Mercurial > repos > imgteam > overlay_images
diff overlay_images.py @ 2:b74693340624 draft
planemo upload for repository https://github.com/BMCV/galaxy-image-analysis/tree/master/tools/overlay_images/ commit 71dae1df58f579b84d4f9d92fb0dd509c02dd48f
author | imgteam |
---|---|
date | Thu, 10 Aug 2023 07:29:34 +0000 |
parents | 589af0005df5 |
children | 37662cbf44b8 |
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--- a/overlay_images.py Tue Jul 19 08:52:04 2022 +0000 +++ b/overlay_images.py Thu Aug 10 07:29:34 2023 +0000 @@ -1,19 +1,20 @@ """ -Copyright 2022 Biomedical Computer Vision Group, Heidelberg University. +Copyright 2022-2023 Biomedical Computer Vision Group, Heidelberg University. Distributed under the MIT license. See file LICENSE for detail or copy at https://opensource.org/licenses/MIT - """ import argparse +import matplotlib.colors import matplotlib.pyplot as plt import numpy as np import skimage.color import skimage.io import skimage.measure import tifffile +from contours import ContourPaint def read_im_gray(fn): @@ -28,6 +29,21 @@ return img +def get_rgb8_copy(img): + img = np.squeeze(img) + assert img.ndim == 2 or (img.ndim == 3 and img.shape[-1] in (3, 4)) + if str(img.dtype).startswith('float'): + img = np.round(img * 255).astype('uint8') + elif img.dtype == 'uint16': + img = img // 256 + elif img.dtype != 'uint8': + raise ValueError(f'unknown dtype: {img.dtype}') + if img.ndim == 2: + return np.dstack([img] * 3).copy() + else: + return img[:, :, :3].copy() + + def coloc_vis(in_red_fn, in_green_fn, out_fn): im1 = read_im_gray(in_red_fn) im2 = read_im_gray(in_green_fn) @@ -53,23 +69,32 @@ skimage.io.imsave(out_fn, out_im.astype(im1.dtype)) # format of output is the same as input -def seg_contour(im1_fn, im2_fn, out_fn, linewidth=0.3, color='#ff0000', show_label=False): +def seg_contour(im1_fn, im2_fn, out_fn, linewidth, color='#ff0000', show_label=False, label_color='#ffff00'): img = skimage.io.imread(im1_fn) - label = skimage.io.imread(im2_fn) + labels = skimage.io.imread(im2_fn) + + result = get_rgb8_copy(img) + cp = ContourPaint(labels, linewidth, where='center') + color_rgb = np.multiply(255, matplotlib.colors.to_rgb(color)) - fig = plt.figure() - ax = fig.add_axes([0, 0, 1, 1]) - ax.axis('off') + for label in np.unique(labels): + if label > 0: + cc = (labels == label) + bd = cp.get_contour_mask(cc) + for i in range(3): + result[:, :, i][bd] = color_rgb[i] + if show_label: - for reg in skimage.measure.regionprops(label): - ax.text(reg.centroid[1], reg.centroid[0], str(reg.label), color=color) + fig = plt.figure(figsize=np.divide(img.shape[:2][::-1], 100), dpi=100) + ax = fig.add_axes([0, 0, 1, 1]) + ax.axis('off') + ax.imshow(result) + for reg in skimage.measure.regionprops(labels): + ax.text(reg.centroid[1], reg.centroid[0], str(reg.label), color=label_color) + fig.canvas.print_png(out_fn) - if len(img.shape) == 2: - plt.imshow(img, cmap=plt.cm.gray) else: - plt.imshow(img) - plt.contour(label, linewidths=linewidth, colors=color) - fig.canvas.print_png(out_fn) # output is RGB + skimage.io.imsave(out_fn, result) # format of output is RGB8 if __name__ == "__main__": @@ -79,9 +104,10 @@ parser.add_argument("out", help="Output image") parser.add_argument('--method', dest='method', default='coloc_vis', help='How to overlay images') parser.add_argument('--alpha', dest='alpha', default=0.5, type=float, help='Blending weight') - parser.add_argument('--thickness', dest='thickness', default=0.3, type=float, help='Contour thickness') - parser.add_argument('--color', dest='color', default='#FFFF00', help='Contour color') - parser.add_argument('--show_label', dest='show_label', action='store_true', help='Plot label') + parser.add_argument('--thickness', dest='thickness', default=2, type=int, help='Contour thickness') + parser.add_argument('--color', dest='color', default='#FF0000', help='Contour color') + parser.add_argument('--show_label', dest='show_label', action='store_true', help='Show labels') + parser.add_argument('--label_color', dest='label_color', default='#FFFF00', help='Label color') args = parser.parse_args() if args.method == 'coloc_vis': @@ -92,4 +118,5 @@ seg_contour(args.im1, args.im2, args.out, linewidth=args.thickness, color=args.color, - show_label=args.show_label) + show_label=args.show_label, + label_color=args.label_color)