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NEW QUESTION: 1
Which two mechanisms can be used to eliminate Cisco Express Forwarding polarization? (Choose two.)
A. the unique-ID/universal-ID algorithm
B. different hashing inputs at each layer of the network
C. Cisco Express Forwarding antipolarization
D. alternating cost links
Answer: A,B
Explanation:
This document describes how Cisco Express Forwarding (CEF) polarization can cause suboptimal use of redundant
paths to a destination network. CEF polarization is the effect when a hash algorithm chooses a particular path and the
redundant paths remain completely unused.
How to Avoid CEF Polarization
Alternate between default (SIP and DIP) and full (SIP + DIP + Layer4 ports) hashing inputs configuration at each layer
of the network.
Alternate between an even and odd number of ECMP links at each layer of the network.
The CEF load-balancing does not depend on how the protocol routes are inserted in the routing table. Therefore, the
OSPF routes exhibit the same behavior as EIGRP. In a hierarchical network where there are several routers that
perform load-sharing in a row, they all use same algorithm to load-share.
The hash algorithm load-balances this way by default:
1: 1
2: 7-8
3: 1-1-1
4: 1-1-1-2
5: 1-1-1-1-1
6: 1-2-2-2-2-2
7: 1-1-1-1-1-1-1
8: 1-1-1-2-2-2-2-2
The number before the colon represents the number of equal-cost paths. The number after the colon represents the
proportion of traffic which is forwarded per path.
This means that:
For two equal cost paths, load-sharing is 46.666%-53.333%, not 50%-50%.
For three equal cost paths, load-sharing is 33.33%-33.33%-33.33% (as expected).
For four equal cost paths, load-sharing is 20%-20%-20%-40% and not 25%-25%-25%-25%.
This illustrates that, when there is even number of ECMP links, the traffic is not load-balanced.
Cisco IOS introduced a concept called unique-ID/universal-ID which helps avoid CEF polarization. This algorithm,
called the universal algorithm (the default in current Cisco IOS versions), adds a 32-bit router-specific value to the
hash function (called the universal ID - this is a randomly generated value at the time of the switch boot up that can
can be manually controlled). This seeds the hash function on each router with a unique ID, which ensures that the
same source/destination pair hash into a different value on different routers along the path. This process provides a
better network-wide load-sharing and circumvents the polarization issue. This unique -ID concept does not work for
an even number of equal-cost paths due to a hardware limitation, but it works perfectly for an odd number of equal-
cost paths. In order to overcome this problem, Cisco IOS adds one link to the hardware adjacency table when there is
an even number of equal-cost paths in order to make the system believe that there is an odd number of equal-cost
links.
Reference: http://www.cisco.com/c/en/us/support/docs/ip/express-forwarding-cef/116376-technote-cef-00.html
NEW QUESTION: 2
Which three statements about RSTP are true? (Choose three.)
A. RSTP uses the same timer-based process as STP on point-to-point links.
B. RSTP also uses the STP proposal-agreement sequence.
C. RSTP significantly reduces topology reconverging time after a link failure.
D. RSTP expands the STP port roles by adding the alternate and backup roles.
E. RSTP provides a faster transition to the forwarding state on point-to-point links than STP does.
F. RSTP port states are blocking, discarding, learning, or forwarding.
Answer: C,D,E
Explanation:
One big disadvantage of STP is the low convergence which is very important in switched network. To overcome this problem, in 2001, the IEEE with document 802.1w introduced an evolution of the Spanning Tree Protocol: Rapid Spanning Tree Protocol (RSTP), which significantly reduces the convergence time after a topology change occurs in the network.
While STP can take 30 to 50 seconds to transit from a blocking state to a forwarding state, RSTP is typically able to respond less than 10 seconds of a physical link failure.
RSTP works by adding an alternative port and a backup port compared to STP. These ports are allowed to immediately enter the forwarding state rather than passively wait for the network to converge.
RSTP bridge port roles:
* Root port - A forwarding port that is the closest to the root bridge in terms of path cost
* Designated port - A forwarding port for every LAN segment
* Alternate port - A best alternate path to the root bridge. This path is different than using the root port. The alternative port moves to the forwarding state if there is a failure on the designated port for the segment.
* Backup port - A backup/redundant path to a segment where another bridge port already connects. The backup port applies only when a single switch has two links to the same segment (collision domain). To have two links to the same collision domain, the switch must be attached to a hub.
* Disabled port - Not strictly part of STP, a network administrator can manually disable a port.
NEW QUESTION: 3
Which of the following BEST describes the purpose of a vector in programming?
A. Repeating a similar operation
B. Storing a collection of data
C. Performing mathematical calculations
D. Capturing user input
Answer: B
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