Difference between revisions of "Template:Movementarticles"
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<!-- this template is used by all 4 movement articles. "sysvar" is the name of the sysvar , "num" is its number and "dir" a text describing the direction--> | <!-- this template is used by all 4 movement articles. "sysvar" is the name of the sysvar , "num" is its number and "dir" a text describing the direction--> | ||
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{| align="right" | {| align="right" | ||
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|{{movement}} | |{{movement}} | ||
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− | + | ==[[Sysvar]]s:== | |
{{v221}} {{{num}}} [[{{{sysvar}}}]] is a [[movement]] [[Sysvar]]. Without these, there could be no movement, just bouncing, gliding, flowing and tie-pushing. | {{v221}} {{{num}}} [[{{{sysvar}}}]] is a [[movement]] [[Sysvar]]. Without these, there could be no movement, just bouncing, gliding, flowing and tie-pushing. |
Latest revision as of 08:25, 1 February 2006
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Sysvars:
{{{num}}} [[{{{sysvar}}}]] is a movement Sysvar. Without these, there could be no movement, just bouncing, gliding, flowing and tie-pushing.
Syntax:
- [[{{{sysvar}}}]] accelerates the robot {{{dir}}}. It uses memory location {{{num}}} of the bot to store how much it accelerates in that direction.
Examples:
10 [[{{{sysvar}}}]] store
or
10 {{{num}}} store
This puts 10 on the stack. Than it puts {{{num}}} on the stack. Than it stores 10 in memory location {{{num}}} of the bot ([[{{{sysvar}}}]]) and removes {{{num}}} and 10 from the stack. The 10 in memory location {{{num}}} of the bot accelerates it +10 {{{dir}}} if it has not reached the maximum acceleration in that direction.
cond start 10 [[{{{sysvar}}}]] store stop
A robot with this gene would constantly accelerate {{{dir}}} at a rate of 10 per turn. That is to say that his velocity in that direction would increase by a value of 10. If it should rotate then the direction in which the acceleration takes place would also change.
Technical Details:
Movement values get cut above 1000 and below -1000, then added up to a single vector including tie and other propulsion vectors, then the vector gets cut to a length of 40 as maximum aceleration.
More details at Movement.