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Special Forums News, Links, Events and Announcements Complex Event Processing RSS News Cisco 7600 OSR Backbone Router Post 302233134 by Linux Bot on Saturday 6th of September 2008 07:30:02 AM
Old 09-06-2008
Cisco 7600 OSR Backbone Router

Tim Bass
09-06-2008 04:25 AM
For our confused CEO blogger over at StreamBase, who thinks an Internet*backbone router is the small $30 device he set up in his home office, here is a photo of a the Cisco 7600 OSR*which of course runs*CISCO IOS.

Image

The Cisco 7600 OSR consists of a 256 Gbps switching fabric and a 30 million packets per second (mpps) forwarding engine. Its breadth of IP services comes from Cisco IOS, which provides features such as security, enhanced QoS, and destination sensitive services. In addition, the Cisco 7600 OSR allows the migration of existing port adapters from Cisco 7500 series routers, via the Cisco FlexWAN module, giving service providers one the industry’s widest array of interface options in any single platform. This provides service providers great flexibility in deploying the Cisco 7600 OSR for a variety of applications, protects their investment in existing systems, and gives them a practical migration path to the New World Optical Internet.

A Revolutionary Platform For Evolving Networks

The Cisco 7600 OSR helps service providers break through service and bandwidth barriers today, while designing networks to scale for future growth. The Cisco 7600 OSR achieves this through “adaptive network processing,” or the ability to evolve the platform for new IP services without hardware upgrades. Unlike fixed, ASIC-based platforms, which are hardware encoded, the Cisco 7600 OSR relies on the highly flexible Parallel eXpress Forwarding (PXF) technology for scalable performance of services. PXF is a patented, Cisco-developed network processor capable of line-rate IP services delivery that can support new IP services through periodic software upgrades. Each OSM has two PXF processors capable of 12 mpps of IP services delivery per interface card.

“IP+Optical combines the dynamism of the Internet world with the foundation of the transport world, creating an infrastructure that can deliver the services that service providers need,” said Lele Nardin, vice president of the Internet Systems Business Unit at Cisco. “Cisco will continue to add innovative solutions on top of this solid foundation to make service providers better equipped to meet the constantly escalating and changing customer demands for new networking services.”

Pricing and Availability

The base Cisco 7600 OSR system is list priced at $73,000 and the entry level system, with interfaces, start at $100,000. The interfaces modules are priced between $27,000 to $180,000. The Cisco 7600 OSR is available now worldwide.



Source...
 

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GRE(4)							   BSD Kernel Interfaces Manual 						    GRE(4)

NAME
gre -- encapsulating network device SYNOPSIS
To compile the driver into the kernel, place the following line in the kernel configuration file: device gre Alternatively, to load the driver as a module at boot time, place the following line in loader.conf(5): if_gre_load="YES" DESCRIPTION
The gre network interface pseudo device encapsulates datagrams into IP. These encapsulated datagrams are routed to a destination host, where they are decapsulated and further routed to their final destination. The ``tunnel'' appears to the inner datagrams as one hop. gre interfaces are dynamically created and destroyed with the ifconfig(8) create and destroy subcommands. This driver corresponds to RFC 2784. Encapsulated datagrams are prepended an outer datagram and a GRE header. The GRE header specifies the type of the encapsulated datagram and thus allows for tunneling other protocols than IP. GRE mode is also the default tunnel mode on Cisco routers. gre also supports Cisco WCCP protocol, both version 1 and version 2. The gre interfaces support a number of additional parameters to the ifconfig(8): grekey Set the GRE key used for outgoing packets. A value of 0 disables the key option. enable_csum Enables checksum calculation for outgoing packets. enable_seq Enables use of sequence number field in the GRE header for outgoing packets. EXAMPLES
192.168.1.* --- Router A -------tunnel-------- Router B --- 192.168.2.* / / +------ the Internet ------+ Assuming router A has the (external) IP address A and the internal address 192.168.1.1, while router B has external address B and internal address 192.168.2.1, the following commands will configure the tunnel: On router A: ifconfig greN create ifconfig greN inet 192.168.1.1 192.168.2.1 ifconfig greN inet tunnel A B route add -net 192.168.2 -netmask 255.255.255.0 192.168.2.1 On router B: ifconfig greN create ifconfig greN inet 192.168.2.1 192.168.1.1 ifconfig greN inet tunnel B A route add -net 192.168.1 -netmask 255.255.255.0 192.168.1.1 NOTES
The MTU of gre interfaces is set to 1476 by default, to match the value used by Cisco routers. This may not be an optimal value, depending on the link between the two tunnel endpoints. It can be adjusted via ifconfig(8). For correct operation, the gre device needs a route to the decapsulating host that does not run over the tunnel, as this would be a loop. The kernel must be set to forward datagrams by setting the net.inet.ip.forwarding sysctl(8) variable to non-zero. SEE ALSO
gif(4), inet(4), ip(4), me(4), netintro(4), protocols(5), ifconfig(8), sysctl(8) A description of GRE encapsulation can be found in RFC 2784 and RFC 2890. AUTHORS
Andrey V. Elsukov <ae@FreeBSD.org> Heiko W.Rupp <hwr@pilhuhn.de> BUGS
The current implementation uses the key only for outgoing packets. Incoming packets with a different key or without a key will be treated as if they would belong to this interface. The sequence number field also used only for outgoing packets. BSD
November 7, 2014 BSD
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