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Prime factorisation diagram
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# -*- coding: utf-8 -*- | |
# | |
# Author: Vegard Nossum <[email protected]> | |
import math | |
import os | |
import sys | |
import cairo | |
w = 7 | |
h = 7 | |
# https://stackoverflow.com/a/22808285/1697183 | |
def prime_factors(n): | |
i = 2 | |
factors = [] | |
while i * i <= n: | |
if n % i: | |
i += 1 | |
else: | |
n //= i | |
factors.append(i) | |
if n > 1: | |
factors.append(n) | |
return factors | |
def fours(n): | |
factors = [] | |
while n % 4 == 0: | |
factors.append(4) | |
n //= 4 | |
return factors + prime_factors(n) | |
# https://math.stackexchange.com/a/1806107/179367 | |
def r(n): | |
s = math.sin(math.pi / n) | |
return s / (s + 1) | |
out_w, out_h = 128 * w, 128 * h | |
surface = cairo.ImageSurface(cairo.FORMAT_ARGB32, out_w, out_h) | |
cr = cairo.Context(surface) | |
cr.set_line_width(0) | |
cr.set_source_rgb(1, 1, 1) | |
cr.rectangle(0, 0, out_w, out_h) | |
cr.fill() | |
def draw(factors): | |
if not factors: | |
cr.arc(0.0, 0.0, 1.0, 0.0, 2.0 * math.pi) | |
cr.fill() | |
return | |
n = factors[0] | |
if n == 4: | |
cr.rotate(-math.pi / 4) | |
for i in range(n): | |
cr.save() | |
cr.rotate(2.0 * math.pi * i / n) | |
cr.translate(1.0, 0) | |
cr.scale(0.95 * r(n), 0.95 * r(n)) | |
draw(factors[1:]) | |
cr.restore() | |
cr.set_source_rgba(.5, 0, 0, 1) | |
for y in range(h): | |
for x in range(w): | |
cr.save() | |
cr.translate(1. * (.5 + x) * out_w / w, 1. * (.5 + y) * out_h / h) | |
cr.scale(28.0, 28.0) | |
cr.rotate(-math.pi / 2) | |
number = 1 + y * w + x | |
factors = list(reversed(fours(number))) | |
draw(factors) | |
cr.restore() | |
surface.write_to_png('output.png') |
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