forked from M-Labs/thermostat
atse
ba47a30d92
Adds the option "pinSiPrefix" for all `Parameters` of type `int` or `float`, and use it for current Parameters with unit "mA". This let's us remove all instances of mA scaling scattered all around the code and specify it in the parameter tree with a single source of truth.
429 lines
16 KiB
Python
429 lines
16 KiB
Python
from pytec.gui.view.zero_limits_warning import ZeroLimitsWarningView
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from pytec.gui.view.net_settings_input_diag import NetSettingsInputDiag
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from pytec.gui.view.thermostat_ctrl_menu import ThermostatCtrlMenu
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from pytec.gui.view.conn_menu import ConnMenu
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from pytec.gui.view.plot_options_menu import PlotOptionsMenu
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from pytec.gui.view.live_plot_view import LiveDataPlotter
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from pytec.gui.view.ctrl_panel import CtrlPanel
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from pytec.gui.view.info_box import InfoBox
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from pytec.gui.model.pid_autotuner import PIDAutoTuner
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from pytec.gui.model.thermostat import WrappedClient, Thermostat
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import json
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from autotune import PIDAutotuneState
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from qasync import asyncSlot, asyncClose
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import qasync
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from pytec.aioclient import StoppedConnecting
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import asyncio
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import logging
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import argparse
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from PyQt6 import QtWidgets, QtGui, uic
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from PyQt6.QtCore import QSignalBlocker, pyqtSlot
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import pyqtgraph as pg
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from functools import partial
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import importlib.resources
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def get_argparser():
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parser = argparse.ArgumentParser(description="Thermostat Control Panel")
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parser.add_argument(
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"--connect",
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default=None,
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action="store_true",
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help="Automatically connect to the specified Thermostat in IP:port format",
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)
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parser.add_argument("IP", metavar="ip", default=None, nargs="?")
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parser.add_argument("PORT", metavar="port", default=None, nargs="?")
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parser.add_argument(
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"-l",
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"--log",
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dest="logLevel",
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choices=["DEBUG", "INFO", "WARNING", "ERROR", "CRITICAL"],
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help="Set the logging level",
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)
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parser.add_argument(
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"-p",
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"--param_tree",
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default=importlib.resources.files("pytec.gui.view").joinpath("param_tree.json"),
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help="Param Tree Description JSON File",
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)
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return parser
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class MainWindow(QtWidgets.QMainWindow):
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NUM_CHANNELS = 2
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def __init__(self, args):
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super(MainWindow, self).__init__()
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ui_file_path = importlib.resources.files("pytec.gui.view").joinpath("tec_qt.ui")
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uic.loadUi(ui_file_path, self)
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self.hw_rev_data = None
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self.info_box = InfoBox()
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self.client = WrappedClient(self)
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self.client.connection_error.connect(self.bail)
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self.thermostat = Thermostat(
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self, self.client, self.report_refresh_spin.value()
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)
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self.autotuners = PIDAutoTuner(self, self.client, 2)
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def get_ctrl_panel_config(args):
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with open(args.param_tree, "r") as f:
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return json.load(f)["ctrl_panel"]
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param_tree_sigActivated_handles = [
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[
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[["save"], partial(self.thermostat.save_cfg, ch)],
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[["load"], partial(self.thermostat.load_cfg, ch)],
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[
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["pid", "pid_autotune", "run_pid"],
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partial(self.pid_auto_tune_request, ch),
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],
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]
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for ch in range(self.NUM_CHANNELS)
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]
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self.thermostat.info_box_trigger.connect(self.info_box.display_info_box)
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self.zero_limits_warning = ZeroLimitsWarningView(
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self.style(), self.limits_warning
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)
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self.ctrl_panel_view = CtrlPanel(
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[self.ch0_tree, self.ch1_tree],
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get_ctrl_panel_config(args),
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self.send_command,
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param_tree_sigActivated_handles,
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)
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self.ctrl_panel_view.set_zero_limits_warning_sig.connect(
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self.zero_limits_warning.set_limits_warning
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)
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self.thermostat.fan_update.connect(self.fan_update)
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self.thermostat.report_update.connect(self.ctrl_panel_view.update_report)
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self.thermostat.report_update.connect(self.autotuners.tick)
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self.thermostat.report_update.connect(self.pid_autotune_handler)
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self.thermostat.pid_update.connect(self.ctrl_panel_view.update_pid)
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self.thermostat.pwm_update.connect(self.ctrl_panel_view.update_pwm)
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self.thermostat.thermistor_update.connect(
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self.ctrl_panel_view.update_thermistor
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)
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self.thermostat.postfilter_update.connect(
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self.ctrl_panel_view.update_postfilter
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)
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self.thermostat.interval_update.connect(
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self.autotuners.update_sampling_interval
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)
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self.report_apply_btn.clicked.connect(
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lambda: self.thermostat.set_update_s(self.report_refresh_spin.value())
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)
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self.channel_graphs = LiveDataPlotter(
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[
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[getattr(self, f"ch{ch}_t_graph"), getattr(self, f"ch{ch}_i_graph")]
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for ch in range(self.NUM_CHANNELS)
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]
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)
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self.thermostat.report_update.connect(self.channel_graphs.update_report)
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self.thermostat.pid_update.connect(self.channel_graphs.update_pid)
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self.plot_options_menu = PlotOptionsMenu()
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self.plot_options_menu.clear.triggered.connect(self.clear_graphs)
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self.plot_options_menu.samples_spinbox.valueChanged.connect(
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self.channel_graphs.set_max_samples
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)
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self.plot_settings.setMenu(self.plot_options_menu)
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self.conn_menu = ConnMenu()
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self.connect_btn.setMenu(self.conn_menu)
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self.thermostat_ctrl_menu = ThermostatCtrlMenu(self.style())
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self.thermostat_ctrl_menu.fan_set_act.connect(self.fan_set_request)
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self.thermostat_ctrl_menu.fan_auto_set_act.connect(self.fan_auto_set_request)
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self.thermostat_ctrl_menu.reset_act.connect(self.reset_request)
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self.thermostat_ctrl_menu.dfu_act.connect(self.dfu_request)
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self.thermostat_ctrl_menu.save_cfg_act.connect(self.save_cfg_request)
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self.thermostat_ctrl_menu.load_cfg_act.connect(self.load_cfg_request)
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self.thermostat_ctrl_menu.net_cfg_act.connect(self.net_settings_request)
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self.thermostat.hw_rev_update.connect(self.thermostat_ctrl_menu.hw_rev)
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self.thermostat_settings.setMenu(self.thermostat_ctrl_menu)
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self.loading_spinner.hide()
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if args.connect:
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if args.IP:
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self.host_set_line.setText(args.IP)
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if args.PORT:
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self.port_set_spin.setValue(int(args.PORT))
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self.connect_btn.click()
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def clear_graphs(self):
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self.channel_graphs.clear_graphs()
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async def _on_connection_changed(self, result):
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self.graph_group.setEnabled(result)
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self.report_group.setEnabled(result)
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self.thermostat_settings.setEnabled(result)
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self.conn_menu.host_set_line.setEnabled(not result)
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self.conn_menu.port_set_spin.setEnabled(not result)
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self.connect_btn.setText("Disconnect" if result else "Connect")
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if result:
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self.hw_rev_data = await self.thermostat.get_hw_rev()
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logging.debug(self.hw_rev_data)
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self._status(self.hw_rev_data)
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self.thermostat.start_watching()
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else:
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self.status_lbl.setText("Disconnected")
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self.background_task_lbl.setText("Ready.")
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self.loading_spinner.hide()
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self.loading_spinner.stop()
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self.thermostat_ctrl_menu.fan_pwm_warning.setPixmap(QtGui.QPixmap())
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self.thermostat_ctrl_menu.fan_pwm_warning.setToolTip("")
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self.clear_graphs()
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self.report_box.setChecked(False)
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if not Thermostat.connecting or Thermostat.connected:
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for ch in range(self.NUM_CHANNELS):
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if self.autotuners.get_state(ch) != PIDAutotuneState.STATE_OFF:
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await self.autotuners.stop_pid_from_running(ch)
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await self.thermostat.set_report_mode(False)
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self.thermostat.stop_watching()
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def _status(self, hw_rev_d: dict):
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logging.debug(hw_rev_d)
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self.status_lbl.setText(
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f"Connected to Thermostat v{hw_rev_d['rev']['major']}.{hw_rev_d['rev']['minor']}"
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)
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@pyqtSlot("QVariantMap")
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def fan_update(self, fan_settings):
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logging.debug(fan_settings)
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if fan_settings is None:
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return
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with QSignalBlocker(self.thermostat_ctrl_menu.fan_power_slider):
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self.thermostat_ctrl_menu.fan_power_slider.setValue(
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fan_settings["fan_pwm"] or 100 # 0 = PWM off = full strength
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)
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with QSignalBlocker(self.thermostat_ctrl_menu.fan_auto_box):
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self.thermostat_ctrl_menu.fan_auto_box.setChecked(fan_settings["auto_mode"])
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if not self.hw_rev_data["settings"]["fan_pwm_recommended"]:
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self.thermostat_ctrl_menu.set_fan_pwm_warning()
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@asyncSlot(int)
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async def on_report_box_stateChanged(self, enabled):
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await self.thermostat.set_report_mode(enabled)
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@asyncClose
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async def closeEvent(self, event):
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try:
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await self.bail()
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except:
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pass
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@asyncSlot()
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async def on_connect_btn_clicked(self):
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host, port = (
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self.conn_menu.host_set_line.text(),
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self.conn_menu.port_set_spin.value(),
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)
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try:
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if not (self.client.connecting() or self.client.connected()):
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self.status_lbl.setText("Connecting...")
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self.connect_btn.setText("Stop")
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self.conn_menu.host_set_line.setEnabled(False)
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self.conn_menu.port_set_spin.setEnabled(False)
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try:
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await self.client.start_session(host=host, port=port, timeout=5)
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except StoppedConnecting:
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return
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await self._on_connection_changed(True)
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else:
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await self.bail()
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# TODO: Remove asyncio.TimeoutError in Python 3.11
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except (OSError, TimeoutError, asyncio.TimeoutError):
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try:
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await self.bail()
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except ConnectionResetError:
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pass
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@asyncSlot()
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async def bail(self):
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await self._on_connection_changed(False)
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await self.client.end_session()
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@asyncSlot(object, object)
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async def send_command(self, param, changes):
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"""Translates parameter tree changes into thermostat set_param calls"""
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ch = param.channel
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for inner_param, change, data in changes:
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if change == "value":
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if inner_param.opts.get("param", None) is not None:
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thermostat_param = inner_param.opts["param"]
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if thermostat_param[1] == "ch":
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thermostat_param[1] = ch
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if inner_param.name() == "rate" and data is None:
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set_param_args = (*thermostat_param[:2], "off")
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else:
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set_param_args = (*thermostat_param, data)
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param.child(*param.childPath(inner_param)).setOpts(lock=True)
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await self.client.set_param(*set_param_args)
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param.child(*param.childPath(inner_param)).setOpts(lock=False)
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if inner_param.opts.get("pid_autotune", None) is not None:
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auto_tuner_param = inner_param.opts["pid_autotune"][0]
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if inner_param.opts["pid_autotune"][1] != "ch":
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ch = inner_param.opts["pid_autotune"][1]
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self.autotuners.set_params(auto_tuner_param, ch, data)
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if inner_param.opts.get("activaters", None) is not None:
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activater = inner_param.opts["activaters"][
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inner_param.reverse[0].index(data) # ListParameter.reverse = list of codename values
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]
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if activater is not None:
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if activater[1] == "ch":
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activater[1] = ch
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await self.client.set_param(*activater)
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@asyncSlot()
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async def pid_auto_tune_request(self, ch=0):
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match self.autotuners.get_state(ch):
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case PIDAutotuneState.STATE_OFF | PIDAutotuneState.STATE_FAILED:
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self.autotuners.load_params_and_set_ready(ch)
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case PIDAutotuneState.STATE_READY | PIDAutotuneState.STATE_RELAY_STEP_UP | PIDAutotuneState.STATE_RELAY_STEP_DOWN:
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await self.autotuners.stop_pid_from_running(ch)
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# To Update the UI elements
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self.pid_autotune_handler([])
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@asyncSlot(list)
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async def pid_autotune_handler(self, _):
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ch_tuning = []
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for ch in range(self.NUM_CHANNELS):
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match self.autotuners.get_state(ch):
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case PIDAutotuneState.STATE_OFF:
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self.ctrl_panel_view.change_params_title(
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ch, ("pid", "pid_autotune", "run_pid"), "Run"
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)
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case PIDAutotuneState.STATE_READY | PIDAutotuneState.STATE_RELAY_STEP_UP | PIDAutotuneState.STATE_RELAY_STEP_DOWN:
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self.ctrl_panel_view.change_params_title(
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ch, ("pid", "pid_autotune", "run_pid"), "Stop"
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)
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ch_tuning.append(ch)
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case PIDAutotuneState.STATE_SUCCEEDED:
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self.info_box.display_info_box(
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"PID Autotune Success",
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f"Channel {ch} PID Settings has been loaded to Thermostat. Regulating temperature.",
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)
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self.info_box.show()
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case PIDAutotuneState.STATE_FAILED:
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self.info_box.display_info_box(
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"PID Autotune Failed", f"Channel {ch} PID Autotune has failed."
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)
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self.info_box.show()
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if len(ch_tuning) == 0:
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self.background_task_lbl.setText("Ready.")
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self.loading_spinner.hide()
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self.loading_spinner.stop()
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else:
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self.background_task_lbl.setText(
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"Autotuning channel {ch}...".format(ch=ch_tuning)
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)
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self.loading_spinner.start()
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self.loading_spinner.show()
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@asyncSlot(int)
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async def fan_set_request(self, value):
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if not self.client.connected():
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return
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if self.thermostat_ctrl_menu.fan_auto_box.isChecked():
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with QSignalBlocker(self.thermostat_ctrl_menu.fan_auto_box):
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self.thermostat_ctrl_menu.fan_auto_box.setChecked(False)
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await self.client.set_fan(value)
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if not self.hw_rev_data["settings"]["fan_pwm_recommended"]:
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self.thermostat_ctrl_menu.set_fan_pwm_warning()
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@asyncSlot(int)
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async def fan_auto_set_request(self, enabled):
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if not self.client.connected():
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return
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if enabled:
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await self.client.set_fan("auto")
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self.fan_update(await self.client.get_fan())
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else:
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await self.client.set_fan(
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self.thermostat_ctrl_menu.fan_power_slider.value()
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)
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@asyncSlot(int)
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async def save_cfg_request(self, ch):
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await self.thermostat.save_cfg(str(ch))
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@asyncSlot(int)
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async def load_cfg_request(self, ch):
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await self.thermostat.load_cfg(str(ch))
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@asyncSlot(bool)
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async def dfu_request(self, _):
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await self._on_connection_changed(False)
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await self.thermostat.dfu()
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@asyncSlot(bool)
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async def reset_request(self, _):
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await self._on_connection_changed(False)
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await self.thermostat.reset()
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await asyncio.sleep(0.1) # Wait for the reset to start
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self.connect_btn.click() # Reconnect
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@asyncSlot(bool)
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async def net_settings_request(self, _):
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ipv4 = await self.thermostat.get_ipv4()
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self.net_settings_input_diag = NetSettingsInputDiag(ipv4["addr"])
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self.net_settings_input_diag.set_ipv4_act.connect(self.set_net_settings_request)
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@asyncSlot(str)
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async def set_net_settings_request(self, ipv4_settings):
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await self.thermostat.set_ipv4(ipv4_settings)
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await self.thermostat._client.end_session()
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await self._on_connection_changed(False)
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async def coro_main():
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args = get_argparser().parse_args()
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if args.logLevel:
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logging.basicConfig(level=getattr(logging, args.logLevel))
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app_quit_event = asyncio.Event()
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app = QtWidgets.QApplication.instance()
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app.aboutToQuit.connect(app_quit_event.set)
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app.setWindowIcon(
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QtGui.QIcon(str(importlib.resources.files("pytec.gui.resources").joinpath("artiq.ico")))
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)
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main_window = MainWindow(args)
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main_window.show()
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await app_quit_event.wait()
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def main():
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qasync.run(coro_main())
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if __name__ == "__main__":
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main()
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