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+#===========================================================================#
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+# #
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+# Copyright (C) 2006 - 2018 #
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+# IDS Imaging Development Systems GmbH #
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+# Dimbacher Str. 6-8 #
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+# D-74182 Obersulm, Germany #
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+# #
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+# The information in this document is subject to change without notice #
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+# and should not be construed as a commitment by IDS Imaging Development #
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+# Systems GmbH. IDS Imaging Development Systems GmbH does not assume any #
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+# responsibility for any errors that may appear in this document. #
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+# #
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+# This document, or source code, is provided solely as an example #
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+# of how to utilize IDS software libraries in a sample application. #
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+# IDS Imaging Development Systems GmbH does not assume any responsibility #
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+# for the use or reliability of any portion of this document or the #
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+# described software. #
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+# #
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+# General permission to copy or modify, but not for profit, is hereby #
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+# granted, provided that the above copyright notice is included and #
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+# reference made to the fact that reproduction privileges were granted #
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+# by IDS Imaging Development Systems GmbH. #
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+# #
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+# IDS Imaging Development Systems GmbH cannot assume any responsibility #
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+# for the use or misuse of any portion of this software for other than #
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+# its intended diagnostic purpose in calibrating and testing IDS #
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+# manufactured cameras and software. #
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+# #
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+#===========================================================================#
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+
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+# Developer Note: I tried to let it as simple as possible.
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+# Therefore there are no functions asking for the newest driver software or freeing memory beforehand, etc.
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+# The sole purpose of this program is to show one of the simplest ways to interact with an IDS camera via the uEye API.
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+# (XS cameras are not supported)
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+#---------------------------------------------------------------------------------------------------------------------------------------
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+
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+#Libraries
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+from ctypes import *
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+from pyueye import ueye
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+import numpy as np
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+import cv2
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+import sys
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+import ctypes
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+import struct
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+import threading
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+#---------------------------------------------------------------------------------------------------------------------------------------
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+
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+#Variables
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+
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+hCam = ueye.HIDS(0) #0: first available camera; 1-254: The camera with the specified camera ID
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+sInfo = ueye.SENSORINFO()
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+cInfo = ueye.CAMINFO()
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+pcImageMemory = ueye.c_mem_p()
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+MemID = ueye.int()
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+rectAOI = ueye.IS_RECT()
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+pitch = ueye.INT()
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+nBitsPerPixel = ueye.INT(24) #24: bits per pixel for color mode; take 8 bits per pixel for monochrome
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+channels = 3 #3: channels for color mode(RGB); take 1 channel for monochrome
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+m_nColorMode = ueye.INT() # Y8/RGB16/RGB24/REG32
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+bytes_per_pixel = int(nBitsPerPixel / 8)
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+formatInfo=ueye.IMAGE_FORMAT_INFO()
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+now=ctypes.c_uint()
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+m_pcSeqImgMem=[]
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+m_lSeqMemId=[]
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+nNum=ueye.INT()
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+pcMem=ueye.c_mem_p()
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+pcMemLast=ueye.c_mem_p()
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+ImageFileParams=ueye.IMAGE_FILE_PARAMS()
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+#---------------------------------------------------------------------------------------------------------------------------------------
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+print("START")
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+print()
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+
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+# Starts the driver and establishes the connection to the camera
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+nRet = ueye.is_InitCamera(hCam, None)
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+if nRet != ueye.IS_SUCCESS:
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+ print("is_InitCamera ERROR")
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+
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+ueye.is_ParameterSet(hCam,ueye.IS_PARAMETERSET_CMD_LOAD_EEPROM,None,0)
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+
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+# Reads out the data hard-coded in the non-volatile camera memory and writes it to the data structure that cInfo points to
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+nRet = ueye.is_GetCameraInfo(hCam, cInfo)
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+if nRet != ueye.IS_SUCCESS:
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+ print("is_GetCameraInfo ERROR")
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+
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+# You can query additional information about the sensor type used in the camera
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+nRet = ueye.is_GetSensorInfo(hCam, sInfo)
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+if nRet != ueye.IS_SUCCESS:
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+ print("is_GetSensorInfo ERROR")
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+
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+# Set display mode to DIB
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+nRet = ueye.is_SetDisplayMode(hCam, ueye.IS_SET_DM_DIB)
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+
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+# Set the right color mode
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+if int.from_bytes(sInfo.nColorMode.value, byteorder='big') == ueye.IS_COLORMODE_BAYER:
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+ # setup the color depth to the current windows setting
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+ ueye.is_GetColorDepth(hCam, nBitsPerPixel, m_nColorMode)
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+ bytes_per_pixel = int(nBitsPerPixel / 8)
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+ print("IS_COLORMODE_BAYER: ", )
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+ print("\tm_nColorMode: \t\t", m_nColorMode)
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+ print("\tnBitsPerPixel: \t\t", nBitsPerPixel)
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+ print("\tbytes_per_pixel: \t\t", bytes_per_pixel)
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+ print()
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+
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+elif int.from_bytes(sInfo.nColorMode.value, byteorder='big') == ueye.IS_COLORMODE_CBYCRY:
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+ # for color camera models use RGB32 mode
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+ m_nColorMode = ueye.IS_CM_BGR8_PACKED
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+ nBitsPerPixel = ueye.INT(24)
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+ bytes_per_pixel = int(nBitsPerPixel / 8)
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+ print("IS_COLORMODE_CBYCRY: ", )
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+ print("\tm_nColorMode: \t\t", m_nColorMode)
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+ print("\tnBitsPerPixel: \t\t", nBitsPerPixel)
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+ print("\tbytes_per_pixel: \t\t", bytes_per_pixel)
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+ print()
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+
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+elif int.from_bytes(sInfo.nColorMode.value, byteorder='big') == ueye.IS_COLORMODE_MONOCHROME:
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+ # for color camera models use RGB32 mode
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+ m_nColorMode = ueye.IS_CM_MONO8
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+ nBitsPerPixel = ueye.INT(8)
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+ bytes_per_pixel = int(nBitsPerPixel / 8)
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+ print("IS_COLORMODE_MONOCHROME: ", )
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+ print("\tm_nColorMode: \t\t", m_nColorMode)
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+ print("\tnBitsPerPixel: \t\t", nBitsPerPixel)
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+ print("\tbytes_per_pixel: \t\t", bytes_per_pixel)
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+ print()
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+
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+else:
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+ # for monochrome camera models use Y8 mode
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+ m_nColorMode = ueye.IS_CM_MONO8
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+ nBitsPerPixel = ueye.INT(8)
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+ bytes_per_pixel = int(nBitsPerPixel / 8)
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+ print("else")
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+
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+
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+ueye.is_SetColorMode(hCam,ueye.IS_CM_BGRA8_PACKED)
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+nBitsPerPixel=ueye.INT(32)
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+# Can be used to set the size and position of an "area of interest"(AOI) within an image
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+nRet = ueye.is_AOI(hCam, ueye.IS_AOI_IMAGE_GET_AOI, rectAOI, ueye.sizeof(rectAOI))
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+if nRet != ueye.IS_SUCCESS:
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+ print("is_AOI ERROR")
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+
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+width =rectAOI.s32Width
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+height =rectAOI.s32Height
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+
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+# Prints out some information about the camera and the sensor
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+print("Camera model:\t\t", sInfo.strSensorName.decode('utf-8'))
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+print("Camera serial no.:\t", cInfo.SerNo.decode('utf-8'))
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+print("Maximum image width:\t", width)
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+print("Maximum image height:\t", height)
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+print()
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+
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+#---------------------------------------------------------------------------------------------------------------------------------------
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+
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+for i in range(1,5):
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+# Allocates an image memory for an image having its dimensions defined by width and height and its color depth defined by nBitsPerPixel
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+ nRet = ueye.is_AllocImageMem(hCam, width, height, nBitsPerPixel, pcImageMemory, MemID)
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+ # m_pcSeqImgMem.append(pcImageMemory)
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+ # m_lSeqMemId.append(MemID)
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+ ueye.is_AddToSequence(hCam,pcImageMemory,MemID)
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+
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+#path=ueye.c_wchar_p()
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+#print(type(path))
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+#nRet = ueye.is_ParameterSet(hCam, ueye.IS_PARAMETERSET_CMD_LOAD_FILE, path, 0)
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+
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+# Activates the camera's live video mode (free run mode)
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+nRet = ueye.is_CaptureVideo(hCam, ueye.IS_DONT_WAIT)
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+if nRet != ueye.IS_SUCCESS:
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+ print("is_CaptureVideo ERROR")
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+
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+nRet = ueye.is_InquireImageMem(hCam, pcImageMemory, MemID, width, height, nBitsPerPixel, pitch)
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+if nRet != ueye.IS_SUCCESS:
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+ print("is_InquireImageMem ERROR")
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+else:
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+ print("Press q to leave the programm")
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+
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+Count=0
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+
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+while(nRet == ueye.IS_SUCCESS):
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+
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+ ueye.is_GetActSeqBuf(hCam, nNum, pcMem, pcMemLast)
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+ array = ueye.get_data(pcMemLast, width, height, nBitsPerPixel, pitch, copy=False)
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+
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+ bytes_per_pixel = int(nBitsPerPixel / 8)
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+ # ...reshape it in an numpy array...
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+ frame = np.reshape(array,(height.value, width.value, bytes_per_pixel))
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+ # ...resize the image by a half
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+
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+ frame = cv2.resize(frame,(0,0),fx=0.5, fy=0.5)
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+
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+ #---------------------------------------------------------------------------------------------------------------------------------------
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+ #Include image data processing here
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+ if cv2.waitKey(2) & 0xFF == ord('p'):
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+ Count=Count+1
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+ ImageFileParams.pwchFileName = ueye.c_wchar_p('C:\\Users\\User\\Desktop\\test\\1.png')
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+ #ImageFileParams.pnImageID = &nID;
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+ #ImageFileParams.ppcImageMem = &pcMemory;
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+ ImageFileParams.nFileType = ueye.IS_IMG_PNG
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+ #ImageFileParams.ppcImageMem = pcMemLast;
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+ ImageFileParams.nQuality = 75
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+ nRet = ueye.is_ImageFile(hCam, ueye.IS_IMAGE_FILE_CMD_SAVE, ImageFileParams, ueye.sizeof(ImageFileParams));
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+ print(Count)
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+ print(nRet)
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+#---------------------------------------------------------------------------------------------------------------------------------------
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+ #...and finally display it
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+ cv2.imshow("SimpleLive_Python_uEye_OpenCV", frame)
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+
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+ # Press q if you want to end the loop
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+ if cv2.waitKey(1) & 0xFF == ord('q'):
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+ break
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+#---------------------------------------------------------------------------------------------------------------------------------------
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+
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+# Releases an image memory that was allocated using is_AllocImageMem() and removes it from the driver management
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+ueye.is_FreeImageMem(hCam, pcImageMemory, MemID)
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+
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+
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+# Disables the hCam camera handle and releases the data structures and memory areas taken up by the uEye camera
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+ueye.is_ExitCamera(hCam)
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+
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+# Destroys the OpenCv windows
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+cv2.destroyAllWindows()
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+
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+print()
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+print("END")
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