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“As far as I know, that book is still sitting on shelf somewhere, unusable, uncopyable, just taken out of the system,” Chassell says. “It was quite a good introduction if I may say so myself. It would have taken maybe three or four months to convert [the book]

into a perfectly usable introduction to GNU/Linux today. The whole experience, aside from what I have in my memory, was lost.”

 

Forced to watch his work sink into the mire while his erstwhile employer struggled through bankruptcy, Chassell says he felt a hint of the anger that drove Stallman to fits of apoplexy. “The main clarity, for me, was the sense that if you want to have a decent life, you don’t want to have bits of it closed off,”

Chassell says. “This whole idea of having the freedom to go in and to fix something and modify it, whatever it may be, it really makes a difference. It makes one think happily that after you’ve lived a few years that what you’ve done is worthwhile. Because otherwise it just gets taken away and thrown out or abandoned or, at the very least, you no longer have any relation to it.

It’s like losing a bit of your life.”

 

St. Ignucius

 

The Maui High Performance Computing Center is located in a single-story building in the dusty red hills just above the town of Kihei. Framed by million-dollar views and the multimillion dollar real estate of the Silversword Golf Course, the center seems like the ultimate scientific boondoggle. Far from the boxy, sterile confines of Tech Square or even the sprawling research metropolises of Argonne, Illinois and Los Alamos, New Mexico, the MHPCC seems like the kind of place where scientists spend more time on their tans than their post-doctoral research projects.

 

The image is only half true. Although researchers at the MHPCC do take advantage of the local recreational opportunities, they also take their work seriously.

According to Top500.org, a web site that tracks the most powerful supercomputers in the world, the IBM SP

Power3 supercomputer housed within the MHPCC clocks in at 837 billion floating-point operations per second, making it one of 25 most powerful computers in the world. Co-owned and operated by the University of Hawaii and the U.S. Air Force, the machine divides its computer cycles between the number crunching tasks associated with military logistics and high-temperature physics research.

 

Simply put, the MHPCC is a unique place, a place where the brainy culture of science and engineering and the laid-back culture of the Hawaiian islands coexist in peaceful equilibrium. A slogan on the lab’s 2000 web site sums it up: “Computing in paradise.”

 

It’s not exactly the kind of place you’d expect to find Richard Stallman, a man who, when taking in the beautiful view of the nearby Maui Channel through the picture windows of a staffer’s office, mutters a terse critique: “Too much sun.” Still, as an emissary from one computing paradise to another, Stallman has a message to deliver, even if it means subjecting his pale hacker skin to the hazards of tropical exposure.

 

The conference room is already full by the time I arrive to catch Stallman’s speech. The gender breakdown is a little better than at the New York speech, 85%

male, 15% female, but not by much. About half of the audience members wear khaki pants and logo-encrusted golf shirts. The other half seems to have gone native.

Dressed in the gaudy flower-print shirts so popular in this corner of the world, their faces are a deep shade of ochre. The only residual indication of geek status are the gadgets: Nokia cell phones, Palm Pilots, and Sony VAIO laptops.

 

Needless to say, Stallman, who stands in front of the room dressed in plain blue T-shirt, brown polyester slacks, and white socks, sticks out like a sore thumb.

The fluorescent lights of the conference room help bring out the unhealthy color of his sun-starved skin.

His beard and hair are enough to trigger beads of sweat on even the coolest Hawaiian neck. Short of having the words “mainlander” tattooed on his forehead, Stallman couldn’t look more alien if he tried.

 

As Stallman putters around the front of the room, a few audience members wearing T-shirts with the logo of the Maui FreeBSD Users Group (MFUG) race to set up camera and audio equipment. FreeBSD, a free software offshoot of the Berkeley Software Distribution, the venerable 1970s academic version of Unix, is technically a competitor to the GNU/Linux operating system. Still, in the hacking world, Stallman speeches are documented with a fervor reminiscent of the Grateful Dead and its legendary army of amateur archivists. As the local free software heads, it’s up to the MFUG members to make sure fellow programmers in Hamburg, Mumbai, and Novosibirsk don’t miss out on the latest pearls of RMS wisdom.

 

The analogy to the Grateful Dead is apt. Often, when describing the business opportunities inherent within the free software model, Stallman has held up the Grateful Dead as an example. In refusing to restrict fans’ ability to record live concerts, the Grateful Dead became more than a rock group. They became the center of a tribal community dedicated to Grateful Dead music. Over time, that tribal community became so large and so devoted that the band shunned record contracts and supported itself solely through musical tours and live appearances. In 1994, the band’s last year as a touring act, the Grateful Dead drew $52 million in gate receipts alone.See “Grateful Dead Time Capsule: 1985-1995 North American Tour Grosses.” http://www.accessplace.com/gdtc/1197.htm While few software companies have been able to match that success, the tribal aspect of the free software community is one reason many in the latter half of the 1990s started to accept the notion that publishing software source code might be a good thing. Hoping to build their own loyal followings, companies such as IBM, Sun Microsystems, and Hewlett Packard have come to accept the letter, if not the spirit, of the Stallman free software message. Describing the GPL as the information-technology industry’s “Magna Carta,” ZDNet software columnist Evan Leibovitch sees the growing affection for all things GNU as more than just a trend.

“This societal shift is letting users take back control of their futures,” Leibovitch writes. “Just as the Magna Carta gave rights to British subjects, the GPL

enforces consumer rights and freedoms on behalf of the users of computer software.“See Evan Leibovitch, “Who’s Afraid of Big Bad Wolves,”

ZDNet Tech Update (December 15, 2000).

http://techupdate.zdnet.com/techupdate/stories/main/0Y/A The tribal aspect of the free software community also helps explain why 40-odd programmers, who might otherwise be working on physics projects or surfing the Web for windsurfing buoy reports, have packed into a conference room to hear Stallman speak.

 

Unlike the New York speech, Stallman gets no introduction. He also offers no self-introduction. When the FreeBSD people finally get their equipment up and running, Stallman simply steps forward, starts speaking, and steamrolls over every other voice in the room.

 

“Most of the time when people consider the question of what rules society should have for using software, the people considering it are from software companies, and they consider the question from a self-serving perspective,” says Stallman, opening his speech. “What rules can we impose on everybody else so they have to pay us lots of money? I had the good fortune in the 1970s to be part of a community of programmers who shared software. And because of this I always like to look at the same issue from a different direction to ask: what kind of rules make possible a good society that is good for the people who are in it? And therefore I reach completely different answers.”

 

Once again, Stallman quickly segues into the parable of the Xerox laser printer, taking a moment to deliver the same dramatic finger-pointing gestures to the crowd. He also devotes a minute or two to the GNU/Linux name.

 

“Some people say to me, `Why make such a fuss about getting credit for this system? After all, the important thing is the job is done, not whether you get recognition for it.’ Well, this would be wise advice if it were true. But the job wasn’t to build an operating system; the job is to spread freedom to the users of computers. And to do that we have to make it possible to do everything with computers in freedom.“For narrative purposes, I have hesitated to go in-depth

when describing Stallman’s full definition of software “freedom.” The GNU Project web site lists four fundamental components: The freedom to run a program, for any purpose (freedom 0). The freedom to study how a program works, and adapt it to your needs (freedom 1).

The freedom to redistribute copies of a program so you can help your neighbor (freedom 2). The freedom to improve the program, and release your improvements to the public, so that the whole community benefits (freedom 3). For more information, please visit “The Free Software Definition” at

http://www.gnu.org/philosophy/free-sw.html.

 

Adds Stallman, “There’s a lot more work to do.”

 

For some in the audience, this is old material. For others, it’s a little arcane. When a member of the golf-shirt contingent starts dozing off, Stallman stops the speech and asks somebody to wake the person up.

 

“Somebody once said my voice was so soothing, he asked if I was some kind of healer,” says Stallman, drawing a quick laugh from the crowd. “I guess that probably means I can help you drift gently into a blissful, relaxing sleep. And some of you might need that. I guess I shouldn’t object if you do. If you need to sleep, by all means do.”

 

The speech ends with a brief discussion of software patents, a growing issue of concern both within the software industry and within the free software community. Like Napster, software patents reflect the awkward nature of applying laws and concepts written for the physical world to the frictionless universe of information technology. The difference between protecting a program under copyright and protecting a program under software patents is subtle but significant. In the case of copyright, a software creator can restrict duplication of the source code but not duplication of the idea or functionality that the source code addresses. In other words, if a developer chooses not to use a software program under the original developer’s terms, that second developer is still free to reverse-engineer the program-i.e., duplicate the software program’s functionality by rewriting the source code from scratch. Such duplication of ideas is common within the commercial software industry, where companies often isolate reverse-engineering teams to head off accusations of corporate espionage or developer hanky-panky. In the jargon of modern software development, companies refer to this technique as “clean room” engineering.

 

Software patents work differently. According to the U.S. Patent Office, companies and individuals may secure patents for innovative algorithms provided they submit their claims to a public review. In theory, this allows the patent-holder to trade off disclosure of their invention for a limited monopoly of a minimum of 20 years after the patent filing. In practice, the disclosure is of limited value, since the operation of the program is often self-evident. Unlike copyright, a patent gives its holder the ability to head off the independent development of software programs with the same or similar functionality.

 

In the software industry, where 20 years can cover the entire life cycle of a marketplace, patents take on a strategic weight. Where companies such as Microsoft and Apple once battled over copyright and the “look and feel” of various technologies, today’s Internet companies use patents as a way to stake out individual applications and business models, the most notorious example being Amazon.com’s 2000 attempt to patent the company’s “one-click” online shopping process. For most companies, however, software patents have become a defensive

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