2 = initialize3 = active4 = shutdown5 = standbyThe status of a DMS functional component.
other: the component is in an unknown status.
initialize: the component is in the process of starting up.
active: the component is active and servicing requests.
shutdown: the component is shut down or is shutting down.
standby: the component is not servicing requests but is ready to do when needed.
Objects of this type may be used to reboot a DMS element by setting value of the object to initialize(1).
Management entity may not write values initialize(1) or active(2) onto objects of this type. Doing so would cause the managed entity to return an error condition. · Integer32
The state of the external server.
cdmsServerStatus
1.3.6.1.4.1.9.9.655.1.4.1.1.5
RowStatus1 = active2 = notInService3 = notReady4 = createAndGo5 = createAndWait6 = destroyThe RowStatus textual convention is used to manage the creation and deletion of conceptual rows, and is used as the value of the SYNTAX clause for the status column of a conceptual row (as described in Section 7.7.1 of [2].)
The status column has six defined values:
- `active', which indicates that the conceptual row is available for use by the managed device;
- `notInService', which indicates that the conceptual row exists in the agent, but is unavailable for use by the managed device (see NOTE below); 'notInService' has no implication regarding the internal consistency of the row, availability of resources, or consistency with the current state of the managed device;
- `notReady', which indicates that the conceptual row exists in the agent, but is missing information necessary in order to be available for use by the managed device (i.e., one or more required columns in the conceptual row have not been instanciated);
- `createAndGo', which is supplied by a management station wishing to create a new instance of a conceptual row and to have its status automatically set to active, making it available for use by the managed device;
- `createAndWait', which is supplied by a management station wishing to create a new instance of a conceptual row (but not make it available for use by the managed device); and, - `destroy', which is supplied by a management station wishing to delete all of the instances associated with an existing conceptual row.
Whereas five of the six values (all except `notReady') may be specified in a management protocol set operation, only three values will be returned in response to a management
protocol retrieval operation: `notReady', `notInService' or
`active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has value `active'); it is not available for use by the managed device, though the agent has sufficient information to attempt to make it so (the status column has value `notInService'); or, it is not available for use by the managed device, and an attempt to make it so would fail because the agent has insufficient information (the state column has value `notReady').
NOTE WELL
This textual convention may be used for a MIB table, irrespective of whether the values of that table's conceptual rows are able to be modified while it is active, or whether its conceptual rows must be taken out of service in order to be modified. That is, it is the responsibility of the DESCRIPTION clause of the status column to specify whether the status column must not be `active' in order for the value of some other column of the same conceptual row to be modified. If such a specification is made, affected columns may be changed by an SNMP set PDU if the RowStatus would not be equal to `active' either immediately before or after processing the PDU. In other words, if the PDU also contained a varbind that would change the RowStatus value, the column in question may be changed if the RowStatus was not equal to `active' as the PDU was received, or if the varbind sets the status to a value other than 'active'.
Also note that whenever any elements of a row exist, the RowStatus column must also exist.
To summarize the effect of having a conceptual row with a status column having a SYNTAX clause value of RowStatus, consider the following state diagram:
STATE +--------------+-----------+-------------+-------------
| A | B | C | D
| |status col.|status column|
|status column | is | is |status column
ACTION |does not exist| notReady | notInService| is active
--------------+--------------+-----------+-------------+-------------
set status |noError ->D|inconsist- |inconsistent-|inconsistent-
column to | or | entValue| Value| Value
createAndGo |inconsistent- | | |
| Value| | |
--------------+--------------+-----------+-------------+-------------
set status |noError see 1|inconsist- |inconsistent-|inconsistent-
column to | or | entValue| Value| Value
createAndWait |wrongValue | | |
--------------+--------------+-----------+-------------+-------------
set status |inconsistent- |inconsist- |noError |noError
column to | Value| entValue| |
active | | | |
| | or | |
| | | |
| |see 2 ->D|see 8 ->D| ->D
--------------+--------------+-----------+-------------+-------------
set status |inconsistent- |inconsist- |noError |noError ->C
column to | Value| entValue| |
notInService | | | |
| | or | | or
| | | |
| |see 3 ->C| ->C|see 6
--------------+--------------+-----------+-------------+-------------
set status |noError |noError |noError |noError ->A
column to | | | | or
destroy | ->A| ->A| ->A|see 7
--------------+--------------+-----------+-------------+-------------
set any other |see 4 |noError |noError |see 5
column to some| | | |
value | | see 1| ->C| ->D
--------------+--------------+-----------+-------------+-------------
(1) goto B or C, depending on information available to the agent.
(2) if other variable bindings included in the same PDU, provide values for all columns which are missing but required, and all columns have acceptable values, then return noError and goto D.
(3) if other variable bindings included in the same PDU, provide legal values for all columns which are missing but required, then return noError and goto C.
(4) at the discretion of the agent, the return value may be either:
inconsistentName: because the agent does not choose to
create such an instance when the corresponding RowStatus instance does not exist, or
inconsistentValue: if the supplied value is
inconsistent with the state of some other MIB object's value, or
noError: because the agent chooses to create the instance.
If noError is returned, then the instance of the status column must also be created, and the new state is B or C, depending on the information available to the agent. If inconsistentName or inconsistentValue is returned, the row remains in state A.
(5) depending on the MIB definition for the column/table, either noError or inconsistentValue may be returned.
(6) the return value can indicate one of the following errors:
wrongValue: because the agent does not support notInService (e.g., an agent which does not support createAndWait), or
inconsistentValue: because the agent is unable to take the row out of service at this time, perhaps because it is in use and cannot be de-activated.
(7) the return value can indicate the following error:
inconsistentValue: because the agent is unable to remove the row at this time, perhaps because it is in use and cannot be de-activated.
(8) the transition to D can fail, e.g., if the values of the conceptual row are inconsistent, then the error code would be inconsistentValue.
NOTE: Other processing of (this and other varbinds of) the set request may result in a response other than noError being returned, e.g., wrongValue, noCreation, etc.
Conceptual Row Creation
There are four potential interactions when creating a
conceptual row: selecting an instance-identifier which is
not in use; creating the conceptual row; initializing any objects for which the agent does not supply a default; and, making the conceptual row available for use by the managed device.
Interaction 1: Selecting an Instance-Identifier
The algorithm used to select an instance-identifier varies for each conceptual row. In some cases, the instance- identifier is semantically significant, e.g., the destination address of a route, and a management station selects the instance-identifier according to the semantics.
In other cases, the instance-identifier is used solely to distinguish conceptual rows, and a management station without specific knowledge of the conceptual row might examine the instances present in order to determine an unused instance-identifier. (This approach may be used, but it is often highly sub-optimal; however, it is also a questionable practice for a naive management station to attempt conceptual row creation.)
Alternately, the MIB module which defines the conceptual row might provide one or more objects which provide assistance in determining an unused instance-identifier. For example, if the conceptual row is indexed by an integer-value, then an object having an integer-valued SYNTAX clause might be defined for such a purpose, allowing a management station to issue a management protocol retrieval operation. In order to avoid unnecessary collisions between competing management stations, `adjacent' retrievals of this object should be different.
Finally, the management station could select a pseudo-random number to use as the index. In the event that this index
was already in use and an inconsistentValue was returned in response to the management protocol set operation, the management station should simply select a new pseudo-random number and retry the operation.
A MIB designer should choose between the two latter algorithms based on the size of the table (and therefore the efficiency of each algorithm). For tables in which a large number of entries are expected, it is recommended that a MIB object be defined that returns an acceptable index for creation. For tables with small numbers of entries, it is recommended that the latter pseudo-random index mechanism be used.
Interaction 2: Creating the Conceptual Row
Once an unused instance-identifier has been selected, the management station determines if it wishes to create and activate the conceptual row in one transaction or in a negotiated set of interactions.
Interaction 2a: Creating and Activating the Conceptual Row
The management station must first determine the column requirements, i.e., it must determine those columns for which it must or must not provide values. Depending on the complexity of the table and the management station's knowledge of the agent's capabilities, this determination can be made locally by the management station. Alternately, the management station issues a management protocol get operation to examine all columns in the conceptual row that it wishes to create. In response, for each column, there are three possible outcomes:
- a value is returned, indicating that some other management station has already created this conceptual row. We return to interaction 1.
- the exception `noSuchInstance' is returned, indicating that the agent implements the object-type associated with this column, and that this column in at least one conceptual row would be accessible in the MIB view used by the retrieval were it to exist. For those columns to which the agent provides read-create access, the `noSuchInstance' exception tells the management station that it should supply a value for this column when the conceptual row is to be created.
- the exception `noSuchObject' is returned, indicating that the agent does not implement the object-type associated with this column or that there is no conceptual row for which this column would be accessible in the MIB view used by the retrieval. As such, the management station can not issue any management protocol set operations to create an instance of this column.
Once the column requirements have been determined, a management protocol set operation is accordingly issued. This operation also sets the new instance of the status column to `createAndGo'.
When the agent processes the set operation, it verifies that it has sufficient information to make the conceptual row available for use by the managed device. The information
available to the agent is provided by two sources: the
management protocol set operation which creates the conceptual row, and, implementation-specific defaults supplied by the agent (note that an agent must provide implementation-specific defaults for at least those objects which it implements as read-only). If there is sufficient information available, then the conceptual row is created, a `noError' response is returned, the status column is set to `active', and no further interactions are necessary (i.e., interactions 3 and 4 are skipped). If there is insufficient information, then the conceptual row is not created, and the set operation fails with an error of `inconsistentValue'. On this error, the management station can issue a management protocol retrieval operation to determine if this was because it failed to specify a value for a required column, or, because the selected instance of the status column already existed. In the latter case, we return to interaction 1. In the former case, the management station can re-issue the set operation with the additional information, or begin interaction 2 again using `createAndWait' in order to negotiate creation of the conceptual row.
NOTE WELL
Regardless of the method used to determine the column requirements, it is possible that the management station might deem a column necessary when, in fact, the agent will not allow that particular columnar instance to be created or written. In this case, the management protocol set operation will fail with an error such as `noCreation' or `notWritable'. In this case, the management station decides whether it needs to be able to set a value for that particular columnar instance. If not, the management station re-issues the management protocol set operation, but without setting a value for that particular columnar instance; otherwise, the management station aborts the row creation algorithm.
Interaction 2b: Negotiating the Creation of the Conceptual Row
The management station issues a management protocol set operation which sets the desired instance of the status column to `createAndWait'. If the agent is unwilling to process a request of this sort, the set operation fails with an error of `wrongValue'. (As a consequence, such an agent must be prepared to accept a single management protocol set operation, i.e., interaction 2a above, containing all of the
columns indicated by its column requirements.) Otherwise,
the conceptual row is created, a `noError' response is returned, and the status column is immediately set to either `notInService' or `notReady', depending on whether it has sufficient information to (attempt to) make the conceptual row available for use by the managed device. If there is sufficient information available, then the status column is set to `notInService'; otherwise, if there is insufficient information, then the status column is set to `notReady'. Regardless, we proceed to interaction 3.
Interaction 3: Initializing non-defaulted Objects
The management station must now determine the column requirements. It issues a management protocol get operation to examine all columns in the created conceptual row. In the response, for each column, there are three possible outcomes:
- a value is returned, indicating that the agent implements the object-type associated with this column and had sufficient information to provide a value. For those columns to which the agent provides read-create access (and for which the agent allows their values to be changed after their creation), a value return tells the management station that it may issue additional management protocol set operations, if it desires, in order to change the value associated with this column.
- the exception `noSuchInstance' is returned, indicating that the agent implements the object-type associated with this column, and that this column in at least one conceptual row would be accessible in the MIB view used by the retrieval were it to exist. However, the agent does not have sufficient information to provide a value, and until a value is provided, the conceptual row may not be made available for use by the managed device. For those columns to which the agent provides read-create access, the `noSuchInstance' exception tells the management station that it must issue additional management protocol set operations, in order to provide a value associated with this column.
- the exception `noSuchObject' is returned, indicating that the agent does not implement the object-type associated with this column or that there is no conceptual row for which this column would be accessible in the MIB view used by the retrieval. As such, the management station can not issue any management protocol set operations to create an instance of this column.
If the value associated with the status column is `notReady', then the management station must first deal with all `noSuchInstance' columns, if any. Having done so, the value of the status column becomes `notInService', and we proceed to interaction 4.
Interaction 4: Making the Conceptual Row Available
Once the management station is satisfied with the values associated with the columns of the conceptual row, it issues a management protocol set operation to set the status column to `active'. If the agent has sufficient information to make the conceptual row available for use by the managed device, the management protocol set operation succeeds (a `noError' response is returned). Otherwise, the management protocol set operation fails with an error of `inconsistentValue'.
NOTE WELL
A conceptual row having a status column with value `notInService' or `notReady' is unavailable to the managed device. As such, it is possible for the managed device to create its own instances during the time between the management protocol set operation which sets the status column to `createAndWait' and the management protocol set operation which sets the status column to `active'. In this case, when the management protocol set operation is issued to set the status column to `active', the values held in the agent supersede those used by the managed device.
If the management station is prevented from setting the status column to `active' (e.g., due to management station or network failure) the conceptual row will be left in the `notInService' or `notReady' state, consuming resources indefinitely. The agent must detect conceptual rows that have been in either state for an abnormally long period of time and remove them. It is the responsibility of the DESCRIPTION clause of the status column to indicate what an abnormally long period of time would be. This period of time should be long enough to allow for human response time (including `think time') between the creation of the conceptual row and the setting of the status to `active'. In the absence of such information in the DESCRIPTION clause, it is suggested that this period be approximately 5 minutes in length. This removal action applies not only to newly-created rows, but also to previously active rows which are set to, and left in, the notInService state for a prolonged period exceeding that which is considered normal for such a conceptual row.
Conceptual Row Suspension
When a conceptual row is `active', the management station may issue a management protocol set operation which sets the instance of the status column to `notInService'. If the agent is unwilling to do so, the set operation fails with an error of `wrongValue' or `inconsistentValue'. Otherwise, the conceptual row is taken out of service, and a `noError' response is returned. It is the responsibility of the DESCRIPTION clause of the status column to indicate under what circumstances the status column should be taken out of service (e.g., in order for the value of some other column of the same conceptual row to be modified).
Conceptual Row Deletion
For deletion of conceptual rows, a management protocol set operation is issued which sets the instance of the status column to `destroy'. This request may be made regardless of the current value of the status column (e.g., it is possible to delete conceptual rows which are either `notReady',
`notInService' or `active'.) If the operation succeeds,
then all instances associated with the conceptual row are immediately removed. · Integer32
This object is used to manage creation, deletion and modification of external servers in this table.
This table lists the membership of the DMM cluster in this DMS cluster. Each conceptual row in this table represents an instance of DMM node in the DMM cluster.
Rows in this table are created by the agent when the DMM cluster is configured.
cdmsHaDmmClusterMemberAddrType
1.3.6.1.4.1.9.9.655.1.10.2.1.5.1.1
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object specifies the type of the actual network address of DMM node represented by the corresponding instance identifier 'cdmsHaDmmClusterMemberAddress').
cdmsHaDmmClusterMemberAddress
1.3.6.1.4.1.9.9.655.1.10.2.1.5.1.2
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The actual network address of the DMM node corresponding to this conceptual row. The type of address of an instance of this object is determined by the value of the corresponding instance of 'cdmsHaDmmClusterMemberAddrType'.
cdmsHaDmmClusterMemberIsPrimary
1.3.6.1.4.1.9.9.655.1.10.2.1.5.1.3
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object indicates if the DMM node corresponding to this conceptual row is 'primary'.
A node in a cluster is considered 'primary' if: a) the cluster services are preferred to be implemented on the node b) if the node acts as a management interface to the cluster.
Otherwise, the node is considered 'secondary'.
The value 'true(1)', indicates that the DMM is primary.
The value 'false(2)', indicates that the DMM is secondary.
cdmsHaDmmClusterMemberOperState
1.3.6.1.4.1.9.9.655.1.10.2.1.5.1.4
CDmsFunctionalStatus1 = other2 = initialize3 = active4 = shutdown5 = standbyThe status of a DMS functional component.
other: the component is in an unknown status.
initialize: the component is in the process of starting up.
active: the component is active and servicing requests.
shutdown: the component is shut down or is shutting down.
standby: the component is not servicing requests but is ready to do when needed.
Objects of this type may be used to reboot a DMS element by setting value of the object to initialize(1).
Management entity may not write values initialize(1) or active(2) onto objects of this type. Doing so would cause the managed entity to return an error condition. · Integer32
This object indicates the operational state of the DMM node corresponding to this conceptual row.
This table serves the dual purpose of enumerating the various video portal clusters in this installation as well as listing the member video portal nodes in each video portal cluster. Entries in this table are created by the agent when the cluster is configured.
cdmsHaVpClusterMemberClusterName
1.3.6.1.4.1.9.9.655.1.10.2.2.2.1.1
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 (1..255) · OCTET STRING · hint 255t
This object specifies a human-readable administrative name of the video portal cluster corresponding to this conceptual row.
cdmsHaVpClusterMemberVipType
1.3.6.1.4.1.9.9.655.1.10.2.2.2.1.2
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object specifies the type of the virtual IP address of the video portal cluster represented by the corresponding instance identifier 'cdmsHaVpClusterMemberVip'.
cdmsHaVpClusterMemberVip
1.3.6.1.4.1.9.9.655.1.10.2.2.2.1.3
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The virtual IP address of the video portal cluster represented by this conceptual row. The type of address of an instance of this object is determined by the value of the corresponding instance of 'cdmHaVpClusterMemberVipType'.
cdmsHaVpClusterMemberAddrType
1.3.6.1.4.1.9.9.655.1.10.2.2.2.1.4
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object specifies the actual IP address of the video portal node represented by the corresponding instance identifier 'cdmsHaVpClusterMemberAddress'.
cdmsHaVpClusterMemberAddress
1.3.6.1.4.1.9.9.655.1.10.2.2.2.1.5
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The actual IP address of the video portal represented by this conceptual row. The type of address of an instance of this object is determined by the value of the corresponding instance of 'cdmHaVpClusterMemberAddrType'.
cdmsHaVpClusterMemberIsPrimary
1.3.6.1.4.1.9.9.655.1.10.2.2.2.1.6
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object indicates if the DMM node corresponding to this conceptual row is 'primary'.
A node in a cluster is considered 'primary' if: a) the cluster services are preferred to be implemented on the node b) if the node acts as a management interface to the cluster.
Otherwise, the node is considered 'secondary'.
The value 'true(1)', indicates that the VP is primary.
The value 'false(2)', indicates that the VP is secondary.
cdmsHaVpClusterMemberOperState
1.3.6.1.4.1.9.9.655.1.10.2.2.2.1.7
CDmsFunctionalStatus1 = other2 = initialize3 = active4 = shutdown5 = standbyThe status of a DMS functional component.
other: the component is in an unknown status.
initialize: the component is in the process of starting up.
active: the component is active and servicing requests.
shutdown: the component is shut down or is shutting down.
standby: the component is not servicing requests but is ready to do when needed.
Objects of this type may be used to reboot a DMS element by setting value of the object to initialize(1).
Management entity may not write values initialize(1) or active(2) onto objects of this type. Doing so would cause the managed entity to return an error condition. · Integer32
This object indicates the operational state of the VP node corresponding to this conceptual row.
cdmsHaClusterHistoryTable
1.3.6.1.4.1.9.9.655.1.10.3.8.2
Index: cdmsHaClusterHistId
This table contains the chronological record of all the DMS cluster events and their attributes that occurred in the manager DMS cluster since the last re-initialization of this device.
When the number of entries in this table exceeds the value of object 'cdmsHaClusterHistoryMaxRecords', the older entries will be purged.
cdmsHaClusterHistId
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.1
Integer32 (1..65535)
This object uniquely identifies an entry in the cluster history.
cdmsHaClusterHistTimestamp
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.2
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 cluster event corresponding to this conceptual row occurred.
cdmsHaClusterHistClusterName
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.3
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 (1..255) · OCTET STRING · hint 255t
The name of the DMS cluster in which the cluster event corresponding to this conceptual row occurred.
cdmsHaClusterHistNodeType
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.4
CDmsElementType1 = other2 = encoder3 = videoPortal4 = mediaPlayer5 = transCoder6 = storageServer7 = streamingServer8 = dmmThe type of the DMS inventory element.
DMS supports the following inventory element types among other types:
'other': other type not represented by any other enum value
'encoder': device capable of encoding video media to be streamed to DMS endpoints
'videoPortal': endpoint that delivers video to desktops
'mediaPlayer': endpoint that delivers video to large LCDs
'transCoder': device capable of transcoding video from one format to another
'storageServer': device capable of storing media
'streamingServer': device capable of serving media as a stream
'dmm': DMS administrative node · Integer32
The type of the DMS node in which the cluster event corresponding to this conceptual row occurred, if this event pertains to a node in the cluster. If this event does not pertain to a node, the value of this column is undefined.
cdmsHaClusterHistNodeNewStatus
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.5
CDmsFunctionalStatus1 = other2 = initialize3 = active4 = shutdown5 = standbyThe status of a DMS functional component.
other: the component is in an unknown status.
initialize: the component is in the process of starting up.
active: the component is active and servicing requests.
shutdown: the component is shut down or is shutting down.
standby: the component is not servicing requests but is ready to do when needed.
Objects of this type may be used to reboot a DMS element by setting value of the object to initialize(1).
Management entity may not write values initialize(1) or active(2) onto objects of this type. Doing so would cause the managed entity to return an error condition. · Integer32
If the cluster event corresponding to this conceptual row is a cluster node event, then this object identifies the new state of the cluster node identified by 'cdmsHaClusterHistNodeAddr' after this event.
cdmsHaClusterHistNodeAddrType
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.6
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object indicates the type of network address of the node (represented by the value of the corresponding instance of 'cdmsHaClusterHistNodeAddr') to which the cluster event pertains.
cdmsHaClusterHistNodeAddr
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.7
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The address of the node to which the cluster event corresponding to this conceptual row pertains. The type of address of an instance of this object is determined by the value of the corresponding instance of 'cdmsHaClusterHistNodeAddrType' object.
Trap details
ciscoDmsMediaPlayerRegistered
1.3.6.1.4.1.9.9.655.0.1
This notification is generated when a media player is registered into this installation of DMS.
cdmsNumMediaPlayerDevices
1.3.6.1.4.1.9.9.655.1.3.1.2
Gauge32 · Media Players
The number of media player devices managed by this installation of DMS.
cdmsInventoryElementMacAddress
1.3.6.1.4.1.9.9.655.1.3.2.1.3
MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:
The MAC address of the DMS inventory element. This object may not be supportable for all inventory elements. For an element where the MAC address is not available, the value of this object would be empty.
cdmsInventoryElementAddrType
1.3.6.1.4.1.9.9.655.1.3.2.1.4
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
The type of Internet address of the DMS inventory element.
cdmsInventoryElementAddress
1.3.6.1.4.1.9.9.655.1.3.2.1.5
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The Internet address of the DMS inventory element. The type of this address is determined by the value of 'cdmsInventoryElementAddrType' object.
ciscoDmsMediaPlayerUp
1.3.6.1.4.1.9.9.655.0.2
This notification is generated when a media player which is registered with DMS becomes operational.
cdmsNumMediaPlayerDevices
1.3.6.1.4.1.9.9.655.1.3.1.2
Gauge32 · Media Players
The number of media player devices managed by this installation of DMS.
cdmsInventoryElementMacAddress
1.3.6.1.4.1.9.9.655.1.3.2.1.3
MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:
The MAC address of the DMS inventory element. This object may not be supportable for all inventory elements. For an element where the MAC address is not available, the value of this object would be empty.
cdmsInventoryElementAddrType
1.3.6.1.4.1.9.9.655.1.3.2.1.4
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
The type of Internet address of the DMS inventory element.
cdmsInventoryElementAddress
1.3.6.1.4.1.9.9.655.1.3.2.1.5
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The Internet address of the DMS inventory element. The type of this address is determined by the value of 'cdmsInventoryElementAddrType' object.
ciscoDmsMediaPlayerDown
1.3.6.1.4.1.9.9.655.0.3
This notification is generated when a media player which is registered with DMS and which was operational is shutdown.
cdmsNumMediaPlayerDevices
1.3.6.1.4.1.9.9.655.1.3.1.2
Gauge32 · Media Players
The number of media player devices managed by this installation of DMS.
cdmsInventoryElementAddrType
1.3.6.1.4.1.9.9.655.1.3.2.1.4
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
The type of Internet address of the DMS inventory element.
cdmsInventoryElementAddress
1.3.6.1.4.1.9.9.655.1.3.2.1.5
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The Internet address of the DMS inventory element. The type of this address is determined by the value of 'cdmsInventoryElementAddrType' object.
ciscoDmsMediaPlayerAddrTaken
1.3.6.1.4.1.9.9.655.0.4
This notification is generated when it is detected that the network address of a media player is taken by a different media player.
cdmsInventoryElementAddrType
1.3.6.1.4.1.9.9.655.1.3.2.1.4
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
The type of Internet address of the DMS inventory element.
cdmsInventoryElementAddress
1.3.6.1.4.1.9.9.655.1.3.2.1.5
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The Internet address of the DMS inventory element. The type of this address is determined by the value of 'cdmsInventoryElementAddrType' object.
ciscoDmsHaClusterNodeUp
1.3.6.1.4.1.9.9.655.0.5
This notification is generated when it is detected that a node in a managed DMS cluster has transitioned to active state, that is, the value of the object 'cdmsHaDmmClusterMemberOperState' or 'cdmsHaVpClusterMemberOperState' has transitioned to 'active'.
This object specifies the administrative state of sending the 'ciscoDmsHaClusterNodeDown' notification to signal the fact that a component in a DMS cluster has transitioned to inactive state.
cdmsHaClusterHistClusterName
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.3
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 (1..255) · OCTET STRING · hint 255t
The name of the DMS cluster in which the cluster event corresponding to this conceptual row occurred.
cdmsHaClusterHistNodeType
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.4
CDmsElementType1 = other2 = encoder3 = videoPortal4 = mediaPlayer5 = transCoder6 = storageServer7 = streamingServer8 = dmmThe type of the DMS inventory element.
DMS supports the following inventory element types among other types:
'other': other type not represented by any other enum value
'encoder': device capable of encoding video media to be streamed to DMS endpoints
'videoPortal': endpoint that delivers video to desktops
'mediaPlayer': endpoint that delivers video to large LCDs
'transCoder': device capable of transcoding video from one format to another
'storageServer': device capable of storing media
'streamingServer': device capable of serving media as a stream
'dmm': DMS administrative node · Integer32
The type of the DMS node in which the cluster event corresponding to this conceptual row occurred, if this event pertains to a node in the cluster. If this event does not pertain to a node, the value of this column is undefined.
cdmsHaClusterHistNodeAddrType
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.6
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object indicates the type of network address of the node (represented by the value of the corresponding instance of 'cdmsHaClusterHistNodeAddr') to which the cluster event pertains.
cdmsHaClusterHistNodeAddr
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.7
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The address of the node to which the cluster event corresponding to this conceptual row pertains. The type of address of an instance of this object is determined by the value of the corresponding instance of 'cdmsHaClusterHistNodeAddrType' object.
ciscoDmsHaClusterNodeDown
1.3.6.1.4.1.9.9.655.0.6
This notification is generated when it is detected that a node in a managed DMS cluster has transitioned to inactive state, that is, the value of the object 'cdmsHaDmmClusterMemberOperState' or 'cdmsHaVpClusterMemberOperState' has transitioned to 'shutdown'.
cdmsHaClusterHistClusterName
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.3
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 (1..255) · OCTET STRING · hint 255t
The name of the DMS cluster in which the cluster event corresponding to this conceptual row occurred.
cdmsHaClusterHistNodeType
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.4
CDmsElementType1 = other2 = encoder3 = videoPortal4 = mediaPlayer5 = transCoder6 = storageServer7 = streamingServer8 = dmmThe type of the DMS inventory element.
DMS supports the following inventory element types among other types:
'other': other type not represented by any other enum value
'encoder': device capable of encoding video media to be streamed to DMS endpoints
'videoPortal': endpoint that delivers video to desktops
'mediaPlayer': endpoint that delivers video to large LCDs
'transCoder': device capable of transcoding video from one format to another
'storageServer': device capable of storing media
'streamingServer': device capable of serving media as a stream
'dmm': DMS administrative node · Integer32
The type of the DMS node in which the cluster event corresponding to this conceptual row occurred, if this event pertains to a node in the cluster. If this event does not pertain to a node, the value of this column is undefined.
cdmsHaClusterHistNodeAddrType
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.6
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address.
unknown(0) An unknown address type. This value MUST
be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below.
ipv4(1) An IPv4 address as defined by the
InetAddressIPv4 textual convention.
ipv6(2) An IPv6 address as defined by the
InetAddressIPv6 textual convention.
ipv4z(3) A non-global IPv4 address including a zone
index as defined by the InetAddressIPv4z textual convention.
ipv6z(4) A non-global IPv6 address including a zone
index as defined by the InetAddressIPv6z textual convention.
dns(16) A DNS domain name as defined by the
InetAddressDNS textual convention.
Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType.
To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation.
Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object indicates the type of network address of the node (represented by the value of the corresponding instance of 'cdmsHaClusterHistNodeAddr') to which the cluster event pertains.
cdmsHaClusterHistNodeAddr
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.7
InetAddressDenotes a generic Internet address.
An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row.
The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error.
When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
The address of the node to which the cluster event corresponding to this conceptual row pertains. The type of address of an instance of this object is determined by the value of the corresponding instance of 'cdmsHaClusterHistNodeAddrType' object.
cdmsDmsHaClusterConfigChange
1.3.6.1.4.1.9.9.655.0.7
This notification is generated when it is detected that the configuration of a managed DMS cluster has been altered. Configuration changes that trigger this notification include modifications to the virtual IP address and the virtual IP address type.
cdmsHaClusterHistClusterName
1.3.6.1.4.1.9.9.655.1.10.3.8.2.1.3
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 (1..255) · OCTET STRING · hint 255t
The name of the DMS cluster in which the cluster event corresponding to this conceptual row occurred.