- refactored resolution
git-svn-id: http://moon:8086/svn/software/trunk/projects/opencv@334 b431acfa-c32f-4a4a-93f1-934dc6c82436
This commit is contained in:
+5
-4
@@ -91,6 +91,7 @@ class MyRgbProcess(RgbProcess):
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if not self.isVisible:
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print ("Visible")
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self.isVisible = True
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print(maxLoc)
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img1_objects = cv2.rectangle(img1_objects,rect[0],rect[1],(255,0,0),1)
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errorX = float(x)-self.res[0]/2
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errorY = float(y)-self.res[1]/2
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@@ -126,8 +127,8 @@ if with_ev3:
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# Connect to brick
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with ev3.EV3() as brick:
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videoSource = VideoSource(videoFile, (width,height,3), framerate)
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proc = MyRgbProcess('MyRgbProcess', (height, width, 3), 4, brick=brick)
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videoSource = VideoSource(videoFile, (width, height,3), framerate)
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proc = MyRgbProcess('MyRgbProcess', (width, height, 3), 4, brick=brick)
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videoSource.processorAdd(proc)
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videoSource.start()
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@@ -136,8 +137,8 @@ if with_ev3:
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videoSource.stop()
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proc.stop()
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else:
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videoSource = VideoSource(videoFile, (width,height,3), framerate)
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proc = MyRgbProcess('MyRgbProcess', (height, width, 3), 4)
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videoSource = VideoSource(videoFile, (width, height,3), framerate)
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proc = MyRgbProcess('MyRgbProcess', (width, height, 3), 4)
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videoSource.processorAdd(proc)
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videoSource.start()
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@@ -60,10 +60,10 @@ class Fifo(object):
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return data
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class RgbProcess(Fifo):
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def __init__(self, name='RgbProcess', resolution=(320, 240, 3), numEntries=2, next=None):
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super(RgbProcess, self).__init__((numEntries, ) + resolution)
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def __init__(self, name='RgbProcess', res=(320, 240, 3), numEntries=2, next=None):
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super(RgbProcess, self).__init__((numEntries, res[1], res[0], res[2]))
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self.name = name
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self.res = resolution
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self.res = res
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self.next = next
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self.thread = Thread(target=self.run)
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self.cancel = False
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@@ -136,9 +136,9 @@ class RgbProcess(Fifo):
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print(self.name + ": FPS = " + str(self.frames/self.fps.elapsed()))
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class RgbProcessorAdapter(object):
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def __init__(self, resolution=(320, 240, 3)):
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self.resolution = resolution
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self.frameSize = resolution[0]*resolution[1]*resolution[2]
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def __init__(self, res=(320, 240, 3)):
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self.res = res
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self.frameSize = res[0]*res[1]*res[2]
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self.size = 0
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self.fps = None
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self.processors = []
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@@ -161,7 +161,7 @@ class RgbProcessorAdapter(object):
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self.fps = FPS().start()
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res = (self.resolution[0], self.resolution[1])
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res = (self.res[0], self.res[1])
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if self.needRgbConversion:
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rgbData = array.bytes_to_rgb(data, res)
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@@ -190,8 +190,8 @@ if ("__main__" == __name__):
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# Unit test with to threaded processors
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class MyRgbProcess1(RgbProcess):
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def __init__(self, name, resolution=(320, 240, 3), numEntries=2, next=None):
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super(MyRgbProcess1, self).__init__(name, resolution, numEntries, next)
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def __init__(self, name, res=(320, 240, 3), numEntries=2, next=None):
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super(MyRgbProcess1, self).__init__(name, res, numEntries, next)
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def onProcess(self):
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data = self.read(1.0)
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@@ -206,8 +206,8 @@ if ("__main__" == __name__):
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self.next.write(cv2.cvtColor(gray_blurred,cv2.COLOR_GRAY2BGR))
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class MyRgbProcess2(RgbProcess):
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def __init__(self, name, resolution=(320, 240, 3), numEntries=2, next=None):
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super(MyRgbProcess2, self).__init__(name, resolution, numEntries, next)
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def __init__(self, name, res=(320, 240, 3), numEntries=2, next=None):
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super(MyRgbProcess2, self).__init__(name, res, numEntries, next)
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def onProcess(self):
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data = self.read(1.0)
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@@ -224,8 +224,8 @@ if ("__main__" == __name__):
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camera.resolution = (320, 240)
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camera.framerate = 60
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frameDim = (camera.resolution[0], camera.resolution[1], 3)
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myProcessor2 = MyRgbProcess2('Process 2', (240, 320, 3), 4)
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myProcessor1 = MyRgbProcess1('Process 1', (240, 320, 3), 4, myProcessor2)
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myProcessor2 = MyRgbProcess2('Process 2', (320, 240, 3), 4)
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myProcessor1 = MyRgbProcess1('Process 1', (320, 240, 3), 4, myProcessor2)
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myRgbProcessorAdapter = RgbProcessorAdapter(frameDim)
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myRgbProcessorAdapter.processorAdd(myProcessor1)
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camera.start_recording(myRgbProcessorAdapter, format="bgr")
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@@ -6,17 +6,17 @@ from picamera import PiCamera
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from piCameraPipeline.PiCameraPipeline import RgbProcessorAdapter
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class VideoSource(RgbProcessorAdapter):
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def __init__(self, fileName, resolution, framerate):
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super(VideoSource, self).__init__(resolution)
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def __init__(self, fileName, res, framerate):
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super(VideoSource, self).__init__(res)
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self.fileName = fileName
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self.resolution = resolution
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self.res = res
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self.framerate = framerate
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self.thread = None
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self.camera = None
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self.cancel = False
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if fileName == 'piCamera':
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self.camera = PiCamera()
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self.camera.resolution = (self.resolution[0], self.resolution[1])
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self.camera.resolution = (self.res[0], self.res[1])
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self.camera.framerate = self.framerate
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else:
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self.needRgbConversion = False
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@@ -45,14 +45,14 @@ class VideoSource(RgbProcessorAdapter):
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cap_w = cap.get(cv2.CAP_PROP_FRAME_WIDTH)
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cap_h = cap.get(cv2.CAP_PROP_FRAME_HEIGHT)
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needResize = False
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if self.resolution[0] != cap_w or self.resolution[1] != cap_h:
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if self.res[0] != cap_w or self.res[1] != cap_h:
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needResize = True
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while not self.cancel:
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ret, frame = cap.read()
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if ret:
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if needResize:
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self.write(imutils.resize(frame, width=self.resolution[0], height=self.resolution[1]))
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self.write(imutils.resize(frame, width=self.res[0], height=self.res[1]))
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else:
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self.write(frame)
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else:
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+6
-6
@@ -10,8 +10,8 @@ if ("__main__" == __name__):
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# Unit test with to threaded processors
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class MyRgbProcess1(RgbProcess):
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def __init__(self, name, resolution=(320, 240, 3), numEntries=2, next=None):
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super(MyRgbProcess1, self).__init__(name, resolution, numEntries, next)
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def __init__(self, name, res=(320, 240, 3), numEntries=2, next=None):
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super(MyRgbProcess1, self).__init__(name, res, numEntries, next)
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def onProcess(self):
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data = self.read(1.0)
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@@ -26,8 +26,8 @@ if ("__main__" == __name__):
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self.next.write(cv2.cvtColor(gray_blurred,cv2.COLOR_GRAY2BGR))
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class MyRgbProcess2(RgbProcess):
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def __init__(self, name, resolution=(320, 240, 3), numEntries=2, next=None):
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super(MyRgbProcess2, self).__init__(name, resolution, numEntries, next)
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def __init__(self, name, res=(320, 240, 3), numEntries=2, next=None):
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super(MyRgbProcess2, self).__init__(name, res, numEntries, next)
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def onProcess(self):
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data = self.read(1.0)
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@@ -44,8 +44,8 @@ if ("__main__" == __name__):
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camera.resolution = (320, 240)
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camera.framerate = 60
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frameDim = (camera.resolution[0], camera.resolution[1], 3)
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myProcessor2 = MyRgbProcess2('Process 2', (240, 320, 3), 4)
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myProcessor1 = MyRgbProcess1('Process 1', (240, 320, 3), 4, myProcessor2)
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myProcessor2 = MyRgbProcess2('Process 2', (320, 240, 3), 4)
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myProcessor1 = MyRgbProcess1('Process 1', (320, 240, 3), 4, myProcessor2)
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myRgbProcessorAdapter = RgbProcessorAdapter(frameDim)
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myRgbProcessorAdapter.processorAdd(myProcessor1)
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camera.start_recording(myRgbProcessorAdapter, format="bgr")
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