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Concept
Fish95 is an ongoing experiment in interactive distributed
multiprocessing systems. The user interface is divided into several
Functionally Independent System Handles, or "FISH" for short. Each
fish responds to user and system input differently, although many
systems are redundant.
History
The Fish95 project began in April of 1995 as a 5 gallon system. The
hardware was stable but confining. An upgrade to a larger 38 gallon
system allowed for an 8-fold boost in performance. This upgrade has
not been entirely stable however and numerous bugs (unicellular algae)
are being worked out of the system.
The Fish95 biological software has seen four revisions during a
short development history. Version 0.1 survived only 12 hours before
encountering a fatal error. Undaunted, version 0.1.2 survived beyond
the initial 'soak-in' period and featured twin processes. In the end
it was remarkably stable and code from this release is still being
used in a backup system. The first version shown to the public in
May of 1995 was a Betta release and soon demonstrated the ability to
support 9 processes simultaneously. The current release is 1.1 and
has supported 5 processes continuously for over 9 months.

Support
Daily maintenance includes regular cycling of the storage media.
A garbage collection routine works to keep the media as clear as
possible. Daily programming exercises are also recommended.
Fish95 may be programmed using external stimuli. Performing input on
only one side of the hardware will cause the processes to frequent
that side of the tank. However, repeated keypresses may damage the
Fish95 hardware which will result in memory leaks.
An individual makes use of the FISH application interface by pushing
packets onto the stack. The fish api will take the packets dynamically
and push their output into a queue which is soon removed from the
environment by the garbage collection routine. The output is easily
accessible to the user.
Witholding input from Fish95 will result in unpredictable behavior
and an overall loss of performance.
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