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funcs.py
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52 lines (44 loc) · 1.96 KB
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import cv2
import math
import numpy as np
# given scale list of images
# returns a simgle image containing images side by side
def stackImages(scale,imgList):
imgBlank = np.zeros_like(imgList[0])
rt = math.sqrt(len(imgList))
rows = round(rt)
cols = math.ceil(rt)
for i in range(rows * cols - len(imgList)):
imgList.append(imgBlank)
imgArray = []
for i in range(rows):
imgArray.append(imgList[i*cols:(i+1)*cols])
rowsAvailable = isinstance(imgArray[0], list)
width = imgArray[0][0].shape[1]
height = imgArray[0][0].shape[0]
if rowsAvailable:
for x in range ( 0, rows):
for y in range(0, cols):
if imgArray[x][y].shape[:2] == imgArray[0][0].shape [:2]:
imgArray[x][y] = cv2.resize(imgArray[x][y], (0, 0), None, scale, scale)
else:
imgArray[x][y] = cv2.resize(imgArray[x][y], (imgArray[0][0].shape[1], imgArray[0][0].shape[0]), None, scale, scale)
if len(imgArray[x][y].shape) == 2: imgArray[x][y]= cv2.cvtColor( imgArray[x][y], cv2.COLOR_GRAY2BGR)
imageBlank = np.zeros((height, width, 3), np.uint8)
hor = [imageBlank]*rows
hor_con = [imageBlank]*rows
for x in range(0, rows):
hor[x] = np.hstack(imgArray[x])
ver = np.vstack(hor)
else:
for x in range(0, rows):
if imgArray[x].shape[:2] == imgArray[0].shape[:2]:
imgArray[x] = cv2.resize(imgArray[x], (0, 0), None, scale, scale)
else:
imgArray[x] = cv2.resize(imgArray[x], (imgArray[0].shape[1], imgArray[0].shape[0]), None,scale, scale)
if len(imgArray[x].shape) == 2: imgArray[x] = cv2.cvtColor(imgArray[x], cv2.COLOR_GRAY2BGR)
hor= np.hstack(imgArray)
ver = hor
return ver
def xmlDetect(img,xmlPath,scale, neighbors):
return cv2.CascadeClassifier(xmlPath).detectMultiScale(cv2.cvtColor(img,cv2.COLOR_BGR2GRAY),scale,neighbors)