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STATISTIC_PEM_GX_CCA_UPDATES_RECEIVEDSTATISTIC_PEM_GX_RAR_RECEIVEDSTATISTIC_PEM_GX_RAA_SENTSTATISTIC_PEM_GX_CCR_USAGE_MONITORING_SENTSTATISTIC_PEM_GX_CCA_USAGE_MONITORING_RECEIVEDSTATISTIC_PEM_GX_CCR_TERMINATIONS_SENTSTATISTIC_PEM_GX_CCA_TERMINATIONS_RECEIVEDSTATISTIC_PEM_GY_CONCURRENT_SESSIONSSTATISTIC_PEM_GY_TOTAL_SESSIONSSTATISTIC_PEM_GY_SESSIONS_CREATEDSTATISTIC_PEM_GY_NON_PROVISIONED_SESSIONSSTATISTIC_PEM_GY_NON_PROVISIONED_SESSIONS_MAXIMUMSTATISTIC_PEM_GY_PROVISIONING_INITIATEDSTATISTIC_PEM_GY_PROVISIONING_INITIATED_MAXIMUMSTATISTIC_PEM_GY_ERROR_MESSAGES_RECEIVEDSTATISTIC_PEM_GY_TERMINATIONS_INITIATEDSTATISTIC_PEM_GY_TERMINATIONS_INITIATED_MAXIMUMSTATISTIC_PEM_GY_SESSIONS_TERMINATEDSTATISTIC_PEM_GY_CCR_SENTSTATISTIC_PEM_GY_CCA_RECEIVEDSTATISTIC_PEM_GY_CCR_INITIALS_SENTSTATISTIC_PEM_GY_CCA_INITIALS_RECEIVEDSTATISTIC_PEM_GY_CCR_UPDATES_SENTSTATISTIC_PEM_GY_CCA_UPDATES_RECEIVEDSTATISTIC_PEM_GY_RAR_RECEIVEDSTATISTIC_PEM_GY_RAA_SENTSTATISTIC_PEM_GY_CCR_TERMINATIONS_SENTSTATISTIC_PEM_GY_CCA_TERMINATIONS_RECEIVEDSTATISTIC_PEM_HSL_SESSION_RECORDSSTATISTIC_PEM_HSL_FLOW_START_RECORDSSTATISTIC_PEM_HSL_FLOW_INTERIM_RECORDSSTATISTIC_PEM_HSL_FLOW_STOP_RECORDSSTATISTIC_PEM_RADIUS_ACCOUNTING_STARTSTATISTIC_PEM_RADIUS_ACCOUNTING_STOPSTATISTIC_PEM_RADIUS_ACCOUNTING_INTERIMSTATISTIC_PEM_RADIUS_ACCOUNTING_RETRANSMISSIONSSTATISTIC_PEM_SUBSCRIBER_CONCURRENT_SUBSCRIBERSSTATISTIC_PEM_SUBSCRIBER_CONCURRENT_SUBSCRIBERS_MAXIMUMSTATISTIC_PEM_SUBSCRIBER_TOTAL_SUBSCRIBERSSTATISTIC_PEM_SUBSCRIBER_SUBSCRIBER_LIMIT_EXCEEDEDSTATISTIC_PEM_SUBSCRIBER_NO_RADIUS_INFOSTATISTIC_PEM_SUBSCRIBER_NO_RADIUS_INFO_MAXIMUMSTATISTIC_PEM_SUBSCRIBER_PROVISIONING_PENDINGSTATISTIC_PEM_SUBSCRIBER_PROVISIONING_PENDING_MAXIMUMSTATISTIC_PEM_SUBSCRIBER_NOT_PROVISIONEDSTATISTIC_PEM_SUBSCRIBER_NOT_PROVISIONED_MAXIMUMSTATISTIC_PEM_SUBSCRIBER_FAILED_PROVISIONING_ATTEMPTSSTATISTIC_PEM_SUBSCRIBER_UNKNOWNSTATISTIC_PEM_SUBSCRIBER_UNKNOWN_MAXIMUMSTATISTIC_PEM_SUBSCRIBER_PROVISIONEDSTATISTIC_PEM_SUBSCRIBER_PROVISIONED_MAXIMUMSTATISTIC_PEM_SUBSCRIBER_INACTIVE_SUBSCRIBERS_REMOVEDSTATISTIC_PEM_SUBSCRIBER_MARKED_FOR_DELETIONSTATISTIC_PEM_SUBSCRIBER_MARKED_FOR_DELETION_MAXIMUMSTATISTIC_SMTPS_CONNECTIONS_ACCEPTEDSTATISTIC_SMTPS_CONNECTIONS_CURRENTSTATISTIC_SMTPS_CONNECTIONS_MAXIMUMSTATISTIC_SMTPS_BLOCKED_COMMANDSSTATISTIC_DNS_EXPRESS_QUERIESSTATISTIC_DNS_EXPRESS_RESPONSESSTATISTIC_DNS_EXPRESS_XFR_MESSAGESSTATISTIC_DNS_EXPRESS_NOTIFIES_RECEIVEDSTATISTIC_DNS_XFR_NOTIFIES_SENTSTATISTIC_DNS_XFR_NOTIFIES_FAILURESSTATISTIC_DNS_AXFR_QUERIESSTATISTIC_DNS_IXFR_QUERIESSTATISTIC_DNS_XFR_QUERIES_ACL_FAILURESSTATISTIC_DNS_TSIG_MISSINGSTATISTIC_DNS_TSIG_NOT_REQUIREDSTATISTIC_DNS_TSIG_VERIFIEDSTATISTIC_DNS_TSIG_BAD_KEYSTATISTIC_DNS_TSIG_BAD_SIGSTATISTIC_DNS_TSIG_BAD_TIMESTATISTIC_DNSSEC_ZONE_NSEC3_RRSTATISTIC_DNSSEC_ZONE_NSEC3_NODATASTATISTIC_DNSSEC_ZONE_NSEC3_NXDOMAINSTATISTIC_DNSSEC_ZONE_NSEC3_REFERRALSTATISTIC_DNSSEC_ZONE_NSEC3_RESALTSTATISTIC_DNSSEC_ZONE_SIGNED_RESPONSESSTATISTIC_DNSSEC_ZONE_DNSKEY_QUERIESSTATISTIC_DNSSEC_ZONE_NSEC3PARAM_QUERIESSTATISTIC_DNSSEC_ZONE_DS_QUERIESSTATISTIC_DNSSEC_ZONE_SIG_CRYPTO_FAILEDSTATISTIC_DNSSEC_ZONE_SIG_SUCCESSSTATISTIC_DNSSEC_ZONE_SIG_FAILEDSTATISTIC_DNSSEC_ZONE_SIG_RRSET_FAILEDSTATISTIC_DNSSEC_ZONE_CONNECT_FLOW_FAILEDSTATISTIC_DNSSEC_ZONE_TO_WIRE_FAILEDSTATISTIC_DNSSEC_ZONE_XFR_STARTEDSTATISTIC_DNSSEC_ZONE_XFR_COMPLETEDSTATISTIC_DNSSEC_ZONE_XFR_MSGSSTATISTIC_DNSSEC_ZONE_XFR_MASTER_MSGSSTATISTIC_DNSSEC_ZONE_XFR_AXFR_QUERIESSTATISTIC_DNSSEC_ZONE_XFR_IXFR_QUERIESSTATISTIC_DNSSEC_ZONE_XFR_RESPONSE_AVERAGE_SIZESTATISTIC_DNSSEC_ZONE_XFR_EXTERNAL_SERIALSTATISTIC_DNSSEC_ZONE_XFR_MASTER_SERIALSTATISTIC_DNS_SERVER_XFR_QUERIESSTATISTIC_DNS_SERVER_XFR_RESPONSESSTATISTIC_DNS_SERVER_XFR_NOTIFIESSTATISTIC_DNS_SERVER_XFR_NOTIFY_FAILURESSTATISTIC_DNS_CACHE_RESOLVER_FORWARD_QUERIESSTATISTIC_DNS_CACHE_RESOLVER_FORWARD_RESPONSESSTATISTIC_HTTP_PASSTHROUGH_IRULESSTATISTIC_HTTP_PASSTHROUGH_CONNECTSSTATISTIC_HTTP_PASSTHROUGH_WEB_SOCKETSSTATISTIC_HTTP_PASSTHROUGH_OVERSIZE_CLIENT_HEADERSSTATISTIC_HTTP_PASSTHROUGH_EXCESS_CLIENT_HEADERSSTATISTIC_HTTP_PASSTHROUGH_OVERSIZE_SERVER_HEADERSSTATISTIC_HTTP_PASSTHROUGH_EXCESS_SERVER_HEADERSSTATISTIC_HTTP_PASSTHROUGH_UNKNOWN_METHODSSTATISTIC_HTTP_PASSTHROUGH_PIPELINESSTATISTIC_SSL_CIPHER_ECDH_RSA_KEY_EXCHANGESTATISTIC_SSL_CIPHER_ECDHE_ECDSA_KEY_EXCHANGESTATISTIC_SSL_CIPHER_ECDH_ECDSA_KEY_EXCHANGESTATISTIC_SSL_CIPHER_DHE_DSS_KEY_EXCHANGESTATISTIC_SSL_CIPHER_AES_GCM_BULKSTATISTIC_FIX_CURRENT_CONNECTIONSSTATISTIC_FIX_NUMBER_OF_MESSAGESSTATISTIC_FIX_TOTAL_SIZESTATISTIC_FIX_NUMBER_OF_MESSAGES_LAST_INTERVALSTATISTIC_SSL_COMMON_FWDP_DESTINATION_IP_BYPASSESSTATISTIC_SSL_COMMON_FWDP_SOURCE_IP_BYPASSESSTATISTIC_SSL_COMMON_FWDP_HOSTNAME_BYPASSESSTATISTIC_LSN_POOL_TOTAL_END_POINTSSTATISTIC_DNS_REQUESTS_GTM_REWRITESSTATISTIC_CLIENTLDAP_CONNECTIONS_ACCEPTEDSTATISTIC_CLIENTLDAP_CONNECTIONS_CURRENTSTATISTIC_CLIENTLDAP_CONNECTIONS_MAXIMUMSTATISTIC_CLIENTLDAP_BLOCKED_COMMANDSSTATISTIC_SERVERLDAP_CONNECTIONS_CONNECTEDSTATISTIC_SERVERLDAP_CONNECTIONS_CURRENTSTATISTIC_SERVERLDAP_CONNECTIONS_MAXIMUMSTATISTIC_SERVERLDAP_CONNECTIONS_FAILEDSTATISTIC_SSL_COMMON_RENEGOTIATIONS_REJECTEDSTATISTIC_FASTL4_LATE_BINDING_SUCCESSFUL_CONNECTIONSSTATISTIC_FASTL4_LATE_BINDING_TIMED_OUT_CONNECTIONSSTATISTIC_SSL_COMMON_OCSP_STAPLING_CONNECTIONSSTATISTIC_SSL_COMMON_OCSP_STAPLING_RESPONSE_STATUS_ERRORSSTATISTIC_SSL_COMMON_OCSP_STAPLING_RESPONSE_VALIDATION_ERRORSSTATISTIC_SSL_COMMON_OCSP_STAPLING_CERTIFICATE_STATUS_ERRORSSTATISTIC_SSL_COMMON_OCSP_STAPLING_OCSP_CONNECTION_HTTP_ERRORSSTATISTIC_SSL_COMMON_OCSP_STAPLING_OCSP_CONNECTION_TIMEOUTSSTATISTIC_SSL_COMMON_OCSP_STAPLING_OCSP_CONNECTION_FAILURESSTATISTIC_LSN_POOL_PBA_ACTIVE_PORT_BLOCKSSTATISTIC_LSN_POOL_PBA_ACTIVE_CLIENTS_REACHED_LIMITSTATISTIC_LSN_POOL_PBA_ACTIVE_ZOMBIE_PORT_BLOCKSSTATISTIC_LSN_POOL_PBA_TOTAL_CLIENTS_REACHED_LIMITSTATISTIC_LSN_POOL_PBA_TOTAL_PORT_BLOCK_ALLOCATIONSSTATISTIC_LSN_POOL_PBA_TOTAL_PORT_BLOCK_ALLOCATION_FAILURESSTATISTIC_LSN_POOL_PBA_TOTAL_PORT_BLOCK_DEALLOCATIONSSTATISTIC_LSN_POOL_PBA_TOTAL_ZOMBIE_PORT_BLOCKS_CREATEDSTATISTIC_LSN_POOL_PBA_TOTAL_ZOMBIE_PORT_BLOCKS_DELETEDSTATISTIC_LSN_POOL_PBA_TOTAL_ZOMBIE_PORT_BLOCK_CONNECTIONS_KILLEDSTATISTIC_DNS_RAPID_RESPONSE_QUERIESSTATISTIC_DNS_RAPID_RESPONSE_RESPONSESSTATISTIC_DNS_RAPID_RESPONSE_ALLOWEDSTATISTIC_DNS_RAPID_RESPONSE_DROPSSTATISTIC_DNS_RAPID_RESPONSE_TRUNCATEDSTATISTIC_DNS_RAPID_RESPONSE_NXDOMAINSTATISTIC_DNS_RAPID_RESPONSE_NOERRORSTATISTIC_DNS_RAPID_RESPONSE_REFUSEDSTATISTIC_SIPROUTER_INSTATISTIC_SIPROUTER_IN_RESUBMITTED_FOR_RETRYSTATISTIC_SIPROUTER_OUTSTATISTIC_SIPROUTER_FAILED_AND_NOT_DELIVERABLE_TO_ORIGINATORSTATISTIC_SIPROUTER_ROUTEDSTATISTIC_SIPROUTER_UNROUTABLESTATISTIC_SIPROUTER_DROPPEDSTATISTIC_SIPROUTER_FAILED_DUE_TO_A_FULL_QUEUESTATISTIC_SIPROUTER_FAILED_DUE_TO_CONNECTION_DROPPEDSTATISTIC_SIPROUTER_FAILED_DUE_TO_CONNECTION_CLOSEDSTATISTIC_SIPROUTER_FAILED_DUE_TO_AN_INTERNAL_ERRORSTATISTIC_SIPROUTER_FAILED_DUE_TO_PERSIST_KEY_IN_USESTATISTIC_SIPSESSION_REQUESTSSTATISTIC_SIPSESSION_RESPONSESSTATISTIC_SIPSESSION_BADMSGSSTATISTIC_SIPSESSION_DROPSSTATISTIC_SIPSESSION_INVITESTATISTIC_SIPSESSION_ACKSTATISTIC_SIPSESSION_OPTIONSSTATISTIC_SIPSESSION_BYESTATISTIC_SIPSESSION_CANCELSTATISTIC_SIPSESSION_REGISTER_REQSTATISTIC_SIPSESSION_PUBLISHSTATISTIC_SIPSESSION_NOTIFYSTATISTIC_SIPSESSION_SUBSCRIBESTATISTIC_SIPSESSION_MESSAGESTATISTIC_SIPSESSION_PRACKSTATISTIC_SIPSESSION_OTHERSTATISTIC_SIPSESSION_PROVISIONALSTATISTIC_SIPSESSION_SUCCESSFULSTATISTIC_SIPSESSION_REDIRECTIONSTATISTIC_SIPSESSION_CLIENT_FAILURESSTATISTIC_SIPSESSION_SERVER_FAILURESSTATISTIC_SIPSESSION_GLOBAL_FAILURESSTATISTIC_SIPSESSION_MESSAGE_LIMIT_EXCEEDEDSTATISTIC_SIPSESSION_LOOP_DETECTIONSTATISTIC_SIPSESSION_MAX_FORWARDS_CHECKSTATISTIC_SIPSESSION_BAD_REQUESTSTATISTIC_SIPSESSION_NOT_FOUNDSTATISTIC_SIPSESSION_REQUEST_TIMEOUTSTATISTIC_SIPSESSION_TRANSACTION_DOES_NOT_EXISTSTATISTIC_SIPSESSION_LOOP_DETECTEDSTATISTIC_SIPSESSION_TOO_MANY_HOPSSTATISTIC_SIPSESSION_SERVER_INTERNAL_ERRORSTATISTIC_SIPSESSION_NOT_ACCEPTABLESTATISTIC_SIPSESSION_TEMPORARILY_UNAVAILABLESTATISTIC_SIPSESSION_SERVICE_UNAVAILABLESTATISTIC_SIPSESSION_VERSION_NOT_SUPPORTEDSTATISTIC_SIPSESSION_UNKNOWN_PARSE_ERRORSTATISTIC_SIPSESSION_CONTENT_LENGTH_MISMATCHSTATISTIC_SIPSESSION_EXTRANEOUS_HEADER_FIELDSTATISTIC_SIPSESSION_INVALID_CONTENT_LENGTHSTATISTIC_SIPSESSION_REQ_FIELD_OVERLARGE_VALUESSTATISTIC_SIPSESSION_RESP_FIELD_OVERLARGE_VALUESSTATISTIC_SIPSESSION_UNTERMINATED_QUOTED_STRINGSTATISTIC_SIPSESSION_MALFORMED_REQUEST_URISTATISTIC_SIPSESSION_UNKNOWN_PROTOCOL_VERSIONSTATISTIC_SIPSESSION_CSEQ_METHOD_MISMATCHSTATISTIC_CRYPTO_CLIENT_BYTES_INSTATISTIC_CRYPTO_CLIENT_BYTES_OUTSTATISTIC_CRYPTO_CLIENT_PACKETS_INSTATISTIC_CRYPTO_CLIENT_PACKETS_OUTSTATISTIC_CRYPTO_SERVER_BYTES_INSTATISTIC_CRYPTO_SERVER_BYTES_OUTSTATISTIC_CRYPTO_SERVER_PACKETS_INSTATISTIC_CRYPTO_SERVER_PACKETS_OUTSTATISTIC_EVICTION_POLICY_EVICTEDSTATISTIC_CONNECTION_FLOW_MISSSTATISTIC_SYNCOOKIE_STATS_SYNCOOKIESSTATISTIC_SYNCOOKIE_STATS_ACCEPTSSTATISTIC_SYNCOOKIE_STATS_REJECTSSTATISTIC_SYNCOOKIE_STATS_HW_SYNCOOKIESSTATISTIC_SYNCOOKIE_STATS_HW_ACCEPTSSTATISTIC_SYNCOOKIE_STATS_WL_HITSSTATISTIC_SYNCOOKIE_STATS_WL_ACCEPTSSTATISTIC_SYNCOOKIE_STATS_WL_REJECTSSTATISTIC_FW_RULE_LAST_HIT_TIMESTATISTIC_SCTP_ASSOCIATIONSSTATISTIC_SCTP_CLOSINGSTATISTIC_SCTP_CONFIRMED_ADDRESSESSTATISTIC_SCTP_UNCONFIRMED_ADDRESSESSTATISTIC_SCTP_ACTIVE_PATHSSTATISTIC_SCTP_INACTIVE_PATHSSTATISTIC_CLIENTLDAP_CONNECTIONS_TLSSTATISTIC_SERVERLDAP_CONNECTIONS_TLSSTATISTIC_SSL_COMMON_AGGREGATE_RENEGOTIATIONS_REJECTEDSTATISTIC_FTP_FTPS_SESSIONSSTATISTIC_TFTP_READ_REQUESTSSTATISTIC_TFTP_WRITE_REQUESTSSTATISTIC_FTP_PASSTHRU_TRANSITIONSSTATISTIC_TFTP_DISCARDED_REQUESTSSTATISTIC_DNS_HW_INSPECTEDSTATISTIC_DNS_HW_MALFORMEDSTATISTIC_DNS_HW_CACHE_LOOKUPSSTATISTIC_DNS_HW_CACHE_RESPONSESSTATISTIC_VCMP_RED_PACKETS_INSTATISTIC_SSL_COMMON_SESSION_MIRRORING_SUCCESSSTATISTIC_SSL_COMMON_SESSION_MIRRORING_FAILURESTATISTIC_SSL_COMMON_CONNECTION_MIRRORING_HA_PEER_READYSTATISTIC_SSL_COMMON_CONNECTION_MIRRORING_HA_CTX_SENTSTATISTIC_SSL_COMMON_CONNECTION_MIRRORING_HA_CTX_RECVSTATISTIC_SSL_COMMON_CONNECTION_MIRRORING_HA_HS_SUCCESSSTATISTIC_SSL_COMMON_CONNECTION_MIRRORING_HA_FAILURESTATISTIC_SSL_COMMON_CONNECTION_MIRRORING_HA_TIMEOUTSTATISTIC_SSL_COMMON_DTLS_TX_PUSHBACKSSTATISTIC_SSL_CIPHER_CAMELLIA_BULKSTATISTIC_DNS_NAPTR_REQSSTATISTIC_IP_MULTICAST_TRANSMITTED_PACKETSSTATISTIC_IP_MULTICAST_RECEIVED_PACKETSSTATISTIC_IP_MULTICAST_DROPPED_RPFSTATISTIC_IP_MULTICAST_DROPPED_WRONG_INTERFACESTATISTIC_IP_MULTICAST_DROPPED_NO_ROUTESTATISTIC_IP_MULTICAST_DROPPED_ROUTE_LOOKUP_TIMEOUTSTATISTIC_IP_MULTICAST_DROPPED_MAX_PENDING_PACKETSSTATISTIC_IP_MULTICAST_DROPPED_MAX_PENDING_ROUTESSTATISTIC_IPV6_MULTICAST_TRANSMITTED_PACKETSSTATISTIC_IPV6_MULTICAST_RECEIVED_PACKETSSTATISTIC_IPV6_MULTICAST_DROPPED_RPFSTATISTIC_IPV6_MULTICAST_DROPPED_WRONG_INTERFACESTATISTIC_IPV6_MULTICAST_DROPPED_NO_ROUTESTATISTIC_IPV6_MULTICAST_DROPPED_ROUTE_LOOKUP_TIMEOUTSTATISTIC_IPV6_MULTICAST_DROPPED_MAX_PENDING_PACKETSSTATISTIC_IPV6_MULTICAST_DROPPED_MAX_PENDING_ROUTESSTATISTIC_SSL_COMMON_ACTIVE_HANDSHAKES_REJECTEDSTATISTIC_SSL_COMMON_CURRENT_ACTIVE_HANDSHAKESSTATISTIC_SSL_DYNAMIC_RECORD_1KSTATISTIC_SSL_DYNAMIC_RECORD_2KSTATISTIC_SSL_DYNAMIC_RECORD_3KSTATISTIC_SSL_DYNAMIC_RECORD_4KSTATISTIC_SSL_DYNAMIC_RECORD_5KSTATISTIC_SSL_DYNAMIC_RECORD_6KSTATISTIC_SSL_DYNAMIC_RECORD_7KSTATISTIC_SSL_DYNAMIC_RECORD_8KSTATISTIC_SSL_DYNAMIC_RECORD_9KSTATISTIC_SSL_DYNAMIC_RECORD_10KSTATISTIC_SSL_DYNAMIC_RECORD_11KSTATISTIC_SSL_DYNAMIC_RECORD_12KSTATISTIC_SSL_DYNAMIC_RECORD_13KSTATISTIC_SSL_DYNAMIC_RECORD_14KSTATISTIC_SSL_DYNAMIC_RECORD_15KSTATISTIC_SSL_DYNAMIC_RECORD_16KSTATISTIC_SIPROUTER_STANDBY_DROPPEDSTATISTIC_SIPSESSION_REQUEST_ENTITY_TOO_LARGESTATISTIC_SIPSESSION_REQUEST_ENTITY_TOO_LARGE_413_SENTSTATISTIC_SIPSESSION_UNSUPPORTED_URI_SCHEMESTATISTIC_SIPSESSION_UNSUPPORTED_URI_SCHEME_416_SENTSTATISTIC_SIPSESSION_TEMPORARILY_UNAVAILABLE_480_SENTSTATISTIC_SIPSESSION_LOOP_DETECTED_482_SENTSTATISTIC_SIPSESSION_TOO_MANY_HOPS_483_SENTSTATISTIC_SIPSESSION_ADDRESS_INCOMPLETESTATISTIC_SIPSESSION_ADDRESS_INCOMPLETE_484_SENTSTATISTIC_SIPSESSION_NOT_ACCEPTABLE_HERESTATISTIC_SIPSESSION_NOT_ACCEPTABLE_HERE_488_SENTSTATISTIC_SIPSESSION_SERVER_INTERNAL_ERROR_500_SENTSTATISTIC_SIPSESSION_NOT_IMPLEMENTEDSTATISTIC_SIPSESSION_NOT_IMPLEMENTED_501_SENTSTATISTIC_SIPSESSION_SERVICE_UNAVAILABLE_503_SENTSTATISTIC_SIPSESSION_VERSION_NOT_SUPPORTED_505_SENTSTATISTIC_SIPSESSION_BADMSGS_REQSTATISTIC_SIPSESSION_DROPS_REQSTATISTIC_SIPSESSION_INFOSTATISTIC_SIPSESSION_REFERSTATISTIC_SIPSESSION_UPDATE_REQSTATISTIC_SIPSESSION_BAD_REQUEST_400_SENTSTATISTIC_SIPSESSION_NOT_FOUND_404_SENTTCP_CONGESTION_CONTROL_NONETCP_CONGESTION_CONTROL_RENOTCP_CONGESTION_CONTROL_NEWRENOTCP_CONGESTION_CONTROL_SCALABLETCP_CONGESTION_CONTROL_HIGHSPEEDTCP_CONGESTION_CONTROL_VEGASTCP_CONGESTION_CONTROL_ILLINOISTCP_CONGESTION_CONTROL_WOODSIDETCP_CONGESTION_CONTROL_CHDTCP_CONGESTION_CONTROL_CDGTCP_CONGESTION_CONTROL_CUBICTCP_CONGESTION_CONTROL_WESTWOOD
Gets a list of all TCP profiles.
Creates the specified TCP profiles.
Deletes the specified TCP profiles.
Deletes all TCP profiles.
Determines whether the specified TCP profiles are base profiles.
A base profile sits at the base of the profile's inheritance tree,
supplying the defaults for every profile derived from it. (See
also is_system_profile).
Determines whether the specified TCP profiles are system profiles.
A system profile is a profile pre-configured on the system, ready
for use. Non-system profiles are profiles created or modified by a
user. Note that if a system profile is modified, it is no longer
considered a system profile. (See also is_base_profile).
Sets the names of the default profiles from which the specified profiles will derive
default values for its attributes.
Gets the names of the default profiles from which the specified profiles will derive
default values for its attributes.
Sets the reset on timeout states for the specified TCP profiles.
If true and a TCP connection exceeds its idle timeout, send a reset in addition
to deleting the connection.
Gets the reset on timeout states for the specified TCP profiles.
If true and a TCP connection exceeds its idle timeout, send a reset in addition
to deleting the connection.
Sets the states that if true, recycle the connection when SYN is received
in TIME-WAIT state.
Gets the states that if true, recycle the connection when SYN is received
in TIME-WAIT state.
Sets the states that if true, enabled delayed ACK to allow coalescing of
multiple ACK responses.
Gets the states that if true, enabled delayed ACK to allow coalescing of
multiple ACK responses.
Sets the states that if true, enable proxying of maximum segment size.
Gets the states that if true, enable proxying of maximum segment size.
Sets the states that if true, enable proxying of an option (e.g. time-stamps)
to the server only if it was negotiated with the client.
Gets the states that if true, enable proxying of an option (e.g. time-stamps)
to the server only if it was negotiated with the client.
Sets the states that if true, defer allocation of connection chain context until
payload from the client has been seen.
Gets the states that if true, defer allocation of connection chain context until
payload from the client has been seen.
Sets the states that if true, enable support for RFC2018 Selective Acknowledgement.
Gets the states that if true, enable support for RFC2018 Selective Acknowledgement.
Sets the states that if true, enable support for RFC2883 Duplicate Selective Acknowledgement.
Gets the states that if true, enable support for RFC2883 Duplicate Selective Acknowledgement.
Sets the states that if true, enable support for Selective Negative Acknowledgement.
Gets the states that if true, enable support for Selective Negative Acknowledgement.
Sets the states that if true, enable support for RFC3168 Extended Congestion Notification (ECN).
Gets the states that if true, enable support for RFC3168 Extended Congestion Notification (ECN).
Sets the states that if true, enable support for RFC3042 Limited Transmit Recovery.
Gets the states that if true, enable support for RFC3042 Limited Transmit Recovery.
Sets the state that, if enabled, activates support for RFC5827 Early Retransmit.
TCP early retransmit avoids timeouts when single packets are lost from
small bursts of data that would not trigger Fast Recovery.
Gets the state that, if enabled, activates support for RFC5827 Early Retransmit.
Sets the state that, if enabled, activates support for Tail Loss Probe.
Tail Loss Probe reduces the number of retransmission timeouts when
the TCP segments are lost from the tail of a transaction or a window of
data/ACKs are lost.
Gets the state that, if enabled, activates support for Tail Loss Probe.
This method has been deprecated due to the change in TCP rfc1323 option.
Window scaling option is now determined automatically based on the send
buffer/receive window used for the connection. Please use
set_rfc1323_timestamps_state.
Sets the states that if true, enable support for RFC1323 timestamps and
window scaling (high performance TCP extensions).
This method has been deprecated due to the change in TCP rfc1323 option.
Window scaling option is now determined automatically based on the send
buffer/receive window used for the connection. Please use
get_rfc1323_timestamps_state.
Gets the states that if true, enable support for RFC1323 timestamps and
window scaling (high performance TCP extensions).
Sets the states that if true, enable support for RFC1323 timestamps
(high performance TCP extension).
Gets the states that if true, enable support for RFC1323 timestamps
(high performance TCP extension).
Sets the states that if true, enable support for RFC3390 TCP slow-start.
BIG-IP uses RFC3390 TCP slow-start rather than traditional congestion avoidance mechanisms.
Gets the states that if true, enable support for RFC3390 TCP slow-start.
BIG-IP uses RFC3390 TCP slow-start rather than traditional congestion avoidance mechanisms.
Sets the states that if true, attempt to calculate the optimal bandwidth
to use to the peer based on throughput and round-trip time, and don't exceed it.
This feature was never fully implemented. It is now deprecated.
Gets the states that if true, attempt to calculate the optimal bandwidth
to use to the peer based on throughput and round-trip time, and don't exceed it.
This feature was never fully implemented. It is now deprecated.
This method is deprecated and new applications should use the set_nagle_algorithm_mode
method instead.
Sets the states that if true, delay sending data that is less than MSS in size unless
all prior data has been ACKed. This leads to less in-flight small-data, and less chance
for drops, but can have poor effects for interactive protocols such as telnet
over high latency links.
This method is deprecated and new applications should use the get_nagle_algorithm_mode
mode instead.
Gets the states that if true, delay sending data that is less than MSS in size unless
all prior data has been ACKed. This leads to less in-flight small-data, and less chance
for drops, but can have poor effects for interactive protocols such as telnet
over high latency links.
Sets the mode for the Nagle algorithm. If the mode is set to TCP_MODE_ENABLED,
sending data is delayed if it is less than MSS in size unless all prior data
has been ACKed. This leads to fewer small packets sent and a smaller chance
of dropped packets. However, this can have poor effects for interactive protocols
such as telnet over high latency links. If the mode is set to TCP_MODE_DISABLED,
sending data that is less than MSS in size is not delayed. If mode is set to
TCP_MODE_AUTO, the use of Nagle's algorithm is decided based on the network
characteristics such as the use of delayed ACKs.
Gets the mode for the Nagle algorithm.
Sets the states that if true, count the number of bytes acked rather than
the number of returning ACKs from the peer when in the linear congestion-window
expansion phase of a TCP connection. This algorithm and its benefits are
described in RFC3465 (Appropriate Byte Counting).
Gets the states that if true, count the number of bytes acked rather than
the number of returning ACKs from the peer when in the linear congestion-window
expansion phase of a TCP connection. This algorithm and its benefits are
described in RFC3465 (Appropriate Byte Counting).
Sets the states that if true, data-bearing in-order TCP segments will
elicit immediate ACKs from us if they have the PUSH flag set, regardless
of the setting of the delayed-ack profile option.
Gets the states that if true, data-bearing in-order TCP segments will
elicit immediate ACKs from us if they have the PUSH flag set, regardless
of the setting of the delayed-ack profile option.
Sets the states that if true, the system must not respond
to the client's SYN with a SYN-ACK until it receives a
SYN-ACK from the server, indicating that the port is open.
Gets the states that if true, the system must not respond
to the client's SYN with a SYN-ACK until it receives a
SYN-ACK from the server, indicating that the port is open.
Sets the threshold of packets lost per million at which the
system should perform congestion control. Measured in
packets per million. Valid values are from 0 to 1000000.
Gets the threshold of packets lost per million at which the
system should perform congestion control. Measured in
packets per million. Valid values are from 0 to 1000000.
Sets values indicating the likelihood of performing
congestion control when multiple packets in a row are lost
even if the loss threshold has not been exceeded. Valid
values from 0 to 32. Higher values decrease the likelihood
of performing congestion control.
Gets values indicating the likelihood of performing
congestion control when multiple packets in a row are lost
even if the loss threshold has not been exceeded. Valid
values from 0 to 32. Higher values decrease the likelihood
of performing congestion control.
Sets the value for the number of duplicate ACKs (retransmit threshold) to
start fast recovery. Valid values are from 3 to 255. Higher values
decrease the likelihood of performing fast recovery in a network
with high packet reordering. The default value is 3.
Gets the value for the number of duplicate ACKs (retransmit threshold)
to start fast recovery.
Sets the states that if true, use RFC2385 TCP-MD5 signatures to protect
tcp traffic against intermediate tampering.
Gets the states that if true, use RFC2385 TCP-MD5 signatures to protect
tcp traffic against intermediate tampering.
Sets the states that if true, use the route-metrics cache
in order to jump-start congestion-control parameters. When this
parameter is disabled, the system slow-starts to the peer every time
(assuming, of course, that slow-start is enabled), resulting in a much
more conservative ramp-up in bandwidth utilization. This may be
required in cases where an intermediate device is NATing multiple
distinct clients to the same IP address, yet each of these hosts has
distinctly different bandwidth and jitter parameters. It may also be
required when the link is heavily oversubscribed and dropping packets
due to overdriving.
Gets the states that if true, use the route-metrics cache
in order to jump-start congestion-control parameters. When this
parameter is disabled, the system slow-starts to the peer every time
(assuming, of course, that slow-start is enabled), resulting in a much
more conservative ramp-up in bandwidth utilization. This may be
required in cases where an intermediate device is NATing multiple
distinct clients to the same IP address, yet each of these hosts has
distinctly different bandwidth and jitter parameters. It may also be
required when the link is heavily oversubscribed and dropping packets
due to overdriving.
Sets the timeout for route metrics cache entries for the specified TCP
profiles. TCP stores congestion parameters on a per-client basis at the end of
connections. These parameters are loaded into new connections to that client
for the specified duration.
Gets the expiration for route metrics cache entries for the specified TCP
profiles.
Sets the plaintext passphrase which may be between 1 and 80 characters in length,
and is used in a shared-secret scheme to implement the spoof-prevention
parts of RFC2385.
Gets the plaintext passphrase which may be between 1 and 80 characters in length,
and is used in a shared-secret scheme to implement the spoof-prevention
parts of RFC2385.
Sets the proxy buffer level at which the receive window is opened.
Gets the proxy buffer level at which the receive window is opened.
Sets the proxy buffer level at which the receive window is closed, i.e. not advanced.
Gets the proxy buffer level at which the receive window is closed, i.e. not advanced.
Sets the idle timeout for the specified TCP profiles.
This timeout specifies the number of seconds without
traffic before a connection is eligible for deletion.
Gets the idle timeout for the specified TCP profiles.
This timeout specifies the number of seconds without
traffic before a connection is eligible for deletion.
Sets the time (in milliseconds) in TIME-WAIT state before entering CLOSED state.
Gets the time (in milliseconds) in TIME-WAIT state before entering CLOSED state.
Sets the time (in seconds) to remain in FIN-WAIT-1 or CLOSING state before
giving up. Zero is forever (or until max retransmission of FIN).
Gets the time (in seconds) to remain in FIN-WAIT-1 or CLOSING state before
giving up. Zero is forever (or until max retransmission of FIN).
Sets the time (in seconds) to remain in FIN-WAIT-2 state before
giving up. Zero is forever (or until max retransmission of FIN).
Gets the time (in seconds) to remain in FIN-WAIT-2 state before
giving up. Zero is forever (or until max retransmission of FIN).
Sets the time (in seconds) to remain in LAST-ACK state before
giving up. Zero is forever (or until max retransmission of FIN).
Sets the minimum TCP retransmission timeout in milliseconds. Zero
means using the TCP stack default. This is the minimum amount of
time TCP must wait before assuming a packet is lost.
Gets the minimum TCP retransmission timeout in milliseconds. The
default value is 0 milliseconds, which means using the TCP stack
default.
Gets the time (in seconds) to remain in LAST-ACK state before
giving up. Zero is forever (or until max retransmission of FIN).
Sets the send buffer sizes (in bytes) for the specified profiles.
Gets the send buffer sizes (in bytes) for the specified profiles.
Sets the maximum advertised receive window sizes (in bytes) for the specified profiles.
This value represents the maximum number of bytes to which the receive window can scale.
The default is 32768 bytes.
Gets the maximum advertised receive window sizes (in bytes) for the specified profiles.
Sets the initial congestion window sizes for the specified profiles.
The actual window size is this value multiplied by the MSS
(Maximum Segment Size) for the connection. The default
value is 0, which means to use the values specified
in RFC2414.
Gets the initial congestion window sizes for the specified profiles.
Sets the initial receive window sizes for the specified profiles.
The actual window size is this value multiplied by the MSS
(Maximum Segment Size) for the same connection. The default
value is 0, which means to use the Slow Start value.
Gets the initial receive window sizes for the specified profiles.
Sets the states that if true, enable delay window control
for the specified profiles.
Specifies whether the system uses an estimate of queueing
delay as a measure of congestion, in addition to the normal
loss-based control, to control the amount of data sent.
Gets the states that if true, enable delay window control
for the specified profiles.
Sets the initial SYN RTO base multipliers for the specified profiles.
Specifies the initial RTO (Retransmission TimeOut) base
multiplier for SYN retransmission, in milliseconds. This
value is modified by the exponential backoff table to
select the interval for subsequent retransmissions.
Gets the initial SYN RTO base multipliers for the specified profiles.
Sets the keep-alive intervals (in seconds) for the specified profiles.
Gets the keep-alive intervals (in seconds) for the specified profiles.
Sets the maximum number of retransmission of SYN segments for the specified profiles.
Gets the maximum number of retransmission of SYN segments for the specified profiles.
Sets the maximum number of retransmission of data segments for the specified profiles.
Gets the maximum number of retransmission of data segments for the specified profiles.
Sets the client-side IP TOS values for the specified TCP profiles.
Gets the client-side IP TOS values for the specified TCP profiles.
Sets the client-side link QoS values for the specified TCP profiles.
Gets the client-side link QoS values for the specified TCP profiles.
Sets the TCP congestion control modes for the specified TCP profiles.
Gets the TCP congestion control modes for the specified TCP profiles.
Sets the zero window timeout for the specified TCP profiles.
This timeout specifies the timeout in milliseconds for
terminating a connection with an effective zero length TCP
transmit window. The timeout starts when the peer
advertises a zero length TCP window or when enough data has
been sent to fill the previously advertised window. The
timer is canceled when a non-zero length window is
received.
Gets the zero window timeout for the specified TCP profiles.
Sets the strings indicating which tcp options the system
remembers for connection flows using the specified TCP
profiles.
The options of interest may then be manipulated using
iRules; see TCP::option. The format of each string should
be: "{<option number> <first|last>} {<option number>
<first|last>}", one string like this for each profile. The
keyword "first" means the system records the option the
first time it is seen, while "last" means the system
updates the available value every time it is seen.
Gets the strings indicating which tcp options the system
remembers for connection flows using the specified TCP
profiles.
As the method returns a string format, if handling the
value programatically please ignore parts of the string
that do not follow the format shown in set_tcp_options, to
accomodate system changes.
Sets the states that if true, enable support for RFC6824 TCP Extensions for Multipath Operation with Multiple Addresses.
Gets the states that if true, enable support for RFC6824 TCP Extensions for Multipath Operation with Multiple Addresses.
Sets the state that, if enabled, activates support for TCP Fast Open,
which allows validated clients to deliver data with SYN packets.
Gets the state that, if enabled, activates support for TCP Fast
Open.
Sets the fast open cookie expiration for the specified TCP profiles.
This timeout specifies the time, in seconds, for which a TCP Fast
Open Cookie granted by the BIG-IP remains valid to accept data
delivered with the SYN packet. The origination time is encrypted
in the cookie and checked during cookie validation.
Gets the fast open cookie expiration for the specified TCP profiles.
Sets the description for a set of TCP profiles.
This is an arbitrary field which can be used for any purpose.
Gets the descriptions for a set of TCP profiles.
Resets the statistics for the specified profiles.
Resets the statistics for the specified profiles, for
specified virtual servers.
Gets the statistics for all the profiles.
Gets the statistics for the specified profiles.
Gets the statistics for the specified profiles, by virtual server.
Gets the version information for this interface.
Sets the state that if true, enables hardware SYN cookie support.
This protects against the SYN flood type of Denial Of Service
(DoS) attack. This is available on most hardware platforms,
specifically, those on which PVA10 is present. By default, this
setting is enabled.
Gets the state that if true, enables hardware SYN cookie support.
This protects against the SYN flood type of Denial Of Service
(DoS) attack.
Sets the states that if true, enables rate pacing. This feature
causes the system to pace the egress packets to avoid dropping
packets, allowing for optimum goodput.
Gets the states that if true, enables rate pacing. This feature
causes the system to pace the egress packets to avoid dropping
packets, allowing for optimum goodput.
Sets the maximum rate, in bytes per second, that a flow that
has rate pacing enabled may transmit data. The default value
of 0 indicates no maximum.
Gets the maximum rate, in bytes per second, that a flow that
has rate pacing enabled may transmit data. The default value
of 0 indicates no maximum.
Gets a list of all TCP profiles.
Creates the specified TCP profiles.
Deletes the specified TCP profiles.
Deletes all TCP profiles.
Determines whether the specified TCP profiles are base profiles.
A base profile sits at the base of the profile's inheritance tree,
supplying the defaults for every profile derived from it. (See
also is_system_profile).
Determines whether the specified TCP profiles are system profiles.
A system profile is a profile pre-configured on the system, ready
for use. Non-system profiles are profiles created or modified by a
user. Note that if a system profile is modified, it is no longer
considered a system profile. (See also is_base_profile).
Sets the names of the default profiles from which the specified profiles will derive
default values for its attributes.
Gets the names of the default profiles from which the specified profiles will derive
default values for its attributes.
Sets the reset on timeout states for the specified TCP profiles.
If true and a TCP connection exceeds its idle timeout, send a reset in addition
to deleting the connection.
Gets the reset on timeout states for the specified TCP profiles.
If true and a TCP connection exceeds its idle timeout, send a reset in addition
to deleting the connection.
Sets the states that if true, recycle the connection when SYN is received
in TIME-WAIT state.
Gets the states that if true, recycle the connection when SYN is received
in TIME-WAIT state.
Sets the states that if true, enabled delayed ACK to allow coalescing of
multiple ACK responses.
Gets the states that if true, enabled delayed ACK to allow coalescing of
multiple ACK responses.
Sets the states that if true, enable proxying of maximum segment size.
Gets the states that if true, enable proxying of maximum segment size.
Sets the states that if true, enable proxying of an option (e.g. time-stamps)
to the server only if it was negotiated with the client.
Gets the states that if true, enable proxying of an option (e.g. time-stamps)
to the server only if it was negotiated with the client.
Sets the states that if true, defer allocation of connection chain context until
payload from the client has been seen.
Gets the states that if true, defer allocation of connection chain context until
payload from the client has been seen.
Sets the states that if true, enable support for RFC2018 Selective Acknowledgement.
Gets the states that if true, enable support for RFC2018 Selective Acknowledgement.
Sets the states that if true, enable support for RFC2883 Duplicate Selective Acknowledgement.
Gets the states that if true, enable support for RFC2883 Duplicate Selective Acknowledgement.
Sets the states that if true, enable support for Selective Negative Acknowledgement.
Gets the states that if true, enable support for Selective Negative Acknowledgement.
Sets the states that if true, enable support for RFC3168 Extended Congestion Notification (ECN).
Gets the states that if true, enable support for RFC3168 Extended Congestion Notification (ECN).
Sets the states that if true, enable support for RFC3042 Limited Transmit Recovery.
Gets the states that if true, enable support for RFC3042 Limited Transmit Recovery.
Sets the state that, if enabled, activates support for RFC5827 Early Retransmit.
TCP early retransmit avoids timeouts when single packets are lost from
small bursts of data that would not trigger Fast Recovery.
Gets the state that, if enabled, activates support for RFC5827 Early Retransmit.
Sets the state that, if enabled, activates support for Tail Loss Probe.
Tail Loss Probe reduces the number of retransmission timeouts when
the TCP segments are lost from the tail of a transaction or a window of
data/ACKs are lost.
Gets the state that, if enabled, activates support for Tail Loss Probe.
This method has been deprecated due to the change in TCP rfc1323 option.
Window scaling option is now determined automatically based on the send
buffer/receive window used for the connection. Please use
set_rfc1323_timestamps_state.
Sets the states that if true, enable support for RFC1323 timestamps and
window scaling (high performance TCP extensions).
This method has been deprecated due to the change in TCP rfc1323 option.
Window scaling option is now determined automatically based on the send
buffer/receive window used for the connection. Please use
get_rfc1323_timestamps_state.
Gets the states that if true, enable support for RFC1323 timestamps and
window scaling (high performance TCP extensions).
Sets the states that if true, enable support for RFC1323 timestamps
(high performance TCP extension).
Gets the states that if true, enable support for RFC1323 timestamps
(high performance TCP extension).
Sets the states that if true, enable support for RFC3390 TCP slow-start.
BIG-IP uses RFC3390 TCP slow-start rather than traditional congestion avoidance mechanisms.
Gets the states that if true, enable support for RFC3390 TCP slow-start.
BIG-IP uses RFC3390 TCP slow-start rather than traditional congestion avoidance mechanisms.
Sets the states that if true, attempt to calculate the optimal bandwidth
to use to the peer based on throughput and round-trip time, and don't exceed it.
This feature was never fully implemented. It is now deprecated.
Gets the states that if true, attempt to calculate the optimal bandwidth
to use to the peer based on throughput and round-trip time, and don't exceed it.
This feature was never fully implemented. It is now deprecated.
This method is deprecated and new applications should use the set_nagle_algorithm_mode
method instead.
Sets the states that if true, delay sending data that is less than MSS in size unless
all prior data has been ACKed. This leads to less in-flight small-data, and less chance
for drops, but can have poor effects for interactive protocols such as telnet
over high latency links.
This method is deprecated and new applications should use the get_nagle_algorithm_mode
mode instead.
Gets the states that if true, delay sending data that is less than MSS in size unless
all prior data has been ACKed. This leads to less in-flight small-data, and less chance
for drops, but can have poor effects for interactive protocols such as telnet
over high latency links.
Sets the mode for the Nagle algorithm. If the mode is set to TCP_MODE_ENABLED,
sending data is delayed if it is less than MSS in size unless all prior data
has been ACKed. This leads to fewer small packets sent and a smaller chance
of dropped packets. However, this can have poor effects for interactive protocols
such as telnet over high latency links. If the mode is set to TCP_MODE_DISABLED,
sending data that is less than MSS in size is not delayed. If mode is set to
TCP_MODE_AUTO, the use of Nagle's algorithm is decided based on the network
characteristics such as the use of delayed ACKs.
Gets the mode for the Nagle algorithm.
Sets the states that if true, count the number of bytes acked rather than
the number of returning ACKs from the peer when in the linear congestion-window
expansion phase of a TCP connection. This algorithm and its benefits are
described in RFC3465 (Appropriate Byte Counting).
Gets the states that if true, count the number of bytes acked rather than
the number of returning ACKs from the peer when in the linear congestion-window
expansion phase of a TCP connection. This algorithm and its benefits are
described in RFC3465 (Appropriate Byte Counting).
Sets the states that if true, data-bearing in-order TCP segments will
elicit immediate ACKs from us if they have the PUSH flag set, regardless
of the setting of the delayed-ack profile option.
Gets the states that if true, data-bearing in-order TCP segments will
elicit immediate ACKs from us if they have the PUSH flag set, regardless
of the setting of the delayed-ack profile option.
Sets the states that if true, the system must not respond
to the client's SYN with a SYN-ACK until it receives a
SYN-ACK from the server, indicating that the port is open.
Gets the states that if true, the system must not respond
to the client's SYN with a SYN-ACK until it receives a
SYN-ACK from the server, indicating that the port is open.
Sets the threshold of packets lost per million at which the
system should perform congestion control. Measured in
packets per million. Valid values are from 0 to 1000000.
Gets the threshold of packets lost per million at which the
system should perform congestion control. Measured in
packets per million. Valid values are from 0 to 1000000.
Sets values indicating the likelihood of performing
congestion control when multiple packets in a row are lost
even if the loss threshold has not been exceeded. Valid
values from 0 to 32. Higher values decrease the likelihood
of performing congestion control.
Gets values indicating the likelihood of performing
congestion control when multiple packets in a row are lost
even if the loss threshold has not been exceeded. Valid
values from 0 to 32. Higher values decrease the likelihood
of performing congestion control.
Sets the value for the number of duplicate ACKs (retransmit threshold) to
start fast recovery. Valid values are from 3 to 255. Higher values
decrease the likelihood of performing fast recovery in a network
with high packet reordering. The default value is 3.
Gets the value for the number of duplicate ACKs (retransmit threshold)
to start fast recovery.
Sets the states that if true, use RFC2385 TCP-MD5 signatures to protect
tcp traffic against intermediate tampering.
Gets the states that if true, use RFC2385 TCP-MD5 signatures to protect
tcp traffic against intermediate tampering.
Sets the states that if true, use the route-metrics cache
in order to jump-start congestion-control parameters. When this
parameter is disabled, the system slow-starts to the peer every time
(assuming, of course, that slow-start is enabled), resulting in a much
more conservative ramp-up in bandwidth utilization. This may be
required in cases where an intermediate device is NATing multiple
distinct clients to the same IP address, yet each of these hosts has
distinctly different bandwidth and jitter parameters. It may also be
required when the link is heavily oversubscribed and dropping packets
due to overdriving.
Gets the states that if true, use the route-metrics cache
in order to jump-start congestion-control parameters. When this
parameter is disabled, the system slow-starts to the peer every time
(assuming, of course, that slow-start is enabled), resulting in a much
more conservative ramp-up in bandwidth utilization. This may be
required in cases where an intermediate device is NATing multiple
distinct clients to the same IP address, yet each of these hosts has
distinctly different bandwidth and jitter parameters. It may also be
required when the link is heavily oversubscribed and dropping packets
due to overdriving.
Sets the timeout for route metrics cache entries for the specified TCP
profiles. TCP stores congestion parameters on a per-client basis at the end of
connections. These parameters are loaded into new connections to that client
for the specified duration.
Gets the expiration for route metrics cache entries for the specified TCP
profiles.
Sets the plaintext passphrase which may be between 1 and 80 characters in length,
and is used in a shared-secret scheme to implement the spoof-prevention
parts of RFC2385.
Gets the plaintext passphrase which may be between 1 and 80 characters in length,
and is used in a shared-secret scheme to implement the spoof-prevention
parts of RFC2385.
Sets the proxy buffer level at which the receive window is opened.
Gets the proxy buffer level at which the receive window is opened.
Sets the proxy buffer level at which the receive window is closed, i.e. not advanced.
Gets the proxy buffer level at which the receive window is closed, i.e. not advanced.
Sets the idle timeout for the specified TCP profiles.
This timeout specifies the number of seconds without
traffic before a connection is eligible for deletion.
Gets the idle timeout for the specified TCP profiles.
This timeout specifies the number of seconds without
traffic before a connection is eligible for deletion.
Sets the time (in milliseconds) in TIME-WAIT state before entering CLOSED state.
Gets the time (in milliseconds) in TIME-WAIT state before entering CLOSED state.
Sets the time (in seconds) to remain in FIN-WAIT-1 or CLOSING state before
giving up. Zero is forever (or until max retransmission of FIN).
Gets the time (in seconds) to remain in FIN-WAIT-1 or CLOSING state before
giving up. Zero is forever (or until max retransmission of FIN).
Sets the time (in seconds) to remain in FIN-WAIT-2 state before
giving up. Zero is forever (or until max retransmission of FIN).
Gets the time (in seconds) to remain in FIN-WAIT-2 state before
giving up. Zero is forever (or until max retransmission of FIN).
Sets the time (in seconds) to remain in LAST-ACK state before
giving up. Zero is forever (or until max retransmission of FIN).
Sets the minimum TCP retransmission timeout in milliseconds. Zero
means using the TCP stack default. This is the minimum amount of
time TCP must wait before assuming a packet is lost.
Gets the minimum TCP retransmission timeout in milliseconds. The
default value is 0 milliseconds, which means using the TCP stack
default.
Gets the time (in seconds) to remain in LAST-ACK state before
giving up. Zero is forever (or until max retransmission of FIN).
Sets the send buffer sizes (in bytes) for the specified profiles.
Gets the send buffer sizes (in bytes) for the specified profiles.
Sets the maximum advertised receive window sizes (in bytes) for the specified profiles.
This value represents the maximum number of bytes to which the receive window can scale.
The default is 32768 bytes.
Gets the maximum advertised receive window sizes (in bytes) for the specified profiles.
Sets the initial congestion window sizes for the specified profiles.
The actual window size is this value multiplied by the MSS
(Maximum Segment Size) for the connection. The default
value is 0, which means to use the values specified
in RFC2414.
Gets the initial congestion window sizes for the specified profiles.
Sets the initial receive window sizes for the specified profiles.
The actual window size is this value multiplied by the MSS
(Maximum Segment Size) for the same connection. The default
value is 0, which means to use the Slow Start value.
Gets the initial receive window sizes for the specified profiles.
Sets the states that if true, enable delay window control
for the specified profiles.
Specifies whether the system uses an estimate of queueing
delay as a measure of congestion, in addition to the normal
loss-based control, to control the amount of data sent.
Gets the states that if true, enable delay window control
for the specified profiles.
Sets the initial SYN RTO base multipliers for the specified profiles.
Specifies the initial RTO (Retransmission TimeOut) base
multiplier for SYN retransmission, in milliseconds. This
value is modified by the exponential backoff table to
select the interval for subsequent retransmissions.
Gets the initial SYN RTO base multipliers for the specified profiles.
Sets the keep-alive intervals (in seconds) for the specified profiles.
Gets the keep-alive intervals (in seconds) for the specified profiles.
Sets the maximum number of retransmission of SYN segments for the specified profiles.
Gets the maximum number of retransmission of SYN segments for the specified profiles.
Sets the maximum number of retransmission of data segments for the specified profiles.
Gets the maximum number of retransmission of data segments for the specified profiles.
Sets the client-side IP TOS values for the specified TCP profiles.
Gets the client-side IP TOS values for the specified TCP profiles.
Sets the client-side link QoS values for the specified TCP profiles.
Gets the client-side link QoS values for the specified TCP profiles.
Sets the TCP congestion control modes for the specified TCP profiles.
Gets the TCP congestion control modes for the specified TCP profiles.
Sets the zero window timeout for the specified TCP profiles.
This timeout specifies the timeout in milliseconds for
terminating a connection with an effective zero length TCP
transmit window. The timeout starts when the peer
advertises a zero length TCP window or when enough data has
been sent to fill the previously advertised window. The
timer is canceled when a non-zero length window is
received.
Gets the zero window timeout for the specified TCP profiles.
Sets the strings indicating which tcp options the system
remembers for connection flows using the specified TCP
profiles.
The options of interest may then be manipulated using
iRules; see TCP::option. The format of each string should
be: "{<option number> <first|last>} {<option number>
<first|last>}", one string like this for each profile. The
keyword "first" means the system records the option the
first time it is seen, while "last" means the system
updates the available value every time it is seen.
Gets the strings indicating which tcp options the system
remembers for connection flows using the specified TCP
profiles.
As the method returns a string format, if handling the
value programatically please ignore parts of the string
that do not follow the format shown in set_tcp_options, to
accomodate system changes.
Sets the states that if true, enable support for RFC6824 TCP Extensions for Multipath Operation with Multiple Addresses.
Gets the states that if true, enable support for RFC6824 TCP Extensions for Multipath Operation with Multiple Addresses.
Sets the state that, if enabled, activates support for TCP Fast Open,
which allows validated clients to deliver data with SYN packets.
Gets the state that, if enabled, activates support for TCP Fast
Open.
Sets the fast open cookie expiration for the specified TCP profiles.
This timeout specifies the time, in seconds, for which a TCP Fast
Open Cookie granted by the BIG-IP remains valid to accept data
delivered with the SYN packet. The origination time is encrypted
in the cookie and checked during cookie validation.
Gets the fast open cookie expiration for the specified TCP profiles.
Sets the description for a set of TCP profiles.
This is an arbitrary field which can be used for any purpose.
Gets the descriptions for a set of TCP profiles.
Resets the statistics for the specified profiles.
Resets the statistics for the specified profiles, for
specified virtual servers.
Gets the statistics for all the profiles.
Gets the statistics for the specified profiles.
Gets the statistics for the specified profiles, by virtual server.
Gets the version information for this interface.
Sets the state that if true, enables hardware SYN cookie support.
This protects against the SYN flood type of Denial Of Service
(DoS) attack. This is available on most hardware platforms,
specifically, those on which PVA10 is present. By default, this
setting is enabled.
Gets the state that if true, enables hardware SYN cookie support.
This protects against the SYN flood type of Denial Of Service
(DoS) attack.
Sets the states that if true, enables rate pacing. This feature
causes the system to pace the egress packets to avoid dropping
packets, allowing for optimum goodput.
Gets the states that if true, enables rate pacing. This feature
causes the system to pace the egress packets to avoid dropping
packets, allowing for optimum goodput.
Sets the maximum rate, in bytes per second, that a flow that
has rate pacing enabled may transmit data. The default value
of 0 indicates no maximum.
Gets the maximum rate, in bytes per second, that a flow that
has rate pacing enabled may transmit data. The default value
of 0 indicates no maximum.
The ProfileTCP interface enables you to manipulate a local load balancer's TCP profile.