EZ5 MIB Catalog

CISCO-STACKWISE-MIB

2016-04-16

This MIB module contain a collection of managed objects that apply to network devices supporting the Cisco StackWise(TM) technology. The StackWise technology provides a method for collectively utilizing a stack of switches to create a single switching unit. The data stack is used for switching data packets and, in power stack, switches are connected by special stack power cables to share power. Moreover, stackwise is the concept for combining multiple systems to give an impression of a single system so that is why both power stack and data stack are supported by single MIB. Terminology: Stack - A collection of switches connected by the Cisco StackWise technology. Master - The switch that is managing the stack. Member - A switch in the stack that is NOT the stack master. Ring - Components that makes up the connections between the switches in order to create a stack. Stackport - A special physical connector used by the ring. It is possible for a switch have more than one stackport. SDM - Switch Database Management. Stack Power - A collection of switches connected by special stack power cables to share the power of inter-connected power supplies across all switches requiring power. Stack Power is managed by a single data stack. Jack-Jack - It is a device that provides the Power Shelf capabilities required for Stack Power on the high-end. POE - Power Over Ethernet FEP - Front End Power Supply SOC - Sustained Overload Condition GLS - Graceful Load Shedding ILS - Immediate Load Shedding SRLS - System Ring Load Shedding SSLS - System Star Load Shedding

Download CISCO-STACKWISE-MIB.txt Open CISCO-STACKWISE-MIB.txt in a new tab

SCALARS (8) · TABLES (6) · TRAPS (23)

Scalars (8)

NameOID
cswMaxSwitchNum1.3.6.1.4.1.9.9.500.1.1.1
cswMaxSwitchConfigPriority1.3.6.1.4.1.9.9.500.1.1.2
cswRingRedundant1.3.6.1.4.1.9.9.500.1.1.3
cswEnableStackNotifications1.3.6.1.4.1.9.9.500.1.1.4
cswEnableIndividualStackNotifications1.3.6.1.4.1.9.9.500.1.1.5
cswStackDomainNum1.3.6.1.4.1.9.9.500.1.1.6
cswStackType1.3.6.1.4.1.9.9.500.1.1.7
cswStackBandWidth1.3.6.1.4.1.9.9.500.1.1.8

Tables (6)

NameOID
cswSwitchInfoTable1.3.6.1.4.1.9.9.500.1.2.1
cswStackPortInfoTable1.3.6.1.4.1.9.9.500.1.2.2
cswDistrStackLinkInfoTable1.3.6.1.4.1.9.9.500.1.2.3
cswDistrStackPhyPortInfoTable1.3.6.1.4.1.9.9.500.1.2.4
cswStackPowerInfoTable1.3.6.1.4.1.9.9.500.1.3.1
cswStackPowerPortInfoTable1.3.6.1.4.1.9.9.500.1.3.2

Traps (23)

NameOID
cswStackPortChange1.3.6.1.4.1.9.9.500.0.0.1
cswStackNewMaster1.3.6.1.4.1.9.9.500.0.0.2
cswStackMismatch1.3.6.1.4.1.9.9.500.0.0.3
cswStackRingRedundant1.3.6.1.4.1.9.9.500.0.0.4
cswStackNewMember1.3.6.1.4.1.9.9.500.0.0.5
cswStackMemberRemoved1.3.6.1.4.1.9.9.500.0.0.6
cswStackPowerPortLinkStatusChanged1.3.6.1.4.1.9.9.500.0.0.7
cswStackPowerPortOperStatusChanged1.3.6.1.4.1.9.9.500.0.0.8
cswStackPowerVersionMismatch1.3.6.1.4.1.9.9.500.0.0.9
cswStackPowerInvalidTopology1.3.6.1.4.1.9.9.500.0.0.10
cscwStackPowerBudgetWarrning1.3.6.1.4.1.9.9.500.0.0.11
cswStackPowerInvalidInputCurrent1.3.6.1.4.1.9.9.500.0.0.12
cswStackPowerInvalidOutputCurrent1.3.6.1.4.1.9.9.500.0.0.13
cswStackPowerUnderBudget1.3.6.1.4.1.9.9.500.0.0.14
cswStackPowerUnbalancedPowerSupplies1.3.6.1.4.1.9.9.500.0.0.15
cswStackPowerInsufficientPower1.3.6.1.4.1.9.9.500.0.0.16
cswStackPowerPriorityConflict1.3.6.1.4.1.9.9.500.0.0.17
cswStackPowerUnderVoltage1.3.6.1.4.1.9.9.500.0.0.18
cswStackPowerGLS1.3.6.1.4.1.9.9.500.0.0.19
cswStackPowerILS1.3.6.1.4.1.9.9.500.0.0.20
cswStackPowerSRLS1.3.6.1.4.1.9.9.500.0.0.21
cswStackPowerSSLS1.3.6.1.4.1.9.9.500.0.0.22
cswStackMemberToBeReloadedForUpgrade1.3.6.1.4.1.9.9.500.0.0.23

END OF TOC

Scalar details

cswMaxSwitchNum

1.3.6.1.4.1.9.9.500.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

The maximum number of switches that can be configured on this stack. This is also the maximum value that can be set by the cswSwitchNumNextReload object.

cswMaxSwitchConfigPriority

1.3.6.1.4.1.9.9.500.1.1.2

CswSwitchPriorityA value, greater than or equal to zero, that defines the priority of a switch in a group of stackable switches. The higher the value, the higher the priority. · Unsigned32 · hint d

The maximum configurable priority for a switch in this stack. Highest value equals highest priority. This is the highest value that can be set by the cswSwitchSwPriority object.

cswRingRedundant

1.3.6.1.4.1.9.9.500.1.1.3

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

A value of 'true' is returned when the stackports are connected in such a way that it forms a redundant ring.

cswEnableStackNotifications

1.3.6.1.4.1.9.9.500.1.1.4

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

This object indicates whether the system generates the notifications defined in this MIB or not. A value of 'false' will prevent the notifications from being sent.

cswEnableIndividualStackNotifications

1.3.6.1.4.1.9.9.500.1.1.5

BITS

This object is used to enable/disable individual notifications defined in this MIB module. Turning on a particular bit would enable the corresponding trap and, similarly, turning off a particular bit would disable the corresponding trap. The following notifications are controlled by this object: stackPortChange(0): enables/disables cswStackPortChange notification. stackNewMaster(1): enables/disables cswStackNewMember notification. stackMismatch(2): enables/disables cswStackMismatch notification. stackRingRedundant(3): enables/disables cswStackRingRedundant notification. stackNewMember(4): enables/disables cswStackNewMember notification. stackMemberRemoved(5): enables/disables cswStackMemberRemoved notification. stackPowerLinkStatusChanged(6): enables/disables cswStackPowerPortLinkStatusChanged notification. stackPowerPortOperStatusChanged(7): enables/disables cswStackPowerPortOperStatusChanged notification. stackPowerVersionMismatch(8): enables/disables cswStackPowerVersionMismatch notification. stackPowerInvalidTopology(9): enables/disables cswStackPowerInvalidTopology notification stackPowerBudgetWarning(10): enables/disables cswStackPowerBudgetWarning notification. stackPowerInvalidInputCurrent(11): enables/disables cswStackPowerInvalidInputCurrent notification. stackPowerInvalidOutputCurrent(12): enables/disables cswStackPowerInvalidOutputCurrent notification. stackPowerUnderBudget(13): enables/disables cswStackPowerUnderBudget notification. stackPowerUnbalancedPowerSupplies(14): enables/disables cswStackPowerUnbalancedPowerSupplies notification. stackPowerInsufficientPower(15): enables/disables cswStackPowerInsufficientPower notification. stackPowerPriorityConflict(16): enables/disables cswStackPowerPriorityConflict notification. stackPowerUnderVoltage(17): enables/disables cswStackPowerUnderVoltage notification. stackPowerGLS(18): enables/disables cswStackPowerGLS notification. stackPowerILS(19): enables/disabled cswStackPowerILS notification. stackPowerSRLS(20): enables/disables cswStackPowerSRLS notification. stackPowerSSLS(21): enables/disables cswStackPowerSSLS notification. stackMemberToBeReloadedForUpgrade(22): enables/disables cswStackMemberToBeReloadedForUpgrade notification.

cswStackDomainNum

1.3.6.1.4.1.9.9.500.1.1.6

Unsigned32

This object indicates distributed domain of the switch.Only Switches with the same domain number can be in the same dist ributed domain.0 means no switch domain configured.

cswStackType

1.3.6.1.4.1.9.9.500.1.1.7

Unsigned32

This object indicates type of switch stack. value of Switch virtual domain determines if switch is distributed or conventional stack. 0 means stack is conventional back side stack.

cswStackBandWidth

1.3.6.1.4.1.9.9.500.1.1.8

Unsigned32

This object indicates stack bandwidth.

Table details

cswSwitchInfoTable

1.3.6.1.4.1.9.9.500.1.2.1

Index: entPhysicalIndex

This table contains information specific to switches in a stack. Every switch with an entry in the entPhysicalTable (ENTITY-MIB) whose entPhysicalClass is 'chassis' will have an entry in this table.

from ENTITY-MIB

entPhysicalIndex

PhysicalIndexAn arbitrary value that uniquely identifies the physical entity. The value should be a small positive integer. Index values for different physical entities are not necessarily contiguous. (1..2147483647) · Integer32 · hint d

The index for this entry.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswSwitchNumNextReload

1.3.6.1.4.1.9.9.500.1.2.1.1.2

CswSwitchNumberOrZeroA unique value, greater than or equal to zero, for each switch in a group of stackable switches. A value of zero means that the switch number can not be determined. The value of zero is not unique. · Unsigned32 · hint d

This object contains the cswSwitchNumCurrent to be used at next reload. The maximum value for this object is defined by the cswMaxSwitchNum object. Note: This object will contain 0 and cannot be set if the cswSwitchState value is other than 'ready'.

cswSwitchRole

1.3.6.1.4.1.9.9.500.1.2.1.1.3

INTEGER1 = master2 = member3 = notMember4 = standby · Integer32

This object describes the function of the switch: master - stack master. member - active member of the stack. notMember - none-active stack member, see cswSwitchState for status. standby - stack standby switch.

cswSwitchSwPriority

1.3.6.1.4.1.9.9.500.1.2.1.1.4

CswSwitchPriorityA value, greater than or equal to zero, that defines the priority of a switch in a group of stackable switches. The higher the value, the higher the priority. · Unsigned32 · hint d

A number containing the priority of a switch. The switch with the highest priority will become the master. The maximum value for this object is defined by the cswMaxSwitchConfigPriority object. If after a reload the value of cswMaxSwitchConfigPriority changes to a smaller value, and the value of cswSwitchSwPriority has been previously set to a value greater or equal to the new cswMaxSwitchConfigPriority, then the SNMP agent must set cswSwitchSwPriority to the new cswMaxSwitchConfigPriority. Note: This object will contain the value of 0 if the cswSwitchState value is other than 'ready'.

cswSwitchHwPriority

1.3.6.1.4.1.9.9.500.1.2.1.1.5

CswSwitchPriorityA value, greater than or equal to zero, that defines the priority of a switch in a group of stackable switches. The higher the value, the higher the priority. · Unsigned32 · hint d

This object contains the hardware priority of a switch. If two or more entries in this table have the same cswSwitchSwPriority value during the master election time, the switch with the highest cswSwitchHwPriority will become the master. Note: This object will contain the value of 0 if the cswSwitchState value is other than 'ready'.

cswSwitchState

1.3.6.1.4.1.9.9.500.1.2.1.1.6

INTEGER1 = waiting2 = progressing3 = added4 = ready5 = sdmMismatch6 = verMismatch7 = featureMismatch8 = newMasterInit9 = provisioned10 = invalid11 = removed · Integer32

The current state of a switch: waiting - Waiting for a limited time on other switches in the stack to come online. progressing - Master election or mismatch checks in progress. added - The switch is added to the stack. ready - The switch is operational. sdmMismatch - The SDM template configured on the master is not supported by the new member. verMismatch - The operating system version running on the master is different from the operating system version running on this member. featureMismatch - Some of the features configured on the master are not supported on this member. newMasterInit - Waiting for the new master to finish initialization after master switchover (Master Re-Init). provisioned - The switch is not an active member of the stack. invalid - The switch's state machine is in an invalid state. removed - The switch is removed from the stack.

cswSwitchMacAddress

1.3.6.1.4.1.9.9.500.1.2.1.1.7

MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:

The MAC address of the switch. Note: This object will contain the value of 0000:0000:0000 if the cswSwitchState value is other than 'ready'.

cswSwitchSoftwareImage

1.3.6.1.4.1.9.9.500.1.2.1.1.8

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

The software image type running on the switch. Note: This object will contain an empty string if the cswSwitchState value is other than 'ready'.

cswSwitchPowerBudget

1.3.6.1.4.1.9.9.500.1.2.1.1.9

Unsigned32 · Watts

This object indicates the power budget of the switch.

cswSwitchPowerCommited

1.3.6.1.4.1.9.9.500.1.2.1.1.10

Unsigned32 · Watts

This object indicates the power committed to the POE devices connected to the switch.

cswSwitchSystemPowerPriority

1.3.6.1.4.1.9.9.500.1.2.1.1.11

Unsigned32

This specifies the system's power priority. In case of a power failure then the system with the highest system priority will be brought down last.

cswSwitchPoeDevicesLowPriority

1.3.6.1.4.1.9.9.500.1.2.1.1.12

Unsigned32

This object specifies the priority of the system's low priority POE devices.

cswSwitchPoeDevicesHighPriority

1.3.6.1.4.1.9.9.500.1.2.1.1.13

Unsigned32

This object specifies the priority of the system's high priority POE devices. In order to avoid losing the high priority POE devices before the low priority POE devices, this object's value must be greater than value of cswSwitchPoeDevicesLowPriority.

cswSwitchPowerAllocated

1.3.6.1.4.1.9.9.500.1.2.1.1.14

Unsigned32 · Watts

This object indicates the power committed to the POE devices connected to the switch.

cswStackPortInfoTable

1.3.6.1.4.1.9.9.500.1.2.2

Index: ifIndex

This table contains stackport specific information. There exists an entry in this table for every physical stack port that have an entry in the ifTable (IF-MIB).

from IF-MIB

ifIndex

InterfaceIndexA unique value, greater than zero, for each interface or interface sub-layer in the managed system. It is recommended that values are assigned contiguously starting from 1. The value for each interface sub-layer must remain constant at least from one re-initialization of the entity's network management system to the next re-initialization. (1..2147483647) · Integer32 · hint d

A unique value, greater than zero, for each interface. It is recommended that values are assigned contiguously starting from 1. The value for each interface sub-layer must remain constant at least from one re-initialization of the entity's network management system to the next re- initialization.

cswStackPortOperStatus

1.3.6.1.4.1.9.9.500.1.2.2.1.1

INTEGER1 = up2 = down3 = forcedDown · Integer32

The state of the stackport. up - Connected and operational. down - Not connected to a neighboring switch or administrative down. forcedDown - Shut down by stack manager due to mismatch or stackport errors.

cswStackPortNeighbor

1.3.6.1.4.1.9.9.500.1.2.2.1.2

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

This object contains the value of the entPhysicalIndex of the switch's chassis to which this stackport is connected to. If the stackport is not connected, the value 0 is returned.

cswDistrStackLinkInfoTable

1.3.6.1.4.1.9.9.500.1.2.3

Index: entPhysicalIndex · cswDSLindex

Distributed Stack Link Information.

from ENTITY-MIB

entPhysicalIndex

PhysicalIndexAn arbitrary value that uniquely identifies the physical entity. The value should be a small positive integer. Index values for different physical entities are not necessarily contiguous. (1..2147483647) · Integer32 · hint d

The index for this entry.

cswDSLindex

1.3.6.1.4.1.9.9.500.1.2.3.1.1

Unsigned32 (1..2)

This is index of the distributed stack link with respect to each interface port

cswDistrStackLinkBundleOperStatus

1.3.6.1.4.1.9.9.500.1.2.3.1.2

INTEGER1 = up2 = down · Integer32

The state of the stackLink. up - Connected and operational. down - Not connected or administrative down.

cswDistrStackPhyPortInfoTable

1.3.6.1.4.1.9.9.500.1.2.4

Index: entPhysicalIndex · cswDSLindex · ifIndex

This table contains objects for Distributed stack Link information Table.

from ENTITY-MIB

entPhysicalIndex

PhysicalIndexAn arbitrary value that uniquely identifies the physical entity. The value should be a small positive integer. Index values for different physical entities are not necessarily contiguous. (1..2147483647) · Integer32 · hint d

The index for this entry.

from IF-MIB

ifIndex

InterfaceIndexA unique value, greater than zero, for each interface or interface sub-layer in the managed system. It is recommended that values are assigned contiguously starting from 1. The value for each interface sub-layer must remain constant at least from one re-initialization of the entity's network management system to the next re-initialization. (1..2147483647) · Integer32 · hint d

A unique value, greater than zero, for each interface. It is recommended that values are assigned contiguously starting from 1. The value for each interface sub-layer must remain constant at least from one re-initialization of the entity's network management system to the next re- initialization.

cswDistrStackPhyPort

1.3.6.1.4.1.9.9.500.1.2.4.1.1

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

This object indicates the name of distributed stack port.

cswDistrStackPhyPortOperStatus

1.3.6.1.4.1.9.9.500.1.2.4.1.2

INTEGER1 = up2 = down · Integer32

The state of the distributed stackport. up - Connected and operational. down - Not connected to a neighboring switch or administrative down.

cswDistrStackPhyPortNbr

1.3.6.1.4.1.9.9.500.1.2.4.1.3

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

This object indicates the name of distributed stack port's neighbor.

cswDistrStackPhyPortNbrsw

1.3.6.1.4.1.9.9.500.1.2.4.1.4

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

This object indicates the EntPhysicalIndex of the distributed stack port's neigbor switch.

cswStackPowerInfoTable

1.3.6.1.4.1.9.9.500.1.3.1

Index: cswStackPowerStackNumber

This table holds the information about all the power stacks in a single data stack.

cswStackPowerStackNumber

1.3.6.1.4.1.9.9.500.1.3.1.1.1

Unsigned32

A unique value, greater than zero, to identify a power stack.

cswStackPowerMode

1.3.6.1.4.1.9.9.500.1.3.1.1.2

CswPowerStackMode1 = powerSharing2 = redundant3 = powerSharingStrict4 = redundantStrictThis textual convention is used to describe the mode of the power stack. Since the power stack could only run in either power sharing or redundant mode so this TC will also have only following valid values, powerSharing(1) :When a power stack is running in power sharing mode then all the power supplies in the power stack contributes towards the global power budget of the stack. redundant(2) :If the user wants the power stack to run in redundant mode then we will take the capacity of the largest power supply in the power stack out of power stack global power budget pool. powerSharingStrict(3):This mode is same as power sharing mode but, in this mode, the available power will always be more than the used power. redundantStrict(4) :This mode is same as redundant mode but, in this mode, the available power will always be more than the used power. · Integer32

This object specifies the information about the mode of the power stack. Power-sharing mode: All of the input power can be used for loads, and the total available power appears as one huge power supply. The power budget includes all power from all supplies. No power is set aside for power supply failures, so if a power supply fails, load shedding (shutting down of powered devices or switches) might occur. This is the default. Redundant mode: The largest power supply is removed from the power pool to be used as backup power in case one of the other power supplies fails. The available power budget is the total power minus the largest power supply. This reduces the available power in the pool for switches and powered devices to draw from, but in case of a failure or an extreme power load, there is less chance of having to shut down switches or powered devices. This is the recommended operating mode if your system has enough power. In addition, you can configure each mode to run a strict power budget or a non-strict (loose) power budget. If the mode is strict, the stack power needs cannot exceed the available power. When the power budgeted to devices reaches the maximum available PoE power, power is denied to the next device seeking power. In this mode the stack never goes into an over-budgeted power mode. When the mode is non-strict, budgeted power is allowed to exceed available power. This is normally not a problem because most devices do not run at full power and the chances of all powered devices in the stack requiring maximum power at the same time is small.

cswStackPowerMasterMacAddress

1.3.6.1.4.1.9.9.500.1.3.1.1.3

MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:

This object indicates the Mac address of the power stack master.

cswStackPowerMasterSwitchNum

1.3.6.1.4.1.9.9.500.1.3.1.1.4

Unsigned32

This object indicates the switch number of the power stack master. The value of this object would be zero if the power stack master is not part of this data stack.

cswStackPowerNumMembers

1.3.6.1.4.1.9.9.500.1.3.1.1.5

Unsigned32

This object indicates the number of members in the power stack.

cswStackPowerType

1.3.6.1.4.1.9.9.500.1.3.1.1.6

CswPowerStackType1 = ring2 = starThis textual conventions is used to describe the type of the power stack. Since the power stack could only be configured in a ring or star topology so this TC will have only following valid values, ring(1): The power stack has been formed by connecting the switches in ring topology. star(2): The power stack has been formed by connecting the switches in star topology. · Integer32

This object indicates the topology of the power stack, that is, whether the switch is running in RING or STAR topology.

cswStackPowerName

1.3.6.1.4.1.9.9.500.1.3.1.1.7

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

This object specifies a unique name of this power stack. A zero-length string indicates no name is assigned.

cswStackPowerPortInfoTable

1.3.6.1.4.1.9.9.500.1.3.2

Index: entPhysicalIndex · cswStackPowerPortIndex

This table contains information about the stack power ports. There exists an entry in this table for each physical stack power port.

from ENTITY-MIB

entPhysicalIndex

PhysicalIndexAn arbitrary value that uniquely identifies the physical entity. The value should be a small positive integer. Index values for different physical entities are not necessarily contiguous. (1..2147483647) · Integer32 · hint d

The index for this entry.

cswStackPowerPortIndex

1.3.6.1.4.1.9.9.500.1.3.2.1.1

Unsigned32

A unique value, greater than zero, for each stack power port.

cswStackPowerPortOperStatus

1.3.6.1.4.1.9.9.500.1.3.2.1.2

INTEGER1 = enabled2 = disabled · Integer32

This object is used to either set or unset the operational status of the stack port. This object will have following valid values, enabled(1) : The port is enabled disabled(2) : The port is forced down

cswStackPowerPortNeighborMacAddress

1.3.6.1.4.1.9.9.500.1.3.2.1.3

MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:

This objects indicates the port neighbor's Mac Address.

cswStackPowerPortNeighborSwitchNum

1.3.6.1.4.1.9.9.500.1.3.2.1.4

CswSwitchNumberOrZeroA unique value, greater than or equal to zero, for each switch in a group of stackable switches. A value of zero means that the switch number can not be determined. The value of zero is not unique. · Unsigned32 · hint d

This objects indicates the port neighbor's switch number. If either there is no switch connected or the neighbor is not Jack-Jack then the value of this object is going to be 0.

cswStackPowerPortLinkStatus

1.3.6.1.4.1.9.9.500.1.3.2.1.5

INTEGER1 = up2 = down · Integer32

This object is used to describe the link status of the stack port. This object will have following valid values, up(1) : The port is connected and operational down(2): The port is either forced down or not connected

cswStackPowerPortOverCurrentThreshold

1.3.6.1.4.1.9.9.500.1.3.2.1.6

Unsigned32 · Amperes

This object is used to retrieve the over current threshold. The stack power cables are limited to carry current up to the limit retrieved by this object. The stack power cables would not be able to function properly if either the input or output current goes beyond the threshold retrieved by this object.

cswStackPowerPortName

1.3.6.1.4.1.9.9.500.1.3.2.1.7

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

This object specifies a unique name of the stack power port as shown on the face plate of the system. A zero-length string indicates no name is assigned.

Trap details

cswStackPortChange

1.3.6.1.4.1.9.9.500.0.0.1

This notification is generated when the state of a stack port has changed.

ifIndex

1.3.6.1.2.1.2.2.1.1

InterfaceIndexA unique value, greater than zero, for each interface or interface sub-layer in the managed system. It is recommended that values are assigned contiguously starting from 1. The value for each interface sub-layer must remain constant at least from one re-initialization of the entity's network management system to the next re-initialization. (1..2147483647) · Integer32 · hint d

A unique value, greater than zero, for each interface. It is recommended that values are assigned contiguously starting from 1. The value for each interface sub-layer must remain constant at least from one re-initialization of the entity's network management system to the next re- initialization.

cswStackPortOperStatus

1.3.6.1.4.1.9.9.500.1.2.2.1.1

INTEGER1 = up2 = down3 = forcedDown · Integer32

The state of the stackport. up - Connected and operational. down - Not connected to a neighboring switch or administrative down. forcedDown - Shut down by stack manager due to mismatch or stackport errors.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackNewMaster

1.3.6.1.4.1.9.9.500.0.0.2

This notification is generated when a new master has been elected. The notification will contain the cswSwitchNumCurrent object to indicate the new master ID.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackMismatch

1.3.6.1.4.1.9.9.500.0.0.3

This notification is generated when a new member attempt to join the stack but was denied due to a mismatch. The cswSwitchState object will indicate the type of mismatch.

cswSwitchState

1.3.6.1.4.1.9.9.500.1.2.1.1.6

INTEGER1 = waiting2 = progressing3 = added4 = ready5 = sdmMismatch6 = verMismatch7 = featureMismatch8 = newMasterInit9 = provisioned10 = invalid11 = removed · Integer32

The current state of a switch: waiting - Waiting for a limited time on other switches in the stack to come online. progressing - Master election or mismatch checks in progress. added - The switch is added to the stack. ready - The switch is operational. sdmMismatch - The SDM template configured on the master is not supported by the new member. verMismatch - The operating system version running on the master is different from the operating system version running on this member. featureMismatch - Some of the features configured on the master are not supported on this member. newMasterInit - Waiting for the new master to finish initialization after master switchover (Master Re-Init). provisioned - The switch is not an active member of the stack. invalid - The switch's state machine is in an invalid state. removed - The switch is removed from the stack.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackRingRedundant

1.3.6.1.4.1.9.9.500.0.0.4

This notification is generated when the redundancy of the ring has changed.

cswRingRedundant

1.3.6.1.4.1.9.9.500.1.1.3

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

A value of 'true' is returned when the stackports are connected in such a way that it forms a redundant ring.

cswStackNewMember

1.3.6.1.4.1.9.9.500.0.0.5

This notification is generated when a new member joins the stack.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackMemberRemoved

1.3.6.1.4.1.9.9.500.0.0.6

This notification is generated when a member is removed from the stack.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerPortLinkStatusChanged

1.3.6.1.4.1.9.9.500.0.0.7

This notification is generated when the link status of a stack power port is changed from up to down or down to up. This notification is for informational purposes only and no action is required. cswStackPowerPortLinkStatus indicates link status of the stack power ports. cswSwitchNumCurrent indicates the switch number of the system. cswStackPowerPortName specifies a unique name of the stack power port as shown on the face plate of the system.

cswStackPowerPortLinkStatus

1.3.6.1.4.1.9.9.500.1.3.2.1.5

INTEGER1 = up2 = down · Integer32

This object is used to describe the link status of the stack port. This object will have following valid values, up(1) : The port is connected and operational down(2): The port is either forced down or not connected

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerPortName

1.3.6.1.4.1.9.9.500.1.3.2.1.7

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

This object specifies a unique name of the stack power port as shown on the face plate of the system. A zero-length string indicates no name is assigned.

cswStackPowerPortOperStatusChanged

1.3.6.1.4.1.9.9.500.0.0.8

This notification is generated when the operational status of a stack power port is changed from enabled to disabled or from disabled to enabled. This notification is for informational purposes only and no action is required. cswSwitchNumCurrent indicates the switch number of the system. cswStackPowerPortOperStatus indicates operational status of the stack power ports. cswStackPowerPortName specifies a unique name of the stack power port as shown on the face plate of the system.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerPortOperStatus

1.3.6.1.4.1.9.9.500.1.3.2.1.2

INTEGER1 = enabled2 = disabled · Integer32

This object is used to either set or unset the operational status of the stack port. This object will have following valid values, enabled(1) : The port is enabled disabled(2) : The port is forced down

cswStackPowerPortName

1.3.6.1.4.1.9.9.500.1.3.2.1.7

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

This object specifies a unique name of the stack power port as shown on the face plate of the system. A zero-length string indicates no name is assigned.

cswStackPowerVersionMismatch

1.3.6.1.4.1.9.9.500.0.0.9

This notification is generated when the major version of the stack power protocol is different from the other members of the power stack. Upon receiving this notification, the user should make sure that he/she is using the same software version on all the members of the same power stack. cswSwitchNumCurrent indicates the switch number of the system seeing the power stack version mismatch.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerInvalidTopology

1.3.6.1.4.1.9.9.500.0.0.10

This notification is generated when an invalid stack power topology is discovered by a switch. cswSwitchNumCurrent indicates the switch number of the system where the invalid topology is discovered.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cscwStackPowerBudgetWarrning

1.3.6.1.4.1.9.9.500.0.0.11

This notification is generated when the switch power budget is more than 1000W above its power supplies rated power output. cswSwitchNumCurrent indicates the switch number of the system where the invalid power budget has been detected.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerInvalidInputCurrent

1.3.6.1.4.1.9.9.500.0.0.12

This notification is generated when the input current in the stack power cable is over the limit of the threshold retrieved by the agent through cswStackPowerPortOverCurrentThreshold object. Upon receiving this notification, the user should add a power supply to the system whose switch number is generated with this notification. cswSwitchNumCurrent indicates the switch number of the system. cswStackPowerPortOverCurrentThreshold indicates the over current threshold of power stack cables. cswStackPowerPortName specifies a unique name of the stack power port as shown on the face plate of the system.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerPortOverCurrentThreshold

1.3.6.1.4.1.9.9.500.1.3.2.1.6

Unsigned32 · Amperes

This object is used to retrieve the over current threshold. The stack power cables are limited to carry current up to the limit retrieved by this object. The stack power cables would not be able to function properly if either the input or output current goes beyond the threshold retrieved by this object.

cswStackPowerPortName

1.3.6.1.4.1.9.9.500.1.3.2.1.7

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

This object specifies a unique name of the stack power port as shown on the face plate of the system. A zero-length string indicates no name is assigned.

cswStackPowerInvalidOutputCurrent

1.3.6.1.4.1.9.9.500.0.0.13

This notification is generated when the output current in the stack power cable is over the limit of the threshold retrieved by the agent through cswStackPowerPortOverCurrentThreshold object. Upon receiving this notification, the user should remove a power supply from the system whose switch number is generated with this notification. cswSwitchNumCurrent indicates the switch number of the system. cswStackPowerPortOverCurrentThreshold indicates the over current threshold of power stack cables. cswStackPowerPortName specifies a unique name of the stack power port as shown on the face plate of the system.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerPortOverCurrentThreshold

1.3.6.1.4.1.9.9.500.1.3.2.1.6

Unsigned32 · Amperes

This object is used to retrieve the over current threshold. The stack power cables are limited to carry current up to the limit retrieved by this object. The stack power cables would not be able to function properly if either the input or output current goes beyond the threshold retrieved by this object.

cswStackPowerPortName

1.3.6.1.4.1.9.9.500.1.3.2.1.7

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

This object specifies a unique name of the stack power port as shown on the face plate of the system. A zero-length string indicates no name is assigned.

cswStackPowerUnderBudget

1.3.6.1.4.1.9.9.500.0.0.14

This notification is generated when the switch's budget is less than maximum possible switch power consumption. cswSwitchNumCurrent indicates the switch number of the system that is running with the power budget less than the power consumption.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerUnbalancedPowerSupplies

1.3.6.1.4.1.9.9.500.0.0.15

This notification is generated when the switch has no power supply but another switch in the same stack has more than one power supplies. cswStackPowerName specifies a unique name of the power stack where the unbalanced power supplies are detected.

cswStackPowerName

1.3.6.1.4.1.9.9.500.1.3.1.1.7

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

This object specifies a unique name of this power stack. A zero-length string indicates no name is assigned.

cswStackPowerInsufficientPower

1.3.6.1.4.1.9.9.500.0.0.16

This notification is generated when the switch's power stack does not have enough power to bring up all the switches in the power stack. cswStackPowerName specifies a unique name of the power stack where insufficient power condition is detected.

cswStackPowerName

1.3.6.1.4.1.9.9.500.1.3.1.1.7

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

This object specifies a unique name of this power stack. A zero-length string indicates no name is assigned.

cswStackPowerPriorityConflict

1.3.6.1.4.1.9.9.500.0.0.17

This notification is generated when the switch's power priorities are conflicting with power priorities of another switch in the same power stack. cswStackPowerPortName specifies the unique name of the power stack where the conflicting power priorities are detected.

cswStackPowerName

1.3.6.1.4.1.9.9.500.1.3.1.1.7

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

This object specifies a unique name of this power stack. A zero-length string indicates no name is assigned.

cswStackPowerUnderVoltage

1.3.6.1.4.1.9.9.500.0.0.18

This notification is generated when the switch had an under voltage condition on last boot up. cswSwitchNumCurrent indicates the switch number of the system that was forced down with the under voltage condition.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerGLS

1.3.6.1.4.1.9.9.500.0.0.19

This notification is generated when the switch had to shed loads based on a sustained over load (SOC) condition. cswSwitchNumCurrent indicates the switch number of the system that goes through graceful load shedding.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerILS

1.3.6.1.4.1.9.9.500.0.0.20

This notification is generated when the switch had to shed loads based on power supply fail condition. cswSwitchNumCurrent indicates the switch number of the system that goes through immediate load shedding.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerSRLS

1.3.6.1.4.1.9.9.500.0.0.21

This notification is generated when the switch had to shed loads based on loss of a system in ring topology. cswSwitchNumCurrent indicates the switch number of the system that detects the loss of system in ring topology.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackPowerSSLS

1.3.6.1.4.1.9.9.500.0.0.22

This notification is generated when the switch had to shed loads based on loss of a system in star topology. cswSwitchNumCurrent indicates the switch number of the system that detects the loss of system in star topology.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

cswStackMemberToBeReloadedForUpgrade

1.3.6.1.4.1.9.9.500.0.0.23

This notification is generated when a member is to be reloaded for upgrade.

cswSwitchNumCurrent

1.3.6.1.4.1.9.9.500.1.2.1.1.1

CswSwitchNumberA unique value, greater than zero, for each switch in a group of stackable switches. (1..4294967295) · Unsigned32 · hint d

This object contains the current switch identification number. This number should match any logical labeling on the switch. For example, a switch whose interfaces are labeled 'interface #3' this value should be 3.

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