CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmAppFsmTable
1.3.6.1.4.1.9.9.826.1.71.4
Index: cfprSmAppFsmInstanceId
Cisco Firepower sm:AppFsm managed object table
cfprSmAppFsmInstanceId
1.3.6.1.4.1.9.9.826.1.71.4.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmAppInstanceDn
1.3.6.1.4.1.9.9.826.1.71.7.1.2
CfprManagedObjectDnAn immutable property of all Managed Objects (MO) that provides a fully qualified and unambiguous name for the MO. A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1'. · OCTET STRING
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
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
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
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
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
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
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
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
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
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
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
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
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmDiskFileSystemDn
1.3.6.1.4.1.9.9.826.1.71.9.1.2
CfprManagedObjectDnAn immutable property of all Managed Objects (MO) that provides a fully qualified and unambiguous name for the MO. A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1'. · OCTET STRING
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
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
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
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
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmHeartbeatTable
1.3.6.1.4.1.9.9.826.1.71.12
Index: cfprSmHeartbeatInstanceId
Cisco Firepower sm:Heartbeat managed object table
cfprSmHeartbeatInstanceId
1.3.6.1.4.1.9.9.826.1.71.12.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmIPTable
1.3.6.1.4.1.9.9.826.1.71.14
Index: cfprSmIPInstanceId
Cisco Firepower sm:IP managed object table
cfprSmIPInstanceId
1.3.6.1.4.1.9.9.826.1.71.14.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmIPV6Table
1.3.6.1.4.1.9.9.826.1.71.15
Index: cfprSmIPV6InstanceId
Cisco Firepower sm:IPV6 managed object table
cfprSmIPV6InstanceId
1.3.6.1.4.1.9.9.826.1.71.15.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmKeyTable
1.3.6.1.4.1.9.9.826.1.71.16
Index: cfprSmKeyInstanceId
Cisco Firepower sm:Key managed object table
cfprSmKeyInstanceId
1.3.6.1.4.1.9.9.826.1.71.16.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmMonitorTable
1.3.6.1.4.1.9.9.826.1.71.20
Index: cfprSmMonitorInstanceId
Cisco Firepower sm:Monitor managed object table
cfprSmMonitorInstanceId
1.3.6.1.4.1.9.9.826.1.71.20.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmMonitorDn
1.3.6.1.4.1.9.9.826.1.71.20.1.2
CfprManagedObjectDnAn immutable property of all Managed Objects (MO) that provides a fully qualified and unambiguous name for the MO. A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1'. · OCTET STRING
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
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
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
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
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
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmResourceTable
1.3.6.1.4.1.9.9.826.1.71.28
Index: cfprSmResourceInstanceId
Cisco Firepower sm:Resource managed object table
cfprSmResourceInstanceId
1.3.6.1.4.1.9.9.826.1.71.28.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmSecSvcTable
1.3.6.1.4.1.9.9.826.1.71.29
Index: cfprSmSecSvcInstanceId
Cisco Firepower sm:SecSvc managed object table
cfprSmSecSvcInstanceId
1.3.6.1.4.1.9.9.826.1.71.29.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmSlotTable
1.3.6.1.4.1.9.9.826.1.71.33
Index: cfprSmSlotInstanceId
Cisco Firepower sm:Slot managed object table
cfprSmSlotInstanceId
1.3.6.1.4.1.9.9.826.1.71.33.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmSystemMacTable
1.3.6.1.4.1.9.9.826.1.71.34
Index: cfprSmSystemMacInstanceId
Cisco Firepower sm:SystemMac managed object table
cfprSmSystemMacInstanceId
1.3.6.1.4.1.9.9.826.1.71.34.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmUserMacTable
1.3.6.1.4.1.9.9.826.1.71.36
Index: cfprSmUserMacInstanceId
Cisco Firepower sm:UserMac managed object table
cfprSmUserMacInstanceId
1.3.6.1.4.1.9.9.826.1.71.36.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmAppInfoTable
1.3.6.1.4.1.9.9.826.1.71.37
Index: cfprSmAppInfoInstanceId
Cisco Firepower sm:AppInfo managed object table
cfprSmAppInfoInstanceId
1.3.6.1.4.1.9.9.826.1.71.37.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmErrorTable
1.3.6.1.4.1.9.9.826.1.71.52
Index: cfprSmErrorInstanceId
Cisco Firepower sm:Error managed object table
cfprSmErrorInstanceId
1.3.6.1.4.1.9.9.826.1.71.52.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmHotfixTable
1.3.6.1.4.1.9.9.826.1.71.53
Index: cfprSmHotfixInstanceId
Cisco Firepower sm:Hotfix managed object table
cfprSmHotfixInstanceId
1.3.6.1.4.1.9.9.826.1.71.53.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmMacItemTable
1.3.6.1.4.1.9.9.826.1.71.62
Index: cfprSmMacItemInstanceId
Cisco Firepower sm:MacItem managed object table
cfprSmMacItemInstanceId
1.3.6.1.4.1.9.9.826.1.71.62.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d
Instance identifier of the managed object.
cfprSmHwCryptoTable
1.3.6.1.4.1.9.9.826.1.71.71
Index: cfprSmHwCryptoInstanceId
Cisco Firepower sm:HwCrypto managed object table
cfprSmHwCryptoInstanceId
1.3.6.1.4.1.9.9.826.1.71.71.1.1
CfprManagedObjectIdA unique identifier for this managed object. Objects in FPR Manager are stored in a Management Information Tree (MIT). The MIT is a repository of all Managed Object (MO) instances, indexed by their Distinguished Name (DN). The MIT somewhat resembles a file structure - going from main folder to the next lowest folder, and so on, until the full path to a MO is established.
Every object in FPR Manager has two unique identifiers: 1) A distinguished name (DN). A DN provides a fully-qualified path from the top of the object tree. It is built as an ordered sequence of relative names separated by the '/' character. The DN is used to identify objects in the XML API.
2) A CfprManagedObjectId, which is an integer uniquely identifying an object. The CfprManagedObjectId is used to identify objects and traverse tables when using the SNMP protocol.
For example, an object representing a network adaptor on a blade might be identified with its DN set to 'sys/chassis-5/blade-2/adaptor-1' and its CfprManagedObjectId set to '13203'. · Unsigned32 · hint d