adding move_record.py
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.idea/vcs.xml
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.idea/vcs.xml
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<?xml version="1.0" encoding="UTF-8"?>
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<project version="4">
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<component name="VcsDirectoryMappings">
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<mapping directory="$PROJECT_DIR$" vcs="Git" />
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</component>
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</project>
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BIN
python/data/prog_1.npz
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BIN
python/data/prog_1.npz
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275
python/move_record.py
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275
python/move_record.py
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#!/usr/bin/env python
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# *-----------------------------------------------------------------------*
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# | |
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# | Copyright (c) 2016 by Paul Scherrer Institute (http://www.psi.ch) |
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# | |
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# | Author Thierry Zamofing (thierry.zamofing@psi.ch) |
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# *-----------------------------------------------------------------------*
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'''
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shape an optimal path with given points
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verbose bits:
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1 basic info
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4 list program
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4 upload progress
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8 plot gather path
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#config file example:
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{
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"points": [
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[100,523],[635,632],[756,213],
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"sequencer":[
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'gen_grid_points(w=10,h=10,pitch=100,rnd=.2)',
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'sort_points()',
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'gen_prog(file="'+fn+'.prg")',
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'plot_gather("'+fn+'.npz")']
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}
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Sequencer functions are:
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- generate points (if not in the 'points' configuration)
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gen_rand_points(self,n=107,scale=1000)
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gen_grid_points(w=10,h=10,pitch=100,rnd=.2)
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- sorting points:
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sort_points(self)
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- generate/download/execute motion progran, upload trace of motors (gather data)
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gen_prog(self,prgId=2,file=None,host=None)
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if host=None nothing will be downloaded/executed and trace of motors will not be uploaded
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if file=None the program will not be saved and nothing will be executed
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gen_prog modes:
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-1 jog a 10mm square
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0 linear motion
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1 pvt motion
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2 spline motion
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- plot gathered data
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plot_gather("'+fn+'.npz")
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this makes only sence, if motion has been executed and data can be gathered from the powerbrick
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Acquired time is:MaxSamples*Period*.2
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'''
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import os, sys, json
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import numpy as np
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import matplotlib as mpl
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import matplotlib.pyplot as plt
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import subprocess as sprc
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import telnetlib
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from utilities import *
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os.environ['PATH']='/home/zamofing_t/scripts/:'+os.environ['PATH']
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class MoveRecord:
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def __init__(self,args):
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fn='/tmp/moverecord'
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self.fnPrg=fn+'.prg'
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self.fnNpz=fn+'.npz'
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#cfg = {"sequencer": ['prog_1(host="SAROP11-CPPM-MOT6871",acq_per=10)', 'plot_1()']}
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cfg = {"sequencer": ['plot_1()']}
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self.cfg=dotdict(cfg)
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self.args=args
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def run(self):
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print('args='+str(self.args))
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print('cfg='+str(self.cfg))
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try:
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sequencer= self.cfg.pop('sequencer')
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except KeyError:
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print('no command sequence to execute')
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else:
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for cmd in sequencer:
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print '>'*5+' '+cmd+' '+'<'*5
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eval('self.' + cmd)
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def prg_prolog(self):
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prg=self.prg
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gather=self.gather
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channels=self.channels
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prg.append('Gather.Enable=0')
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prg.append('Gather.Items=%d'%len(channels))
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for k,v in gather.iteritems():
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prg.append('Gather.%s=%d'%(k,v))
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for i,c in enumerate(channels):
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prg.append('Gather.Addr[%d]=%s.a'%(i,c))
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prg.append('open prog %d'%(self.prgId))
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def prg_epilog(self):
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fnPrg=self.fnPrg
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fnNpz=self.fnNpz
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host=self.host
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prg=self.prg
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prg.append('close')
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prg.append('&1\nb%dr\n'%self.prgId)
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if self.args.verbose & 4:
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for ln in prg:
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print(ln)
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if fnPrg is not None:
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fh=open(fnPrg,'w')
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fh.write('\n'.join(prg))
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fh.close()
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if host is not None:
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cmd ='gpasciiCommander --host '+host+' '+ fnPrg
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print cmd
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p = sprc.Popen(cmd, shell=True)#, stdout=sprc.PIPE, stderr=sprc.STDOUT)
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#res=p.stdout.readlines(); print res
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retval = p.wait()
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#gather -u /var/ftp/gather/out.txt
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cmd ='PBGatherPlot -m24 -v7 --host '+host
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print cmd
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p = sprc.Popen(cmd, shell=True)#, stdout=sprc.PIPE, stderr=sprc.STDOUT)
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retval = p.wait()
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meta = self.meta
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channels = self.channels
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fnLoc='/tmp/gather.txt'
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rec = np.genfromtxt(fnLoc, delimiter=' ')
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# rec=Motor[1].ActPos,Motor[2].ActPos,Motor[3].ActPos,Motor[1].DesPos,Motor[2].DesPos,Motor[3].DesPos
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# res=rot.ActPos,y.ActPos,x.ActPos,rot.DesPos,y.DesPos,x.DesPos
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# idx 0 1 2 3 4 5
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if fnNpz:
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np.savez_compressed(fnNpz, rec=rec, prg=self.prg, channels=self.channels, meta=meta)
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def prog_1(self,prgId=2,host=None,acq_per=1):
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'''
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kwargs:
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acq_per : acquire period: acquire data all acq_per servo loops (default=1)
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prgId : used program number
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file : used filename to save if None, not saved
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host : host to send and execute program, if None, nothing is executed
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'''
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ServoPeriod= .2 #0.2ms Sys.ServoPeriod is dependent of !common() macro
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self.prgId=prgId
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self.file=file
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self.host=host
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self.gather={"MaxSamples":1000000, "Period":acq_per}
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self.channels=["Motor[3].ActPos","Motor[3].DesPos","Motor[3].PhasePos","Motor[3].idMeas","Motor[3].iqMeas"]
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self.meta=meta = {'timebase': ServoPeriod*self.gather['Period']}
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self.prg=prg=[]
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#prg.append('#1..3$')
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#prg.append('#1..3j/')
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self.prg_prolog()
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prg=self.prg
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prg.append(' linear abs')
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prg.append('jog3=1000')
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prg.append('dwell 100')
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prg.append('Gather.Enable=2')
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for spd in (5,10,20,30,40):
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prg.append('Motor[3].JogSpeed=%d'%spd)
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prg.append('jog3=27000')
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prg.append('dwell 100')
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prg.append('jog3=1000')
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prg.append('dwell 100')
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prg.append('Gather.Enable=0')
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self.prg_epilog()
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# &1 #1->0
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# &1 #2->0
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# #3$
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# an anschlag (kabel) bewegen
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# #3hmz
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# Motor[3].PhasePos=1200
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# #3j/
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# &1p
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#folgende parameter setzen: Motor[3].HomePos
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meta['HomePos']=-223.8 #Motor[3].HomePos
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meta['PhasePos']=1200 #Motor[3].PhasePos
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@staticmethod
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def onclick(event):
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print 'button=%s, x=%d, y=%d, xdata=%f, ydata=%f'%(
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event.button, event.x, event.y, event.xdata, event.ydata)
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obj=event.canvas.figure.obj
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def plot_1(self):
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try:
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rec=self.rec
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prg=self.prg
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channels=self.channels
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meta=self.meta
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except AttributeError:
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fh=np.load(self.fnNpz)
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rec=fh['rec']
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prg=list(fh['prg'])
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channels=list(fh['channels'])
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meta=fh['meta'].item()
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time=np.arange(0,rec.shape[0])*meta['timebase']
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fig=plt.figure();
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fig.obj=self; cid=fig.canvas.mpl_connect('button_press_event', self.onclick)
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fig.canvas.set_window_title('position')
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ax = fig.add_subplot(1,1,1)
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hl=[]
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hl+=ax.plot(time,rec[:,0],'r-',label=channels[0])
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hl+=ax.plot(time,rec[:,1],'g-',label=channels[1])
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hl+=ax.plot(time,rec[:,2],'b-',label=channels[2])
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ax.xaxis.set_label_text('ms')
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ax.yaxis.set_label_text('um')
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legend = ax.legend(loc='upper right', shadow=True)
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fig=plt.figure();
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fig.obj=self; cid=fig.canvas.mpl_connect('button_press_event', self.onclick)
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fig.canvas.set_window_title('current')
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ax = fig.add_subplot(1,1,1)
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hl=[]
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sz=100; weights = np.repeat(1.0, sz) / sz
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v = np.convolve(rec[:,3], weights, 'same')
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hl+=ax.plot(time,v,'r-',label=channels[3])
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v = np.convolve(rec[:, 4], weights, 'same')
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hl+=ax.plot(time,v,'g-',label=channels[4])
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ax.xaxis.set_label_text('ms')
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ax.yaxis.set_label_text('current in bits')
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legend = ax.legend(loc='upper right', shadow=True)
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print 'abs average ',channels[4], np.abs(rec[:, 4]).mean()
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plt.show()
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if __name__=='__main__':
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from optparse import OptionParser, IndentedHelpFormatter
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class MyFormatter(IndentedHelpFormatter):
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'helper class for formating the OptionParser'
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def __init__(self):
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IndentedHelpFormatter.__init__(self)
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def format_epilog(self, epilog):
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if epilog:
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return epilog
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else:
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return ""
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def parse_args():
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'main command line interpreter function'
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#usage: gpasciiCommunicator.py --host=PPMACZT84 myPowerBRICK.cfg
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(h, t)=os.path.split(sys.argv[0]);cmd='\n '+(t if len(h)>3 else sys.argv[0])+' '
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exampleCmd=('--host=PPMAC1391 -m 63 --cfg gather.cfg',
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'samplePowerBrick.cfg',
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'-n stackCheck1.cfg',
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'--host=PPMACZT84 stackCheck1.cfg',
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'--host=PPMACZT84 stackCheck1.cfg -v15',
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)
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epilog=__doc__+'''
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Examples:'''+''.join(map(lambda s:cmd+s, exampleCmd))+'\n '
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fmt=MyFormatter()
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parser=OptionParser(epilog=epilog, formatter=fmt)
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parser.add_option('-v', '--verbose', type="int", dest='verbose', help='verbosity bits (see below)', default=0)
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(args, other)=parser.parse_args()
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args.other=other
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mr=MoveRecord(args)
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mr.run()
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#------------------ Main Code ----------------------------------
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#ssh_test()
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ret=parse_args()
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exit(ret)
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@@ -83,10 +83,10 @@ class ShapePath:
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#cfg = {"points": [[0, 0],[100, 0],[200, 0],[300, 0],[400, 0],[400, 100],[300, 100],[200, 100],[100, 100],[0, 100],[10, 200],[100, 200],[200, 200],[300, 200],[400, 200],[410, 300],[300, 300],[200, 300],[100, 300],[0, 300],[0, 400],[100, 400],[200, 400],[300, 400],[400, 400]],"sequencer": ['gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=0)', 'plot_gather("'+fn+'.npz")']}
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#cfg = {"sequencer": ['gen_grid_points(w=2,h=2,pitch=10000,rnd=0)', 'sort_points()','gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=-1)', 'plot_gather("'+fn+'.npz")']}
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#cfg = {"sequencer": ['gen_grid_points(w=2,h=2,pitch=10000,rnd=0)', 'sort_points()','gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=1,pt2pt_time=1000)', 'plot_gather("'+fn+'.npz")']}
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cfg = {"sequencer": ['gen_grid_points(w=20,h=20,pitch=100,rnd=0.2)', 'sort_points()','gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=1,pt2pt_time=10,acq_per=10)', 'plot_gather("'+fn+'.npz")']}
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cfg = {"sequencer": ['gen_grid_points(w=20,h=20,pitch=50,rnd=0.2)', 'sort_points()','gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=1,pt2pt_time=10,acq_per=10)', 'plot_gather("'+fn+'.npz")']}
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#cfg = {"sequencer": ['gen_rand_points(n=400, scale=1000)', 'sort_points()','gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=1,pt2pt_time=10)', 'plot_gather("'+fn+'.npz")']}
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#cfg = {"sequencer": ['gen_grid_points(w=5,h=5,pitch=100,rnd=0.2)', 'sort_points()','gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=2,pt2pt_time=10)', 'plot_gather("'+fn+'.npz")']}
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#cfg = {"sequencer":['gen_rand_points(n=400, scale=1000)','sort_points()','gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=1,pt2pt_time=10)','plot_gather("'+fn+'.npz")']}
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#cfg = {"sequencer":['gen_rand_points(n=400, scale=1000)','sort_points()','gen_prog(file="'+fn+'.prg",host="SAROP11-CPPM-MOT6871",mode=1,pt2pt_time=10,acq_per=1)','plot_gather("'+fn+'.npz")']}
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self.cfg=dotdict(cfg)
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self.args=args
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@@ -130,8 +130,8 @@ class ShapePath:
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pt2pt_time : time to move from one point to the next point
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'''
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prg=[]
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acq_frq=kwargs.get('acq_frq',1)
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gather={"MaxSamples":1000000, "Period":acq_frq}
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acq_per=kwargs.get('acq_per',1)
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gather={"MaxSamples":1000000, "Period":acq_per}
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#Sys.ServoPeriod is dependent of !common() macro
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ServoPeriod= .2 #0.2ms
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#ServoPeriod = .05
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