| """ |
| .. redirect-from:: /tutorials/provisional/mosaic |
| .. redirect-from:: /gallery/subplots_axes_and_figures/mosaic |
| |
| .. _mosaic: |
| |
| ======================================================== |
| Complex and semantic figure composition (subplot_mosaic) |
| ======================================================== |
| |
| Laying out Axes in a Figure in a non-uniform grid can be both tedious |
| and verbose. For dense, even grids we have `.Figure.subplots` but for |
| more complex layouts, such as Axes that span multiple columns / rows |
| of the layout or leave some areas of the Figure blank, you can use |
| `.gridspec.GridSpec` (see :ref:`arranging_axes`) or |
| manually place your axes. `.Figure.subplot_mosaic` aims to provide an |
| interface to visually lay out your axes (as either ASCII art or nested |
| lists) to streamline this process. |
| |
| This interface naturally supports naming your axes. |
| `.Figure.subplot_mosaic` returns a dictionary keyed on the |
| labels used to lay out the Figure. By returning data structures with |
| names, it is easier to write plotting code that is independent of the |
| Figure layout. |
| |
| |
| This is inspired by a `proposed MEP |
| <https://github.com/matplotlib/matplotlib/pull/4384>`__ and the |
| `patchwork <https://github.com/thomasp85/patchwork>`__ library for R. |
| While we do not implement the operator overloading style, we do |
| provide a Pythonic API for specifying (nested) Axes layouts. |
| |
| """ |
| import matplotlib.pyplot as plt |
| import numpy as np |
|
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|
|
| |
| def identify_axes(ax_dict, fontsize=48): |
| """ |
| Helper to identify the Axes in the examples below. |
| |
| Draws the label in a large font in the center of the Axes. |
| |
| Parameters |
| ---------- |
| ax_dict : dict[str, Axes] |
| Mapping between the title / label and the Axes. |
| fontsize : int, optional |
| How big the label should be. |
| """ |
| kw = dict(ha="center", va="center", fontsize=fontsize, color="darkgrey") |
| for k, ax in ax_dict.items(): |
| ax.text(0.5, 0.5, k, transform=ax.transAxes, **kw) |
|
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| |
| np.random.seed(19680801) |
| hist_data = np.random.randn(1_500) |
|
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|
| fig = plt.figure(layout="constrained") |
| ax_array = fig.subplots(2, 2, squeeze=False) |
|
|
| ax_array[0, 0].bar(["a", "b", "c"], [5, 7, 9]) |
| ax_array[0, 1].plot([1, 2, 3]) |
| ax_array[1, 0].hist(hist_data, bins="auto") |
| ax_array[1, 1].imshow([[1, 2], [2, 1]]) |
|
|
| identify_axes( |
| {(j, k): a for j, r in enumerate(ax_array) for k, a in enumerate(r)}, |
| ) |
|
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| |
| |
| |
|
|
| fig = plt.figure(layout="constrained") |
| ax_dict = fig.subplot_mosaic( |
| [ |
| ["bar", "plot"], |
| ["hist", "image"], |
| ], |
| ) |
| ax_dict["bar"].bar(["a", "b", "c"], [5, 7, 9]) |
| ax_dict["plot"].plot([1, 2, 3]) |
| ax_dict["hist"].hist(hist_data) |
| ax_dict["image"].imshow([[1, 2], [2, 1]]) |
| identify_axes(ax_dict) |
|
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|
| print(ax_dict) |
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|
| mosaic = """ |
| AB |
| CD |
| """ |
|
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|
|
| fig = plt.figure(layout="constrained") |
| ax_dict = fig.subplot_mosaic(mosaic) |
| identify_axes(ax_dict) |
|
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| |
| |
| mosaic = "AB;CD" |
|
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| |
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|
| fig = plt.figure(layout="constrained") |
| ax_dict = fig.subplot_mosaic(mosaic) |
| identify_axes(ax_dict) |
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|
| axd = plt.figure(layout="constrained").subplot_mosaic( |
| """ |
| ABD |
| CCD |
| """ |
| ) |
| identify_axes(axd) |
|
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| |
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|
| axd = plt.figure(layout="constrained").subplot_mosaic( |
| """ |
| A.C |
| BBB |
| .D. |
| """ |
| ) |
| identify_axes(axd) |
|
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| axd = plt.figure(layout="constrained").subplot_mosaic( |
| """ |
| aX |
| Xb |
| """, |
| empty_sentinel="X", |
| ) |
| identify_axes(axd) |
|
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| axd = plt.figure(layout="constrained").subplot_mosaic( |
| """αб |
| ℝ☢""" |
| ) |
| identify_axes(axd) |
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| axd = plt.figure(layout="constrained").subplot_mosaic( |
| """ |
| .a. |
| bAc |
| .d. |
| """, |
| |
| height_ratios=[1, 3.5, 1], |
| |
| width_ratios=[1, 3.5, 1], |
| ) |
| identify_axes(axd) |
|
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|
|
| mosaic = """AA |
| BC""" |
| fig = plt.figure() |
| axd = fig.subplot_mosaic( |
| mosaic, |
| gridspec_kw={ |
| "bottom": 0.25, |
| "top": 0.95, |
| "left": 0.1, |
| "right": 0.5, |
| "wspace": 0.5, |
| "hspace": 0.5, |
| }, |
| ) |
| identify_axes(axd) |
|
|
| axd = fig.subplot_mosaic( |
| mosaic, |
| gridspec_kw={ |
| "bottom": 0.05, |
| "top": 0.75, |
| "left": 0.6, |
| "right": 0.95, |
| "wspace": 0.5, |
| "hspace": 0.5, |
| }, |
| ) |
| identify_axes(axd) |
|
|
| |
| |
|
|
| mosaic = """AA |
| BC""" |
| fig = plt.figure(layout="constrained") |
| left, right = fig.subfigures(nrows=1, ncols=2) |
| axd = left.subplot_mosaic(mosaic) |
| identify_axes(axd) |
|
|
| axd = right.subplot_mosaic(mosaic) |
| identify_axes(axd) |
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| axd = plt.figure(layout="constrained").subplot_mosaic( |
| "AB", subplot_kw={"projection": "polar"} |
| ) |
| identify_axes(axd) |
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| fig, axd = plt.subplot_mosaic( |
| "AB;CD", |
| per_subplot_kw={ |
| "A": {"projection": "polar"}, |
| ("C", "D"): {"xscale": "log"} |
| }, |
| ) |
| identify_axes(axd) |
|
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| fig, axd = plt.subplot_mosaic( |
| "AB;CD", |
| per_subplot_kw={ |
| "AD": {"projection": "polar"}, |
| "BC": {"facecolor": ".9"} |
| }, |
| ) |
| identify_axes(axd) |
|
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| axd = plt.figure(layout="constrained").subplot_mosaic( |
| "AB;CD", |
| subplot_kw={"facecolor": "xkcd:tangerine"}, |
| per_subplot_kw={ |
| "B": {"facecolor": "xkcd:water blue"}, |
| "D": {"projection": "polar", "facecolor": "w"}, |
| } |
| ) |
| identify_axes(axd) |
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| axd = plt.figure(layout="constrained").subplot_mosaic( |
| [ |
| ["main", "zoom"], |
| ["main", "BLANK"], |
| ], |
| empty_sentinel="BLANK", |
| width_ratios=[2, 1], |
| ) |
| identify_axes(axd) |
|
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|
| inner = [ |
| ["inner A"], |
| ["inner B"], |
| ] |
|
|
| outer_nested_mosaic = [ |
| ["main", inner], |
| ["bottom", "bottom"], |
| ] |
| axd = plt.figure(layout="constrained").subplot_mosaic( |
| outer_nested_mosaic, empty_sentinel=None |
| ) |
| identify_axes(axd, fontsize=36) |
|
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| |
| |
| mosaic = np.zeros((4, 4), dtype=int) |
| for j in range(4): |
| mosaic[j, j] = j + 1 |
| axd = plt.figure(layout="constrained").subplot_mosaic( |
| mosaic, |
| empty_sentinel=0, |
| ) |
| identify_axes(axd) |
|
|