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2cbfccb8cc
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.gitignore
vendored
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1
.gitignore
vendored
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__pycache__/
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def droite(p1: tuple,p2: tuple) -> tuple:
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from math import floor, sqrt
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def transform_mp_to_abc(m, p):
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"""transforme une équation de la forme y = mx + p to ax + by = c
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:returns: 3-uple of a, b, c
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"""
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return -m, 1, p
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def transform_abc_to_mp(a, b, c):
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"""transforme une équation de la forme to ax + by = c to y = mx + p
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:returns: tuple of m, x
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"""
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return -a/b, c
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def droite(p1: tuple, p2: tuple) -> tuple:
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"""retourne un 3-uple d'une droite selon ax+by=c
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:p1: tuple du point 1
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@ -64,27 +85,40 @@ def intersection(d1, d2):
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def droite_normale(d, p):
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"""TODO: trouve la normale dune droite passant par un point.
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"""trouve la normale dune droite passant par un point.
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:d: droite
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:p: point
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:returns: retourne la normale de la droite passant par le point
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"""
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a, b, c = d
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x, y = p
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m, p = transform_abc_to_mp(a, b, c)
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return transform_mp_to_abc(-1/m, y-(-1/m)*x)
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def symetrie_orthogonale(d, p):
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"""TODO: Docstring for symetrie_orthogonale(d, p.
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:returns: TODO
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""" retourne la symétrie orthogonale par le point p de la droite d
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:returns: symétrie orthogonale
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"""
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pass
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a, b, c = d
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x, y = p
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ap, bp, cp = droite_normale(d, p) # perpendiculaire passant par le point
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xi, yi = intersection((a, b, c), (ap, bp, cp))
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return round((2*xi - x)*10)/10, round((2*yi - y)*10)/10
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def distance_droite_point(d, p):
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"""TODO: Docstring for distance_droite_point.
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:returns: TODO
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"""
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pass
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a, b, c = d
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x, y = p
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ap, bp, cp = droite_normale(d,p) # perpendiculaire passant par le point
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xi, yi = intersection((a,b,c), (ap, bp, cp))
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return sqrt((xi-x)**2 + (yi-y)**2)
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@ -27,8 +27,9 @@ def tests():
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test(droite_normale, (-0.5, 1, 1.0), (3, 4), (2.0, 1, 10.0))
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test(symetrie_orthogonale, (-0.5, 1, 1.0), (-2, 0), (-2.0, 0.0))
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test(symetrie_orthogonale, (-0.5, 1, 1.0), (3, 4), (2.0, 1, 10.0))
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test(symetrie_orthogonale, (-0.5, 1, 1.0), (3, 4), (4.2, 1.6))
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test(distance_droite_point, (-0.5, 1, 1.0), (-2, 0), 1.3416407864998741)
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test(distance_droite_point, (-0.5, 1, 1.0), (-2, 0), 0.0)
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