Milestone 003: Shapes and Random Color #32
@@ -3,17 +3,21 @@
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@brief Solutions to the turtle graphics challenges of day 18 of Udemy's
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100 Days of Code.
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The challenges so far are @ref turtle_challenges.square.draw_square and
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@ref turtle_challenges.dashed_line.draw_dashed_line. Each takes the turtle as its
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The challenges so far are @ref turtle_challenges.square.draw_square,
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@ref turtle_challenges.dashed_line.draw_dashed_line and
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@ref turtle_challenges.shapes.draw_shape. Each takes the turtle as its
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first argument, so it can be tested without a window.
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"""
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from turtle_challenges.colors import random_color, random_palette_color
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from turtle_challenges.dashed_line import draw_dashed_line
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from turtle_challenges.shapes import draw_shape, draw_shapes
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from turtle_challenges.square import draw_square
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__all__ = [
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"draw_dashed_line",
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"draw_shape",
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"draw_shapes",
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"draw_square",
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"random_color",
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"random_palette_color",
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@@ -20,6 +20,9 @@ COLOR_CHANNEL_MIN = 0
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## Largest value of one color channel.
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COLOR_CHANNEL_MAX = COLOR_MODE
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## Degrees in a full turn.
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FULL_TURN_DEGREES = 360
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## Degrees in a right angle.
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RIGHT_ANGLE_DEGREES = 90
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@@ -38,6 +41,15 @@ DASH_LENGTH = 10
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## Challenge 2: length of the gap after each dash, in turtle units.
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GAP_LENGTH = 10
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## Challenge 3: fewest sides of a polygon (a triangle).
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MIN_POLYGON_SIDES = 3
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## Challenge 3: most sides of a polygon drawn in a row (a decagon).
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MAX_POLYGON_SIDES = 10
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## Challenge 3: length of one side of a polygon, in turtle units.
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POLYGON_SIDE_LENGTH = 100
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## Challenge 3: named colors a polygon is drawn in.
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COLOR_PALETTE: tuple[str, ...] = (
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"CornflowerBlue",
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@@ -0,0 +1,56 @@
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"""!
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@file shapes.py
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@brief Turtle Challenge 3: draw different shapes, each in a random color.
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"""
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import random
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from turtle_challenges.colors import random_palette_color
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from turtle_challenges.constants import (
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FULL_TURN_DEGREES,
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MAX_POLYGON_SIDES,
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MIN_POLYGON_SIDES,
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POLYGON_SIDE_LENGTH,
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)
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from turtle_challenges.pen import Pen
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def draw_shape(
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pen: Pen, num_sides: int, side_length: float = POLYGON_SIDE_LENGTH
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) -> None:
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"""!
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@brief Draw a regular polygon.
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The turtle turns 360 divided by the number of sides after each side, so
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five sides turn 72 degrees and the shape closes after one lap.
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@param pen The turtle that draws.
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@param num_sides Number of sides; at least 3.
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@param side_length Length of each side, in turtle units.
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@exception ValueError If @p num_sides is below 3, or @p side_length is not
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positive.
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"""
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if num_sides < MIN_POLYGON_SIDES:
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raise ValueError(
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f"num_sides must be at least {MIN_POLYGON_SIDES}, got {num_sides}"
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)
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if side_length <= 0:
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raise ValueError(f"side_length must be positive, got {side_length}")
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angle = FULL_TURN_DEGREES / num_sides
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for _ in range(num_sides):
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pen.forward(side_length)
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pen.right(angle)
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def draw_shapes(pen: Pen, rng: random.Random | None = None) -> None:
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"""!
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@brief Draw a triangle, square, pentagon and so on up to a decagon.
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Each shape gets a random color from the palette.
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@param pen The turtle that draws.
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@param rng Random generator for the colors; a shared one is used if omitted.
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"""
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for num_sides in range(MIN_POLYGON_SIDES, MAX_POLYGON_SIDES + 1):
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pen.color(random_palette_color(rng))
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draw_shape(pen, num_sides)
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@@ -12,3 +12,8 @@ def test_challenge_names_are_unique() -> None:
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def test_palette_has_only_non_empty_names() -> None:
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assert constants.COLOR_PALETTE
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assert all(name for name in constants.COLOR_PALETTE)
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def test_polygon_range_runs_from_triangle_to_decagon() -> None:
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assert constants.MIN_POLYGON_SIDES == 3
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assert constants.MAX_POLYGON_SIDES == 10
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@@ -0,0 +1,94 @@
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import random
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import pytest
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from tests.fakes import FakePen
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from turtle_challenges.constants import (
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COLOR_PALETTE,
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FULL_TURN_DEGREES,
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MAX_POLYGON_SIDES,
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MIN_POLYGON_SIDES,
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POLYGON_SIDE_LENGTH,
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)
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from turtle_challenges.shapes import draw_shape, draw_shapes
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SIDE_COUNTS = range(MIN_POLYGON_SIDES, MAX_POLYGON_SIDES + 1)
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@pytest.mark.parametrize("num_sides", SIDE_COUNTS)
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def test_draw_shape_draws_every_side_at_the_default_length(num_sides: int) -> None:
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pen = FakePen()
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draw_shape(pen, num_sides)
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assert pen.args_of("forward") == [(POLYGON_SIDE_LENGTH,)] * num_sides
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@pytest.mark.parametrize("num_sides", SIDE_COUNTS)
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def test_draw_shape_turns_a_full_lap_in_equal_steps(num_sides: int) -> None:
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pen = FakePen()
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draw_shape(pen, num_sides)
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expected_angle = FULL_TURN_DEGREES / num_sides
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assert pen.args_of("right") == [(expected_angle,)] * num_sides
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def test_draw_shape_turns_72_degrees_for_a_pentagon() -> None:
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pen = FakePen()
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draw_shape(pen, 5)
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assert pen.args_of("right")[0] == (72,)
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def test_draw_shape_uses_the_given_side_length() -> None:
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pen = FakePen()
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draw_shape(pen, 3, side_length=25)
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assert pen.args_of("forward") == [(25,)] * 3
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@pytest.mark.parametrize("num_sides", [-1, 0, 1, 2])
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def test_draw_shape_rejects_fewer_than_three_sides(num_sides: int) -> None:
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pen = FakePen()
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with pytest.raises(ValueError, match="num_sides"):
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draw_shape(pen, num_sides)
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assert pen.calls == []
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def test_draw_shape_rejects_a_side_that_is_not_positive() -> None:
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pen = FakePen()
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with pytest.raises(ValueError, match="side_length"):
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draw_shape(pen, 4, side_length=0)
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def test_draw_shapes_draws_a_triangle_up_to_a_decagon() -> None:
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pen = FakePen()
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draw_shapes(pen, random.Random(5))
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assert len(pen.args_of("forward")) == sum(SIDE_COUNTS)
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assert len(pen.args_of("color")) == len(SIDE_COUNTS)
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def test_draw_shapes_sets_a_palette_color_before_each_shape() -> None:
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pen = FakePen()
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draw_shapes(pen, random.Random(6))
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colors = [args[0] for args in pen.args_of("color")]
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assert all(color in COLOR_PALETTE for color in colors)
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assert pen.names()[0] == "color"
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def test_draw_shapes_works_without_a_generator() -> None:
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pen = FakePen()
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draw_shapes(pen)
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assert len(pen.args_of("color")) == len(SIDE_COUNTS)
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