Copyright Management and Control Systems: Pre-Infringement

Pre-infringement copyright management and control systems that inhibit or control infringement of intellectual property may be put into place by copyright owners before distributing their works. Examples are:

Contracts

Contracts are a pre-infringement control method, which very often is underestimated. Properly formed contracts enable copyright holders to restrict the use of their works in excess of the rights granted under copyright laws.

Copy Protection

This approach was standard in the 1980s, but rejected by consumers and relatively easy to break. Still copy protection, whereby the vendor limits the number of times a file can be copied, is used in certain situations.

Limited Functionality

This method allows copyright owners to provide a copy of the work, which is functionally limited. Software creators, for example, can distribute software that cannot print or save. A fully functional version has to be bought from the vendor.

Date Bombs

Here the intellectual property holder distributes a fully functional copy but locks off access at a pre-specified date or after a certain number of uses.

TEXTBLOCK 1/4 // URL: http://world-information.org/wio/infostructure/100437611725/100438659616
 
The history of propaganda

Thinking of propaganda some politicians' names are at once remembered, like Caesar, Napoleon, Adolf Hitler, Joseph Stalin or Saddam Hussein.
The history of propaganda has to tell then merely mentioning those names:

TEXTBLOCK 2/4 // URL: http://world-information.org/wio/infostructure/100437611661/100438658185
 
The North against the South?

"Faced with this process of globalization, most governments appear to lack the tools required for facing up to the pressure from important media changes. The new global order is viewed as a daunting challenge, and it most often results in reactions of introversion, withdrawal and narrow assertions of national identity. At the same time, many developing countries seize the opportunity represented by globalization to assert themselves as serious players in the global communications market."
(UNESCO, World Communication Report)

The big hope of the South is that the Internet will close the education gap and economic gap, by making education easier to achieve. But in reality the gap is impossible to close, because the North is not keeping still, but developing itself further and further all the time; inventing new technologies that produce another gap each. The farmer's boy sitting in the dessert and using a cellular telephone and a computer at the same time is a sarcastic picture - nothing else.

Still, the so called developing countries regard modern communication technologies as a tremendous chance - and actually: which other choice is there left?

TEXTBLOCK 3/4 // URL: http://world-information.org/wio/infostructure/100437611730/100438659376
 
Timeline 1970-2000 AD

1971 IBM's work on the Lucifer cipher and the work of the NSA lead to the U.S. Data Encryption Standard (= DES)

1976 Whitfield Diffie and Martin Hellman publish their book New Directions in Cryptography, playing with the idea of public key cryptography

1977/78 the RSA algorithm is developed by Ron Rivest, Adi Shamir and Leonard M. Adleman and is published

1984 Congress passes Comprehensive Crime Control Act

- The Hacker Quarterly is founded

1986 Computer Fraud and Abuse Act is passed in the USA

- Electronic Communications Privacy Act

1987 Chicago prosecutors found Computer Fraud and Abuse Task Force

1988 U.S. Secret Service covertly videotapes a hacker convention

1989 NuPrometheus League distributes Apple Computer software

1990 - IDEA, using a 128-bit key, is supposed to replace DES

- Charles H. Bennett and Gilles Brassard publish their work on Quantum Cryptography

- Martin Luther King Day Crash strikes AT&T long-distance network nationwide


1991 PGP (= Pretty Good Privacy) is released as freeware on the Internet, soon becoming worldwide state of the art; its creator is Phil Zimmermann

- one of the first conferences for Computers, Freedom and Privacy takes place in San Francisco

- AT&T phone crash; New York City and various airports get affected

1993 the U.S. government announces to introduce the Clipper Chip, an idea that provokes many political discussions during the following years

1994 Ron Rivest releases another algorithm, the RC5, on the Internet

- the blowfish encryption algorithm, a 64-bit block cipher with a key-length up to 448 bits, is designed by Bruce Schneier

1990s work on quantum computer and quantum cryptography

- work on biometrics for authentication (finger prints, the iris, smells, etc.)

1996 France liberates its cryptography law: one now can use cryptography if registered

- OECD issues Cryptography Policy Guidelines; a paper calling for encryption exports-standards and unrestricted access to encryption products

1997 April European Commission issues Electronic Commerce Initiative, in favor of strong encryption

1997 June PGP 5.0 Freeware widely available for non-commercial use

1997 June 56-bit DES code cracked by a network of 14,000 computers

1997 August U.S. judge assesses encryption export regulations as violation of the First Amendment

1998 February foundation of Americans for Computer Privacy, a broad coalition in opposition to the U.S. cryptography policy

1998 March PGP announces plans to sell encryption products outside the USA

1998 April NSA issues a report about the risks of key recovery systems

1998 July DES code cracked in 56 hours by researchers in Silicon Valley

1998 October Finnish government agrees to unrestricted export of strong encryption

1999 January RSA Data Security, establishes worldwide distribution of encryption product outside the USA

- National Institute of Standards and Technologies announces that 56-bit DES is not safe compared to Triple DES

- 56-bit DES code is cracked in 22 hours and 15 minutes

1999 May 27 United Kingdom speaks out against key recovery

1999 Sept: the USA announce to stop the restriction of cryptography-exports

2000 as the German government wants to elaborate a cryptography-law, different organizations start a campaign against that law

- computer hackers do no longer only visit websites and change little details there but cause breakdowns of entire systems, producing big economic losses

for further information about the history of cryptography see:
http://www.clark.net/pub/cme/html/timeline.html
http://www.math.nmsu.edu/~crypto/Timeline.html
http://fly.hiwaay.net/~paul/cryptology/history.html
http://www.achiever.com/freehmpg/cryptology/hocryp.html
http://all.net/books/ip/Chap2-1.html
http://cryptome.org/ukpk-alt.htm
http://www.iwm.org.uk/online/enigma/eni-intro.htm
http://www.achiever.com/freehmpg/cryptology/cryptofr.html
http://www.cdt.org/crypto/milestones.shtml

for information about hacker's history see:
http://www.farcaster.com/sterling/chronology.htm:

TEXTBLOCK 4/4 // URL: http://world-information.org/wio/infostructure/100437611776/100438658960
 
Server

A server is program, not a computer, as it sometimes said, dedicated to store files, manage printers and network traffic, or process database queries.

Web sites, the nodes of the World Wide Web (WWW), e.g., are stored on servers.

INDEXCARD, 1/4
 
Sperry

Formerly (1955 - 1979) Sperry Rand Corporation, American corporation that merged with the Burroughs Corporation in 1986 to form Unisys Corporation, a large computer manufacturer.

INDEXCARD, 2/4
 
Core copyright industries

Those encompass the industries that create copyrighted works as their primary product. These industries include the motion picture industry (television, theatrical, and home video), the recording industry (records, tapes and CDs), the music publishing industry, the book, journal and newspaper publishing industry, and the computer software industry (including data processing, business applications and interactive entertainment software on all platforms), legitimate theater, advertising, and the radio, television and cable broadcasting industries.

INDEXCARD, 3/4
 
Charles Babbage

b. December 26, 1791, London, England
d. October 18, 1871, London, England

English mathematician and inventor who is credited with having conceived the first automatic digital computer. The idea of mechanically calculating mathematical tables first came to Babbage in 1812 or 1813. Later he made a small calculator that could perform certain mathematical computations to eight decimals. During the mid-1830s Babbage developed plans for the so-called analytical engine, the forerunner of the modern digital computer. In this device he envisioned the capability of performing any arithmetical operation on the basis of instructions from punched cards, a memory unit in which to store numbers, sequential control, and most of the other basic elements of the present-day computer.

INDEXCARD, 4/4