gui: dynamically re-anchor the Sud forecast instead of a static estimate
Nonideal ramp rates and user pauses make the schedule's nominal-rate estimate drift from reality the longer a brew runs. While a run is in progress, the forecast plot now redraws every tick: the already- elapsed part is the actual measured trace (solid line), and only the remaining steps are projected forward (dashed line) from the live current temperature, step index, and hold_remaining - rather than recomputing the whole curve once from t=0 at load time. components/sud.py's Step/HoldRemaining messages already carried everything needed; the GUI just wasn't tracking step index or hold_remaining at all before this. Reverts to the static full-schedule view once the run stops/finishes.
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+106
-6
@@ -19,6 +19,7 @@ import asyncio
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# str(SudState.X) values (as sent in the 'State' message) that count as
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# "running" for enabling/disabling the Start/Pause/Stop toolbar actions.
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SUD_RUNNING_STATES = {"SudState.RAMPING", "SudState.HOLDING", "SudState.WAIT_USER"}
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SUD_HOLDING_STATE = "SudState.HOLDING"
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SUD_WAIT_USER_STATE = "SudState.WAIT_USER"
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SUD_PAUSED_STATE = "SudState.PAUSED"
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@@ -107,11 +108,18 @@ class RealtimePlot(FigureCanvasQTAgg):
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class SudForecastPlot(FigureCanvasQTAgg):
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"""A static preview of a Sud schedule's temperature course, computed
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from its nominal ramp rates/hold durations alone (no plant/controller
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model - just how long the declared schedule says each step should
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take), so it can be shown as soon as a schedule is loaded/edited,
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before a brew is actually started."""
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"""A preview of a Sud schedule's temperature course, computed from its
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nominal ramp rates/hold durations alone (no plant/controller model -
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just how long the declared schedule says each step should take), so it
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can be shown as soon as a schedule is loaded/edited, before a brew is
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actually started (show_schedule()).
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Once running, nonideal ramp rates/user pauses make that static estimate
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drift from reality - show_dynamic() instead re-anchors the projection
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every tick: the already-elapsed part is the actual measured trace
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(line, solid), and only the remaining steps are projected forward from
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the live current temperature/step/hold_remaining (line_projected,
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dashed)."""
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def __init__(self):
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figure = Figure(facecolor='white')
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@@ -119,6 +127,7 @@ class SudForecastPlot(FigureCanvasQTAgg):
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self.ax = figure.subplots(1, 1)
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self.line, = self.ax.plot([], [], '-b', linewidth=1.5, zorder=2)
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self.line_projected, = self.ax.plot([], [], '--b', linewidth=1.5, alpha=0.5, zorder=2)
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self.progress_line = self.ax.axvline(0, color='g', linewidth=1.5, visible=False, zorder=2)
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# Current temperature - drawn behind (lower zorder than) the
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# forecast/progress lines so it never covers them.
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@@ -156,14 +165,38 @@ class SudForecastPlot(FigureCanvasQTAgg):
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t_min = [seconds / 60.0 for seconds in t]
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self.line.set_data(t_min, theta)
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self.line_projected.set_data([], [])
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self.ax.relim()
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self.ax.autoscale_view()
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self.ax.set_title("{} - {:.0f} min total".format(name, t_min[-1] if t_min else 0.0), fontsize='small')
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self.figure.tight_layout()
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self.draw_idle()
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def show_dynamic(self, history, remaining_schedule, theta_now, elapsed_min, name):
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"""Re-anchored forecast for a run in progress: history is the
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[(t_min, theta), ...] actually measured so far (drawn solid),
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remaining_schedule the not-yet-done steps, projected forward
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(dashed) from (elapsed_min, theta_now) using the same nominal-rate
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estimate as show_schedule(), just re-seeded each call instead of
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computed once at t=0."""
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hist_t = [t for t, _ in history]
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hist_theta = [theta for _, theta in history]
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self.line.set_data(hist_t, hist_theta)
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t_rem, theta_rem = self._estimate_course(remaining_schedule, theta_now)
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t_rem_min = [elapsed_min + seconds / 60.0 for seconds in t_rem]
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self.line_projected.set_data(t_rem_min, theta_rem)
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self.ax.relim()
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self.ax.autoscale_view()
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total_min = t_rem_min[-1] if t_rem_min else elapsed_min
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self.ax.set_title("{} - {:.0f} min total (est.)".format(name, total_min), fontsize='small')
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self.figure.tight_layout()
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self.draw_idle()
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def show_no_schedule(self):
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self.line.set_data([], [])
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self.line_projected.set_data([], [])
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self.clear_progress()
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self.ax.relim()
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self.ax.autoscale_view()
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@@ -229,6 +262,17 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
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self.sud_start_time = None
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self.sud_paused_total = 0.0
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self.sud_pause_started_at = None
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# Resolved schedule + live progress within it, kept around so the
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# forecast plot can be dynamically re-anchored every tick instead of
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# only estimated once when the schedule was (re)loaded - see
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# refresh_forecast()/SudForecastPlot.show_dynamic().
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self.sud_name = ''
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self.sud_schedule = []
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self.sud_step_index = None
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self.sud_hold_remaining = 0.0
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# [(t_min, theta), ...] actually measured since the current run
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# started - the "already happened" part of the dynamic forecast.
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self.forecast_history = []
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self.msg_pot = self.msg_dispatch.msgio_get('Pot')
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self.msg_sensor = self.msg_dispatch.msgio_get('Sensor')
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self.msg_heater = self.msg_dispatch.msgio_get('Heater')
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@@ -344,6 +388,17 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
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# elapsed time by the server's warp factor to match it.
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elapsed_min = elapsed_real_s * self.warp_factor / 60.0
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self.forecast_plot.set_progress(elapsed_min)
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# Re-anchor the forecast from the live state instead of redrawing
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# the static, increasingly-stale estimate from t=0. Frozen while
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# PAUSED (elapsed_min isn't advancing either, and the paused
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# phase - ramp or hold - isn't visible to the client to resume
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# the projection from correctly) - just leave the last draw up.
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if self.sud_state != SUD_PAUSED_STATE and self.plot_temp_ist:
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self.forecast_history.append((elapsed_min, self.plot_temp_ist))
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remaining = self._remaining_schedule()
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self.forecast_plot.show_dynamic(
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self.forecast_history, remaining, self.plot_temp_ist, elapsed_min, self.sud_name)
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else:
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self.forecast_plot.clear_progress()
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@@ -352,6 +407,30 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
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else:
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self.forecast_plot.clear_current_temp()
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def _remaining_schedule(self):
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"""The not-yet-done part of sud_schedule, for SudForecastPlot's
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dynamic re-anchoring: the current step's already-finished phase is
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dropped, and its still-to-run phase is left for _estimate_course()
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to size from the live theta_now/hold_remaining it's seeded with,
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rather than the step's nominal start."""
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schedule = self.sud_schedule
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index = self.sud_step_index
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if not schedule or index is None or not (0 <= index < len(schedule)):
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return []
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current = schedule[index]
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rest = schedule[index + 1:]
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if self.sud_state == SUD_WAIT_USER_STATE:
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# The current step (both its ramp and hold, if any) is already
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# done - only waiting on the user to advance.
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return rest
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if self.sud_state == SUD_HOLDING_STATE:
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remaining_minutes = max(self.sud_hold_remaining, 0.0) / 60.0
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return [{'hold': {'duration': remaining_minutes}}] + rest
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# RAMPING: _estimate_course() recomputes the ramp's remaining
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# distance from whatever start_theta it's given, so the step is
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# used as-is; its hold phase (if any) hasn't started yet either.
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return [current] + rest
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def disconnect(self):
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# ws_client.disconnect() blocks until the websocket's close handshake
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# completes (or times out, ~10s if the server doesn't ack promptly),
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@@ -380,6 +459,11 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
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self.sud_start_time = None
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self.sud_paused_total = 0.0
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self.sud_pause_started_at = None
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self.sud_name = ''
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self.sud_schedule = []
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self.sud_step_index = None
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self.sud_hold_remaining = 0.0
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self.forecast_history = []
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self.set_sud_cooling(False)
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self.update_sud_actions()
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self.update_status_env_label()
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@@ -628,10 +712,19 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
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if self.sud_state in SUD_RUNNING_STATES and self.sud_start_time is None:
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self.sud_start_time = time.monotonic()
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# Start the dynamic forecast's measured-history trace
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# fresh for this run.
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self.forecast_history = []
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elif self.sud_state not in SUD_RUNNING_STATES and self.sud_state != SUD_PAUSED_STATE:
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self.sud_start_time = None
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self.sud_paused_total = 0.0
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self.sud_pause_started_at = None
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# on_plot_timer() only redraws the dynamic forecast while
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# sud_start_time is set - revert to the static view now,
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# rather than leaving the last dynamic draw frozen.
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if self.sud_schedule:
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start_theta = self.plot_temp_ist if self.plot_temp_ist else 20.0
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self.forecast_plot.show_schedule(self.sud_schedule, start_theta, self.sud_name)
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if self.sud_state == SUD_WAIT_USER_STATE and prev_state != SUD_WAIT_USER_STATE and self.sud_user_message:
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self.user_message_signal.emit(self.sud_user_message)
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@@ -644,7 +737,10 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
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self.statusBar().showMessage("Step {}: {}".format(step.get('Index'), descr))
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else:
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self.statusBar().clearMessage()
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self.sud_step_index = step.get('Index')
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self.set_sud_cooling(step.get('Cooling', False))
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elif "HoldRemaining" in key:
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self.sud_hold_remaining = msg['HoldRemaining']
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self.update_sud_actions()
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def update_sud_forecast(self, doc):
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@@ -652,13 +748,17 @@ class Window(QtWidgets.QMainWindow, Ui_MainWindow):
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name, _, schedule, _, _ = Sud._parse_data(doc)
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except (KeyError, TypeError):
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return
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self.sud_name = name
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self.sud_schedule = schedule
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self.sud_empty = len(schedule) == 0
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self.update_sud_actions()
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if self.sud_empty:
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self.forecast_plot.show_no_schedule()
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return
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# No measured starting temperature is available before a brew has
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# started; fall back to a plausible ambient guess.
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# started; fall back to a plausible ambient guess. If a run is
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# already in progress (e.g. reconnecting mid-brew), the next
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# on_plot_timer() tick switches this over to the dynamic view.
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start_theta = self.plot_temp_ist if self.plot_temp_ist else 20.0
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self.forecast_plot.show_schedule(schedule, start_theta, name)
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