Files
uj-mastering-master/main.py
T
Mikkeli Matlock b400551321 Move plotting to pyqtgraph: interactive, overlay-capable render layer
Replace the fire-and-forget matplotlib pipeline (render() -> throwaway Figure ->
canvas teardown) with a three-stage architecture that supports zoom/pan, lin/log
toggling, and multi-file overlay:

  compute(audio_file) -> data        # heavy, worker thread, backend-neutral
  build_spec(data, view) -> PlotSpec # cheap, GUI thread, view-aware
  show_specs([(label, spec, color)]) # pyqtgraph, persistent PlotItem, overlay

- plotspec.py: backend-agnostic descriptors (Curve, Band, HLine, Heatmap,
  AxisSpec, PlotSpec) + ViewState (recompute-free lin/log)
- audio_visualization_widget.py: persistent pyqtgraph plot, never torn down;
  per-dataset colours for overlay; spectrogram log-freq via row resample
  (ImageItem is affine-only); ColorBarItem at a fixed cell
- Compare/overlay driven by file-list checkboxes; stable per-song colour by row
- Custom draggable reference lines (add/clear), persist across redraws
- Axis-constrained scroll zoom: Ctrl=time, Shift=value (_AxisZoomViewBox)
- RMS render no longer per-segment fill_between (was the slow path)

Fixes found in review/testing:
- FillBetweenItem needs penned child curves or it fills nothing (RMS/Waveform
  were blank); band fill verified by pixel count
- band overlay alpha was a no-op (QBrush.color() returns a copy)
- colorbar could stack across renders; now added/removed at a fixed layout cell

Deferred (per scope): stereo retention, deep perf rewrites (eager beat_track,
true-peak/crest loops, shared LUFS), per-song colour picker UI.

Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
2026-06-14 00:35:10 +09:00

368 lines
16 KiB
Python

import sys
import os
import logging
from PyQt5.QtWidgets import (QApplication, QMainWindow, QWidget, QVBoxLayout,
QHBoxLayout, QSplitter, QLabel, QListWidget,
QTextEdit, QListWidgetItem, QPushButton, QFileDialog)
from PyQt5.QtCore import Qt
from audio_visualization_widget import AudioVisualizationWidget, dataset_color
from analysis_results_manager import AnalysisResultsManager
from logger_setup import setup_logging, parse_log_args
from font_manager import initialize_fonts, get_font_manager
from font_control_widget import FontControlWidget
from plot_control_widget import PlotControlWidget
from metrics import METRICS
class MainWindow(QMainWindow):
"""Main application window with modular audio analysis interface."""
def __init__(self):
super().__init__()
self.logger = logging.getLogger(__name__)
self.analysis_manager = AnalysisResultsManager()
# Guards programmatic list mutations from triggering re-render storms.
self._suppress_list_signals = False
self.initUI()
self.connect_signals()
def initUI(self):
"""Initialize the user interface."""
self.setWindowTitle('Audio Mastering Analysis Toolkit')
self.setGeometry(100, 100, 1200, 700)
self.setAcceptDrops(True)
# Create central widget with splitter
central_widget = QWidget()
self.setCentralWidget(central_widget)
# Main horizontal layout
main_layout = QHBoxLayout(central_widget)
splitter = QSplitter(Qt.Horizontal)
main_layout.addWidget(splitter)
# Left panel - File list and metadata
left_panel = self.create_left_panel()
splitter.addWidget(left_panel)
# Right panel - Visualization
self.visualization_widget = AudioVisualizationWidget()
splitter.addWidget(self.visualization_widget)
# Set splitter proportions
splitter.setSizes([300, 900]) # Left panel narrower than visualization
def create_left_panel(self):
"""Create the left panel with file list and metadata."""
panel = QWidget()
layout = QVBoxLayout(panel)
# Open File button
self.open_file_button = QPushButton("Open Audio File...")
self.open_file_button.clicked.connect(self.open_file_dialog)
layout.addWidget(self.open_file_button)
# Font control cluster
self.font_control = FontControlWidget()
self.font_control.fontChanged.connect(self.on_font_changed)
self.font_control.fontSizeChanged.connect(self.on_font_size_changed)
layout.addWidget(self.font_control)
# Plot control cluster (metric selector + scale toggle + refresh)
self.plot_control = PlotControlWidget()
self.plot_control.metricChanged.connect(self.on_metric_changed)
self.plot_control.viewChanged.connect(self.on_view_changed)
self.plot_control.plotRefreshRequested.connect(self.on_plot_refresh_requested)
self.plot_control.addReferenceLineRequested.connect(self.on_add_reference_line)
self.plot_control.clearReferenceLinesRequested.connect(self.on_clear_reference_lines)
layout.addWidget(self.plot_control)
# File list. Each item carries a checkbox: the checked set is the overlay
# set drawn on the graph; the highlighted item drives the metadata panel.
self.file_list_label = QLabel("Analyzed Files (tick to overlay):")
layout.addWidget(self.file_list_label)
self.file_list = QListWidget()
self.file_list.itemClicked.connect(self.on_file_selected)
self.file_list.itemChanged.connect(self.on_file_check_changed)
layout.addWidget(self.file_list)
# Metadata display
self.metadata_label = QLabel("File Information:")
layout.addWidget(self.metadata_label)
self.metadata_display = QTextEdit()
self.metadata_display.setReadOnly(True)
self.metadata_display.setMaximumHeight(150)
layout.addWidget(self.metadata_display)
# Instructions
instructions = QLabel(
"Drag and drop audio files (.mp3, .wav) onto this window to analyze them."
)
instructions.setWordWrap(True)
instructions.setStyleSheet("color: gray; font-style: italic;")
layout.addWidget(instructions)
return panel
def connect_signals(self):
"""Connect analysis manager signals to GUI updates."""
self.analysis_manager.analysisStarted.connect(self.on_analysis_started)
self.analysis_manager.analysisCompleted.connect(self.on_analysis_completed)
self.analysis_manager.analysisError.connect(self.on_analysis_error)
self.analysis_manager.progressUpdate.connect(self.on_progress_update)
self.analysis_manager.metricComputeStarted.connect(self.on_metric_compute_started)
self.analysis_manager.metricReady.connect(self.on_metric_ready)
self.analysis_manager.metricComputeError.connect(self.on_metric_compute_error)
def dragEnterEvent(self, event):
"""Handle drag enter event for file drops."""
if event.mimeData().hasUrls():
# Check if any files have audio extensions
urls = event.mimeData().urls()
for url in urls:
file_path = url.toLocalFile()
if file_path.lower().endswith(('.mp3', '.wav', '.flac')):
event.accept()
return
event.ignore()
def dropEvent(self, event):
"""Handle file drop event."""
files = [u.toLocalFile() for u in event.mimeData().urls()]
audio_files = [f for f in files if f.lower().endswith(('.mp3', '.wav', '.flac'))]
self.logger.info(f"Files dropped: {len(files)} total, {len(audio_files)} audio files")
if audio_files:
# Analyze the first audio file
# TODO: Add support for multiple file queue
file_path = audio_files[0]
self.logger.info(f"Starting analysis of dropped file: {os.path.basename(file_path)}")
self.analysis_manager.analyze_file(file_path, self.plot_control.current_metric_id())
else:
self.visualization_widget.set_status("No audio files detected in drop")
self.logger.warning("No supported audio files found in drop")
def open_file_dialog(self):
"""Open file dialog to select audio files for analysis."""
file_path, _ = QFileDialog.getOpenFileName(
self,
"Select Audio File",
"", # Default directory (empty = current directory)
"Audio Files (*.mp3 *.wav *.flac);;All Files (*)"
)
if file_path: # User selected a file (didn't cancel)
self.logger.info(f"File selected via dialog: {os.path.basename(file_path)}")
self.analysis_manager.analyze_file(file_path, self.plot_control.current_metric_id())
def on_analysis_started(self, file_path):
"""Called when analysis starts."""
filename = os.path.basename(file_path)
self.visualization_widget.set_status(f"Analyzing: {filename}...")
def on_analysis_completed(self, file_path, result):
"""Called when analysis completes successfully."""
filename = os.path.basename(file_path)
# Add to file list (checked, so it joins the overlay set) if not present.
item = self._item_for_path(file_path)
if item is None:
self._suppress_list_signals = True
item = QListWidgetItem(filename)
item.setData(Qt.UserRole, file_path) # Store full path
item.setFlags(item.flags() | Qt.ItemIsUserCheckable)
item.setCheckState(Qt.Checked)
self.file_list.addItem(item)
self._suppress_list_signals = False
# Update metadata display and highlight the analyzed file.
self.metadata_display.setText(self.analysis_manager.get_metadata_text(file_path))
self.file_list.setCurrentItem(item)
# Redraw the overlay set for the current metric.
self._refresh_view()
def on_analysis_error(self, file_path, error_message):
"""Called when analysis fails."""
filename = os.path.basename(file_path)
self.logger.error(f"Analysis failed for {filename}: {error_message}")
self.visualization_widget.set_status(f"Error analyzing {filename}: {error_message}")
def on_progress_update(self, message, percentage):
"""Called when analysis progress updates."""
self.logger.debug(f"Progress: {message} ({percentage}%)")
self.visualization_widget.set_status(f"{message} ({percentage}%)")
def on_file_selected(self, item):
"""Called when a file is highlighted (drives the metadata panel only)."""
file_path = item.data(Qt.UserRole)
self.metadata_display.setText(self.analysis_manager.get_metadata_text(file_path))
def on_file_check_changed(self, _item):
"""A checkbox toggled — the overlay set changed; redraw."""
if self._suppress_list_signals:
return
self._refresh_view()
def on_font_changed(self, font_name: str, font_type: str):
"""Called when font selection changes."""
self.logger.info(f"Font changed via GUI: {font_name} ({font_type})")
self._refresh_view()
def on_font_size_changed(self, font_size: int):
"""Called when Qt font size changes."""
self.logger.info(f"Qt font size changed via GUI: {font_size}pt")
# Qt font size doesn't affect the plot axes fonts directly; no redraw needed.
def on_metric_changed(self, metric_id: str):
"""Called when the metric selector changes."""
self.logger.info(f"Metric changed via GUI: {metric_id}")
# The value axis units change with the metric, so custom reference lines
# placed against the old metric no longer mean anything — drop them.
self.visualization_widget.clear_user_lines()
self._refresh_view()
def on_add_reference_line(self):
"""Drop a draggable reference line on the current plot."""
self.visualization_widget.add_user_line()
def on_clear_reference_lines(self):
"""Remove all custom reference lines."""
self.visualization_widget.clear_user_lines()
def on_view_changed(self):
"""Called when a view-scale toggle (lin/log) changes. Recompute-free redraw."""
self.logger.info("View scale changed via GUI")
self._refresh_view()
def on_plot_refresh_requested(self):
"""Called when manual plot refresh is requested."""
self.logger.info("Manual plot refresh requested via GUI")
self._refresh_view()
def on_metric_compute_started(self, file_path: str, metric_id: str):
"""Called when an off-thread metric compute starts."""
if file_path not in self._overlay_paths():
return # not in the drawn set; status bar shouldn't lie
metric = METRICS.get(metric_id)
display = metric.display_name if metric else metric_id
self.visualization_widget.set_status(f"Computing {display}...")
def on_metric_ready(self, file_path: str, metric_id: str):
"""Called when metric data is available (cached hit or async finish)."""
if metric_id != self.plot_control.current_metric_id():
return # user already switched to a different metric
if file_path not in self._overlay_paths():
return # no longer part of the overlay set
self._refresh_view()
def on_metric_compute_error(self, file_path: str, metric_id: str, error_message: str):
self.logger.error(f"Metric compute failed ({metric_id} / {os.path.basename(file_path)}): {error_message}")
if file_path in self._overlay_paths():
self.visualization_widget.set_status(f"Error computing {metric_id}: {error_message}")
def _current_file_path(self):
item = self.file_list.currentItem()
return item.data(Qt.UserRole) if item else None
def _item_for_path(self, file_path):
for i in range(self.file_list.count()):
item = self.file_list.item(i)
if item.data(Qt.UserRole) == file_path:
return item
return None
def _row_index(self, file_path) -> int:
for i in range(self.file_list.count()):
if self.file_list.item(i).data(Qt.UserRole) == file_path:
return i
return 0
def _overlay_paths(self):
"""File paths whose checkbox is ticked — the set drawn on the graph."""
return [
self.file_list.item(i).data(Qt.UserRole)
for i in range(self.file_list.count())
if self.file_list.item(i).checkState() == Qt.Checked
]
def _refresh_view(self):
"""Redraw the checked overlay set for the current metric and view-state.
Renders every dataset whose data is cached; for any that isn't, kicks off
an async compute (or a full load if the file was never analysed) and
leaves a status note. `on_metric_ready` calls back here when each lands.
"""
paths = self._overlay_paths()
metric_id = self.plot_control.current_metric_id()
view = self.plot_control.current_view_state()
metric = METRICS.get(metric_id)
if not paths or metric is None:
self.visualization_widget.show_specs([])
return
specs = []
pending = 0
for path in paths:
data = self.analysis_manager.get_metric_data(path, metric_id)
if data is None:
if self.analysis_manager.is_file_analyzed(path):
self.analysis_manager.request_metric(path, metric_id)
else:
self.analysis_manager.analyze_file(path, metric_id)
pending += 1
continue
label = self.analysis_manager.display_label(path)
# Colour is keyed to the file's row, not its position in the overlay
# subset, so a song keeps its colour as others are ticked/unticked.
color = dataset_color(self._row_index(path))
specs.append((label, metric.build_spec(data, view), color))
if specs:
self.visualization_widget.show_specs(specs, view)
if pending:
self.visualization_widget.set_status(
f"Computing {metric.display_name} for {pending} file(s)..."
)
def main():
# Parse logging arguments before creating QApplication
log_level, log_to_file = parse_log_args()
# Initialize logging
logger = setup_logging(log_level, log_to_file)
logger.info("Starting Audio Mastering Analysis Toolkit")
logger.info(f"Command line args: log-level={log_level}, log-file={log_to_file}")
app = QApplication(sys.argv)
# Initialize font system before creating any widgets
font_success = initialize_fonts()
if font_success:
logger.info("Font system initialized successfully")
# Log font status for debugging
font_status = get_font_manager().get_status_report()
logger.debug(f"Font status: matplotlib={font_status['matplotlib_configured']}, "
f"qt={font_status['qt_configured']}, "
f"custom_fonts={font_status['custom_fonts_loaded']}")
else:
logger.warning("Font system initialization failed - CJK characters may not display properly")
# Set application style
app.setStyle('Fusion') # Modern cross-platform style
logger.debug("Application style set to Fusion")
window = MainWindow()
window.show()
logger.info("GUI window displayed")
sys.exit(app.exec_())
if __name__ == '__main__':
main()