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HP0-Y29 - Installing an HP Networking IP Telephony(R) Solution - Dump Information

Vendor : HP
Exam Code : HP0-Y29
Exam Name : Installing an HP Networking IP Telephony(R) Solution
Questions and Answers : 67 Q & A
Updated On : February 15, 2019
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HP0-Y29 Questions and Answers

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HP0-Y29 Installing an HP Networking IP Telephony(R) Solution

Study Guide Prepared by Killexams.com HP Dumps Experts


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HP0-Y29 exam Dumps Source : Installing an HP Networking IP Telephony(R) Solution

Test Code : HP0-Y29
Test Name : Installing an HP Networking IP Telephony(R) Solution
Vendor Name : HP
Q&A : 67 Real Questions

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HP Installing an HP Networking

how to connect an HP computing device to a wireless gadget | killexams.com Real Questions and Pass4sure dumps

Wireless Internet offers many advantages.

instant information superhighway presents many merits.

Martin Poole/Stockbyte/Getty photos

HP produces a full line of computing device computers designed for organizations, and most of them connect quite simply to a wired router or activate local community. despite the fact, most HP computers would not have Wi-Fi adapters for connecting to a instant router or community. therefore, in case you wish to connect an HP desktop to the workplace instant router, you ought to deploy a network adapter and configure it in your Wi-Fi community.


Simplified Sophistication: installation FiTech EFI | killexams.com Real Questions and Pass4sure dumps

gasoline injection has been round for a long time. in fact, the first of the mechanical variety seemed on French aircraft within the early 1900s, however most of us are extra usual with the early methods pioneered for race vehicles through Ed Winfield and Stu Hilborn.

via the ’50s mechanical gas injection changed into usual on all sorts of American competition cars whereas Mercedes and different European manufacturers begun the use of a type of it constructed with the aid of Bosch on production automobiles. On this facet of the pond it was the legendary Rochester fuel injection that became attainable in 1957 on Corvettes and Pontiac Bonnevilles that made American lovers recognize the deserves of fuel injection for street-pushed efficiency functions.

the primary to try and combine digital controls and gas injection for automobile use turned into Bendix, an organization most advantageous time-honored for his or her twin-servo brake design. Bendix began work on their Electrojector within the core of the ’50s. Rambler is declared to have experimented with it and Chrysler provided it as an choice in 1958 but the Electrojector turned into difficulty plagued and most were replaced with carburetors to hold consumers chuffed (satirically Bosch purchased the rights to the Bendix design, which three decades later became the Bosch D-Jetronic). through the mid ’70s GM added a basic electronically managed fuel injection on the Cadillac Seville and by way of the ’80s sophisticated digital desktop controls became the norm.

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As often happens with new expertise, the aftermarket embraced digital gasoline injection then traced the OEM’s trajectory in the construction of it. like the OEMs, the first aftermarket contraptions were crude and problem susceptible. Many hand manual alterations to “tune” the equipment whereas riding. In some circumstances, it was viable to “tune” the engine except it wouldn’t run and shortly there have been greater methods for sale low-priced at swap meets than there have been on operating automobiles. thankfully those days are long gone.

It got here as no surprise that with the increasing sophistication of aftermarket fuel injection the complication of installing increased as neatly. there have been digital manage devices to mount and a lot of sensors connected by a large, bulky wiring harness. And if the setting up manner wasn’t satisfactory to scare off some buyers, the fee changed into. both these concerns were addressed by means of FiTech.

picking out a SystemThe team at FiTech has years of experience producing ECMs for industrial, marine, and OE applications and that resulted in their budget friendly aftermarket gas injection methods that use OEM-degree engineering and add-ons. FiTech presents quite a lot of throttle physique methods, port injection, and LS induction methods, however for our purposes we’re coping with simply the throttle bodies—and there are a couple of them to choose from, which may look puzzling in the beginning. despite the fact, the option method is standard adequate; opt for the device for the horsepower the engine produces, vigour adders reminiscent of nitrous, superchargers (E85 functions are also attainable), the cars use, and if ignition timing handle is preferred. There are additionally systems that use twin-quad and three-two throttle our bodies.

Go highway EFI one hundred fifty-400 hpNot each person wants or has 600 hp or a wild camshaft. This equipment is for original engines or crate replacements like the ZZ4. The Go street EFI is a competent-to-run device that eliminates the programmable facets whereas providing the fundamental capabilities vital to get the gold standard efficiency and economic system out of your street and mild performance engine. It uses four fifty six-pound injectors and the integrated ecu will also handle one engine-cooling fan.

convenient road EFI a hundred and fifty-600 hpThis gadget is a step up for engines with a more aggressive cam and gentle engine enhancements. It uses four sixty two-pound injectors.

imply road EFI 200-800 hpFor high-efficiency road functions this equipment comprises eight sixty two-pound injectors and AFR correction skill to be used with nitrous systems. It comes with a color touch-monitor.

Go EFI 4 200-600 hpThis device is excellent for an regularly occurring driver, a weekend cruiser, or bracket racer. It aspects ignition timing handle and is fitted with 4 eighty-pound injectors. This system is purchasable in matte black and brilliant aluminum.

Go EFI 4PA 200-600 hpThe PA stands for energy adder, which potential this equipment handles of 25 pounds of enhance appropriate out of the container and may be used in a blow-via turbo or blower application or on a single roots-trend supercharger. it will also accommodate a single stage of wet nitrous and manage air/gas ratios in addition to ignition timing. It makes use of four eighty-pound injectors; the european will operate two enthusiasts and it offers the option to tune with a desktop desktop.

Go EFI 8 vigour Adder Plus 250-1,200 hpAlthough here's the top-rated device for severe energy builder it's going to work equally smartly on an everyday driver. This device facets eight 80-pound high-movement injectors, the annular discharge design is increased to 20 jet streams to handle the big stream this unit is in a position to, and it comes with facts-logging and seasoned-tuning utility. it is going to address 25 kilos of boost right out of the box and can be utilized in a blow-via faster or blower application or it can also be installed on a single roots-style supercharger.

Go EFI three×2 Tri-PowerThis gadget makes use of three 500-cfm throttle our bodies with an exterior european that incorporates all of the features of the Go road EFI series. The finish on the two-barrel throttle bodes is traditional carburetor gold.

Go EFI 2×4 twin QuadNothing says muscle like dual quads and FiTech offers them in several configurations. The EFI 2×four 625hp package uses one throttle body that handles all of the brains while the 2nd holds four further injectors and the IAC motor for idle balance. These can also be used in cross ram and tunnel ram configurations. This equipment is obtainable in vivid aluminum or matte black.

for 6-71 and eight-71 Roots Superchargers or invariably aspirated functions that produce 1,200 hp there's the Go EFI 2×four energy Adder package. increase air/gas targets are essential to alter whereas timing curves will also be retarded in accordance with raise in the course of the touch-reveal controller. This equipment is simply accessible in matte black finish.

InstallationFirst off if you’re setting up a FiTech equipment in a automobile that has an automated transmission and it’s quintessential to tap into the TPS for a trans controller put everything back in the field and order a TPS Breakout Harness from Casper’s Electronics (www.caspersmfg.com), or one in all FiTech’s approved distributors.

installation a FiTech throttle body is ready as advanced as swapping automobile­buretors. The protected wiring harness is certainly labeled and simplest two sensors have to be put in, the CTS (coolant tempera­ture sensor) within the consumption manifold and the O2 sensor (oxygen sensor) in the exhaust device. The eu (electronic manage unit) and the different sensors, the IAC (idle air manage), TPS (throttle place sensor), MAP (manifold absolute power), and gasoline power regulator are incorporated within the throttle body of all the programs. (The one exception is the 3×2 gadget that uses an external european.)

For the initial setup, all FiTech EFI sys­tems use a different controller. After input­ting a number of basic values the superior Self Tuning characteristic makes any alterations indispensable. After initial setup, the screen can also be configured to screen handy-to-examine gauges for monitoring or advanced tuning alternatives.

gasoline deliver SystemsAll conventional FiTech EFI techniques are available with one in all 4 distinct gas start alternatives: inline gas pump, fuel Command center, Hy-gas, or G-Surge. while there are other external pump alternate options in addition to in-tank decisions, one of the most least difficult to integrate methods is the FiTech fuel Command middle. This self-contained unit includes a gasoline tank with a submerged 340 L/PH pump to give the gas injections device. The engine’s normal carbureted gasoline pump (or a TBI low-drive EFI pump) fills the tank and a waft meeting like that found in a carburetor automatically shuts off the fuel flow when the proper fuel level is reached.

subtle Doesn’t mean ComplicatedRecently we put in a FiTech easy street 600hp system on a huge-block Ford. The swap from a carburetor to gas injection turned into short and simple as we had planned for this in increase by using installing an in-tank electric powered gasoline pump. The handiest modification integral became the removing of the drive regulator and rerouting the return line. probably the most time-consuming a part of the job turned into installation the O2 sensor bung within the exhaust gadget.

After making the few electrical connections quintessential we entered the imperative advice in the handheld unit, hit the ignition change, then hit the street. The self-getting to know characteristic had all features of efficiency dialed in inside a couple of days of riding, except for returning to idle. although, that become with ease corrected with a simple adjustment on the handheld unit. Like we pointed out, if you’re trying to find elementary sophistication, FiTech’s bought it.

FiTech offers lots of self-tuning gasoline injection kits which are convenient to deploy, cost-efficient, and clear looking. here's a simple road unit considered from the front.

seen from the rear, the gasoline inlet (correct) and return (left) can be considered. The fittings are AN-6.

All FiTech’s TBIs characteristic normal linkage connections for the throttle and a transmission throttle valve cable (if required). observe the linkage operates all four throttle blades simultaneously.

here's the throttle position sensor on the appropriate facet. It alerts the throttle opening, which is used together with other sensors to adjust gas movement.

here is a TPS Breakout Harness to connect to a transmission controller. Be mindful, effectively splicing into the FiTech harness will void the warranty.

The circular housing with two bolts is the constructed-in fuel power regulator. Injectors can be found in a number of finishes, together with bare aluminum, matte black, and the classic carburetor gold (shown here).

behind the throttle physique is the Idle Air handle it really is flanked via a pair vacuum accessory ports on the rear of the throttle body.

The IAC adjusts engine speed by using moving its plunger in and out of the idle air passage, as crucial.

FiTech’s throttle bodies accept usual-dimension air cleaners. The core hole is threaded for an air cleaner stud, the small hole above it truly is the idle air skip

FiTech’s four-barrel throttle bodies use the general rectangular four-bolt pattern and will fit most inventory and aftermarket consumption manifolds. Single- or twin-plane manifolds may also be used.

FiTech comprises air cleaner and manifold gaskets.

also covered is the wiring to control an electrical engine cooling fan and an idle velocity raise signal when the air conditioner clutch is engaged.

here's the coolant temperature sensor (CTS). It screens operating temperature for gas/spark adjustments. it's considered one of handiest two sensors no longer mounted to the throttle physique.

The Bosch wideband oxygen sensor is installed within the exhaust system. It offers the eu with the assistance that permits the device to self-learn and reside inside established air/gas ratios at idle, cruise, and vast-open throttle.

To simplify installation of the oxygen sensor FiTech contains this threaded adapter and high-temp gasket. After drilling a gap within the exhaust equipment, the protected clamps cling the sensor in place.

To simplify installation of the oxygen sensor FiTech includes this threaded adapter and excessive-temp gasket. After drilling a hole within the exhaust device, the included clamps hold the sensor in area.

The FiTech touch-reveal controller simplifies the initial setup—answer a few questions and let the self-learning diagnostics take it from there.

When changes within the state of tune are vital, the controller enables brief and straightforward changes on the fly. as soon as the equipment is dialed in the controller can be eliminated.

here is the windshield mount for the handheld controller. We’ve left the controller in vicinity for all of the tips it offers.

one of the fittings blanketed is for plugging the return fitting on the throttle physique when an exterior power regulator is used (comparable to discovered on the gasoline Command core).

The throttle valve opening at idle is adjusted with the screw seen behind the mounting stud (arrow).

We used the stock Ford linkage to join the throttle—the customary throttle return spring is hooked to the unused hole for a throttle valve cable.

FiTech’s throttle body is clean and compact. The injectors are hidden at the back of removable covers.

FiTech offers in-tank retrofit gas pump kits with single and twin pumps for top-horsepower applications. These methods will also be used as a return or returnless equipment with using the constructed-in regulator.

The gas Command core consists of a gas reservoir and high-force pump. The gasoline line that in the beginning went to the carburetor is connected to the “IN” port; the “OUT” port connects to the throttle body.

The Go EFI gas beginning kit contains a 255 L/PH external inline fuel pump capable of handling as much as 600 hp. The kit includes fuel strains, fittings, and two billet gasoline filters (a one hundred-micron pre-filter and a 30-micron post filter), and ample top rate nice hose for an inlet and return line. (observe that after the use of this pump a return line to the fuel tank is required.) FiTech offers lots of self-tuning fuel injection kits that are handy to deploy, reasonable, and clear looking. here is a straightforward street unit considered from the front. viewed from the rear, the gasoline inlet (right) and return (left) will also be seen. The fittings are AN-6. All FiTech’s TBIs function commonplace linkage connections for the throttle and a transmission throttle valve cable (if required). be aware the linkage operates all four throttle blades concurrently. here is the throttle position sensor on the correct side. It signals the throttle opening, which is used along with different sensors to modify fuel flow. this is a TPS Breakout Harness to hook up with a transmission controller. Be aware, quite simply splicing into the FiTech harness will void the guarantee. The round housing with two bolts is the developed-in fuel power regulator. Injectors are available in numerous finishes, together with naked aluminum, matte black, and the traditional carburetor gold (shown here). at the back of the throttle physique is the Idle Air manage that's flanked by means of a pair vacuum accessory ports on the rear of the throttle physique. The IAC adjusts engine speed by relocating its plunger out and in of the idle air passage, as essential. FiTech’s throttle our bodies accept usual-size air cleaners. The center gap is threaded for an air cleaner stud, the small gap above it truly is the idle air bypass FiTech’s 4-barrel throttle our bodies use the average rectangular 4-bolt pattern and may healthy most stock and aftermarket consumption manifolds. Single- or dual-aircraft manifolds will also be used. FiTech includes air cleaner and manifold gaskets. also blanketed is the wiring to handle an electric engine cooling fan and an idle velocity increase signal when the air conditioner grab is engaged. here is the coolant temperature sensor (CTS). It monitors working temperature for gasoline/spark alterations. it is one in all best two sensors not hooked up to the throttle physique. The Bosch wideband oxygen sensor is put in within the exhaust equipment. It gives the european with the suggestions that permits the equipment to self-gain knowledge of and dwell inside based air/gas ratios at idle, cruise, and extensive-open throttle. To simplify installing of the oxygen sensor FiTech includes this threaded adapter and excessive-temp gasket. After drilling a hole in the exhaust gadget, the protected clamps grasp the sensor in vicinity. To simplify installing of the oxygen sensor FiTech contains this threaded adapter and excessive-temp gasket. After drilling a hole within the exhaust gadget, the protected clamps cling the sensor in area. The FiTech touch-monitor controller simplifies the initial setup—answer a number of questions and let the self-gaining knowledge of diagnostics take it from there. When adjustments in the state of tune are crucial, the controller allows short and simple adjustments on the fly. as soon as the equipment is dialed in the controller may also be eliminated. this is the windshield mount for the handheld controller. We’ve left the controller in vicinity for the entire suggestions it provides. one of the crucial fittings covered is for plugging the return becoming on the throttle physique when an external power regulator is used (akin to found on the gasoline Command middle). The throttle valve opening at idle is adjusted with the screw considered at the back of the mounting stud (arrow). We used the inventory Ford linkage to join the throttle—the common throttle return spring is hooked to the unused gap for a throttle valve cable. FiTech’s throttle body is clean and compact. The injectors are hidden at the back of detachable covers. FiTech presents in-tank retrofit fuel pump kits with single and twin pumps for prime-horsepower purposes. These methods can also be used as a return or returnless system with using the built-in regulator. The gas Command middle consists of a gas reservoir and excessive-power pump. The gasoline line that originally went to the carburetor is related to the “IN” port; the “OUT” port connects to the throttle body. The Go EFI gasoline beginning kit contains a 255 L/PH exterior inline gas pump capable of dealing with up to 600 hp. The equipment contains gas strains, fittings, and two billet gasoline filters (a a hundred-micron pre-filter and a 30-micron put up filter), and enough top class best hose for an inlet and return line. (observe that after the usage of this pump a return line to the gasoline tank is required.)

home Lab Deep Dive: A Networking student's Cisco-Centric domestic Lab | killexams.com Real Questions and Pass4sure dumps

February 11th, 2019 by way of guest creator

My lab began about a yr in the past generally with Cisco networking gear. i am a networking pupil; so amongst other issues i am taking courses for the CCNA. the style we've it damaged up is into 4 components. Cisco 1 and a pair of cover the CCENT, and three and 4 cowl the rest of what you want for the CCNA. i am in Cisco 4 right now, so i am just finishing up. In our labs, we have a rack filled with apparatus for two americans. or not it's really complicated to safely study networking in Packet Tracer. it be viable, but there may be things it can not do, and also you additionally do not gain knowledge of what cables to make use of and such with it, given that you can simply have it select the gold standard cable for you. i admire to work with physical gear, and after we had labs that we didn't have type time for, I didn't like being caught there later at night, considering that i am forty five minutes from home.

as a result I started building a lab at home to supplement my college activities. My lab started with here:

  • Cisco 2960 24 port swap - WS-C2960-24TT-L
  • Cisco 2960+ 24 port switch - WS-C2960+24TC-L 3750
  • Cisco 48 port change - WS-C3750-48TT-L 3560
  • Cisco 48 port swap - WS-C3560-48TT-L
  • 4x Cisco 1841 router
  • here's identical to the device we now have at college, except that we use Cisco 1941 routers. so far as i will inform, they're functionally similar except that the 1841s are 10/100Mb in its place of 10/one hundred/1000Mb, and that the hardware is reduce conclusion. My main aim right here changed into that if I vital to do a bunch of labs, I failed to must dwell 2 or 3 hours previous when my day turned into over at school to do them. With Cisco three, that stopped working as smartly, considering the fact that we paired up a whole lot and vital two people working together and double the gadget. Cisco four is greater WAN-concentrated, and it looks like I should be in a position to do a few of that at domestic this time around.

    From there, I had been lurking on /r/homelab, and at all times wanted to play round with other non-networking hardware to circular out my training. i finished up picking out up a Dell PowerEdge R710 with twin X5660s and 32GB of RAM without a drives for $250 shipped. Admittedly, this wasn't the most appropriate deal, but I didn't recognize that on the time, homelabbing is an education in itself. That R710 is operating ESXi now, with issues like a Pi-gap and Plex all virtualized. Let me let you know notwithstanding, getting drives in that server turned into an event.

    I took the easy way out, and found some inexpensive 600GB HGST drives for $20 every. turns out each one among them was formatted as 520 bytes/sector other than one Toshiba 600GB drive that I got from a distinct vendor. So $30 later, I had an H200 that I flashed to IT mode, and used a donor force to install CentOS, and used sg3utils to low degree reformat the drives, on account that the H700 and H200 can most effective see 512 bytes/sector. within the process, three of those drives died. one of those became sketchy to start with, which the vendor replaced for me, and shortly after, the Toshiba failed, too. At that factor, i stopped up just choosing up 3 substitute Dell licensed drives for $forty each and every from Homelab Hero.

    in spite of everything that happened, about 3 months ago i stopped up getting an HP ProLiant DL380 G6 from someone that changed into about a half an hour from me, for free. this is been its own particular hellscape. it's just a little louder than the Dell, however it's additionally operating four 15K drives in it, so it be now not the lightest on vigor consumption. it's in fact tied again into the networking right now, because I put in pfSense on it about 2 weeks in the past to exchange my EdgeRouter X. As of at the moment, I actually have 2 VLANs over a trunk to a new to me Dell PowerConnect 5548 that I received a couple of days ago. My plan is finally to improve that to 10GbE, but that is a bit of later down the road yet. I did manage to set up OpenVPN, and i'm the use of CloudFlare for dynamic DNS in order that i will be able to access my domestic network remotely if I should, and i changed into playing with setting up WAN failover. I also knew pfSense might deal with instant, so i used to be toying with that some as neatly. I found out an ancient USB instant adapter labored, and configured that as a WAN to connect with my cell's hotspot in case our web at domestic goes down, on the grounds that it's satellite.

    In concept this sounds like a superb idea, and it's manner less complicated than tethering. bear in mind that I actually have 7GB of data per month. In follow although, i am fairly certain I simply discovered a very productive means of letting my whole home network consume that statistics like or not it's popcorn. I haven't rather found out how stupid of an idea here's yet, but all i will be able to say is that once i used to be surroundings it up, I had a type of "what the hell am I doing?" moments.

    it really is where i am presently. At some point, i am planning on upgrading the pfSense field to 10GbE, and at last relocating it to a custom construct, given that the HP server is vigor hungry, overkill for pfSense, and loud. Then, i'll probably are trying and run 10GbE to the Dell too, and maybe delivery hooking up things like my laptop by way of 10GbE, i'm no longer certain. that is a whole different rabbit gap notwithstanding, so for now, this is the place i am at. Like most I seem forward to my next set of challenges.

    - Andy Yasger

    This put up is part of an ongoing collection of person-submitted content dedicated to exploring the enjoyable and challenges of constructing, protecting and sometimes building once again a home lab. This collection is in partnership with our friends at /r/homelab. if you're drawn to sharing your installation, please ship an electronic mail to information@storagereview.com


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    Installing an HP Networking IP Telephony(R) Solution

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    Streaming Cisco's IP Communicator to an HP thin client | killexams.com real questions and Pass4sure dumps

    Streaming the Cisco IP Communicator (VoIP client) to HP's XPe thin client (t5720) using Citrix Presentation Server...

    Platinum Edition (now XenApp Platinum) is at this stage still a concept and has not yet been qualified as a complete solution. Still, streaming VoIP directly to the endpoint, instead of publishing, has many benefits that merit serious consideration.

    Recently, I collaborated with Mike Dougherty, consulting engineer with Cisco Systems; Modesto Tabares, senior developer (primary "super-smart" engineer responsible for VoIP integration at Citrix); and Derek Thorslund, product strategist, Citrix Systems.

    First, we will go over why you would use Citrix technology to implement this as a solution.

    Streaming versus publishingLet's talk about why you need to stream VoIP instead of publishing it. ICA is a TCP-based protocol that does not have UDP support built in at this time. TCP is notorious for degrading much more quickly over high-latency networks than UDP. Performance over ICA is simply not yet where it needs to be for real consideration as a "production" solution (especially if there is an SLA tied to it).

    Some people may feel I am overstating or even exaggerating this point. I have been made aware of at least one customer that has deployed VoIP over ICA and been impressed with the performance. Basically, it is my understanding that this specific customer is running this solution via LAN only using high-speed network connections. In this scenario, all the traffic from the VoIP PBX to the "published" soft phone is via UDP. From the XenApp Server to the endpoint is where you will get latency. This could potentially make sense as a use case for smaller environments (if they can afford the bandwidth). In larger enterprise shops where WAN is the name of the game, it is not compelling.

    Perhaps I am being a bit black and white about the whole thing. In terms of production and performance, however, I think it's the end-user experience that really matters today. By streaming VoIP, you are landing it locally on the endpoint and it is connecting directly to the Cisco Call Manager Server instead of relying on ICA.

    In the current incarnation of XenApp 4.5, VoIP over ICA is not supported, since soft phones need to open the audio device more than once (first for ring tone, then again for the voice path). This is expected to be resolved with MS 2008 and the Delaware release of XenApp. Even with these improvements, however, VoIP over ICA may not be a realistic solution for some or most customers. I will reserve judgment until I see it in production.

    I do know that Citrix is working on a new codec that may address some of the above concerns about bandwidth, and it is actually pretty impressive. If you are interested, check out Derek's video demo.

    I think everyone is familiar by now with the benefits of streaming in general. It centralizes management, reduces desktop support and allows administrators to roll out application updates easily. You just edit the application profile, and the next time a user logs on, the updated application is streamed down. Another cool thing to consider is that with Citrix streaming, you can allow users to check out their license, so if for some reason the Citrix farm experiences an outage, the users still have access to the VoIP system.

    Barriers to successful streamingThere are some known barriers to Citrix's streaming solution. You cannot stream applications that have driver, DCOM or service dependencies and expect the modules that have these features to function. The IP Communicator is a great example; Today, Cisco's E911 is nonfunctional because it has a driver dependency.

    There are also some known barriers to streaming applications to a thin client. One issue is the footprint of the application. There is no hard drive. The cached application is stored in flash memory. This is a consideration when looking at the size requirement of the cached data and what its resource requirements are.

    Another issue is the interpretation of the Microsoft licensing agreement for Windows XPe. This may be a non-issue, since embedded operating systems are widely used for telephony, but Microsoft has not made any public statement to endorse running soft phones on WinXPe, so it is up to you as the customer to review your licensing agreement and interpret it appropriately.

    Project Alice (reverse seamless)This is one of the most exciting projects (to my mind) that Citrix is developing today. It could have a direct impact on deploying solutions such as VoIP in VDI scenarios. Think about it in terms of the issues with performance degradation via ICA/TCP. As far as I am concerned, the only "real" option for this today is landing it locally on the endpoint so it connects directly with the Call Manager Server. If you streamed this to the client or even used Altiris or SMS to land it locally, it would still show up on the user's virtual desktop as an icon. It would appear to be seamless to them even though it is actually on the endpoint.

    You may wonder why I would do this instead of using Altiris or SMS. The end goal is the same, right? It is, but if you are a Citrix admin in a large shop, you are likely to want to keep control of all of your applications and how they are delivered.

    There is also the license angle. If you have the streaming licenses to begin with, why not leverage them? It's also nice to have one vendor to blame for everything; Besides, Citrix is used to being the first suspect; they can handle it.

    Now let's go over the streaming implementation steps, in case you want to try this yourself.

    IntroductionThis document describes the steps necessary to be able to use the Cisco IP Communicator software as a client-side virtualized application on XenApp (new name for Presentation Server).

    The major steps described in this procedure are:

  • Creating the application profile for the Cisco IP Communicator software.
  • Preparing the client endpoint device.
  • Deploying and launching the application
  • This document assumes you have a working XenApp PS 4.5 installation and are familiar with using the Application Streaming feature (also referred to by Citrix as client-side application virtualization) in XenApp.

    Requirements The steps described in this document require the following products:

  • XenApp Presentation Server with FP
  • Citrix Delivery Client (SV) 10.1
  • Citrix Delivery Client (CV) 1.1
  • Cisco IP Communicator 2.1.1
  • HP Compaq t5720 thin client, with a minimum of 512 MB RAM and 1 GB of flash memory
  • InstallationCreating the application profile for the Cisco IP Communicator software.

    When creating the application profile for the Cisco IPC using the Citrix Streaming Profile, you need to select "Advanced Install" in the profile wizard (this is necessary because some registry keys need to be updated as part of the profiling).

    The streaming profiling sequence will consist of two steps. In the first step, the Cisco IPC installation will be profiled by selecting the "Run install program or command line script" option in the profiling wizard. A "virtual restart" is not required. At the end of the Cisco IPC installation, do not check the "Launch Cisco IP Communicator checkbox."

    Once the Cisco IPC installation in the profile has completed, select the option to "Perform additional installations" in the profiling wizard.

    The next step is to update some registry settings in the newly created profile. Select the "Edit registry" in the profiling wizard.

    Click on "Launch Windows Registry Editor" to bring up regedit. Using the regedit, create the following DWORD value in the registry with value of '0'. HKLM\SOFTWARE\Cisco Systems, Inc.\Communicator\EnableCDP = 0

    Note that the above step disables the use of the Cisco Discovery Protocol by the IP Communicator software. This is done to prevent the software from displaying error messages related to CDP, since the client-side application virtualization environment does not support it (it is, after all, a service). It is important to note that this change in the registry will also disable the E911 functionality of the IP Communicator without warning to the end user.

    Finish the profiling by selecting "Finish installations" in the profiling wizard.

    Complete, sign (optionally), and save the profile as you would with any other application.

    Preparing the client endpoint deviceThe HP thin client must be prepared for client-side application virtualization by installing the Citrix Streaming Client. Note that the HP client comes preconfigured with a write-filter that will discard, upon a reboot, any changes made to the client. This can be avoided by either "committing" the changes or disabling the write-filter. Please consult the HP documentation accordingly.

    As of this writing, the Windows XP embedded HP thin client (t5720) does not support USB audio devices out-of-the-box. USB headsets provide a superior audio experience when compared with the use of analog headsets with the HP thin clients.

    In order to add support to the HP thin client for USB headsets, copy the following two files from any XP PRO 32-bit machine into the same location in the client:

  • C:\windows\system32\drivers\usbaudio.sys
  • C:\Windows\inf\wdma_usb.inf
  • NOTE: These files are part of the base image of the HP t5730 Thin Client and can be downloaded here.

    It is possible that during the deployment of the streamed Cisco IPC to the HP thin client, the client may run out of space in its temp folder. To correct this problem, you must disable the HP write-filter and set the TEMP and TMP environment variables to a folder in the C: drive (by default they point to locations in the Z: drive). Note that the steps described in this document can be applied to PCs running Windows XP SP2 as well.

    Deploying and launching the applicationAt this point, you are ready to publish and launch the Cisco IPC in the same way that you would any other streamed application. You should publish two applications:

  • The Audio Tuning Wizard, which will allow the end users to customize and tune their endpoint audio configuration.
  • The Cisco IP Communicator, which is the soft phone itself.
  • Once the application is streamed and running on the client, it must be configured to communicate with the Cisco Call Manager, just as a locally installed instance would.

    Important notes – Cisco IP Communication considerationsThe following are two issues that need to be considered. Today there are no workarounds. However, it is my understanding that these are not showstoppers to a pilot rollout, and they are being addressed by Cisco.

    Enhanced 911 not functionalOne of the steps described in this document is to disable the use of CDP (Cisco Discovery Protocol) by the Cisco IP Communicator. This prevents the IP Communicator from displaying CDP-related error messages. The Citrix client-side application virtualization environment does not support CDP because it is a service. Citrix's client-side virtualization (or app streaming in normal terms) has a few drawbacks, one of them being lack of support for any feature in a streamed app that requires a service.

    The E911 implementation in IP Communicator has a dependency on CDP; therefore, disabling CDP will also disable E911. The impact of this is that if the user makes a 911 call, no location information is provided. The risk that location information will not be transmitted correctly is a general issue with soft phones (it is not localized just on thin clients or streamed apps). The callers have to be able to provide location information themselves.

    Impersonation risk (or spoofing)The security model employed in this release of the Cisco IPC depends on a regular user not having access to the HKLM area of the registry. When the Cisco IPC runs inside the client-side application virtualization environment, it will always have access to the HKLM area of the virtual registry regardless of whether he/she is a regular user. This has the side effect of allowing any user to configure his instance of Cisco IPC as that of any other user in the system. Potentially, this could be used to receive another person's phone calls or to impersonate another person when making calls. If the real user does not have a password on his/her voice mailbox, the impersonator could potentially retrieve the user's messages. Cisco and Citrix are currently exploring whether certificate-based authentication overcomes this problem.

    While all of these components are supported individually, they have not been qualified as a complete solution at this time. It is my understanding that the three vendors are looking for customers that would like to evaluate this solution in a pilot environment before they endorse production deployment.

    Note: Though this has not been tested on the new HP t5730 thin client, the procedure described in this article should work on it as well.

    About the author:Glenda Canfield is an expert on virtualization in the enterprise and has more than 10 years of experience designing and supporting on-demand data centers. Her experience includes large distributed data centers with concurrent Citrix connections in the tens of thousands. Glenda is also an expert speaker, with experience presenting at major Citrix and desktop virtualization conferences, including Citrix Summit 2008 and BriForum 2008. Glenda currently works for ComputerTech, based in Richardson, Texas. 


    Implementing Security, Part II: Hardening Your UNIX/Linux Servers | killexams.com real questions and Pass4sure dumps

    Continuing with part 2 of this two-article series, Joseph Dries helps you continue to expand upon your list of basic security processes by looking at UNIX/Linux hardening, protecting your servers from network based TCP/IP attacks, and utilizing centralized logging servers.

    This article was excerpted from The Concise Guide to Enterprise Internetworking and Security.

    "A commercial, and in some respects a social, doubt has been started within the last year or two, whether or not it is right to discuss so openly the security or insecurity of locks. Many well-meaning persons suppose that the discussion respecting the means for baffling the supposed safety of locks offers a premium for dishonesty, by showing others how to be dishonest. This is a fallacy. Rogues are very keen in their profession, and already know much more than we can teach them respecting their several kinds of roguery. Rogues knew a good deal about lockpicking long before locksmiths discussed it among themselves, as they have lately done. If a lock—let it have been made in whatever country, or by whatever maker—is not so inviolable as it has hitherto been deemed to be, surely it is in the interest of honest persons to know this fact because the dishonest are tolerably certain to be the first to apply the knowledge practically; and the spread of knowledge is necessary to give fair play to those who might suffer by ignorance. It cannot be too earnestly urged, that an acquaintance with real facts will, in the end, be better for all parties." —Charles Tomlinson's "Rudimentary Treatise on the Construction of Locks," published around 1850

    It has been said that the wonderful thing about standards is there are so many to choose from. The same choice is available in the UNIX arena. There are two basic flavors, BSD-derived and AT&T System V-derived. BSD-derived UNIX systems include OpenBSD, FreeBSD, NetBSD, BSDi, MacOS X, and SunOS 4. System V-derived UNIX systems include HP-UX and Solaris (SunOS 5). Other UNIX systems, such as AIX, provide commands that will act BSD-ish or System V-ish, depending on how they were invoked. Linux is not derived from any UNIX, but depending on the distribution, borrows from both BSD and System V semantics. Actually, Linux itself is just the operating system kernel and supporting drivers. Most Linux distributions use the GNU system (http://www.gnu.org), thus they are called GNU/Linux distributions. There are hundreds of available GNU/Linux distributions, but even the "top 5" are different in their default commands, startup scripts, filesystem layout, included utilities, and packaging systems.

    What does this mean to you? Unlike Windows NT, including Windows 2000, it is a far more complex process to describe how to harden a UNIX/Linux server. This next section provides some common procedures that can be applied across UNIX versions and GNU/Linux distributions. Following that are some pointers to living documents on the Internet, which track available data and releases, and go into a more detailed account of how to harden a server for a particular task.

    Common Steps for Hardening UNIX/Linux Servers

    The process of building a UNIX or GNU/Linux server for use as a firewall or DMZ server begins with installation. Eliminating points of attack, such as filling the filesystem, or removing unnecessary libraries and services, is equivalent to removing possible entry points for intruders.

    Some common guidelines for configuring UNIX servers with a more secure default stance are available from CERT's Web site at ftp://info.cert.org/pub/tech_tips/UNIX_configuration_guidelines.

    Partition for Protection

    Besides having separate partitions for the obvious, such as SWAP and /tmp, you should protect against out-of-disk-space denial-of-service attacks. Intruders might try to create excessive generation of logging data or fill your file system with large files through FTP or mail spool. The best way to protect against this is to segment the filesystem hierarchy into separate physical partitions.

    The root partition / can be small because it generally contains just the kernel—the necessary files, libraries, and configuration for booting in /bin, /sbin, /etc, and /lib. Access to the attached devices is provided through the /dev and /devices directories. Many GNU/Linux distributions store kernels and symbol data in the /boot directory, whereas kernel libraries are stored under /lib.

    The /usr partition is normally where user-accessible applications are stored. Normally, /usr does not contain data or configuration files that change; therefore, an added security measure can be mounted as read-only.

    The /var partition stores system logs and data services such as mail, Web, databases, printing, running services, package management, and so on. On a mail server, you might want to make /var/spool/mail, or /var/mail in Solaris, a separate partition, or—even better—a separate disk array. If you only create one separate partition from /, /var is the one you should separate.

    The /usr/local directory structure, and in Solaris the /opt directory, often contains locally installed optional software, configuration files, and data. /usr/local is normally not affected by operating system upgrades. Depending on how you use those directories, they too can be mounted as read-only.

    These are suggestions and guidelines only, and are different from recommended settings for a system that contains user accounts, usually in /home.

    Disable Extraneous inetd Services

    inetd is the UNIX "Internet Super Server." It is a daemon process that is invoked at boot time and reads in a flat file configuration database normally found at /etc/inetd.conf. inetd listens for incoming connections on the defined IP ports. When a connection is initiated on a defined port, it invokes the configured program to service the request. After the connection is finished, the process invoked to service that request terminates. This was originally designed to lighten the load and resources required for systems.

    There are a number of services enabled through inetd, and almost all of them should be disabled for building firewalls and DMZ servers. Besides normally disabling FTP, TFTP, Telnet, and the Berkeley r* commands, disable the following:

  • in.named—BIND name services daemon. Except for your DNS servers, you should not be running DNS on your firewall or DMZ servers.

  • in.fingerd—Finger daemon that can be used to show user information and lists of users who are logged in. There is no reason to advertise that information to would-be intruders.

  • daytime—Connections to this service display the date and time on the system in a string format. Getting the date and time of a system is useful for an intruder trying to implement replay attacks.

  • time—Connections to this service return the time as a 32-bit value representing the number of seconds since midnight 1-Jan-1900. Do not provide intruders with your exact system time.

  • echo—This is a diagnostic service that echoes incoming data back to the connecting machine.

  • discard—This is a diagnostic service that does not echo (thus discarding) the incoming data stream back to the connecting machine.

  • chargen—This is a diagnostic service that automatically generates a stream of characters sent to the connecting machine.

  • systat—Connections to this service provide a list of all processes and their status.

  • netstat—Connections to this service provide a list of current network connections and their status.

  • Install and Configure tcp_wrappers

    Install and configure Wietse Venema's tcp_wrappers on both your firewall and DMZ servers. tcp_wrappers allows you to define access control to various services, depending on a limited set of criteria, such as username, IP address, or DNS domain.

    You might be asking why it's necessary to configure and install additional products when your firewall will be doing the same thing. And that's a valid question. The answer is to avoid single points of failure, and to provide security in layers. If one layer is pierced and bypassed, other layers will be standing guard behind the breach.

    tcp_wrappers are lightweight and extremely useful on internal servers; not just on firewalls and DMZ servers. Keep in mind that most information security breaches, intentional or accidental, happen internally. It's only the external defacements, massive distributed denial of service (DDoS) attacks, virus-du-jour, and stolen credit card databases that grab the press. That, and misplaced hard drives with highly sensitive nuclear information.

    tcp_wrappers have two main files that allow access to the individually defined services. The following two files are checked for rules governing access to individual or wildcard services:

    /etc/hosts.allow /etc/hosts.deny

    Like most firewalls, access is granted or denied on the first matching rule. The rules are checked in order, first in hosts.allow and then in hosts.deny.

    Care should be taken when using the KNOWN or UNKNOWN wildcards. ALL will always match whatever criteria you are testing. Read the hosts_access manual page included with tcp_wrappers for further details on syntax and rules setup.

    tcp_wrappers is installed and configured by default on most GNU/Linux distributions and BSD releases. For those UNIX systems that do not have tcp_wrappers installed by default, they can be found at ftp://ftp.porcupine.org/pub/security/index.html. Retrieve the source, compile, and install the binaries on the servers.

    Lock Down Your DNS Server

    The Berkeley Internet Name Daemon, or BIND, is the reference implementation of the name service providing DNS for the Internet. The Internet Software Consortium (ISC) is responsible for implementing and maintaining BIND. There are three basic versions of BIND: BIND 4, BIND 8, and (recently) BIND 9.

    BIND 4 has been around forever, and has its share of exploits. Only very old versions of UNIX systems and GNU/Linux distributions came with BIND 4. Still, you'll be surprised how many installations still have the older BIND 4 running. You should upgrade to a newer version of BIND. The unfortunate thing is that the file format defining the zones served by the server has changed. There are conversion scripts, but there is sure to be some hand editing.

    BIND 8 is the current stable release, and offers many more features and better control and granularity in access control. The settings described later are discussed with BIND 8 in mind.

    BIND 9 was released late in 2000. It offers many new features, such as IPv6 support, DNSSEC, full Dynamic DNS, incremental zone transfers, multiple views (internal, external, and so on) from a single server, and scalability improvements. If any of those features are important to your configuration, you should investigate using BIND 9; otherwise, it's best left to the adventurous.

    Although almost all UNIX systems and GNU/Linux distributions come with BIND as the name server, it is important you make sure you are at a recommended release. Before deploying a DNS server, internally or on the DMZ, make sure it is at least version 8.2.2-P5. Any version prior to that has serious exploits. This warning should not be ignored. The Internet Software Consortium themselves have issued a statement that if you are running any version of BIND prior to 8.2.2-P5, you should assume your server has already been compromised. Check your UNIX system or GNU/Linux distribution. If the version of BIND is not at least 8.2.2-P5, check with your vendor for upgrades. If an upgrade is not available, you can compile a version of BIND yourself on a workstation, and install the binaries on your server. The source code can be found at http://www.isc.org/products/BIND/.

    First, restrict zone transfers to specific secondary servers in your primary zones. The acl command allows you to define an access control list composed of blocks of addresses to be used with a named identifier. Using ACLs provides a self-documenting method of administrating the named.conf configuration file. In the following example, we define two ACLs comprising our externally visible DNS servers and the secondary servers at our ISP:

    acl your-company-dns { 172.16.30.12; 172.16.30.24; }; acl your-ISP-dns { 199.177.202.10; 204.95.224.200; };

    The following allow-transfer option directive placed in your named.conf file will default all defined zones to only allow transfers for the defined hosts:

    options { allow-transfer { your-company-dns; your-ISP-dns; }; };

    You can override the allow-transfer statement in the options directive by placing the allow-transfer statement in the zone definition:

    zone "yourdomain.com" { type master; file "db.yourdomain-com"; allow-transfer { 172.16.30.12; 192.168.71.200; }; }

    The default allow-transfer option will prevent zone transfers to hosts not specified in the ACLs. However, if you want to restrict all zone transfers on your secondary servers and any secondary zones on your primary servers, use predefined match list none. This can be accomplished with the following allow-transfer directive in your zone definitions:

    zone "yourdomain.com" { type slave; file "db.yourdomain-com.s"; masters { 192.168.71.1; }; allow-transfer { none; }; };

    Finally, because you will be allowing recursive queries through your servers, it's best to enable access control lists for your internal networks. Using a nested, named acl with the allow-query option in the zone definition, you can then restrict recursive queries to internal hosts only as seen in the following example:

    acl internal-net { 192.168.71.0/24; }; acl dmz-net { 172.16.30.0/24; }; acl trusted-hosts { localhost; internal-net; dmz-net; }; zone "yourdomain.com" { type master; file "db.yourdomain-com" allow-query { trusted-hosts; }; };

    Que's Concise Guide to DNS and BIND by Nicolai Langfeldt is a wonderful resource to further grok BIND configuration and maintenance.

    Tighten Sendmail Default Options

    Send mail comes with just about every UNIX/Linux installation as the default mail transfer agent (MTA). As a result of being so widely installed, it has been estimated that sendmail handles a majority of the email on the Internet. Because it runs as suid root, sendmail exploits affect millions of machines.

    sendmail version 8.11.0 is available at the time of publication, and supports new features such as STARTTLS and SMTP AUTH encryption. Upgrade to the newest version available, if possible, but please make sure that you are running a version no later than version 8.9.3 because of security exploits.

    To enable the Realtime Blackhole List feature, use the following in your sendmail.mc file:

    FEATURE(rbl)dnl

    Additionally, you might want to disable the SMTP VRFY and EXPN commands in sendmail. These commands are often used by intruders to gather information about your system:

    define(´confPRIVACY_FLAGS', ´novrfy,noexpn')dnl

    There are several additional flags you can set to make sendmail have a more secure stance:

  • authwarnings—Add X-Authentication-Warning header in messages on certain conditions that might indicate mail system spoof attempts.

  • needmailhelo—Require that the sending site uses the SMTP HELO command first when connecting to send email.

  • needexpnhelo—Require that the sending site uses the SMTP HELO command before allowing any EXPN usage.

  • needvrfyhelo—Require that the sending site uses the SMTP HELO command before allowing any VRFY usage.

  • noreceipts—Disable Delivery Status Notification (DSNs) of delivery and read receipts.

  • goaway—Set all flags except restrictmailq and restrictqrun.

  • restrictmailq—Prevent users from using the mailq command to view the contents of the mail queue.

  • restrictqrun—Stop users from processing the queue.

  • Better than sendmail: Making Postfix Your MTA

    According to its Web page, Postfix's goals are "to be fast, easy to administer, and secure, while at the same time being sendmail compatible enough to not upset existing users."

    Postfix was primarily written by Wietse Venema of tcp_wrappers fame. Postfix was designed to be modular, thus Postfix is not a single executable like sendmail; rather, Postfix comprises a collection of specialized programs that perform specific tasks. All the programs except for the master control process (oddly called master because it runs without root privilege) run as nonprivileged users, limiting the damage an attacker can inflict on your system. Because of the speed, ease of configuration (and thus less chance of misconfiguration), and security, it is recommended that you investigate replacing sendmail with Postfix. For those of you who do not dream in sendmail.cf syntax, Postfix will make email administration both easier and more secure.

    Postfix is now distributed with most GNU/Linux and BSD releases, although it is not often installed by default. Usually, it is a simple matter of installing it via your package management system, or (in the BSD case) via the ports collection.

    If you are using an operating system that does not distribute Postfix, despair not. You can download and compile the sources easily on a development workstation and then install the binaries on your mail server. The sources, FAQs, and documentation can be found at http://www.postfix.org/

    Linux-Specific Tasks

    There are many GNU/Linux distributions out there. Each vendor has its own installation process, which usually changes between new versions of the vendor's distribution. The "forerunners" of GNU/Linux distributions are Red Hat, SuSE, TurboLinux, Mandrake, Caldera, Slackware, and Debian. That does not mean specifically that you should use any one of them because the high number of distributions allows vendors to tailor their GNU/Linux distributions to specific tasks such as embedded systems, routers, and firewalls. Take the time to carefully investigate the available distributions, and determine which best fits your needs.

    With that said, two of these general distributions stand out, but for different reasons. Red Hat, because it has had the most name recognition, and is usually the first to get any sort of corporate support in the way of commercial software or commercial technical service. Many vendors, such as Oracle, IBM, and Check Point, have released products for Red Hat-specific distributions. This does not mean that those software releases will not run on other GNU/Linux distributions, but if there is a problem, the vendor might not support your installation of its product on a non-Red Hat distribution.

    Debian is the second distribution that deserves mention. First, not because it is entirely free, but because it is maintained by a nonprofit organization made up entirely of volunteers. These volunteers are highly motivated by quality and pride in their efforts to make Debian the most stable and completely 100% free distribution available. Debian has proven to be extremely stable and easy to manage and upgrade remotely. The upgrade process is by far the easiest of any of the GNU/Linux distributions. Debian installations can be upgraded without the need for reboots, replacing every installed package and running process excepting the kernel. Additionally, the Debian packaging system and its front ends allow extremely fine-grained control over which packages, utilities, libraries, and files exist on your system. Debian also is currently available on six different architectures, with more than 3,900 included software packages to select from when installing.

    For both Debian and Red Hat installations, you should choose custom installations, and select the individual packages you want on your system. There should be no need to install development packages, any of the new KDE or GNOME desktops, and certainly not X Window. Unfortunately, neither distribution yet has a minimal secure server or firewall predefined install-set.

    During the installation process, you should choose to enable shadow password file support; choose to use MD5 hashes for the passwords rather than the normal crypt function. If you miss these options during the install, you can change them after installation. In Red Hat, use the setup utility. In Debian, you can use the shadowconfig utility to enable or disable shadow passwords. To enable MD5 hashes, you have to edit the appropriate files under /etc/pam.d to include md5 on the password lines.

    You should also enable ipchains support, even if this is an application server on the DMZ. ipchains provides additional layers of security, and allows you to protect the server from traffic should the firewall fail for some reason. A sample ipchains configuration is discussed later in the article.

    You should additionally read and monitor the security and errata/updates lists from your distribution vendor. With Debian, it is extremely easy to automatically install security updates using the apt-get utility. For Red Hat installations starting with the 6.0 release, there is the up2date utility to retrieve updated packages for your release.

    For those people who choose to install Red Hat Linux, there is a security-related project called Bastille Linux, whose aim is not just to harden your Linux installation, but to educate the administrators on how to harden the system. Bastille Linux supports Red Hat and Mandrake Linux distributions with project goals to become distribution, and UNIX flavor, agnostic. The Bastille Linux product is a set of scripts that asks a series of questions and then allows you to apply those modifications to your system. The questions describe what needs to be done, why it should be done, and why you might not want to do it. It is very educational, especially for those administrators just getting familiar with Linux. Bastille Linux can be found at http://www.bastille-linux.org/.

    Another excellent source of information for administrators is the Linux Administrator's Security Guide. It covers an extremely wide array of topics related to Linux and security. You can find the Linux Administrator's Security Guide online at http://www.securityportal.com/lasg/.

    Solaris-Specific Tasks

    Solaris has four default install-sets: Core, End-User, Developer, and Entire Distribution. Installing any install-set higher than the Core installation will enable more services than are required for DMZ servers or firewalls. In reality, you can often remove a significant percentage of the default Core install-set, depending on your server's application requirements.

    For Solaris-based servers, there are several excellent documents from Sun in its Blueprints Online archive at http://www.sun.com/software/solutions/blueprints/online.html. The following three papers are excellent starting points for building secure Solaris servers:

  • "Solaris Operating Environment Minimization for Security: A Simple, Reproducible and Secure Application Installation Methodology" by Alex Noordergraaf and Keith Watson. Although this paper specifically covers the iPlanet Web server requirements, similar requirements are necessary for using Apache or other Web servers.

  • "Solaris Operating Environment Security" by Alex Noordergraaf and Keith Watson. An overview of general security options on a Solaris server. This paper includes some specifics for the SPARC architecture; however, most of the material is applicable to Intel architectures as well.

  • "Solaris Operating Environment Network Settings for Security" by Alex Noordergraaf and Keith Watson is another excellent paper on kernel tuning and application parameters that affect network security.

  • As a matter of fact, Sun's Blueprints Online is a wealth of whitepapers outlining Best Practices regarding Solaris Operating Environments, whether it is a DMZ Web server, firewall, or internal highly available database cluster.

    Lance Spitzner also has an excellent Solaris hardening document that details the hardening process for building a Check Point FireWall-1 firewall on several recent versions of Solaris (through version 8) for the Intel and SPARC platforms. The living document resides at http://www.enteract.com/~lspitz/armoring.html.

    Finally, there is an equivalent to the Bastille-Linux hardening scripts for Solaris called TITAN. The TITAN project and documentation can be found at http://www.fish.com/titan/.

    OpenBSD-Specific Tasks

    This section concentrates on OpenBSD 2.7, which is one of the three more famous BSD variants; the others being NetBSD and FreeBSD. Each variant has focused on a different problem: NetBSD is the most portable, FreeBSD has the best performance, and OpenBSD is the most secure.

    One of the great strengths of OpenBSD is the highly secure default stance of a default install of OpenBSD. The OpenBSD Web site claims "three years without a remote hole in the default install, only one localhost hole in two years in the default install." Almost all services are disabled until the administrator has enough experience to properly configure them.

    Two additional changes necessary for an OpenBSD box to become a firewall are to disable sendmail and enable IP filter support. Both changes are made to the same file, /etc/rc.conf. To disable sendmail, change

    sendmail_flags="-q30m"

    to

    sendmail_flags=NO

    To enable IP filter support, you must change

    ipfilter=NO

    to

    ipfilter=YES

    Additionally, if you will be doing Network Address Translation (NAT), providing transparent proxying, or providing support for FTP, you must enable the ipnat option by setting ipnat=YES. Syntax for IP filters will be covered briefly later in the chapter.


    Cisco Introduces Video Surveillance Manager 7 with Suite of Hyper-Scalable Connected Physical Security Solutions | killexams.com real questions and Pass4sure dumps

    SAN JOSE, Calif., Sept. 6, 2012 – Cisco today announced Video Surveillance Manager 7.0, the industry's first solution built from the ground-up and certified to run in Cisco's virtualized Unified Computing System (UCS) environments. These new solutions now make it possible for customers in healthcare, public sector and retail to move beyond traditional basic safety and security surveillance deployments and use video to transform the way they run their businesses through hyper-scalability and ease of configuration. 

    Today's announcement also includes introducing a complete new line of medianet-enabled high definition IP video surveillance cameras, an extension of its medianet strategy, and remote management services. All of these are designed to help IT and security teams partner to implement very-large scale video deployments.

    This next-generation of intelligent network-integrated video surveillance and IT applications offer unrivaled ease of use and speed of deployment. As IT departments are tasked with dealing with increasingly large amounts of data – particularly video – the ease of migration of video surveillance to IP continues to accelerate.

    Analysts estimate that by 2013, more than 50 percent of all video surveillance deployments will be managed by IT on the IP network in order to support this deluge of bandwidth-heavy video data.  These new technologies offer economies of scale to enable video-based innovations, all with unprecedented ease of implementation. This will give applications of video beyond security include remote patient observation solutions for healthcare, dramatically reducing shrinkage in retail and warehousing, and allowing urban video protection initiatives as well increasing the efficiency in providing enhanced citizen services.

    Cisco Video Surveillance Manager 7.0 and new versions of Cisco's related end-to-end Connected Physical Security Solutions, including Cisco IP Interoperability and Collaboration Solution 4.5.2, Cisco Physical Security Operations Manager 6.0 and Cisco Physical Access Manager 1.4.1 are now available for deployment with Cisco's industry award-winning Unified Computing Systems platforms.  These integrated solutions help to extend Cisco's medianet strategy by providing robust scalability, network aware intelligence, streamlined implementation and simplified management.

    Key Facts:

    Introducing Video Surveillance Manager 7.0

  • Network-integrated video surveillance supports open cloud-ready web and IT applications through APIs and SDKs, and is purpose-built to virtualize security operations on Cisco UCS B-Series, C-Series and UCS Express.
  • VSM 7.0 is designed for applications such as video recording and provides streaming support for video-enabled locations such as; customer contact centers, integrated oil and gas applications, inventory and warehouse management operations and many others.
  • VSM 7.0 scales to support up to 10,000 IP Video Surveillance cameras per single Video Surveillance Manager instance, and up to 100,000 cameras when combined with Cisco Physical Security Operations Manager (PSOM).
  • Extending Cisco's medianet strategy

  • New medianet phase 3 capabilities support IP Video Surveillance cameras that work together with embedded medianet services in Video Surveillance Manager 7.0 and across Cisco's medianet enabled switches and routers on the network, enabling rapid automatic configuration to simplify large scale deployments.
  • Cisco Media Services Proxy (MSP) enables users to prioritize traffic based on business policies for optimal quality, reduced integration costs and easy deployment and management of video endpoints. MSP uses lightweight packet inspection techniques on standards-based signaling protocols including DNS, RTSP, SIP, H.323 and H.245.
  • New Cisco Video Surveillance 6000 Series IP Cameras

  • A new line of medianet-enabled IP Cameras support better imaging with low-light, feature on-board SD cards with flash memory, IP66 rating and come in four form factors including Box IP Camera, dome IP Camera, indoor/surface and flush and outdoor IP dome.
  • All of the new Cisco cameras support High Definition and 2.1 megapixel resolutions, best-in-class industry standards and medianet services allowing for rapid auto-configuration, registration, auto-provisioning, troubleshooting and IP Video Surveillance bandwidth policy management.
  • Additional features include n+1 redundancy, high availability on a camera-by-camera basis to optimize IT, network, storage, security and related network resources.
  • Remote Management Services

  • Cisco is introducing Remote Management Services to help customers ensure the 24x7 reliable uptime needed across their Unified Computing Systems platforms and network-integrated Connected Physical Security deployments for Video Surveillance, Unified Incident Management, and Access Control and Security Operations Manager applications solutions.
  • Supporting Quotes:

  • Guido Jouret, general manager & CTO, Emerging Technologies Group at Cisco: "Similar to the evolution of telephony, physical security is today becoming an IP-based solution to optimize scalability and reduce complexity and costs. The Cisco Video Surveillance Manager 7.0 is a completely redesigned system built from the ground up with ‘Cisco DNA' with unprecedented levels of scalability and manageability. Thanks to Medianet, virtualization support, and great application-level APIs, we're offering our customers unprecedented scale at the lowest levels of TCO."
  • Chris Fulkerson, assistant vice president for Technology / CIO, Elon University: "Every parent's main concern is security for their college student. This Cisco Video Surveillance System has enabled us to multiply our security and police force by giving us eyes in multiple locations all at the same time. At Elon, the surveillance system has proven to be a real deterrent to crime. Our old system was very labor intensive to install and operate.  With this new system it takes just 10 seconds to deploy a camera.  We are excited that it gives the power and flexibility directly to police to operate the system instead of requiring so much IT intervention.  We are now free to leverage our investment and integrate surveillance with the rest of our physical security systems."
  • John R. Ames, CTA, Tax Assessor/Collector, Dallas County Tax Office: "Delivering excellent customer service is the key to ensuring quality collections.  We believe in using technologies to improve efficiencies.  Video can be used not only for improved safety of employees but also to improve daily operations with enhanced visibility across our locations."
  • Ed Christmas, managing principal, Sology Solutions: "Cisco's innovative Unified Computing System platform supports the streamlined deployment of IP Video Surveillance and Connected Physical Security systems at the very large scale our customers' need, with enhanced ease of use, end-to-end management and drastically lower total cost of operations."
  • Rohan Mendis, telecommunications strategy manager at Transport for Greater Manchester in the UK: "Working with Cisco, Transport for Greater Manchester has evolved its video surveillance and public safety infrastructure into a scalable and easy to manage platform to provide superior service and protection for the travelling public, our staff and visitors to our City."
  •  Supporting Resources:

    About Cisco Systems

    Cisco (NASDAQ: CSCO) is the worldwide leader in networking that transforms how people connect, communicate and collaborate. Information about Cisco can be found at http://www.cisco.com. For ongoing news, please go to http://newsroom.cisco.com.

    # # #

    Cisco and the Cisco logo are trademarks or registered trademarks of Cisco and/or its affiliates in the U.S. and other countries. A listing of Cisco's trademarks can be found at www.cisco.com/go/trademarks. Third-party trademarks mentioned are the property of their respective owners. The use of the word partner does not imply a partnership relationship between Cisco and any other company.



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