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import math | |
from math import pi as PI | |
from math import cos, sin | |
def sv_main(p1=0.3, p2=0.7, vdivs=20, points=200): | |
verts_out = [] | |
in_sockets = [ | |
['s', 'p1', p1], | |
['s', 'p2', p2], | |
['s', 'vdivs', vdivs], | |
['s', 'points', points] | |
] | |
r2=20*p1 | |
r1=10*p2 | |
theta = 1/points | |
vtheta = 1/vdivs | |
for v in range(vdivs): | |
for i in range(points): | |
t = 2 * PI * (theta * i) | |
p = PI * ((vtheta*v) - 0.5) | |
x = r1 * cos(t) * cos(p) | |
y = r1 * sin(t) * cos(p) | |
z = r1 * sin(p) | |
x = x + r2 * cos(t) | |
y = y + r2 * sin(t) | |
verts_out.append([x,y,z]) | |
out_sockets = [ | |
['v', 'verts', [verts_out]] | |
] | |
return in_sockets, out_sockets |
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