Lies, damned lies and product marketing

Greg Ferro’s “Layer-3 routing” post successfully kicked my huge sore spot: the numerous ways technical terminology is abused by product marketing gurus.

Twenty years ago, before networking became a multi-billion dollar industry, things were clear, simple and consistent: layer-2 (data-link layer) frame forwarding was bridging and layer-3 (network layer) packet forwarding was routing. Everything was crystal clear until some overly smart people tried to turn bridges into something they were not: WAN extension devices. A few large WAN networks were built with bridges … and failed spectacularly. Router vendors quickly used the opportunity to push the “routing is good, bridging is bad” mantra.

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Certifications and the hiring process

My good friend Stretch wrote an interesting article about the usability of certifications in the hiring process. I can’t agree more with everything he wrote about certifications, it nicely summarizes the various topics Greg Ferro and myself wrote about during the last year (please note: I’m not claiming Stretch was in any way influenced by our thoughts, anyone seriously considering the current certification processes has to come to the same conclusions).

Regrettably, I have to disagree with most of his alternative approach (although some of the ideas are great). It would work in an ideal world, but faces too many real-life obstacles in this one.

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IPv6 in the campus but not in the Data Center?

Cisco has recently published two excellent design guides: Deploying IPv6 in Campus Networks and Deploying IPv6 in Branch Networks. As expected from the engineers writing Cisco’s design documents, these guides contain tons of useful information and good recommendations; they’re a highly recommended reading if you’ve started considering IPv6 deployment in your enterprise network. These design guides are part of Design Zone for Branch and Design Zone for Campus.

IPv6 deployment issues are just one of the topics covered in the Enterprise IPv6 Deployment workshop. You can attend an online version of the workshop or we can organize a dedicated event for your team.

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Dual-stack PPP requires two separate sessions?

A while ago a senior Service Provider network designer told me that they have serious issues with IPv6 deployment as IPv6 requires a separate PPPoE session from the CPE devices which significantly increases their licensing costs. The statement really surprised me; PPP was designed to be a multi-protocol environment and it’s very easy to configure IPv4 and IPv6 over a single PPP session in Cisco IOS. I think I might have tracked down the source of this “information” to the 6deploy IPv6 and DSL presentation which states on Page 11 that “Separate PPP sessions are established between the Subscriber’s systems (or CPE) and the BBRAS for IPv6 and IPv4 traffic”.

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Who Needs IPv6?

One of the most common questions asked by my enterprise customers is “Who needs IPv6?” Since IPv6 does not add any significant new functionality (apart from larger address space), you can’t gain much by deploying it in an enterprise network … unless you’re huge enough that the private IPv4 address space (RFC 1918) becomes too confining for you. A good case study is Halliburton; you’ll find the details in Global IPv6 Strategies: From Business Analysis to Operational Planning book (my review).

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Detect short bursts with EEM

Last week I’ve described how you can use EEM to detect long-term interface congestion which could indicate denial-of-service attack. The mechanism I’ve used (the averaged interface load) is pretty slow; using the lowest possible value for the load-interval (30 seconds) it takes almost a minute to detect a DOS attack (see below).

If you want to detect outbound bursts, you can do better: you can monitor the increase in the number of output drops over a short period of time.

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HQF: intra-class fair queuing

Continuing from my first excursion into the brave new world of HQF, I wanted to check how well the intra-class fair queuing works. I’ve started with the same testbed and router configurations as before and configured the following policy-map on the WAN interface:

policy-map WAN
class P5001
bandwidth percent 20
fair-queue
class P5003
bandwidth percent 30
class class-default
fair-queue

The test used this background load:

ClassBackground load
P500110 parallel TCP sessions
P50031500 kbps UDP flood
class-default1500 kbps UDP flood
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