Dedicated Server

A dedicated hosting service, dedicated server, or managed hosting service is a type of Internet hosting in which the client leases an entire server not shared with anyone. This is more flexible than shared hosting, as organizations have full control over the server(s), including choice of operating system.

Managed Dedicated Server

Managed dedicated server To date, no industry standards have been set to clearly define the management role of dedicated server providers. What this means is that each provider will use industry standard terms, but each provider will define them differently. For some dedicated server providers.

SQL ServerCompact Edition

The compact edition is an embedded database engine. Unlike the other editions of SQL Server, the SQL CE engine is based on SQL Mobile (initially designed for use with hand-held devices) and does not share the same binaries.

SQl Server Architecture

When writing code for SQL CLR, data stored in SQL Server databases can be accessed using the ADO.NET APIs like any other managed application that accesses SQL Server data.

Bandwidth and Connectivity

Bandwidth refers to the data transfer rate or the amount of data that can be carried from one point to another in a given time period (usually a second) and is often represented in bits (of data) per second (bit/s).

Monday, May 10, 2010

HostGator

HostGator

HostGator is a Houston-based web hosting company with an additional presence in Austin, Texas.  It was founded in 2002 by Brent Oxley, who was then a student at Florida Atlantic University. By 2006, HostGator had passed the 200,000 mark in registered domains.  In 2008, Inc. Magazine ranked HostGator at #21 in the United States and #1 in the Houston-Sugar Land-Baytown, Texas area in its list of fastest-growing companies. The same year, HostGator decided to make their hosting service green hosting by working with Integrated Ecosystem Market Services. HostGator achieved tremendous growth in 2010 by registering over two million domains in the year alone. By the end of 2010, the company grew to over 4.9 million+ domains hosted.

Awards & recognitions
In 2008, HostGator received TOP 10 Hosting Company Award from HostReview.com.

In August 2009, Inc. Magazine recognized HostGator as the 239th fastest growing private company in the United States.

In 2010, HostGator was recognized as a "Hot Texas Company" by Lead411.

The same 2010 year, Web Host Magazine awarded HostGator the Highest Level of Recommendation.
`
Hostgator was awarded by WebHostingClue as "Best Small Business Hosting" in 2010.

HostGator was awarded the best web hosting provider of 2010 from w3hostinggeek.

Coupon Code
HostGator do provide some coupon codes for new customers.You can expect to save up to 25% on your first order with the coupon code hostgatornew25off,save $9.94 with the coupon code hostgatornew994off and save up to $24.94 with code hostgatornewreselleroff when you're ordering the HostGator reseller plan.


Total Domains Trend - HOSTGATOR.COM
Total Domains Trend - HOSTGATOR.COM

Weeks  Total Domains Market Share
Global Country
05/09/11 1,594,862 1.2864 % 2.0833 %
05/02/11 1,581,215 1.2764 % 2.0745 %
04/25/11 1,562,537 1.2629 % 2.0532 %
04/18/11 1,546,789 1.2513 % 2.0333 %
04/11/11 1,536,769 1.245 % 2.0215 %
04/04/11 1,524,038 1.2366 % 1.9971 %

Methodology and Limitations
WebHosting.Info is a patent-pending process invented by Bhavin Turakhia, a result of 2 years of extensive research and development. It employs several key technologies to generate comprehensive reports of unprecedented accuracy and quality, by processing data collected using public domain tools and utilities. The data processing is also based on various assumptions. These assumptions may lead to certain limitations in the report. Following are the assumptions and limitations of our process:
  • The entire data set currently consists of all COM, NET, ORG, BIZ, INFO Domain Names. This does not represent the worldwide total, since there are various ccTLDs which we have not yet covered. We assume the total of this dataset to be the Entire Dataset. We shall be including ccTLD statistics in our reports very soon.
  • The clients of a Web Hosting company are identified as all Domains served by the nameservers of that particular Company. This may however not be true in all cases. In certain instances the DNS provider maybe separate from the actual Hosting Company. In such a scenario, those domains will be counted towards the DNS provider and not the Hosting Company.
  • While our assignment process is extremely accurate in a few rare cases we may have missed out on the Nameservers of a Hosting Company in which case the counts and statistics for those nameservers may be missed out. However, this can easily be rectified by that hosting company and we have an online automated process for this rectification. Therefore this inaccuracy will be practically nullified shortly.
  • In all reports the number of Web Hosting companies is assumed as companies having greater than 50 domains under management. Companies with less than 50 domains are not counted in the total number of Web Hosting companies. Their clients however are counted towards total statistics.
  • Currently we have not begun to check whether a domain name is actually a hosted. We will soon be differentiating between Domains that are only Registered, Domains that are Parked/Forwarded, and Domains that actually host a unique website. This will reflect accurately the count of hosted clients and exclude the parked/forwarded clients.
  • The current Web Hosting company rank is simply based on the total domains count. Since we do not have a differentiation between Hosted and non-Hosted domains yet, these total counts sometimes result in skewed rankings.
  • Few domains have multiple nameservers belonging to more than one Company. For instance domain.com can have NS1.DIRECTI.COM and NS1.ANOTHERCOMPANY.COM as its nameservers, where NS1.DIRECTI.COM is owned by DIRECTI.COM and NS1.ANOTHERCOMPANY.COM belongs to ANOTHER COMPANY. In this rare case, the client is assigned to both the companies since it is not possible to directly determine which company the domain is hosted with.
  • Wherever we mention Country in the report, we are referring to Country of the Hosting Company and NOT Country of the Domain Name. For instance a client in Australia maybe hosted with a Hosting Company in India, and the servers may actually be in the United States. There are three countries here. The country of the client, the country of the Hosting company, and the country of the Datacenter. In our reports, Country refers to Country of the Hosting Company unless specified otherwise.
  • Directi has been omitted from all rank listings to avoid any conflict of interest since WebHosting.Info is a division of Directi.
These, and variations of these may lead to minor inaccuracies in the reports. What is more important however are the processes we have put in place to remove these inaccuracies overtime, with assistance and contribution from readers such as yourself.

1&1 Internet

1 & 1
1&1 Internet, founded in 1988, is a web hosting company owned by United Internet, a German Internet company. Its CEO is Oliver Mauss. The company is one of the largest web hosting companies in the world.
Domain Name Services

As of 2011[update], 1&1 is the third-largest domain registrar in the world and offers free private domain registration.

Website Hosting Services
In 2006 the company estimated that it hosted more websites than any other company in Germany and the United Kingdom, and that it hosted the seventh-largest number of websites among web hosting companies in the United States. 1&1's 55,000 sq ft (5,100 m2).

Server Services
Cloud servers, virtual private servers (VPS) and dedicated servers are available. The cloud servers can have their hardware upgraded at runtime whilst the others can't. The dedicated servers with their unlimited traffic are low priced and highly competitive, however the single mac address makes virtualisation difficult for clients.

Other Services
1&1 partnered with Zoho on April 28, 2010, to launch an office suite for its web hosting customers.

Other partners include; Microsoft, Parallels, Nominet, etc

Data Centres
US data center is in Lenexa, Kansas.

Environmental Concerns

1&1 has made a move toward green hosting by working with the Bonneville Environmental Foundation to purchase Renewable Energy Certificate to offset their energy use.

eNom Inc.

eNow

eNom, Inc. is a domain name registrar and Web hosting company that also sells other products closely tied to domain names, such as SSL certificates, e-mail services, and Website building software. As of 2007, it was the second largest in the list of domain name registrars ranked by number of domains registered. As of February 2010, it manages over 9 million domains.

Company history
eNom was founded in 1997 in Redmond, Washington operating as a wholesale business, allowing resellers to sell domains and other services under their own branding. eNom also operates retail sites eNomCentral.com and BulkRegister.com.

In May 2006, eNom was one of the original businesses that were acquired to form privately held Demand Media, headquartered in Santa Monica, California. Within Demand Media, eNom continues to operate as a domain name registrar and as the registrar platform for its media properties.

In July 2006, eNom bought out competitor BulkRegister. Prior to its purchase, BulkRegister was a member-supported service where clients were not resellers, but companies large enough to pay an annual membership fee to acquire low registration fees on their domain name registrations, due to the volume they potentially register. With this acquisition, eNom rose to become the second largest domain name registrar. eNom maintains BulkRegister as a separate service.

Ownership of other domain registrars
eNom operates a large number of other domain registrars, including "Enom1, Inc.", "Enom2, Inc.", "Enom3, Inc.", and additional numbered entities through "eNom1038, Inc". eNom also operates "EnomAte, Inc.", "Enomsky, Inc." and other similar names.
Accreditations and awards

eNom is an ICANN-accredited registrar and has been a Better Business Bureau (BBB) Accredited Business since 2002. eNom has won the following industry awards from domain research corporation Name Intelligence:
    * 2002-2008 Best ICANN Reseller Registrar
    * 2005-2007 User’s Choice Award
    * 2005-2007 Outstanding Drop Catcher

eNom was named #292 in Inc. Magazine’s 500 fastest growing private companies in 2006.
Resellers

As of March 2008, eNom states that it has over 99,000 resellers, of which over 28,000 are active.

In February 2007, eNom dropped RegisterFly as a reseller citing consumer complaints.
Spam control

Spam, or "junk e-mail," requires infrastructure of which domain names are one component.eNom posts a "zero tolerance spam policy".

Law enforcement
In March 2008, a New York Times story mentioned that eNom is known to disable domain names which appear on a US Treasury Department blacklist.[17] It describes eNom’s disabling of a European travel agent’s Web sites advertising travel to Cuba, which appeared on a U.S. Treasury Department list[18] published by the Office of Foreign Assets Control (OFAC). The article’s sources use words varying from “scandal” to “legally required” to describe “how Web sites owned by a British national operating via a Spanish travel agency can be affected by U.S. law”, especially when the operation is as “mysterious” as that of the OFAC list.

Go Daddy

Go Daddy

Go Daddy is an Internet domain registrar and Web hosting company that also sells e-business related software and services. In 2010, it reached more than 45 million domain names under management.  Go Daddy is currently the largest ICANN-accredited registrar in the world, and is four times the size of its closest competitor.

Known for its intentionally racy[clarification needed] marketing, Go Daddy started advertising in the Super Bowl in 2005. Since then, the company expanded its marketing to include sports sponsorships.
Go Daddy filed for an IPO in 2006, but later canceled it, due to "market uncertainties."

In September 2010 Go Daddy put itself up for auction. Go Daddy called off the auction several weeks later, despite reports that bids exceeded the asking price of $1.5 billion to $2 billion.

History
Go Daddy was founded in 1997 as Jomax Technologies by Bob Parsons, who previously founded the software development company Parsons Technology, Inc. The company changed its name to Go Daddy in 1999 when a group of employees were brainstorming on a more memorable name than Jomax Technologies. Someone said, "How about Big Daddy?" A quick check revealed that the Internet domain of that name was taken. Then Parsons said, "How about Go Daddy?" The name was available, so he bought it. CEO Bob Parsons states the company stuck with the name because it made people smile and remember it.

Go Daddy has grown to become the largest ICANN-accredited registrar on the Internet. In 2001, soon after Network Solutions was no longer the only place to register a domain, Go Daddy was approximately the same size as competitors Dotster and eNom. In April 2005 it surpassed Network Solutions in market share in terms of total domain names registered.

In 2002, Go Daddy sued VeriSign for domain slamming and again in 2003 over its Site Finder service. This latter suit caused controversy over VeriSign's role as the sole maintainer of the .com and the .net top-level domains. VeriSign shut down Site Finder after receiving a letter from ICANN ordering it to comply with a request to disable the service. In 2006, Go Daddy was sued by Web.com for patent infringement.

In 2007 and 2008, the company lobbied in favor of legislation that would crack down on unscrupulous online pharmacies and child predators.

In March 2010 Go Daddy stopped registering .CN domains (China) due to the high amount of personal information that is required to register in that country. Some called it a public relations campaign, since it closely followed Google's revolt in China.

Awards
In 2010, Go Daddy ranked as one of three finalists in the BBB of Great Arizona Business Ethics Awards. BBB's Board of Directors and Foundation established the BBB Business Ethics Awards to recognize those firms whose business practices and related activities exemplify the BBB's mission and principles and to ensure the marketplace remains fair and honorable.

In 2009 Go Daddy was voted "Best Registrar" Domain Name Wire annual survey for the 4th consecutive year.

Marketing
Go Daddy's advertising is produced in-house and typically contains sexually suggestive material (with the exception of its NASCAR advertising; the sanctioning body has a policy that censors sexually suggestive ads on cars and television broadcasts)[citation needed]. CEO Bob Parsons refers to the marketing as "GoDaddy-esque" which he describes as "fun, edgy, and a bit inappropriate."Most of Go Daddy's early television ads starred former WWE Diva Candice Michelle, in some sort of sexual-related theme. She has been referred to as "Miss GoDaddy.com" or "The Go Daddy Girl" by fans and on WWE television shows, where she also does the "Go Daddy Dance" (twirling her arms around her body while slowly turning) as part of her wrestling gimmick.

In 2006, Go Daddy began sponsoring IndyCar driver Danica Patrick, who subsequently joined the "Go Daddy Girl" lineup and began playing a prominent role in the company's commercials. In March 2009, Go Daddy announced professional poker player Vanessa Rousso as the newest Go Daddy Girl. Vanessa competed in the Go Daddy sponsored NBC National Heads-Up Poker Championship the same month, finishing second and making history by being the first woman to make it to the finals. Also in March 2009, Go Daddy added pro-golfer Anna Rawson, bringing the Go Daddy Girl spokeswomen count to four. She is edgy, she is fun, she is hotter than firecrackers, she is very clever and everything we look for in a Go Daddy Girl, CEO Bob Parsons said of Rawson at a news conference in Phoenix. In August 2009 another Go Daddy Girl was announced. A Russian native, Marina Orlova is an online linguist, explaining the origin of words on her HotforWords.com Web site. A New Yorker magazine blogger called her the sexiest philologist in the world.

In 2010, Go Daddy announced it is adding "America's Toughest Trainer" Jillian Michaels as a Go Daddy Girl. Michaels joins race car driver Danica Patrick as a Go Daddy Girl, a move that CEO Bob Parsons said should attract new customers.[29] Michaels is a well-known celebrity, famous for her role as a health and wellnes coach on NBC's hit show, "The Biggest Loser."

An order was placed[when?] with Orange County Choppers for a custom bike to raise contributions for charity and was revealed in Miami, Florida, and featured the models Candice and Danica. The episode was documented by the reality show American Chopper episode number 82.

Super Bowl XLII advertisement
Development

On August 13, 2007, Bob Parsons announced that Go Daddy may be sitting out Super Bowl XLII. "There's always the possibility that we might not be able to get an appropriately edgy advertisement approved," he said. "All things considered, there's a strong argument for staying on the sidelines this year and taking that Super Bowl advertising money and using it for other opportunities," he added. However, on January 28, 2008, during a telecast of World Wrestling Entertainment's RAW program on USA Network in a reverse of field, it was disclosed by Go Daddy spokesperson (and WWE diva) Candice Michelle that there will be an advertisement during the game, which featured a "behind the scenes" look into that ad. Once again, Go Daddy went through more than a dozen submissions before it was able to get a commercial approved by Fox, the same network that had pulled its Super Bowl XXXIX advertisement before its second scheduled airing. Go Daddy had hoped to broadcast a spot called "Exposure" featuring Go Daddy Girl Danica Patrick and animatronics beavers. But Fox deemed the spot too racy for prime time television and told Parsons it would not air it unless he removed the word "beaver." Parsons refused, and Go Daddy instead aired a completely different commercial, called "Spot On." The spot was essentially an "Ad to an Ad" and told viewers to go to the company's Web site to see "Exposure." "Spot On" aired in the first quarter of Super Bowl XLII, and the company quickly deemed it an enormous success. Go Daddy logged more than one million views of the "Exposure" advertisement before the game ended and reported 1.5 million visits to the GoDaddy.com Web site.

Reactions
The 2008 Go Daddy advertisement has been both maligned and praised. Ad Week's Barbara Lippert described it a "poorly produced scene in a living room where people are gathered to watch the Super Bowl. As we watch them watch, a guy at his computer in the corner of the room drags the crowd over to GoDaddy.com to view the banned ad instead." But Lippert, like others, also acknowledges the shrewdness of the public relations strategy, saying "it will probably produce a Pavlovian response in getting actual viewers in their own living rooms to do the same." Go Daddy's Super Bowl XLI advertisement was criticized in The New York Times as being "cheesy"; in National Review as "raunchy, 'Girls-Gone-Wild' style";and "just sad" by Barbara Lippert in Adweek, who gave the advertisement a "D." However, Reprise Media, reviewing the success of Super Bowl advertising in getting potential customers online, listed the 2007 commercial as one of only eight "Touchdown"-worthy ads among the day's high-priced advertisers. IAG Research, which rated the effectiveness of likeability and memorability of the ads, ranked Go Daddy's spot as second for most-recalled.

Super Bowl XLIII advertisements
Development

Go Daddy purchased two Super Bowl spots for different commercials, both of which NBC approved. The commercials featured Go Daddy Girl and IndyCar Series driver Danica Patrick. In "Shower," Danica takes a shower with Simona Fusco Stratten as three college students control the women's maneuvers from a computer. "Baseball" is a spoof of the steroids scandal.While "Shower" won Go Daddy's online vote, "Baseball" was the most popular of the Super Bowl. Both helped increase domain registrations 110 percent above 2008 post Super Bowl levels. Go Daddy posted Internet-only versions of its commercials during the game. These are extended versions with more risque content.

Reactions
"Baseball" was the most watched Super Bowl commercial according to TiVo, Inc. According to comScore, Go Daddy ranked first in advertiser Web site follow-through. Rob Goulding, head of business-to-business markets for Google, offered an in-depth analysis of Super Bowl spots that aired during Sunday's championship game. He said the most successful were multichannel-oriented, driving viewers to Web sites and "focusing on conversion as never before." Go Daddy experienced significant Web traffic and a strong "hangover" effect of viewer interest in the days that followed due to a provocative "teaser" advertisement pointing to the Web, Goulding said.

Indy 500
In 2010, Go Daddy was again the presenting sponsor for the live race broadcast and the primary sponsor for IndyCar driver Danica Patrick. And, for the first time ever, Go Daddy broadcast user-generated commercials as part of its advertising strategy.[48] The top three winners of Go Daddy's "Create Your Own Commercial" contest had their ads air during the race broadcast. Creators of the first place advertisement "Go Momma" received $100,000 in cash. The commercial features a mother who creates a Web site with Go Daddy in order to save time and still keep in touch with her family. In the thirty-second story, she posts her cherished family recipes on her Web site, even though she's not tech-savvy. The grand prize winner of the user-generated content contest is not only cleavage-free and smarm-free, it also celebrates an empowered woman of a certain age who uses Go Daddy to help her solve a family problem.

In 2009, for a third consecutive year, Go Daddy was the presenting sponsor of the Indianapolis 500 race broadcast on ABC. Go Daddy also debuted a new commercial called "Speeding" during the Indy 500. The commercial features Danica Patrick getting pulled over for speeding by a female cop wanting to be a "Go Daddy Girl." The advertisement teases to an edgier Web version that drove a 570% traffic increase to GoDaddy.com.

Super Bowl XLIV advertisements
Development

In September 2009, Go Daddy announced it would be returning advertisers in the 2010 Super Bowl, purchasing two spots. The commercials "Spa" and "News" starred Go Daddy Girl and racecar driver Danica Patrick. In "Spa," Patrick is getting a lavish massage when the masseuse breaks into a spontaneous Go Daddy Girl audition. The second advertisement called "News" has news anchors conducting a 'gotcha' interview with Go Daddy Girl Danica Patrick about commercials known for being too hot for television.

Reactions
According to Akamai, there was a large spike in Internet traffic late in the fourth quarter of the game. This spike was tied to Go Daddy's "News" advertisement airing. CEO Bob Parsons said Go Daddy had "a tremendous surge in Web traffic, sustained the spike, converted new customers and shot overall sales off the chart."

NASCAR and JR Motorsports
A fourth spokesman, with commercials which are not sexually suggestive, has appeared in ads starting in 2008. These advertisements, which air in NASCAR broadcasts, feature NASCAR Nationwide Series owner Dale Earnhardt, Jr., who designed and owns and occasionally drives the #5 JR Motorsports Chevrolet in the series. Go Daddy's sponsorship of the team includes five races in 2008 with Mark Martin and Ron Fellows (who won the NAPA Auto Parts 200 in the Go Daddy Chevrolet), sharing duties in the races with Earnhardt Jr. Junior designed the paint scheme for the car, which in true Earnhardt tradition is dominated by black with green and orange (the colors of Go Daddy). GoDaddy.com also has sponsored the Randy Moss Motorsports (aka Morgan-Dollar Motorsports) truck when Landon Cassill drives it, both in the original #46 and later as #81, as Cassill is a Hendrick Motorsports Developmental Driver, which includes selected Nationwide Series races in Earnhardt's #5 car.

Go Daddy has also sponsored Brad Keselowski in the #25 for Hendrick Motorsports on a limited basis in the Sprint Cup series (owing to the "part-time rookie exemption" to a four-car limit). After a successful 2008 season, Go Daddy is expanding its 2009 NASCAR sponsorship with the JR Motorsports organisation, sponsoring 20 Nationwide Series races as primary sponsor, split between the #5 and #88 teams. The #88 deal gave Keselowski a full 35-race NASCAR Nationwide Series sponsorship for 2009 split with Delphi and Unilever. Go Daddy will also be the primary sponsor for seven races in the Sprint Cup Series with Keselowski driving. GoDaddy.com signed a one-year deal with Darlington Raceway to sponsor the 53rd Annual Rebel 500, the fifth-oldest race on the Sprint Cup circuit. Keselowski got his third Nationwide victory at Dover - his first in the #88 GoDaddy.com Chevrolet. In the same season, Keselowski scored a second Nationwide victory in the #88 GoDaddy.com Chevrolet at the first ever NASCAR race at Iowa SpeedwayAnd then at Michigan.

For 2010, the Hendrick/Go Daddy association will continue;Danica Patrick will drive a 12 race schedule in the #7 GoDaddy.com Chevrolet for JR Motorsports, and Mark Martin's #5 team will now have Go Daddy as its primary sponsor for the majority of the season.

Philanthropy
In the last few years Go Daddy has made many donations to local, regional, national, and international charities, including those that focus on domestic violence, child abuse, disabled children, teenage homelessness, Parkinson's research, breast cancer, and animal shelters. Major recipients of Go Daddy contributions over the past several years include the Juvenile Diabetes Research Foundation, Phoenix Children's Hospital, the Arizona Humane Society, the Phoenix Zoo, Chrysalis, HomeBase Youth Services, and the Salvation Army. Go Daddy's employees have also participated in a series of events to raise money for charitable causes. In 2009 Go Daddy donated $50,000 to the Lincoln Family Downtown YMCA in Arizona when the organization requested only $1,000. Go Daddy also participated in the 11th Annual Arizona Humane Society Pet Telethon as the title sponsor. The company matched online contributions and donated a check for $100,000. In December 2009 at Go Daddy's annual Holiday Party, CEO Bob Parsons and Danica Patrick announced that Go Daddy would be donating $500,000 to the Phoenix-based UMOM New Day Center to fund the Danica Patrick Go Daddy.com Domestic Violence Center. In November 2008, more than 700 Go Daddy employees participated in the Juvenile Diabetes Research Foundation's Walk to Cure Diabetes in Tempe, AZ. Other Go Daddy employee efforts have included the annual Toys for Tots drive, as well as donations to St. Mary's Food Bank during the holiday season. In April 2006, the company donated $10,000 to the OpenSSH development program, which is managed by OpenBSD. They have also donated $10,000 in March 2006 to Perverted-Justice.com in which volunteers pose online as minors to find child predators and report them to law enforcement.

GoDaddy.com Bowl
Starting in 2010, Go Daddy is the sponsor of the GoDaddy.com Bowl, a post season college football bowl game played in Mobile, Alabama. The game was previously known as the GMAC Bowl. The game currently matches teams from the Sun Belt Conference and the Mid-American Conference, and will through 2013.

Controversies
Suspension of Seclists.org

On January 24, 2007, Go Daddy deactivated the domain of computer security site, Seclists.org, taking 250,000 pages of security content offline. The shutdown resulted from a complaint from MySpace to Go Daddy regarding 56,000 user names and passwords posted a week earlier to the full-disclosure mailing list and archived on the Seclists.org site as well as many other Web sites. Seclists.org administrator Gordon Lyon, who goes by the handle "Fyodor", provided logs to CNET News.com showing Go Daddy de-activated the domain 52 seconds after leaving him a voicemail, and he had to go to great lengths to get the site reactivated. Go Daddy general counsel Christine Jones stated that Go Daddy's terms of service "reserves the right to terminate your access to the services at any time, without notice, for any reason whatsoever." The site seclists.org is now hosted with Linode. The suspension of seclists.org led Lyon to create NoDaddy.com, a consumer activist web site where dissatisfied Go Daddy customers and whistleblowers from Go Daddy's staff share their experiences.

Deletion of FamilyAlbum.com
On December 19, 2006, Go Daddy received a third party complaint of invalid domain contact information in the WHOIS database for the domain FamilyAlbum.com. Go Daddy wrote a letter to the owner of FamilyAlbum.com saying, "Whenever we receive a complaint, we are required by ICANN regulations to initiate an investigation as to whether the contact data displaying in the WHOIS database is valid data or not... On 12/19/2006 we sent a notice to you at the admin/tech contact email address and the account email address informing you of invalid data in breach of the domain registration agreement and advising you to update the information or risk cancellation of the domain. The contact information was not updated within the specified period of time and we canceled the domain." The editor of "Domain Name Wire" said that since domain names are valuable it was reasonable to expect that the registrar would try to contact the domain owner by phone or postal mail. On February 28, 2007, Go Daddy offered to get the domain name back for the previous owner if he would indemnify Go Daddy from legal action by the new registrant. Go Daddy stated that the new owner paid $18.99 for the domain, the price of a backorder, not a regular registration. On November 2, 2007, Domain Name Wire reported that it appears that Go Daddy no longer cancels domains for invalid WHOIS. The editor on Domain Name Wire received a message from a reader who is trying to acquire a domain with obviously false WHOIS information. The message from Go Daddy said, "The domain has been suspended due to invalid WHOIS. The domain will remain in suspension through expiration, including the registry's redemption period, unless the owner updates the contact information before that time."

Shutdown of RateMyCop.com
On March 11, 2008, Go Daddy shut down RateMyCop.com — a RateMyProfessors-type site where people would comment on their interactions with law enforcement officers. Some reports said there has been complaints from police. A Go Daddy spokeperson said, "Basically, he was paying for compact car, when he really needed a semi-truck." The registrar for the name, Name.com, continued to allow the DNS to resolve, and is now hosted at Lunarpages. Go Daddy stated the reason for shutting down the Web site had nothing to do with censorship or complaints but that the site was receiving too many simultaneous connections. In 2006 Go Daddy locked access to the Irish Web site RateYourSolicitor.com after the Irish high court issued an order to remove offensive material about a barrister from the site.

Animal rights
In 2011 animal rights groups including PETA complained[86] when a video of Go Daddy CEO Bob Parsons shooting and killing an elephant at night in Zimbabwe was made by Parsons and posted on his personal blog. In response, Parsons stated "The tribal authorities request that I and others like me, patrol the fields before and during the harvest". PETA said they would be closing their account with Go Daddy.

Canceled IPO
On April 12, 2006, Marketwatch reported that GoDaddy.com, Inc., had hired Lehman Brothers to manage an initial stock offering that could raise more than $100 million and value the company at several times that amount.On May 12, 2006, Go Daddy filed an S-1 registration statement prior to an initial public offering. On August 8, 2006, Bob Parsons, CEO of Go Daddy, announced that he had withdrawn the company's IPO filing.

Sunday, May 10, 2009

Home Server

Home Server

A home server is a server located in a private residence providing services to other devices inside and/or outside the household through a home network and/or the internet. Such services may include file and/or printer serving, media center serving, web serving, web caching, account authentication and backup services. Because of the relatively low number of computers on a typical home network, a home server commonly does not require significant computing power. Often, users reuse older systems, and home servers with specifications as low as 1 GHz CPU and 256 MB of RAM can be used. Large, preferably fast hard drives (ATA-100 or Serial ATA) and a network interface card are usually all the hardware required for home file serving. An uninterruptible power supply is recommended in case of power outages that can possibly corrupt data.

Commercial home server products
A common type of home server is the Plug computer form factor. Most of these are small ARM-based devices running Linux, these have an integrated AC to DC power converter and come pre-loaded with various server applications.

Operating systems
Home servers run many different operating systems. Enthusiasts who build their own home servers can use whatever OS is conveniently available or familiar to them, such as Microsoft Windows, Mac OS X, GNU/Linux, Solaris or BSD.

Services provided by home servers
Administration and configuration

Home servers often run headless, and can be administered remotely through a command shell, or graphically through a remote desktop system such as RDP, VNC, Webmin, or many others.

Some home server operating systems, such as Windows Home Server include a consumer-focused graphical user interface for setup and configuration that is available on home computers on the home network (and remotely over the Internet via remote access). Others simply enable users to use native operating system tools for configuration.

Centralized storage

Home servers often act as network-attached storage providing the major benefit that all users' files can be centrally and securely stored, with flexible permissions applied to them. Such files can be easily accessed from any other system on the network, provided the correct credentials are supplied. This also applies to shared printers.

Such files can also be shared over the internet to be accessible from anywhere in the world using remote access.

Servers running UNIX or Linux with the free Samba suite (or certain Windows Server products - Windows Home Server excluded) can provide domain control, custom logon scripts, and roaming profiles to users of certain versions of Windows[citation needed]. This allows a user to log on from any machine in the domain and have access to his/her "My Documents" and personalized Windows and application preferences - multiple accounts on each computer in the home are not needed.

Media serving
Home servers are often used to serve multi-media content, including photos, music, and video to other devices in the household (and even to the Internet; see Place Shifting, Tonido and Orb). Using standard protocols such as DLNA or proprietary systems such as iTunes users can access their media stored on the home server from any room in the house. Windows XP Media Center Edition, Windows Vista, and Windows 7 can act as a home server, supporting a particular type of media serving that streams the interactive user experience to Media Center Extenders including the Xbox 360.

A typical MythTV menu.
Windows Home Server supports media streaming to Xbox 360 and other DLNA based media receivers via the built-in Windows Media Connect technology. Some Windows Home Server device manufacturers such as Hewlett-Packard extend this functionality with a full DLNA implementation such as PacketVideo TwonkyMedia server.

On a Linux server, there are many free, open-source, fully-functional, all-in-one software solutions for media serving available. One such program is LinuxMCE, which allows other devices to boot off a hard drive image on the server, allowing them to become appliances such as set-top boxes. Amahi is a free Linux Home Server that provides shared storage, automated backups, secure VPN, and shared applications like calendar and wiki. Asterisk, Xine, MythTV (another media serving solution), VideoLAN, SlimServer, DLNA, and many other open-source projects are fully integrated for a seamless home theater/automation/telephony experience.

Because a server is typically always on, it is often a more logical choice to put a TV tuner or radio tuner for recording broadcasts into a server, than it is to use e.g. a desktop for recording, as it allows recording to be scheduled at any time.

On an Apple Macintosh server, options include iTunes, PS3 Media Server, Twonky Media Server, Nullriver MediaLink, and Elgato EyeConnect. Additionally, for Macs directly connected to TVs, the built-in FrontRow program or Boxee can act as a full-featured media center interface.

Some home servers provide remote access to media and entertainment content.

Remote access
The Webmin Interface as it would appear in a standard browser.

A home server can be used to provide remote access into the home from devices on the Internet, using remote desktop software and other remote administration software. For example, Windows Home Server provides remote access to files stored on the home server via a web interface as well as remote access to Remote Desktop sessions on PCs in the house. Similarly, Tonido provides direct access via a web browser from the internet without requiring any port forwarding or other setup. Some enthusiasts often use VPN technologies as well.

On a Linux server, two popular tools are (among many) VNC and Webmin. VNC allows clients to remotely view a server GUI desktop as if the user was physically sitting in front of the server. A GUI need not be running on the server console for this to occur; there can be multiple 'virtual' desktop environments open at the same time. Webmin allows users to control many aspects of server configuration and maintenance all from a simple web interface. Both can be configured to be accessed from anywhere on the internet.

Servers can also be accessed remotely using the command line-based Telnet and SSH protocols.

Web serving
Some users choose to run a web server in order to share files easily and publicly (or privately, on the home network). Others set up web pages and serve them straight from their home, although this may be in violation of some ISPs terms of service. Sometimes these webservers are run on a nonstandard port in order to avoid the ISP's port blocking. Example web servers used on home servers include Apache and IIS.

Many other webservers are available; see Comparison of web servers.

Web proxy
Some networks have an HTTP proxy which can be used to speed up web access when multiple users visit the same websites, and to get past blocking software while the owner is using the network of some institution that might block certain sites. Public proxies are often slow and unreliable and so it is worth the trouble of setting up one's own private proxy.

Some proxies can be configured to block websites on the local network if it is set up as a transparent proxy.

E-mail
Many home servers also run e-mail servers that handle e-mail for the owner's domain name. The advantages are having much bigger mailboxes and maximum message size than most commercial e-mail services. Access to the server, since it is on the local network is much faster than using an external service. This also increases security as e-mails do not reside on an off-site server.

BitTorrent
Home servers are ideal for utilizing the BitTorrent protocol for downloading and seeding files as some torrents can take days, or even weeks to complete and perform better on an uninterrupted connection. There are many command-line based clients such as rTorrent and web-based ones such as TorrentFlux and Tonido available for this purpose. BitTorrent also makes it easier for those with limited bandwidth to distribute large files over the internet.

Gopher
An unusual service is the Gopher protocol, a hypertext document retrieval protocol which pre-dated the World Wide Web and was popular in the early 1990s. Many of the remaining gopher servers are run off home servers utilizing PyGopherd and the Bucktooth gopher server.

Home automation
Home automation requires a device in the home that is available 24/7. Often such home automation controllers are run on a home server.

Security monitoring
Relatively low cost CCTV DVR solutions are available that allow recording of video cameras to a home server for security purposes. The video can then be viewed on PCs or other devices in the house.

A series of cheap Universal serial bus-based webcams can be connected to a home server as a makeshift CCTV system. Optionally these images and video streams can be made available over the internet using standard protocols.

Family applications
Home servers can act as a host to family oriented applications such as a family calendar, to-do lists, and message boards.

IRC and instant messaging
Because a server is always on, an IRC client or IM client running on it will be highly available to the Internet. This way, the chat client will be able to record activity that occurs even while the user is not at the computer, e.g. asleep or at work or school. Textual clients such as Irssi and tmsnc can be detached using GNU Screen for example, and graphical clients such as Pidgin can be detached using xmove. Quassel provides a specific version for this kind of use. Home servers can also be used to run personal XMPP servers and IRC servers as these protocols can support a large number of users on very little bandwidth

Online gaming
Some multiplayer games such as Continuum, and Tremulous have server software available which users may download and use to run their own private game server. Some of these servers are password protected, so only a selected group of people such as clan members can gain access to the server. Others are open for public use and may move to colocation or other forms of paid hosting if they gain a large number of players.

3rd Party Platform
Home servers often are platforms that enable 3rd party products to be built and added over time. For example Windows Home Server provides a Software Development Kit and over 60 3rd party products are available for it. Similarly Tonido provides an application platform that can be extended by writing new applications using their SDK.

Grid computing

Grid Computing

Grid computing is a term referring to the combination of computer resources from multiple administrative domains to reach a common goal. The grid can be thought of as a distributed system with non-interactive workloads that involve a large number of files. What distinguishes grid computing from conventional high performance computing systems such as cluster computing is that grids tend to be more loosely coupled, heterogeneous, and geographically dispersed. Although a grid can be dedicated to a specialized application, it is more common that a single grid will be used for a variety of different purposes. Grids are often constructed with the aid of general-purpose grid software libraries known as middleware.

Grid size can vary by a considerable amount. Grids are a form of distributed computing whereby a “super virtual computer” is composed of many networked loosely coupled computers acting together to perform very large tasks. Furthermore, “distributed” or “grid” computing, in general, is a special type of parallel computing that relies on complete computers (with onboard CPUs, storage, power supplies, network interfaces, etc.) connected to a network (private, public or the Internet) by a conventional network interface, such as Ethernet. This is in contrast to the traditional notion of a supercomputer, which has many processors connected by a local high-speed computer bus.

Overview
Grid computing combines computers from multiple administrative domains to reach a common goal, to solve a single task, and may then disappear just as quickly.

One of the main strategies of grid computing is to use middleware to divide and apportion pieces of a program among several computers, sometimes up to many thousands. Grid computing involves computation in a distributed fashion, which may also involve the aggregation of large-scale cluster computing-based systems.

The size of a grid may vary from small—confined to a network of computer workstations within a corporation, for example—to large, public collaborations across many companies and networks. "The notion of a confined grid may also be known as an intra-nodes cooperation whilst the notion of a larger, wider grid may thus refer to an inter-nodes cooperation".

Grids are a form of distributed computing whereby a “super virtual computer” is composed of many networked loosely coupled computers acting together to perform very large tasks. This technology has been applied to computationally intensive scientific, mathematical, and academic problems through volunteer computing, and it is used in commercial enterprises for such diverse applications as drug discovery, economic forecasting, seismic analysis, and back office data processing in support for e-commerce and Web services.

Comparison of grids and conventional supercomputers
“Distributed” or “grid” computing in general is a special type of parallel computing that relies on complete computers (with onboard CPUs, storage, power supplies, network interfaces, etc.) connected to a network (private, public or the Internet) by a conventional network interface, such as Ethernet. This is in contrast to the traditional notion of a supercomputer, which has many processors connected by a local high-speed computer bus.[citation needed]

The primary advantage of distributed computing is that each node can be purchased as commodity hardware, which, when combined, can produce a similar computing resource as multiprocessor supercomputer, but at a lower cost. This is due to the economies of scale of producing commodity hardware, compared to the lower efficiency of designing and constructing a small number of custom supercomputers. The primary performance disadvantage is that the various processors and local storage areas do not have high-speed connections. This arrangement is thus well-suited to applications in which multiple parallel computations can take place independently, without the need to communicate intermediate results between processors.[citation needed] The high-end scalability of geographically dispersed grids is generally favorable, due to the low need for connectivity between nodes relative to the capacity of the public Internet.[citation needed]

There are also some differences in programming and deployment. It can be costly and difficult to write programs that can run in the environment of a supercomputer, which may have a custom operating system, or require the program to address concurrency issues. If a problem can be adequately parallelized, a “thin” layer of “grid” infrastructure can allow conventional, standalone programs, given a different part of the same problem, to run on multiple machines. This makes it possible to write and debug on a single conventional machine, and eliminates complications due to multiple instances of the same program running in the same shared memory and storage space at the same time.[citation needed]

Design considerations and variations
One feature of distributed grids is that they can be formed from computing resources belonging to multiple individuals or organizations (known as multiple administrative domains). This can facilitate commercial transactions, as in utility computing, or make it easier to assemble volunteer computing networks.[citation needed]

One disadvantage of this feature is that the computers which are actually performing the calculations might not be entirely trustworthy. The designers of the system must thus introduce measures to prevent malfunctions or malicious participants from producing false, misleading, or erroneous results, and from using the system as an attack vector. This often involves assigning work randomly to different nodes (presumably with different owners) and checking that at least two different nodes report the same answer for a given work unit. Discrepancies would identify malfunctioning and malicious nodes.[citation needed]

Due to the lack of central control over the hardware, there is no way to guarantee that nodes will not drop out of the network at random times. Some nodes (like laptops or dialup Internet customers) may also be available for computation but not network communications for unpredictable periods. These variations can be accommodated by assigning large work units (thus reducing the need for continuous network connectivity) and reassigning work units when a given node fails to report its results in expected time.[citation needed]

The impacts of trust and availability on performance and development difficulty can influence the choice of whether to deploy onto a dedicated computer cluster, to idle machines internal to the developing organization, or to an open external network of volunteers or contractors.[citation needed] In many cases, the participating nodes must trust the central system not to abuse the access that is being granted, by interfering with the operation of other programs, mangling stored information, transmitting private data, or creating new security holes. Other systems employ measures to reduce the amount of trust “client” nodes must place in the central system such as placing applications in virtual machines.[citation needed] ___ Public systems or those crossing administrative domains (including different departments in the same organization) often result in the need to run on heterogeneous systems, using different operating systems and hardware architectures. With many languages, there is a trade off between investment in software development and the number of platforms that can be supported (and thus the size of the resulting network). Cross-platform languages can reduce the need to make this trade off, though potentially at the expense of high performance on any given node (due to run-time interpretation or lack of optimization for the particular platform).[citation needed]

Various middleware projects have created generic infrastructure to allow diverse scientific and commercial projects to harness a particular associated grid or for the purpose of setting up new grids. BOINC is a common one for various academic projects seeking public volunteers;[citation needed] more are listed at the end of the article.

In fact, the middleware can be seen as a layer between the hardware and the software. On top of the middleware, a number of technical areas have to be considered, and these may or may not be middleware independent. Example areas include SLA management, Trust and Security, Virtual organization management, License Management, Portals and Data Management. These technical areas may be taken care of in a commercial solution, though the cutting edge of each area is often found within specific research projects examining the field.[citation needed]

Market segmentation of the grid computing market
For the segmentation of the grid computing market, two perspectives need to be considered: the provider side and the user side:

The provider side
The overall grid market comprises several specific markets. These are the grid middleware market, the market for grid-enabled applications, the utility computing market, and the software-as-a-service (SaaS) market.

Grid middleware is a specific software product, which enables the sharing of heterogeneous resources, and Virtual Organizations. It is installed and integrated into the existing infrastructure of the involved company or companies, and provides a special layer placed among the heterogeneous infrastructure and the specific user applications. Major grid middlewares are Globus Toolkit, gLite, and UNICORE.

Utility computing is referred to as the provision of grid computing and applications as service either as an open grid utility or as a hosting solution for one organization or a VO. Major players in the utility computing market are Sun Microsystems, IBM, and HP.

Grid-enabled applications are specific software applications that can utilize grid infrastructure. This is made possible by the use of grid middleware, as pointed out above.

Software as a service (SaaS) is “software that is owned, delivered and managed remotely by one or more providers.” (Gartner 2007) Additionally, SaaS applications are based on a single set of common code and data definitions. They are consumed in a one-to-many model, and SaaS uses a Pay As You Go (PAYG) model or a subscription model that is based on usage. Providers of SaaS do not necessarily own the computing resources themselves, which are required to run their SaaS. Therefore, SaaS providers may draw upon the utility computing market. The utility computing market provides computing resources for SaaS providers.

The user side
For companies on the demand or user side of the grid computing market, the different segments have significant implications for their IT deployment strategy. The IT deployment strategy as well as the type of IT investments made are relevant aspects for potential grid users and play an important role for grid adoption.

CPU scavenging
CPU-scavenging, cycle-scavenging, cycle stealing, or shared computing creates a “grid” from the unused resources in a network of participants (whether worldwide or internal to an organization). Typically this technique uses desktop computer instruction cycles that would otherwise be wasted at night, during lunch, or even in the scattered seconds throughout the day when the computer is waiting for user input or slow devices.

Many Volunteer computing projects, such as BOINC, use the CPU scavenging model.

In practice, participating computers also donate some supporting amount of disk storage space, RAM, and network bandwidth, in addition to raw CPU power. Heat produced by CPU power in rooms with many computers can be used for fine heating premises.[citation needed] Since nodes are likely to go "offline" from time to time, as their owners use their resources for their primary purpose, this model must be designed to handle such contingencies.

History
The term grid computing originated in the early 1990s as a metaphor for making computer power as easy to access as an electric power grid in Ian Foster's and Carl Kesselman's seminal work, "The Grid: Blueprint for a new computing infrastructure" (2004).

CPU scavenging and volunteer computing were popularized beginning in 1997 by distributed.net and later in 1999 by SETI@home to harness the power of networked PCs worldwide, in order to solve CPU-intensive research problems.[citation needed]

The ideas of the grid (including those from distributed computing, object-oriented programming, and Web services) were brought together by Ian Foster, Carl Kesselman, and Steve Tuecke, widely regarded as the "fathers of the grid". They led the effort to create the Globus Toolkit incorporating not just computation management but also storage management, security provisioning, data movement, monitoring, and a toolkit for developing additional services based on the same infrastructure, including agreement negotiation, notification mechanisms, trigger services, and information aggregation. While the Globus Toolkit remains the de facto standard for building grid solutions, a number of other tools have been built that answer some subset of services needed to create an enterprise or global grid.

In 2007 the term cloud computing came into popularity, which is conceptually similar to the canonical Foster definition of grid computing (in terms of computing resources being consumed as electricity is from the power grid). Indeed, grid computing is often (but not always) associated with the delivery of cloud computing systems as exemplified by the AppLogic system from 3tera.[citation needed]

Fastest virtual supercomputers
  • BOINC – 5.634 PFLOPS as of April 4th 2011.Folding@Home – 5 PFLOPS, as of March 17, 2009
  • As of April 2010[update], MilkyWay@Home computes at over 1.6 PFLOPS, with a large amount of this work coming from GPUs.
  • As of April 2010[update], SETI@Home computes data averages more than 730 TFLOPS.
  • As of April 2010[update], Einstein@Home is crunching more than 210 TFLOPS.
  • As of April 2010[update], GIMPS is sustaining 44 TFLOPS.

Current projects and applications
Grids computing offer a way to solve Grand Challenge problems such as protein folding, financial modeling, earthquake simulation, and climate/weather modeling. Grids offer a way of using the information technology resources optimally inside an organization. They also provide a means for offering information technology as a utility for commercial and noncommercial clients, with those clients paying only for what they use, as with electricity or water.

Grid computing is being applied by the National Science Foundation's National Technology Grid, NASA's Information Power Grid, Pratt & Whitney, Bristol-Myers Squibb Co., and American Express.[citation needed]

One of the most famous cycle-scavenging networks is SETI@home, which was using more than 3 million computers to achieve 23.37 sustained teraflops (979 lifetime teraflops) as of September 2001[update].

As of August 2009 Folding@home achieves more than 4 petaflops on over 350,000 machines.

The European Union has been a major proponent of grid computing. Many projects have been funded through the framework programme of the European Commission. Many of the projects are highlighted below, but two deserve special mention: BEinGRID and Enabling Grids for E-sciencE.[citation needed]

BEinGRID (Business Experiments in Grid) is a research project partly funded by the European commission[citation needed] as an Integrated Project under the Sixth Framework Programme (FP6) sponsorship program. Started on June 1, 2006, the project will run 42 months, until November 2009. The project is coordinated by Atos Origin. According to the project fact sheet, their mission is “to establish effective routes to foster the adoption of grid computing across the EU and to stimulate research into innovative business models using Grid technologies”. To extract best practice and common themes from the experimental implementations, two groups of consultants are analyzing a series of pilots, one technical, one business. The project is significant not only for its long duration, but also for its budget, which at 24.8 million Euros, is the largest of any FP6 integrated project. Of this, 15.7 million is provided by the European commission and the remainder by its 98 contributing partner companies.

The Enabling Grids for E-sciencE project, which is based in the European Union and includes sites in Asia and the United States, is a follow-up project to the European DataGrid (EDG) and is arguably the largest computing grid on the planet. This, along with the LHC Computing Grid[11] (LCG), has been developed to support the experiments using the CERN Large Hadron Collider. The LCG project is driven by CERN's need to handle huge amounts of data, where storage rates of several gigabytes per second (10 petabytes per year) are required. A list of active sites participating within LCG can be found online as can real time monitoring of the EGEE infrastructure. The relevant software and documentation is also publicly accessible. There is speculation that dedicated fiber optic links, such as those installed by CERN to address the LCG's data-intensive needs, may one day be available to home users thereby providing internet services at speeds up to 10,000 times faster than a traditional broadband connection.

Another well-known project is distributed.net, which was started in 1997 and has run a number of successful projects in its history.

The NASA Advanced Supercomputing facility (NAS) has run genetic algorithms using the Condor cycle scavenger running on about 350 Sun and SGI workstations.

In 2001, United Devices operated the United Devices Cancer Research Project based on its Grid MP product, which cycle-scavenges on volunteer PCs connected to the Internet. The project ran on about 3.1 million machines before its close in 2007.

As of 2011, over 6.2 million machines running the open-source Berkeley Open Infrastructure for Network Computing (BOINC) platform are members of the World Community Grid, which tops the processing power of the current fastest supercomputer system (China's Tianhe-I).

Definitions
Today there are many definitions of grid computing:
  •  In his article “What is the Grid? A Three Point Checklist”, Ian Foster lists these primary attributes:
          o Computing resources are not administered centrally.
          o Open standards are used.
          o Nontrivial quality of service is achieved.
  • Plaszczak/Wellner define grid technology as "the technology that enables resource virtualization, on-demand provisioning, and service (resource) sharing between organizations."
  • IBM defines grid computing as “the ability, using a set of open standards and protocols, to gain access to applications and data, processing power, storage capacity and a vast array of other computing resources over the Internet. A grid is a type of parallel and distributed system that enables the sharing, selection, and aggregation of resources distributed across ‘multiple’ administrative domains based on their (resources) availability, capacity, performance, cost and users' quality-of-service requirements”.
  • An earlier example of the notion of computing as utility was in 1965 by MIT's Fernando Corbató. Corbató and the other designers of the Multics operating system envisioned a computer facility operating “like a power company or water company”.
  • Buyya/Venugopal define grid as "a type of parallel and distributed system that enables the sharing, selection, and aggregation of geographically distributed autonomous resources dynamically at runtime depending on their availability, capability, performance, cost, and users' quality-of-service requirements".
  • CERN, one of the largest users of grid technology, talk of The Grid: “a service for sharing computer power and data storage capacity over the Internet.”
Grids can be categorized with a three stage model of departmental grids, enterprise grids and global grids. These correspond to a firm initially utilising resources within a single group i.e. an engineering department connecting desktop machines, clusters and equipment. This progresses to enterprise grids where nontechnical staff's computing resources can be used for cycle-stealing and storage. A global grid is a connection of enterprise and departmental grids that can be used in a commercial or collaborative manner.

Clustered web hosting


Clustered hosting is a type of web hosting that spreads the load of hosting across multiple physical machines ("nodes"), increasing availability and decreasing the chances of one service (e.g., FTP  or email) affecting another (e.g., MySQL). Many large websites run on clustered hosting solutions, for example, large discussion forums will tend to run using multiple front-end webservers with multiple back-end database servers.

Typically, most hosting infrastructures are based on the paradigm of using a single physical machine to host multiple hosted services, including web, database, email, FTP and others. A single physical machine is not only a single point of failure, but also has finite capacity for traffic, that in practice can be troublesome for a busy website or for a website that is experiencing transient bursts in traffic.

By clustering services across multiple hardware machines, and using load balancing you can eliminate single points of failure increasing availability of your website and other web services beyond that of ordinary single server hosting. A single server can require periodic reboots for software upgrades and the like, whereas in a clustered platform you can stagger the restarts such that the service is still available whilst still upgrading all necessary machines in the cluster.

Clustered hosting is similar to cloud hosting, in that the resources of many machines are available for a website to utilize on demand, making scalability a large advantage to a clustered hosting solution.

Twitter Delicious Facebook Digg Stumbleupon Favorites More