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NEW QUESTION: 1
When enabling interdomain multicast routing, which two statements are correct? (Choose two.)
A. MSDP SA packets are sent between the multiprotocol BGP peers
B. Noncongruent unicast and multicast topologies can be supported using multiprotocol BGP
C. Use MSDP to enable the RPs from different domains to exchange information about active multicast sources
D. Multiprotocol BGP is used instead of PIM SM to build the intradomain and interdomain multicast distribution trees
Answer: B,C
Explanation:
http://prakashkalsaria.wordpress.com/2010/08/11/mbgp-msdp/
MSDPIn the PIM-SM model, multicast sources and receivers must register with their local RP. Actually, the routerclosest to the sources or receivers registers with the RP, but the key point to note is that the RP knows aboutall the sources and receivers for any particular group. RPs in other domains have no way of knowing aboutsources located in other domains. MSDP is an elegant way to solve this problem.
MSDP is a mechanism that allows RPs to share information about active sources. RPs know about thereceivers in their local domain. When RPs in remote domains hear about the active sources, they can pass onthat information to their local receivers and multicast data can then be forwarded between the domains. Auseful feature of MSDP is that it allows each domain to maintain an independent RP that does not rely on otherdomains, but it does enable RPs to forward traffic between domains. PIM-SM is used to forward the trafficbetween the multicast domains.
The RP in each domain establishes an MSDP peering session using a TCP connection with the RPs in otherdomains or with border routers leading to the other domains. When the RP learns about a new multicastsource within its own domain (through the normal PIM register mechanism), the RP encapsulates the first datapacket in a Source-Active (SA) message and sends the SA to all MSDP peers. The SA is forwarded by eachreceiving peer using a modified RPF check, until the SA reaches every MSDP router in the interconnectednetworks-theoretically the entire multicast internet. If the receiving MSDP peer is an RP, and the RP has a (*,G) entry for the group in the SA (there is an interested receiver), the RP creates (S, G) state for the source andjoins to the shortest path tree for the source. The encapsulated data is decapsulated and forwarded down theshared tree of that RP. When the packet is received by the last hop router of the receiver, the last hop routeralso may join the shortest path tree to the source. The MSDP speaker periodically sends SAs that include allsources within the own domain of the RP
http://www.cisco.com/en/US/docs/ios_xr_sw/iosxr_r3.2/routing/configuration/guide/rc32bgp .html
Multiprotocol BGP Multiprotocol BGP is an enhanced BGP that carries routing information for multiple network layer protocols andIP multicast routes. BGP carries two sets of routes, one set for unicast routing and one set for multicast routing.
The routes associated with multicast routing are used by the Protocol Independent Multicast (PIM) feature tobuild data distribution trees. Multiprotocol BGP is useful when you want a link dedicated to multicast traffic, perhaps to limit which resourcesare used for which traffic. Multiprotocol BGP allows you to have a unicast routing topology different from amulticast routing topology providing more control over your network and resources. In BGP, the only way to perform interdomain multicast routing was to use the BGP infrastructure that was inplace for unicast routing. Perhaps you want all multicast traffic exchanged at one network access point (NAP).
If those routers were not multicast capable, or there were differing policies for which you wanted multicasttraffic to flow, multicast routing could not be supported without multiprotocol BGP. Note It is possible to configure BGP peers that exchange both unicast and multicast network layer reachabilityinformation (NLRI), but you cannot connect multiprotocol BGP clouds with a BGP cloud. That is, you cannotredistribute multiprotocol BGP routes into BGP.
NEW QUESTION: 2
What will happen when you attempt to compile and run the code below, assuming that file test.out do not exist before the program execution?
#include <iostream>
# include <fstream>
# include <string>
# include <list>
# include <algorithm>
using namespace std;
template<class T>struct Out {
ostream & out;
Out(ostream & o): out(o){}
void operator() (const T & val ) {out<<val<<" "; } };
int main (){
int t[] = {1, 2, 3, 4, 5, 6, 7, 8, 9, 10};
fstream f("test.out");
list<int> l(t, t+10);
for_each(l.begin(), l.end(), Out<int>(f));
f.close();
return 0;
}
A. compilation error
B. file test.out will be created and opened for writing
C. no file will be created nor opened
D. file test.out will be created and opened for reading
E. file test.out will contain sequence 1 2 3 4 5 6 7 8 9 10
Answer: C
NEW QUESTION: 3
Your network contains an Active Directory domain named contoso.com.
The domain contains a server named Server1 that runs Windows Server 2012 R2 and has the DHCP Server server role installed.
You need to create an IPv6 scope on Server1. The scope must use an address space that is reserved for private networks. The addresses must be routable.
Which IPV6 scope prefix should you use?
A. FE80:123:4567::
B. FF00:123:4567:890A::
C. 2001:123:4567:890A::
D. FD00:123:4567::
Answer: D
NEW QUESTION: 4
Refer to the exhibit.
A Cisco Catalyst 6500 Series Switch experiences high CPU utilization. What can be the cause of this issue, and how can it be prevented?
A. The software routing table is full. Redistribute from BGP into IGP.
B. The software routing table is full. Reduce the number of routes in the routing table.
C. The hardware routing table is full. Redistribute from BGP into IGP.
D. The hardware routing table is full. Reduce the number of routes in the routing table.
Answer: D
Explanation:
FIB TCAM Exception - If you try to install more routes than are possible into the FIB TCAM you will see the following error message in the logs:
CFIB-SP-STBY-7-CFIB_EXCEPTION : FIB TCAM exception, Some entries will be software switched
%CFIB-SP-7-CFIB_EXCEPTION : FIB TCAM exception, Some entries will be software
switched.
%CFIB-SP-STBY-7-CFIB_EXCEPTION : FIB TCAM exception, Some entries will be
software switched.
This error message is received when the amount of available space in the TCAM is
exceeded. This results in high CPU. This is a FIB TCAM limitation. Once TCAM is full, a
flag will be set and FIB TCAM exception is received. This stops from adding new routes to
the TCAM. Therefore, everything will be software switched. The removal of routes does not
help resume hardware switching. Once the TCAM enters the exception state, the system
must be reloaded to get out of that state. You can view if you have hit a FIB TCAM
exception with the following command:
6500-2#sh mls cef exception status
Current IPv4 FIB exception state = TRUE
Current IPv6 FIB exception state = FALSE
Current MPLS FIB exception state = FALSE
When the exception state is TRUE, the FIB TCAM has hit an exception.
The maximum routes that can be installed in TCAM is increased by the mls cef maximum-
routes command.
Reference: https://supportforums.cisco.com/document/59926/troubleshooting-high-cpu-
6500-sup720