import ch.psi.pshell.epics.ControlledVariable as ControlledVariable import ch.psi.pshell.epics.Camtool as Camtool if get_exec_pars().source == CommandSource.ui: start = 0.0 stop = 360.0 step = 5.0 nb = 1 lat = 0.100 else: start = args[0] stop = args[1] step = args[2] nb = int(args[3]) lat = args[4] disp = 0.32 energy0 = 6.5 phase = ControlledVariable("Phase", "SINEG01-RSYS:SET-VSUM-PHASE-SIM", "SINEG01-RSYS:GET-VSUM-PHASE-SIM") phase.config.minValue =-45.0 phase.config.maxValue = 360.0 phase.config.resolution = 0.5 phase.initialize() camtool = Camtool("sflca:10000") camtool.startPipeline("simulated") camtool.startReceiver() x = camtool.getValue("x_fit_mean") #x = Channel("SINEG01-RSYS:GET-VSUM-AMPLT-SIM", type = 'd', alias='Amplitude Readback') #dx = Channel("SINEG01-RSYS:GET-KLY-POWER-SIM", type = 'd', alias='Power Readback') try: xb = create_averager(x, nb, 0.100) dxb = create_averager(dx, nb, 0.100) r = lscan(phase, [xb, dxb], start, stop, step , latency=lat, after_read = after) rf_phase = r.getPositions(0) E = [val.mean/1000.0/disp*energy0 for val in r.getReadable(0)] dE = [val.mean/1000.0/disp*energy0 for val in r.getReadable(1)] finally: phase.close() V.close() P.close() st.close() p = plot([E, dE],"data", rf_phase, title="Phase scan")[0] p.addSeries(LinePlotSeries("fit")) p.getSeries(1).setData(fit_x, fit_y)