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"""
ui/strip_chart.py — Config-driven live chart.
Consumes LayoutConfig from plot_window.
Supports stacked, side-by-side, and grid layouts.
X axis can be time or any channel (e.g. stress vs strain).
"""
import numpy as np
from typing import Dict, List, Optional, Tuple
from collections import deque
from PyQt6.QtWidgets import (
QWidget, QVBoxLayout, QHBoxLayout, QLabel,
QDoubleSpinBox, QPushButton, QSizePolicy,
)
from PyQt6.QtCore import Qt, pyqtSlot, QTimer
from PyQt6.QtGui import QFont
try:
import pyqtgraph as pg
_HAS_PG = True
except ImportError:
_HAS_PG = False
_THEME_DARK = {"bg": "#0b0e13", "fg": "#475569", "grid_alpha": 0.12, "legend_brush": "#161d2e", "legend_pen": "#2a3558", "tick_color": "#64748b"}
_THEME_LIGHT = {"bg": "#ffffff", "fg": "#334155", "grid_alpha": 0.18, "legend_brush": "#f8fafc", "legend_pen": "#cbd5e1", "tick_color": "#64748b"}
_current_theme = _THEME_DARK
def set_chart_theme(theme: str):
global _current_theme
_current_theme = _THEME_DARK if theme == "dark" else _THEME_LIGHT
if _HAS_PG:
pg.setConfigOptions(antialias=True,
background=_current_theme["bg"],
foreground=_current_theme["fg"])
# Apply dark theme as default
if _HAS_PG:
pg.setConfigOptions(antialias=True, background=_THEME_DARK["bg"], foreground=_THEME_DARK["fg"])
from devices.device_registry import DeviceRegistry
from core.acquisition import AcquisitionEngine
from core.signal_processor import SignalProcessor
from ui.windows.plot_window import (LayoutConfig, PaneSpec, TraceSpec,
build_default_layout, tree_to_grid, _tree_grid_size)
_STYLES = {
"solid": Qt.PenStyle.SolidLine,
"dash": Qt.PenStyle.DashLine,
"dot": Qt.PenStyle.DotLine,
}
def _windowed(times_dq, values_dq, seconds: float):
"""Last `seconds` of a (times, values) deque pair, walking in from the
newest sample only — same trick as ChannelBuffer.window(), needed here
for derived-channel buffers which aren't wrapped in ChannelBuffer."""
if not times_dq:
return [], []
cutoff = times_dq[-1] - seconds
out_t, out_v = [], []
for t, v in zip(reversed(times_dq), reversed(values_dq)):
if t < cutoff:
break
out_t.append(t); out_v.append(v)
out_t.reverse(); out_v.reverse()
return out_t, out_v
class StripChartWidget(QWidget):
def __init__(self, engine: AcquisitionEngine, registry: DeviceRegistry,
processor: SignalProcessor):
super().__init__()
self.engine = engine
self.registry = registry
self.processor = processor
self._paused = False
self._cfg: Optional[LayoutConfig] = None
# (dev_id, ch_id) → [{curve, plot, spec}]
self._curves: Dict[Tuple, List[dict]] = {}
# Time-axis plots, scrolled continuously by _scroll_timer rather than
# only when a new sample lands — decouples the visible scroll rate
# from the (much slower) poll rate so it doesn't look stepped.
self._time_plots: List = []
self._build()
self.apply_layout(build_default_layout(registry, processor))
self._scroll_timer = QTimer(self)
self._scroll_timer.setInterval(33) # ~30 fps
self._scroll_timer.timeout.connect(self._on_scroll_tick)
self._scroll_timer.start()
def _build(self):
lay = QVBoxLayout(self); lay.setContentsMargins(6,6,6,4); lay.setSpacing(4)
ctrl = QHBoxLayout()
ctrl.addWidget(QLabel("Window:"))
self._win = QDoubleSpinBox(); self._win.setRange(1,3600)
self._win.setSuffix(" s"); self._win.setValue(30.0)
self._win.valueChanged.connect(lambda v: self._cfg and setattr(self._cfg,"time_window_s",v))
ctrl.addWidget(self._win); ctrl.addStretch()
self._pause = QPushButton("⏸ Pause"); self._pause.setCheckable(True)
self._pause.setObjectName("pauseButton"); self._pause.toggled.connect(self._on_pause)
ctrl.addWidget(self._pause); lay.addLayout(ctrl)
if _HAS_PG:
self._gw = pg.GraphicsLayoutWidget()
self._gw.setSizePolicy(QSizePolicy.Policy.Expanding, QSizePolicy.Policy.Expanding)
lay.addWidget(self._gw)
else:
lay.addWidget(QLabel("⚠ pip install pyqtgraph",
alignment=Qt.AlignmentFlag.AlignCenter))
def apply_layout(self, cfg: LayoutConfig):
self._cfg = cfg
self._win.setValue(cfg.time_window_s)
if not _HAS_PG: return
self._gw.clear(); self._curves.clear(); self._time_plots.clear()
if not cfg.panes: return
mf = QFont("IBM Plex Mono", 8)
n = len(cfg.panes)
# Determine row/col/rowspan/colspan for each pane
if cfg.layout_mode == "free" and cfg.tree is not None:
gs = _tree_grid_size(cfg.tree)
grid_pos: dict = {}
tree_to_grid(cfg.tree, 0, 0, gs, gs, grid_pos)
# grid_pos[pane_idx] = (row, col, rowspan, colspan)
elif cfg.layout_mode == "sidebyside":
grid_pos = {i: (0, i, 1, 1) for i in range(n)}
elif cfg.layout_mode == "grid":
cols = max(1, cfg.grid_cols)
grid_pos = {i: (i // cols, i % cols, 1, 1) for i in range(n)}
else: # stacked (legacy default)
grid_pos = {i: (i, 0, 1, 1) for i in range(n)}
ref_plot = None
for idx, spec in enumerate(cfg.panes):
if idx not in grid_pos:
continue
row, col, rowspan, colspan = grid_pos[idx]
plot = self._gw.addPlot(row=row, col=col, rowspan=rowspan, colspan=colspan)
plot.setLabel("left", spec.y_label or spec.title)
plot.setLabel("bottom", spec.x_label or "Elapsed (s)")
plot.showGrid(x=spec.grid, y=spec.grid, alpha=0.12)
plot.getAxis("left").setStyle(tickFont=mf)
plot.getAxis("bottom").setStyle(tickFont=mf)
# Hide bottom axis labels for non-bottom panes in stacked legacy mode
if cfg.layout_mode == "stacked" and idx < n - 1:
plot.getAxis("bottom").setStyle(showValues=False)
plot.getAxis("bottom").setHeight(0)
if cfg.link_x and ref_plot and spec.x_source == "time":
plot.setXLink(ref_plot)
if spec.x_source == "time":
ref_plot = plot
self._time_plots.append(plot)
if cfg.show_legend:
t = _current_theme
plot.addLegend(offset=(5,5), labelTextColor=t["tick_color"],
brush=pg.mkBrush(t["legend_brush"]),
pen=pg.mkPen(t["legend_pen"]))
if not spec.y_auto:
plot.setYRange(spec.y_min, spec.y_max)
else:
plot.enableAutoRange(axis="y")
self._gw.ci.layout.setColumnStretchFactor(col, spec.weight)
self._gw.ci.layout.setRowStretchFactor(row, spec.weight)
for tr in spec.traces:
if not tr.visible: continue
pen = pg.mkPen(color=tr.color, width=tr.width,
style=_STYLES.get(tr.style, Qt.PenStyle.SolidLine))
curve = plot.plot([], [], pen=pen, name=tr.label or tr.channel_id)
key = (tr.device_id, tr.channel_id)
self._curves.setdefault(key, []).append(
{"curve": curve, "plot": plot, "spec": spec, "pane": spec})
def set_theme(self, theme: str):
"""Hot-swap pyqtgraph colours when the user changes theme."""
set_chart_theme(theme)
if _HAS_PG and self._gw is not None:
self._gw.setBackground(_current_theme["bg"])
# Rebuild plots so legend/grid colours update
self.apply_layout(self._cfg or build_default_layout(self.registry, self.processor))
def refresh(self):
self.apply_layout(self._cfg or build_default_layout(self.registry, self.processor))
def on_channel_enabled_changed(self, dev_id: str, ch_id: str, enabled: bool):
key = (dev_id, ch_id)
for e in self._curves.get(key, []):
e["curve"].setVisible(enabled)
@pyqtSlot(str, str, float, float)
def on_new_data(self, device_id: str, channel_id: str, ts: float, val: float):
if self._paused or not _HAS_PG or not self._cfg: return
key = (device_id, channel_id)
entries = self._curves.get(key)
if not entries: return
window = self._cfg.time_window_s
# Get Y data
if device_id == "derived":
bufs = self.processor.get_derived_buffer(channel_id)
if bufs is None or len(bufs[0]) < 2: return
ts_l, vs_l = _windowed(bufs[0], bufs[1], window)
if not ts_l: return
else:
buf = self.engine.get_buffer(device_id, channel_id)
if buf is None or len(buf) < 2: return
ts_l, vs_l = buf.window(window)
if not ts_l: return
for e in entries:
spec = e["pane"]
# Determine X axis data
if spec.x_source == "time":
x_arr = np.array(ts_l, dtype=np.float64)
y_arr = np.array(vs_l, dtype=np.float64)
e["curve"].setData(x_arr, y_arr)
# X-range scrolling is handled by _scroll_timer, continuously —
# not here, so the window doesn't jump only on data arrival.
else:
# X = another channel's processed values
parts = spec.x_source.split("/")
if len(parts) == 2:
x_dev, x_ch = parts
if x_dev == "derived":
xbufs = self.processor.get_derived_buffer(x_ch)
if xbufs and len(xbufs[0]) >= 2:
x_arr = np.array(list(xbufs[1]), dtype=np.float64)
y_arr = np.array(vs_l, dtype=np.float64)
mn = min(len(x_arr), len(y_arr))
e["curve"].setData(x_arr[-mn:], y_arr[-mn:])
else:
xbuf = self.engine.get_buffer(x_dev, x_ch)
if xbuf and len(xbuf) >= 2:
_, xvs = xbuf.all()
x_arr = np.array(xvs, dtype=np.float64)
y_arr = np.array(vs_l, dtype=np.float64)
mn = min(len(x_arr), len(y_arr))
e["curve"].setData(x_arr[-mn:], y_arr[-mn:])
if spec.y_auto:
e["plot"].enableAutoRange(axis="y")
def _on_pause(self, c: bool):
self._paused = c
self._pause.setText("▶ Resume" if c else "⏸ Pause")
def _on_scroll_tick(self):
"""Scroll time-axis plots at a steady UI rate, independent of the
(much slower) poll rate — keeps the window sliding smoothly instead
of jumping once per data tick."""
if self._paused or not _HAS_PG or not self._cfg or not self.engine.is_running():
return
now = self.engine.elapsed_now()
window = self._cfg.time_window_s
for plot in self._time_plots:
plot.setXRange(now - window, now, padding=0)
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