forked from M-Labs/thermostat
atse
b39e7dc015
Also: * Add aioclient The old client is synchronous and blocking, and the only way to achieve true asynchronous IO is to create a new client that interfaces with asyncio. * Finish Nix Flake description and make the GUI available for `nix run`
199 lines
6.1 KiB
Python
199 lines
6.1 KiB
Python
from PyQt6 import QtWidgets, uic
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from PyQt6.QtCore import pyqtSignal, QObject, QSignalBlocker, pyqtSlot
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from pyqtgraph import PlotWidget
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from pyqtgraph.parametertree import Parameter, ParameterTree, ParameterItem, registerParameterType
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import pyqtgraph as pg
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import sys
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import argparse
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import logging
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import asyncio
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from pytec.aioclient import Client
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import qasync
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from qasync import asyncSlot, asyncClose
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# pyuic6 -x tec_qt.ui -o ui_tec_qt.py
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from ui_tec_qt import Ui_MainWindow
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tec_client: Client = None
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# ui = None
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ui: Ui_MainWindow = None
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client_watcher = None
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client_watcher_task = None
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app: QtWidgets.QApplication = None
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def get_argparser():
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parser = argparse.ArgumentParser(description="ARTIQ master")
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parser.add_argument("--connect", default=None, action="store_true",
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help="Automatically connect to the specified Thermostat in IP:port format")
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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("-l", "--log", dest="logLevel", choices=['DEBUG', 'INFO', 'WARNING', 'ERROR', 'CRITICAL'],
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help="Set the logging level")
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return parser
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class ClientWatcher(QObject):
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fan_update = pyqtSignal(object)
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def __init__(self, parent, update_s):
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self.update_s = update_s
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self.running = True
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super().__init__(parent)
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async def run(self):
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while self.running:
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await self.update_params()
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await asyncio.sleep(self.update_s)
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async def update_params(self):
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self.fan_update.emit(await self._client.get_fan())
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def start_watching(self):
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self._watch_task = asyncio.create_task(self.run())
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@pyqtSlot()
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def stop_watching(self):
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self.running = False
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@pyqtSlot()
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def set_update_s(self):
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self.update_s = ui.report_refresh_spin.value()
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def on_connection_changed(result):
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global client_watcher, client_watcher_task
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ui.graph_group.setEnabled(result)
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ui.hw_rev_lbl.setEnabled(result)
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ui.fan_group.setEnabled(result)
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ui.report_group.setEnabled(result)
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ui.ip_set_line.setEnabled(not result)
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ui.port_set_spin.setEnabled(not result)
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ui.status_lbl.setText("Connected" if result else "Disconnected")
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ui.connect_btn.setText("Disconnect" if result else "Connect")
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if not result:
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ui.hw_rev_lbl.setText("Thermostat vX.Y")
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ui.fan_group.setStyleSheet("")
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if client_watcher:
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client_watcher.stop_watching()
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client_watcher = None
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client_watcher_task = None
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def hw_rev(hw_rev_d: dict):
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logging.debug(hw_rev_d)
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ui.hw_rev_lbl.setText(f"Thermostat v{hw_rev_d['rev']['major']}.{hw_rev_d['rev']['major']}")
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ui.fan_group.setEnabled(hw_rev_d["settings"]["fan_available"])
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if hw_rev_d["settings"]["fan_pwm_recommended"]:
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ui.fan_group.setStyleSheet("")
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ui.fan_group.setToolTip("")
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else:
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ui.fan_group.setStyleSheet("background-color: yellow")
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ui.fan_group.setToolTip("Changing the fan settings of not recommended")
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def fan_update(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(ui.fan_power_slider) as _:
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ui.fan_power_slider.setValue(fan_settings["fan_pwm"])
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ui.fan_power_slider.setEnabled(not fan_settings["auto_mode"])
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with QSignalBlocker(ui.fan_auto_box) as _:
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ui.fan_auto_box.setChecked(fan_settings["auto_mode"])
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@asyncSlot()
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async def fan_set(_):
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global tec_client
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if tec_client is None or ui.fan_auto_box.isChecked():
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return
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await tec_client.set_param("fan", ui.fan_power_slider.value())
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@asyncSlot()
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async def fan_auto_set(enabled):
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global tec_client
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if tec_client is None:
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return
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ui.fan_power_slider.setEnabled(not enabled)
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if enabled:
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await tec_client.set_param("fan", "auto")
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else:
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await tec_client.set_param("fan", ui.fan_power_slider.value())
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@asyncSlot()
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async def connect(_):
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global tec_client, client_watcher, client_watcher_task
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ip, port = ui.ip_set_line.text(), ui.port_set_spin.value()
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try:
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if tec_client:
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await tec_client.disconnect()
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tec_client = None
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on_connection_changed(False)
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else:
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ui.status_lbl.setText("Connecting...")
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tec_client = Client()
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await tec_client.connect(host=ip, port=port, timeout=30)
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on_connection_changed(True)
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hw_rev(await tec_client.hw_rev())
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# fan_update(await tec_client.fan())
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if client_watcher is None:
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client_watcher = ClientWatcher(ui.main_widget, ui.report_refresh_spin.value())
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client_watcher.fan_update.connect(fan_update)
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ui.report_apply_btn.clicked.connect(
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lambda: client_watcher.set_update_s(ui.report_refresh_spin.value())
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)
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app.aboutToQuit.connect(client_watcher.stop_watching)
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client_watcher_task = asyncio.create_task(client_watcher.run())
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except Exception as e:
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logging.error(f"Failed communicating to the {ip}:{port}: {e}")
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on_connection_changed(False)
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async def coro_main():
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global ui, app
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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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main_window = QtWidgets.QMainWindow()
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ui = Ui_MainWindow()
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ui.setupUi(main_window)
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# ui = uic.loadUi('tec_qt.ui', main_window)
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ui.connect_btn.clicked.connect(connect)
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ui.fan_power_slider.valueChanged.connect(fan_set)
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ui.fan_auto_box.stateChanged.connect(fan_auto_set)
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if args.connect:
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if args.IP:
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ui.ip_set_line.setText(args.IP)
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if args.PORT:
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ui.port_set_spin.setValue(int(args.PORT))
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ui.connect_btn.click()
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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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