本文用 Python 实现 PS 滤镜的波浪特效 import numpy as npfrom skimage import img_as_floatimport matplotlib.pyplot as pltfrom skimage import ioimport numpy.matlibimport math# 图片位置file_name2='D:/Visual Effects/PS Algorithm/4
本文用 Python 实现 PS 滤镜的波浪特效
import numpy as np from skimage import img_as_float import matplotlib.pyplot as plt from skimage import io import numpy.matlib import math # 图片位置 file_name2='D:/Visual Effects/PS Algorithm/4.jpg' img=io.imread(file_name2) img = img_as_float(img) row, col, channel = img.shape img_out = img * 1.0 alpha = 70.0 beta = 30.0 degree = 20.0 center_x = (col-1)/2.0 center_y = (row-1)/2.0 xx = np.arange(col) yy = np.arange(row) x_mask = numpy.matlib.repmat (xx, row, 1) y_mask = numpy.matlib.repmat (yy, col, 1) y_mask = np.transpose(y_mask) xx_dif = x_mask - center_x yy_dif = center_y - y_mask x = degree * np.sin(2 * math.pi * yy_dif / alpha) + xx_dif y = degree * np.cos(2 * math.pi * xx_dif / beta) + yy_dif x_new = x + center_x y_new = center_y - y int_x = np.floor (x_new) int_x = int_x.astype(int) int_y = np.floor (y_new) int_y = int_y.astype(int) for ii in range(row): for jj in range (col): new_xx = int_x [ii, jj] new_yy = int_y [ii, jj] if x_new [ii, jj] < 0 or x_new [ii, jj] > col -1 : continue if y_new [ii, jj] < 0 or y_new [ii, jj] > row -1 : continue img_out[ii, jj, :] = img[new_yy, new_xx, :] plt.figure (1) plt.imshow (img) plt.axis('off') plt.figure (2) plt.imshow (img_out) plt.axis('off') plt.show()
实现效果
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