fix issues with lakeshore 370
- simplify parsing/formatting of LakeShore commands -> allow 'g' as enum format - HasIO: check missing io later - ls370res.ResChannel: get io for channels from switcher - rwhandler.CommonWriteHandler: return value in write method - frappy_psi.channelswitcher: fix the case when default channel does not exist Change-Id: I28dd94cdf922cde307b870d4ffdfc64664c3423b Reviewed-on: https://forge.frm2.tum.de/review/c/secop/frappy/+/30949 Tested-by: Jenkins Automated Tests <pedersen+jenkins@frm2.tum.de> Reviewed-by: Markus Zolliker <markus.zolliker@psi.ch>
This commit is contained in:
@ -3,18 +3,27 @@ Node('LscSIM.psi.ch',
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'tcp://5000',
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)
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Mod('lsmain',
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'frappy_psi.ls370res.Main',
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'main control of Lsc controller',
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uri = 'localhost:4567',
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Mod('io',
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'frappy_psi.ls370res.StringIO',
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'io for Ls370',
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uri = 'localhost:2089',
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)
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Mod('sw',
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'frappy_psi.ls370res.Switcher',
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'channel switcher',
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io = 'io',
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)
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Mod('res',
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Mod('res1',
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'frappy_psi.ls370res.ResChannel',
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'resistivity',
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'resistivity chan 1',
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vexc = '2mV',
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channel = 1,
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switcher = 'sw',
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)
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Mod('res2',
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'frappy_psi.ls370res.ResChannel',
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'resistivity chn 3',
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vexc = '2mV',
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channel = 3,
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main = 'lsmain',
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# the auto created iodev from lsmain:
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iodev = 'lsmain_iodev',
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switcher = 'sw',
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)
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14
frappy/io.py
14
frappy/io.py
@ -52,21 +52,25 @@ class HasIO(Module):
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ioClass = None
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def __init__(self, name, logger, opts, srv):
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io = opts.get('io')
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super().__init__(name, logger, opts, srv)
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if self.uri:
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# automatic creation of io device
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opts = {'uri': self.uri, 'description': f'communication device for {name}',
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'visibility': 'expert'}
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ioname = self.ioDict.get(self.uri)
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if not ioname:
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ioname = io or name + '_io'
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ioname = opts.get('io') or f'{name}_io'
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io = self.ioClass(ioname, srv.log.getChild(ioname), opts, srv) # pylint: disable=not-callable
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io.callingModule = []
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srv.modules[ioname] = io
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self.ioDict[self.uri] = ioname
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self.io = ioname
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elif not io:
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raise ConfigError(f"Module {name} needs a value for either 'uri' or 'io'")
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def initModule(self):
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if not self.io:
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# self.io was not assigned
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raise ConfigError(f"Module {self.name} needs a value for either 'uri' or 'io'")
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super().initModule()
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def communicate(self, *args):
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return self.io.communicate(*args)
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@ -149,7 +153,7 @@ class IOBase(Communicator):
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self.is_connected is changed only by self.connectStart or self.closeConnection
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"""
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if self.is_connected:
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return True
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return True # no need for intermediate updates
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try:
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self.connectStart()
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if self._last_error:
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@ -212,7 +212,7 @@ class EnumMember:
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return self.value.__index__()
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def __format__(self, format_spec):
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if format_spec.endswith('d'):
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if format_spec.endswith(('d', 'g')):
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return format(self.value, format_spec)
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return super().__format__(format_spec)
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@ -217,6 +217,7 @@ class CommonWriteHandler(WriteHandler):
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raise ProgrammingError('a method wrapped with CommonWriteHandler must not return any value')
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# remove pname from writeDict. this was not removed in WriteParameters, as it was not missing
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module.writeDict.pop(pname, None)
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return getattr(module, pname)
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return method
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@ -29,7 +29,7 @@ from frappy.modules import Communicator
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class Ls370Sim(Communicator):
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CHANNEL_COMMANDS = [
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('RDGR?%d', '1.0'),
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('RDGR?%d', '200.0'),
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('RDGST?%d', '0'),
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('RDGRNG?%d', '0,5,5,0,0'),
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('INSET?%d', '1,5,5,0,0'),
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@ -59,11 +59,16 @@ class Ls370Sim(Communicator):
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def simulate(self):
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# not really a simulation. just for testing RDGST
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for channel in self.CHANNELS:
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_, _, _, _, excoff = self._data[f'RDGRNG?{channel}'].split(',')
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_, _, _, _, excoff = self.data[f'RDGRNG?{channel}'].split(',')
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if excoff == '1':
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self._data[f'RDGST?{channel}'] = '6'
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self.data[f'RDGST?{channel}'] = '6'
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else:
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self._data[f'RDGST?{channel}'] = '0'
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self.data[f'RDGST?{channel}'] = '0'
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for chan in self.CHANNELS:
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prev = float(self.data['RDGR?%d' % chan])
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# simple simulation: exponential convergence to 100 * channel number
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# using a weighted average
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self.data['RDGR?%d' % chan] = '%g' % (0.99 * prev + 0.01 * 100 * chan)
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def communicate(self, command):
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self.comLog(f'> {command}')
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@ -65,19 +65,22 @@ class ChannelSwitcher(Drivable):
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FloatRange(0, None), readonly=False, default=2)
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fast_poll = 0.1
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_channels = None # dict <channel no> of <module object>
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channels = None # dict <channel no> of <module object>
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_start_measure = 0
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_last_measure = 0
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_start_switch = 0
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_time_tol = 0.5
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_first_channel = None
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def earlyInit(self):
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super().earlyInit()
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self._channels = {}
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self.channels = {}
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def register_channel(self, mod):
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"""register module"""
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self._channels[mod.channel] = mod
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if not self.channels:
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self._first_channel = mod
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self.channels[mod.channel] = mod
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def set_active_channel(self, chan):
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"""tell the HW the active channel
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@ -91,7 +94,7 @@ class ChannelSwitcher(Drivable):
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def next_channel(self, channelno):
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next_channel = channelno
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first_channel = None
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for ch, mod in self._channels.items():
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for ch, mod in self.channels.items():
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if mod.enabled:
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if first_channel is None:
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first_channel = ch
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@ -107,7 +110,7 @@ class ChannelSwitcher(Drivable):
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def read_status(self):
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now = time.monotonic()
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if self.status[0] == 'BUSY':
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chan = self._channels[self.target]
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chan = self.channels[self.target]
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if chan.is_switching(now, self._start_switch, self.switch_delay):
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return self.status
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self.setFastPoll(False)
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@ -119,7 +122,7 @@ class ChannelSwitcher(Drivable):
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if self.measure_delay > self._time_tol:
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return self.status
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else:
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chan = self._channels[self.value]
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chan = self.channels.get(self.value, self._first_channel)
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self.read_value() # this might modify autoscan or deadline!
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if chan.enabled:
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if self.target != self.value: # may happen after startup
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@ -144,11 +147,11 @@ class ChannelSwitcher(Drivable):
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return value
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def write_target(self, channel):
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if channel not in self._channels:
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if channel not in self.channels:
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raise ValueError(f'{channel!r} is no valid channel')
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if channel == self.target and self._channels[channel].enabled:
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if channel == self.target and self.channels[channel].enabled:
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return channel
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chan = self._channels[channel]
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chan = self.channels[channel]
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chan.enabled = True
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self.set_active_channel(chan)
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self._start_switch = time.monotonic()
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@ -28,7 +28,6 @@ the hardware state.
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"""
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import time
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from ast import literal_eval
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import frappy.io
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from frappy.datatypes import BoolType, EnumType, FloatRange, IntRange, StatusType
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@ -48,7 +47,34 @@ class StringIO(frappy.io.StringIO):
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wait_before = 0.05
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class Switcher(HasIO, ChannelSwitcher):
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def parse_result(reply):
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result = []
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for strval in reply.split(','):
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try:
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result.append(int(strval))
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except ValueError:
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try:
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result.append(float(strval))
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except ValueError:
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result.append(strval)
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if len(result) == 1:
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return result[0]
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return result
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class LakeShoreIO(HasIO):
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def set_param(self, cmd, *args):
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head = ','.join([cmd] + [f'{a:g}' for a in args])
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tail = cmd.replace(' ', '?')
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reply = self.io.communicate(f'{head};{tail}')
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return parse_result(reply)
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def get_param(self, cmd):
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reply = self.io.communicate(cmd)
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return parse_result(reply)
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class Switcher(LakeShoreIO, ChannelSwitcher):
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value = Parameter(datatype=IntRange(1, 16))
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target = Parameter(datatype=IntRange(1, 16))
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use_common_delays = Parameter('use switch_delay and measure_delay instead of the channels pause and dwell',
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@ -63,10 +89,10 @@ class Switcher(HasIO, ChannelSwitcher):
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super().startModule(start_events)
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# disable unused channels
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for ch in range(1, 16):
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if ch not in self._channels:
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if ch not in self.channels:
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self.communicate(f'INSET {ch},0,0,0,0,0;INSET?{ch}')
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channelno, autoscan = literal_eval(self.communicate('SCAN?'))
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if channelno in self._channels and self._channels[channelno].enabled:
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channelno, autoscan = self.get_param('SCAN?')
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if channelno in self.channels and self.channels[channelno].enabled:
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if not autoscan:
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return # nothing to do
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else:
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@ -74,7 +100,7 @@ class Switcher(HasIO, ChannelSwitcher):
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if channelno is None:
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self.status = 'ERROR', 'no enabled channel'
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return
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self.communicate(f'SCAN {channelno},0;SCAN?')
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self.set_param(f'SCAN {channelno},0')
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def doPoll(self):
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"""poll buttons
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@ -82,22 +108,22 @@ class Switcher(HasIO, ChannelSwitcher):
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and check autorange during filter time
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"""
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super().doPoll()
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self._channels[self.target]._read_value() # check range or read
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channelno, autoscan = literal_eval(self.communicate('SCAN?'))
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self.channels[self.target].get_value() # check range or read
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channelno, autoscan = self.get_param('SCAN?')
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if autoscan:
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# pressed autoscan button: switch off HW autoscan and toggle soft autoscan
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self.autoscan = not self.autoscan
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self.communicate(f'SCAN {self.value},0;SCAN?')
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if channelno != self.value:
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# channel changed by keyboard, do not yet return new channel
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# channel changed by keyboard
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self.write_target(channelno)
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chan = self._channels.get(channelno)
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chan = self.channels.get(channelno)
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if chan is None:
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channelno = self.next_channel(channelno)
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if channelno is None:
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raise ValueError('no channels enabled')
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self.write_target(channelno)
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chan = self._channels.get(self.value)
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chan = self.channels.get(self.value)
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chan.read_autorange()
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chan.fix_autorange() # check for toggled autorange button
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return Done
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@ -135,12 +161,12 @@ class Switcher(HasIO, ChannelSwitcher):
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self.measure_delay = chan.dwell
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def set_active_channel(self, chan):
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self.communicate(f'SCAN {chan.channel},0;SCAN?')
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self.set_param(f'SCAN {chan.channel},0')
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chan._last_range_change = time.monotonic()
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self.set_delays(chan)
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class ResChannel(Channel):
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class ResChannel(LakeShoreIO, Channel):
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"""temperature channel on Lakeshore 370"""
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RES_RANGE = {key: i+1 for i, key in list(
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@ -179,28 +205,30 @@ class ResChannel(Channel):
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rdgrng_params = 'range', 'iexc', 'vexc'
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inset_params = 'enabled', 'pause', 'dwell'
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def communicate(self, command):
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return self.switcher.communicate(command)
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def initModule(self):
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# take io from switcher
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# pylint: disable=unsupported-assignment-operation
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self.attachedModules['io'] = self.switcher.io # pylint believes this is None
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super().initModule()
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def read_status(self):
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if not self.enabled:
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return [self.Status.DISABLED, 'disabled']
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if not self.channel == self.switcher.value == self.switcher.target:
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return Done
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result = int(self.communicate(f'RDGST?{self.channel}'))
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result &= 0x37 # mask T_OVER and T_UNDER (change this when implementing temperatures instead of resistivities)
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result = self.get_param(f'RDGST?{self.channel}')
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result &= 0x37 # mask T_OVER and T_UNDER (change this when implementing temperatures instead of resistances)
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statustext = ' '.join(formatStatusBits(result, STATUS_BIT_LABELS))
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if statustext:
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return [self.Status.ERROR, statustext]
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return [self.Status.IDLE, '']
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def _read_value(self):
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def get_value(self):
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"""read value, without update"""
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now = time.monotonic()
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if now + 0.5 < max(self._last_range_change, self.switcher._start_switch) + self.pause:
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return None
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result = self.communicate(f'RDGR?{self.channel}')
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result = float(result)
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result = self.get_param(f'RDGR{self.channel}')
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if self.autorange:
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self.fix_autorange()
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if now + 0.5 > self._last_range_change + self.pause:
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@ -224,19 +252,20 @@ class ResChannel(Channel):
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def read_value(self):
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if self.channel == self.switcher.value == self.switcher.target:
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return self._read_value()
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return Done # return previous value
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value = self._read_value()
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if value is not None:
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return value
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return self.value # return previous value
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def is_switching(self, now, last_switch, switch_delay):
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last_switch = max(last_switch, self._last_range_change)
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if now + 0.5 > last_switch + self.pause:
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self._read_value() # adjust range only
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self.get_value() # adjust range only
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return super().is_switching(now, last_switch, switch_delay)
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|
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@CommonReadHandler(rdgrng_params)
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def read_rdgrng(self):
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iscur, exc, rng, autorange, excoff = literal_eval(
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self.communicate(f'RDGRNG?{self.channel}'))
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iscur, exc, rng, autorange, excoff = self.get_param(f'RDGRNG{self.channel}')
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self._prev_rdgrng = iscur, exc
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if autorange: # pressed autorange button
|
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if not self._toggle_autorange:
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@ -252,11 +281,11 @@ class ResChannel(Channel):
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self.read_range() # make sure autorange is handled
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if 'vexc' in change: # in case vext is changed, do not consider iexc
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change['iexc'] = 0
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if change['iexc'] != 0: # we need '!= 0' here, as bool(enum) is always True!
|
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if change['iexc']:
|
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iscur = 1
|
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exc = change['iexc']
|
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excoff = 0
|
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elif change['vexc'] != 0: # we need '!= 0' here, as bool(enum) is always True!
|
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elif change['vexc']:
|
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iscur = 0
|
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exc = change['vexc']
|
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excoff = 0
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||||
@ -267,7 +296,7 @@ class ResChannel(Channel):
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if self.autorange:
|
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if rng < self.minrange:
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rng = self.minrange
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self.communicate(f'RDGRNG {self.channel},{iscur},{exc},{rng},0,{excoff};*OPC?')
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self.set_param(f'RDGRNG {self.channel}', iscur, exc, rng, 0, excoff)
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self.read_range()
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|
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def fix_autorange(self):
|
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@ -281,19 +310,14 @@ class ResChannel(Channel):
|
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@CommonReadHandler(inset_params)
|
||||
def read_inset(self):
|
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# ignore curve no and temperature coefficient
|
||||
enabled, dwell, pause, _, _ = literal_eval(
|
||||
self.communicate(f'INSET?{self.channel}'))
|
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self.enabled = enabled
|
||||
self.dwell = dwell
|
||||
self.pause = pause
|
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self.enabled, self.dwell, self.pause, _, _ = self.get_param(f'INSET?{self.channel}')
|
||||
|
||||
@CommonWriteHandler(inset_params)
|
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def write_inset(self, change):
|
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_, _, _, change['curve'], change['tempco'] = literal_eval(
|
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self.communicate(f'INSET?{self.channel}'))
|
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self.enabled, self.dwell, self.pause, _, _ = literal_eval(
|
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self.communicate('INSET {channel},{enabled:d},{dwell:d},'
|
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'{pause:d},{curve},{tempco};INSET?{channel}'.format_map(change)))
|
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_, _, _, curve, tempco = self.get_param(f'INSET?{self.channel}')
|
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self.enabled, self.dwell, self.pause, _, _ = self.set_param(
|
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f'INSET {self.channel}', change['enabled'], change['dwell'], change['pause'],
|
||||
curve, tempco)
|
||||
if 'enabled' in change and change['enabled']:
|
||||
# switch to enabled channel
|
||||
self.switcher.write_target(self.channel)
|
||||
@ -301,14 +325,13 @@ class ResChannel(Channel):
|
||||
self.switcher.set_delays(self)
|
||||
|
||||
def read_filter(self):
|
||||
on, settle, _ = literal_eval(self.communicate(f'FILTER?{self.channel}'))
|
||||
on, settle, _ = on, settle, _ = self.get_param(f'FILTER?{self.channel}')
|
||||
return settle if on else 0
|
||||
|
||||
def write_filter(self, value):
|
||||
on = 1 if value else 0
|
||||
value = max(1, value)
|
||||
on, settle, _ = literal_eval(self.communicate(
|
||||
f'FILTER {self.channel},{on},{value:g},80;FILTER?{self.channel}'))
|
||||
on, settle, _ = self.set_param(f'FILTER?{self.channel}', on, value, self.channel)
|
||||
if not on:
|
||||
settle = 0
|
||||
return settle
|
||||
|
Reference in New Issue
Block a user