- fixed runtime errors if no objects are present
git-svn-id: http://moon:8086/svn/software/trunk/projects/opencv@321 b431acfa-c32f-4a4a-93f1-934dc6c82436
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+47
-43
@@ -62,7 +62,7 @@ class FindObjects():
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temp_objects = []
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objectsCandIds = []
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if hierachy.any():
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if hierachy is not None:
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while count != -1:
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family = FindObjects.getFamily([], count, hierachy)
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@@ -294,51 +294,55 @@ if videoFile == "piCamera":
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print("[INFO] Camera : elasped time: {:.2f}".format(vs.getfps().elapsed()))
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print("[INFO] Camera: approx. FPS: {:.2f}".format(vs.getfps().fps()))
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# Output stats
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findObjects.printStats()
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if numColorClasses:
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# Output stats
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findObjects.printStats()
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# Analyze colors
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numObjects = len(beadColors);
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blue = np.zeros(numObjects)
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green = np.zeros(numObjects)
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red = np.zeros(numObjects)
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plotColors = np.zeros((numObjects,3))
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i = 0
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for color in beadColors:
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blue[i] = color[0]
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green[i] = color[1]
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red[i] = color[2]
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plotColors[i] = [red[i], green[i], blue[i]]
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i += 1
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# Kmeans create color classes
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Z = np.float32(plotColors)
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# Define criteria = ( type, max_iter, epsilon )
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criteria = (cv2.TERM_CRITERIA_EPS + cv2.TERM_CRITERIA_MAX_ITER, 100, 0.1)
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ret,label,center=cv2.kmeans(Z,numColorClasses,None,criteria,10,cv2.KMEANS_PP_CENTERS)
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print (center)
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cnt1 = 0
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for c1 in center:
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cnt2 = 0
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for c2 in center:
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print ("Color distance["+ str(cnt1) + "," + str(cnt2) + "] = " + str(colordistance(c1, c2)))
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cnt2 += 1
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cnt1 += 1
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# Analyze colors
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numObjects = len(beadColors);
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blue = np.zeros(numObjects)
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green = np.zeros(numObjects)
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red = np.zeros(numObjects)
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plotColors = np.zeros((numObjects,3))
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i = 0
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for color in beadColors:
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blue[i] = color[0]
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green[i] = color[1]
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red[i] = color[2]
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plotColors[i] = [red[i], green[i], blue[i]]
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i += 1
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# Kmeans create color classes
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Z = np.float32(plotColors)
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# Define criteria = ( type, max_iter, epsilon )
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criteria = (cv2.TERM_CRITERIA_EPS + cv2.TERM_CRITERIA_MAX_ITER, 100, 0.1)
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ret,label,center=cv2.kmeans(np.float32(plotColors), numColorClasses, None, criteria, 10, cv2.KMEANS_PP_CENTERS)
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print (center)
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cnt1 = 0
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for c1 in center:
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cnt2 = 0
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for c2 in center:
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print ("Color distance["+ str(cnt1) + "," + str(cnt2) + "] = " + str(colordistance(c1, c2)))
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cnt2 += 1
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cnt1 += 1
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# Scatter plot of colors
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fig = plt.figure()
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ax = fig.add_subplot(111, projection='3d')
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ax.set_xlabel('blue')
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ax.set_ylabel('green')
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ax.set_zlabel('red')
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ax.scatter(blue, green, red, zdir='z', s=10, c=(0,0,0), lw = 0, depthshade=True)
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ax.scatter(center[:,2], center[:,1], center[:,0], zdir='z', s=500, facecolors=center, lw = 1, depthshade=True)
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plt.show()
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# Scatter plot of colors
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fig = plt.figure()
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ax = fig.add_subplot(111, projection='3d')
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ax.set_xlabel('blue')
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ax.set_ylabel('green')
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ax.set_zlabel('red')
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ax.scatter(blue, green, red, zdir='z', s=10, c=(0,0,0), lw = 0, depthshade=True)
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ax.scatter(center[:,2], center[:,1], center[:,0], zdir='z', s=500, facecolors=center, lw = 1, depthshade=True)
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plt.show()
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else:
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print("Sorry, no colors have been detected")
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# do a bit of cleanup
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cv2.destroyAllWindows()
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