Friday, 22 January 2016

Google's cloud finds a friend in Red Hat

A symbiotic move

Google and Red Hat had a Kumbaya moment today when the two companies announced integration between Red Hat's OpenShift platform as a service and Google's IaaS public cloud platform.

Specifically, Red Hat will offer OpenShift Dedicated, the managed OpenShift cloud service on Google’s Cloud Platform (GCP). It's a win-win for both companies.

Since Diane Greene came on board at Google we've been waiting for some news from Google. While not every little announcement from Google should be viewed as Greene acting as a puppeteer, these moves also would not be happening if she disagreed with them. So, I think it’s safe to surmise that Greene's fingerprints are beginning to show up at GCP.

It's a good partnership for Google. At its most basic level, this is a big customer win for Google’s cloud. Red Hat will be running its PaaS on top of Google’s IaaS. Down the line, the two companies will partner to integrate Google Cloud Platform features into the OpenShift platform.

Job number one for Greene, according to many in the industry I've spoken with, was to build up enterprise traction for Google's cloud. Red Hat is as good of a partner as any to do that with. This is not a new partnership though. Before Greene came on board, Google began offering Red Hat Enterprise Linux (RHEL) OS on its cloud. They’re partnered on the Cloud Native Computing Foundation too.

It's a good move for Red Hat too. The venerable open source giant is trying to build itself up as THE container focused company. And Google’s cloud is seen as one of the best platforms for running containers, thanks to its Kubernetes container manager. Red Hat completely redesigned OpenShift to be a container-centric PaaS. So it makes sense that Red Hat would want to host OpenShift on the best IaaS for containers. The move reinforces the need for PaaS vendors to find an IaaS partner. Salesforce's Heroku, for example, runs atop Amazon Web Services.

Another interesting note is that Google has a partnership with VMware too. Google provide scale-out IaaS capacity beyond VMware’s vCloudAir’s capabilities. VMware and Red Hat are fierce competitors. Greene will have to navigate these partnership waters carefully. But at this point all of the partnerships (Google/Red Hat and Google/VMware) make perfect sense for all these companies.
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Wednesday, 6 January 2016

Inside AT&T’s grand dynamic network plan

The service provider shares lessons learned from early adopters of its first Network on Demand service and outlines what comes next

AT&T is pouring billions into its network to make it more dynamic, which is resulting in new capabilities for enterprise customers. Network World Editor in Chief John Dix recently stopped by AT&T headquarters in Dallas to talk to Josh Goodell, VP of Network on Demand, about what the company is learning from early adopters of its Switched Ethernet on Demand service and what comes next. Among other things, Goodell explains how provisioning now takes days vs. weeks, service profiles can be changed in seconds, and how he expects large shops to use APIs to connect their network management systems directly to AT&T controls. Oh, and a slew of virtual functions are on the horizon that will enable you to ditch all those appliances you’ve been accumulating.

Let’s start with the big picture view of AT&T’s dynamic network efforts. What’s the goal?
Usually when I talk about our strategy I start at the network access layer. This is the physical infrastructure that AT&T has built over years – the fiber network and technologies like LTE on the wireless side, and what we call Lightspeed, which is a combination of fiber and copper. It’s a very robust network that has a tremendous reach and tremendous speed. All of that is foundational to what we’re doing now. Our Network on Demand platform acts like rapid onramps to that very fast network. So that physical layer is important and one area of the overall puzzle.

Another area is driven by John Donovan, Senior Executive Vice President of Technology and Operations, who is driving our software-centric architecture. We’ve called it different things over the last couple of years, including Domain 2.0, but at its core it’s about driving virtualization within our own network. He’s made the commitment that by 2020 we’re going to virtualize 75% percent of our network. That’s all about driving up utilization in the network and enabling scale and flexibility.

Where does SDN make sense? We ask Fidelity’s Director of Global Network Architecture

The third piece is enabling these same types of capabilities for our business customers, and that’s really where Network on Demand comes into play. It’s taking technologies that we’re utilizing internally and making our core strategic services better by utilizing the same technologies.

The Network on Demand platform initially launched with one capability -- AT&T Switched Ethernet on Demand -- and the second service that will launch is Managed Internet Service on Demand. Then we will continue to add additional services over time. So Network on Demand is creating this platform that enables customers to have a rapid onramp to that very robust network.

That gives customers more control of their network, the ability to rapidly scale up or scale down their network, and improves TCO, not just because you have the ability to use exactly what you want, but also because you can be more productive. You can spin up a location more rapidly than you could have in the past.

Then we will also start getting into services that take advantage of both SDN and NFV, where you’re actually virtualizing what has typically been purpose-built appliances. We don’t have a product in the market yet but we’ve announced that the first iteration will be available in the next few months.

We’ve reorganized our entire technology organization around network simplification and a software-centered network, and then exposing those capabilities to our customers. That’s the big picture and Network on Demand is one piece of that picture.

It’s important to understand that we have a lot of conviction across all three of those areas. From 2009 to 2014 we spent about $140 billion in those three areas. These aren’t hobbies. These are how we’re committed to drive a differentiated network experience.

How long has the switched Ethernet service been available?
We opened the first market in Austin Texas in November 2014, expanded to five markets in February of this year, and in April expanded to 170+ markets. So that is very, very fast for any service we’ve ever stood up. Part of it is the technology. It’s different. It’s building on a software layer that allows for a rapid product instantiation, but we also used an agile approach to development, a DevOps model, and the combination of those things allowed us to move at a rapid pace.

When does the Internet on Demand service go live?

Managed Internet on Demand is CI in Atlanta. Interestingly, with AT&T Switched Ethernet on Demand there’s no virtualization happening. It is an SDN layer on top of existing network infrastructure. Managed Internet on Demand is a different architecture that actually takes advantage of both SDN and NFV, so we’ll be virtualizing the customer edge. Typically the customer has a router on-premise that will be virtualized in the AT&T cloud, and then we will also be virtualizing the provider edge. It’s a big deal because I expect that over time we’ll be virtualizing a lot of different services, so we’re going through what it takes to do this with this next service for the first time ever.

The initial offering will be a virtualized router only. If they want they can buy a switch and put it at the end of their network and run something off of that. Eventually we’ll have a use case where we’ll actually deploy a piece of CPE on-premise they can use, but the initial use case is a pure virtualized router.

The first place to tackle SDN? In the WAN

Coming back to the Ethernet On Demand service, how many customers do you have?
It’s been really interesting to see the way that has played out. As of today it’s over 350 customer networks, about 1,000 locations. That’s a lot more than what we had expected. Market demand has been pretty strong.

Is there a typical customer profile emerging?
It has been across industries. The largest network we have provisioned is about 150 locations and as small as two-locations. So it’s run the gamut. It is more prevalent so far in the mid-market and down-market, but every single one of our segments has seen traction.

One interesting thing is how we’ve simplified the selling experience. We’ve enabled our sales people to use an iPad to order the service and do all of the contract work with the customer on their premise. Historically the presale cycle alone was days. Now everything can be done in one sit-down discussion. That’s not the cool, interesting technology that SDN represents, but it is an interesting case of how, when you take friction out of the experience on both the seller’s side and the customer’s side, you’re going to see traction and we’ve seen it with Ethernet.

How long does it take to deliver Switched Ethernet On Demand?
When fiber is available to the customer building, and if you take out the “Customer not ready” situations, it’s five days. The equivalent when you’re in a fiber location but not on Network on Demand is probably closer to four weeks. When you don’t have fiber availability the cycle time obviously goes up because you have the build process, but we’re still automating the overall process with Network on Demand.

How much are early customers actually changing the Switched Ethernet service profile once they are online?
There are a couple of things customers can do, one of which is to add locations. Customers can go into the portal, which knows the inventory of their locations, and go from, say, a two-location network to a three-location or a four-location network in a matter of days without ever having to talk to anyone. That’s a big deal. Historically that would have been multiple phone calls and a fairly long provisioning cycle. Customers can now do it themselves at their own convenience.

And another common use case is the ability for a customer to scale up or scale down their network. Any business that has seasonality is going to be interested in that use case. For example, we have K-12 as well as college institutions that are very interested in that capability.

We’ve also talked to a few hospitals that have branch locations that do analysis on medical images that are interested in the ability to scale up the network to send large payloads and then scale it down again, which isn’t something they could do before.

One of our large customers uses Network on Demand service for redundancy between data centers. They have this as a secondary network and keep it scaled all the way down, and in the event they have an issue they can scale it up within seconds.

Another interesting use case is around rapid provisioning for M&A activity. After a merger or acquisition the network may go from 10 locations to 20 locations literally within a week, and provisioning agility is important for those types of situations.

Does it surprise you that the mid- to smaller-size shops are the early adopters? I would think the largest shops would be dying for these capabilities?
It does surprise me a little bit. I think there are a couple of things at work. I mentioned that customers manage their networks through a portal. Some of our very large customers will want to have their own network management tools tap directly into our network through APIs. We expect to do that. We just haven’t gotten there yet. In fact, I expect at some point we will federate our SDN Layer 2 network with other carriers that have SDN Layer 2 networks. It’s a very natural evolution. And federating the network with a large customer’s network management tools is just another version of that. It’s more of a northbound API as opposed to an east-west interface.

I also think we have a service now that hunts very effectively against competitors that have been attacking us down market.

Going back to bandwidth flexibility, obviously the seasonal use cases make sense, but are other customers tweaking the settings more or less often than you would have expected?

Less often than I expected. When we started we limited the number of changes allowed to one per day because we had no idea what the actual behavior would be. What we’ve seen is customers aren’t going in and ratcheting it up and down frequently during the month. They may do it once or twice, but it’s not as prevalent as I would have expected. It’s still early, though. Since we’ve really been at scale only since April, it’s a bit early to say how much the behavior is going to shift.

What are the increments you can scale up and down?
It goes all the way from 2mbps to 10Gbps with several increments along the way.

You said you’re in 170 markets. How many states is that?
Our incumbent AT&T 21-state footprint. We do have fiber assets in other areas, including New York, Philadelphia and Boston. Those markets are not available yet on Network on Demand, but we expect that we will bring them on net in the future. For now the Ethernet on Demand service is limited to our 21-state footprint and the 170+ markets.

Internet on Demand is up next. What comes after that?
The next capability after Managed Internet is what we call Network Functions on Demand. Network Functions on Demand is basically re-looking at how premise-based appliances are used. Typically today you have purpose-built appliances, whether that’s a router or a firewall, a WAN accelerator, you name it. In the future we will offer what we call universal CPE that can run multiple virtual functions, so software instances of those capabilities on that universal CPE platform.

We are also building the ability to deliver those same types of virtual functions directly through our AT&T cloud. So you can envision a time where customers will have a series of capabilities that are delivered both through a universal CPE on their premise -- again, things like router functionality, firewalls and WAN accelerators -- as well as capabilities delivered directly through our cloud.

There would be advantages to using one versus the other. For example, an application that is going to be shared across multiple locations, you probably want to use more of a cloud approach, whereas an application that’s more specific to a location will sit on the universal CPE.

That capability will begin to roll out in the next few months. It will evolve dramatically over time. The first instantiation of it will be that universal CPE capability with a virtual router. Then we will add other virtual instances within the portfolio over time, and I expect it will evolve pretty dramatically throughout 2016.

I presume the universal CPE is a server that you manage?
Yeah, it’s a white box x86 server modeled to run three to four virtual functions. It’s got a Gig of throughput, so it’s a fairly robust platform. The box will be managed by AT&T. The virtual router will be managed by AT&T. But I expect over time you’re going to have multiple virtual functions on this box and we will have options for both AT&T managed as well as customer managed functions.

Will the virtual functions be available from different suppliers?
Yes, it’s an open platform and an ecosystem of partners. We’ve announced some partners and the ecosystem will expand over time. We’ve announced Juniper, Cisco, Brocade.

The appeal to the customer is fewer appliances to manage?
There are different value propositions with the universal CPE concept. One is you go from having multiple boxes to having one box. That’s a big deal. Just from power consumption and having less to worry about, that’s a big deal.

The other thing that is important is, because the functionality is being delivered through software that can be downloaded at any time, the issue around box obsolescence is less of a problem over time. And the installation cycle time agility plays out here as well. Historically, if we were to install multiple boxes on a customer premise, that typically happens sequentially and it may take 30 days for the first one and upwards of 90-120 days all told. In the future this is a plug-and-play model.

Does NetBond fit into this picture?
As we talk about the AT&T SDN story, NetBond is an element of that story. NetBond is basically secure connectivity to third-party clouds. Today if a customer wants to take advantage of NetBond and AT&T’s Switched Ethernet on Demand, they can. In the future I expect they will become more and more integrated and it will just be an extension of an overall on-demand experience. They both can be used today but they’re not fully integrated through one management pane of glass.

Thursday, 17 December 2015

10 signs it's time to look for a new job

In the high-stakes world of high tech, a subtle look can be enough to know it's time to jump ship to a new gig

10 signs layoffs are coming for your job next
The signs are usually hiding in plain sight. Your boss doesn’t give you the time of day anymore. Large groups of people go out for lunch -- then never come back. The company stock takes a nosedive.

When these things start to happen, it may be time to grab a life jacket and head for the nearest escape raft. Yes, the boat is sinking and about to take you with it.

Don’t go down with the ship. Downsizing and layoffs aren’t a laughing matter for those who suddenly find themselves without a paycheck. But many companies have become a parody of themselves in how they handle such monumental changes. That’s why we decided to have a little fun at their expense. Hopefully if you’ve experienced a layoff yourself, this will give you a laugh, too.

Here’s our take on the signs you should watch out for. If nothing else, you may know what the problem is if your email suddenly doesn’t work.

Co-workers simply ... disappear
Weren’t Devin and Susie simply making a run for the nearby food truck? That’s what you thought -- but that was Tuesday. Today is Friday. Yes, right before the layoffs begin, you might notice a slow drip of people who peace out for good. Usually it means that something is up, and for some reason others are privy to the details. Time to ask around and find out if you should be the next one to check out one of the mysterious taco trucks.

Big company meeting, little advance notice
The dreaded all-hands meeting -- as you might have guessed, a lot of things that aren’t all that good come from it. It could be a new product rollout. Or it could be the word you haven’t been waiting for: you and your colleagues don’t work there anymore. If you get an invite to an “all hands on deck” meeting, maybe you want to have one foot out the door just in case.


The company bus careers right by
You show up to work as normal, coffee in hand and ready to get some work done on the company bus. You see it coming. You make sure your bag is adjusted, laptop in hand.

Then, there it goes. Yes, the company bus has blown by you. Sure, this scenario may be a little far- fetched, but with the way that some companies treat those whom they unceremoniously dump, is it really so unlikely? It might be worth taking the train or walking to the office the next few days if there are any signs of this unsavory behavior.


You start getting strange looks
Maybe you’ve noticed something different about the way your boss looks at you. Their eyes tend to glance off into another direction. You approach him or her with a question, and instead of answering, they suddenly have a phone call or a meeting to run off to. You’re getting the cold shoulder. Was it something you said? A reflection on your performance? Nope, it’s the look of someone who knows too much.


That (dreaded) meeting is cancelled
You likely aren’t thrilled by the weekly calendar invite to the team planning meeting. Before you rejoice that you’ve avoided the most boring part of your week, consider another scenario: It’s cancelled because there’s no one to attend. Companies tend to slack off right before a major cull, so be wary if your schedule suddenly frees up because all those riveting meetings are canceled.

The mood swings low, low, low
Company morale often ebbs and flows. But you may want to pay particular attention to things if there’s a longer, widespread depression spell. You know the feeling -- everyone looks around like they’re an extra in "The Walking Dead." No one chats around their desks or the time-honored water cooler. If you see such symptoms, ask around and see if there’s more to it. This way you don’t have to show up one day to an empty office.

Suspicious training assignment
It may sound innocent enough. A fresh face arrives in the office, and you’re assigned to show them how things work. All goes well until you realize they have the same title and responsibilities as you. Yep, you’re training your replacement. It happens, so be a bit wary about that next eager hire who gets a little too comfy at your desk.

Merger talk
It’s often best to avoid rumors, but sometimes you have to pay attention so that you aren't left out of the loop when it comes to a potential merger. Yes, usually before a company is acquired by another there is some type of scuttlebut that leaks out. Listen to those who engage in such nefarious talk or implore you to keep information on the down low. This may be your tip that it’s time to dust off the résumé and hit the pavement for a new gig.

Your company’s stock price upends
If you work at a publicly traded company, keeping investors happy is a major part of success. Investors are like your mama: If she’s not happy, ain’t nobody happy. Just like what happened with Twitter, when the stock tanks and numbers (in this case user growth) aren’t good, then get ready to see fewer co-workers around. If things are heading south, perhaps you should be heading out.

The box of shame
Most businesses love Dropbox. It holds onto what you want and is easy to use. Unfortunately, there’s another beloved storage tool that fits the bill: a cardboard box. If you see such a contraption on your desk, you’re probably about to be sent packing. Gathering your stuff and heading out the door is the office equivalent of the walk of shame. The best you can do is to get through it. But at least you’ll have a new toy for your cat.


Friday, 4 December 2015

10 offbeat, odd, and downright weird places you'll find Linux

Why worry about the desktop when you've conquered everything else?

The OS that took over the world
Let's just get this out of the way: this isn't the year of Linux on the desktop. That year will probably never arrive. But Linux has gotten just about everywhere else, and the Linux community can take a bow for making that happen. Android, based on the Linux kernel, is so prevalent on mobile devices that it makes the longstanding desktop quest seem irrelevant. But beyond Android there are a number of places where you can find Linux that are truly odd and intriguing, and by "places" we mean both strange devices and weird geographical locations. This slideshow will show you that it's always the year of Linux pretty much everywhere.

Robot milking machines
Leave it to the Swedes to come up with a kinder, gentler milking machine: a "voluntary milking system" that cows enter when they want to be milked and are rewarded with a delicious "dietary concentrate." The decision-making smarts of the VMS are powered by a tiny single-board computer running a compact Linux distribution. This job ad from DeLaval, the company that makes the VMS, looking for a Linux software engineer, gives you a sense of what exactly is involved in making this dairy robot work.

In-flight entertainment systems
The seatback screens in airplanes that allow you to scroll through movies and listen to music are powered by Linux, more often than not. Panasonic pitches its systems to airlines in hilariously semi-informed fashion as "leveraging robust standards such as Ethernet, Linux, and MPEG"; based on the fairly easy-to-find tales online of these systems spontaneously rebooting mid-flight, they aren't doing Linux's rock-solid reputation any favors. At least one software expert accidentally figured out how to lock your system up, if you're bored and feel like denying yourself in-flight movies some day.

The International Space Station
When I put out feelers to potential sources saying I was writing about Linux in odd places, the good people at the Linux Foundation were justifiably eager to tell me that the laptops that astronauts and cosmonauts use day-to-day on board the International Space Station run Linux; the Foundation had helped train staff to deal with, as they put it, "dozens of laptops [with] extensive development needs for a very small number of users." The Linux Foundation folks were perhaps too kind to mention the reason why the ISS transitioned these computers to Linux: they used to run Windows, but they got terrible malware infections.

North Korea
Back in 1999, when I was an editor at IDG's LinuxWorld site, our sysadmin was very excited to learn about Red Flag Linux, a distro being developed in China, a country that was only beginning to open its economy up to the West. While that distro seems to have mostly been a way to gain leverage in the Chinese government's battle with Microsoft, North Korea is using open source to power its computers as it remains isolated: Red Star OS powers the Hermit Kingdom's computers, even though the GUI's been given a superficially OS X-like makeover.

Sea-robots
Liquid Robotics is a company working to develop autonomous nautical robots -- solar-powered, ocean-going versions of the drones that are becoming more and more ubiquitous in the skies. While the company is perhaps most famous for snagging Java developer James Gosling as its tech honcho, it's also using Linux as the OS for its robo-vessels, which are going on year-long journeys. Think they're encountering any real-life penguins out there in the water?

Crock Pot WeMo Smart Slow Cooker
You might think that the defining feature of a slow cooker is its simplicity: you put stuff in it, turn it on, it gets warm, and six or eight hours later you have a pot roast. But what if you can't be there to turn it off in time? Well, you could buy the slightly more expensive model with a timer ... or you could pay $130 for a Wi-Fi enabled Crock Pot WeMo Smart Slow Cooker, which runs on embedded Linux and is controllable from your cell phone, wherever you are! Sure, it seems to turn off when it loses Wi-Fi connectivity, but you don't want to live with a non-Internet-capable slow cooker like some kind of medieval peasant.

Nuclear submarines
The U.S. nuclear submarine fleet has used Linux to power various systems for more than a decade, a development that began as important control systems started migrating up the stack from hard-wired individual components to overarching software. In particular, much of the sonar systems the Navy relies on are Linux-powered. Reliance on software makes security particularly important, and resistance to malware is one of the reasons the Navy rejected Windows. Not everyone shares their concerns, though: the U.K.'s Royal Navy apparently thinks that Windows is good enough for their nuclear subs.

Missionary work in Nigeria
The Transformational Eduction Network is a Christian missions organization operating throughout West Africa. One of their goals is to increase educational opportunity, and to that end they're teaching students to use not just Windows, but Ubuntu Linux. Kwangs Dauda, the young Nigerian man shown in the photo here, was particularly excited about this aspect of his education, declaring that "When you learn how to use the computer you can preach through the computer."

Barbie's dream house, er, cubicle
A few years ago, in an attempt to modernize Barbie's brand, Mattel came up with a host of possible new jobs for her. To help move past the "math is hard!" debacle, one of these new career paths was computer programmer -- and while Barbie has her choice of development environments, her cube has some Tux the Penguin art, so we're just going to assume she uses Linux. The Liberal Murmurs blog spun a tale in which she became a Debian developer, but we must regretfully admit that this remains non-canon as of press time.

Terrible, pointless computers
Sure, any OS can run on a good computer. But Linux is famous for being able to run anywhere, any time, no matter how ill-advised. So why not put it on a system powered by an 8-bit microcontroller, which you use to emulate a 32-bit ARM chip, with the whole thing running effectively at 6.5 Khz and taking two hours just to boot to a command line? Why not install it on a dead badger? (Do not attempt on a live one, as they have claws and teeth and such.) It's Linux's flexibility and suitability for even the most ill-advised environments that make the other actually useful weird Linux installs in this slideshow possible.

Wednesday, 25 November 2015

200-601 IMINS2 Managing Industrial Networks for Manufacturing with Cisco Technologies

200-601 IMINS2
Managing Industrial Networks for Manufacturing with Cisco Technologies


Exam Number 200-601 IMINS2
Associated Certifications CCNA Industrial
Duration 90 Minutes (65 - 75 questions)

This exam tests concepts and technology commonly found in the automated manufacturing environment. This exam tests candidates on the Common Industrial Protocol (CIP) and ProfiNET industrial protocols and the underlying support network infrastructure design to maximize efficiency within Industrial Ethernet.

Exam Description
The exam Managing Industrial Networks for Manufacturing with Cisco Technologies (CCNA IMINS2) certification exam (200-601) is a 90 minute, 65 – 75 question assessment. This exam tests concepts and technology commonly found in the automated manufacturing environment. This exam tests candidates on the Common Industrial Protocol (CIP) and ProfiNET industrial protocols and the underlying support network infrastructure design to maximize efficiency within Industrial Ethernet.

The following topics are general guidelines for the content likely to be included on the exam. However, other related topics may also appear on any specific delivery of the exam. In order to better reflect the contents of the exam and for clarity purposes, the guidelines below may change at any time without notice.

1.0 IP Networking 20%
1.1 Describe the difference between enterprise environments and industrial environments
1.2 Describe the components for making the data flow highly available and predictable in an industrial environment (QoS, IP addressing, protocol, and hardware resiliency)
1.3 Interpret and diagnose problems that are related to QoS
1.4 Describe the differences between redundancy and resiliency requirements / approaches between the Enterprise and the plant floor
1.5 Differentiate the capabilities of switch types
1.6 Describe the life cycle of a multicast group
1.7 Describe and configure the operation and use cases for NAT
1.8 Describe and configure the operation and use cases for static routing
1.9 Describe and configure VLAN trunking to a virtual switch
1.10 Describe and configure Layer 2 resiliency protocols (Spanning Tree, REP, Flex Links, and Etherchannels)
1.11 Configure switch ports ( macros, threshold alarms)

2.0 Common Industrial Protocol (CIP) Knowledge and Configuration 19%
2.1 Explain the CIP connection establishment process
2.2 Explain producer/consumer models and implicit/explicit message models
2.3 Recognize communication abilities and capacities in different hardware/hardware generations (revisions)
2.4 Identify and describe the technologies that enable CIP Motion and CIP Safety
2.5 Identify the applicability, limitations, and components of a DLR implementation
2.6 Implement multicast features for CIP within a LAN
2.7 Optimize RPI on a CIP connection given a set of parameters
2.8 Enable and configure IEEE 1588 PTP at the system level
2.9 Configure the Stratix using the Add On Profile (AOP) in Studio 5000

3.0 ProfiNET Knowledge and Configuration 19%
3.1 Describe the differences in ProfiNET support between Cisco catalyst and Cisco Industrial Ethernet (IE) switches
3.1.a Support for VLAN 0
3.1.b Support for ProfiNET LLDP
3.1.c Support for GSDs (integration into SIMATIC STEP 7)

3.2 Describe the operation and purpose of ProfiSAFE
3.3 Describe the three basic ProfiNET devices and conformanceclasses
3.4 Describe the ProfiNET application classes and communication channels
3.5 Describe DHCP and how it can be used for IP addressing of devices and configuration pushes
3.6 Describe ring network requirements for ProfiNET
3.7 Enable ProfiNET on the switch
3.8 Enable Layer 2 QoS to ensure ProfiNET is prioritized
3.9 Integrate the Cisco Industrial Ethernet Switch in SIMATIC STEP 7
3.10 Configure and monitor ProfiNET alarm profiles on IE switches

4.0 Security 12%
4.1 Describe the defense in-depth approach to securing the industrial zone
4.2 Identify how a security component (hardware/software) applies to a network device to meet the network security definition of defense in depth
4.3 Describe network device hardening
4.4 Describe the concept and mechanisms of implementing logical segmentation
4.5 Identify possible options to control traffic between zones (ACLs, firewalls, VLANs)

5.0 Wireless 10%
5.1 Describe the differences between 802.11a/b/g/n/ac
5.2 Describe the components that you need to build multiple wireless networks on a single access point
5.3 Describe the difference between autonomous and controller-based access points and wireless workgroup bridges
5.4 Demonstrate a typical switchport configuration for autonomous and controller-based access points
5.5 Describe the limitations of using a workgroup bridge with a control communication

6.0 Troubleshooting 20%
6.1 Troubleshoot advanced Layer 1 problems such as mechanical deterioration, electromagnetic noise issues, and infrastructure mismatches
6.2 Troubleshoot VLAN trunking
6.3 Troubleshoot an error disabled port
6.4 Troubleshoot basic spanning tree port state and root priority problems
6.5 Troubleshoot Layer 3 problems by inspecting route tables and NAT tables
6.6 Troubleshoot Layer 3 problems in a VRF-lite enabled environment
6.7 Demonstrate the ability to find the location of a device within a multi-switch network given an IP address
6.8 Identify methods for troubleshooting a communication problem in a CIP environment
6.9 Troubleshoot CIP using an Ethernet/IP browse tool, command line, and a web browser
6.10 Troubleshoot device communications performance
6.11 Identify the source of cable and device faults in a DLR
6.12 Identify methods for troubleshooting a communication problem in a ProfiNET environment
6.13 Troubleshoot ProfiNET using SIMATIC STEP 7 to view network topology, use the switch command line


Friday, 13 November 2015

LX0-104 Implementing Cisco Video Network Devices (VIVND)

QUESTION 1
Which of the following commands puts the output of the command date into the shell
variable mydate?

A. mydate="$(date)"
B. mydate="exec date"
C. mydate="$((date))"
D. mydate="date"
E. mydate="${date}"

Answer: A


QUESTION 2
What is the purpose of the file /etc/profile?

A. It contains the welcome message that is displayed after login.
B. It contains security profiles defining which users are allowed to log in.
C. It contains environment variables that are set when a user logs in.
D. It contains default application profiles for users that run an application for the first time.

Answer: C


QUESTION 3
When the command echo $$ outputs 12942, what is the meaning of 12942?

A. It is the process ID of the echo command.
B. It is the process ID of the current shell.
C. It is the process ID of the last command executed.
D. It is the process ID of the last command which has been placed in the background.

Answer: B


QUESTION 4
What output will the following command produce?
seq 1 5 20

A. 1
6
6

B. 1
5
15

C. 1
2
3

D. 2
3
5

E. 5
15
20

Answer: A


QUESTION 5
Which of the following SQL queries counts the number of occurrences for each value of the
field order_type in the table orders?

A. SELECT order_type,COUNT(*) FROM orders WHERE order_type=order_type;
B. SELECT order_type,COUNT(*) FROM orders GROUP BY order_type;
C. COUNT(SELECT order_type FROM orders);
D. SELECT COUNT(*) FROM orders ORDER BY order_type;
E. SELECT AUTO_COUNT FROM orders COUNT order_type;

Answer: B

Monday, 2 November 2015

HP is now two companies. How did it get here?

HP's split follows more than a decade of scandals and missteps

If Hollywood wanted a script about the inexorable decline of a corporate icon, it might look to Hewlett-Packard for inspiration. Once one of Silicon Valley's most respected companies, HP officially split itself in two on Sunday, betting that the smaller parts will be nimbler and more able to reverse four years of declining sales.

HP fell victim to huge shifts in the computer industry that also forced Dell to go private and have knocked IBM on its heels. Pressure from investors compelled it to act. But there are dramatic twists in HP's story, including scandals, a revolving door for CEOs and one of the most ill-fated mergers in tech history, that make HP more than a victim of changing times.

HP isn't down and out: It could still confound skeptics and return some of its former glory. But the breakup is an inauspicious moment for a company that was once one of the tech industry's finest. Here are some of the events that got HP to where it is today.

The Compaq acquisition: Much has been said about HP’s 2001 buyout of its larger PC rival, and the story is back in the news thanks to then-CEO Carly Fiorina’s U.S. presidential campaign. Without getting bogged down in whether Carly made a huge error, it’s safe to say that the deal did not set HP up for the future. Dell’s direct sales model was about to turn the industry on its head, and tablets and smartphones would deal a blow from which PCs have never recovered. HP bet big on a losing horse.

The pretexting scandal: You want a movie script? In 2006, HP admitted it had hired private investigators who spied on its own board members to figure out who was leaking company information to journalists. Criminal charges against HP executives were eventually dropped, but it cost the jobs of board chair Patricia Dunn and several other top staff. It was an embarrassing distraction at a time when HP needed to get down to business.

The EDS purchase: Buying a big IT services company in 2008 looked like a smart way for HP to diversify into more profitable areas, but HP “never unlocked the value from the deal they were looking for,” says IDC analyst Crawford Del Prete. Soon after, the market turned from large outsourcing deals to smaller contracts, and HP was riding the wrong horse again. Its services business continues to struggle.

Mark Hurd scandal: Like Fiorina, Hurd is a divisive figure for HP watchers. What's undeniable is that his relationship with R-rated movie actress Jodie Fisher cost him his job and kicked off a disastrous string of events for HP. More contentious is whether Hurd’s rampant cost-cutting stunted innovation and set HP up to fail. Del Prete doesn’t see it that way: Hurd slashed expenses, was adored by Wall Street, and probably would have reinvested some of those savings in the long term, he says. Regardless, his ouster kicked off the most damaging period in HP’s history. Hurd was forced to resign, ostensibly over an inaccurate expense report. If only his successor's missteps had been so trivial.

Leo Apotheker. Oh Leo, what were you thinking? Or maybe that’s a question for HP’s board. The former SAP chief took over from Hurd in September 2010 and managed to do a lot of damage before his ouster 11 months later. "He was really a software sales and marketing executive," says Del Prete. "He had a hammer and everything became a nail." Among the highlights of his tenure:

The Autonomy debacle: The New York Times has called it “the worst corporate deal ever,” and it’s hard to argue it didn’t contribute mightily to HP’s woes. HP shelled out $11.1 billion for the U.K. software maker and took a write-down of $8.8 billion the following year, effectively admitting that it had drastically overpaid. HP claims it was hoodwinked by Autonomy's management, and lawsuits are ongoing, but there’s evidence that HP rushed the deal without knowing what it was getting into. It was another big distraction for HP and gave more ammunition to investors who wanted change at the company.

The PC blunder: At the same time it bought Autonomy, Apotheker announced that HP was considering a sale of its PC division. It wasn’t a terrible idea — IBM did the same and hasn’t looked back — but dithering about it in public for many months caused uncertainty that hurt HP’s business and helped its rivals.Apotheker also killed off HP's webOS smartphones and tablets, which HP gained when it bought Palm for $1 billion a year earlier. At a time when smartphones were the hottest item in tech, it was a curious decision, to say the least.

Revolving doors: Before a year was up, HP’s board had had enough and Apotheker was replaced by Meg Whitman, the company's third CEO in 13 months. Her first move: announcing that HP would keep its PC division after all. Whitman seemed an unlikely choice after her 10 years running Ebay, but she's won praise for making the best of a tough assignment.

Cloud confusion: It's an open question whether an enterprise IT company needs its own public cloud, but it's now clear that HP won't have one. It said a few weeks ago it will shut down its Helion cloud services in January, and focus instead on "hybrid" infrastructure and partnering with other cloud providers. HP's public cloud was another initiative started by Apotheker, though one wonders if HP couldn't have done a bit more with it after four years of effort.

None of these events alone landed HP where it is today. The move to cloud computing and collapsing PC market played a role, along with the ongoing decline in proprietary high-end Unix systems. The failure of Intel’s Itanium processor, on which HP bet the farm in systems, was also a major setback.

Despite all the missteps, the two HPs remain formidable entities, each with some $50 billion in revenue. HP Inc., which will sell PCs and printers, is unlikely to produce much growth, but the PC business can generate a good amount of cash, as Michael Dell has proved. And the core infrastructure business of Hewlett-Packard Enterprise has "never been executing better," according to IDC's Del Prete, who pointed to its 3Par storage gear and industry-standard servers.

"We don't see customers being at risk from the split," he said, meaning IDC isn't advising HP customers to shop around.

What matters, he says, is whether Hewlett-Packard Enterprise can make the right acquisitions and partnerships over the next 24 months to bring back some growth.


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