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Which three iRule events are likely to be seen in iRules designed to select a pool for load balancing? (Choose three.)
A. CLIENT_DATA
B. SERVER_DATA
C. SERVER_CONNECTED
D. SERVER_SELECTED
E. CLIENT_ACCEPTED
F. HTTP_RESPONSE
G. HTTP_REQUEST
Answer: A,E,G
Explanation:
12
In the BIG-IP system, pool selection must occur on the client-side of the connection, before the system attempts to connect to a pool 3member. The events listed 4are the primary entry points for making these decisions:
* CLIENT_ACCEPTED (E): This is a Layer 4 event triggered when the BIG-IP accepts a TCP connection. It is the earliest point where a pool can be assigned based on the client's source IP address or the destination port.
* CLIENT_DATA (A): This event is triggered when the system receives a "chunk" of data on the client- side. It is often used for non-HTTP protocols (like custom TCP protocols) to inspect the payload and select a pool based on its contents.
* HTTP_REQUEST (C): This is a Layer 7 event. It occurs once the BIG-IP has fully parsed the HTTP headers. This is the most common event for pool selection, allowing the administrator to route traffic based on the URI, Host header, or cookies.
Events like SERVER_SELECTED or SERVER_CONNECTED occur after the load balancing decision has already been made, and HTTP_RESPONSE or SERVER_DATA occur after the server has already started communicating back, making them too late for initial pool selection.
NEW QUESTION # 17
What is the result when a BIG-IP Administrator manually disables a pool member? (Choose one answer)
A. All pool members continue to process persistent connections.
B. All pool members stop accepting new connections.
C. The disabled pool member stops processing existing connections.
D. The disabled pool member stops processing persistent connections.
Answer: D
Explanation:
In BIG-IP LTM, a pool member state directly affects how traffic is handled at the data plane level. When a pool member is manually disabled, BIG-IP changes the member's availability state to disabled, which has specific and predictable traffic-handling consequences.
According to BIG-IP Administration Data Plane Concepts:
* A disabled pool member:
* Does not accept new connections
* Continues to process existing non-persistent connections until they naturally close
* Is removed from load-balancing decisions, including persistence lookups Most importantly for this question:
* Persistent connections (such as those created using source-address persistence, cookie persistence, or SSL persistence) are not honored for a disabled pool member
* BIG-IP will not send new persistent traffic to a disabled member, even if persistence records exist Therefore, when a pool member is manually disabled, it stops processing persistent connections, while allowing existing non-persistent flows to drain gracefully.
Why the Other Options Are Incorrect:
* B - Persistent connections are not honored for a disabled pool member
* C - Existing connections are not immediately terminated when a pool member is disabled
* D - Only the disabled pool member stops accepting new connections, not all pool members Key Data Plane Concept Reinforced:
Manually disabling a pool member is a graceful administrative action that prevents new and persistent traffic from reaching the member while allowing existing connections to complete, which is critical for maintenance and troubleshooting scenarios.
NEW QUESTION # 18
A BIG-IP system receives a client connection destined to 1.0.0.10:8080. Multiple virtual servers are configured on the system. Which virtual server will process the connection? (Choose one answer)
A. A forwarding virtual server configured with 0.0.0.0:any
B. A virtual server configured with 0.0.0.0:8080
C. A forwarding virtual server configured with 1.0.0.10:any (port 0)
D. A virtual server configured with destination 1.0.0.10:8080 and is available (green)
Answer: D
Explanation:
Comprehensive and Detailed Explanation From BIG-IP Administration Data Plane Concepts documents:
BIG-IP uses a virtual server matching and precedence algorithm to determine which virtual server processes an incoming connection. This decision is made entirely in the data plane and is based on how specifically a virtual server matches the destination IP address and port.
BIG-IP Virtual Server Selection Rules (Simplified):
When multiple virtual servers could match a packet, BIG-IP selects the most specific match, using the following precedence:
Exact IP address and exact port
Exact IP address with wildcard port (port 0 / any)
Wildcard IP address with exact port
Wildcard IP address and wildcard port
Applying the Rules to This Scenario:
Incoming traffic destination: 1.0.0.10:8080
Option C: 1.0.0.10:8080
Exact IP match
Exact port match
Highest possible specificity
If the virtual server is available (green), it wins the match
Option B: 1.0.0.10:any
Exact IP match, but wildcard port
Lower priority than an exact IP + exact port match
Option D: 0.0.0.0:8080
Wildcard IP, exact port
Lower priority than an exact IP match
Option A: 0.0.0.0:any
Wildcard IP and wildcard port
Lowest priority, used only if no more specific virtual server exists
Final Determination:
Because a virtual server configured with destination 1.0.0.10:8080 exactly matches both the IP address and port of the incoming connection-and is available-it will always be selected to process the traffic.
Key Data Plane Concept Reinforced:
BIG-IP always processes traffic using the most specific matching virtual server. Exact destination IP and port matches take precedence over any wildcard or forwarding virtual server definitions.
NEW QUESTION # 19
What type of virtual server should be used to block responses for one IP in a subnet with a virtual server?
(Choose one answer)
A. Block
B. Standard
C. Drop
D. Reject
Answer: D
Explanation:
In the BIG-IP system, when you need to prevent traffic from reaching a specific destination or being processed by the system, you utilize specific Virtual Server types that act as "denial" points.
* Reject Virtual Servers: When a packet matches a Reject virtual server, the BIG-IP system stops the packet from being processed and sends a reset (RST) in the case of TCP, or an ICMP unreachable message in the case of UDP. This is the preferred method for "blocking" specific IPs when you want the sender to receive immediate notification that the connection was refused.
* Drop Virtual Servers: A Drop virtual server simply discards the packet without sending any response back to the source. While effective for "stealthing" a network, it is often less desirable for standard administration unless specifically mitigating a DoS attack.
* Comparison with Standard: A Standard virtual server is used to process and load balance traffic to a pool of members; it does not inherently act as a "blocking" mechanism for a single IP within a subnet unless combined with complex iRules or Packet Filters.
* Context of the Question: To block responses (or connection attempts) for a specific IP while other traffic in the subnet might be handled by more permissive virtual servers, a more specific (higher precedence) Reject virtual server is the standard administrative approach.
NEW QUESTION # 20
A virtual server is listening at 10.10.1.100:any and has the following iRule associated with it:
when CLIENT_ACCEPTED { if {[TCP::local_port] equals 21 } { pool
ftppool } elseif {[TCP::local_port] equals 23 } { pool telnetpool }
If a user connects to 10.10.1.100 and port 22, which pool will receive the request?
A. ftppool
B. Unknown. The pool cannot be determined from the information provided.
C. None. The request will be dropped.
D. telnetpool
Answer: B
NEW QUESTION # 21
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