0.1.157
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[metadata]
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# replace with your username:
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name = guan
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version = 0.1.156
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version = 0.1.157
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author = guanjihuan
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author_email = guanjihuan@163.com
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description = An open source python package
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Metadata-Version: 2.2
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Name: guan
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Version: 0.1.156
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Version: 0.1.157
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Summary: An open source python package
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Home-page: https://py.guanjihuan.com
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Author: guanjihuan
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@ -336,16 +336,22 @@ def draw_dots_and_lines_without_starting_fig_ax(plt, fig, ax, coordinate_array,
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if draw_lines==1:
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for i1 in range(coordinate_array.shape[0]):
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for i2 in range(coordinate_array.shape[0]):
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if np.sqrt((coordinate_array[i1, 0] - coordinate_array[i2, 0])**2+(coordinate_array[i1, 1] - coordinate_array[i2, 1])**2) <= max_distance:
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ax.plot([coordinate_array[i1, 0], coordinate_array[i2, 0]], [coordinate_array[i1, 1], coordinate_array[i2, 1]], line_style, linewidth=linewidth)
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if i1<i2:
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x1 = coordinate_array[i1, 0]
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x2 = coordinate_array[i2, 0]
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y1 = coordinate_array[i1, 1]
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y2 = coordinate_array[i2, 1]
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if abs(x1-x2)<=max_distance and abs(y1-y2)<=max_distance:
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if np.sqrt((x1 - x2)**2+(y1 - y2)**2) <= max_distance:
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ax.plot([x1, x2], [y1, y2], line_style, linewidth=linewidth)
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if draw_dots==1:
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for i in range(coordinate_array.shape[0]):
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ax.plot(coordinate_array[i, 0], coordinate_array[i, 1], dot_style, markersize=markersize)
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ax.plot(coordinate_array[:, 0], coordinate_array[:, 1], dot_style, markersize=markersize)
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# 通过坐标画点和线
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def draw_dots_and_lines(coordinate_array, draw_dots=1, draw_lines=1, max_distance=1.0001, line_style='-k', linewidth=1, dot_style='ro', markersize=3, axis_off=1, show=1, save=0, filename='a', file_format='.eps', dpi=300):
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import numpy as np
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import matplotlib.pyplot as plt
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import guan
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coordinate_array = np.array(coordinate_array)
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x_range = max(coordinate_array[:, 0])-min(coordinate_array[:, 0])
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y_range = max(coordinate_array[:, 1])-min(coordinate_array[:, 1])
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@ -354,14 +360,7 @@ def draw_dots_and_lines(coordinate_array, draw_dots=1, draw_lines=1, max_distanc
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if axis_off==1:
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plt.subplots_adjust(left=0, bottom=0, right=1, top=1)
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plt.axis('off')
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if draw_lines==1:
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for i1 in range(coordinate_array.shape[0]):
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for i2 in range(coordinate_array.shape[0]):
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if np.sqrt((coordinate_array[i1, 0] - coordinate_array[i2, 0])**2+(coordinate_array[i1, 1] - coordinate_array[i2, 1])**2) <= max_distance:
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ax.plot([coordinate_array[i1, 0], coordinate_array[i2, 0]], [coordinate_array[i1, 1], coordinate_array[i2, 1]], line_style, linewidth=linewidth)
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if draw_dots==1:
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for i in range(coordinate_array.shape[0]):
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ax.plot(coordinate_array[i, 0], coordinate_array[i, 1], dot_style, markersize=markersize)
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guan.draw_dots_and_lines_without_starting_fig_ax(plt, fig, ax, coordinate_array, draw_dots=draw_dots, draw_lines=draw_lines, max_distance=max_distance, line_style=line_style, linewidth=linewidth, dot_style=dot_style, markersize=markersize)
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if show==1:
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plt.show()
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if save==1:
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