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::_:: | |
cls() | |
--Iterate 6 jellies. The 0th one will be invisible, but we need it for pal(). | |
for n=0,6 do | |
--The x position of the Jelly. | |
x=n*288%112 | |
--Scale of the jelly, from 0..1. | |
k=n/6 | |
--The jelly fish movements are controlled by this angle. | |
--The animation loops every q [0..1]. | |
q=k+t()/5 | |
--l determines the amount of horizontal stretch at the bottom of the body. | |
l=cos(q) | |
--Each jelly uses an ellipse formula for the general shape. | |
--h determines the radius of the ellipse. | |
h=k*(31+l*6) | |
--Loop from the top of the jelly to the bottom, we'll fill it by drawing | |
--horizintal lines. | |
--".5" helps it look solid even when the jelly grows in height. | |
for i=0,33*k,.5 do | |
--y is the y position of the line: | |
-- i-cos(q+.3)*i/5 -- Equivalent to (1-cos(q+.3)/5)*i. Shrinks the jelly | |
-- vertically up and down over time, 1-cos(q+.3)/5 will oscilate [0.8..1.2]. | |
-- -t()*6*k -- Moves the jelly slowly upward. The ones in the BG move slower. | |
-- %160-9 -- Wraps the y position from top to bottom. | |
y=(i-cos(q+.3)*i/5-t()*6*k)%160-9 | |
--Half of the width of the ellipse at the current line. | |
-- (h*h+9-(i-h)^2)^.5 -- Basically a weird circle equation/pythagoras: sqrt(h^2-(i-h)^2). | |
-- The +9 makes the top of the ellipse smoother. | |
-- l*max(i-29*k) -- The stretching at the bottom of the jelly. | |
-- Note max(0,i-29*k) -> max(i-29*k) since parameters default to 0. | |
r=(h*h+9-(i-h)^2)^.5+l*max(i-29*k) | |
--Draw the line. | |
line(x-r,y,x+r,y,4*k) | |
--Set the color palette using hidden colours. | |
--Note when n==0 you get pal(0,nil,1) -> pal(0,0,1). | |
pal(n,({129,1,140,12})[n],1) | |
end | |
--Draw the little tentacles. | |
for i=-r,r,r/9 do | |
-- i*l/7 -- Gives the angling of the tentacles. | |
-- y+7-l*l -- The -l*l shrinks y as the tentacle moves left or right, | |
-- making it look like it's rotating. | |
line(x+i,y+1,x+i+i*l/7,y+7-l*l,3*k) | |
end | |
end | |
flip()goto _ |
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