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53 lines
1.5 KiB
Python
53 lines
1.5 KiB
Python
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import matplotlib.pyplot as plt
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def digital_differential_analyzer_line(
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p1: tuple[int, int], p2: tuple[int, int]
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) -> list[tuple[int, int]]:
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"""
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Draws a line between two points using the DDA algorithm.
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Args:
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- p1: Coordinates of the starting point.
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- p2: Coordinates of the ending point.
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Returns:
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- List of coordinate points that form the line.
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>>> digital_differential_analyzer_line((1, 1), (4, 4))
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[(2, 2), (3, 3), (4, 4)]
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"""
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x1, y1 = p1
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x2, y2 = p2
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dx = x2 - x1
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dy = y2 - y1
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steps = max(abs(dx), abs(dy))
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x_increment = dx / float(steps)
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y_increment = dy / float(steps)
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coordinates = []
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x: float = x1
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y: float = y1
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for _ in range(steps):
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x += x_increment
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y += y_increment
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coordinates.append((int(round(x)), int(round(y))))
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return coordinates
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if __name__ == "__main__":
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import doctest
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doctest.testmod()
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x1 = int(input("Enter the x-coordinate of the starting point: "))
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y1 = int(input("Enter the y-coordinate of the starting point: "))
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x2 = int(input("Enter the x-coordinate of the ending point: "))
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y2 = int(input("Enter the y-coordinate of the ending point: "))
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coordinates = digital_differential_analyzer_line((x1, y1), (x2, y2))
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x_points, y_points = zip(*coordinates)
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plt.plot(x_points, y_points, marker="o")
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plt.title("Digital Differential Analyzer Line Drawing Algorithm")
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plt.xlabel("X-axis")
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plt.ylabel("Y-axis")
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plt.grid()
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plt.show()
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