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本文實例為大家分享了python掃描線填充算法,供大家參考,具體內容如下
介紹
1.用水平掃描線從上到下掃描由點線段構成的多段構成的多邊形。
2.每根掃描線與多邊形各邊產生一系列交點。將這些交點按照x坐標進行分類,將分類后的交點成對取出,作為兩個端點,以所填的色彩畫水平直線。
3.多邊形被掃描完畢后,填色也就完成。
數據結構
活性邊表:
新邊表:
代碼(使用數組)
import numpy as np from PIL import Image from PIL import ImageDraw from PIL import ImageFont array = np.ndarray((660, 660, 3), np.uint8) array[:, :, 0] = 255 array[:, :, 1] = 255 array[:, :, 2] = 255 for i in range(0,660,1): array[i,330]=(0,0,0) for j in range(0,660,1): array[330,j]=(0,0,0) def creat_Net(point, row, y_min,y_max ): Net = [([ ] * y_max ) for i in range(y_max )] point_count = point.shape[0] for j in range(0, point_count): x = np.zeros(10) first = int(min(point[(j+1)%point_count][1] , point[j][1])) x[1] = 1/((point[(j+1)%point_count][1]-point[j][1])/(point[(j+1)%point_count][0]-point[j][0])) # x 的增量 x[2] = max(point[(j+1)%point_count][1] , point[j][1]) if(point[(j+1)%point_count][1] < point[j][1]): x[0] = point[(j+1)%point_count][0] else: x[0] = point[j][0] Net[first].append(x) return Net def draw_line(i,x ,y ): for j in range(int(x),int(y)+1): array[330-i,j+330]=(20,20,20) def polygon_fill(point): y_min = np.min(point[:,1]) y_max = np.max(point[:,1]) Net = creat_Net(point, y_max - y_min + 1, y_min, y_max) x_sort = [] * 3 for i in range(y_min, y_max): x = Net[i] if(len(x) != 0): for k in x : x_sort.append(k) x_image = [] * 3 for cell in x_sort: x_image.append(cell[0]) x_image.sort() if(len(x_image) >= 3 and x_image[0]==x_image[1] and x_image[2]>x_image[1]): x_image[1] = x_image[2] draw_line(i, x_image[0], x_image[1]) linshi = [] * 3 for cell in x_sort: if cell[2] > i: cell[0] += cell[1] linshi.append(cell) x_sort = linshi[:] x_image = [] * 3 for cell in x_sort: x_image.append(cell[0]) x_image.sort() draw_line(i, x_image[0],x_image[1]) def main(): point = [[55,40], [100,80], [100,160],[55,180], [10,160], [10,80]] point = np.array(point) polygon_fill( point ) image = Image.fromarray(array) image.save('saomao.jpg') image.show() if __name__ == "__main__": main()
實例:
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