|
23 | 23 | [0.6, 0.3, 0.0, 0.2], [0.7, 0.9, 0.4, 0.6]]) |
24 | 24 |
|
25 | 25 | #Create a 2x2 table of plots |
26 | | -fig = plt.figure(figsize = [8.0, 7.5]) |
| 26 | +fig = plt.figure(figsize=[8.0, 7.5]) |
27 | 27 | ax = plt.subplot(2,2,1) |
28 | | -ax.imshow(big_im, interpolation = 'none') |
| 28 | +ax.imshow(big_im, interpolation='none') |
29 | 29 | ax = plt.subplot(2,2,2) |
30 | | -ax.imshow(big_im, interpolation = 'nearest') |
| 30 | +ax.imshow(big_im, interpolation='nearest') |
31 | 31 | ax = plt.subplot(2,2,3) |
32 | | -ax.imshow(small_im, interpolation = 'none') |
| 32 | +ax.imshow(small_im, interpolation='none') |
33 | 33 | ax = plt.subplot(2,2,4) |
34 | | -ax.imshow(small_im, interpolation = 'nearest') |
35 | | -plt.subplots_adjust(left = 0.24, wspace = 0.2, hspace = 0.1, \ |
36 | | - bottom = 0.05, top = 0.86) |
| 34 | +ax.imshow(small_im, interpolation='nearest') |
| 35 | +plt.subplots_adjust(left=0.24, wspace=0.2, hspace=0.1, \ |
| 36 | + bottom=0.05, top=0.86) |
37 | 37 |
|
38 | 38 | #Label the rows and columns of the table |
39 | | -fig.text(0.03, 0.645, 'Big Image\nScaled Down', ha = 'left') |
40 | | -fig.text(0.03, 0.225, 'Small Image\nBlown Up', ha = 'left') |
41 | | -fig.text(0.383, 0.90, "Interpolation = 'none'", ha = 'center') |
42 | | -fig.text(0.75, 0.90, "Interpolation = 'nearest'", ha = 'center') |
| 39 | +fig.text(0.03, 0.645, 'Big Image\nScaled Down', ha='left') |
| 40 | +fig.text(0.03, 0.225, 'Small Image\nBlown Up', ha='left') |
| 41 | +fig.text(0.383, 0.90, "Interpolation = 'none'", ha='center') |
| 42 | +fig.text(0.75, 0.90, "Interpolation = 'nearest'", ha='center') |
43 | 43 |
|
44 | 44 | #If you were going to run this example on your local machine, you |
45 | 45 | #would save the figure as a PNG, save the same figure as a PDF, and |
46 | 46 | #then compare them. The following code would suffice. |
47 | | -txt = fig.text(0.452, 0.95, 'Saved as a PNG', fontsize = 18) |
| 47 | +txt = fig.text(0.452, 0.95, 'Saved as a PNG', fontsize=18) |
48 | 48 | # plt.savefig('None_vs_nearest-png.png') |
49 | 49 | # txt.set_text('Saved as a PDF') |
50 | 50 | # plt.savefig('None_vs_nearest-pdf.pdf') |
|
56 | 56 | #display it. |
57 | 57 | pdf_im_path = cbook.get_sample_data('None_vs_nearest-pdf.png') |
58 | 58 | pdf_im = plt.imread(pdf_im_path) |
59 | | -fig2 = plt.figure(figsize = [8.0, 7.5]) |
| 59 | +fig2 = plt.figure(figsize=[8.0, 7.5]) |
60 | 60 | plt.figimage(pdf_im) |
61 | 61 |
|
62 | 62 | plt.show() |
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