A step can now carry both 'ramp' and 'hold': it ramps to the target temp, then holds there for the given duration, instead of needing two separate schedule entries. Sud.temp_reached() switches such a step from its ramp phase into its hold phase in place (re-firing the step-changed callback so SudTask/demo_sud re-apply the hold's stirrer settings); user_wait_for_continue still applies once the whole step - both phases - is done. Merges sud_0010.json's three ramp/hold pairs into combined steps.
571 lines
22 KiB
Python
Executable File
571 lines
22 KiB
Python
Executable File
#!/usr/bin/env python3
|
|
from main_window import Ui_MainWindow
|
|
from PyQt5 import QtWidgets, QtGui, QtCore
|
|
import json
|
|
import sys
|
|
import threading
|
|
import time
|
|
import matplotlib
|
|
matplotlib.use("Qt5Agg")
|
|
from matplotlib.backends.backend_qt5agg import FigureCanvasQTAgg
|
|
from matplotlib.figure import Figure
|
|
from matplotlib.ticker import AutoMinorLocator
|
|
from components.sud import Sud
|
|
from ws.client.ws_client import WsClient
|
|
from ws.message import MessageDispatcherSync
|
|
from queue import Queue
|
|
import asyncio
|
|
|
|
# str(SudState.X) values (as sent in the 'State' message) that count as
|
|
# "running" for enabling/disabling the Start/Pause/Stop toolbar actions.
|
|
SUD_RUNNING_STATES = {"SudState.RAMPING", "SudState.HOLDING", "SudState.WAIT_USER"}
|
|
SUD_WAIT_USER_STATE = "SudState.WAIT_USER"
|
|
SUD_PAUSED_STATE = "SudState.PAUSED"
|
|
|
|
|
|
def _style_axis(ax):
|
|
ax.set_facecolor('white')
|
|
ax.spines['top'].set_visible(False)
|
|
ax.spines['right'].set_visible(False)
|
|
ax.xaxis.set_minor_locator(AutoMinorLocator())
|
|
ax.yaxis.set_minor_locator(AutoMinorLocator())
|
|
ax.tick_params(which='major', direction='out', labelsize='small')
|
|
ax.tick_params(which='minor', direction='out', length=2)
|
|
ax.grid(which='major', linestyle='-', linewidth=0.5, alpha=0.3)
|
|
ax.grid(which='minor', linestyle=':', linewidth=0.5, alpha=0.15)
|
|
|
|
|
|
class RealtimePlot(FigureCanvasQTAgg):
|
|
"""Live theta/heatrate/heater-power strip charts, mirroring figure 1 of
|
|
scripts/demos/sud/demo_sud.py but fed from the websocket connection
|
|
instead of an offline simulation run."""
|
|
|
|
def __init__(self):
|
|
figure = Figure(facecolor='white')
|
|
FigureCanvasQTAgg.__init__(self, figure)
|
|
|
|
self.ax_temp, self.ax_rate, self.ax_power = figure.subplots(3, 1, sharex=True)
|
|
|
|
self.line_temp_ist, = self.ax_temp.plot([], [], '-b', linewidth=1, label="theta_ist")
|
|
self.line_temp_soll, = self.ax_temp.plot([], [], '-r', linewidth=1, label="theta_soll")
|
|
self.ax_temp.set_ylabel("Temp [°C]")
|
|
self.ax_temp.legend(loc='upper left', fontsize='small')
|
|
|
|
self.line_rate_ist, = self.ax_rate.plot([], [], '-b', linewidth=1, label="heatrate_ist")
|
|
self.line_rate_soll, = self.ax_rate.plot([], [], '-r', linewidth=1, label="heatrate_soll")
|
|
self.ax_rate.set_ylabel("Rate [K/min]")
|
|
self.ax_rate.legend(loc='upper left', fontsize='small')
|
|
|
|
self.line_power_set, = self.ax_power.plot([], [], '-r', linewidth=1, label="power_set")
|
|
self.line_power_eff, = self.ax_power.plot([], [], '-b', linewidth=1, label="power_eff")
|
|
self.ax_power.set_ylabel("Power [W]")
|
|
self.ax_power.set_xlabel("t [s]")
|
|
self.ax_power.legend(loc='upper left', fontsize='small')
|
|
|
|
for ax in (self.ax_temp, self.ax_rate, self.ax_power):
|
|
_style_axis(ax)
|
|
|
|
# Only the bottom subplot needs x tick labels - sharex keeps the
|
|
# others in sync without repeating them.
|
|
self.ax_temp.label_outer()
|
|
self.ax_rate.label_outer()
|
|
|
|
figure.tight_layout()
|
|
self.reset()
|
|
|
|
def reset(self):
|
|
self.t0 = time.monotonic()
|
|
self.t = []
|
|
self.temp_ist = []
|
|
self.temp_soll = []
|
|
self.rate_ist = []
|
|
self.rate_soll = []
|
|
self.power_set = []
|
|
self.power_eff = []
|
|
|
|
def sample(self, temp_ist, temp_soll, rate_ist, rate_soll, power_set, power_eff):
|
|
self.t.append(time.monotonic() - self.t0)
|
|
self.temp_ist.append(temp_ist)
|
|
self.temp_soll.append(temp_soll)
|
|
self.rate_ist.append(rate_ist)
|
|
self.rate_soll.append(rate_soll)
|
|
self.power_set.append(power_set)
|
|
self.power_eff.append(power_eff)
|
|
|
|
self.line_temp_ist.set_data(self.t, self.temp_ist)
|
|
self.line_temp_soll.set_data(self.t, self.temp_soll)
|
|
self.line_rate_ist.set_data(self.t, self.rate_ist)
|
|
self.line_rate_soll.set_data(self.t, self.rate_soll)
|
|
self.line_power_set.set_data(self.t, self.power_set)
|
|
self.line_power_eff.set_data(self.t, self.power_eff)
|
|
|
|
for ax in (self.ax_temp, self.ax_rate, self.ax_power):
|
|
ax.relim()
|
|
ax.autoscale_view()
|
|
|
|
self.draw_idle()
|
|
|
|
|
|
class SudForecastPlot(FigureCanvasQTAgg):
|
|
"""A static preview of a Sud schedule's temperature course, computed
|
|
from its nominal ramp rates/hold durations alone (no plant/controller
|
|
model - just how long the declared schedule says each step should
|
|
take), so it can be shown as soon as a schedule is loaded/edited,
|
|
before a brew is actually started."""
|
|
|
|
def __init__(self):
|
|
figure = Figure(facecolor='white')
|
|
FigureCanvasQTAgg.__init__(self, figure)
|
|
|
|
self.ax = figure.subplots(1, 1)
|
|
self.line, = self.ax.plot([], [], '-b', linewidth=1.5)
|
|
self.progress_line = self.ax.axvline(0, color='r', linewidth=1.5, visible=False)
|
|
self.ax.set_xlabel("t [min]")
|
|
self.ax.set_ylabel("Temp [°C]")
|
|
_style_axis(self.ax)
|
|
|
|
figure.tight_layout()
|
|
|
|
@staticmethod
|
|
def _estimate_course(schedule, start_theta):
|
|
"""Walks the schedule, accumulating (t, theta) waypoints: ramps take
|
|
abs(delta)/rate minutes at the declared rate, holds last for their
|
|
duration at the temperature the preceding ramp reached. A step may
|
|
carry both - ramp then hold - contributing both segments in turn."""
|
|
t = [0.0]
|
|
theta = [start_theta]
|
|
for step in schedule:
|
|
ramp = step.get('ramp')
|
|
hold = step.get('hold')
|
|
if ramp is not None:
|
|
rate = ramp.get('rate', 0)
|
|
target = ramp['temp']
|
|
if rate > 0:
|
|
t.append(t[-1] + abs(target - theta[-1]) / rate * 60.0)
|
|
theta.append(target)
|
|
if hold is not None:
|
|
t.append(t[-1] + hold.get('duration', 0) * 60.0)
|
|
theta.append(theta[-1])
|
|
return t, theta
|
|
|
|
def show_schedule(self, schedule, start_theta):
|
|
t, theta = self._estimate_course(schedule, start_theta)
|
|
t_min = [seconds / 60.0 for seconds in t]
|
|
|
|
self.line.set_data(t_min, theta)
|
|
self.ax.relim()
|
|
self.ax.autoscale_view()
|
|
self.ax.set_title("Estimated course (nominal rates, no plant model) "
|
|
"- {:.0f} min total".format(t_min[-1] if t_min else 0.0), fontsize='small')
|
|
self.figure.tight_layout()
|
|
self.draw_idle()
|
|
|
|
def set_progress(self, t_min):
|
|
self.progress_line.set_xdata([t_min, t_min])
|
|
self.progress_line.set_visible(True)
|
|
self.draw_idle()
|
|
|
|
def clear_progress(self):
|
|
self.progress_line.set_visible(False)
|
|
self.draw_idle()
|
|
|
|
|
|
class Window(QtWidgets.QMainWindow, Ui_MainWindow):
|
|
# on_sud_changed() runs on the websocket recv thread, but a modal dialog
|
|
# must be shown from the GUI thread - a signal/slot crosses that thread
|
|
# boundary safely (Qt auto-queues the slot call onto the receiver's
|
|
# thread when sender and receiver differ).
|
|
user_message_signal = QtCore.pyqtSignal(str)
|
|
|
|
def __init__(self):
|
|
QtWidgets.QMainWindow.__init__(self)
|
|
self.setWindowIcon(QtGui.QIcon('res/beer.png'))
|
|
self.user_message_signal.connect(self.on_user_message_signal)
|
|
|
|
loop = asyncio.new_event_loop()
|
|
asyncio.set_event_loop(loop)
|
|
self.msg_dispatch = MessageDispatcherSync(auto_subscribe=True)
|
|
self.msg_dispatch.on_connect_changed = self.on_ws_connect_changed
|
|
self.ws_client = WsClient(listener=self.msg_dispatch, loop=loop)
|
|
self.connected = False
|
|
self.sud_loaded = False
|
|
self.sud_state = None
|
|
self.sud_user_message = None
|
|
# Global, not Sud-specific - from the 'System' channel's one-time
|
|
# startup message. warp_factor defaults to 1.0 (no scaling) until
|
|
# that arrives, or for a server that doesn't send it at all.
|
|
self.ambient_temp = None
|
|
self.warp_factor = 1.0
|
|
# time.monotonic() of the last IDLE/DONE -> running transition, used
|
|
# to position the forecast plot's progress line; None while not
|
|
# running. sud_paused_total accumulates time spent PAUSED so the
|
|
# progress line freezes during a pause instead of jumping ahead;
|
|
# sud_pause_started_at is when the current pause began, if any.
|
|
self.sud_start_time = None
|
|
self.sud_paused_total = 0.0
|
|
self.sud_pause_started_at = None
|
|
self.msg_pot = self.msg_dispatch.msgio_get('Pot')
|
|
self.msg_sensor = self.msg_dispatch.msgio_get('Sensor')
|
|
self.msg_heater = self.msg_dispatch.msgio_get('Heater')
|
|
self.msg_stirrer = self.msg_dispatch.msgio_get('Stirrer')
|
|
self.msg_tempctrl = self.msg_dispatch.msgio_get('TempCtrl')
|
|
self.msg_sud = self.msg_dispatch.msgio_get('Sud')
|
|
self.msg_system = self.msg_dispatch.msgio_get('System')
|
|
|
|
self.msg_pot.set_recv_handler(self.on_pot_changed)
|
|
self.msg_sensor.set_recv_handler(self.on_sensor_changed)
|
|
self.msg_heater.set_recv_handler(self.on_heater_changed)
|
|
self.msg_stirrer.set_recv_handler(self.on_stirrer_changed)
|
|
self.msg_tempctrl.set_recv_handler(self.on_tempctrl_changed)
|
|
self.msg_sud.set_recv_handler(self.on_sud_changed)
|
|
self.msg_system.set_recv_handler(self.on_system_changed)
|
|
|
|
self.setupUi(self)
|
|
# Permanent (right-aligned, not cleared by showMessage()/clearMessage())
|
|
# label for static environment info - distinct from the status bar's
|
|
# transient step/schedule messages.
|
|
self.status_label_env = QtWidgets.QLabel()
|
|
self.statusBar().addPermanentWidget(self.status_label_env)
|
|
self.update_status_env_label()
|
|
self.update_sud_actions()
|
|
self.btn_connect.clicked.connect(self.on_btn_connect_clicked)
|
|
self.actionStart.triggered.connect(self.on_action_sud_start)
|
|
self.actionPause.triggered.connect(self.on_action_sud_pause)
|
|
self.actionStop.triggered.connect(self.on_action_sud_stop)
|
|
self.actionSudSave.triggered.connect(self.on_action_sud_save)
|
|
self.actionSudLoad.triggered.connect(self.on_action_sud_load)
|
|
self.Slider_pwr_soll.valueChanged.connect(self.on_slider_pwr_soll_changed)
|
|
self.Slider_temp_soll.valueChanged.connect(self.on_slider_temp_soll_changed)
|
|
self.Slider_speed_soll.valueChanged.connect(self.on_slider_stirrer_speed_soll_changed)
|
|
|
|
self.doubleSpinBox_heatrate_soll.valueChanged.connect(self.on_heatrate_soll_changed)
|
|
|
|
self.checkbox_heater_activate.stateChanged.connect(self.on_checkbox_changed)
|
|
self.checkbox_stirrer_activate.stateChanged.connect(self.on_checkbox_stirrer_activate_changed)
|
|
|
|
self.send_data = Queue()
|
|
self.slider_pwr_initial_update = True
|
|
self.slider_temp_soll_initial_update = True
|
|
self.slider_speed_initial_update = True
|
|
self.checkbox_heater_activate_initial_update = True
|
|
self.checkbox_stirrer_activate_initial_update = True
|
|
self.heatrate_soll_initial_update = True
|
|
self.sud_save_path = None
|
|
|
|
# Latest values sampled by the plot timer - written from the
|
|
# websocket recv thread, read from the GUI thread; plain floats so
|
|
# no locking, consistent with how the rest of the GUI is wired.
|
|
self.plot_temp_ist = 0.0
|
|
self.plot_temp_soll = 0.0
|
|
self.plot_rate_ist = 0.0
|
|
self.plot_rate_soll = 0.0
|
|
self.plot_power_set = 0.0
|
|
self.plot_power_eff = 0.0
|
|
|
|
self.plot = RealtimePlot()
|
|
plot_layout = QtWidgets.QVBoxLayout(self.widget_plot)
|
|
plot_layout.setContentsMargins(0, 0, 0, 0)
|
|
plot_layout.addWidget(self.plot)
|
|
|
|
self.plot_timer = QtCore.QTimer(self)
|
|
self.plot_timer.timeout.connect(self.on_plot_timer)
|
|
self.plot_timer.start(1000)
|
|
|
|
self.forecast_plot = SudForecastPlot()
|
|
forecast_layout = QtWidgets.QVBoxLayout(self.widget_plot_forecast)
|
|
forecast_layout.setContentsMargins(0, 0, 0, 0)
|
|
forecast_layout.addWidget(self.forecast_plot)
|
|
|
|
def connect(self):
|
|
self.slider_pwr_initial_update = True
|
|
self.slider_temp_soll_initial_update = True
|
|
self.slider_speed_initial_update = True
|
|
self.checkbox_heater_activate_initial_update = True
|
|
self.checkbox_stirrer_activate_initial_update = True
|
|
self.heatrate_soll_initial_update = True
|
|
self.plot.reset()
|
|
self.ws_client.connect(uri=self.plainTextUri.toPlainText())
|
|
# Fetch the schedule for the Automatic tab's forecast preview - not
|
|
# a user-initiated save, so sud_save_path stays None and
|
|
# on_sud_changed() routes the reply to update_sud_forecast() instead
|
|
# of a save dialog.
|
|
self.msg_sud.send({'Save': True})
|
|
|
|
def on_plot_timer(self):
|
|
self.plot.sample(
|
|
self.plot_temp_ist, self.plot_temp_soll,
|
|
self.plot_rate_ist, self.plot_rate_soll,
|
|
self.plot_power_set, self.plot_power_eff)
|
|
|
|
if self.sud_start_time is not None:
|
|
# While paused, use the moment the pause began as "now" so the
|
|
# line freezes instead of drifting ahead of actual progress.
|
|
now = self.sud_pause_started_at if self.sud_pause_started_at is not None else time.monotonic()
|
|
elapsed_real_s = now - self.sud_start_time - self.sud_paused_total
|
|
# The forecast's x-axis is simulated-schedule time; scale real
|
|
# elapsed time by the server's warp factor to match it.
|
|
elapsed_min = elapsed_real_s * self.warp_factor / 60.0
|
|
self.forecast_plot.set_progress(elapsed_min)
|
|
else:
|
|
self.forecast_plot.clear_progress()
|
|
|
|
def disconnect(self):
|
|
# ws_client.disconnect() blocks until the websocket's close handshake
|
|
# completes (or times out, ~10s if the server doesn't ack promptly),
|
|
# joining the connection's background thread - run it off a throwaway
|
|
# thread so that wait doesn't freeze the GUI. on_ws_connect_changed()
|
|
# still flips the button once the disconnect actually finishes.
|
|
threading.Thread(target=self.ws_client.disconnect, daemon=True).start()
|
|
|
|
def on_btn_connect_clicked(self):
|
|
if self.connected:
|
|
self.disconnect()
|
|
else:
|
|
self.connect()
|
|
|
|
def on_ws_connect_changed(self, connected):
|
|
self.connected = connected
|
|
self.btn_connect.setText("Disconnect" if connected else "Connect")
|
|
if not connected:
|
|
# Nothing reported over a dead connection can be trusted anymore.
|
|
self.sud_loaded = False
|
|
self.sud_state = None
|
|
self.sud_user_message = None
|
|
self.ambient_temp = None
|
|
self.warp_factor = 1.0
|
|
self.sud_start_time = None
|
|
self.sud_paused_total = 0.0
|
|
self.sud_pause_started_at = None
|
|
self.update_sud_actions()
|
|
self.update_status_env_label()
|
|
|
|
def update_sud_actions(self):
|
|
running = self.sud_loaded and self.sud_state in SUD_RUNNING_STATES
|
|
paused = self.sud_loaded and self.sud_state == SUD_PAUSED_STATE
|
|
# Start also doubles as Resume while paused; Stop can still abort a
|
|
# paused run, but there's nothing left to Pause once already paused.
|
|
self.actionStart.setEnabled(self.sud_loaded and not running)
|
|
self.actionPause.setEnabled(running)
|
|
self.actionStop.setEnabled(running or paused)
|
|
|
|
def on_system_changed(self, msg):
|
|
print("on_system_changed {}".format(msg))
|
|
for key in msg:
|
|
if "AmbientTemp" in key:
|
|
self.ambient_temp = msg['AmbientTemp']
|
|
elif "WarpFactor" in key:
|
|
self.warp_factor = msg['WarpFactor']
|
|
self.update_status_env_label()
|
|
|
|
def update_status_env_label(self):
|
|
ambient = "{:.1f}°C".format(self.ambient_temp) if self.ambient_temp is not None else "-"
|
|
self.status_label_env.setText("Ambient: {} Warp: {:.1f}x".format(ambient, self.warp_factor))
|
|
|
|
def on_slider_temp_soll_changed(self, value):
|
|
print("on_slider_temp_soll_changed {}".format(value))
|
|
self.msg_tempctrl.send({'Soll': {'Temp': value}})
|
|
|
|
def on_heatrate_soll_changed(self, value):
|
|
value = round(value, 1)
|
|
print("on_textbox_heatrate_soll_changed {}".format(value))
|
|
self.msg_tempctrl.send({'Soll': {'Rate': value}})
|
|
|
|
def on_slider_pwr_soll_changed(self, value):
|
|
print("on_slider_pwr_soll_changed {}".format(value))
|
|
self.msg_heater.send({'Power': value})
|
|
|
|
def on_checkbox_changed(self, value):
|
|
print("on_checkbox_changed {}".format(value))
|
|
self.msg_heater.send({'Activate': int(value == 2)})
|
|
|
|
def on_slider_stirrer_speed_soll_changed(self, value):
|
|
print("on_slider_stirrer_speed_soll_changed {}".format(value))
|
|
self.msg_stirrer.send({'Speed': value})
|
|
|
|
def on_checkbox_stirrer_activate_changed(self, value):
|
|
print("on_checkbox_stirrer_activate_changed {}".format(value))
|
|
self.msg_stirrer.send({'Activate': int(value == 2)})
|
|
|
|
def on_action_sud_start(self):
|
|
self.msg_sud.send({'Start': True})
|
|
|
|
def on_action_sud_pause(self):
|
|
self.msg_sud.send({'Pause': True})
|
|
|
|
def on_action_sud_stop(self):
|
|
self.msg_sud.send({'Stop': True})
|
|
|
|
def on_user_message_signal(self, message):
|
|
# Runs on the GUI thread (queued there by the cross-thread signal
|
|
# emit in on_sud_changed()). The Sud is already blocked in
|
|
# WAIT_USER server-side; closing this dialog is what unblocks it.
|
|
QtWidgets.QMessageBox.information(self, "Sud", message)
|
|
self.msg_sud.send({'Confirm': True})
|
|
|
|
def on_action_sud_save(self):
|
|
# Pick the destination up front, on the GUI thread - the actual
|
|
# write happens in on_sud_changed(), which runs off a worker thread
|
|
# and must not touch Qt (e.g. open a file dialog) itself.
|
|
path, _ = QtWidgets.QFileDialog.getSaveFileName(self, "Save Sud", filter="JSON files (*.json)")
|
|
if not path:
|
|
return
|
|
self.sud_save_path = path
|
|
self.msg_sud.send({'Save': True})
|
|
|
|
def on_action_sud_load(self):
|
|
path, _ = QtWidgets.QFileDialog.getOpenFileName(self, "Load Sud", filter="JSON files (*.json)")
|
|
if not path:
|
|
return
|
|
with open(path) as f:
|
|
data = json.load(f)
|
|
self.msg_sud.send({'Load': data})
|
|
|
|
def on_pot_changed(self, msg):
|
|
print("on_pot_changed {}".format(msg))
|
|
for key in msg:
|
|
if "Power" in key:
|
|
self.lcdNumber_power_pot.display(msg['Power'])
|
|
|
|
def on_sensor_changed(self, msg):
|
|
print("on_sensor_changed {}".format(msg))
|
|
|
|
def on_tempctrl_changed(self, msg):
|
|
print("on_tempctrl_changed {}".format(msg))
|
|
for key in msg:
|
|
if 'State' in key:
|
|
self.label_state.setText(msg['State'])
|
|
elif "Soll" in key:
|
|
submsg = msg['Soll']
|
|
if 'Temp' in submsg:
|
|
self.plot_temp_soll = submsg['Temp']
|
|
self.lcdNumber_temp_soll.display(str(submsg['Temp']))
|
|
if self.slider_temp_soll_initial_update:
|
|
self.Slider_temp_soll.setValue(int(round(submsg['Temp'])))
|
|
self.slider_temp_soll_initial_update = False
|
|
if 'Rate' in submsg:
|
|
subsubmsg = submsg['Rate']
|
|
for subkey in subsubmsg:
|
|
if "Current" in subkey:
|
|
self.plot_rate_soll = subsubmsg['Current']
|
|
self.lcdNumber_heatrate_soll.display(str(subsubmsg['Current']))
|
|
if "Set" in subkey:
|
|
if self.heatrate_soll_initial_update:
|
|
self.heatrate_soll_initial_update = False
|
|
self.doubleSpinBox_heatrate_soll.setValue(subsubmsg['Set'])
|
|
if "Ist" in key:
|
|
submsg = msg['Ist']
|
|
if 'Temp' in submsg:
|
|
self.plot_temp_ist = submsg['Temp']
|
|
self.lcdNumber_temp_ist.display(str(submsg['Temp']))
|
|
if 'Rate' in submsg:
|
|
self.plot_rate_ist = submsg['Rate']
|
|
self.lcdNumber_heatrate_ist.display(str(submsg['Rate']))
|
|
|
|
def on_heater_changed(self, msg):
|
|
print("on_heater_changed {}".format(msg))
|
|
for key in msg:
|
|
if "Activate" in key:
|
|
if self.checkbox_heater_activate_initial_update:
|
|
self.checkbox_heater_activate.setCheckState(2 if msg['Activate'] == 1 else 0)
|
|
self.checkbox_heater_activate_initial_update = False
|
|
elif "PowerSet" in key:
|
|
self.plot_power_set = msg['PowerSet']
|
|
elif "Power" in key:
|
|
self.plot_power_eff = msg['Power']
|
|
self.lcdNumber_power_heater.display(msg['Power'])
|
|
if self.slider_pwr_initial_update:
|
|
self.Slider_pwr_soll.setValue(int(round(msg['Power'])))
|
|
self.slider_pwr_initial_update = False
|
|
elif "Capabilities" in key:
|
|
submsg = msg['Capabilities']
|
|
if "Power" in submsg:
|
|
submsg = submsg['Power']
|
|
self.Slider_pwr_soll.setMinimum(int(submsg['Min']))
|
|
self.Slider_pwr_soll.setMaximum(int(submsg['Max']))
|
|
|
|
def on_stirrer_changed(self, msg):
|
|
print("on_stirrer_changed {}".format(msg))
|
|
for key in msg:
|
|
if "Activate" in key:
|
|
if self.checkbox_stirrer_activate_initial_update:
|
|
self.checkbox_stirrer_activate.setCheckState(2 if msg['Activate'] == 1 else 0)
|
|
self.checkbox_stirrer_activate_initial_update = False
|
|
elif "Speed" in key:
|
|
if self.slider_speed_initial_update:
|
|
self.Slider_speed_soll.setValue(int(round(msg['Speed'])))
|
|
self.slider_speed_initial_update = False
|
|
elif "Capabilities" in key:
|
|
submsg = msg['Capabilities']
|
|
if "Power" in submsg:
|
|
submsg = submsg['Power']
|
|
self.Slider_speed_soll.setMinimum(int(submsg['Min']))
|
|
self.Slider_speed_soll.setMaximum(int(submsg['Max']))
|
|
|
|
def on_sud_changed(self, msg):
|
|
print("on_sud_changed {}".format(msg))
|
|
# Receiving anything at all on this channel means a Sud is loaded
|
|
# server-side - the schedule it's running may still be coming.
|
|
self.sud_loaded = True
|
|
for key in msg:
|
|
if "Json" in key:
|
|
if self.sud_save_path:
|
|
with open(self.sud_save_path, 'w') as f:
|
|
json.dump(msg['Json'], f, indent='\t')
|
|
self.sud_save_path = None
|
|
else:
|
|
self.update_sud_forecast(msg['Json'])
|
|
elif "Name" in key:
|
|
self.statusBar().showMessage("Sud schedule updated: {}".format(msg['Name']), 5000)
|
|
elif "State" in key:
|
|
prev_state = self.sud_state
|
|
self.sud_state = msg['State']
|
|
|
|
if self.sud_state == SUD_PAUSED_STATE and prev_state != SUD_PAUSED_STATE:
|
|
self.sud_pause_started_at = time.monotonic()
|
|
elif self.sud_state != SUD_PAUSED_STATE and prev_state == SUD_PAUSED_STATE:
|
|
self.sud_paused_total += time.monotonic() - self.sud_pause_started_at
|
|
self.sud_pause_started_at = None
|
|
|
|
if self.sud_state in SUD_RUNNING_STATES and self.sud_start_time is None:
|
|
self.sud_start_time = time.monotonic()
|
|
elif self.sud_state not in SUD_RUNNING_STATES and self.sud_state != SUD_PAUSED_STATE:
|
|
self.sud_start_time = None
|
|
self.sud_paused_total = 0.0
|
|
self.sud_pause_started_at = None
|
|
|
|
if self.sud_state == SUD_WAIT_USER_STATE and prev_state != SUD_WAIT_USER_STATE and self.sud_user_message:
|
|
self.user_message_signal.emit(self.sud_user_message)
|
|
elif "UserMessage" in key:
|
|
self.sud_user_message = msg['UserMessage']
|
|
elif "Step" in key:
|
|
step = msg['Step']
|
|
descr = step.get('Descr')
|
|
if descr:
|
|
self.statusBar().showMessage("Step {}: {}".format(step.get('Index'), descr))
|
|
else:
|
|
self.statusBar().clearMessage()
|
|
self.update_sud_actions()
|
|
|
|
def update_sud_forecast(self, doc):
|
|
try:
|
|
_, _, schedule, _, _ = Sud._parse_data(doc)
|
|
except (KeyError, TypeError):
|
|
return
|
|
# No measured starting temperature is available before a brew has
|
|
# started; fall back to a plausible ambient guess.
|
|
start_theta = self.plot_temp_ist if self.plot_temp_ist else 20.0
|
|
self.forecast_plot.show_schedule(schedule, start_theta)
|
|
|
|
def closeEvent(self, event):
|
|
print("Exitting gracefully!")
|
|
self.ws_client.disconnect()
|
|
|
|
|
|
if __name__ == '__main__':
|
|
app = QtWidgets.QApplication(sys.argv)
|
|
win = Window()
|
|
win.show()
|
|
sys.exit(app.exec_())
|
|
|
|
print ("End of program.")
|