Startup
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###################################################################################################\
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#Geometry
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###################################################################################################
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set_geometry("fourcv", True)
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###################################################################################################\
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#Constraints
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###################################################################################################
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#hkl.con('a_eq_b')
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#equivalent to 'setmode 0' + 'freeze 5'
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hkl.con( 'alpha', 5) #alpha constant
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#equivalent to 'setmode 1' + 'freeze 5'
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#hkl.con( 'beta', 5) #be constant
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#equivalent to 'setmode 2''
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#hkl.con('a_eq_b') #alpha=beta
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#hkl.con( 'eta', 0)
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setup_axis(alpha, alpha.getMinValue(), alpha.getMaxValue())
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setup_axis(delta, delta.getMinValue(), 90) #delta.getMaxValue())
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setup_axis(gamma, gamma.getMinValue(), gamma.getMaxValue())
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setup_axis(omegaV, omegaV.getMinValue(), omegaV.getMaxValue())
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###################################################################################################\
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#Orientation
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###################################################################################################
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"""
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Enter real space lattice parameters:
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Lattice a (1.305)? 7.723
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Lattice b (1.305)? 7.707
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Lattice c (1.305)? 7.723
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Lattice alpha (90)? 90
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Lattice beta (90)? 89.265
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Lattice gamma (90)? 90
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"""
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newub('test1')
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setlat('cubic', 7.723, 7.707, 7.723, 90.0, 89.265, 90.0)
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en = 9.5
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#en = 12.4 #!!!!!
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#Only available in newer Diffcalc
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#ub.setmiscut(0)
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#Calculated with newer Diffcalc
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# UB matrix: 0.81363 0.00000 -0.01044
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# 0.00000 0.81526 0.00000
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# 0.00000 0.00000 0.81357
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#setub([[ 0.81363, 0.00000, 0.00000], [0.00000, 0.81526, 0.00000], [-0.01044, 0.00000, 0.81357]])
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addref([0, 1, 2], [5.0, 9.379, 19.7895, 102.6162], en)
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addref([2, 0, 2], [5.0, 19.0754, 20.1865, 11.9693], en)
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addref([2, 2, 2], [5.0, 27.1234, 21.2368, 60.0354], en)
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#refineub([2, 2, 2], [5.0, 27.1234, 21.2368, 60.0354])
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#showub()
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checkub()
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calc_ub = getub()
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print hklci((44.3400, 0.0000, 123.7322 , 0.0))[0]
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print hklca((0, 1, 2))[0]
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print hklca((2, 0, 2))[0]
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print hklca((2, 2, 2))[0]
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set_count_time(1.0)
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detectors = [mythen, mythen.acquire_time, pixel, pixel.image_filename, image.intensity,image.corrected_intensity, image.matrix]
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#pixel.set_path("tmp", "gobbo")
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pixel.set_path("../../expdata/bml_20190211a/pixel/", "images")
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pixel.set_threshold(40, 500, 8000, 100000)
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pixel.show()
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pixel.assert_ready()
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#tscan(detectors, 1, 1.0 , before_read=trigger_detectors, after_read=save_metadata)
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lscan (l, detectors, 1.9, 2.1, 40 , before_read=trigger_detectors, after_read=save_metadata)
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