Startup
This commit is contained in:
@@ -1,4 +1,4 @@
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#Mon Oct 29 17:07:47 CET 2018
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#Thu Feb 07 08:31:43 CET 2019
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autoSaveScanData=true
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commandExecutionEvents=false
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createSessionFiles=false
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@@ -17,6 +17,7 @@ logLevel=Info
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logLevelConsole=Off
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logPath={logs}/{date}_{time}
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notificationLevel=Off
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saveCommandStatistics=false
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scanStreamerPort=-1
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serverEnabled=false
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serverPort=8080
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@@ -1,2 +1,2 @@
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#Fri Jan 25 16:44:14 CET 2019
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#Mon Feb 11 08:22:56 CET 2019
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geometry=fourcv
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@@ -1,12 +1,12 @@
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#Mon Oct 29 17:07:49 CET 2018
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#Mon Feb 11 08:01:07 CET 2019
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defaultSpeed=4.0
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estbilizationDelay=0
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hasEnable=false
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homingType=None
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maxSpeed=NaN
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maxValue=186.248
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maxValue=186.24375
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minSpeed=0.4
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minValue=-13.751999999999999
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minValue=-13.75625
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offset=0.0
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precision=4
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resolution=5.0E-4
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@@ -1,4 +1,4 @@
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#Mon Oct 29 17:07:49 CET 2018
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#Mon Feb 11 08:02:15 CET 2019
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defaultSpeed=4.0
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estbilizationDelay=0
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hasEnable=false
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@@ -1,10 +1,10 @@
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#Mon Oct 29 17:07:49 CET 2018
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#Mon Feb 11 08:01:59 CET 2019
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defaultSpeed=4.0
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estbilizationDelay=0
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hasEnable=false
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homingType=None
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maxSpeed=NaN
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maxValue=188.06875
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maxValue=164.85
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minSpeed=0.4
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minValue=-61.93125
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offset=0.0
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@@ -39,10 +39,13 @@ def close_shutter():
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###################################################################################################
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run("cpython/wrapper")
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run("device/Mythen")
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run("device/Pixel")
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run("device/Image")
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if not get_context().isSimulation():
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run("device/Mythen")
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run("device/Pixel")
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run("device/Image")
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else:
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energy.write(9.5)
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def after_sample(record, scan):
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close_shutter()
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83
script/test/TestNewDiffcalc.py
Normal file
83
script/test/TestNewDiffcalc.py
Normal file
@@ -0,0 +1,83 @@
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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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#hkl.con( 'eta', 0)
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###################################################################################################\
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#Orientation
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###################################################################################################
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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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help(ub.ub)
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ub.listub()
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#alpha delta gamma omegaV
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# Create a new ub calculation and set lattice parameters
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ub.newub('test')
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ub.setlat('cubic', 11.058, 5.8361, 5.114, 90, 90, 90)
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en = 1.5498
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#ub.c2th([0, 0, 4], en)
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ub.addref([0, 0, 4], [16.2785, 0.0, 32.5568, 0.0], en)
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#ub.c2th([2, 0, 12], en)
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ub.addref([2, 0, 12], [71.8285, 37.3082, 138.7440, 0.0], en)
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#ub.c2th([1, -4, 10], en)
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ub.addref([1, -4, 10], [27.7185, 17.6408 , 128.4220, 0.0], en)
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#ub.ub()
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#ub.setub([[1.22862 ,0.00000,0.00000], [-0.00000,1.07663,0.00000], [-0.00000,-0.00000,0.56820]])
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"""
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ub.setlat('cubic', 5.114, 5.8361, 11.058, 90, 90, 90)
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en = 1.5498
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#en=8
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#ub.c2th([0, 0, 4], en)
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ub.addref([0, 0, 4], [16.2785, 0.0, 32.5568, 0.0], en)
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#ub.c2th([2, 0, 12], en)
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ub.addref([2, 0, 12], [71.8285, 37.3082, 138.7440, 0.0], en)
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#ub.c2th([1, -4, 10], en)
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ub.addref([1, -4, 10], [27.7185, 17.6409 , 128.4220, 0.0], en)
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ub.ub()
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"""
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#ub.setub([[1.22862,0.00000,0.00000], [-0.00000,1.07663,0.00000], [-0.00000,-0.00000,0.56820]])
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# check the state
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ub.checkub()
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###################################################################################################\
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#Motion
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###################################################################################################
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#print angles_to_hkl((16.278, 0.0000, 32.5568, 0.0))
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print angles_to_hkl((44.3400, 0.0000, 123.7322 , 0.0))[0]
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print hkl_to_angles(2, -2, 6.59)[0]
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