- remove secop.poller and basic poller - regular polls for 'important' parameters done by method doPoll - all other parameters are polled slower (slowInterval) and with lower priority (only one at a time when main poll is due) - nopoll decorator for read_* to disable poll - enablePoll attribute (default True) for disabling polling a module - fast polls may be implemented by means of a statemachine - configurable slow poll interval + allow a Parameter to override a Property (parameter Readable.pollinterval overrides Module.pollinterval) Change-Id: Ib1b3453041a233678b7c4b4add22ac399670e447 Reviewed-on: https://forge.frm2.tum.de/review/c/sine2020/secop/playground/+/27832 Reviewed-by: Enrico Faulhaber <enrico.faulhaber@frm2.tum.de> Reviewed-by: Markus Zolliker <markus.zolliker@psi.ch> Tested-by: Jenkins Automated Tests <pedersen+jenkins@frm2.tum.de>
160 lines
5.5 KiB
Python
160 lines
5.5 KiB
Python
#!/usr/bin/env python
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# -*- coding: utf-8 -*-
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# *****************************************************************************
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# This program is free software; you can redistribute it and/or modify it under
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# the terms of the GNU General Public License as published by the Free Software
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# Foundation; either version 2 of the License, or (at your option) any later
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# version.
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#
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# This program is distributed in the hope that it will be useful, but WITHOUT
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# ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
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# FOR A PARTICULAR PURPOSE. See the GNU General Public License for more
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# details.
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#
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# You should have received a copy of the GNU General Public License along with
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# this program; if not, write to the Free Software Foundation, Inc.,
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# 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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#
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# Module authors:
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# Markus Zolliker <markus.zolliker@psi.ch>
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# *****************************************************************************
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"""Keithley 2601B source meter
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not tested yet"""
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from secop.core import Attached, BoolType, EnumType, FloatRange, \
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HasIO, Module, Parameter, StringIO, Writable
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class K2601bIO(StringIO):
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identification = [('print(localnode.description)', 'Keithley Instruments SMU 2601B.*')]
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SOURCECMDS = {
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1: 'reset()'
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'smua.source.func = smua.OUTPUT_DCVOLTS '
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'display.smua.measure.func = display.MEASURE_DCAMP '
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'smua.source.autorangev = 1',
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2: 'reset()'
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'smua.source.func = smua.OUTPUT_DCAMPS '
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'smua.source.autorangei = 1',
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}
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class SourceMeter(HasIO, Module):
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resistivity = Parameter('readback resistivity', FloatRange(unit='Ohm'))
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power = Parameter('readback power', FloatRange(unit='W'))
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mode = Parameter('measurement mode', EnumType(off=0, current=1, voltage=2),
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readonly=False, default=0)
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active = Parameter('output enable', BoolType(), readonly=False)
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ioClass = K2601bIO
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def read_resistivity(self):
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return self.communicate('print(smua.measure.r())')
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def read_power(self):
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return self.communicate('print(smua.measure.p())')
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def read_active(self):
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return self.communicate('print(smua.source.output)')
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def write_active(self, value):
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return self.communicate('smua.source.output = %d print(smua.source.output)' % value)
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# for now, mode will not be read from hardware
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def write_mode(self, value):
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if value == 0:
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self.write_active(0)
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else:
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self.communicate(SOURCECMDS[value] + ' print(0)')
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return value
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class Current(HasIO, Writable):
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sourcemeter = Attached()
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value = Parameter('measured current', FloatRange(unit='A'))
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target = Parameter('set current', FloatRange(unit='A'))
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active = Parameter('current is controlled', BoolType(), default=False) # polled from Current/Voltage
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limit = Parameter('current limit', FloatRange(0, 2.0, unit='A'), default=2)
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def read_value(self):
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return self.communicate('print(smua.measure.i())')
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def read_target(self):
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return self.communicate('print(smua.source.leveli)')
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def write_target(self, value):
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if not self.active:
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raise ValueError('current source is disabled')
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if value > self.limit:
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raise ValueError('current exceeds limit')
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return self.communicate('smua.source.leveli = %g print(smua.source.leveli)' % value)
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def read_limit(self):
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if self.active:
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return self.limit
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return self.communicate('print(smua.source.limiti)')
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def write_limit(self, value):
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if self.active:
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return value
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return self.communicate('smua.source.limiti = %g print(smua.source.limiti)' % value)
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def read_active(self):
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return self.sourcemeter.mode == 1 and self.sourcemeter.read_active()
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def write_active(self, value):
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if self.sourcemeter.mode != 1:
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if value:
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self.sourcemeter.write_mode(1) # switch to current
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else:
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return 0
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return self.sourcemeter.write_active(value)
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class Voltage(HasIO, Writable):
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sourcemeter = Attached()
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value = Parameter('measured voltage', FloatRange(unit='V'))
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target = Parameter('set voltage', FloatRange(unit='V'))
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active = Parameter('voltage is controlled', BoolType())
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limit = Parameter('current limit', FloatRange(0, 2.0, unit='V'), default=2)
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def read_value(self):
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return self.communicate('print(smua.measure.v())')
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def read_target(self):
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return self.communicate('print(smua.source.levelv)')
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def write_target(self, value):
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if not self.active:
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raise ValueError('voltage source is disabled')
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if value > self.limit:
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raise ValueError('voltage exceeds limit')
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return self.communicate('smua.source.levelv = %g print(smua.source.levelv)' % value)
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def read_limit(self):
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if self.active:
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return self.limit
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return self.communicate('print(smua.source.limitv)')
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def write_limit(self, value):
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if self.active:
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return value
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return self.communicate('smua.source.limitv = %g print(smua.source.limitv)' % value)
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def read_active(self):
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return self.sourcemeter.mode == 2 and self.sourcemeter.read_active()
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def write_active(self, value):
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if self.sourcemeter.mode != 2:
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if value:
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self.sourcemeter.write_mode(2) # switch to voltage
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else:
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return 0
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return self.sourcemeter.write_active(value)
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