import numpy as np | |
import cv2 | |
import os | |
### | |
# | |
# maskdet_to_maskfin | |
# | |
# | |
### | |
# create_maskref =============================================================== | |
# return: | |
# maskref image | |
def create_maskref(cv_mask, cv_correct): | |
#Create a total green image | |
green = np.zeros((512,512,3), np.uint8) | |
green[:,:,:] = (0,255,0) # (B, G, R) | |
#Define the green color filter | |
f1 = np.asarray([0, 250, 0]) # green color filter | |
f2 = np.asarray([10, 255, 10]) | |
#From mask, extrapolate only the green mask | |
green_mask = cv2.inRange(cv_mask, f1, f2) #green is 0 | |
# (OPTIONAL) Apply dilate and open to mask | |
kernel = np.ones((5,5),np.uint8) #Try change it? | |
green_mask = cv2.dilate(green_mask, kernel, iterations = 1) | |
#green_mask = cv2.morphologyEx(green_mask, cv2.MORPH_OPEN, kernel) | |
# Create an inverted mask | |
green_mask_inv = cv2.bitwise_not(green_mask) | |
# Cut correct and green image, using the green_mask & green_mask_inv | |
res1 = cv2.bitwise_and(cv_correct, cv_correct, mask = green_mask_inv) | |
res2 = cv2.bitwise_and(green, green, mask = green_mask) | |
# Compone: | |
return cv2.add(res1, res2) |