mirror of
https://github.com/maziggy/bambuddy.git
synced 2026-09-30 03:01:21 +02:00
Assigning a spool to an AMS tray pushed ams_filament_setting + extrusion_cali_sel and reported success immediately, whether or not the tray accepted it. A silently-dropped assignment never surfaced, and since a print only deducts from the spool on the exact tray it pulls from, it also recorded no filament usage - which made the whole thing feel random. Read the AMS telemetry back after every assign (inventory assign_spool and the Configure Slot modal) and toast the outcome: loaded when the tray echoes the pushed tray_info_idx, a warning when the filament loaded but the K-profile (cali_idx) did not, or not-confirmed after ~30s. Verification uses the periodic per-tray push (the command ack hardcodes sequence_id 0 and can't be correlated); an on-demand pushall is nudged so it lands quickly. Covers regular AMS, AMS-HT and external slots; stays silent rather than inventing a failure if the printer goes quiet. The read-back check runs on every AMS push because the change-hash excludes tray_info_idx.
7244 lines
346 KiB
Python
7244 lines
346 KiB
Python
import asyncio
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import json
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import logging
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import mimetypes as _mimetypes
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import os
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import posixpath
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import secrets
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import time
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from contextlib import asynccontextmanager
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from datetime import datetime, timedelta, timezone
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from logging.handlers import RotatingFileHandler
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from pathlib import Path
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from urllib.parse import urlparse
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from fastapi import FastAPI
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from fastapi.responses import FileResponse
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from fastapi.staticfiles import StaticFiles
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from sqlalchemy import delete, or_, select, text
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from backend.app.api.routes import (
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ams_history,
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api_keys,
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archive_purge,
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archives,
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auth,
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bug_report,
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camera,
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camwall,
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cloud,
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||
discovery,
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external_links,
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filaments,
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firmware,
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github_backup,
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groups,
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inventory,
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kprofiles,
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labels,
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library,
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library_tags,
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library_trash,
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local_backup,
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local_presets,
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maintenance,
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makerworld,
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metrics,
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mfa,
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notification_templates,
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||
notifications,
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||
obico,
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orca_cloud,
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||
pending_uploads,
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||
pipeline_runs,
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print_log,
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print_queue,
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printer_sensor_history,
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printers,
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projects,
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settings as settings_routes,
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slice_jobs,
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slicer_pipelines,
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slicer_presets,
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smart_plugs,
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sponsor_prompt,
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spoolbuddy,
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spoolman,
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spoolman_inventory,
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support,
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system,
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updates,
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user_notifications,
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users,
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virtual_printers,
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webhook,
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websocket,
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)
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from backend.app.api.routes.maintenance import _get_printer_maintenance_internal, ensure_default_types
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from backend.app.api.routes.support import init_debug_logging
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from backend.app.core.config import APP_VERSION, settings as app_settings
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from backend.app.core.database import async_session, engine, init_db
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from backend.app.core.tasks import spawn_background_task
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from backend.app.core.websocket import ws_manager
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from backend.app.models.smart_plug import SmartPlug
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from backend.app.services.archive import ArchiveService, peek_plate_index_in_3mf, swap_plate_suffix
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from backend.app.services.archive_purge import archive_purge_service
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from backend.app.services.bambu_ftp import (
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FileNotOnPrinterError,
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cache_3mf_download,
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clear_3mf_cache,
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download_file_async,
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get_cached_3mf,
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get_ftp_retry_settings,
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with_ftp_retry,
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)
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from backend.app.services.bambu_mqtt import PrinterState
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from backend.app.services.github_backup import github_backup_service
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from backend.app.services.homeassistant import homeassistant_service
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from backend.app.services.library_trash import library_trash_service
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from backend.app.services.local_backup import local_backup_service
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from backend.app.services.mqtt_relay import mqtt_relay
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from backend.app.services.mqtt_smart_plug import mqtt_smart_plug_service
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from backend.app.services.notification_service import notification_service
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from backend.app.services.obico_detection import obico_detection_service
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from backend.app.services.print_scheduler import scheduler as print_scheduler
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from backend.app.services.printer_manager import (
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init_printer_connections,
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parse_plate_id,
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printer_manager,
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printer_state_to_dict,
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resolve_plate_id,
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)
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from backend.app.services.smart_plug_manager import smart_plug_manager
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from backend.app.services.spool_assignment_notifications import (
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notify_missing_spool_assignments_on_print_start,
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)
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from backend.app.services.spoolman import close_spoolman_client, get_spoolman_client, init_spoolman_client
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from backend.app.services.spoolman_tracking import (
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cleanup_tracking as _cleanup_spoolman_tracking,
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report_usage as _report_spoolman_usage,
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store_print_data as _store_spoolman_print_data,
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)
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from backend.app.services.tasmota import tasmota_service
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# =============================================================================
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# Dependency Check - runs before other imports to give helpful error messages
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# =============================================================================
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def _start_error_server(missing_packages: list):
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"""Start a minimal HTTP server to display dependency errors in browser."""
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import os
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import signal
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from http.server import BaseHTTPRequestHandler, HTTPServer
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packages_html = "".join(f"<li><code>{p}</code></li>" for p in missing_packages)
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html = f"""<!DOCTYPE html>
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<html>
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<head>
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<title>Bambuddy - Setup Required</title>
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<style>
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body {{
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font-family: -apple-system, BlinkMacSystemFont, 'Segoe UI', Roboto, sans-serif;
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background: #0f172a; color: #e2e8f0;
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display: flex; justify-content: center; align-items: center;
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min-height: 100vh; margin: 0; padding: 20px; box-sizing: border-box;
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}}
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.container {{
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background: #1e293b; border-radius: 12px; padding: 40px;
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max-width: 600px; text-align: center; box-shadow: 0 4px 20px rgba(0,0,0,0.3);
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}}
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h1 {{ color: #f87171; margin-bottom: 10px; }}
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h2 {{ color: #94a3b8; font-weight: normal; margin-top: 0; }}
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.packages {{
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background: #0f172a; border-radius: 8px; padding: 20px;
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margin: 20px 0; text-align: left;
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}}
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.packages ul {{ margin: 0; padding-left: 20px; }}
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.packages li {{ color: #fbbf24; margin: 8px 0; }}
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.command {{
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background: #0f172a; border-radius: 8px; padding: 15px 20px;
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margin: 15px 0; font-family: monospace; color: #4ade80;
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text-align: left; overflow-x: auto;
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}}
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.note {{ color: #94a3b8; font-size: 14px; margin-top: 20px; }}
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</style>
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</head>
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<body>
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<div class="container">
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<h1>Setup Required</h1>
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<h2>Missing Python packages</h2>
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<div class="packages"><ul>{packages_html}</ul></div>
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<p>To fix, run this command on your server:</p>
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<div class="command">pip install -r requirements.txt</div>
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<p>Or if using a virtual environment:</p>
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<div class="command">./venv/bin/pip install -r requirements.txt</div>
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<p class="note">After installing, restart Bambuddy:<br>
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<code>sudo systemctl restart bambuddy</code></p>
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</div>
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</body>
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</html>"""
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class ErrorHandler(BaseHTTPRequestHandler):
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def do_GET(self):
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self.send_response(503)
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self.send_header("Content-type", "text/html")
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self.end_headers()
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self.wfile.write(html.encode())
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def log_message(self, format, *args):
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print(f"[Error Server] {args[0]}")
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port = int(os.environ.get("PORT", 8000))
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print(f"\nStarting error server on http://0.0.0.0:{port}")
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print("Visit this URL in your browser to see the error details.\n")
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server = HTTPServer(("0.0.0.0", port), ErrorHandler) # nosec B104
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def shutdown(signum, frame):
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print("\nShutting down error server...")
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raise SystemExit(0)
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signal.signal(signal.SIGTERM, shutdown)
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signal.signal(signal.SIGINT, shutdown)
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server.serve_forever()
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def check_dependencies():
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"""Check that all required packages are installed."""
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missing = []
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# Map of import name -> package name (for pip install)
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required = {
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"jwt": "PyJWT",
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"fastapi": "fastapi",
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"uvicorn": "uvicorn",
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"sqlalchemy": "sqlalchemy",
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"aiosqlite": "aiosqlite",
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"pydantic": "pydantic",
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"paho.mqtt": "paho-mqtt",
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}
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for module, package in required.items():
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try:
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__import__(module)
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except ImportError:
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missing.append(package)
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if missing:
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print("\n" + "=" * 60)
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print("ERROR: Missing required Python packages!")
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print("=" * 60)
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print(f"\nMissing packages: {', '.join(missing)}")
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print("\nTo fix, run:")
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print(" pip install -r requirements.txt")
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print("\nOr if using a virtual environment:")
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print(" ./venv/bin/pip install -r requirements.txt")
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print("=" * 60 + "\n")
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_start_error_server(missing)
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check_dependencies()
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# =============================================================================
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# Import settings first for logging configuration
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# Configure logging based on settings
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# DEBUG=true -> DEBUG level, else use LOG_LEVEL setting
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log_level_str = "DEBUG" if app_settings.debug else app_settings.log_level.upper()
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log_level = getattr(logging, log_level_str, logging.INFO)
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# Trace ID column ([-] when no request scope is active — startup, MQTT
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# callbacks, scheduled tasks not chained from a request — so the column
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# stays visually aligned and missing values are obvious in grep). See
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# backend/app/core/trace.py for the ContextVar that feeds this slot.
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log_format = "%(asctime)s %(levelname)s [%(name)s] [%(trace_id)s] %(message)s"
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# Create root logger
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root_logger = logging.getLogger()
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root_logger.setLevel(log_level)
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# Trace-ID injection: this filter populates record.trace_id from the
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# per-request ContextVar so the format string above can reference it.
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# Attached to each HANDLER (not the root logger) because Python's
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# logging semantics only invoke a logger's filters on records that
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# *originated* at that logger — records propagated up from child
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# loggers (every named logger in the app) never trigger root's filter.
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# Putting it on the handlers means every record any handler emits gets
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# trace_id injected just before the formatter runs, regardless of which
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# logger created the record. Without this, the formatter raises
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# KeyError on every child-logger record and the record is silently
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# dropped — which is exactly the "logs/bambuddy.log only shows logs
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# partially" bug we hit. See backend/app/core/trace.py for the
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# ContextVar the filter reads.
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from backend.app.core.trace import TraceIDFilter
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_trace_id_filter = TraceIDFilter()
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# Console handler - always enabled
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console_handler = logging.StreamHandler()
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console_handler.setLevel(log_level)
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console_handler.setFormatter(logging.Formatter(log_format))
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console_handler.addFilter(_trace_id_filter)
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root_logger.addHandler(console_handler)
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# File handler - only in production or if explicitly enabled
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if app_settings.log_to_file:
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log_file = app_settings.log_dir / "bambuddy.log"
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file_handler = RotatingFileHandler(
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log_file,
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maxBytes=app_settings.log_max_bytes,
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backupCount=app_settings.log_backup_count,
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encoding="utf-8",
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)
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file_handler.setLevel(log_level)
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file_handler.setFormatter(logging.Formatter(log_format))
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file_handler.addFilter(_trace_id_filter)
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root_logger.addHandler(file_handler)
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logging.info("Logging to file: %s", log_file)
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# Pipe uvicorn's HTTP access log to bambuddy.log too. Uvicorn ships its
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# access logger with propagate=False by default, so without this attach
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# there is no on-disk record of which endpoint triggered a server-state
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# change — the rogue stop_print mystery on 2026-04-26 was untraceable
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# for exactly this reason. Filtered to write methods only
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# (POST/PUT/PATCH/DELETE) so the high-volume status-poll GETs from the
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# frontend don't churn the rotation window faster than it's useful.
|
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from backend.app.core.logging_filters import (
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CancelledPoolNoiseFilter,
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WriteRequestsOnlyFilter,
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)
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uvicorn_access_logger = logging.getLogger("uvicorn.access")
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uvicorn_access_logger.addHandler(file_handler)
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uvicorn_access_logger.addFilter(WriteRequestsOnlyFilter())
|
||
# Uvicorn's access logger has propagate=False (its own default), so the
|
||
# root-attached TraceIDFilter never sees these records. Attach a
|
||
# second instance directly so HTTP access lines carry the same trace
|
||
# ID column as the application logs they correlate with.
|
||
uvicorn_access_logger.addFilter(TraceIDFilter())
|
||
|
||
# Drop SQLAlchemy connection-pool log noise that's caused by Starlette's
|
||
# BaseHTTPMiddleware cancelling the inner task scope on client
|
||
# disconnect (#1112). The cancel-safe `get_db` already prevents the
|
||
# underlying transaction leak; this filter only suppresses the residual
|
||
# log records that pre-existing pools still emit during their cleanup.
|
||
logging.getLogger("sqlalchemy.pool").addFilter(CancelledPoolNoiseFilter())
|
||
|
||
# Reduce noise from third-party libraries in production
|
||
if not app_settings.debug:
|
||
logging.getLogger("sqlalchemy.engine").setLevel(logging.WARNING)
|
||
logging.getLogger("httpcore").setLevel(logging.WARNING)
|
||
logging.getLogger("httpx").setLevel(logging.WARNING)
|
||
logging.getLogger("paho.mqtt").setLevel(logging.WARNING)
|
||
|
||
logging.info("Bambuddy starting - debug=%s, log_level=%s", app_settings.debug, log_level_str)
|
||
|
||
|
||
# Track active prints: {(printer_id, filename): archive_id}
|
||
_active_prints: dict[tuple[int, str], int] = {}
|
||
|
||
# #1721: stage-22 pre-captured finish photo bytes per printer. on_finish_photo_moment
|
||
# fires when stg_cur enters 22 ("Filament unloading") at end-of-print — toolhead
|
||
# parked, bed not yet dropped — and grabs a single camera frame into this cache.
|
||
# `_background_finish_photo` (inside on_print_complete) consumes the cached bytes
|
||
# instead of running its own grab-now chain when present, so the finish photo
|
||
# captures the better-framed pre-bed-drop moment without us having to force
|
||
# timelapse on at dispatch (the #1397 mechanism that caused #1721's per-layer
|
||
# nozzle parking on slicer profiles with Timelapse Type = Smooth).
|
||
_stage22_finish_frames: dict[int, bytes] = {}
|
||
|
||
# #1790: per-printer producer-done event. Set by `on_finish_photo_moment` in its
|
||
# `finally` block (whether it captured a frame or not). The consumer in
|
||
# `_background_finish_photo` waits on it before reading `_stage22_finish_frames`
|
||
# so the FINISH-state fallback path — where moment and completion are dispatched
|
||
# back-to-back — doesn't race past the producer with an empty pop, and the
|
||
# consumer's RTSP fallback can't collide with the producer's still-in-flight RTSP
|
||
# grab (Bambu printers allow only one RTSP client at a time).
|
||
_stage22_finish_in_flight: dict[int, asyncio.Event] = {}
|
||
|
||
# #1867: rolling "last in-print camera frame" per printer. Refreshed on
|
||
# layer-change while the model is still printing, then consumed by the
|
||
# FINISH-state finish-photo path. Firmware that never emits `stg_cur=22`
|
||
# (A1 Mini, confirmed) only reaches `on_finish_photo_moment` at the
|
||
# gcode_state=FINISH transition — which Bambu reports AFTER the user End
|
||
# G-code (e.g. SwapMod plate-swap) has run, so a live grab there captures the
|
||
# swapped/empty plate. Banking is layer-driven, so it naturally freezes at the
|
||
# final object layer: the End G-code emits no further layer_num increases, so
|
||
# the last banked frame is always the finished print before the swap.
|
||
_inprint_frame_bank: dict[int, bytes] = {}
|
||
# Monotonic timestamp of the last banked frame per printer — throttles banking
|
||
# so tall prints don't add a camera grab on every layer.
|
||
_inprint_frame_bank_ts: dict[int, float] = {}
|
||
# Minimum seconds between banked frames, except the final object layer which
|
||
# always refreshes for the best framing.
|
||
_INPRINT_BANK_MIN_INTERVAL = 25.0
|
||
|
||
# Per-printer "connected" edge tracker. Used by `on_printer_status_change`
|
||
# to fire `reconcile_stale_active_prints` exactly once per (re)connection
|
||
# (#1542 follow-up — power-cycle ghost prints). The value is True after
|
||
# the first connected status update for that connection; transitions back
|
||
# to False whenever we observe `state.connected = False` so the next
|
||
# reconnect re-arms reconciliation. Keyed by printer_id.
|
||
_printer_reconciled_since_connect: dict[int, bool] = {}
|
||
|
||
# Track expected prints from reprint/scheduled (skip auto-archiving for these)
|
||
# {(printer_id, filename): archive_id}
|
||
_expected_prints: dict[tuple[int, str], int] = {}
|
||
|
||
# Track AMS mapping for prints: {archive_id: [global_tray_id_per_slot]}
|
||
# Used by usage tracker to map 3MF slots to physical AMS trays
|
||
_print_ams_mappings: dict[int, list[int]] = {}
|
||
|
||
# Track plate_id for prints from multi-plate 3MFs: {archive_id: plate_id}
|
||
# Used by usage tracker to scope 3MF parsing to the dispatched plate (#1697).
|
||
# Populated by direct-Print and queue dispatch paths; queue prints also have a
|
||
# redundant queue-item lookup in on_print_start so this dict isn't load-bearing
|
||
# for the queue path. Cleared on print completion or TTL eviction.
|
||
_print_plate_ids: dict[int, int] = {}
|
||
|
||
# Track progress milestones for notifications: {printer_id: last_milestone_notified}
|
||
# Milestones are 25, 50, 75. Value of 0 means no milestone notified yet for current print.
|
||
_last_progress_milestone: dict[int, int] = {}
|
||
|
||
# Track whether first layer complete notification has been sent for current print
|
||
_first_layer_notified: dict[int, bool] = {}
|
||
|
||
# Track HMS errors that have been notified: {printer_id: set of error codes}
|
||
# This prevents sending duplicate notifications for the same error
|
||
_notified_hms_errors: dict[int, set[str]] = {}
|
||
# Track when HMS errors were last seen: {printer_id: timestamp}
|
||
# Used to debounce clearing — prevents flapping errors from re-triggering notifications
|
||
_hms_last_seen: dict[int, float] = {}
|
||
_HMS_CLEAR_GRACE_SECONDS = 30.0
|
||
|
||
# Track timelapse file baselines at print start: {printer_id: set of video filenames}
|
||
# Used for snapshot-diff detection at print completion
|
||
_timelapse_baselines: dict[int, set[str]] = {}
|
||
|
||
# Track printers waiting for bed to cool after print completion.
|
||
# Event-driven: fires when bed_temper arrives via MQTT below threshold.
|
||
# {printer_id: {"threshold": float, "filename": str, "registered_at": float}}
|
||
_bed_cool_waiters: dict[int, dict] = {}
|
||
|
||
# Track printers where the user explicitly stopped the print from the queue UI.
|
||
# When on_print_complete fires with status "failed" for these printers we treat it
|
||
# as "cancelled" (stopped by user) so the correct notification email is sent.
|
||
_user_stopped_printers: set[int] = set()
|
||
|
||
# Offline-notification edge state (#1752): fire `on_printer_offline` exactly
|
||
# once when a printer transitions connected → disconnected. `_printer_last_connected`
|
||
# holds the previous observation so we only fire on the True → False edge (a
|
||
# False → False repeat doesn't notify; an initial False at startup doesn't
|
||
# notify either, since there's no prior True). `_printer_offline_notify_tasks`
|
||
# holds the per-printer pending asyncio task that fires the notification
|
||
# after a debounce window — cancelled if the printer reconnects before the
|
||
# window elapses, so transient MQTT blips don't flood the user.
|
||
_printer_last_connected: dict[int, bool] = {}
|
||
_printer_offline_notify_tasks: dict[int, asyncio.Task] = {}
|
||
# Debounce: a printer must stay offline this long before we notify. Sized
|
||
# against the staleness path (`bambu_mqtt.py::STALE_RECONNECT_COOLDOWN = 30s`)
|
||
# so a single stale-trigger cooldown isn't enough to fire — only a real
|
||
# offline that survives one reconnect attempt notifies.
|
||
_PRINTER_OFFLINE_NOTIFY_DEBOUNCE_SECONDS = 60.0
|
||
|
||
|
||
# HMS short-code → human-readable failure reason. Used by _dispatch_archive_update
|
||
# when status="failed" to label the print's failure_reason in archives.
|
||
#
|
||
# Earlier code matched on `module` alone (e.g. "any module 0x0C HMS → Layer shift"),
|
||
# which is wrong on two counts:
|
||
# 1. Real layer-shift codes live in module 0x03 (see Bambu wiki), not 0x0C.
|
||
# 2. Module 0x0C is "Motion Controller" — broad category that also covers cameras
|
||
# and visual markers, AND the H2D firmware emits a 0x0C HMS (0C00_001B, not in
|
||
# the public wiki) as part of its user-cancel sequence. Matching on the module
|
||
# alone caused user-cancellations to be archived as "Layer shift" failures.
|
||
# We now match by full short code only — anything not in this map leaves
|
||
# failure_reason=None rather than guessing.
|
||
_HMS_FAILURE_REASONS: dict[str, str] = {
|
||
# Layer shift / step loss
|
||
"0300_4057": "Layer shift",
|
||
"0300_4068": "Layer shift",
|
||
"0300_800C": "Layer shift",
|
||
# Filament runout (printer-side & per-AMS-slot)
|
||
"0300_8004": "Filament runout",
|
||
"0700_8011": "Filament runout",
|
||
"0701_8011": "Filament runout",
|
||
"0702_8011": "Filament runout",
|
||
"0703_8011": "Filament runout",
|
||
"0704_8011": "Filament runout",
|
||
"0705_8011": "Filament runout",
|
||
"0706_8011": "Filament runout",
|
||
"0707_8011": "Filament runout",
|
||
"07FF_8011": "Filament runout",
|
||
# Clogged nozzle / extruder
|
||
"0300_4006": "Clogged nozzle",
|
||
"0300_8016": "Clogged nozzle",
|
||
"0300_801C": "Clogged nozzle",
|
||
"0700_8003": "Clogged nozzle",
|
||
"0700_8007": "Clogged nozzle",
|
||
"0700_8013": "Clogged nozzle",
|
||
"0701_8003": "Clogged nozzle",
|
||
"0701_8007": "Clogged nozzle",
|
||
"0701_8013": "Clogged nozzle",
|
||
"0702_8003": "Clogged nozzle",
|
||
}
|
||
|
||
|
||
def _hms_short_code(attr: int, code: int | str) -> str:
|
||
"""Build the canonical "MMMM_CCCC" HMS short code from raw attr/code values."""
|
||
if isinstance(code, str):
|
||
code_int = int(code.replace("0x", ""), 16) if code else 0
|
||
else:
|
||
code_int = int(code or 0)
|
||
attr_int = int(attr or 0)
|
||
return f"{(attr_int >> 16) & 0xFFFF:04X}_{code_int & 0xFFFF:04X}"
|
||
|
||
|
||
def derive_failure_reason(status: str, hms_errors: list[dict] | None) -> str | None:
|
||
"""Derive a human-readable failure_reason for an archived print.
|
||
|
||
Returns "User cancelled" for cancelled/aborted prints; for failed prints,
|
||
returns the first matching reason from _HMS_FAILURE_REASONS, or None when
|
||
no HMS code matches (don't guess — null is honest).
|
||
"""
|
||
if status in ("aborted", "cancelled"):
|
||
return "User cancelled"
|
||
if status != "failed":
|
||
return None
|
||
for err in hms_errors or []:
|
||
short_code = _hms_short_code(err.get("attr", 0), err.get("code", 0))
|
||
if short_code in _HMS_FAILURE_REASONS:
|
||
return _HMS_FAILURE_REASONS[short_code]
|
||
return None
|
||
|
||
|
||
# Track created_by_id for expected prints so the user email can be sent even when
|
||
# the archive itself doesn't have created_by_id set (e.g. library-file-based prints).
|
||
# {(printer_id, filename): created_by_id}
|
||
_expected_print_creators: dict[tuple[int, str], int] = {}
|
||
|
||
# Per-printer lock that serialises the spool-assignment side of on_ams_change
|
||
# (auto-unlink stale + auto-assign new) when MQTT bursts deliver multiple AMS
|
||
# updates for the same printer in quick succession (~30 ms apart, observed in
|
||
# the wild on H2D + dual AMS).
|
||
#
|
||
# Without this serialisation, two concurrent on_ams_change callbacks each read
|
||
# "no assignment for (printer, ams, tray)", each call auto_assign_spool, and
|
||
# the second commit hits
|
||
# IntegrityError: duplicate key value violates unique constraint
|
||
# "spool_assignment_printer_id_ams_id_tray_id_key"
|
||
# SQLite's WAL serial-write semantics had been silently swallowing the race
|
||
# until optional Postgres support landed (asyncpg allows true concurrent
|
||
# transactions and surfaces the constraint violation).
|
||
#
|
||
# Scope is intentionally narrow: only the two DB-mutating blocks (unlink +
|
||
# assign) are inside the lock. The Spoolman sync block further down stays
|
||
# concurrent because it's network-bound and idempotent.
|
||
_ams_assignment_locks: dict[int, asyncio.Lock] = {}
|
||
|
||
|
||
def _get_ams_assignment_lock(printer_id: int) -> asyncio.Lock:
|
||
"""Return the per-printer assignment lock, creating it on first use."""
|
||
lock = _ams_assignment_locks.get(printer_id)
|
||
if lock is None:
|
||
lock = asyncio.Lock()
|
||
_ams_assignment_locks[printer_id] = lock
|
||
return lock
|
||
|
||
|
||
# Per-printer dedup for unknown_tag WS broadcasts. Keyed by
|
||
# (ams_id, tray_id) -> (tag_uid, tray_uuid); we only re-broadcast when the
|
||
# tag tuple changes for the slot. Cleared when the slot is reported empty
|
||
# so remove + reinsert reliably re-prompts the UI.
|
||
_unknown_tag_last_broadcast: dict[int, dict[tuple[int, int], tuple[str, str]]] = {}
|
||
|
||
|
||
async def _broadcast_unknown_tag(
|
||
*,
|
||
printer_id: int,
|
||
ams_id: int,
|
||
tray_id: int,
|
||
tag_uid: str,
|
||
tray_uuid: str,
|
||
tray_type: str | None = None,
|
||
tray_color: str | None = None,
|
||
tray_sub_brands: str | None = None,
|
||
tray_count: int | None = None,
|
||
) -> None:
|
||
"""Broadcast unknown_tag, deduped so repeated MQTT pushes for the same slot+tag don't spam the UI."""
|
||
_logger = logging.getLogger(__name__)
|
||
slot_key = (ams_id, tray_id)
|
||
tag_key = (tag_uid or "", tray_uuid or "")
|
||
per_printer = _unknown_tag_last_broadcast.setdefault(printer_id, {})
|
||
if per_printer.get(slot_key) == tag_key:
|
||
_logger.debug(
|
||
"unknown_tag deduped for printer=%d AMS=%d slot=%d tag=%s",
|
||
printer_id,
|
||
ams_id,
|
||
tray_id,
|
||
tag_key[0][:8] or tag_key[1][:8] or "(none)",
|
||
)
|
||
return
|
||
_logger.info(
|
||
"unknown_tag broadcast: printer=%d AMS=%d slot=%d type=%r color=%r tag=%s",
|
||
printer_id,
|
||
ams_id,
|
||
tray_id,
|
||
tray_type,
|
||
tray_color,
|
||
tag_key[0][:8] or tag_key[1][:8] or "(none)",
|
||
)
|
||
# Broadcast first; only commit the dedup if the WS write succeeds.
|
||
# If broadcast raises, the next MQTT push retries instead of being
|
||
# permanently silenced by a poisoned dedup entry.
|
||
await ws_manager.broadcast(
|
||
{
|
||
"type": "unknown_tag",
|
||
"printer_id": printer_id,
|
||
"ams_id": ams_id,
|
||
"tray_id": tray_id,
|
||
"tag_uid": tag_uid,
|
||
"tray_uuid": tray_uuid,
|
||
"tray_type": tray_type,
|
||
"tray_color": tray_color,
|
||
"tray_sub_brands": tray_sub_brands,
|
||
"tray_count": tray_count,
|
||
}
|
||
)
|
||
per_printer[slot_key] = tag_key
|
||
|
||
|
||
def _clear_unknown_tag_dedup(printer_id: int, ams_id: int, tray_id: int) -> None:
|
||
"""Drop the cached last-broadcast tag for a slot (called when slot reports empty or gets matched)."""
|
||
per_printer = _unknown_tag_last_broadcast.get(printer_id)
|
||
if per_printer is None:
|
||
return
|
||
per_printer.pop((ams_id, tray_id), None)
|
||
|
||
|
||
# TTL for expected-print entries: evict registrations older than this to prevent
|
||
# unbounded growth when a print is registered but never starts (e.g. printer
|
||
# disconnect, app restart, print started from the printer panel).
|
||
_EXPECTED_PRINT_TTL_SECONDS: int = 2 * 60 * 60 # 2 hours
|
||
|
||
# Registration timestamps used for TTL eviction: {(printer_id, filename): monotonic_time}
|
||
_expected_print_registered_at: dict[tuple[int, str], float] = {}
|
||
|
||
# Cleanup loop interval
|
||
_EXPECTED_PRINT_CLEANUP_INTERVAL: int = 15 * 60 # 15 minutes
|
||
_expected_prints_cleanup_task: asyncio.Task | None = None
|
||
|
||
|
||
async def _get_plug_energy(plug, db) -> dict | None:
|
||
"""Get energy from plug regardless of type (Tasmota, Home Assistant, MQTT, or REST).
|
||
|
||
For HA plugs, configures the service with current settings from DB.
|
||
For MQTT plugs, returns data from the subscription service.
|
||
For REST plugs, polls the status URL with JSON path extraction.
|
||
"""
|
||
if plug.plug_type == "homeassistant":
|
||
from backend.app.api.routes.settings import get_homeassistant_settings
|
||
|
||
ha_settings = await get_homeassistant_settings(db)
|
||
homeassistant_service.configure(ha_settings["ha_url"], ha_settings["ha_token"])
|
||
return await homeassistant_service.get_energy(plug)
|
||
elif plug.plug_type == "mqtt":
|
||
# MQTT plugs report "today" energy, not lifetime total
|
||
# For per-print tracking, we use "today" as the counter (resets at midnight)
|
||
mqtt_data = mqtt_relay.smart_plug_service.get_plug_data(plug.id)
|
||
if mqtt_data:
|
||
return {
|
||
"power": mqtt_data.power,
|
||
"today": mqtt_data.energy,
|
||
"total": mqtt_data.energy, # Use today as total for per-print calculations
|
||
}
|
||
return None
|
||
elif plug.plug_type == "rest":
|
||
from backend.app.services.rest_smart_plug import rest_smart_plug_service
|
||
|
||
return await rest_smart_plug_service.get_energy(plug)
|
||
else:
|
||
return await tasmota_service.get_energy(plug)
|
||
|
||
|
||
async def _record_energy_start(archive, printer_id: int, db, *, context: str = "") -> bool:
|
||
"""Capture the smart plug lifetime counter on the archive at print start.
|
||
|
||
Persists `energy_start_kwh` on the archive row (#941) so per-print energy
|
||
tracking survives a backend restart mid-print. The print-end handler reads
|
||
this value back from the DB and computes the delta against the current
|
||
plug counter.
|
||
"""
|
||
_logger = logging.getLogger(__name__)
|
||
try:
|
||
plug_result = await db.execute(select(SmartPlug).where(SmartPlug.printer_id == printer_id))
|
||
plug = plug_result.scalar_one_or_none()
|
||
if not plug:
|
||
_logger.info("[ENERGY] No smart plug for printer %s (archive %s)", printer_id, archive.id)
|
||
return False
|
||
energy = await _get_plug_energy(plug, db)
|
||
if not energy or energy.get("total") is None:
|
||
_logger.warning("[ENERGY] No 'total' in energy response for archive %s", archive.id)
|
||
return False
|
||
archive.energy_start_kwh = float(energy["total"])
|
||
await db.commit()
|
||
_logger.info(
|
||
"[ENERGY] Recorded starting energy%s for archive %s: %s kWh",
|
||
f" ({context})" if context else "",
|
||
archive.id,
|
||
energy["total"],
|
||
)
|
||
return True
|
||
except Exception as e:
|
||
_logger.warning("[ENERGY] Failed to record starting energy for archive %s: %s", archive.id, e)
|
||
return False
|
||
|
||
|
||
def register_expected_print(
|
||
printer_id: int,
|
||
filename: str,
|
||
archive_id: int,
|
||
ams_mapping: list[int] | None = None,
|
||
created_by_id: int | None = None,
|
||
plate_id: int | None = None,
|
||
):
|
||
"""Register an expected print from reprint/scheduled so we don't create duplicate archives."""
|
||
# Store with multiple filename variations to catch different naming patterns
|
||
_expected_prints[(printer_id, filename)] = archive_id
|
||
# Also store without .3mf extension if present
|
||
if filename.endswith(".3mf"):
|
||
base = filename[:-4]
|
||
_expected_prints[(printer_id, base)] = archive_id
|
||
_expected_prints[(printer_id, f"{base}.gcode")] = archive_id
|
||
# Store AMS mapping for usage tracking at print completion
|
||
if ams_mapping is not None:
|
||
_print_ams_mappings[archive_id] = ams_mapping
|
||
# Store plate_id for usage tracking when this is a single-plate dispatch from
|
||
# a multi-plate 3MF — without this, the direct-Print path attributes the whole
|
||
# file's filament total to the spool instead of just the printed plate (#1697).
|
||
if plate_id is not None:
|
||
_print_plate_ids[archive_id] = plate_id
|
||
# Store created_by_id so the user start email can be sent even when the archive
|
||
# itself has no created_by_id (e.g. library-file-based queue prints)
|
||
if created_by_id is not None:
|
||
_expected_print_creators[(printer_id, filename)] = created_by_id
|
||
if filename.endswith(".3mf"):
|
||
base = filename[:-4]
|
||
_expected_print_creators[(printer_id, base)] = created_by_id
|
||
_expected_print_creators[(printer_id, f"{base}.gcode")] = created_by_id
|
||
# Record registration time for TTL-based eviction
|
||
_registered_at = time.monotonic()
|
||
_expected_print_registered_at[(printer_id, filename)] = _registered_at
|
||
if filename.endswith(".3mf"):
|
||
base = filename[:-4]
|
||
_expected_print_registered_at[(printer_id, base)] = _registered_at
|
||
_expected_print_registered_at[(printer_id, f"{base}.gcode")] = _registered_at
|
||
logging.getLogger(__name__).info(
|
||
f"Registered expected print: printer={printer_id}, file={filename}, archive={archive_id}, ams_mapping={ams_mapping}, plate_id={plate_id}"
|
||
)
|
||
|
||
|
||
def _compute_run_filament_grams(
|
||
status: str,
|
||
archive_filament_used_grams: float | None,
|
||
progress: float | int | None,
|
||
usage_results: list[dict] | None,
|
||
) -> float | None:
|
||
"""Per-run filament for PrintLogEntry, partial- and tracker-aware (#1378, #1390).
|
||
|
||
Priority for every status:
|
||
1. Sum of tracked spool deltas in ``usage_results`` (AMS-measured
|
||
weight delta — same source that drives "Total Consumed" on the
|
||
Inventory page, so Stats and Inventory totals stay aligned).
|
||
2. For ``completed``: the slicer estimate (no tracker available, fall
|
||
back to the canonical "this print used X" value).
|
||
3. For partial statuses: ``estimate * progress%``.
|
||
4. ``None`` if nothing is known.
|
||
"""
|
||
tracked_grams = sum(r.get("weight_used") or 0 for r in (usage_results or []))
|
||
if tracked_grams > 0:
|
||
return round(tracked_grams, 1)
|
||
|
||
if status == "completed":
|
||
return archive_filament_used_grams
|
||
|
||
if archive_filament_used_grams:
|
||
scale = max(0.0, min(((progress or 0) / 100.0), 1.0))
|
||
if scale > 0:
|
||
return round(archive_filament_used_grams * scale, 1)
|
||
|
||
return None
|
||
|
||
|
||
def _plate_scoped_run_estimate(archive, full_path) -> tuple[float | None, float | None]:
|
||
"""Per-run (grams, cost) scoped to the plate this run actually printed (#2614).
|
||
|
||
``PrintArchive.filament_used_grams`` / ``.cost`` are the sum over EVERY plate of
|
||
the source 3MF — correct for the archive card and project rollup, but wrong for a
|
||
single plate dispatched from a multi-plate file: without scoping, each printed
|
||
plate of a 22-plate file logs the whole ~12 kg and inflates every statistic. When
|
||
the archive carries a ``plate_id`` and its 3MF is on disk, return that plate's
|
||
slicer estimate instead; cost is scaled by the plate's share of the whole so it
|
||
stays consistent with the scoped grams without re-doing the filament price lookup.
|
||
Falls back to the archive's whole-file values when there's no plate to scope to.
|
||
"""
|
||
whole_grams = archive.filament_used_grams
|
||
if archive.plate_id is None or full_path is None or not full_path.exists():
|
||
return whole_grams, archive.cost
|
||
try:
|
||
from backend.app.utils.threemf_tools import extract_plate_metadata_from_3mf
|
||
|
||
plate_grams = extract_plate_metadata_from_3mf(full_path, archive.plate_id).filament_used_grams
|
||
except Exception as exc:
|
||
logging.getLogger(__name__).debug(
|
||
"[#2614] plate-scoped estimate failed for archive %s (plate %s): %s",
|
||
archive.id,
|
||
archive.plate_id,
|
||
exc,
|
||
)
|
||
return whole_grams, archive.cost
|
||
if not plate_grams or plate_grams <= 0:
|
||
return whole_grams, archive.cost
|
||
plate_cost = archive.cost
|
||
if archive.cost and whole_grams and whole_grams > 0:
|
||
plate_cost = round(archive.cost * (plate_grams / whole_grams), 2)
|
||
return round(plate_grams, 2), plate_cost
|
||
|
||
|
||
def _get_start_ams_mapping(data: dict, archive_id: int | None) -> list[int] | None:
|
||
"""Resolve AMS mapping for print start without consuming stored queue/reprint state."""
|
||
stored_ams_mapping = data.get("ams_mapping")
|
||
if not stored_ams_mapping and archive_id:
|
||
stored_ams_mapping = _print_ams_mappings.get(archive_id)
|
||
return stored_ams_mapping
|
||
|
||
|
||
def _get_start_plate_id(archive_id: int | None) -> int | None:
|
||
"""Resolve plate_id for print start without consuming stored direct-Print state.
|
||
|
||
Direct-Print of a single plate from a multi-plate 3MF registers plate_id in
|
||
``_print_plate_ids`` at dispatch time; this lets the spoolman / usage tracker
|
||
read it back at print-start without popping (the entry is popped on print
|
||
completion or TTL eviction, mirroring ``_print_ams_mappings``).
|
||
"""
|
||
if archive_id is None:
|
||
return None
|
||
return _print_plate_ids.get(archive_id)
|
||
|
||
|
||
def _partial_progress_scale(progress: int | float | None) -> float:
|
||
"""Clamp ``progress / 100`` into [0.0, 1.0] for partial-print scaling.
|
||
|
||
Used by every site that multiplies a "would-have-used" slicer estimate
|
||
down to "actually-used" for failed / cancelled / stopped prints. Centralised
|
||
so the three sites in ``_background_notifications`` (and the per-plate
|
||
override helper) can't drift apart on the coercion shape.
|
||
"""
|
||
return max(0.0, min((progress or 0) / 100.0, 1.0))
|
||
|
||
|
||
def _scope_notification_archive_data_to_plate(
|
||
archive_data: dict,
|
||
archive_file_path: str | None,
|
||
plate_id: int | None,
|
||
print_status: str,
|
||
progress: int | float | None,
|
||
base_dir: Path,
|
||
) -> dict:
|
||
"""Override summed-across-plates totals in ``archive_data`` with the values
|
||
for ``plate_id`` so the completion notification reports what was actually
|
||
printed, not the whole project (#1785).
|
||
|
||
The 3MF parser at services/archive.py:200-264 sums ``prediction`` and
|
||
``weight`` across every plate of a multi-plate file (#1593) — correct for
|
||
the archive card's "whole project" headline, wrong for the completion
|
||
notification of a single-plate print. The queue UI already re-reads the
|
||
3MF per-plate at print_queue.py:272-285; this helper mirrors that for the
|
||
notification payload (filament grams, time estimate, per-slot breakdown).
|
||
|
||
No-ops when ``plate_id`` is None, the file is missing, or the 3MF carries
|
||
no per-plate values — in every fail case the original ``archive_data`` is
|
||
returned unchanged so the notification still sends.
|
||
"""
|
||
if plate_id is None or not archive_file_path:
|
||
return archive_data
|
||
|
||
from backend.app.utils.threemf_tools import (
|
||
extract_filament_usage_from_3mf,
|
||
extract_print_time_from_3mf,
|
||
)
|
||
|
||
archive_path = base_dir / archive_file_path
|
||
if not archive_path.exists():
|
||
return archive_data
|
||
|
||
plate_slots = extract_filament_usage_from_3mf(archive_path, plate_id)
|
||
plate_grams = sum(f.get("used_g", 0) for f in plate_slots)
|
||
plate_time = extract_print_time_from_3mf(archive_path, plate_id)
|
||
|
||
scale = 1.0 if print_status == "completed" else _partial_progress_scale(progress)
|
||
|
||
if plate_time:
|
||
archive_data["print_time_seconds"] = plate_time
|
||
|
||
# Gate both the grams headline AND the per-slot breakdown on the same
|
||
# `plate_grams > 0` signal: if the 3MF carries per-plate filament rows but
|
||
# they all sum to zero (slicer bug / re-slice without estimate), drop back
|
||
# to the project-level grams the archive columns already provide rather
|
||
# than ship a project-level headline next to an all-zero per-plate
|
||
# breakdown.
|
||
if plate_grams > 0:
|
||
archive_data["actual_filament_grams"] = round(plate_grams * scale, 1)
|
||
archive_data["filament_slots"] = [
|
||
{
|
||
"slot_id": s.get("slot_id"),
|
||
"used_g": round((s.get("used_g") or 0) * scale, 1),
|
||
"type": s.get("type", ""),
|
||
"color": s.get("color", ""),
|
||
}
|
||
for s in plate_slots
|
||
]
|
||
|
||
return archive_data
|
||
|
||
|
||
def _extract_filament_data_from_mqtt(data: dict, ams_mapping: list[int] | None = None) -> dict[str, str]:
|
||
"""Best-effort filament metadata from the MQTT print-start snapshot.
|
||
|
||
Used when the 3MF can't be downloaded (P1S/A1/P2S firmwares lock the
|
||
file during print, see #1533) so the fallback PrintArchive still has
|
||
enough filament info to support the inventory views and AMS-expansion
|
||
planning the operator opens it for. Returns a dict with optional
|
||
``filament_type`` and ``filament_color`` keys in the same
|
||
comma-separated format the 3MF extractor produces, so the rest of the
|
||
codebase treats the fallback archive identically to a normal one.
|
||
|
||
``ams_mapping`` is the slicer's slot-per-print-filament list captured
|
||
from the MQTT print payload (global tray IDs, possibly -1 for VT-tray
|
||
entries). When supplied, only the slots actually consumed by this
|
||
print contribute. Without it the function falls back to every loaded
|
||
AMS slot — less accurate but still useful.
|
||
|
||
Accepts both the raw inner payload (``{"ams": {"ams": [...]}, ...}``)
|
||
that the unit tests pass directly, AND the on_print_start callback
|
||
shape (``{"raw_data": {"ams": {"ams": [...]}, ...}, ...}``) the
|
||
bambu_mqtt service hands to main.py at runtime. The original
|
||
``_extract_filament_data_from_mqtt(data)`` shipped in #1533 only
|
||
handled the inner shape and silently returned ``{}`` for every real
|
||
print start, leaving fallback archives' filament fields NULL — the
|
||
exact regression the fix was meant to close. Reported with a log
|
||
proving the AMS state was right there at
|
||
``data["raw_data"]["ams"]["ams"][0]["tray"][0]`` (#1533 follow-up).
|
||
"""
|
||
result: dict[str, str] = {}
|
||
# Look at the on_print_start wrapper first, then the inner shape.
|
||
raw_data = (data or {}).get("raw_data")
|
||
ams_root = (raw_data or {}).get("ams") if isinstance(raw_data, dict) else None
|
||
if not isinstance(ams_root, dict):
|
||
ams_root = (data or {}).get("ams") or {}
|
||
ams_units = ams_root.get("ams") if isinstance(ams_root, dict) else None
|
||
if not isinstance(ams_units, list) or not ams_units:
|
||
return result
|
||
|
||
# Map global tray id (unit * 4 + tray) → (type, color).
|
||
loaded: dict[int, tuple[str, str]] = {}
|
||
for unit in ams_units:
|
||
if not isinstance(unit, dict):
|
||
continue
|
||
try:
|
||
unit_id = int(unit.get("id", 0))
|
||
except (TypeError, ValueError):
|
||
continue
|
||
for tray in unit.get("tray") or []:
|
||
if not isinstance(tray, dict):
|
||
continue
|
||
try:
|
||
tray_id = int(tray.get("id", 0))
|
||
except (TypeError, ValueError):
|
||
continue
|
||
ttype = (tray.get("tray_type") or "").strip()
|
||
tcolor = (tray.get("tray_color") or "").strip().upper()
|
||
if not ttype:
|
||
continue # Empty / unloaded slot.
|
||
loaded[unit_id * 4 + tray_id] = (ttype, tcolor)
|
||
|
||
if not loaded:
|
||
return result
|
||
|
||
if ams_mapping:
|
||
used_ids = [int(x) for x in ams_mapping if isinstance(x, (int, float)) and int(x) >= 0]
|
||
filaments = [loaded[g] for g in used_ids if g in loaded]
|
||
if not filaments:
|
||
return result # Mapping points entirely at slots we have no data for.
|
||
else:
|
||
filaments = [loaded[g] for g in sorted(loaded.keys())]
|
||
|
||
types_joined = ",".join(f[0] for f in filaments)
|
||
colors_joined = ",".join(f[1] for f in filaments if f[1])
|
||
|
||
# Column limits per backend/app/models/archive.py: filament_type=50,
|
||
# filament_color=200.
|
||
if types_joined:
|
||
result["filament_type"] = types_joined[:50]
|
||
if colors_joined:
|
||
result["filament_color"] = colors_joined[:200]
|
||
return result
|
||
|
||
|
||
def _maybe_start_layer_timelapse(printer, printer_id: int, archive_id: int) -> bool:
|
||
"""Start a layer-timelapse session for *archive_id* when the printer has
|
||
an external camera configured. Returns True if a session was started.
|
||
|
||
Three call sites in on_print_start (expected-archive promotion, fallback
|
||
archive creation, fresh-archive creation) used to inline this same
|
||
if-block; the inline copies kept drifting (#1353 fixed only one of them
|
||
on the first pass). Centralising the conditional + call here makes the
|
||
contract testable in isolation and keeps the three sites locked in step.
|
||
"""
|
||
if not (printer.external_camera_enabled and printer.external_camera_url):
|
||
return False
|
||
from backend.app.services.layer_timelapse import start_session
|
||
|
||
start_session(
|
||
printer_id,
|
||
archive_id,
|
||
printer.external_camera_url,
|
||
printer.external_camera_type or "mjpeg",
|
||
snapshot_url=printer.external_camera_snapshot_url,
|
||
)
|
||
logging.getLogger(__name__).info("Started layer timelapse for printer %s, archive %s", printer_id, archive_id)
|
||
return True
|
||
|
||
|
||
def _format_hms_error_summary(hms_errors: list[dict]) -> str | None:
|
||
"""Build a human-readable failure reason from MQTT hms_errors for PrintQueueItem.error_message.
|
||
|
||
Each entry has keys: code ('0x4038'), attr (32-bit int), module, severity.
|
||
The short code used for the hms_errors.py lookup table is 'MMMM_EEEE' — module
|
||
from attr bits 16-31, error from the numeric part of code. Falls back to the raw
|
||
short code when no description is on file. Returns None for an empty list so
|
||
callers can leave error_message unset.
|
||
"""
|
||
if not hms_errors:
|
||
return None
|
||
from backend.app.services.hms_errors import get_error_description
|
||
|
||
parts: list[str] = []
|
||
for err in hms_errors:
|
||
try:
|
||
code_str = str(err.get("code", "")).replace("0x", "")
|
||
error_num = int(code_str, 16) if code_str else 0
|
||
module_num = (int(err.get("attr", 0)) >> 16) & 0xFFFF
|
||
short_code = f"{module_num:04X}_{error_num:04X}"
|
||
except (TypeError, ValueError):
|
||
continue
|
||
description = get_error_description(short_code)
|
||
parts.append(f"[{short_code}] {description}" if description else f"[{short_code}]")
|
||
return "; ".join(parts) if parts else None
|
||
|
||
|
||
async def _bump_library_file_usage_if_completed(db, item, queue_status: str) -> None:
|
||
"""Increment LibraryFile.print_count and stamp last_printed_at when a queued
|
||
print completes successfully. Gated to status=='completed': failed, cancelled
|
||
and aborted prints do not count as usage. Caller is responsible for committing
|
||
the session. No-op when the queue item has no linked library file (e.g. reprints
|
||
from an archive). See #1008."""
|
||
if queue_status != "completed" or item.library_file_id is None:
|
||
return
|
||
from backend.app.models.library import LibraryFile
|
||
|
||
lib_file = await db.scalar(select(LibraryFile).where(LibraryFile.id == item.library_file_id))
|
||
if lib_file is None:
|
||
return
|
||
lib_file.print_count = (lib_file.print_count or 0) + 1
|
||
lib_file.last_printed_at = datetime.now(timezone.utc)
|
||
|
||
|
||
def mark_printer_stopped_by_user(printer_id: int) -> None:
|
||
"""Mark that the active print on this printer was stopped by the user from the queue UI.
|
||
|
||
When on_print_complete fires with status 'failed' for a printer in this set we
|
||
reclassify it as 'cancelled' so the correct 'print stopped' notification is sent
|
||
rather than a 'print failed' notification.
|
||
"""
|
||
_user_stopped_printers.add(printer_id)
|
||
logging.getLogger(__name__).info("Marked printer %s as user-stopped from queue", printer_id)
|
||
|
||
|
||
_last_status_broadcast: dict[int, str] = {}
|
||
# Track printers where we've updated nozzle_count
|
||
_nozzle_count_updated: set[int] = set()
|
||
|
||
|
||
async def _maybe_notify_printer_offline(printer_id: int) -> None:
|
||
"""Wait the debounce window then fire `on_printer_offline` if the printer
|
||
is still offline.
|
||
|
||
Scheduled by `on_printer_status_change` on the connected → disconnected
|
||
edge (#1752). Cancelled by the same handler if the printer reconnects
|
||
before the window elapses, so a single MQTT blip + recovery doesn't
|
||
notify. Both the staleness-detector path (`bambu_mqtt.py::check_staleness`)
|
||
and the smart-plug power-off path (`printer_manager.mark_printer_offline`)
|
||
route through the same status-change callback, so this covers both.
|
||
"""
|
||
logger = logging.getLogger(__name__)
|
||
try:
|
||
await asyncio.sleep(_PRINTER_OFFLINE_NOTIFY_DEBOUNCE_SECONDS)
|
||
still_offline = not printer_manager.is_connected(printer_id)
|
||
logger.info(
|
||
"[#1752] Printer %s offline debounce elapsed: still_offline=%s",
|
||
printer_id,
|
||
still_offline,
|
||
)
|
||
if not still_offline:
|
||
return
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if not printer:
|
||
logger.warning(
|
||
"[#1752] Printer %s missing from DB at offline-notify time; skipping",
|
||
printer_id,
|
||
)
|
||
return
|
||
logger.info(
|
||
"[#1752] Dispatching on_printer_offline for printer %s (%s)",
|
||
printer_id,
|
||
printer.name,
|
||
)
|
||
await notification_service.on_printer_offline(printer_id, printer.name, db)
|
||
except asyncio.CancelledError:
|
||
raise
|
||
except Exception as e:
|
||
logger.warning("Printer offline notification failed for printer %s: %s", printer_id, e)
|
||
finally:
|
||
_printer_offline_notify_tasks.pop(printer_id, None)
|
||
|
||
|
||
async def on_printer_status_change(printer_id: int, state: PrinterState):
|
||
"""Handle printer status changes - broadcast via WebSocket."""
|
||
# Connected-edge reconciliation (#1542 follow-up). When the printer
|
||
# transitions disconnected → connected — which covers both Bambuddy
|
||
# startup (no prior connection) and a mid-session MQTT reconnect — fire
|
||
# `reconcile_stale_active_prints` exactly once for this connection so
|
||
# any archive still in `status="printing"` that can't actually be
|
||
# running anymore (printer IDLE / different subtask / empty subtask)
|
||
# gets a synthesised PRINT COMPLETE. Without this, a print that
|
||
# finished during a disconnect window + a smart-plug power cycle
|
||
# leaves the .3mf on the SD card and the firmware ghost-replays it on
|
||
# next boot. Reconciliation runs concurrently — it must not block the
|
||
# WebSocket dedup / broadcast logic below, and the connected edge is
|
||
# marked True BEFORE the await so concurrent status updates inside
|
||
# the same connection don't re-trigger reconciliation.
|
||
#
|
||
# Wait for a real push_status before reconciling (#1679): MQTT
|
||
# `_on_connect` broadcasts `state` IMMEDIATELY after the broker accepts
|
||
# the connection, BEFORE `_request_push_all` round-trips. At that
|
||
# instant the `PrinterState` is still on construction defaults — most
|
||
# importantly `state.state == "unknown"` and `state.subtask_name == ""`.
|
||
# If reconcile spawns here, every in-flight archive falls through to
|
||
# the empty-subtask_name trigger and gets synthesised `aborted`, which
|
||
# creates a duplicate archive on the real PRINT COMPLETE and
|
||
# double-counts filament. Gating on `state.state ∉ ("", "unknown")`
|
||
# keeps the #1542 mechanism intact: once the first real push_status
|
||
# updates `state.state` (RUNNING / IDLE / FINISH / …), this handler
|
||
# fires again with the flag still False — reconcile then runs against
|
||
# actual evidence.
|
||
state_known = bool(state.state) and state.state.upper() not in ("", "UNKNOWN")
|
||
if state.connected and state_known and not _printer_reconciled_since_connect.get(printer_id, False):
|
||
_printer_reconciled_since_connect[printer_id] = True
|
||
spawn_background_task(
|
||
reconcile_stale_active_prints(printer_id),
|
||
name=f"reconcile-stale-prints-{printer_id}",
|
||
)
|
||
elif not state.connected and _printer_reconciled_since_connect.get(printer_id, False):
|
||
# Re-arm so the next reconnect triggers reconciliation again.
|
||
_printer_reconciled_since_connect[printer_id] = False
|
||
|
||
# Offline-notification edge (#1752): schedule `on_printer_offline` on
|
||
# connected → disconnected. The "back online" channel is already covered
|
||
# by the print-failure notification (firmware reports gcode_state=FAILED
|
||
# on reconnect of an interrupted print), so we don't add a symmetric
|
||
# online event here.
|
||
prev_connected = _printer_last_connected.get(printer_id)
|
||
_printer_last_connected[printer_id] = state.connected
|
||
if prev_connected is True and not state.connected:
|
||
existing = _printer_offline_notify_tasks.get(printer_id)
|
||
if existing is None or existing.done():
|
||
logging.getLogger(__name__).info(
|
||
"[#1752] Printer %s connected→disconnected edge; scheduling offline notification in %.0fs",
|
||
printer_id,
|
||
_PRINTER_OFFLINE_NOTIFY_DEBOUNCE_SECONDS,
|
||
)
|
||
_printer_offline_notify_tasks[printer_id] = asyncio.create_task(
|
||
_maybe_notify_printer_offline(printer_id),
|
||
name=f"printer-offline-notify-{printer_id}",
|
||
)
|
||
elif state.connected:
|
||
pending = _printer_offline_notify_tasks.pop(printer_id, None)
|
||
if pending is not None and not pending.done():
|
||
logging.getLogger(__name__).info(
|
||
"[#1752] Printer %s reconnected before debounce; cancelling pending offline notification",
|
||
printer_id,
|
||
)
|
||
pending.cancel()
|
||
|
||
# Only broadcast if something meaningful changed (reduce WebSocket spam)
|
||
# Include rounded temperatures to detect meaningful temp changes (within 1 degree)
|
||
temps = state.temperatures or {}
|
||
nozzle_temp = round(temps.get("nozzle", 0))
|
||
bed_temp = round(temps.get("bed", 0))
|
||
nozzle_2_temp = round(temps.get("nozzle_2", 0)) if "nozzle_2" in temps else ""
|
||
chamber_temp = round(temps.get("chamber", 0)) if "chamber" in temps else ""
|
||
|
||
# Auto-detect dual-nozzle printers from MQTT temperature data
|
||
if "nozzle_2" in temps and printer_id not in _nozzle_count_updated:
|
||
_nozzle_count_updated.add(printer_id)
|
||
# Update nozzle_count in database
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if printer and printer.nozzle_count != 2:
|
||
printer.nozzle_count = 2
|
||
await db.commit()
|
||
logging.getLogger(__name__).info(
|
||
f"Auto-detected dual-nozzle printer {printer_id}, updated nozzle_count=2"
|
||
)
|
||
|
||
# Include target temps for heating phase detection
|
||
bed_target = round(temps.get("bed_target", 0))
|
||
nozzle_target = round(temps.get("nozzle_target", 0))
|
||
|
||
# Include tray_now and vt_tray hash so external spool changes trigger broadcasts
|
||
vt_tray_key = hash(str(state.raw_data.get("vt_tray", []))) if state.raw_data else 0
|
||
# Include AMS dry_time and tray state values so drying/slot changes trigger broadcasts
|
||
ams_dry_key = tuple(a.get("dry_time", 0) for a in (state.raw_data.get("ams") or [])) if state.raw_data else ()
|
||
# Include tray states so load/unload transitions (state 11→10) trigger broadcasts (#784)
|
||
ams_tray_key = (
|
||
tuple(
|
||
(t.get("id"), t.get("tray_type", ""), t.get("state"))
|
||
for a in (state.raw_data.get("ams") or [])
|
||
for t in a.get("tray", [])
|
||
)
|
||
if state.raw_data
|
||
else ()
|
||
)
|
||
status_key = (
|
||
f"{state.connected}:{state.state}:{state.progress}:{state.layer_num}:"
|
||
f"{nozzle_temp}:{bed_temp}:{nozzle_2_temp}:{chamber_temp}:"
|
||
f"{state.stg_cur}:{bed_target}:{nozzle_target}:"
|
||
f"{state.cooling_fan_speed}:{state.big_fan1_speed}:{state.big_fan2_speed}:"
|
||
f"{state.chamber_light}:{state.active_extruder}:{state.tray_now}:{vt_tray_key}:"
|
||
f"{ams_dry_key}:{ams_tray_key}:{state.door_open}:{state.ams_filament_backup}"
|
||
)
|
||
|
||
# MQTT relay - publish status (before dedup check - always publish to MQTT)
|
||
try:
|
||
printer_info = printer_manager.get_printer(printer_id)
|
||
if printer_info:
|
||
await mqtt_relay.on_printer_status(printer_id, state, printer_info.name, printer_info.serial_number)
|
||
except Exception:
|
||
pass # Don't fail status callback if MQTT fails
|
||
|
||
if _last_status_broadcast.get(printer_id) == status_key:
|
||
return # No change, skip WebSocket broadcast
|
||
|
||
_last_status_broadcast[printer_id] = status_key
|
||
|
||
# Check for progress milestone notifications (25%, 50%, 75%)
|
||
progress = state.progress or 0
|
||
is_printing = state.state in ("RUNNING", "PRINTING")
|
||
|
||
if is_printing and progress > 0:
|
||
# Determine which milestone we've reached
|
||
current_milestone = 0
|
||
if progress >= 75:
|
||
current_milestone = 75
|
||
elif progress >= 50:
|
||
current_milestone = 50
|
||
elif progress >= 25:
|
||
current_milestone = 25
|
||
|
||
last_milestone = _last_progress_milestone.get(printer_id, 0)
|
||
|
||
# If we've crossed a new milestone, send notification
|
||
if current_milestone > last_milestone:
|
||
_last_progress_milestone[printer_id] = current_milestone
|
||
try:
|
||
from backend.app.models.printer import Printer
|
||
|
||
# Read the printer in a short session and release the connection
|
||
# BEFORE the ~15s camera snapshot below — holding it across the grab
|
||
# pinned a pooled connection per milestone, per printer (issue #2572).
|
||
async with async_session() as db:
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
|
||
printer_name = printer.name if printer else f"Printer {printer_id}"
|
||
filename = state.subtask_name or state.gcode_file or "Unknown"
|
||
# remaining_time is in minutes, convert to seconds for notification
|
||
remaining_time_seconds = state.remaining_time * 60 if state.remaining_time else None
|
||
|
||
# Capture camera snapshot for notification image attachment (no DB held).
|
||
image_data = await _capture_snapshot_for_notification(printer_id, printer, logging.getLogger(__name__))
|
||
|
||
# Notification send needs a session (provider/template lookups).
|
||
async with async_session() as db:
|
||
await notification_service.on_print_progress(
|
||
printer_id,
|
||
printer_name,
|
||
filename,
|
||
current_milestone,
|
||
db,
|
||
remaining_time_seconds,
|
||
image_data=image_data,
|
||
)
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning(f"Progress milestone notification failed: {e}")
|
||
elif progress < 5:
|
||
# Reset milestone tracking when print restarts or new print begins
|
||
_last_progress_milestone[printer_id] = 0
|
||
_first_layer_notified[printer_id] = False
|
||
|
||
# HMS error codes that should not trigger notifications even though they
|
||
# have known descriptions (e.g. user-initiated actions, not real errors).
|
||
_HMS_NOTIFICATION_SUPPRESS = {
|
||
"0500_400E", # Printing was cancelled (user action, not an error)
|
||
}
|
||
|
||
# Check for new HMS errors and send notifications
|
||
current_hms_errors = getattr(state, "hms_errors", []) or []
|
||
if current_hms_errors:
|
||
# Build set of current error codes (using attr for uniqueness)
|
||
current_error_codes = {f"{e.attr:08x}" for e in current_hms_errors}
|
||
previously_notified = _notified_hms_errors.get(printer_id, set())
|
||
|
||
# Find new errors that haven't been notified yet
|
||
new_error_codes = current_error_codes - previously_notified
|
||
|
||
# Update tracking immediately to prevent duplicate notifications from concurrent callbacks
|
||
_notified_hms_errors[printer_id] = current_error_codes
|
||
_hms_last_seen[printer_id] = time.time()
|
||
|
||
if new_error_codes:
|
||
# Get the actual new errors for the notification
|
||
# Filter to severity >= 2 (skip informational/status messages like H2D sends)
|
||
new_errors = [e for e in current_hms_errors if f"{e.attr:08x}" in new_error_codes and e.severity >= 2]
|
||
|
||
try:
|
||
from backend.app.models.printer import Printer
|
||
|
||
# Read the printer in a short session and release the connection
|
||
# BEFORE the ~15s camera snapshot below (issue #2572).
|
||
async with async_session() as db:
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
|
||
printer_name = printer.name if printer else f"Printer {printer_id}"
|
||
|
||
# Format error details for notification
|
||
# Module 0x07 = AMS/Filament, 0x05 = Nozzle, 0x0C = Motion Controller, etc.
|
||
module_names = {
|
||
0x03: "Print/Task",
|
||
0x05: "Nozzle/Extruder",
|
||
0x07: "AMS/Filament",
|
||
0x0C: "Motion Controller",
|
||
0x12: "Chamber",
|
||
}
|
||
|
||
from backend.app.services.hms_errors import get_error_description
|
||
|
||
# Capture camera snapshot once for all error notifications (no DB held).
|
||
error_image_data = await _capture_snapshot_for_notification(
|
||
printer_id, printer, logging.getLogger(__name__)
|
||
)
|
||
|
||
# Notification sends need a session (provider/template lookups).
|
||
async with async_session() as db:
|
||
sent_count = 0
|
||
for error in new_errors:
|
||
module_name = module_names.get(error.module, f"Module 0x{error.module:02X}")
|
||
# Build short code like "0700_8010"
|
||
# Mask to 16 bits to handle printers that send larger values
|
||
error_code_int = int(error.code.replace("0x", ""), 16) if error.code else 0
|
||
error_code_masked = error_code_int & 0xFFFF
|
||
short_code = f"{(error.attr >> 16) & 0xFFFF:04X}_{error_code_masked:04X}"
|
||
|
||
# Only notify for errors with known descriptions — printers
|
||
# send many undocumented/phantom codes that aren't real errors.
|
||
description = get_error_description(short_code)
|
||
if not description or short_code in _HMS_NOTIFICATION_SUPPRESS:
|
||
continue
|
||
|
||
error_type = f"{module_name} Error"
|
||
error_detail = description
|
||
|
||
await notification_service.on_printer_error(
|
||
printer_id, printer_name, error_type, db, error_detail, image_data=error_image_data
|
||
)
|
||
sent_count += 1
|
||
|
||
if sent_count:
|
||
logging.getLogger(__name__).info(
|
||
f"[HMS] Sent notification for {sent_count} error(s) on printer {printer_id}"
|
||
)
|
||
|
||
# Also publish to MQTT relay (no DB).
|
||
printer_info = printer_manager.get_printer(printer_id)
|
||
if printer_info:
|
||
errors_data = [
|
||
{
|
||
"code": e.code,
|
||
"attr": e.attr,
|
||
"module": e.module,
|
||
"severity": e.severity,
|
||
}
|
||
for e in new_errors
|
||
]
|
||
await mqtt_relay.on_printer_error(
|
||
printer_id, printer_info.name, printer_info.serial_number, errors_data
|
||
)
|
||
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning(f"HMS error notification failed: {e}")
|
||
|
||
else:
|
||
# No HMS errors — only clear tracking after a grace period to prevent
|
||
# flapping errors (brief hms:[] gaps) from re-triggering notifications.
|
||
# Some HMS codes (e.g. chamber temp regulation during PETG prints) toggle
|
||
# on/off every few seconds as conditions fluctuate around thresholds.
|
||
if printer_id in _notified_hms_errors:
|
||
last_seen = _hms_last_seen.get(printer_id, 0)
|
||
if time.time() - last_seen >= _HMS_CLEAR_GRACE_SECONDS:
|
||
_notified_hms_errors.pop(printer_id, None)
|
||
_hms_last_seen.pop(printer_id, None)
|
||
|
||
await ws_manager.send_printer_status(
|
||
printer_id,
|
||
printer_state_to_dict(
|
||
state,
|
||
printer_id,
|
||
printer_manager.get_model(printer_id),
|
||
printer_manager.get_drying_targets(printer_id),
|
||
),
|
||
)
|
||
|
||
|
||
def _is_bambu_uuid(tray_uuid: str) -> bool:
|
||
"""Check if a tray UUID looks like a valid Bambu Lab RFID UUID (non-empty, non-zero)."""
|
||
return bool(tray_uuid) and tray_uuid not in ("", "0" * len(tray_uuid))
|
||
|
||
|
||
async def on_ams_change(printer_id: int, ams_data: list):
|
||
"""Handle AMS data changes - sync to Spoolman if enabled and auto mode."""
|
||
logger = logging.getLogger(__name__)
|
||
|
||
# Snapshot BEFORE any await: if a print is active, skip weight sync later.
|
||
# on_print_complete may pop _active_sessions during our awaits (#880).
|
||
from backend.app.services.usage_tracker import _active_sessions
|
||
|
||
_print_active = printer_id in _active_sessions
|
||
|
||
# MQTT relay - publish AMS change
|
||
try:
|
||
printer_info = printer_manager.get_printer(printer_id)
|
||
if printer_info:
|
||
await mqtt_relay.on_ams_change(printer_id, printer_info.name, printer_info.serial_number, ams_data)
|
||
except Exception:
|
||
pass # Don't fail AMS callback if MQTT fails
|
||
|
||
# Broadcast AMS change via WebSocket (bypasses status_key deduplication)
|
||
# This ensures frontend gets immediate updates when AMS slots are configured
|
||
try:
|
||
state = printer_manager.get_status(printer_id)
|
||
if state:
|
||
logger.info("[Printer %s] Broadcasting AMS change via WebSocket", printer_id)
|
||
await ws_manager.send_printer_status(
|
||
printer_id,
|
||
printer_state_to_dict(
|
||
state,
|
||
printer_id,
|
||
printer_manager.get_model(printer_id),
|
||
printer_manager.get_drying_targets(printer_id),
|
||
),
|
||
)
|
||
except Exception as e:
|
||
logger.warning("Failed to broadcast AMS change for printer %s: %s", printer_id, e)
|
||
|
||
from backend.app.utils.color_utils import colors_similar as _colors_similar
|
||
|
||
# Auto-unlink spool assignments with stale fingerprints
|
||
try:
|
||
async with async_session() as db:
|
||
from sqlalchemy.orm import selectinload
|
||
|
||
from backend.app.api.routes.inventory import _find_tray_in_ams_data
|
||
from backend.app.models.spool import Spool as _Spool
|
||
from backend.app.models.spool_assignment import SpoolAssignment as SA
|
||
|
||
result = await db.execute(
|
||
select(SA)
|
||
.where(SA.printer_id == printer_id)
|
||
.options(selectinload(SA.spool).selectinload(_Spool.k_profiles))
|
||
)
|
||
stale = []
|
||
for assignment in result.scalars().all():
|
||
# External spool assignments (ams_id=255) live in vt_tray, not AMS data
|
||
if assignment.ams_id == 255:
|
||
ps = printer_manager.get_status(printer_id)
|
||
vt_tray_raw = ps.raw_data.get("vt_tray", []) if ps else []
|
||
ext_id = assignment.tray_id + 254 # 0→254, 1→255
|
||
current_tray = None
|
||
for vt in vt_tray_raw:
|
||
if isinstance(vt, dict) and int(vt.get("id", 254)) == ext_id:
|
||
current_tray = vt
|
||
break
|
||
if not current_tray:
|
||
# vt_tray data may not have arrived yet — keep assignment
|
||
continue
|
||
else:
|
||
current_tray = _find_tray_in_ams_data(ams_data, assignment.ams_id, assignment.tray_id)
|
||
if not current_tray:
|
||
logger.info(
|
||
"Auto-unlink: spool %d AMS%d-T%d — tray not found in AMS data (slot empty?)",
|
||
assignment.spool_id,
|
||
assignment.ams_id,
|
||
assignment.tray_id,
|
||
)
|
||
stale.append(assignment) # Slot empty
|
||
elif _is_bambu_uuid(current_tray.get("tray_uuid", "")):
|
||
# A Bambu Lab spool is in this slot — check if it's the same spool
|
||
# that's currently assigned. If yes, keep the assignment (avoids
|
||
# unnecessary unlink/re-assign/ams_filament_setting cycle that clears
|
||
# the printer's filament preset on every startup).
|
||
tray_uuid = current_tray.get("tray_uuid", "")
|
||
tag_uid = current_tray.get("tag_uid", "")
|
||
spool = assignment.spool
|
||
spool_matches = False
|
||
if spool:
|
||
if (spool.tray_uuid and spool.tray_uuid.upper() == tray_uuid.upper()) or (
|
||
spool.tag_uid
|
||
and tag_uid
|
||
and tag_uid != "0000000000000000"
|
||
and spool.tag_uid.upper() == tag_uid.upper()
|
||
):
|
||
spool_matches = True
|
||
if spool_matches:
|
||
# Same BL spool still in slot — keep assignment, update fingerprint if needed
|
||
cur_color = current_tray.get("tray_color", "")
|
||
cur_type = current_tray.get("tray_type", "")
|
||
fp_color = assignment.fingerprint_color or ""
|
||
fp_type = assignment.fingerprint_type or ""
|
||
if cur_color.upper() != fp_color.upper() or cur_type.upper() != fp_type.upper():
|
||
assignment.fingerprint_color = cur_color
|
||
assignment.fingerprint_type = cur_type
|
||
logger.debug(
|
||
"Auto-unlink: spool %d AMS%d-T%d — same BL spool, updated fingerprint",
|
||
assignment.spool_id,
|
||
assignment.ams_id,
|
||
assignment.tray_id,
|
||
)
|
||
continue
|
||
# Different BL spool or unrecognized — unlink so auto-assign can match
|
||
logger.info(
|
||
"Auto-unlink: spool %d AMS%d-T%d — different Bambu Lab spool detected (uuid=%s)",
|
||
assignment.spool_id,
|
||
assignment.ams_id,
|
||
assignment.tray_id,
|
||
tray_uuid,
|
||
)
|
||
stale.append(assignment)
|
||
else:
|
||
cur_color = current_tray.get("tray_color", "")
|
||
cur_type = current_tray.get("tray_type", "")
|
||
cur_state = current_tray.get("state")
|
||
fp_color = assignment.fingerprint_color or ""
|
||
fp_type = assignment.fingerprint_type or ""
|
||
|
||
# SpoolBuddy pre-config replay: fingerprint_type empty means
|
||
# the slot was empty when the user pre-assigned via SpoolBuddy
|
||
# (the firmware drops ams_filament_setting on empty slots, so
|
||
# MQTT was deferred). The moment any filament gets inserted
|
||
# — Bambu RFID, 3rd-party, or even an existing-but-now-
|
||
# reconfigured spool — fire the deferred configuration.
|
||
# The "loaded" signal is state == 11 (Bambu's "filament fed to
|
||
# extruder" code) OR, on firmwares that don't use the state
|
||
# enum meaningfully, a non-empty tray_type when state is
|
||
# NOT one of the firmware's explicit empty signals (9, 10).
|
||
# state-only was wrong for firmwares that never set 11 — A1
|
||
# Mini BMCU 01.07.02.00 and P1S Standard AMS 00.00.06.75 both
|
||
# always report state=3 — so the replay never fired for them
|
||
# (#1322). The state ∉ {9,10} guard keeps the firmware's
|
||
# explicit "empty" signals authoritative over any stale
|
||
# tray_type that might survive the relay's auto-clearing.
|
||
loaded = cur_state == 11 or (cur_state not in (9, 10) and cur_type.strip())
|
||
if not fp_type.strip() and loaded and assignment.spool:
|
||
try:
|
||
from backend.app.api.routes.inventory import (
|
||
apply_spool_to_slot_via_mqtt,
|
||
)
|
||
|
||
await apply_spool_to_slot_via_mqtt(
|
||
db=db,
|
||
current_user=None,
|
||
spool=assignment.spool,
|
||
printer_id=printer_id,
|
||
ams_id=assignment.ams_id,
|
||
tray_id=assignment.tray_id,
|
||
current_tray_info_idx=current_tray.get("tray_info_idx", ""),
|
||
current_tray_type=cur_type,
|
||
)
|
||
logger.info(
|
||
"SpoolBuddy pre-config applied on insert: spool %d → printer %d AMS%d-T%d",
|
||
assignment.spool_id,
|
||
printer_id,
|
||
assignment.ams_id,
|
||
assignment.tray_id,
|
||
)
|
||
except Exception:
|
||
logger.exception(
|
||
"Pre-config apply failed for spool %d on printer %d AMS%d-T%d",
|
||
assignment.spool_id,
|
||
printer_id,
|
||
assignment.ams_id,
|
||
assignment.tray_id,
|
||
)
|
||
assignment.fingerprint_color = cur_color
|
||
assignment.fingerprint_type = cur_type
|
||
continue
|
||
|
||
if not _colors_similar(cur_color, fp_color) or cur_type.upper() != fp_type.upper():
|
||
# Fingerprint mismatch — but check if tray now matches the
|
||
# assigned spool (e.g. auto-configure changed the tray).
|
||
spool = assignment.spool
|
||
if spool:
|
||
spool_color = (spool.rgba or "FFFFFFFF").upper()
|
||
spool_type = (spool.material or "").upper()
|
||
if _colors_similar(cur_color, spool_color) and cur_type.upper() == spool_type:
|
||
logger.info(
|
||
"Auto-unlink: spool %d AMS%d-T%d — fingerprint mismatch but tray matches spool, updating fp",
|
||
assignment.spool_id,
|
||
assignment.ams_id,
|
||
assignment.tray_id,
|
||
)
|
||
assignment.fingerprint_color = cur_color
|
||
assignment.fingerprint_type = cur_type
|
||
continue
|
||
logger.info(
|
||
"Auto-unlink: spool %d AMS%d-T%d — fingerprint mismatch (cur=%s/%s fp=%s/%s spool=%s/%s)",
|
||
assignment.spool_id,
|
||
assignment.ams_id,
|
||
assignment.tray_id,
|
||
cur_color,
|
||
cur_type,
|
||
fp_color,
|
||
fp_type,
|
||
spool.rgba if spool else "?",
|
||
spool.material if spool else "?",
|
||
)
|
||
stale.append(assignment) # Spool changed
|
||
# Snapshot slots before delete — ORM attribute access after the
|
||
# commit would refresh against a deleted row.
|
||
unlinked_slots = [(a.ams_id, a.tray_id) for a in stale]
|
||
for a in stale:
|
||
await db.delete(a)
|
||
if stale:
|
||
logger.info("Auto-unlinked %d stale spool assignments for printer %d", len(stale), printer_id)
|
||
# Commit any changes (stale deletions and/or fingerprint updates)
|
||
await db.commit()
|
||
# Tell open browsers the assignment is gone (#2575). Only the manual
|
||
# REST assign/unassign endpoints broadcast this event; without it the
|
||
# frontend's spool-assignments cache keeps rendering the unlinked
|
||
# spool on the slot until an unrelated refetch — which reads exactly
|
||
# like "the fix didn't work" (reporter verified: a browser refresh
|
||
# after the swap showed the correct state all along).
|
||
for ams_id, tray_id in unlinked_slots:
|
||
await ws_manager.broadcast(
|
||
{
|
||
"type": "spool_assignment_changed",
|
||
"printer_id": printer_id,
|
||
"ams_id": ams_id,
|
||
"tray_id": tray_id,
|
||
}
|
||
)
|
||
except Exception as e:
|
||
logger.warning("Spool assignment cleanup failed: %s", e, exc_info=True)
|
||
|
||
# Auto-manage inventory spools from AMS tray data (skip if Spoolman manages AMS).
|
||
# Serialised per-printer via _ams_assignment_locks: MQTT bursts can deliver
|
||
# two AMS pushes ~30 ms apart, and without the lock both callbacks read
|
||
# "no existing assignment" for the same (printer, ams, tray) and race to
|
||
# INSERT, hitting the spool_assignment_printer_id_ams_id_tray_id_key
|
||
# unique constraint on Postgres. SQLite's WAL serialises writes so the
|
||
# bug stayed latent there. See _ams_assignment_locks comment for details.
|
||
try:
|
||
async with _get_ams_assignment_lock(printer_id), async_session() as db:
|
||
from backend.app.api.routes.settings import get_setting
|
||
from backend.app.models.spool import Spool
|
||
from backend.app.models.spool_assignment import SpoolAssignment as SA
|
||
from backend.app.services.spool_tag_matcher import (
|
||
auto_assign_spool,
|
||
create_spool_from_tray,
|
||
find_matching_untagged_spool,
|
||
get_spool_by_tag,
|
||
is_bambu_tag,
|
||
is_valid_tag,
|
||
link_tag_to_inventory_spool,
|
||
)
|
||
|
||
_spoolman_on = await get_setting(db, "spoolman_enabled")
|
||
_auto_add_raw = await get_setting(db, "auto_add_unknown_rfid")
|
||
_auto_add_unknown = _auto_add_raw is None or _auto_add_raw.lower() == "true"
|
||
if not _spoolman_on or _spoolman_on.lower() != "true":
|
||
for ams_unit in ams_data:
|
||
if not isinstance(ams_unit, dict):
|
||
continue
|
||
ams_id = int(ams_unit.get("id", 0))
|
||
for tray in ams_unit.get("tray", []):
|
||
if not isinstance(tray, dict):
|
||
continue
|
||
tray_id = int(tray.get("id", 0))
|
||
tag_uid = tray.get("tag_uid", "")
|
||
tray_uuid = tray.get("tray_uuid", "")
|
||
tray_info_idx = tray.get("tray_info_idx", "")
|
||
if not tray.get("tray_type"):
|
||
# Slot reported empty — drop any cached unknown-tag
|
||
# broadcast so reinserting the same spool re-prompts.
|
||
_clear_unknown_tag_dedup(printer_id, ams_id, tray_id)
|
||
continue # Empty slot
|
||
# Check if assignment already exists for this slot
|
||
existing = await db.execute(
|
||
select(SA)
|
||
.options(selectinload(SA.spool).selectinload(Spool.k_profiles))
|
||
.where(SA.printer_id == printer_id, SA.ams_id == ams_id, SA.tray_id == tray_id)
|
||
)
|
||
existing_assignment = existing.scalar_one_or_none()
|
||
if existing_assignment:
|
||
# Sync spool weight_used from AMS remain — only INCREASE, never decrease.
|
||
# The AMS remain% is low-resolution (integer %, i.e. 10g steps for 1kg spool)
|
||
# and must not overwrite precise values from the usage tracker (3MF/G-code).
|
||
# Skip during active prints: the usage tracker handles deduction
|
||
# precisely via 3MF data on print completion. Without this guard the
|
||
# AMS remain% SET and the usage tracker ADD both fire from the same
|
||
# MQTT message, doubling the deduction (#880).
|
||
if _print_active:
|
||
continue
|
||
remain_raw = tray.get("remain")
|
||
if (
|
||
remain_raw is not None
|
||
and existing_assignment.spool
|
||
and not existing_assignment.spool.weight_locked
|
||
):
|
||
try:
|
||
remain_val = int(remain_raw)
|
||
except (TypeError, ValueError):
|
||
remain_val = -1
|
||
if 1 <= remain_val <= 100:
|
||
lw = existing_assignment.spool.label_weight or 1000
|
||
new_used = round(lw * (100 - remain_val) / 100.0, 1)
|
||
current_used = existing_assignment.spool.weight_used or 0
|
||
if new_used > current_used + 1:
|
||
logger.info(
|
||
"Weight sync: spool %d weight_used %s -> %s (remain=%d)",
|
||
existing_assignment.spool_id,
|
||
current_used,
|
||
new_used,
|
||
remain_val,
|
||
)
|
||
existing_assignment.spool.weight_used = new_used
|
||
await db.commit()
|
||
|
||
# Re-apply stored K-profile when the live tray's
|
||
# cali_idx drifted from the spool's stored profile.
|
||
# This catches "reset slot → re-read" and any other
|
||
# path where the firmware loses the user's K-profile
|
||
# selection while the SpoolAssignment row persists.
|
||
# Per the maintainer's rule: any time a spool tag is
|
||
# identified and matches inventory, the slot must be
|
||
# configured with the spool's stored settings. Without
|
||
# this block the existing-assignment branch only ran
|
||
# weight-sync and let the firmware-default cali_idx win.
|
||
try:
|
||
spool = existing_assignment.spool
|
||
if (
|
||
spool is not None
|
||
and is_bambu_tag(tag_uid, tray_uuid, tray_info_idx)
|
||
and spool.k_profiles
|
||
):
|
||
state = printer_manager.get_status(printer_id)
|
||
nozzle_diameter = "0.4"
|
||
if state and state.nozzles:
|
||
nd = state.nozzles[0].nozzle_diameter
|
||
if nd:
|
||
nozzle_diameter = nd
|
||
slot_extruder: int | None = None
|
||
if state and state.ams_extruder_map:
|
||
if ams_id == 255:
|
||
slot_extruder = 1 - tray_id
|
||
else:
|
||
slot_extruder = state.ams_extruder_map.get(str(ams_id))
|
||
# Prefer exact extruder match, fall back to
|
||
# extruder-agnostic kp for the same printer +
|
||
# nozzle. Avoids hard-skipping when the AMS is
|
||
# mapped differently than at calibration time.
|
||
matching_kp = None
|
||
fallback_kp = None
|
||
for kp in spool.k_profiles:
|
||
if (
|
||
kp.printer_id != printer_id
|
||
or kp.nozzle_diameter != nozzle_diameter
|
||
or kp.cali_idx is None
|
||
):
|
||
continue
|
||
if (
|
||
slot_extruder is not None
|
||
and kp.extruder is not None
|
||
and kp.extruder == slot_extruder
|
||
):
|
||
matching_kp = kp
|
||
break
|
||
if fallback_kp is None:
|
||
fallback_kp = kp
|
||
chosen_kp = matching_kp or fallback_kp
|
||
if chosen_kp is not None:
|
||
live_cali_idx = tray.get("cali_idx")
|
||
# Only fire MQTT when the printer's live
|
||
# cali_idx differs from the stored value.
|
||
# Avoids spamming the broker on every
|
||
# MQTT push during steady-state operation.
|
||
if live_cali_idx != chosen_kp.cali_idx:
|
||
client = printer_manager.get_client(printer_id)
|
||
if client:
|
||
cali_filament_id = spool.slicer_filament or tray_info_idx or ""
|
||
client.extrusion_cali_sel(
|
||
ams_id=ams_id,
|
||
tray_id=tray_id,
|
||
cali_idx=chosen_kp.cali_idx,
|
||
filament_id=cali_filament_id,
|
||
nozzle_diameter=nozzle_diameter,
|
||
)
|
||
logger.info(
|
||
"Re-applied K-profile cali_idx=%d for spool %d "
|
||
"on printer %d AMS%d-T%d (live=%s drift detected)",
|
||
chosen_kp.cali_idx,
|
||
spool.id,
|
||
printer_id,
|
||
ams_id,
|
||
tray_id,
|
||
live_cali_idx,
|
||
)
|
||
except Exception:
|
||
logger.exception(
|
||
"K-profile re-apply failed for printer %d AMS%d-T%d",
|
||
printer_id,
|
||
ams_id,
|
||
tray_id,
|
||
)
|
||
continue
|
||
|
||
if is_bambu_tag(tag_uid, tray_uuid, tray_info_idx):
|
||
# BL spool with RFID tag: auto-match → inventory match → auto-create
|
||
spool = await get_spool_by_tag(db, tag_uid, tray_uuid)
|
||
if not spool:
|
||
# Try matching an untagged inventory spool (same material/color)
|
||
spool = await find_matching_untagged_spool(db, tray)
|
||
if spool:
|
||
await link_tag_to_inventory_spool(db, spool, tray)
|
||
elif _auto_add_unknown:
|
||
spool = await create_spool_from_tray(db, tray)
|
||
else:
|
||
# Auto-add disabled: surface the slot so the
|
||
# user can add it manually via the UI.
|
||
await _broadcast_unknown_tag(
|
||
printer_id=printer_id,
|
||
ams_id=ams_id,
|
||
tray_id=tray_id,
|
||
tag_uid=tag_uid,
|
||
tray_uuid=tray_uuid,
|
||
tray_type=tray.get("tray_type"),
|
||
tray_color=tray.get("tray_color"),
|
||
tray_sub_brands=tray.get("tray_sub_brands"),
|
||
tray_count=len(ams_unit.get("tray", [])),
|
||
)
|
||
continue
|
||
# Slot matched (existing tag, untagged inventory
|
||
# match, or freshly auto-created spool) — drop any
|
||
# stale dedup so a future tag swap re-prompts.
|
||
_clear_unknown_tag_dedup(printer_id, ams_id, tray_id)
|
||
await auto_assign_spool(
|
||
printer_id,
|
||
ams_id,
|
||
tray_id,
|
||
spool,
|
||
printer_manager,
|
||
db,
|
||
tray_info_idx=tray_info_idx,
|
||
)
|
||
await db.commit()
|
||
await ws_manager.broadcast(
|
||
{
|
||
"type": "spool_auto_assigned",
|
||
"printer_id": printer_id,
|
||
"ams_id": ams_id,
|
||
"tray_id": tray_id,
|
||
"spool_id": spool.id,
|
||
}
|
||
)
|
||
logger.info(
|
||
"RFID auto-assigned spool %d to printer %d AMS%d-T%d",
|
||
spool.id,
|
||
printer_id,
|
||
ams_id,
|
||
tray_id,
|
||
)
|
||
elif is_valid_tag(tag_uid, tray_uuid):
|
||
# Non-BL spool with some tag — let user choose
|
||
await _broadcast_unknown_tag(
|
||
printer_id=printer_id,
|
||
ams_id=ams_id,
|
||
tray_id=tray_id,
|
||
tag_uid=tag_uid,
|
||
tray_uuid=tray_uuid,
|
||
tray_type=tray.get("tray_type"),
|
||
tray_color=tray.get("tray_color"),
|
||
tray_sub_brands=tray.get("tray_sub_brands"),
|
||
tray_count=len(ams_unit.get("tray", [])),
|
||
)
|
||
# No-tag slots (generic non-RFID filament) are left alone:
|
||
# nothing to identify, prompting "+ Add" would just create
|
||
# ghost spools with empty tags on every confirm.
|
||
except Exception as e:
|
||
logger.warning("RFID spool auto-assign failed: %s", e, exc_info=True)
|
||
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.api.routes.settings import get_setting
|
||
from backend.app.models.printer import Printer
|
||
|
||
# Check if Spoolman is enabled
|
||
spoolman_enabled = await get_setting(db, "spoolman_enabled")
|
||
if not spoolman_enabled or spoolman_enabled.lower() != "true":
|
||
return
|
||
|
||
# Check sync mode
|
||
sync_mode = await get_setting(db, "spoolman_sync_mode")
|
||
if sync_mode and sync_mode != "auto":
|
||
return # Only sync on auto mode
|
||
|
||
_auto_add_raw_sm = await get_setting(db, "auto_add_unknown_rfid")
|
||
auto_add_unknown_rfid = _auto_add_raw_sm is None or _auto_add_raw_sm.lower() == "true"
|
||
|
||
# `spoolman_disable_weight_sync` is deprecated (#1119) — weight is now
|
||
# always owned by per-print tracking, never by AMS auto-sync. The
|
||
# setting is still read by the settings UI for backwards compat but
|
||
# has no effect on the sync path here.
|
||
|
||
# Get Spoolman URL
|
||
spoolman_url = await get_setting(db, "spoolman_url")
|
||
if not spoolman_url:
|
||
return
|
||
|
||
# Get or create Spoolman client
|
||
client = await get_spoolman_client()
|
||
if not client:
|
||
try:
|
||
client = await init_spoolman_client(spoolman_url)
|
||
except ValueError as exc:
|
||
logger.warning("Spoolman URL %r rejected by SSRF guard: %s", spoolman_url, exc)
|
||
return
|
||
|
||
# Check if Spoolman is reachable
|
||
if not await client.health_check():
|
||
logger.warning("Spoolman not reachable at %s", spoolman_url)
|
||
return
|
||
|
||
# Get printer name for location
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
printer_name = printer.name if printer else f"Printer {printer_id}"
|
||
|
||
# OPTIMIZATION: Fetch all spools once before processing trays
|
||
# This eliminates redundant API calls (one per tray) when syncing multiple trays
|
||
logger.debug("[Printer %s] Fetching spools cache for AMS sync...", printer_id)
|
||
try:
|
||
cached_spools = await client.get_spools()
|
||
logger.debug("[Printer %s] Cached %d spools for batch sync", printer_id, len(cached_spools))
|
||
except Exception as e:
|
||
logger.error(
|
||
"[Printer %s] Failed to fetch spools cache after retries, aborting AMS sync: %s",
|
||
printer_id,
|
||
e,
|
||
)
|
||
return
|
||
|
||
# Load inventory weights as fallback (when AMS MQTT data lacks remain values)
|
||
from sqlalchemy.orm import selectinload
|
||
|
||
from backend.app.models.spool_assignment import SpoolAssignment
|
||
from backend.app.models.spoolman_slot_assignment import SpoolmanSlotAssignment
|
||
|
||
inventory_weights: dict[tuple[int, int], float] = {}
|
||
try:
|
||
assign_result = await db.execute(
|
||
select(SpoolAssignment)
|
||
.options(selectinload(SpoolAssignment.spool))
|
||
.where(SpoolAssignment.printer_id == printer_id)
|
||
)
|
||
for assignment in assign_result.scalars().all():
|
||
spool = assignment.spool
|
||
if spool and spool.label_weight > 0:
|
||
remaining = max(0.0, spool.label_weight - (spool.weight_used or 0))
|
||
inventory_weights[(assignment.ams_id, assignment.tray_id)] = remaining
|
||
except Exception as e:
|
||
logger.warning("Could not load inventory weights for printer %s: %s", printer_id, e)
|
||
|
||
# Load existing Spoolman slot assignments for the no-RFID fallback path
|
||
spoolman_slot_map: dict[tuple[int, int], int] = {}
|
||
try:
|
||
slot_result = await db.execute(
|
||
select(SpoolmanSlotAssignment).where(SpoolmanSlotAssignment.printer_id == printer_id)
|
||
)
|
||
for slot in slot_result.scalars().all():
|
||
spoolman_slot_map[(slot.ams_id, slot.tray_id)] = slot.spoolman_spool_id
|
||
except Exception as e:
|
||
logger.warning("Could not load Spoolman slot assignments for printer %s: %s", printer_id, e)
|
||
|
||
# Sync each AMS tray and collect slot changes for DB persistence
|
||
synced = 0
|
||
slot_changes: list[tuple[int, int, int]] = [] # (ams_id, tray_id, spoolman_spool_id) to upsert
|
||
empty_slots: list[tuple[int, int]] = [] # (ams_id, tray_id) whose tray is now empty
|
||
for ams_unit in ams_data:
|
||
if not isinstance(ams_unit, dict):
|
||
continue
|
||
ams_id = int(ams_unit.get("id", 0))
|
||
trays = ams_unit.get("tray", [])
|
||
|
||
for tray_data in trays:
|
||
if not isinstance(tray_data, dict):
|
||
continue
|
||
tray_id_raw = int(tray_data.get("id", 0))
|
||
tray = client.parse_ams_tray(ams_id, tray_data)
|
||
if not tray:
|
||
# Empty tray slot — record for local assignment cleanup
|
||
# and drop any cached unknown-tag broadcast so a
|
||
# reinserted spool re-prompts.
|
||
empty_slots.append((ams_id, tray_id_raw))
|
||
_clear_unknown_tag_dedup(printer_id, ams_id, tray_id_raw)
|
||
continue
|
||
|
||
spool_tag = (
|
||
tray.tray_uuid
|
||
if tray.tray_uuid and tray.tray_uuid != "00000000000000000000000000000000"
|
||
else tray.tag_uid
|
||
)
|
||
|
||
# Provide the hint only when no RFID is available
|
||
hint = spoolman_slot_map.get((ams_id, tray.tray_id)) if not spool_tag else None
|
||
|
||
try:
|
||
inv_remaining = inventory_weights.get((ams_id, tray.tray_id))
|
||
result = await client.sync_ams_tray(
|
||
tray,
|
||
printer_name,
|
||
# Per-print tracking is the only weight writer (#1119).
|
||
# AMS auto-sync still maintains spool metadata / slot
|
||
# assignments but no longer touches remaining_weight.
|
||
disable_weight_sync=True,
|
||
cached_spools=cached_spools,
|
||
inventory_remaining=inv_remaining,
|
||
spoolman_spool_id_hint=hint,
|
||
auto_add_unknown_rfid=auto_add_unknown_rfid,
|
||
)
|
||
if result is None and spool_tag and not auto_add_unknown_rfid:
|
||
# Spoolman skipped auto-create per user setting — surface
|
||
# the slot so the UI can offer "+ Add to inventory".
|
||
await _broadcast_unknown_tag(
|
||
printer_id=printer_id,
|
||
ams_id=ams_id,
|
||
tray_id=tray.tray_id,
|
||
tag_uid=tray.tag_uid or "",
|
||
tray_uuid=tray.tray_uuid or "",
|
||
tray_type=tray.tray_type,
|
||
tray_color=tray.tray_color,
|
||
tray_sub_brands=tray.tray_sub_brands,
|
||
tray_count=len(trays),
|
||
)
|
||
elif result:
|
||
_clear_unknown_tag_dedup(printer_id, ams_id, tray.tray_id)
|
||
if result:
|
||
synced += 1
|
||
if result.get("id"):
|
||
slot_changes.append((ams_id, tray.tray_id, result["id"]))
|
||
# If a new spool was created, add it to the cache
|
||
# so subsequent trays can find it if they reference the same tag
|
||
spool_exists = any(s.get("id") == result["id"] for s in cached_spools)
|
||
if not spool_exists:
|
||
cached_spools.append(result)
|
||
logger.debug(
|
||
"[Printer %s] Added newly created spool %s to cache",
|
||
printer_id,
|
||
result["id"],
|
||
)
|
||
# Reconcile slot_preset_mappings (the same row internal
|
||
# mode keeps in sync via inventory + spool_tag_matcher).
|
||
# Without this the slot card surfaces the previous spool's
|
||
# preset name — same bug shape, different inventory mode.
|
||
from backend.app.services.slot_preset_writer import (
|
||
upsert_slot_preset_for_spoolman_spool,
|
||
)
|
||
|
||
await upsert_slot_preset_for_spoolman_spool(
|
||
db=db,
|
||
spoolman_spool=result,
|
||
tray_info_idx=tray.tray_info_idx or "",
|
||
tray_sub_brands=tray.tray_sub_brands or "",
|
||
tray_type=tray.tray_type or "",
|
||
printer_id=printer_id,
|
||
ams_id=ams_id,
|
||
tray_id=tray.tray_id,
|
||
)
|
||
except Exception as e:
|
||
logger.error("Error syncing AMS %s tray %s: %s", ams_id, tray.tray_id, e)
|
||
|
||
if synced > 0:
|
||
logger.info("Auto-synced %s AMS trays to Spoolman for printer %s", synced, printer_id)
|
||
|
||
# Persist slot assignment changes to the local table
|
||
if slot_changes or empty_slots:
|
||
try:
|
||
for ams_id, tray_id, spool_id in slot_changes:
|
||
await db.execute(
|
||
text(
|
||
"INSERT INTO spoolman_slot_assignments"
|
||
" (printer_id, ams_id, tray_id, spoolman_spool_id)"
|
||
" VALUES (:printer_id, :ams_id, :tray_id, :spool_id)"
|
||
" ON CONFLICT(printer_id, ams_id, tray_id)"
|
||
" DO UPDATE SET spoolman_spool_id = excluded.spoolman_spool_id"
|
||
),
|
||
{
|
||
"printer_id": printer_id,
|
||
"ams_id": ams_id,
|
||
"tray_id": tray_id,
|
||
"spool_id": spool_id,
|
||
},
|
||
)
|
||
for ams_id, tray_id in empty_slots:
|
||
await db.execute(
|
||
delete(SpoolmanSlotAssignment).where(
|
||
SpoolmanSlotAssignment.printer_id == printer_id,
|
||
SpoolmanSlotAssignment.ams_id == ams_id,
|
||
SpoolmanSlotAssignment.tray_id == tray_id,
|
||
)
|
||
)
|
||
await db.commit()
|
||
except Exception as e:
|
||
await db.rollback()
|
||
logger.error("Error persisting Spoolman slot assignments for printer %s: %s", printer_id, e)
|
||
|
||
except Exception as e:
|
||
logging.getLogger(__name__).error("Spoolman AMS sync failed for printer %s: %s", printer_id, e)
|
||
|
||
|
||
async def _capture_snapshot_for_notification(printer_id: int, printer, logger) -> bytes | None:
|
||
"""Capture a camera snapshot for notification image attachment.
|
||
|
||
Returns JPEG bytes (max 2.5MB) or None if capture fails or is unavailable.
|
||
Uses: external camera > buffered frame > fresh capture.
|
||
"""
|
||
if not printer:
|
||
return None
|
||
|
||
try:
|
||
from backend.app.api.routes.settings import get_setting
|
||
|
||
async with async_session() as db:
|
||
capture_enabled = await get_setting(db, "capture_finish_photo")
|
||
|
||
if capture_enabled is not None and capture_enabled.lower() != "true":
|
||
return None
|
||
|
||
# Try external camera first
|
||
if printer.external_camera_enabled and printer.external_camera_url:
|
||
logger.info("[SNAPSHOT] Capturing from external camera for printer %s", printer_id)
|
||
from backend.app.services.external_camera import capture_frame
|
||
|
||
frame_data = await capture_frame(
|
||
printer.external_camera_url,
|
||
printer.external_camera_type or "mjpeg",
|
||
snapshot_url=printer.external_camera_snapshot_url,
|
||
)
|
||
if frame_data and len(frame_data) <= 2_500_000:
|
||
logger.info("[SNAPSHOT] External camera frame: %s bytes", len(frame_data))
|
||
return _apply_camera_rotation(frame_data, printer, logger)
|
||
|
||
# Try buffered frame from active stream
|
||
from backend.app.api.routes.camera import _active_chamber_streams, _active_streams, get_buffered_frame
|
||
|
||
active_for_printer = [k for k in _active_streams if k.startswith(f"{printer_id}-")]
|
||
active_chamber = [k for k in _active_chamber_streams if k.startswith(f"{printer_id}-")]
|
||
buffered_frame = get_buffered_frame(printer_id)
|
||
|
||
if (active_for_printer or active_chamber) and buffered_frame:
|
||
logger.info("[SNAPSHOT] Using buffered frame for printer %s: %s bytes", printer_id, len(buffered_frame))
|
||
if len(buffered_frame) <= 2_500_000:
|
||
return _apply_camera_rotation(buffered_frame, printer, logger)
|
||
|
||
# Fresh capture from printer camera
|
||
logger.info("[SNAPSHOT] Capturing fresh frame for printer %s", printer_id)
|
||
from backend.app.services.camera import capture_camera_frame_bytes
|
||
|
||
frame_data = await capture_camera_frame_bytes(
|
||
printer.ip_address, printer.access_code, printer.model, timeout=15
|
||
)
|
||
if frame_data and len(frame_data) <= 2_500_000:
|
||
logger.info("[SNAPSHOT] Fresh camera frame: %s bytes", len(frame_data))
|
||
return _apply_camera_rotation(frame_data, printer, logger)
|
||
|
||
except Exception as e:
|
||
logger.warning("[SNAPSHOT] Failed to capture snapshot for printer %s: %s", printer_id, e)
|
||
|
||
return None
|
||
|
||
|
||
async def _maybe_bank_inprint_frame(printer_id: int, layer_num: int) -> None:
|
||
"""#1867: bank a recent in-print camera frame for the finish photo.
|
||
|
||
Called on every layer change. Grabs one frame (throttled) into
|
||
``_inprint_frame_bank`` so the FINISH-state finish-photo path has a
|
||
pre-swap image on firmware that never emits ``stg_cur=22``. Because it is
|
||
driven by layer_num increases, banking stops the instant printing ends and
|
||
the End G-code (e.g. SwapMod plate swap) runs — no further layer changes
|
||
arrive — so the last banked frame is the finished print, not the swapped
|
||
plate. Best-effort: any failure just leaves the previous banked frame.
|
||
"""
|
||
logger = logging.getLogger(__name__)
|
||
client = printer_manager.get_client(printer_id)
|
||
state = client.state if client else None
|
||
if not state or state.state != "RUNNING":
|
||
return
|
||
# Only during actual extrusion — firmware ticks layer_num during the
|
||
# pre-print calibration sequence, whose sub-stages are non-zero.
|
||
if state.mc_print_sub_stage not in (None, 0):
|
||
return
|
||
|
||
total = state.total_layers or 0
|
||
is_last_layer = total > 0 and layer_num >= total
|
||
now = time.monotonic()
|
||
last = _inprint_frame_bank_ts.get(printer_id, 0.0)
|
||
if not is_last_layer and (now - last) < _INPRINT_BANK_MIN_INTERVAL:
|
||
return
|
||
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if not printer:
|
||
return
|
||
# Reuses the notification snapshot path, which honours the
|
||
# `capture_finish_photo` setting (returns None when disabled) so we
|
||
# don't bank frames the user never asked for.
|
||
frame = await _capture_snapshot_for_notification(printer_id, printer, logger)
|
||
if frame:
|
||
_inprint_frame_bank[printer_id] = frame
|
||
_inprint_frame_bank_ts[printer_id] = now
|
||
logger.debug(
|
||
"[FINISH-PHOTO-BANK] banked in-print frame for printer %s at layer %s/%s (%d bytes)",
|
||
printer_id,
|
||
layer_num,
|
||
total,
|
||
len(frame),
|
||
)
|
||
except Exception as e:
|
||
logger.debug("[FINISH-PHOTO-BANK] bank failed for printer %s: %s", printer_id, e)
|
||
|
||
|
||
def _apply_camera_rotation(image_data: bytes, printer, logger) -> bytes:
|
||
"""Apply camera rotation to snapshot image if configured."""
|
||
rotation = getattr(printer, "camera_rotation", 0)
|
||
if not rotation or rotation == 0:
|
||
return image_data
|
||
|
||
try:
|
||
from io import BytesIO
|
||
|
||
from PIL import Image
|
||
|
||
img = Image.open(BytesIO(image_data))
|
||
# PIL rotate is counter-clockwise, so negate for clockwise rotation
|
||
img = img.rotate(-rotation, expand=True)
|
||
buf = BytesIO()
|
||
img.save(buf, format="JPEG", quality=90)
|
||
rotated = buf.getvalue()
|
||
logger.info("[SNAPSHOT] Applied %d° rotation: %s → %s bytes", rotation, len(image_data), len(rotated))
|
||
return rotated
|
||
except Exception as e:
|
||
logger.warning("[SNAPSHOT] Failed to apply rotation: %s", e)
|
||
return image_data
|
||
|
||
|
||
async def _send_print_start_notification(
|
||
printer_id: int,
|
||
data: dict,
|
||
archive_data: dict | None = None,
|
||
logger=None,
|
||
):
|
||
"""Helper to send print start notification with optional archive data."""
|
||
if logger is None:
|
||
logger = logging.getLogger(__name__)
|
||
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
printer_name = printer.name if printer else f"Printer {printer_id}"
|
||
|
||
# Capture camera snapshot for notification image attachment
|
||
image_data = await _capture_snapshot_for_notification(printer_id, printer, logger)
|
||
if image_data:
|
||
if archive_data is None:
|
||
archive_data = {}
|
||
archive_data["image_data"] = image_data
|
||
|
||
await notification_service.on_print_start(printer_id, printer_name, data, db, archive_data=archive_data)
|
||
|
||
# Send user-specific email notification for print start
|
||
if archive_data and archive_data.get("created_by_id"):
|
||
await notification_service.send_user_print_email(
|
||
event_type="user_print_start",
|
||
created_by_id=archive_data["created_by_id"],
|
||
printer_name=printer_name,
|
||
filename=data.get("subtask_name") or data.get("filename", "Unknown"),
|
||
db=db,
|
||
)
|
||
except Exception as e:
|
||
logger.warning("Notification on_print_start failed: %s", e)
|
||
|
||
|
||
async def _dispatch_user_print_email(
|
||
status: str,
|
||
created_by_id: int | None,
|
||
printer_name: str,
|
||
filename: str,
|
||
db,
|
||
) -> None:
|
||
"""Send a user-specific print-completion email based on print status.
|
||
|
||
Maps the normalised print status to the correct event type and delegates
|
||
to :meth:`NotificationService.send_user_print_email`. A single helper
|
||
avoids duplicating the ``if status == "completed" / elif "failed" / elif
|
||
"stopped"`` dispatch block at every call site.
|
||
|
||
Does nothing if *created_by_id* is ``None``.
|
||
"""
|
||
if created_by_id is None:
|
||
return
|
||
if status == "completed":
|
||
event_type = "user_print_complete"
|
||
elif status == "failed":
|
||
event_type = "user_print_failed"
|
||
elif status in ("stopped", "aborted", "cancelled"):
|
||
event_type = "user_print_stopped"
|
||
else:
|
||
return
|
||
await notification_service.send_user_print_email(
|
||
event_type=event_type,
|
||
created_by_id=created_by_id,
|
||
printer_name=printer_name,
|
||
filename=filename,
|
||
db=db,
|
||
)
|
||
|
||
|
||
def _load_objects_from_archive(archive, printer_id: int, logger) -> None:
|
||
"""Extract printable objects from an archive's 3MF file and store in printer state."""
|
||
try:
|
||
from backend.app.services.archive import extract_printable_objects_from_3mf
|
||
|
||
client = printer_manager.get_client(printer_id)
|
||
if not client:
|
||
return
|
||
|
||
file_path = app_settings.base_dir / archive.file_path
|
||
if file_path.is_file() and str(file_path).endswith(".3mf"):
|
||
with open(file_path, "rb") as f:
|
||
threemf_data = f.read()
|
||
# Extract with positions for UI overlay, scoped to the plate that
|
||
# is printing — resolve_plate_id is the same resolver /cover uses,
|
||
# so the object list can't disagree with the thumbnail it is drawn
|
||
# over (#2522).
|
||
printable_objects, bbox_all = extract_printable_objects_from_3mf(
|
||
threemf_data,
|
||
plate_number=resolve_plate_id(client.state),
|
||
include_positions=True,
|
||
)
|
||
if printable_objects:
|
||
client.state.printable_objects = printable_objects
|
||
client.state.printable_objects_bbox_all = bbox_all
|
||
client.state.skipped_objects = []
|
||
logger.info("Loaded %s printable objects for printer %s", len(printable_objects), printer_id)
|
||
except Exception as e:
|
||
logger.debug("Failed to extract printable objects from archive: %s", e)
|
||
|
||
|
||
async def on_print_start(printer_id: int, data: dict):
|
||
"""Handle print start - archive the 3MF file immediately."""
|
||
logger = logging.getLogger(__name__)
|
||
|
||
logger.info("[CALLBACK] on_print_start called for printer %s, data keys: %s", printer_id, list(data.keys()))
|
||
|
||
# Clear any stale user-stopped flag from previous print cycles
|
||
_user_stopped_printers.discard(printer_id)
|
||
|
||
# #1721: drop any leftover pre-captured finish frame from a prior print
|
||
# so a never-consumed cache entry can't bleed into the new print's photo.
|
||
_stage22_finish_frames.pop(printer_id, None)
|
||
# #1867: same for the in-print frame bank — a queued print must not reuse
|
||
# the previous job's banked frame.
|
||
_inprint_frame_bank.pop(printer_id, None)
|
||
_inprint_frame_bank_ts.pop(printer_id, None)
|
||
|
||
# Cancel any active bed cooldown waiter for this printer
|
||
if _bed_cool_waiters.pop(printer_id, None):
|
||
logger.info("[BED-COOL] Cancelled bed cooldown waiter for printer %s (new print started)", printer_id)
|
||
|
||
# Clear cached cover images so the new print's thumbnail is fetched fresh
|
||
from backend.app.api.routes.printers import clear_cover_cache
|
||
|
||
clear_cover_cache(printer_id)
|
||
|
||
await ws_manager.send_print_start(printer_id, data)
|
||
|
||
# Notify when the print-start AMS mapping references tray slots without spool assignments.
|
||
await notify_missing_spool_assignments_on_print_start(printer_id, data, logger)
|
||
|
||
# MQTT relay - publish print start
|
||
try:
|
||
printer_info = printer_manager.get_printer(printer_id)
|
||
if printer_info:
|
||
await mqtt_relay.on_print_start(
|
||
printer_id,
|
||
printer_info.name,
|
||
printer_info.serial_number,
|
||
data.get("filename", ""),
|
||
data.get("subtask_name", ""),
|
||
)
|
||
except Exception:
|
||
pass # Don't fail print start callback if MQTT fails
|
||
|
||
# Capture AMS tray remain% for filament consumption tracking (skip if Spoolman handles usage)
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.api.routes.settings import get_setting
|
||
|
||
_spoolman_on = await get_setting(db, "spoolman_enabled")
|
||
if not _spoolman_on or _spoolman_on.lower() != "true":
|
||
from backend.app.services.usage_tracker import on_print_start as usage_on_print_start
|
||
|
||
await usage_on_print_start(printer_id, data, printer_manager, db=db)
|
||
except Exception as e:
|
||
logger.warning("Usage tracker on_print_start failed: %s", e)
|
||
|
||
# Track if notification was sent (to avoid sending twice)
|
||
notification_sent = False
|
||
|
||
# Smart plug automation: turn on plug when print starts
|
||
try:
|
||
async with async_session() as db:
|
||
await smart_plug_manager.on_print_start(printer_id, db)
|
||
except Exception as e:
|
||
logger.warning("Smart plug on_print_start failed: %s", e)
|
||
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
from backend.app.services.bambu_ftp import list_files_async
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
|
||
# Plate detection check - pause if objects detected on build plate
|
||
logger.info(
|
||
f"[PLATE CHECK] printer_id={printer_id}, plate_detection_enabled={printer.plate_detection_enabled if printer else 'NO PRINTER'}"
|
||
)
|
||
if printer and printer.plate_detection_enabled:
|
||
logger.info("[PLATE CHECK] ENTERING plate detection code for printer %s", printer_id)
|
||
# Release the pooled DB connection before the plate-detection camera
|
||
# work (a 2.5s light-settle sleep + FTP/camera capture). Only the
|
||
# printer SELECT has run so far — nothing to persist — so this commit
|
||
# is a data-noop that ends the read transaction and returns the
|
||
# connection to the pool during the I/O (issue #2572). expire_on_commit
|
||
# =False keeps printer.* readable; on_plate_not_empty (rare) and the
|
||
# archive lookups below re-acquire a fresh connection on next execute.
|
||
await db.commit()
|
||
try:
|
||
from backend.app.services.plate_detection import check_plate_empty
|
||
|
||
# Build ROI tuple from printer settings if available
|
||
roi = None
|
||
if all(
|
||
[
|
||
printer.plate_detection_roi_x is not None,
|
||
printer.plate_detection_roi_y is not None,
|
||
printer.plate_detection_roi_w is not None,
|
||
printer.plate_detection_roi_h is not None,
|
||
]
|
||
):
|
||
roi = (
|
||
printer.plate_detection_roi_x,
|
||
printer.plate_detection_roi_y,
|
||
printer.plate_detection_roi_w,
|
||
printer.plate_detection_roi_h,
|
||
)
|
||
|
||
# Auto-turn on chamber light if it's off for better detection
|
||
light_was_off = False
|
||
client = printer_manager.get_client(printer_id)
|
||
if client and client.state:
|
||
light_was_off = not client.state.chamber_light
|
||
if light_was_off:
|
||
logger.info("[PLATE CHECK] Turning on chamber light for printer %s", printer_id)
|
||
client.set_chamber_light(True)
|
||
# Wait for light to physically turn on and camera to adjust exposure
|
||
await asyncio.sleep(2.5)
|
||
|
||
logger.info("[PLATE CHECK] Running plate detection for printer %s", printer_id)
|
||
plate_result = await check_plate_empty(
|
||
printer_id=printer_id,
|
||
ip_address=printer.ip_address,
|
||
access_code=printer.access_code,
|
||
model=printer.model,
|
||
include_debug_image=False,
|
||
external_camera_url=printer.external_camera_url,
|
||
external_camera_type=printer.external_camera_type,
|
||
use_external=printer.external_camera_enabled,
|
||
roi=roi,
|
||
external_camera_snapshot_url=printer.external_camera_snapshot_url,
|
||
)
|
||
|
||
# Restore chamber light to original state
|
||
if light_was_off and client:
|
||
logger.info("[PLATE CHECK] Restoring chamber light to off for printer %s", printer_id)
|
||
client.set_chamber_light(False)
|
||
|
||
if not plate_result.needs_calibration and not plate_result.is_empty:
|
||
# Objects detected - pause the print!
|
||
logger.warning(
|
||
f"[PLATE CHECK] Objects detected on plate for printer {printer_id}! "
|
||
f"Confidence: {plate_result.confidence:.0%}, Diff: {plate_result.difference_percent:.1f}%"
|
||
)
|
||
client = printer_manager.get_client(printer_id)
|
||
if client:
|
||
client.pause_print()
|
||
logger.info("[PLATE CHECK] Print paused for printer %s", printer_id)
|
||
|
||
# Send notification about plate not empty
|
||
await ws_manager.broadcast(
|
||
{
|
||
"type": "plate_not_empty",
|
||
"printer_id": printer_id,
|
||
"printer_name": printer.name,
|
||
"message": f"Objects detected on build plate! Print paused. (Diff: {plate_result.difference_percent:.1f}%)",
|
||
}
|
||
)
|
||
|
||
# Also send push notification
|
||
try:
|
||
await notification_service.on_plate_not_empty(
|
||
printer_id=printer_id,
|
||
printer_name=printer.name,
|
||
db=db,
|
||
difference_percent=plate_result.difference_percent,
|
||
)
|
||
except Exception as notif_err:
|
||
logger.warning("[PLATE CHECK] Failed to send notification: %s", notif_err)
|
||
else:
|
||
logger.info("[PLATE CHECK] Plate is empty for printer %s, proceeding with print", printer_id)
|
||
except Exception as plate_err:
|
||
# Don't block print on plate detection errors
|
||
logger.warning("[PLATE CHECK] Plate detection failed for printer %s: %s", printer_id, plate_err)
|
||
|
||
if not printer:
|
||
logger.info("[CALLBACK] Skipping archive - printer not found in database")
|
||
if not notification_sent:
|
||
await _send_print_start_notification(printer_id, data, logger=logger)
|
||
return
|
||
|
||
if not printer.auto_archive:
|
||
# auto-archive disabled — check if there's an expected print (dispatched
|
||
# by BamBuddy via queue/reprint) that already has an archive to promote.
|
||
# If so, fall through to the expected-print handling below so the archive
|
||
# is tracked in _active_prints and usage tracking works at completion.
|
||
_fn = data.get("filename", "")
|
||
_sn = data.get("subtask_name", "")
|
||
_check_keys: list[tuple[int, str]] = []
|
||
if _sn:
|
||
_check_keys += [
|
||
(printer_id, _sn),
|
||
(printer_id, f"{_sn}.3mf"),
|
||
(printer_id, f"{_sn}.gcode.3mf"),
|
||
]
|
||
if _fn:
|
||
_base_fn = _fn.split("/")[-1] if "/" in _fn else _fn
|
||
_check_keys.append((printer_id, _base_fn))
|
||
_no_archive_base = _base_fn.replace(".gcode", "").replace(".3mf", "")
|
||
_check_keys += [
|
||
(printer_id, _no_archive_base),
|
||
(printer_id, f"{_no_archive_base}.3mf"),
|
||
]
|
||
|
||
_has_expected = any(k in _expected_prints for k in _check_keys)
|
||
|
||
if not _has_expected:
|
||
# No expected print — truly external print (started from slicer/touchscreen)
|
||
logger.info("[CALLBACK] Skipping archive - auto_archive: False, no expected print")
|
||
if not notification_sent:
|
||
_no_archive_creator: int | None = None
|
||
for _key in _check_keys:
|
||
_expected_prints.pop(_key, None)
|
||
_expected_print_registered_at.pop(_key, None)
|
||
popped_creator = _expected_print_creators.pop(_key, None)
|
||
if _no_archive_creator is None:
|
||
_no_archive_creator = popped_creator
|
||
_creator_data = {"created_by_id": _no_archive_creator} if _no_archive_creator else None
|
||
await _send_print_start_notification(printer_id, data, _creator_data, logger)
|
||
return
|
||
else:
|
||
logger.info("[CALLBACK] auto_archive disabled but expected print found — promoting archive")
|
||
|
||
# Get the filename and subtask_name
|
||
filename = data.get("filename", "")
|
||
subtask_name = data.get("subtask_name", "")
|
||
|
||
# MQTT subtask_id uniquely identifies a print job on the printer. When
|
||
# present, it lets us match an archive across a backend restart (#972):
|
||
# same id → same print → resume the existing row instead of cancelling
|
||
# it and recreating from scratch (which loses started_at). Treat "0"
|
||
# and "" as absent — Bambu reports "0" for non-cloud / local prints.
|
||
raw_mqtt = data.get("raw_data") or {}
|
||
subtask_id = raw_mqtt.get("subtask_id")
|
||
if subtask_id is not None:
|
||
subtask_id = str(subtask_id).strip()
|
||
if subtask_id in ("", "0"):
|
||
subtask_id = None
|
||
|
||
logger.info("[CALLBACK] Print start detected - filename: %s, subtask: %s", filename, subtask_name)
|
||
|
||
# Skip calibration prints — internal printer files should not be archived
|
||
# Bambu calibration gcode lives under /usr/ (e.g. /usr/etc/print/auto_cali_for_user.gcode)
|
||
if filename and filename.startswith("/usr/"):
|
||
logger.info("[CALLBACK] Skipping archive — internal printer file detected: %s", filename)
|
||
if not notification_sent:
|
||
await _send_print_start_notification(printer_id, data, logger=logger)
|
||
return
|
||
|
||
if not filename and not subtask_name:
|
||
# Send notification without archive data (no filename)
|
||
logger.info("[CALLBACK] Skipping archive - no filename or subtask_name")
|
||
if not notification_sent:
|
||
await _send_print_start_notification(printer_id, data, logger=logger)
|
||
return
|
||
|
||
# Check if this is an expected print from reprint/scheduled
|
||
# Build list of possible keys to check
|
||
expected_keys = []
|
||
if subtask_name:
|
||
expected_keys.append((printer_id, subtask_name))
|
||
expected_keys.append((printer_id, f"{subtask_name}.3mf"))
|
||
expected_keys.append((printer_id, f"{subtask_name}.gcode.3mf"))
|
||
if filename:
|
||
fname = filename.split("/")[-1] if "/" in filename else filename
|
||
expected_keys.append((printer_id, fname))
|
||
# Strip extensions to match
|
||
base = fname.replace(".gcode", "").replace(".3mf", "")
|
||
expected_keys.append((printer_id, base))
|
||
expected_keys.append((printer_id, f"{base}.3mf"))
|
||
|
||
expected_archive_id = None
|
||
for key in expected_keys:
|
||
expected_archive_id = _expected_prints.pop(key, None)
|
||
_expected_print_registered_at.pop(key, None)
|
||
if expected_archive_id:
|
||
# Clean up other possible keys for this print
|
||
for other_key in expected_keys:
|
||
_expected_prints.pop(other_key, None)
|
||
_expected_print_registered_at.pop(other_key, None)
|
||
break
|
||
|
||
if expected_archive_id:
|
||
# This is a reprint/scheduled print - use existing archive, don't create new one
|
||
logger.info("Using expected archive %s for print (skipping duplicate)", expected_archive_id)
|
||
from backend.app.models.archive import PrintArchive
|
||
|
||
result = await db.execute(select(PrintArchive).where(PrintArchive.id == expected_archive_id))
|
||
archive = result.scalar_one_or_none()
|
||
|
||
if archive:
|
||
# Update archive status to printing
|
||
archive.status = "printing"
|
||
archive.started_at = datetime.now(timezone.utc)
|
||
|
||
# Reprint of an archive reuses the source row. Without resetting
|
||
# ``timelapse_path`` _scan_for_timelapse_with_retries early-returns
|
||
# ("already has timelapse") and _capture_finish_photo_from_timelapse
|
||
# extracts the *original* print's last frame, which then ships in
|
||
# the completion notification (#1707). Clear the path so the
|
||
# scanner runs fresh; also unlink the old video file so reprints
|
||
# don't accumulate orphans in the archive directory. Photos list
|
||
# is left alone — accumulating one finish photo per run is fine.
|
||
stale_timelapse_relpath = archive.timelapse_path
|
||
if stale_timelapse_relpath:
|
||
archive.timelapse_path = None
|
||
try:
|
||
stale_path = app_settings.base_dir / stale_timelapse_relpath
|
||
if stale_path.is_file():
|
||
stale_path.unlink()
|
||
logger.info(
|
||
"Deleted stale timelapse %s on reprint of archive %s",
|
||
stale_timelapse_relpath,
|
||
expected_archive_id,
|
||
)
|
||
except OSError as e:
|
||
logger.warning(
|
||
"Failed to delete stale timelapse %s on reprint: %s",
|
||
stale_timelapse_relpath,
|
||
e,
|
||
)
|
||
# Persist a restart-stable id so a later restart resumes this
|
||
# archive by subtask_id instead of name-matching + duplicating
|
||
# it (#1485). The printer often hasn't echoed subtask_id back
|
||
# this soon after dispatch, so fall back to the id Bambuddy
|
||
# minted when it sent the print command. Scoped to this
|
||
# expected-print branch on purpose: an expected match means
|
||
# Bambuddy dispatched this exact print in this process, so the
|
||
# client's last-dispatch id genuinely belongs to it — using it
|
||
# for an externally-started print could mis-tag the archive.
|
||
effective_subtask_id = subtask_id
|
||
if not effective_subtask_id:
|
||
_client = printer_manager.get_client(printer_id)
|
||
_dispatched = getattr(_client, "last_dispatch_subtask_id", None) if _client else None
|
||
if _dispatched:
|
||
effective_subtask_id = str(_dispatched).strip() or None
|
||
# Update on first-set OR on reprint (the queue dispatcher mints
|
||
# a fresh subtask_id per dispatch in bambu_mqtt:3647). Skipping
|
||
# the rewrite for reprints leaves the archive holding the FIRST
|
||
# run's id; if MQTT then reconnects mid-print, the reconciler
|
||
# (#1542) compares the stale stored id against the printer's
|
||
# live id, sees a mismatch, and synthesises a bogus PRINT
|
||
# COMPLETE — exactly the false-positive "Print Stopped" reported
|
||
# in #1807. Inequality check preserves the noop-on-stable-push
|
||
# behaviour the earlier `not archive.subtask_id` guard provided.
|
||
if effective_subtask_id and archive.subtask_id != effective_subtask_id:
|
||
archive.subtask_id = effective_subtask_id
|
||
# #1403 follow-up: VP-queue archives are created with
|
||
# printer_id=None at queue-add time (we don't know which
|
||
# printer will run the job yet). When the print actually
|
||
# starts on a specific printer the expected-archive lookup
|
||
# used to skip this assignment, leaving printer_id=None
|
||
# forever — which then disables the "Scan for timelapse"
|
||
# button in ArchivesPage (gated on !archive.printer_id).
|
||
if archive.printer_id != printer_id:
|
||
archive.printer_id = printer_id
|
||
await db.commit()
|
||
|
||
# Track as active print
|
||
_active_prints[(printer_id, archive.filename)] = archive.id
|
||
if subtask_name:
|
||
_active_prints[(printer_id, f"{subtask_name}.3mf")] = archive.id
|
||
|
||
# Start timelapse session if external camera is enabled (#1353).
|
||
# Queue / VP-dispatched prints land here in the expected-archive
|
||
# branch and used to skip start_session entirely — frames were
|
||
# never captured and the post-print stitch silently returned None.
|
||
_maybe_start_layer_timelapse(printer, printer_id, archive.id)
|
||
|
||
# Inject ams_mapping into usage tracker session — the session was created
|
||
# before expected-print promotion, so it may have ams_mapping=None when
|
||
# the MQTT request topic subscription failed (common on P1S/A1).
|
||
_stored_map = _print_ams_mappings.get(expected_archive_id)
|
||
_stored_plate_id = _print_plate_ids.get(expected_archive_id)
|
||
if _stored_map or _stored_plate_id is not None:
|
||
try:
|
||
from backend.app.services.usage_tracker import _active_sessions
|
||
|
||
_ut_session = _active_sessions.get(printer_id)
|
||
if _ut_session and _stored_map and not _ut_session.ams_mapping:
|
||
_ut_session.ams_mapping = _stored_map
|
||
logger.info("[CALLBACK] Injected ams_mapping into usage tracker session: %s", _stored_map)
|
||
# plate_id injection covers direct-Print of plate N of a multi-plate
|
||
# 3MF — queue prints already capture it via the on_print_start queue
|
||
# lookup, but direct-Print never goes through the queue (#1697).
|
||
if _ut_session and _stored_plate_id is not None and _ut_session.plate_id is None:
|
||
_ut_session.plate_id = _stored_plate_id
|
||
logger.info("[CALLBACK] Injected plate_id into usage tracker session: %s", _stored_plate_id)
|
||
except Exception:
|
||
pass
|
||
|
||
# Set up energy tracking (#941: persist start on archive row)
|
||
await _record_energy_start(archive, printer_id, db, context="expected-print")
|
||
|
||
await ws_manager.send_archive_updated(
|
||
{
|
||
"id": archive.id,
|
||
"status": "printing",
|
||
}
|
||
)
|
||
|
||
# Send notification with archive data (reprint/scheduled)
|
||
if not notification_sent:
|
||
# Use archive's created_by_id; fall back to the creator registered via
|
||
# register_expected_print (handles library-file-based queue items where
|
||
# the freshly-created archive has no created_by_id yet).
|
||
# Pop ALL matching keys so no stale entries remain in the dict.
|
||
fallback_creator = None
|
||
for key in expected_keys:
|
||
popped = _expected_print_creators.pop(key, None)
|
||
if fallback_creator is None:
|
||
fallback_creator = popped
|
||
archive_data = {
|
||
"print_time_seconds": archive.print_time_seconds,
|
||
"created_by_id": archive.created_by_id or fallback_creator,
|
||
}
|
||
await _send_print_start_notification(printer_id, data, archive_data, logger)
|
||
|
||
# Extract printable objects from the archived 3MF file
|
||
_load_objects_from_archive(archive, printer_id, logger)
|
||
|
||
# Store Spoolman tracking data for per-filament usage reporting
|
||
try:
|
||
await _store_spoolman_print_data(
|
||
printer_id,
|
||
archive.id,
|
||
archive.file_path,
|
||
db,
|
||
printer_manager,
|
||
ams_mapping=_get_start_ams_mapping(data, archive.id),
|
||
plate_id=_get_start_plate_id(archive.id),
|
||
)
|
||
except Exception as e:
|
||
logger.warning("[SPOOLMAN] Failed to store tracking data: %s", e)
|
||
|
||
# Capture timelapse file baseline for snapshot-diff on completion
|
||
# (mirrors the new-archive branch). Queue / VP-dispatched prints
|
||
# hit this branch — without the baseline the completion-time scan
|
||
# falls into its "take baseline now" fallback, which snapshots
|
||
# AFTER the new MP4 already exists and never matches a diff
|
||
# (#1403 follow-up — see pwostran's 2026-05-18 support bundle).
|
||
await _capture_timelapse_baseline_at_start(printer, printer_id, logger)
|
||
|
||
return # Skip creating a new archive
|
||
|
||
# Check if there's already a "printing" archive for this printer/file
|
||
# This prevents duplicates when backend restarts during an active print
|
||
from backend.app.models.archive import PrintArchive
|
||
|
||
existing_archive: PrintArchive | None = None
|
||
|
||
# Preferred match: subtask_id equality. MQTT reports the same subtask_id
|
||
# across a backend restart for the same print, so this is the most
|
||
# reliable way to reattach. We also accept a previously stale-cancelled
|
||
# archive here so users upgrading mid-print get revived when the row
|
||
# their earlier Bambuddy version wrongly cancelled reappears (#972).
|
||
if subtask_id:
|
||
by_id = await db.execute(
|
||
select(PrintArchive)
|
||
.where(PrintArchive.printer_id == printer_id)
|
||
.where(PrintArchive.subtask_id == subtask_id)
|
||
.where(PrintArchive.status.in_(["printing", "cancelled"]))
|
||
.order_by(PrintArchive.created_at.desc())
|
||
.limit(1)
|
||
)
|
||
candidate = by_id.scalar_one_or_none()
|
||
if candidate and (candidate.status == "printing" or (candidate.failure_reason or "").startswith("Stale")):
|
||
existing_archive = candidate
|
||
|
||
# Fallback match: name-based lookup. Kept as-is for prints whose
|
||
# subtask_id is missing ("0" / local / non-cloud prints).
|
||
if existing_archive is None:
|
||
check_name = subtask_name or filename.split("/")[-1].replace(".gcode", "").replace(".3mf", "")
|
||
existing = await db.execute(
|
||
select(PrintArchive)
|
||
.where(PrintArchive.printer_id == printer_id)
|
||
.where(PrintArchive.status == "printing")
|
||
.where(
|
||
or_(
|
||
PrintArchive.print_name == check_name,
|
||
PrintArchive.filename.in_(
|
||
[
|
||
f"{check_name}.3mf",
|
||
f"{check_name}.gcode.3mf",
|
||
]
|
||
),
|
||
)
|
||
)
|
||
.order_by(PrintArchive.created_at.desc())
|
||
.limit(1)
|
||
)
|
||
existing_archive = existing.scalar_one_or_none()
|
||
|
||
if existing_archive:
|
||
# subtask_id match → always resume, regardless of age. Same print,
|
||
# just a backend restart. Revive if it was previously stale-cancelled.
|
||
subtask_match = bool(subtask_id and existing_archive.subtask_id == subtask_id)
|
||
|
||
if subtask_match:
|
||
if existing_archive.status == "cancelled":
|
||
logger.warning(
|
||
"Reviving stale-cancelled archive %s — matching subtask_id %s confirms same print (#972)",
|
||
existing_archive.id,
|
||
subtask_id,
|
||
)
|
||
existing_archive.status = "printing"
|
||
existing_archive.failure_reason = None
|
||
await db.commit()
|
||
else:
|
||
logger.info("Resuming archive %s on subtask_id match (%s)", existing_archive.id, subtask_id)
|
||
_active_prints[(printer_id, existing_archive.filename)] = existing_archive.id
|
||
if existing_archive.energy_start_kwh is None:
|
||
await _record_energy_start(existing_archive, printer_id, db, context="subtask-resume")
|
||
if not notification_sent:
|
||
archive_data = {
|
||
"print_time_seconds": existing_archive.print_time_seconds,
|
||
"created_by_id": existing_archive.created_by_id,
|
||
}
|
||
await _send_print_start_notification(printer_id, data, archive_data, logger)
|
||
_load_objects_from_archive(existing_archive, printer_id, logger)
|
||
return
|
||
|
||
# Name-match only (no subtask_id to anchor on): decide resume vs.
|
||
# stale from the printer's *current* progress, not wall-clock age.
|
||
# A genuinely long print used to trip a blind 4h cutoff and have its
|
||
# live archive cancelled + duplicated on every backend restart
|
||
# (#1485). If the printer reports real progress, this name-matched
|
||
# 'printing' archive IS that ongoing print — resume it whatever its
|
||
# age. Only treat it as a stale leftover when the printer clearly
|
||
# shows a different, freshly-started print: near-0% progress on an
|
||
# archive far too old to still be at 0%. Unknown progress (printer
|
||
# not connected) never cancels — resuming is the safe default.
|
||
archive_age = datetime.now(timezone.utc) - existing_archive.created_at.replace(tzinfo=timezone.utc)
|
||
live_status = printer_manager.get_status(printer_id)
|
||
live_progress = getattr(live_status, "progress", None) if live_status else None
|
||
looks_stale = (
|
||
live_progress is not None and live_progress < 1.0 and archive_age.total_seconds() > 2 * 60 * 60
|
||
)
|
||
if looks_stale:
|
||
logger.warning(
|
||
f"Found stale 'printing' archive {existing_archive.id} (age: {archive_age}, "
|
||
f"printer progress {live_progress:.0f}%) — marking cancelled and creating new archive"
|
||
)
|
||
existing_archive.status = "cancelled"
|
||
existing_archive.failure_reason = "Stale - print likely cancelled or failed without status update"
|
||
await db.commit()
|
||
# Fall through to create new archive (don't return)
|
||
else:
|
||
logger.info(
|
||
f"Skipping duplicate - already have printing archive {existing_archive.id} for {check_name}"
|
||
)
|
||
# Track this as the active print
|
||
_active_prints[(printer_id, existing_archive.filename)] = existing_archive.id
|
||
# Attach subtask_id retroactively so future restarts can resume.
|
||
# Compare for inequality (not "is empty") to also pick up reprint
|
||
# dispatches that mint a fresh id — see #1807 for the bogus
|
||
# "Print Stopped" the strict-empty guard caused on reconnect.
|
||
if subtask_id and existing_archive.subtask_id != subtask_id:
|
||
existing_archive.subtask_id = subtask_id
|
||
await db.commit()
|
||
# Also set up energy tracking if not already tracked (#941: persisted column)
|
||
if existing_archive.energy_start_kwh is None:
|
||
await _record_energy_start(existing_archive, printer_id, db, context="existing-printing")
|
||
# Send notification with archive data (existing archive)
|
||
if not notification_sent:
|
||
archive_data = {
|
||
"print_time_seconds": existing_archive.print_time_seconds,
|
||
"created_by_id": existing_archive.created_by_id,
|
||
}
|
||
await _send_print_start_notification(printer_id, data, archive_data, logger)
|
||
# Extract printable objects from the archived 3MF file
|
||
_load_objects_from_archive(existing_archive, printer_id, logger)
|
||
return
|
||
|
||
# Build list of possible 3MF filenames to try
|
||
possible_names = []
|
||
|
||
# Bambu printers typically store files as "Name.gcode.3mf"
|
||
# The subtask_name is usually the best source for the filename
|
||
if subtask_name:
|
||
# Try common Bambu naming patterns
|
||
possible_names.append(f"{subtask_name}.gcode.3mf")
|
||
possible_names.append(f"{subtask_name}.3mf")
|
||
|
||
# Try original filename with .3mf extension
|
||
if filename:
|
||
# Extract just the filename part, not the full path
|
||
fname = filename.split("/")[-1] if "/" in filename else filename
|
||
if fname.endswith(".3mf"):
|
||
possible_names.append(fname)
|
||
elif fname.endswith(".gcode"):
|
||
base = fname.rsplit(".", 1)[0]
|
||
possible_names.append(f"{base}.gcode.3mf")
|
||
possible_names.append(f"{base}.3mf")
|
||
else:
|
||
possible_names.append(f"{fname}.gcode.3mf")
|
||
possible_names.append(f"{fname}.3mf")
|
||
|
||
# Also try with spaces converted to underscores (Bambu Studio may normalize filenames)
|
||
space_variants = []
|
||
for name in possible_names:
|
||
if " " in name:
|
||
space_variants.append(name.replace(" ", "_"))
|
||
possible_names.extend(space_variants)
|
||
|
||
# Remove duplicates while preserving order
|
||
seen = set()
|
||
possible_names = [x for x in possible_names if not (x in seen or seen.add(x))]
|
||
|
||
logger.info("Trying filenames: %s", possible_names)
|
||
|
||
# Release the pooled DB connection before the 3MF FTP download. Reaching
|
||
# here means none of the expected-/existing-archive write branches ran
|
||
# (they all return earlier) — only SELECTs have executed on this path, so
|
||
# this commit persists nothing; it ends the read transaction so the
|
||
# connection returns to the pool during the download. That download tries
|
||
# up to five remote paths per candidate filename with retry/backoff and
|
||
# can run for minutes under FTP contention; holding the session across it
|
||
# pinned one pooled connection idle-in-transaction (issue #2572). No DB
|
||
# work runs during the download — the new-archive writes below re-acquire
|
||
# a fresh connection, and expire_on_commit=False keeps printer.* readable.
|
||
await db.commit()
|
||
|
||
# Try to find and download the 3MF file
|
||
temp_path = None
|
||
downloaded_filename = None
|
||
|
||
# Cache check: cover endpoint may have already pulled this 3MF during
|
||
# the print (frontend opens the card and shows the thumbnail) — reuse
|
||
# that file instead of re-downloading 36MB over the same FTP link that
|
||
# just served it (#972). The cache keys on a normalized filename so
|
||
# variants like "X", "X.3mf", "X.gcode.3mf" all collapse to one entry.
|
||
for try_filename in possible_names:
|
||
if not try_filename.endswith(".3mf"):
|
||
continue
|
||
cached = get_cached_3mf(printer_id, try_filename)
|
||
if cached:
|
||
logger.info("Reusing cached 3MF from %s (avoided duplicate FTP)", cached)
|
||
temp_path = cached
|
||
downloaded_filename = try_filename
|
||
break
|
||
|
||
# Get FTP retry settings
|
||
ftp_retry_enabled, ftp_retry_count, ftp_retry_delay, ftp_timeout = await get_ftp_retry_settings()
|
||
|
||
for try_filename in possible_names if not downloaded_filename else []:
|
||
if not try_filename.endswith(".3mf"):
|
||
continue
|
||
|
||
# Root (/) is where BambuStudio/OrcaSlicer uploads land on A1/P1-series
|
||
# printers, so try it first — deferring it to last cost #972's reporter
|
||
# ~48 minutes of retries on /cache//model//data//data/Metadata before
|
||
# landing on the path that actually had the file.
|
||
remote_paths = [
|
||
f"/{try_filename}",
|
||
f"/cache/{try_filename}",
|
||
f"/model/{try_filename}",
|
||
f"/data/{try_filename}",
|
||
f"/data/Metadata/{try_filename}",
|
||
]
|
||
|
||
temp_path = app_settings.archive_dir / "temp" / try_filename
|
||
temp_path.parent.mkdir(parents=True, exist_ok=True)
|
||
|
||
for remote_path in remote_paths:
|
||
logger.debug("Trying FTP download: %s", remote_path)
|
||
try:
|
||
if ftp_retry_enabled:
|
||
downloaded = await with_ftp_retry(
|
||
download_file_async,
|
||
printer.ip_address,
|
||
printer.access_code,
|
||
remote_path,
|
||
temp_path,
|
||
timeout=ftp_timeout,
|
||
socket_timeout=ftp_timeout,
|
||
printer_model=printer.model,
|
||
max_retries=ftp_retry_count,
|
||
retry_delay=ftp_retry_delay,
|
||
operation_name=f"Download 3MF from {remote_path}",
|
||
non_retry_exceptions=(FileNotOnPrinterError,),
|
||
)
|
||
else:
|
||
downloaded = await download_file_async(
|
||
printer.ip_address,
|
||
printer.access_code,
|
||
remote_path,
|
||
temp_path,
|
||
timeout=ftp_timeout,
|
||
socket_timeout=ftp_timeout,
|
||
printer_model=printer.model,
|
||
)
|
||
if downloaded:
|
||
downloaded_filename = try_filename
|
||
logger.info("Downloaded: %s", remote_path)
|
||
# Populate shared cache so the cover endpoint (if it
|
||
# runs next) doesn't refetch the same 36MB over FTP.
|
||
cache_3mf_download(printer_id, try_filename, temp_path)
|
||
break
|
||
except FileNotOnPrinterError:
|
||
# 550 — file isn't at this path. Advance to next candidate
|
||
# without burning the retry budget.
|
||
logger.debug("3MF not at %s (550), trying next path", remote_path)
|
||
except Exception as e:
|
||
logger.debug("FTP download failed for %s: %s", remote_path, e)
|
||
|
||
if downloaded_filename:
|
||
break
|
||
|
||
# If still not found, try listing directories to find matching file
|
||
# Different printer models use different directory structures
|
||
if not downloaded_filename and (filename or subtask_name):
|
||
search_term = (subtask_name or filename).lower().replace(".gcode", "").replace(".3mf", "")
|
||
logger.info("Direct FTP download failed, searching directories for '%s'", search_term)
|
||
search_dirs = ["/cache", "/model", "/data", "/data/Metadata", "/"]
|
||
for search_dir in search_dirs:
|
||
if downloaded_filename:
|
||
break
|
||
try:
|
||
dir_files = await list_files_async(
|
||
printer.ip_address, printer.access_code, search_dir, printer_model=printer.model
|
||
)
|
||
threemf_files = [f.get("name") for f in dir_files if f.get("name", "").endswith(".3mf")]
|
||
if threemf_files:
|
||
logger.info(
|
||
f"Found {len(threemf_files)} 3MF files in {search_dir}: {threemf_files[:5]}{'...' if len(threemf_files) > 5 else ''}"
|
||
)
|
||
for f in dir_files:
|
||
if f.get("is_directory"):
|
||
continue
|
||
fname = f.get("name", "")
|
||
# Normalize both for comparison (spaces and underscores are equivalent)
|
||
fname_normalized = fname.lower().replace(" ", "_")
|
||
search_normalized = search_term.replace(" ", "_")
|
||
if fname.endswith(".3mf") and search_normalized in fname_normalized:
|
||
logger.info("Found matching file in %s: %s", search_dir, fname)
|
||
temp_path = app_settings.archive_dir / "temp" / fname
|
||
temp_path.parent.mkdir(parents=True, exist_ok=True)
|
||
remote_full_path = posixpath.join(search_dir, fname)
|
||
if ftp_retry_enabled:
|
||
downloaded = await with_ftp_retry(
|
||
download_file_async,
|
||
printer.ip_address,
|
||
printer.access_code,
|
||
remote_full_path,
|
||
temp_path,
|
||
timeout=ftp_timeout,
|
||
socket_timeout=ftp_timeout,
|
||
printer_model=printer.model,
|
||
max_retries=ftp_retry_count,
|
||
retry_delay=ftp_retry_delay,
|
||
operation_name=f"Download 3MF from {remote_full_path}",
|
||
)
|
||
else:
|
||
downloaded = await download_file_async(
|
||
printer.ip_address,
|
||
printer.access_code,
|
||
remote_full_path,
|
||
temp_path,
|
||
timeout=ftp_timeout,
|
||
socket_timeout=ftp_timeout,
|
||
printer_model=printer.model,
|
||
)
|
||
if downloaded:
|
||
downloaded_filename = fname
|
||
logger.info("Found and downloaded from %s: %s", search_dir, fname)
|
||
cache_3mf_download(printer_id, fname, temp_path)
|
||
break
|
||
except Exception as e:
|
||
logger.debug("Failed to list %s: %s", search_dir, e)
|
||
|
||
# Validate the downloaded 3MF actually matches the plate that's running
|
||
# (#1204): subtask_name lags across consecutive plates of the same model,
|
||
# so the first FTP candidate (built from subtask_name) can land on the
|
||
# previous plate's still-resident upload. Cross-check the slice_info
|
||
# plate index against the plate parsed from gcode_file (always fresh —
|
||
# it's the field whose change triggered this callback).
|
||
if downloaded_filename and temp_path:
|
||
expected_plate = parse_plate_id(filename)
|
||
actual_plate = peek_plate_index_in_3mf(temp_path) if expected_plate is not None else None
|
||
if expected_plate is not None and actual_plate is not None and actual_plate != expected_plate:
|
||
logger.warning(
|
||
"[CALLBACK] 3MF plate mismatch: downloaded %s reports plate %s but printer is "
|
||
"running plate %s — subtask_name=%r appears stale, retrying with corrected name",
|
||
downloaded_filename,
|
||
actual_plate,
|
||
expected_plate,
|
||
subtask_name,
|
||
)
|
||
corrected_subtask = swap_plate_suffix(subtask_name, expected_plate)
|
||
retry_succeeded = False
|
||
if corrected_subtask and corrected_subtask != subtask_name:
|
||
for try_filename in (f"{corrected_subtask}.gcode.3mf", f"{corrected_subtask}.3mf"):
|
||
retry_temp_path = app_settings.archive_dir / "temp" / try_filename
|
||
retry_temp_path.parent.mkdir(parents=True, exist_ok=True)
|
||
for remote_path in (
|
||
f"/{try_filename}",
|
||
f"/cache/{try_filename}",
|
||
f"/model/{try_filename}",
|
||
f"/data/{try_filename}",
|
||
f"/data/Metadata/{try_filename}",
|
||
):
|
||
try:
|
||
if ftp_retry_enabled:
|
||
downloaded = await with_ftp_retry(
|
||
download_file_async,
|
||
printer.ip_address,
|
||
printer.access_code,
|
||
remote_path,
|
||
retry_temp_path,
|
||
timeout=ftp_timeout,
|
||
socket_timeout=ftp_timeout,
|
||
printer_model=printer.model,
|
||
max_retries=ftp_retry_count,
|
||
retry_delay=ftp_retry_delay,
|
||
operation_name=f"Re-download 3MF from {remote_path}",
|
||
non_retry_exceptions=(FileNotOnPrinterError,),
|
||
)
|
||
else:
|
||
downloaded = await download_file_async(
|
||
printer.ip_address,
|
||
printer.access_code,
|
||
remote_path,
|
||
retry_temp_path,
|
||
timeout=ftp_timeout,
|
||
socket_timeout=ftp_timeout,
|
||
printer_model=printer.model,
|
||
)
|
||
if downloaded and peek_plate_index_in_3mf(retry_temp_path) == expected_plate:
|
||
logger.info(
|
||
"[CALLBACK] Re-download succeeded with corrected name %s "
|
||
"(plate %s) — replacing wrong file",
|
||
try_filename,
|
||
expected_plate,
|
||
)
|
||
try:
|
||
temp_path.unlink(missing_ok=True)
|
||
except OSError:
|
||
pass
|
||
temp_path = retry_temp_path
|
||
downloaded_filename = try_filename
|
||
subtask_name = corrected_subtask
|
||
cache_3mf_download(printer_id, try_filename, temp_path)
|
||
retry_succeeded = True
|
||
break
|
||
elif downloaded:
|
||
# Wrong plate again — discard and keep trying
|
||
try:
|
||
retry_temp_path.unlink(missing_ok=True)
|
||
except OSError:
|
||
pass
|
||
except FileNotOnPrinterError:
|
||
continue
|
||
except Exception as e:
|
||
logger.debug("Re-download failed for %s: %s", remote_path, e)
|
||
if retry_succeeded:
|
||
break
|
||
# If the retry didn't find a matching file, drop the wrong 3MF
|
||
# so the no-3MF fallback below creates an archive whose name
|
||
# at least reflects the right plate.
|
||
if not retry_succeeded:
|
||
logger.warning(
|
||
"[CALLBACK] Could not re-download correct plate %s — falling back to no-3MF archive",
|
||
expected_plate,
|
||
)
|
||
try:
|
||
temp_path.unlink(missing_ok=True)
|
||
except OSError:
|
||
pass
|
||
temp_path = None
|
||
downloaded_filename = None
|
||
# Override the stale subtask_name so the fallback archive's
|
||
# print_name reflects the correct plate. Prefer the swapped
|
||
# name when we have one; otherwise let filename win.
|
||
if corrected_subtask:
|
||
subtask_name = corrected_subtask
|
||
else:
|
||
subtask_name = ""
|
||
|
||
if not downloaded_filename or not temp_path:
|
||
logger.warning("Could not find 3MF file for print: %s", filename or subtask_name)
|
||
# Create a fallback archive without 3MF data so the print is still tracked
|
||
# This commonly happens with P1S/A1 printers where FTP has file size limitations
|
||
try:
|
||
from backend.app.models.archive import PrintArchive
|
||
|
||
# Derive print name from subtask_name or filename
|
||
print_name = subtask_name or filename
|
||
if print_name:
|
||
# Clean up the name (remove extensions, path parts)
|
||
print_name = print_name.split("/")[-1]
|
||
print_name = print_name.replace(".gcode.3mf", "").replace(".gcode", "").replace(".3mf", "")
|
||
else:
|
||
print_name = "Unknown Print"
|
||
|
||
# Recover estimated print time from MQTT (best-effort for notifications)
|
||
fallback_print_time = None
|
||
mqtt_remaining = data.get("remaining_time")
|
||
if mqtt_remaining and isinstance(mqtt_remaining, (int, float)) and mqtt_remaining > 0:
|
||
fallback_print_time = int(mqtt_remaining)
|
||
if fallback_print_time is None:
|
||
mc_remaining = (data.get("raw_data") or {}).get("mc_remaining_time")
|
||
if mc_remaining and isinstance(mc_remaining, (int, float)) and mc_remaining > 0:
|
||
fallback_print_time = int(mc_remaining * 60)
|
||
|
||
# Best-effort filament metadata from MQTT — see
|
||
# _extract_filament_data_from_mqtt. Without this the fallback
|
||
# archive's filament fields stayed NULL even though the AMS
|
||
# state at print start was sitting right there in `data`.
|
||
# The slicer's ams_mapping (when present) narrows the result
|
||
# to slots actually used by the print (#1533).
|
||
mqtt_filament_meta = _extract_filament_data_from_mqtt(data, _get_start_ams_mapping(data, None))
|
||
|
||
# Create minimal archive entry
|
||
fallback_archive = PrintArchive(
|
||
printer_id=printer_id,
|
||
filename=filename or f"{print_name}.3mf",
|
||
file_path="", # Empty - no 3MF file available
|
||
file_size=0,
|
||
print_name=print_name,
|
||
print_time_seconds=fallback_print_time,
|
||
status="printing",
|
||
started_at=datetime.now(timezone.utc),
|
||
subtask_id=subtask_id,
|
||
filament_type=mqtt_filament_meta.get("filament_type"),
|
||
filament_color=mqtt_filament_meta.get("filament_color"),
|
||
extra_data={"no_3mf_available": True, "original_subtask": subtask_name, "_print_data": data},
|
||
)
|
||
|
||
db.add(fallback_archive)
|
||
await db.commit()
|
||
await db.refresh(fallback_archive)
|
||
|
||
logger.info("Created fallback archive %s for %s (no 3MF available)", fallback_archive.id, print_name)
|
||
|
||
_maybe_start_layer_timelapse(printer, printer_id, fallback_archive.id)
|
||
|
||
# Track as active print
|
||
_active_prints[(printer_id, fallback_archive.filename)] = fallback_archive.id
|
||
if filename:
|
||
_active_prints[(printer_id, filename)] = fallback_archive.id
|
||
if subtask_name:
|
||
_active_prints[(printer_id, f"{subtask_name}.3mf")] = fallback_archive.id
|
||
_active_prints[(printer_id, subtask_name)] = fallback_archive.id
|
||
|
||
# Record starting energy if smart plug available (#941: persisted column)
|
||
await _record_energy_start(fallback_archive, printer_id, db, context="fallback")
|
||
|
||
# Send WebSocket notification
|
||
await ws_manager.send_archive_created(
|
||
{
|
||
"id": fallback_archive.id,
|
||
"printer_id": fallback_archive.printer_id,
|
||
"filename": fallback_archive.filename,
|
||
"print_name": fallback_archive.print_name,
|
||
"status": fallback_archive.status,
|
||
}
|
||
)
|
||
|
||
# MQTT relay - publish archive created
|
||
try:
|
||
await mqtt_relay.on_archive_created(
|
||
archive_id=fallback_archive.id,
|
||
print_name=fallback_archive.print_name,
|
||
printer_name=printer.name,
|
||
status=fallback_archive.status,
|
||
)
|
||
except Exception:
|
||
pass # Don't fail if MQTT fails
|
||
|
||
# Store Spoolman tracking data (may not work for fallback since no 3MF)
|
||
try:
|
||
await _store_spoolman_print_data(
|
||
printer_id,
|
||
fallback_archive.id,
|
||
fallback_archive.file_path,
|
||
db,
|
||
printer_manager,
|
||
ams_mapping=_get_start_ams_mapping(data, fallback_archive.id),
|
||
plate_id=_get_start_plate_id(fallback_archive.id),
|
||
)
|
||
except Exception as e:
|
||
logger.debug("[SPOOLMAN] Could not store tracking for fallback archive: %s", e)
|
||
|
||
# Send notification without archive data (file not found)
|
||
if not notification_sent:
|
||
await _send_print_start_notification(printer_id, data, logger=logger)
|
||
return
|
||
except Exception as e:
|
||
logger.error("Failed to create fallback archive: %s", e)
|
||
# Send notification without archive data (file not found)
|
||
if not notification_sent:
|
||
await _send_print_start_notification(printer_id, data, logger=logger)
|
||
return
|
||
|
||
try:
|
||
# Archive the file with status "printing"
|
||
service = ArchiveService(db)
|
||
archive = await service.archive_print(
|
||
printer_id=printer_id,
|
||
source_file=temp_path,
|
||
print_data={**data, "status": "printing"},
|
||
subtask_id=subtask_id,
|
||
)
|
||
|
||
if archive:
|
||
# Track this active print (use both original filename and downloaded filename)
|
||
_active_prints[(printer_id, downloaded_filename)] = archive.id
|
||
if filename and filename != downloaded_filename:
|
||
_active_prints[(printer_id, filename)] = archive.id
|
||
if subtask_name:
|
||
_active_prints[(printer_id, f"{subtask_name}.3mf")] = archive.id
|
||
|
||
logger.info("Created archive %s for %s", archive.id, downloaded_filename)
|
||
|
||
_maybe_start_layer_timelapse(printer, printer_id, archive.id)
|
||
|
||
# Record starting energy from smart plug if available (#941: persisted column)
|
||
await _record_energy_start(archive, printer_id, db, context="auto-archive")
|
||
|
||
await ws_manager.send_archive_created(
|
||
{
|
||
"id": archive.id,
|
||
"printer_id": archive.printer_id,
|
||
"filename": archive.filename,
|
||
"print_name": archive.print_name,
|
||
"status": archive.status,
|
||
}
|
||
)
|
||
|
||
# MQTT relay - publish archive created
|
||
try:
|
||
await mqtt_relay.on_archive_created(
|
||
archive_id=archive.id,
|
||
print_name=archive.print_name,
|
||
printer_name=printer.name,
|
||
status=archive.status,
|
||
)
|
||
except Exception:
|
||
pass # Don't fail if MQTT fails
|
||
|
||
# Send notification with archive data (new archive created)
|
||
if not notification_sent:
|
||
archive_data = {
|
||
"print_time_seconds": archive.print_time_seconds,
|
||
"created_by_id": archive.created_by_id,
|
||
}
|
||
await _send_print_start_notification(printer_id, data, archive_data, logger)
|
||
|
||
# Extract printable objects for skip object functionality
|
||
try:
|
||
from backend.app.services.archive import extract_printable_objects_from_3mf
|
||
|
||
client = printer_manager.get_client(printer_id)
|
||
if client:
|
||
with open(temp_path, "rb") as f:
|
||
threemf_data = f.read()
|
||
# Extract with positions for UI overlay, scoped to the
|
||
# plate that is printing — an all-plates 3MF carries
|
||
# every plate's objects (#2522).
|
||
printable_objects, bbox_all = extract_printable_objects_from_3mf(
|
||
threemf_data,
|
||
plate_number=resolve_plate_id(client.state),
|
||
include_positions=True,
|
||
)
|
||
if printable_objects:
|
||
# Store objects in printer state
|
||
client.state.printable_objects = printable_objects
|
||
client.state.printable_objects_bbox_all = bbox_all
|
||
client.state.skipped_objects = [] # Reset skipped objects for new print
|
||
logger.info(
|
||
"Loaded %s printable objects for printer %s", len(printable_objects), printer_id
|
||
)
|
||
except Exception as e:
|
||
logger.debug("Failed to extract printable objects: %s", e)
|
||
|
||
# Store Spoolman tracking data for per-filament usage reporting
|
||
try:
|
||
await _store_spoolman_print_data(
|
||
printer_id,
|
||
archive.id,
|
||
archive.file_path,
|
||
db,
|
||
printer_manager,
|
||
ams_mapping=_get_start_ams_mapping(data, archive.id),
|
||
plate_id=_get_start_plate_id(archive.id),
|
||
)
|
||
except Exception as e:
|
||
logger.warning("[SPOOLMAN] Failed to store tracking data: %s", e)
|
||
|
||
# Capture timelapse file baseline for snapshot-diff on completion
|
||
await _capture_timelapse_baseline_at_start(printer, printer_id, logger)
|
||
finally:
|
||
# Keep temp_path around until print completes so the cover endpoint
|
||
# can reuse it (#972). Cache eviction in on_print_complete deletes
|
||
# the file. If the cache entry was evicted early (file vanished),
|
||
# clean up any stragglers here to avoid leaking disk on retries.
|
||
cached_now = get_cached_3mf(printer_id, downloaded_filename) if downloaded_filename else None
|
||
if temp_path and temp_path.exists() and cached_now != temp_path:
|
||
temp_path.unlink()
|
||
|
||
|
||
_TIMELAPSE_VIDEO_EXTENSIONS = (".mp4", ".avi")
|
||
|
||
|
||
async def _list_timelapse_videos(printer) -> tuple[list[dict], str | None]:
|
||
"""List video files from printer's timelapse directory.
|
||
|
||
Finds MP4 (X1/A1 series) and AVI (P1 series) timelapse files.
|
||
Returns (video_files, found_path) where video_files is a list of file dicts
|
||
and found_path is the directory where they were found, or ([], None).
|
||
"""
|
||
from backend.app.services.bambu_ftp import list_files_async
|
||
|
||
logger = logging.getLogger(__name__)
|
||
|
||
for timelapse_path in ["/timelapse", "/timelapse/video", "/record", "/recording"]:
|
||
try:
|
||
found_files = await list_files_async(
|
||
printer.ip_address, printer.access_code, timelapse_path, printer_model=printer.model
|
||
)
|
||
if found_files:
|
||
video_files = [
|
||
f
|
||
for f in found_files
|
||
if not f.get("is_directory") and f.get("name", "").lower().endswith(_TIMELAPSE_VIDEO_EXTENSIONS)
|
||
]
|
||
if video_files:
|
||
return video_files, timelapse_path
|
||
except Exception as e:
|
||
logger.debug("[TIMELAPSE] Path %s failed: %s", timelapse_path, e)
|
||
continue
|
||
|
||
return [], None
|
||
|
||
|
||
async def _capture_timelapse_baseline_at_start(printer, printer_id: int, logger: logging.Logger) -> None:
|
||
"""Snapshot the printer's timelapse directory at print start so the
|
||
completion-time scan can pick the new file by set-difference.
|
||
|
||
Must be called from every on_print_start path that proceeds to a real
|
||
print — both the new-archive branch and the expected-archive branch (which
|
||
queue / VP-dispatched prints take). Without a baseline,
|
||
_scan_for_timelapse_with_retries falls into its "take baseline now"
|
||
fallback that runs AFTER the new MP4 has already landed on the SD card,
|
||
so the new file ends up in the "baseline" set and no diff ever matches.
|
||
|
||
Bambu printers in LAN-only mode don't sync NTP, so mtime ordering is
|
||
unreliable — the snapshot-diff approach sidesteps that entirely.
|
||
"""
|
||
try:
|
||
baseline_files, _ = await _list_timelapse_videos(printer)
|
||
_timelapse_baselines[printer_id] = {f.get("name", "") for f in baseline_files}
|
||
logger.info(
|
||
"[TIMELAPSE] Baseline at print start: %s video files for printer %s",
|
||
len(_timelapse_baselines[printer_id]),
|
||
printer_id,
|
||
)
|
||
except Exception as e:
|
||
logger.warning("[TIMELAPSE] Failed to capture baseline at print start: %s", e)
|
||
|
||
|
||
async def _scan_for_timelapse_with_retries(archive_id: int, baseline_names: set[str] | None = None):
|
||
"""
|
||
Scan for timelapse with retries using a snapshot-diff approach.
|
||
|
||
Instead of picking the "most recent by mtime" (unreliable when the printer
|
||
clock is wrong in LAN-only mode), we snapshot existing MP4 filenames BEFORE
|
||
waiting, then look for any NEW filename that appears after each delay.
|
||
|
||
If baseline_names is provided (captured at print start), it is used directly.
|
||
Otherwise falls back to taking a baseline at completion time (best-effort
|
||
for prints started before app restart).
|
||
|
||
Falls back to name-matching (print name contained in MP4 filename) if no
|
||
new file appears after all retries.
|
||
"""
|
||
from pathlib import Path
|
||
|
||
logger = logging.getLogger(__name__)
|
||
|
||
# --- Phase 1: Take baseline snapshot of existing timelapse files ---
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
|
||
service = ArchiveService(db)
|
||
archive = await service.get_archive(archive_id)
|
||
|
||
if not archive:
|
||
logger.warning("[TIMELAPSE] Archive %s not found, aborting", archive_id)
|
||
return
|
||
if archive.timelapse_path:
|
||
logger.info("[TIMELAPSE] Archive %s already has timelapse attached", archive_id)
|
||
return
|
||
if not archive.printer_id:
|
||
logger.warning("[TIMELAPSE] Archive %s has no printer, aborting", archive_id)
|
||
return
|
||
|
||
if baseline_names is not None:
|
||
# Use pre-captured baseline from print start (no race condition)
|
||
logger.info(
|
||
"[TIMELAPSE] Using print-start baseline: %s existing video files for archive %s",
|
||
len(baseline_names),
|
||
archive_id,
|
||
)
|
||
else:
|
||
# Fallback: take baseline now (e.g. app restarted mid-print)
|
||
result = await db.execute(select(Printer).where(Printer.id == archive.printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if not printer:
|
||
logger.warning("[TIMELAPSE] Printer not found for archive %s, aborting", archive_id)
|
||
return
|
||
|
||
baseline_files, _ = await _list_timelapse_videos(printer)
|
||
baseline_names = {f.get("name", "") for f in baseline_files}
|
||
logger.info(
|
||
"[TIMELAPSE] Baseline snapshot (fallback): %s existing video files for archive %s",
|
||
len(baseline_names),
|
||
archive_id,
|
||
)
|
||
|
||
# Derive base_name for name-matching fallback
|
||
base_name = Path(archive.filename).stem if archive.filename else ""
|
||
if base_name.endswith(".gcode"):
|
||
base_name = base_name[:-6]
|
||
|
||
except Exception as e:
|
||
logger.warning("[TIMELAPSE] Failed to take baseline snapshot for archive %s: %s", archive_id, e)
|
||
return
|
||
|
||
# --- Phase 2: Retry loop — look for NEW files that weren't in baseline ---
|
||
retry_delays = [5, 10, 20, 30]
|
||
|
||
for attempt, delay in enumerate(retry_delays, 1):
|
||
logger.info(
|
||
"[TIMELAPSE] Attempt %s/%s: waiting %ss before scanning for archive %s",
|
||
attempt,
|
||
len(retry_delays),
|
||
delay,
|
||
archive_id,
|
||
)
|
||
await asyncio.sleep(delay)
|
||
|
||
try:
|
||
from backend.app.models.printer import Printer
|
||
from backend.app.services.bambu_ftp import download_file_bytes_async
|
||
|
||
# Read phase: fetch archive + printer in a short session and release
|
||
# the pooled connection BEFORE the FTP list/download below. Holding it
|
||
# across the FTP round-trips left one connection idle-in-transaction per
|
||
# in-flight scan — ×4 retries, per completed print (issue #2572).
|
||
async with async_session() as db:
|
||
service = ArchiveService(db)
|
||
archive = await service.get_archive(archive_id)
|
||
|
||
if not archive:
|
||
logger.warning("[TIMELAPSE] Archive %s not found, stopping retries", archive_id)
|
||
return
|
||
if archive.timelapse_path:
|
||
logger.info("[TIMELAPSE] Archive %s already has timelapse attached, stopping retries", archive_id)
|
||
return
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == archive.printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if not printer:
|
||
logger.warning("[TIMELAPSE] Printer not found for archive %s, stopping retries", archive_id)
|
||
return
|
||
|
||
# I/O phase (no DB connection held): FTP list + download.
|
||
video_files, found_path = await _list_timelapse_videos(printer)
|
||
|
||
if not video_files:
|
||
logger.info("[TIMELAPSE] Attempt %s: No video files found, will retry", attempt)
|
||
continue
|
||
|
||
logger.info("[TIMELAPSE] Attempt %s: Found %s video files in %s", attempt, len(video_files), found_path)
|
||
for f in video_files[:5]:
|
||
logger.info("[TIMELAPSE] - %s", f.get("name"))
|
||
|
||
# Find files that are NEW (not in baseline snapshot)
|
||
new_files = [f for f in video_files if f.get("name", "") not in baseline_names]
|
||
|
||
if new_files:
|
||
# Pick the first new file (there should typically be exactly one)
|
||
target = new_files[0]
|
||
file_name = target.get("name")
|
||
remote_path = target.get("path") or f"/timelapse/{file_name}"
|
||
logger.info(
|
||
"[TIMELAPSE] Attempt %s: New file detected: %s (downloading for archive %s)",
|
||
attempt,
|
||
file_name,
|
||
archive_id,
|
||
)
|
||
|
||
timelapse_data = await download_file_bytes_async(
|
||
printer.ip_address, printer.access_code, remote_path, printer_model=printer.model
|
||
)
|
||
if timelapse_data:
|
||
# Write phase: attach in a fresh short-lived session.
|
||
async with async_session() as db:
|
||
success = await ArchiveService(db).attach_timelapse(archive_id, timelapse_data, file_name)
|
||
if success:
|
||
logger.info("[TIMELAPSE] Successfully attached timelapse to archive %s", archive_id)
|
||
await ws_manager.send_archive_updated({"id": archive_id, "timelapse_attached": True})
|
||
return
|
||
else:
|
||
logger.warning("[TIMELAPSE] Failed to attach timelapse to archive %s", archive_id)
|
||
else:
|
||
logger.warning("[TIMELAPSE] Attempt %s: Failed to download new file, will retry", attempt)
|
||
else:
|
||
logger.info("[TIMELAPSE] Attempt %s: No new files since baseline, will retry", attempt)
|
||
|
||
except Exception as e:
|
||
logger.warning("[TIMELAPSE] Attempt %s failed with error: %s", attempt, e)
|
||
|
||
# --- Phase 3: Fallback — try name matching against all files ---
|
||
if base_name:
|
||
logger.info("[TIMELAPSE] Retries exhausted, trying name-match fallback for '%s'", base_name)
|
||
try:
|
||
from backend.app.models.printer import Printer
|
||
from backend.app.services.bambu_ftp import download_file_bytes_async
|
||
|
||
# Read phase: short session, released before the FTP work (issue #2572).
|
||
async with async_session() as db:
|
||
service = ArchiveService(db)
|
||
archive = await service.get_archive(archive_id)
|
||
if not archive or archive.timelapse_path:
|
||
return
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == archive.printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if not printer:
|
||
return
|
||
|
||
# I/O phase (no DB connection held): FTP list + download.
|
||
video_files, found_path = await _list_timelapse_videos(printer)
|
||
for f in video_files:
|
||
fname = f.get("name", "")
|
||
if base_name.lower() in fname.lower():
|
||
remote_path = f.get("path") or f"/timelapse/{fname}"
|
||
logger.info("[TIMELAPSE] Name-match fallback: '%s' matches '%s'", base_name, fname)
|
||
|
||
timelapse_data = await download_file_bytes_async(
|
||
printer.ip_address, printer.access_code, remote_path, printer_model=printer.model
|
||
)
|
||
if timelapse_data:
|
||
# Write phase: attach in a fresh short-lived session.
|
||
async with async_session() as db:
|
||
success = await ArchiveService(db).attach_timelapse(archive_id, timelapse_data, fname)
|
||
if success:
|
||
logger.info("[TIMELAPSE] Name-match fallback attached timelapse to archive %s", archive_id)
|
||
await ws_manager.send_archive_updated({"id": archive_id, "timelapse_attached": True})
|
||
return
|
||
break # Only try the first name match
|
||
|
||
except Exception as e:
|
||
logger.warning("[TIMELAPSE] Name-match fallback failed: %s", e)
|
||
|
||
logger.warning("[TIMELAPSE] All attempts exhausted for archive %s, giving up", archive_id)
|
||
|
||
|
||
# Defaults for the finish-photo-from-timelapse polling loop (#1397). These are
|
||
# module-level so tests can monkeypatch them down to ~0 without timing out.
|
||
_FINISH_PHOTO_TIMELAPSE_POLL_INTERVAL_SECONDS: float = 3.0
|
||
_FINISH_PHOTO_TIMELAPSE_POLL_TIMEOUT_SECONDS: float = 60.0
|
||
|
||
|
||
async def _capture_finish_photo_from_timelapse(
|
||
archive_id: int,
|
||
archive_dir: Path,
|
||
) -> str | None:
|
||
"""Wait for the per-print timelapse to land on the archive and extract its
|
||
last frame as the finish photo (#1397).
|
||
|
||
Bambu firmware stops timelapse recording after the toolhead parks but
|
||
before the bed-drop end-gcode runs, so the last frame frames the finished
|
||
print correctly. A live camera grab at gcode_state=FINISH captures the
|
||
bed already lowered.
|
||
|
||
``_scan_for_timelapse_with_retries`` runs in parallel and writes
|
||
``archive.timelapse_path`` when the file lands. This function polls for
|
||
that field. Returns the saved photo filename on success, or None if the
|
||
timelapse never arrives within the timeout / extraction fails / no
|
||
timelapse path was set — in which case the caller falls back to the
|
||
existing live-camera capture chain.
|
||
"""
|
||
import uuid
|
||
|
||
from backend.app.models.archive import PrintArchive
|
||
from backend.app.services.camera import extract_video_last_frame
|
||
|
||
logger = logging.getLogger(__name__)
|
||
|
||
deadline = asyncio.get_event_loop().time() + _FINISH_PHOTO_TIMELAPSE_POLL_TIMEOUT_SECONDS
|
||
poll_interval = _FINISH_PHOTO_TIMELAPSE_POLL_INTERVAL_SECONDS
|
||
|
||
while True:
|
||
async with async_session() as db:
|
||
result = await db.execute(select(PrintArchive).where(PrintArchive.id == archive_id))
|
||
archive = result.scalar_one_or_none()
|
||
timelapse_relpath = archive.timelapse_path if archive else None
|
||
|
||
if timelapse_relpath:
|
||
video_path = app_settings.base_dir / timelapse_relpath
|
||
if video_path.exists() and video_path.stat().st_size > 0:
|
||
photos_dir = archive_dir / "photos"
|
||
photos_dir.mkdir(parents=True, exist_ok=True)
|
||
timestamp = datetime.now().strftime("%Y%m%d_%H%M%S")
|
||
filename = f"finish_{timestamp}_{uuid.uuid4().hex[:8]}.jpg"
|
||
output_path = photos_dir / filename
|
||
if await extract_video_last_frame(video_path, output_path):
|
||
logger.info(
|
||
"[PHOTO-BG] Extracted finish photo from timelapse %s for archive %s",
|
||
video_path.name,
|
||
archive_id,
|
||
)
|
||
return filename
|
||
logger.warning(
|
||
"[PHOTO-BG] Timelapse %s landed but last-frame extraction failed for archive %s; falling back",
|
||
video_path.name,
|
||
archive_id,
|
||
)
|
||
return None
|
||
|
||
if asyncio.get_event_loop().time() >= deadline:
|
||
logger.info(
|
||
"[PHOTO-BG] Timelapse for archive %s didn't land within %.0fs; falling back to live camera",
|
||
archive_id,
|
||
_FINISH_PHOTO_TIMELAPSE_POLL_TIMEOUT_SECONDS,
|
||
)
|
||
return None
|
||
|
||
await asyncio.sleep(poll_interval)
|
||
|
||
|
||
async def on_print_running_observed(printer_id: int, data: dict):
|
||
"""Restart-recovery: capture a fresh timelapse baseline for a print that
|
||
started before Bambuddy came up.
|
||
|
||
bambu_mqtt.py suppresses ``on_print_start`` on the first RUNNING push
|
||
after Bambuddy startup (#1304 guard, prevents duplicate archive
|
||
creation). Without that path, ``_capture_timelapse_baseline_at_start``
|
||
never runs and ``_scan_for_timelapse_with_retries`` falls into its
|
||
"take baseline now" fallback at completion time — but by then the
|
||
printer has already uploaded the in-flight MP4, so the baseline
|
||
includes it and no diff ever matches (#1485 follow-up).
|
||
|
||
Fires once per session, in lieu of on_print_start when restart-recovery
|
||
kicks in. The printer doesn't upload the timelapse until after PRINT
|
||
COMPLETE, so a baseline captured any time during the print is still
|
||
pre-upload.
|
||
"""
|
||
logger = logging.getLogger(__name__)
|
||
|
||
# Avoid double-capture: on_print_start may have run earlier in this
|
||
# Bambuddy process if the print started AFTER startup and we crashed
|
||
# later in the same session. (Realistically this can't happen — the
|
||
# MQTT client object would have been recreated — but the cheap guard
|
||
# is correct regardless.)
|
||
if printer_id in _timelapse_baselines:
|
||
logger.debug(
|
||
"[TIMELAPSE] on_print_running_observed: baseline already present for printer %s, skipping",
|
||
printer_id,
|
||
)
|
||
return
|
||
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if not printer:
|
||
logger.warning(
|
||
"[TIMELAPSE] on_print_running_observed: printer %s not found in DB, skipping baseline",
|
||
printer_id,
|
||
)
|
||
return
|
||
|
||
await _capture_timelapse_baseline_at_start(printer, printer_id, logger)
|
||
|
||
|
||
def _is_active_archive_stale(archive, state) -> tuple[bool, str]:
|
||
"""Return ``(is_stale, reason)`` for an archive in ``status="printing"``
|
||
against the printer's current MQTT state.
|
||
|
||
Reconciliation triggers (#1542 follow-up — recovers from missed PRINT
|
||
COMPLETE events, typically a print finishing during an MQTT disconnect
|
||
window followed by a smart-plug power cycle):
|
||
|
||
1. Printer state is terminal (IDLE / FINISH / FAILED). The print is
|
||
provably not running anymore — only branch that should fire under
|
||
normal disconnect-then-reconnect timing.
|
||
2. Printer has a different ``subtask_id`` than the archive. Bambu
|
||
firmware mints a fresh ``subtask_id`` for each print, including the
|
||
ghost replay it runs after a power cycle from a leftover SD file —
|
||
so a mismatch unambiguously means the in-DB archive is no longer
|
||
the print on the printer.
|
||
3. Printer is running but ``subtask_name`` is empty. The printer
|
||
doesn't know what it's running; the archive's reference to it is
|
||
already broken.
|
||
|
||
Conservative on purpose: PAUSE / PREPARE / SLICING and any RUNNING state
|
||
with matching subtask_id+subtask_name is left alone. The cost of a false
|
||
positive is a duplicate archive on the next real PRINT COMPLETE — the
|
||
reactive handler uses ``_active_prints`` for lookup, which the reconcile
|
||
clears on synthesis, so the real completion creates a fresh row instead
|
||
of overwriting the synthesised one (#1679). The cost of a false negative
|
||
is the ghost-print loop in #1542.
|
||
|
||
Pre-push guard (#1679): when ``state.state`` is empty or ``"unknown"``,
|
||
MQTT has connected but the first ``push_status`` response hasn't been
|
||
applied yet — ``PrinterState`` is sitting on its construction defaults.
|
||
The reconcile caller in ``on_printer_status_change`` is already gated
|
||
on a real ``state.state``, so in normal operation this branch is
|
||
unreachable; it's kept as belt-and-braces for future callers and for
|
||
the narrow window where a partial state update could arrive
|
||
(``state.state`` set but ``subtask_name`` not yet populated). Returning
|
||
``not stale`` on degenerate input is strictly conservative: a real
|
||
stale archive will still be caught by the next push_status arriving
|
||
with terminal state.
|
||
"""
|
||
current_state = (state.state or "").upper()
|
||
if current_state in ("", "UNKNOWN"):
|
||
# No real push_status yet — PrinterState defaults are not evidence.
|
||
return False, ""
|
||
if current_state in ("IDLE", "FINISH", "FAILED"):
|
||
return True, f"printer state {current_state}"
|
||
# Below here the printer is in a running / pre-running state (RUNNING /
|
||
# PAUSE / PREPARE / SLICING / etc.) — decide based on subtask identity.
|
||
current_subtask_id = (state.subtask_id or "").strip()
|
||
if archive.subtask_id and current_subtask_id and archive.subtask_id != current_subtask_id:
|
||
return True, f"subtask_id changed ({archive.subtask_id!r} → {current_subtask_id!r})"
|
||
current_subtask_name = (state.subtask_name or "").strip()
|
||
if not current_subtask_name:
|
||
return True, "printer subtask_name empty"
|
||
return False, ""
|
||
|
||
|
||
async def reconcile_stale_active_prints(printer_id: int) -> int:
|
||
"""Synthesise ``on_print_complete`` for archives whose print can't be
|
||
running on the printer anymore.
|
||
|
||
Called once per MQTT (re)connection (from on_printer_status_change when
|
||
the connected edge flips False → True) and at Bambuddy startup (from
|
||
the FastAPI lifespan). Without this, a print that completes during a
|
||
disconnect window — followed by a smart-plug-driven power cycle — leaves
|
||
the ``.3mf`` on the SD card, the firmware auto-replays it on next boot,
|
||
and Bambuddy fires a fresh PRINT START for the ghost rather than the
|
||
SD cleanup that PRINT COMPLETE was supposed to run. Repeats every
|
||
power cycle until the operator notices (#1542 follow-up). Reconciliation
|
||
closes the loop by faking the missed PRINT COMPLETE — the existing
|
||
cleanup chain handles SD-file deletion, status updates, usage tracking,
|
||
and notifications.
|
||
|
||
Synthesised ``status="aborted"`` is the conservative label: we have no
|
||
proof the print finished successfully (and no progress evidence to
|
||
promote to ``"completed"``). The real PRINT COMPLETE callback, if it
|
||
fires later, overwrites the status with the correct value.
|
||
|
||
Returns the number of archives reconciled.
|
||
"""
|
||
state = printer_manager.get_status(printer_id)
|
||
if not state:
|
||
return 0
|
||
# Don't reconcile while disconnected — we'd be making a decision against
|
||
# stale cached state. The connected → reconcile edge handles this.
|
||
if not state.connected:
|
||
return 0
|
||
|
||
from backend.app.models.archive import PrintArchive
|
||
|
||
reconciled = 0
|
||
async with async_session() as db:
|
||
result = await db.execute(
|
||
select(PrintArchive).where(
|
||
PrintArchive.printer_id == printer_id,
|
||
PrintArchive.status == "printing",
|
||
)
|
||
)
|
||
active = list(result.scalars().all())
|
||
|
||
if not active:
|
||
return 0
|
||
|
||
logger = logging.getLogger(__name__)
|
||
for archive in active:
|
||
is_stale, reason = _is_active_archive_stale(archive, state)
|
||
if not is_stale:
|
||
continue
|
||
logger.info(
|
||
"[RECONCILE] Printer %s: synthesising missed PRINT COMPLETE for archive %s (%s) — %s",
|
||
printer_id,
|
||
archive.id,
|
||
archive.filename,
|
||
reason,
|
||
)
|
||
# Synthesised payload: minimal fields the on_print_complete chain
|
||
# needs. `_reconciled` marker lets downstream code distinguish this
|
||
# from a real MQTT-driven completion if it ever needs to (e.g. for
|
||
# metrics / debug logging). raw_data is the live printer state so
|
||
# the usage tracker can compare end-of-print remain% against the
|
||
# captured start values.
|
||
try:
|
||
await on_print_complete(
|
||
printer_id,
|
||
{
|
||
"status": "aborted",
|
||
"filename": archive.filename,
|
||
"subtask_name": archive.print_name or "",
|
||
"subtask_id": archive.subtask_id or "",
|
||
"raw_data": state.raw_data or {},
|
||
"_reconciled": True,
|
||
},
|
||
)
|
||
reconciled += 1
|
||
except Exception as e:
|
||
# Catch-all: a reconciliation failure must not block the
|
||
# printer's normal status flow. The archive stays in
|
||
# ``status="printing"`` and the next reconnect retries.
|
||
logger.warning(
|
||
"[RECONCILE] on_print_complete synthesis failed for archive %s: %s",
|
||
archive.id,
|
||
e,
|
||
)
|
||
|
||
return reconciled
|
||
|
||
|
||
async def on_finish_photo_moment(printer_id: int, data: dict):
|
||
"""Pre-capture a finish photo when the printer enters stage 22 / FINISH (#1721).
|
||
|
||
Fires either at the stage-22 ("Filament unloading") edge — toolhead
|
||
parked, bed not yet dropped, optimal framing — or as a FINISH-state
|
||
fallback for prints that skip stage 22 (cancel, external-spool-only,
|
||
HMS halt, firmware variants). Grabs one frame via the same
|
||
external-camera / RTSP path the post-completion fallback uses, stores
|
||
the JPEG bytes in ``_stage22_finish_frames[printer_id]``, and lets
|
||
``_background_finish_photo`` consume the cached bytes when it runs.
|
||
|
||
Replaces the #1397 "force timelapse on at dispatch" mechanism, which
|
||
caused per-layer nozzle parking on slicer profiles with Timelapse Type
|
||
set to Smooth (#1721). No force-on now means the user's explicit
|
||
timelapse=off in the slicer send dialog is respected.
|
||
"""
|
||
logger = logging.getLogger(__name__)
|
||
trigger = data.get("trigger", "unknown")
|
||
timelapse_was_active = bool(data.get("timelapse_was_active"))
|
||
logger.info(
|
||
"[FINISH-PHOTO-MOMENT] printer=%s trigger=%s timelapse_active=%s",
|
||
printer_id,
|
||
trigger,
|
||
timelapse_was_active,
|
||
)
|
||
|
||
# If a timelapse is actively recording, skip the pre-capture — the
|
||
# post-completion path will extract the last frame from the recorded
|
||
# video, which still provides the best framing (toolhead parked,
|
||
# before bed drop) without the per-layer parking side effects.
|
||
if timelapse_was_active:
|
||
logger.info(
|
||
"[FINISH-PHOTO-MOMENT] timelapse active for printer %s — skipping pre-capture (last-frame extraction will run post-completion)",
|
||
printer_id,
|
||
)
|
||
return
|
||
|
||
# #1790: register the producer-done event BEFORE the first await so the
|
||
# consumer in `_background_finish_photo` — which is dispatched back-to-back
|
||
# with us on the FINISH-state fallback path — sees it as soon as it polls.
|
||
# The `finally` below guarantees `set()` runs on every exit, including
|
||
# early returns and exceptions, so the consumer's bounded wait can't hang.
|
||
producer_done = asyncio.Event()
|
||
_stage22_finish_in_flight[printer_id] = producer_done
|
||
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.api.routes.settings import get_setting
|
||
from backend.app.models.printer import Printer
|
||
|
||
capture_setting = await get_setting(db, "capture_finish_photo")
|
||
if capture_setting is not None and capture_setting.lower() != "true":
|
||
logger.info("[FINISH-PHOTO-MOMENT] capture_finish_photo disabled — skipping pre-capture")
|
||
return
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if printer is None:
|
||
logger.warning(
|
||
"[FINISH-PHOTO-MOMENT] printer %s not found in DB",
|
||
printer_id,
|
||
)
|
||
return
|
||
|
||
frame_bytes: bytes | None = None
|
||
|
||
# #1867: on the FINISH-state fallback the End G-code (e.g. SwapMod
|
||
# plate-swap) has already run, so a live grab now captures the swapped
|
||
# or empty plate. Prefer the banked in-print frame — the finished
|
||
# print from the last object layer, before the swap. Only for
|
||
# `finish_state`: the `stage_22` and `last_layer` triggers fire before
|
||
# the swap and give cleaner (parked-toolhead) framing via a live grab.
|
||
if trigger == "finish_state":
|
||
banked = _inprint_frame_bank.get(printer_id)
|
||
if banked:
|
||
frame_bytes = banked
|
||
logger.info(
|
||
"[FINISH-PHOTO-MOMENT] using banked in-print frame (%d bytes) — "
|
||
"avoids post-swap live grab on stage-22-less firmware",
|
||
len(banked),
|
||
)
|
||
|
||
if frame_bytes is None and printer.external_camera_enabled and printer.external_camera_url:
|
||
from backend.app.services.external_camera import capture_frame
|
||
|
||
frame_bytes = await capture_frame(
|
||
printer.external_camera_url,
|
||
printer.external_camera_type or "mjpeg",
|
||
snapshot_url=printer.external_camera_snapshot_url,
|
||
)
|
||
if frame_bytes:
|
||
logger.info(
|
||
"[FINISH-PHOTO-MOMENT] captured external-camera frame (%d bytes)",
|
||
len(frame_bytes),
|
||
)
|
||
elif frame_bytes is None:
|
||
from backend.app.api.routes.camera import get_buffered_frame
|
||
|
||
buffered = get_buffered_frame(printer_id)
|
||
if buffered:
|
||
frame_bytes = buffered
|
||
logger.info(
|
||
"[FINISH-PHOTO-MOMENT] used buffered RTSP frame (%d bytes)",
|
||
len(frame_bytes),
|
||
)
|
||
else:
|
||
from backend.app.services.camera import capture_camera_frame_bytes
|
||
|
||
frame_bytes = await capture_camera_frame_bytes(
|
||
ip_address=printer.ip_address,
|
||
access_code=printer.access_code,
|
||
model=printer.model,
|
||
timeout=15,
|
||
)
|
||
if frame_bytes:
|
||
logger.info(
|
||
"[FINISH-PHOTO-MOMENT] captured RTSP frame (%d bytes)",
|
||
len(frame_bytes),
|
||
)
|
||
|
||
if frame_bytes:
|
||
_stage22_finish_frames[printer_id] = frame_bytes
|
||
else:
|
||
logger.warning(
|
||
"[FINISH-PHOTO-MOMENT] no frame captured for printer %s — post-completion fallback will retry",
|
||
printer_id,
|
||
)
|
||
except Exception as e:
|
||
logger.warning(
|
||
"[FINISH-PHOTO-MOMENT] pre-capture failed for printer %s: %s",
|
||
printer_id,
|
||
e,
|
||
)
|
||
finally:
|
||
# #1790: always unblock the consumer's bounded wait — whether we stored
|
||
# a frame, gave up, or hit an exception. Local ref means cleanup of the
|
||
# dict entry by the consumer doesn't affect signalling.
|
||
producer_done.set()
|
||
|
||
|
||
async def on_print_complete(printer_id: int, data: dict):
|
||
"""Handle print completion - update the archive status."""
|
||
import time
|
||
|
||
logger = logging.getLogger(__name__)
|
||
start_time = time.time()
|
||
|
||
def log_timing(section: str):
|
||
elapsed = time.time() - start_time
|
||
logger.info("[TIMING] %s: %.3fs elapsed", section, elapsed)
|
||
|
||
logger.info("[CALLBACK] on_print_complete started for printer %s", printer_id)
|
||
|
||
# Drop the 3MF download cache for this printer (#972). The print is over,
|
||
# nothing else legitimately needs the bytes; keeping them would only risk
|
||
# handing a stale file to the next print if it reuses the same name.
|
||
clear_3mf_cache(printer_id)
|
||
|
||
try:
|
||
ws_data = {
|
||
"status": data.get("status"),
|
||
"filename": data.get("filename"),
|
||
"subtask_name": data.get("subtask_name"),
|
||
"timelapse_was_active": data.get("timelapse_was_active"),
|
||
}
|
||
await ws_manager.send_print_complete(printer_id, ws_data)
|
||
log_timing("WebSocket send_print_complete")
|
||
except Exception as e:
|
||
logger.warning("[CALLBACK] WebSocket send_print_complete failed: %s", e)
|
||
|
||
# Capture user info before clearing (needed for print log entry)
|
||
_print_user_info = printer_manager.get_current_print_user(printer_id)
|
||
|
||
# Clear current print user tracking (Issue #206)
|
||
printer_manager.clear_current_print_user(printer_id)
|
||
|
||
# If the user explicitly stopped this print from the queue UI the printer will
|
||
# report "failed" or "aborted" via MQTT. Override that to "cancelled" so the
|
||
# correct "print stopped" notification/email is sent instead of a failure alert.
|
||
_raw_status = data.get("status", "completed")
|
||
if printer_id in _user_stopped_printers and _raw_status in ("failed", "aborted"):
|
||
logger.info(
|
||
"[CALLBACK] Overriding status '%s' -> 'cancelled' for printer %s (print was stopped from queue by user)",
|
||
_raw_status,
|
||
printer_id,
|
||
)
|
||
data = {**data, "status": "cancelled"}
|
||
_user_stopped_printers.discard(printer_id)
|
||
|
||
# Raise the plate-clear gate for queued dispatch (#961). Any terminal status
|
||
# may have left material on the bed: a user can cancel ten hours into a
|
||
# twelve-hour print, a printer can self-abort mid-job after a clog, and a
|
||
# touchscreen-stop reports `aborted` rather than `cancelled` because
|
||
# `_user_stopped_printers` is only populated when the user stops via the
|
||
# Bambuddy queue UI. Earlier code raised the flag only for completed/failed,
|
||
# which auto-dispatched the next queued print onto a fouled bed two seconds
|
||
# after a touchscreen-abort (#1171). Persisted to DB so the gate survives
|
||
# Auto Off power cycles and Bambuddy restarts.
|
||
_final_status = data.get("status", "completed")
|
||
if _final_status in ("completed", "failed", "aborted", "cancelled"):
|
||
printer_manager.set_awaiting_plate_clear(printer_id, True)
|
||
|
||
# MQTT relay - publish print complete
|
||
try:
|
||
printer_info = printer_manager.get_printer(printer_id)
|
||
if printer_info:
|
||
await mqtt_relay.on_print_complete(
|
||
printer_id,
|
||
printer_info.name,
|
||
printer_info.serial_number,
|
||
data.get("filename", ""),
|
||
data.get("subtask_name", ""),
|
||
data.get("status", "completed"),
|
||
)
|
||
except Exception:
|
||
pass # Don't fail print complete callback if MQTT fails
|
||
|
||
filename = data.get("filename", "")
|
||
subtask_name = data.get("subtask_name", "")
|
||
|
||
if not filename and not subtask_name:
|
||
logger.warning("Print complete without filename or subtask_name")
|
||
return
|
||
|
||
logger.info("Print complete - filename: %s, subtask: %s, status: %s", filename, subtask_name, data.get("status"))
|
||
|
||
# Build list of possible keys to try (matching how they were registered in on_print_start)
|
||
possible_keys = []
|
||
|
||
# Try subtask_name variations first (most reliable for matching)
|
||
if subtask_name:
|
||
possible_keys.append((printer_id, f"{subtask_name}.3mf"))
|
||
possible_keys.append((printer_id, f"{subtask_name}.gcode.3mf"))
|
||
possible_keys.append((printer_id, subtask_name))
|
||
|
||
# Try filename variations
|
||
if filename:
|
||
# Extract just the filename if it's a path
|
||
fname = filename.split("/")[-1] if "/" in filename else filename
|
||
|
||
if fname.endswith(".3mf"):
|
||
possible_keys.append((printer_id, fname))
|
||
elif fname.endswith(".gcode"):
|
||
base_name = fname.rsplit(".", 1)[0]
|
||
possible_keys.append((printer_id, f"{base_name}.gcode.3mf"))
|
||
possible_keys.append((printer_id, f"{base_name}.3mf"))
|
||
possible_keys.append((printer_id, fname))
|
||
else:
|
||
possible_keys.append((printer_id, f"{fname}.gcode.3mf"))
|
||
possible_keys.append((printer_id, f"{fname}.3mf"))
|
||
possible_keys.append((printer_id, fname))
|
||
|
||
# Also try full path versions
|
||
if filename.endswith(".3mf"):
|
||
possible_keys.append((printer_id, filename))
|
||
elif filename.endswith(".gcode"):
|
||
base_name = filename.rsplit(".", 1)[0]
|
||
possible_keys.append((printer_id, f"{base_name}.3mf"))
|
||
possible_keys.append((printer_id, filename))
|
||
else:
|
||
possible_keys.append((printer_id, f"{filename}.3mf"))
|
||
possible_keys.append((printer_id, filename))
|
||
|
||
# Find the archive for this print
|
||
logger.info("Looking for archive in _active_prints, keys to try: %s...", possible_keys[:5])
|
||
logger.info("Current _active_prints: %s", list(_active_prints.keys()))
|
||
archive_id = None
|
||
for key in possible_keys:
|
||
archive_id = _active_prints.pop(key, None)
|
||
if archive_id:
|
||
logger.info("Found archive %s with key %s", archive_id, key)
|
||
# Also clean up any other keys pointing to this archive
|
||
keys_to_remove = [k for k, v in _active_prints.items() if v == archive_id]
|
||
for k in keys_to_remove:
|
||
_active_prints.pop(k, None)
|
||
break
|
||
|
||
if not archive_id:
|
||
# Try to find by filename or subtask_name if not tracked (for prints started before app)
|
||
async with async_session() as db:
|
||
from backend.app.models.archive import PrintArchive
|
||
|
||
# Try matching by subtask_name (stored as print_name) first
|
||
if subtask_name:
|
||
result = await db.execute(
|
||
select(PrintArchive)
|
||
.where(PrintArchive.printer_id == printer_id)
|
||
.where(PrintArchive.status == "printing")
|
||
.where(
|
||
or_(
|
||
PrintArchive.print_name.ilike(f"%{subtask_name}%"),
|
||
PrintArchive.filename.ilike(f"%{subtask_name}%"),
|
||
)
|
||
)
|
||
.order_by(PrintArchive.created_at.desc())
|
||
.limit(1)
|
||
)
|
||
archive = result.scalar_one_or_none()
|
||
if archive:
|
||
archive_id = archive.id
|
||
logger.info("Found archive %s by subtask_name match: %s", archive_id, subtask_name)
|
||
|
||
# Also try by filename
|
||
if not archive_id and filename:
|
||
result = await db.execute(
|
||
select(PrintArchive)
|
||
.where(PrintArchive.printer_id == printer_id)
|
||
.where(PrintArchive.filename == filename)
|
||
.where(PrintArchive.status == "printing")
|
||
.order_by(PrintArchive.created_at.desc())
|
||
.limit(1)
|
||
)
|
||
archive = result.scalar_one_or_none()
|
||
if archive:
|
||
archive_id = archive.id
|
||
|
||
# Cleanup: delete uploaded file from printer SD card to prevent phantom prints (Issue #374, #1542)
|
||
# The print scheduler uploads files to the SD card root (/). Some printers (e.g. P1S, A1)
|
||
# auto-start files found in root on power cycle, causing ghost prints.
|
||
# Must run before the archive_id early-return so it executes even when archiving is disabled.
|
||
try:
|
||
if subtask_name:
|
||
archive_filename: str | None = None
|
||
async with async_session() as db:
|
||
from backend.app.models.archive import PrintArchive
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if archive_id:
|
||
archive_row = await db.execute(select(PrintArchive.filename).where(PrintArchive.id == archive_id))
|
||
archive_filename = archive_row.scalar_one_or_none()
|
||
|
||
if printer:
|
||
from backend.app.services.bambu_ftp import DeleteResult, delete_file_async
|
||
from backend.app.utils.filename import derive_remote_filename
|
||
|
||
# Primary candidate: the exact path the dispatcher uploaded to
|
||
# (derived from archive.filename via the same rule as upload).
|
||
# Without it, a library row that ended up with a doubled
|
||
# .gcode.3mf (#1542) leaves the real file behind because the
|
||
# subtask_name + ext fallbacks below don't match what's on the
|
||
# SD card. Fallbacks remain for archive-less prints (subtask
|
||
# never resolved to an archive) and for older naming variants.
|
||
candidate_paths: list[str] = []
|
||
if archive_filename:
|
||
candidate_paths.append(f"/{derive_remote_filename(archive_filename)}")
|
||
for ext in (".3mf", ".gcode"):
|
||
fallback = f"/{subtask_name}{ext}"
|
||
if fallback not in candidate_paths:
|
||
candidate_paths.append(fallback)
|
||
|
||
# Three outcomes track across all candidates so the final log
|
||
# line reflects what actually happened. The A1 in #1721 always
|
||
# ends here with ``any_not_found=True`` and the others False
|
||
# — its firmware auto-cleans the SD card before our cleanup
|
||
# runs, every candidate FTP-DELE returns 550, and the old
|
||
# code burned 3 retries × 2 s × 3 candidates per print
|
||
# logging a misleading "may linger" WARNING on a successful
|
||
# print.
|
||
any_deleted = False
|
||
any_real_failure = False
|
||
any_not_found = False
|
||
|
||
for remote_path in candidate_paths:
|
||
# Retry only the FAILED case — 550 NOT_FOUND will never
|
||
# recover by waiting, so a "file isn't here" answer
|
||
# advances immediately to the next candidate without
|
||
# consuming the retry budget.
|
||
for attempt in range(1, 4):
|
||
try:
|
||
delete_result = await delete_file_async(
|
||
printer.ip_address,
|
||
printer.access_code,
|
||
remote_path,
|
||
printer_model=printer.model,
|
||
)
|
||
except Exception as e:
|
||
delete_result = DeleteResult.FAILED
|
||
logger.warning(
|
||
"SD card cleanup attempt %d/3 raised for %s: %s",
|
||
attempt,
|
||
remote_path,
|
||
e,
|
||
)
|
||
|
||
if delete_result == DeleteResult.DELETED:
|
||
any_deleted = True
|
||
logger.info("Deleted %s from printer %s SD card", remote_path, printer.name)
|
||
break
|
||
if delete_result == DeleteResult.NOT_FOUND:
|
||
any_not_found = True
|
||
break # 550 will not recover; try next candidate
|
||
# FAILED: real error — retry with backoff, then give up
|
||
if attempt < 3:
|
||
await asyncio.sleep(2)
|
||
else:
|
||
any_real_failure = True
|
||
logger.warning(
|
||
"SD card cleanup failed after 3 attempts for %s "
|
||
"(network/auth/transient error — file may linger on SD card)",
|
||
remote_path,
|
||
)
|
||
|
||
if not any_deleted and not any_real_failure and any_not_found:
|
||
# Every candidate said "not here." Either the printer
|
||
# firmware swept the SD card itself (common on A1) or the
|
||
# dispatcher's upload path doesn't match our candidate
|
||
# rule. Either way: nothing to clean up, no warning.
|
||
logger.debug(
|
||
"SD card cleanup: nothing to delete on %s — every candidate returned 550 "
|
||
"(printer likely self-cleaned)",
|
||
printer.name,
|
||
)
|
||
except Exception as e:
|
||
logger.warning("SD card file cleanup failed for printer %s: %s", printer_id, e)
|
||
|
||
log_timing("SD card cleanup")
|
||
|
||
# Update queue item status early — must run before the archive_id early-return
|
||
# so queue items don't get stuck in "printing" when archive lookup fails.
|
||
# Uses run_with_retry to handle SQLite "database is locked" errors (#897).
|
||
queue_item_id = None
|
||
queue_status = None
|
||
queue_auto_off = False
|
||
try:
|
||
from backend.app.core.database import run_with_retry
|
||
from backend.app.models.print_queue import PrintQueueItem
|
||
|
||
async def _update_queue_status(db):
|
||
nonlocal queue_item_id, queue_status, queue_auto_off
|
||
result = await db.execute(
|
||
select(PrintQueueItem)
|
||
.where(PrintQueueItem.printer_id == printer_id)
|
||
.where(PrintQueueItem.status == "printing")
|
||
)
|
||
printing_items = list(result.scalars().all())
|
||
if len(printing_items) > 1:
|
||
logger.warning(
|
||
"BUG: Multiple queue items in 'printing' status for printer %s: %s",
|
||
printer_id,
|
||
[(i.id, i.archive_id, i.library_file_id) for i in printing_items],
|
||
)
|
||
item = printing_items[0] if printing_items else None
|
||
if item:
|
||
queue_status = data.get("status", "completed")
|
||
# MQTT sends "aborted" for cancelled prints; normalise to
|
||
# "cancelled" so it matches the queue schema Literal.
|
||
if queue_status == "aborted":
|
||
queue_status = "cancelled"
|
||
item.status = queue_status
|
||
item.completed_at = datetime.now(timezone.utc)
|
||
if queue_status == "failed" and not item.error_message:
|
||
item.error_message = _format_hms_error_summary(data.get("hms_errors") or [])
|
||
|
||
# Bump usage counters on the source library file so admins can
|
||
# sort by "last printed" and (eventually) auto-purge stale
|
||
# files — #1008.
|
||
await _bump_library_file_usage_if_completed(db, item, queue_status)
|
||
|
||
await db.commit()
|
||
queue_item_id = item.id
|
||
queue_auto_off = item.auto_off_after
|
||
logger.info("Updated queue item %s status to %s", item.id, queue_status)
|
||
|
||
await run_with_retry(_update_queue_status, label="queue status update")
|
||
|
||
# Post-commit side effects (notifications, MQTT relay, auto-off) use
|
||
# their own sessions and have their own error handling — no retry needed.
|
||
if queue_item_id is not None:
|
||
# MQTT relay - publish queue job completed
|
||
try:
|
||
printer_info = printer_manager.get_printer(printer_id)
|
||
await mqtt_relay.on_queue_job_completed(
|
||
job_id=queue_item_id,
|
||
filename=filename or subtask_name,
|
||
printer_id=printer_id,
|
||
printer_name=printer_info.name if printer_info else "Unknown",
|
||
status=queue_status,
|
||
)
|
||
except Exception:
|
||
pass # Don't fail if MQTT fails
|
||
|
||
# Check if queue is now empty and send notification
|
||
try:
|
||
from sqlalchemy import func as sa_func
|
||
|
||
async with async_session() as db:
|
||
count_result = await db.execute(
|
||
select(sa_func.count(PrintQueueItem.id)).where(PrintQueueItem.status == "pending")
|
||
)
|
||
pending_count = count_result.scalar() or 0
|
||
|
||
if pending_count == 0:
|
||
today_start = datetime.now(timezone.utc).replace(hour=0, minute=0, second=0, microsecond=0)
|
||
completed_result = await db.execute(
|
||
select(sa_func.count(PrintQueueItem.id)).where(
|
||
PrintQueueItem.status.in_(["completed", "failed", "skipped"]),
|
||
PrintQueueItem.completed_at >= today_start,
|
||
)
|
||
)
|
||
completed_count = completed_result.scalar() or 1
|
||
|
||
await notification_service.on_queue_completed(
|
||
completed_count=completed_count,
|
||
db=db,
|
||
)
|
||
except Exception:
|
||
pass # Don't fail if notification fails
|
||
|
||
# Handle auto_off_after - power off printer if the queue item opted
|
||
# in. Delegates to the smart-plug manager so the off honours each
|
||
# plug's configured strategy (time delay or temperature threshold),
|
||
# is cancelled if the printer starts printing again, and never cuts
|
||
# power on a loaded print (#1890). Previously an inline block here
|
||
# hardcoded a 50°C / 600s cooldown wait and powered off on the
|
||
# timeout regardless of print state — cutting a touchscreen reprint.
|
||
if queue_auto_off:
|
||
try:
|
||
async with async_session() as db:
|
||
await smart_plug_manager.schedule_off_after_queue_job(printer_id, db)
|
||
except Exception as e:
|
||
logger.warning("Failed to schedule queue auto-off for printer %s: %s", printer_id, e)
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning(f"Queue item update failed: {e}")
|
||
|
||
log_timing("Queue item update")
|
||
|
||
# Register bed cooldown waiter (event-driven via on_bed_temp_update callback).
|
||
# Must run before archive_id early-return so it fires for all prints (including
|
||
# prints started from BambuStudio/touchscreen that have no archive).
|
||
if data.get("status") == "completed":
|
||
try:
|
||
from backend.app.api.routes.settings import get_setting
|
||
|
||
async with async_session() as db:
|
||
threshold_str = await get_setting(db, "bed_cooled_threshold")
|
||
threshold = float(threshold_str) if threshold_str else 35.0
|
||
|
||
# Check if any provider has on_bed_cooled enabled (skip registration if none)
|
||
async with async_session() as db:
|
||
providers = await notification_service._get_providers_for_event(db, "on_bed_cooled", printer_id)
|
||
if providers:
|
||
_bed_cool_waiters[printer_id] = {
|
||
"threshold": threshold,
|
||
"filename": filename or subtask_name or "",
|
||
"registered_at": time.time(),
|
||
}
|
||
logger.info(
|
||
"[BED-COOL] Registered waiter for printer %s (threshold: %.0f°C)",
|
||
printer_id,
|
||
threshold,
|
||
)
|
||
else:
|
||
logger.debug("[BED-COOL] No providers enabled for bed_cooled on printer %s", printer_id)
|
||
except Exception as e:
|
||
logger.warning("[BED-COOL] Failed to register waiter: %s", e)
|
||
|
||
# --- Track filament consumption (must run before archive_id early-return so usage
|
||
# is recorded even when auto-archive is disabled) ---
|
||
usage_results: list[dict] = []
|
||
# Prefer ams_mapping captured from MQTT request topic (works for all print sources)
|
||
stored_ams_mapping = data.get("ams_mapping")
|
||
# Fallback to _print_ams_mappings for queue/reprint (set before print starts)
|
||
if not stored_ams_mapping and archive_id:
|
||
stored_ams_mapping = _print_ams_mappings.pop(archive_id, None)
|
||
|
||
# Always drain the plate_id register on completion — the session already
|
||
# consumed it at print-start injection; leaving it would leak into the next
|
||
# print on the same archive_id (rare but possible with reprints) (#1697).
|
||
# Capture the popped value so the completion notification can scope the
|
||
# archive-level (summed-across-plates per #1593) filament + time totals
|
||
# down to the single plate that was actually printed (#1785).
|
||
notify_plate_id: int | None = None
|
||
if archive_id:
|
||
notify_plate_id = _print_plate_ids.pop(archive_id, None)
|
||
|
||
# Internal inventory: track AMS remain% deltas (skip if Spoolman handles usage)
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.api.routes.settings import get_setting
|
||
|
||
_spoolman_on = await get_setting(db, "spoolman_enabled")
|
||
if not _spoolman_on or _spoolman_on.lower() != "true":
|
||
from backend.app.services.usage_tracker import on_print_complete as usage_on_print_complete
|
||
|
||
async with async_session() as db:
|
||
usage_results = await usage_on_print_complete(
|
||
printer_id,
|
||
data,
|
||
printer_manager,
|
||
db,
|
||
archive_id=archive_id,
|
||
ams_mapping=stored_ams_mapping,
|
||
)
|
||
if usage_results:
|
||
await ws_manager.broadcast(
|
||
{
|
||
"type": "spool_usage_logged",
|
||
"printer_id": printer_id,
|
||
"usage": usage_results,
|
||
}
|
||
)
|
||
log_timing("Usage tracker")
|
||
|
||
except Exception as e:
|
||
logger.warning("Usage tracker on_print_complete failed: %s", e)
|
||
|
||
# Spoolman: report filament usage (requires archive_id for tracking data lookup)
|
||
if archive_id:
|
||
if data.get("status") == "completed":
|
||
try:
|
||
await _report_spoolman_usage(printer_id, archive_id)
|
||
log_timing("Spoolman usage report")
|
||
except Exception as e:
|
||
logger.warning("Spoolman usage reporting failed: %s", e)
|
||
else:
|
||
# Report partial usage if tracking data exists (only stored when weight sync is disabled)
|
||
try:
|
||
async with async_session() as db:
|
||
await _cleanup_spoolman_tracking(
|
||
printer_id,
|
||
archive_id,
|
||
db,
|
||
last_layer_num=data.get("last_layer_num"),
|
||
last_progress=data.get("last_progress"),
|
||
)
|
||
except Exception as e:
|
||
logger.debug("[SPOOLMAN] Cleanup failed: %s", e)
|
||
|
||
log_timing("Filament usage tracking")
|
||
|
||
if not archive_id:
|
||
logger.warning("Could not find archive for print complete: filename=%s, subtask=%s", filename, subtask_name)
|
||
|
||
# Still send print-complete/failed/stopped notifications even without an archive.
|
||
# Try to enrich with queue/library-file data so user-specific emails work too.
|
||
async def _notify_no_archive():
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.models.library import LibraryFile
|
||
from backend.app.models.print_queue import PrintQueueItem
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer_obj = result.scalar_one_or_none()
|
||
p_name = printer_obj.name if printer_obj else f"Printer {printer_id}"
|
||
|
||
# Try to find the most-recent queue item for this printer so we can
|
||
# recover created_by_id and estimated print time.
|
||
# NOTE: By the time this task runs the queue item status has already
|
||
# been updated to a terminal state (completed/failed/cancelled), so
|
||
# we look for recently-completed items (within the last 5 minutes).
|
||
no_archive_data: dict | None = None
|
||
try:
|
||
cutoff = datetime.now(timezone.utc) - timedelta(minutes=5)
|
||
q_result = await db.execute(
|
||
select(PrintQueueItem)
|
||
.where(PrintQueueItem.printer_id == printer_id)
|
||
.where(PrintQueueItem.status.in_(["completed", "failed", "cancelled"]))
|
||
.where(PrintQueueItem.completed_at >= cutoff)
|
||
.order_by(PrintQueueItem.completed_at.desc())
|
||
.limit(1)
|
||
)
|
||
queue_item = q_result.scalar_one_or_none()
|
||
if queue_item:
|
||
no_archive_data = {"created_by_id": queue_item.created_by_id}
|
||
# Pull estimated time from library file when available
|
||
if queue_item.library_file_id:
|
||
lib_result = await db.execute(
|
||
select(LibraryFile).where(LibraryFile.id == queue_item.library_file_id)
|
||
)
|
||
lib_file = lib_result.scalar_one_or_none()
|
||
if lib_file and lib_file.print_time_seconds:
|
||
no_archive_data["print_time_seconds"] = lib_file.print_time_seconds
|
||
except Exception as lookup_err:
|
||
logger.debug(
|
||
"[NOTIFY-BG] Could not look up queue item for no-archive notification: %s", lookup_err
|
||
)
|
||
|
||
# Enrich with usage tracker results (captured in enclosing scope)
|
||
if usage_results:
|
||
if no_archive_data is None:
|
||
no_archive_data = {}
|
||
total_from_usage = sum(r.get("weight_used", 0) for r in usage_results)
|
||
if total_from_usage > 0:
|
||
no_archive_data["actual_filament_grams"] = round(total_from_usage, 1)
|
||
no_archive_data["usage_results"] = usage_results
|
||
|
||
# Try MQTT remaining_time for print duration when no queue/library data
|
||
if no_archive_data and not no_archive_data.get("print_time_seconds"):
|
||
mqtt_remaining = data.get("remaining_time")
|
||
if mqtt_remaining and isinstance(mqtt_remaining, (int, float)) and mqtt_remaining > 0:
|
||
no_archive_data["print_time_seconds"] = int(mqtt_remaining)
|
||
|
||
ps = data.get("status", "completed")
|
||
logger.info(
|
||
"[NOTIFY-BG] Sending notification without archive: printer=%s, status=%s", printer_id, ps
|
||
)
|
||
await notification_service.on_print_complete(
|
||
printer_id, p_name, ps, data, db, archive_data=no_archive_data
|
||
)
|
||
|
||
# Send user-specific email if we have a created_by_id
|
||
if no_archive_data and no_archive_data.get("created_by_id"):
|
||
raw_filename = data.get("subtask_name") or data.get("filename", "Unknown")
|
||
await _dispatch_user_print_email(
|
||
ps,
|
||
no_archive_data["created_by_id"],
|
||
p_name,
|
||
raw_filename,
|
||
db,
|
||
)
|
||
logger.info("[NOTIFY-BG] Completed (no-archive path)")
|
||
except Exception as e:
|
||
logger.warning("[NOTIFY-BG] Failed to send notification without archive: %s", e, exc_info=True)
|
||
|
||
spawn_background_task(_notify_no_archive(), name="notify-no-archive")
|
||
return
|
||
|
||
log_timing("Archive lookup")
|
||
|
||
# Update archive status
|
||
logger.info("[ARCHIVE] Updating archive %s status...", archive_id)
|
||
try:
|
||
async with async_session() as db:
|
||
service = ArchiveService(db)
|
||
status = data.get("status", "completed")
|
||
|
||
hms_errors = data.get("hms_errors", []) if status == "failed" else None
|
||
if hms_errors:
|
||
logger.info("[ARCHIVE] HMS errors at failure: %s", hms_errors)
|
||
failure_reason = derive_failure_reason(status, hms_errors)
|
||
if data.get("_reconciled"):
|
||
# A reconciled completion closes out a stale archive at
|
||
# reconnect — it is not a user action, so don't mislabel it
|
||
# "User cancelled". The "Stale" prefix matches the existing
|
||
# stale-cleanup convention and records that the real end time
|
||
# is unknown, which is also why its logged duration is 0 (#2592).
|
||
failure_reason = "Stale - reconciled after reconnect, end time unknown"
|
||
if failure_reason:
|
||
logger.info("[ARCHIVE] failure_reason=%r (status=%s)", failure_reason, status)
|
||
elif status == "failed" and hms_errors:
|
||
logger.info("[ARCHIVE] HMS errors present but none matched a known failure-reason short code")
|
||
|
||
await service.update_archive_status(
|
||
archive_id,
|
||
status=status,
|
||
completed_at=(
|
||
datetime.now(timezone.utc) if status in ("completed", "failed", "aborted", "cancelled") else None
|
||
),
|
||
failure_reason=failure_reason,
|
||
)
|
||
logger.info(
|
||
"[ARCHIVE] Archive %s status updated to %s, failure_reason=%s", archive_id, status, failure_reason
|
||
)
|
||
|
||
await ws_manager.send_archive_updated(
|
||
{
|
||
"id": archive_id,
|
||
"status": status,
|
||
}
|
||
)
|
||
logger.info("[ARCHIVE] WebSocket notification sent for archive %s", archive_id)
|
||
|
||
# MQTT relay - publish archive updated
|
||
try:
|
||
await mqtt_relay.on_archive_updated(
|
||
archive_id=archive_id,
|
||
print_name=filename or subtask_name,
|
||
status=status,
|
||
)
|
||
except Exception:
|
||
pass # Don't fail if MQTT fails
|
||
except Exception as e:
|
||
logger.error("[ARCHIVE] Failed to update archive %s status: %s", archive_id, e, exc_info=True)
|
||
# Continue with other operations even if archive update fails
|
||
|
||
log_timing("Archive status update")
|
||
|
||
# Write independent print log entry (separate table, never touches archives)
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.models.archive import PrintArchive
|
||
from backend.app.services.print_log import write_log_entry
|
||
|
||
archive = await db.get(PrintArchive, archive_id)
|
||
if archive:
|
||
# Back-fill created_by_id on reprint (#730): reprint reuses the
|
||
# source archive row rather than creating a new one, so an
|
||
# archive that was auto-created from a printer-initiated
|
||
# print (created_by_id=NULL) would otherwise stay unattributed
|
||
# forever. When we have a print-session user AND the archive
|
||
# has no attribution yet, credit the current user. Never
|
||
# overwrite an existing attribution — the original uploader
|
||
# keeps ownership.
|
||
_print_user_id = _print_user_info.get("user_id") if _print_user_info else None
|
||
if archive.created_by_id is None and _print_user_id is not None:
|
||
archive.created_by_id = _print_user_id
|
||
p_info = printer_manager.get_printer(printer_id)
|
||
# Per-run actuals — written to PrintLogEntry so stats reflect
|
||
# what THIS print actually used, not the source archive's
|
||
# first-run values (#1378). Helper handles the partial-print
|
||
# math (failed / cancelled / stopped get scaled to progress
|
||
# or to tracked spool deltas).
|
||
_run_status = data.get("status", "completed")
|
||
# #2614: scope the per-run estimate to the printed plate. For a
|
||
# multi-plate 3MF dispatched one plate at a time, the archive's
|
||
# filament/cost are the whole-file totals; the PrintLogEntry must
|
||
# reflect only this plate. No effect on single-plate archives (the
|
||
# plate estimate equals the whole-file value) or on the tracker
|
||
# path (measured spool deltas win in _compute_run_filament_grams).
|
||
_est_full_path = (
|
||
app_settings.base_dir / archive.file_path if archive.file_path else None
|
||
) # SEC-PATH-OK: archive.file_path is DB-stored, internally generated
|
||
_est_grams, _est_cost = _plate_scoped_run_estimate(archive, _est_full_path)
|
||
_run_grams = _compute_run_filament_grams(
|
||
_run_status,
|
||
_est_grams,
|
||
data.get("progress"),
|
||
usage_results,
|
||
)
|
||
|
||
# Per-run cost — prefer usage_results sum. For partial prints
|
||
# we deliberately skip the topup-to-estimate logic in
|
||
# usage_tracker (which assumes the print completed); the raw
|
||
# tracked-spool sum is closer to what THIS run actually cost.
|
||
_run_cost: float | None = None
|
||
if usage_results:
|
||
_run_cost = sum(r.get("cost") or 0 for r in usage_results) or None
|
||
if _run_cost is None and _run_status == "completed":
|
||
_run_cost = _est_cost
|
||
|
||
await write_log_entry(
|
||
db,
|
||
archive_id=archive.id,
|
||
status=_run_status,
|
||
print_name=archive.print_name,
|
||
printer_name=p_info.name if p_info else None,
|
||
printer_id=printer_id,
|
||
started_at=archive.started_at,
|
||
completed_at=archive.completed_at,
|
||
filament_type=archive.filament_type,
|
||
filament_color=archive.filament_color,
|
||
filament_used_grams=_run_grams,
|
||
cost=_run_cost,
|
||
failure_reason=archive.failure_reason,
|
||
thumbnail_path=archive.thumbnail_path,
|
||
created_by_id=archive.created_by_id,
|
||
created_by_username=_print_user_info.get("username") if _print_user_info else None,
|
||
# Reconciled completions have an unknown real end time —
|
||
# log 0 duration instead of the whole disconnect gap (#2592).
|
||
reconciled=bool(data.get("_reconciled")),
|
||
)
|
||
await db.commit()
|
||
logger.info("[PRINT_LOG] Log entry written for archive %s", archive_id)
|
||
except Exception as e:
|
||
logger.warning("[PRINT_LOG] Failed to write log entry for archive %s: %s", archive_id, e)
|
||
|
||
log_timing("Print log entry")
|
||
|
||
# Run slow operations as background tasks to avoid blocking the event loop
|
||
# These operations can take 5-10+ seconds and would freeze the UI if awaited
|
||
|
||
async def _background_energy_calculation():
|
||
"""Calculate and save energy usage in background.
|
||
|
||
Reads the starting kWh from the archive row (#941: persisted so a mid-print
|
||
backend restart no longer loses per-print energy data).
|
||
"""
|
||
try:
|
||
logger.info("[ENERGY-BG] Starting energy calculation for archive %s", archive_id)
|
||
async with async_session() as db:
|
||
from backend.app.models.archive import PrintArchive
|
||
|
||
archive = await db.get(PrintArchive, archive_id)
|
||
if archive is None:
|
||
logger.warning("[ENERGY-BG] Archive %s no longer exists", archive_id)
|
||
return
|
||
starting_kwh = archive.energy_start_kwh
|
||
if starting_kwh is None:
|
||
logger.info("[ENERGY-BG] No start kWh recorded for archive %s", archive_id)
|
||
return
|
||
|
||
plug_result = await db.execute(select(SmartPlug).where(SmartPlug.printer_id == printer_id))
|
||
plug = plug_result.scalar_one_or_none()
|
||
if plug is None:
|
||
logger.info("[ENERGY-BG] No smart plug for printer %s", printer_id)
|
||
return
|
||
|
||
energy = await _get_plug_energy(plug, db)
|
||
logger.info("[ENERGY-BG] Energy response: %s", energy)
|
||
if not energy or energy.get("total") is None:
|
||
logger.warning("[ENERGY-BG] No 'total' in energy response")
|
||
return
|
||
|
||
energy_used = round(energy["total"] - starting_kwh, 4)
|
||
logger.info("[ENERGY-BG] Per-print energy: %s kWh", energy_used)
|
||
if energy_used < 0:
|
||
logger.warning(
|
||
"[ENERGY-BG] Negative energy delta for archive %s (start=%s, end=%s) — counter reset?",
|
||
archive_id,
|
||
starting_kwh,
|
||
energy["total"],
|
||
)
|
||
return
|
||
|
||
from backend.app.api.routes.settings import get_setting
|
||
|
||
energy_cost_per_kwh = await get_setting(db, "energy_cost_per_kwh")
|
||
cost_per_kwh = float(energy_cost_per_kwh) if energy_cost_per_kwh else 0.15
|
||
energy_cost_value = round(energy_used * cost_per_kwh, 3)
|
||
|
||
# First-run-only overwrite of archive.energy_kwh / energy_cost so a
|
||
# reprint doesn't visually clobber the source archive's energy data
|
||
# (#1378). Reprint energy lives in the matching PrintLogEntry below.
|
||
from sqlalchemy import func
|
||
|
||
from backend.app.models.print_log import PrintLogEntry
|
||
|
||
existing_runs = await db.scalar(
|
||
select(func.count(PrintLogEntry.id)).where(PrintLogEntry.archive_id == archive_id)
|
||
)
|
||
if (existing_runs or 0) <= 1:
|
||
# 0 = legacy archive that pre-dates per-run logging; 1 = the row
|
||
# we just wrote for THIS print. Either way it's the first run.
|
||
archive.energy_kwh = energy_used
|
||
archive.energy_cost = energy_cost_value
|
||
|
||
# Backfill the latest PrintLogEntry for this archive with energy
|
||
# (write_log_entry above ran before this background task completed,
|
||
# so energy fields are still NULL on that row).
|
||
latest_run = await db.execute(
|
||
select(PrintLogEntry)
|
||
.where(PrintLogEntry.archive_id == archive_id)
|
||
.order_by(PrintLogEntry.id.desc())
|
||
.limit(1)
|
||
)
|
||
run_row = latest_run.scalar_one_or_none()
|
||
if run_row is not None:
|
||
run_row.energy_kwh = energy_used
|
||
run_row.energy_cost = energy_cost_value
|
||
|
||
await db.commit()
|
||
logger.info("[ENERGY-BG] Saved: %s kWh, cost=%s", energy_used, energy_cost_value)
|
||
except Exception as e:
|
||
logger.warning("[ENERGY-BG] Failed: %s", e)
|
||
|
||
async def _background_finish_photo() -> str | None:
|
||
"""Capture finish photo in background. Returns photo filename if captured."""
|
||
try:
|
||
logger.info("[PHOTO-BG] Starting finish photo capture for archive %s", archive_id)
|
||
|
||
from backend.app.api.routes.camera import _active_chamber_streams, _active_streams, get_buffered_frame
|
||
|
||
# Read phase: settings + printer + archive in a short session, released
|
||
# BEFORE the capture pipeline below. The capture (timelapse last-frame,
|
||
# stage-22 wait, external-camera grab, or a fresh RTSP shot) can take
|
||
# tens of seconds; holding this session across it pinned one pooled
|
||
# connection idle-in-transaction per finishing print (issue #2572).
|
||
async with async_session() as db:
|
||
from backend.app.api.routes.settings import get_setting
|
||
from backend.app.models.archive import PrintArchive
|
||
from backend.app.models.printer import Printer
|
||
|
||
capture_enabled = await get_setting(db, "capture_finish_photo")
|
||
if capture_enabled is not None and capture_enabled.lower() != "true":
|
||
return None
|
||
if not archive_id:
|
||
return None
|
||
|
||
printer = (await db.execute(select(Printer).where(Printer.id == printer_id))).scalar_one_or_none()
|
||
archive = (
|
||
await db.execute(select(PrintArchive).where(PrintArchive.id == archive_id))
|
||
).scalar_one_or_none()
|
||
|
||
if not printer or not archive:
|
||
return None
|
||
|
||
import uuid
|
||
from datetime import datetime
|
||
from pathlib import Path
|
||
|
||
if archive.file_path:
|
||
archive_dir = app_settings.base_dir / Path(archive.file_path).parent
|
||
else:
|
||
logger.warning("[PHOTO-BG] Archive %s has no file_path, using fallback dir", archive_id)
|
||
archive_dir = app_settings.archive_dir / str(archive.id)
|
||
photo_filename = None
|
||
|
||
# Prefer the timelapse last-frame source when a timelapse was
|
||
# recording — it captures the moment after the toolhead parks
|
||
# but before the bed drops, which the live-camera grab below
|
||
# would miss (#1397). Skipped for external cameras (those have
|
||
# their own framing and don't see a Bambu timelapse). Only
|
||
# runs when the USER explicitly enabled timelapse for this
|
||
# print — #1721 removed Bambuddy's force-on at dispatch
|
||
# because it caused per-layer nozzle parking on Smooth-mode
|
||
# slicer profiles.
|
||
prefer_timelapse_source = bool(data.get("timelapse_was_active")) and not (
|
||
printer.external_camera_enabled and printer.external_camera_url
|
||
)
|
||
|
||
if prefer_timelapse_source:
|
||
photo_filename = await _capture_finish_photo_from_timelapse(
|
||
archive_id=archive_id,
|
||
archive_dir=archive_dir,
|
||
)
|
||
|
||
# #1721: replacement framing path — on_finish_photo_moment
|
||
# pre-captured a frame at the stage-22 / FINISH edge (toolhead
|
||
# parked, bed not yet dropped) and cached the JPEG bytes in
|
||
# _stage22_finish_frames. Consume them now so the saved photo
|
||
# has the better framing instead of the post-bed-drop angle
|
||
# the live-camera fallback below would give.
|
||
if not photo_filename:
|
||
# #1790: on the FINISH-state fallback path the producer
|
||
# task is dispatched back-to-back with this consumer, so
|
||
# a bare pop would race past with an empty result and
|
||
# the RTSP fallback below would collide with the
|
||
# producer's still-in-flight grab (single-client RTSP
|
||
# on Bambu printers). Wait for the producer to finish
|
||
# or give up before touching the cache.
|
||
in_flight = _stage22_finish_in_flight.pop(printer_id, None)
|
||
if in_flight is not None:
|
||
try:
|
||
await asyncio.wait_for(in_flight.wait(), timeout=20.0)
|
||
except asyncio.TimeoutError:
|
||
logger.warning(
|
||
"[PHOTO-BG] timed out waiting for stage-22 producer for printer %s — proceeding to fallback",
|
||
printer_id,
|
||
)
|
||
cached_frame = _stage22_finish_frames.pop(printer_id, None)
|
||
if cached_frame:
|
||
photos_dir = archive_dir / "photos"
|
||
photos_dir.mkdir(parents=True, exist_ok=True)
|
||
timestamp = datetime.now().strftime("%Y%m%d_%H%M%S")
|
||
photo_filename = f"finish_{timestamp}_{uuid.uuid4().hex[:8]}.jpg"
|
||
photo_path = photos_dir / photo_filename
|
||
await asyncio.to_thread(photo_path.write_bytes, cached_frame)
|
||
logger.info(
|
||
"[PHOTO-BG] Saved stage-22 pre-captured frame: %s (%d bytes)",
|
||
photo_filename,
|
||
len(cached_frame),
|
||
)
|
||
|
||
# Fallback chain: external camera → buffered live frame →
|
||
# fresh RTSP capture. Only runs if the timelapse path above
|
||
# didn't already produce a photo.
|
||
if not photo_filename:
|
||
if printer.external_camera_enabled and printer.external_camera_url:
|
||
logger.info("[PHOTO-BG] Using external camera")
|
||
from backend.app.services.external_camera import capture_frame
|
||
|
||
frame_data = await capture_frame(
|
||
printer.external_camera_url,
|
||
printer.external_camera_type or "mjpeg",
|
||
snapshot_url=printer.external_camera_snapshot_url,
|
||
)
|
||
if frame_data:
|
||
photos_dir = archive_dir / "photos"
|
||
photos_dir.mkdir(parents=True, exist_ok=True)
|
||
timestamp = datetime.now().strftime("%Y%m%d_%H%M%S")
|
||
photo_filename = f"finish_{timestamp}_{uuid.uuid4().hex[:8]}.jpg"
|
||
photo_path = photos_dir / photo_filename
|
||
await asyncio.to_thread(photo_path.write_bytes, frame_data)
|
||
logger.info("[PHOTO-BG] Saved external camera frame: %s", photo_filename)
|
||
else:
|
||
# Check if camera stream is active - use buffered frame to avoid freeze
|
||
# Check both RTSP streams (_active_streams) and chamber image streams (_active_chamber_streams)
|
||
active_for_printer = [k for k in _active_streams if k.startswith(f"{printer_id}-")]
|
||
active_chamber_for_printer = [k for k in _active_chamber_streams if k.startswith(f"{printer_id}-")]
|
||
buffered_frame = get_buffered_frame(printer_id)
|
||
|
||
if (active_for_printer or active_chamber_for_printer) and buffered_frame:
|
||
# Use frame from active stream
|
||
logger.info("[PHOTO-BG] Using buffered frame from active stream")
|
||
photos_dir = archive_dir / "photos"
|
||
photos_dir.mkdir(parents=True, exist_ok=True)
|
||
timestamp = datetime.now().strftime("%Y%m%d_%H%M%S")
|
||
photo_filename = f"finish_{timestamp}_{uuid.uuid4().hex[:8]}.jpg"
|
||
photo_path = photos_dir / photo_filename
|
||
await asyncio.to_thread(photo_path.write_bytes, buffered_frame)
|
||
logger.info("[PHOTO-BG] Saved buffered frame: %s", photo_filename)
|
||
else:
|
||
# No active stream - capture new frame
|
||
from backend.app.services.camera import capture_finish_photo
|
||
|
||
photo_filename = await capture_finish_photo(
|
||
printer_id=printer_id,
|
||
ip_address=printer.ip_address,
|
||
access_code=printer.access_code,
|
||
model=printer.model,
|
||
archive_dir=archive_dir,
|
||
)
|
||
|
||
# Write phase: attach the photo in a fresh short-lived session.
|
||
if photo_filename:
|
||
async with async_session() as db:
|
||
from backend.app.models.archive import PrintArchive
|
||
|
||
arch = await db.get(PrintArchive, archive_id)
|
||
if arch is not None:
|
||
photos = arch.photos or []
|
||
photos.append(photo_filename)
|
||
arch.photos = photos
|
||
await db.commit()
|
||
logger.info("[PHOTO-BG] Saved: %s", photo_filename)
|
||
return photo_filename
|
||
return None
|
||
except Exception as e:
|
||
logger.warning("[PHOTO-BG] Failed: %s", e)
|
||
return None
|
||
|
||
spawn_background_task(_background_energy_calculation(), name="background-energy-calc")
|
||
# Photo capture task - result will be used by notifications
|
||
photo_task = spawn_background_task(_background_finish_photo(), name="background-finish-photo")
|
||
log_timing("Background tasks scheduled (energy, photo)")
|
||
|
||
# Also run smart plug, notifications, and maintenance as background tasks
|
||
print_status = data.get("status", "completed")
|
||
|
||
async def _background_smart_plug():
|
||
"""Handle smart plug automation in background."""
|
||
try:
|
||
logger.info("[AUTO-OFF-BG] Starting smart plug automation for printer %s", printer_id)
|
||
async with async_session() as db:
|
||
await smart_plug_manager.on_print_complete(printer_id, print_status, db)
|
||
logger.info("[AUTO-OFF-BG] Completed")
|
||
except Exception as e:
|
||
logger.warning("[AUTO-OFF-BG] Failed: %s", e)
|
||
|
||
async def _background_notifications(finish_photo_filename: str | None = None):
|
||
"""Send print complete notifications in background."""
|
||
try:
|
||
logger.info(
|
||
"[NOTIFY-BG] Starting notifications for printer %s, photo=%s", printer_id, finish_photo_filename
|
||
)
|
||
async with async_session() as db:
|
||
from backend.app.models.archive import PrintArchive
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
printer_name = printer.name if printer else f"Printer {printer_id}"
|
||
|
||
archive_data = None
|
||
if archive_id:
|
||
archive_result = await db.execute(select(PrintArchive).where(PrintArchive.id == archive_id))
|
||
archive = archive_result.scalar_one_or_none()
|
||
if archive:
|
||
# Actual elapsed time from started_at/completed_at when both are
|
||
# populated (every terminal status sets completed_at after #1198).
|
||
# Falls back to None so the notification path can decide whether to
|
||
# render the slicer estimate as a last resort.
|
||
actual_time_seconds = None
|
||
if archive.started_at and archive.completed_at:
|
||
elapsed = (archive.completed_at - archive.started_at).total_seconds()
|
||
if elapsed > 0:
|
||
actual_time_seconds = int(elapsed)
|
||
|
||
archive_data = {
|
||
"print_time_seconds": archive.print_time_seconds,
|
||
"actual_time_seconds": actual_time_seconds,
|
||
"actual_filament_grams": archive.filament_used_grams,
|
||
"failure_reason": archive.failure_reason,
|
||
"created_by_id": archive.created_by_id,
|
||
}
|
||
|
||
# Scale filament usage for partial prints
|
||
if print_status != "completed" and archive.filament_used_grams:
|
||
progress = data.get("progress") or 0
|
||
scale = _partial_progress_scale(progress)
|
||
archive_data["actual_filament_grams"] = round(archive.filament_used_grams * scale, 1)
|
||
archive_data["progress"] = progress
|
||
|
||
# Pass per-slot data from archive.extra_data
|
||
if archive.extra_data and archive.extra_data.get("filament_slots"):
|
||
slots = archive.extra_data["filament_slots"]
|
||
if print_status != "completed":
|
||
scale = _partial_progress_scale(data.get("progress"))
|
||
slots = [{**s, "used_g": round(s["used_g"] * scale, 1)} for s in slots]
|
||
archive_data["filament_slots"] = slots
|
||
|
||
# Scope project-summed totals down to the plate that was
|
||
# actually printed — see _scope_notification_archive_data_to_plate
|
||
# for the why (#1785).
|
||
archive_data = _scope_notification_archive_data_to_plate(
|
||
archive_data,
|
||
archive.file_path,
|
||
notify_plate_id,
|
||
print_status,
|
||
data.get("progress"),
|
||
app_settings.base_dir,
|
||
)
|
||
|
||
# Enrich filament_grams from usage_results when archive has no 3MF data
|
||
if not archive_data.get("actual_filament_grams") and usage_results:
|
||
total_from_usage = sum(r.get("weight_used", 0) for r in usage_results)
|
||
if total_from_usage > 0:
|
||
archive_data["actual_filament_grams"] = round(total_from_usage, 1)
|
||
|
||
# Pass usage tracker results for AMS slot info in notifications
|
||
if usage_results:
|
||
archive_data["usage_results"] = usage_results
|
||
# Add finish photo URL and image bytes if available
|
||
if finish_photo_filename:
|
||
from backend.app.api.routes.settings import get_setting
|
||
|
||
external_url = await get_setting(db, "external_url")
|
||
if external_url:
|
||
external_url = external_url.rstrip("/")
|
||
archive_data["finish_photo_url"] = (
|
||
f"{external_url}/api/v1/archives/{archive_id}/photos/{finish_photo_filename}"
|
||
)
|
||
else:
|
||
# Fallback to relative URL (won't work for external services)
|
||
archive_data["finish_photo_url"] = (
|
||
f"/api/v1/archives/{archive_id}/photos/{finish_photo_filename}"
|
||
)
|
||
|
||
# Read finish photo bytes for image attachment (e.g. Pushover)
|
||
try:
|
||
from pathlib import Path
|
||
|
||
photo_path = (
|
||
app_settings.base_dir
|
||
/ Path(archive.file_path).parent
|
||
/ "photos"
|
||
/ finish_photo_filename
|
||
)
|
||
if photo_path.exists():
|
||
photo_bytes = await asyncio.to_thread(photo_path.read_bytes)
|
||
if len(photo_bytes) <= 2_500_000:
|
||
archive_data["image_data"] = photo_bytes
|
||
logger.info("[NOTIFY-BG] Loaded finish photo bytes: %s bytes", len(photo_bytes))
|
||
else:
|
||
logger.warning(
|
||
f"[NOTIFY-BG] Finish photo too large for attachment: "
|
||
f"{len(photo_bytes)} bytes"
|
||
)
|
||
except Exception as e:
|
||
logger.warning("[NOTIFY-BG] Failed to read finish photo bytes: %s", e)
|
||
|
||
await notification_service.on_print_complete(
|
||
printer_id, printer_name, print_status, data, db, archive_data=archive_data
|
||
)
|
||
|
||
# Send user-specific email notification
|
||
if archive_data:
|
||
created_by_id = archive_data.get("created_by_id")
|
||
raw_filename = data.get("subtask_name") or data.get("filename", "Unknown")
|
||
await _dispatch_user_print_email(
|
||
print_status,
|
||
created_by_id,
|
||
printer_name,
|
||
raw_filename,
|
||
db,
|
||
)
|
||
|
||
logger.info("[NOTIFY-BG] Completed")
|
||
except Exception as e:
|
||
logger.error("[NOTIFY-BG] Failed: %s", e, exc_info=True)
|
||
|
||
async def _background_maintenance_check():
|
||
"""Check for maintenance due in background."""
|
||
if print_status != "completed":
|
||
return
|
||
try:
|
||
logger.info("[MAINT-BG] Starting maintenance check for printer %s", printer_id)
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
printer_name = printer.name if printer else f"Printer {printer_id}"
|
||
|
||
await ensure_default_types(db)
|
||
overview = await _get_printer_maintenance_internal(printer_id, db, commit=True)
|
||
|
||
items_needing_attention = [
|
||
{"name": item.maintenance_type_name, "is_due": item.is_due, "is_warning": item.is_warning}
|
||
for item in overview.maintenance_items
|
||
if item.enabled and (item.is_due or item.is_warning)
|
||
]
|
||
|
||
if items_needing_attention:
|
||
await notification_service.on_maintenance_due(printer_id, printer_name, items_needing_attention, db)
|
||
logger.info("[MAINT-BG] Sent notification: %s items need attention", len(items_needing_attention))
|
||
|
||
# MQTT relay - publish maintenance alerts
|
||
for item in items_needing_attention:
|
||
try:
|
||
await mqtt_relay.on_maintenance_alert(
|
||
printer_id=printer_id,
|
||
printer_name=printer_name,
|
||
maintenance_type=item["name"],
|
||
current_value=0, # Not easily available here
|
||
threshold=0, # Not easily available here
|
||
)
|
||
except Exception:
|
||
pass # Don't fail if MQTT fails
|
||
else:
|
||
logger.info("[MAINT-BG] Completed (no items need attention)")
|
||
except Exception as e:
|
||
logger.warning("[MAINT-BG] Failed: %s", e)
|
||
|
||
spawn_background_task(_background_smart_plug(), name="background-smart-plug")
|
||
spawn_background_task(_background_maintenance_check(), name="background-maintenance-check")
|
||
|
||
# Notification task waits for photo capture to complete first (with timeout).
|
||
# When a timelapse was recording, photo sourcing polls the per-print
|
||
# timelapse for up to 60s (#1397) — extend the budget so the notification
|
||
# carries the correct bed-up photo instead of falling through to the
|
||
# live-cam grab. Adds ~30s of notification latency at worst on slow links.
|
||
photo_wait_timeout = 75 if data.get("timelapse_was_active") else 45
|
||
|
||
async def _photo_then_notify():
|
||
"""Wait for photo capture, then send notification with photo URL."""
|
||
finish_photo = None
|
||
try:
|
||
finish_photo = await asyncio.wait_for(photo_task, timeout=photo_wait_timeout)
|
||
logger.info("[PHOTO-NOTIFY] Photo task returned: %s", finish_photo)
|
||
except TimeoutError:
|
||
logger.warning(
|
||
"[PHOTO-NOTIFY] Photo capture timed out after %ss, sending notification without photo",
|
||
photo_wait_timeout,
|
||
)
|
||
except Exception as e:
|
||
logger.warning("[PHOTO-NOTIFY] Photo task failed: %s", e)
|
||
try:
|
||
await _background_notifications(finish_photo)
|
||
except Exception as e:
|
||
logger.error("[PHOTO-NOTIFY] Notification sending failed: %s", e, exc_info=True)
|
||
|
||
spawn_background_task(_photo_then_notify(), name="photo-then-notify")
|
||
|
||
# Stitch external camera layer timelapse if session was active
|
||
print_status = data.get("status", "completed")
|
||
|
||
async def _background_layer_timelapse():
|
||
"""Stitch layer timelapse and attach to archive."""
|
||
from backend.app.services.layer_timelapse import cancel_session, on_print_complete as tl_complete
|
||
|
||
try:
|
||
if print_status == "completed":
|
||
logger.info("[LAYER-TL] Stitching layer timelapse for printer %s", printer_id)
|
||
timelapse_path = await tl_complete(printer_id)
|
||
if timelapse_path and archive_id:
|
||
logger.info("[LAYER-TL] Attaching timelapse %s to archive %s", timelapse_path, archive_id)
|
||
async with async_session() as db:
|
||
service = ArchiveService(db)
|
||
timelapse_data = await asyncio.to_thread(timelapse_path.read_bytes)
|
||
await service.attach_timelapse(archive_id, timelapse_data, "layer_timelapse.mp4")
|
||
# Clean up the temp file
|
||
await asyncio.to_thread(timelapse_path.unlink, missing_ok=True)
|
||
logger.info("[LAYER-TL] Layer timelapse attached successfully")
|
||
elif timelapse_path:
|
||
# Timelapse created but no archive - just clean up
|
||
await asyncio.to_thread(timelapse_path.unlink, missing_ok=True)
|
||
else:
|
||
# Print failed or cancelled - cancel timelapse session
|
||
cancel_session(printer_id)
|
||
logger.info(
|
||
"[LAYER-TL] Cancelled layer timelapse for printer %s (status: %s)", printer_id, print_status
|
||
)
|
||
except Exception as e:
|
||
logger.warning("[LAYER-TL] Failed: %s", e)
|
||
# Try to cancel session on error
|
||
try:
|
||
cancel_session(printer_id)
|
||
except Exception:
|
||
pass # Best-effort timelapse session cancellation on error
|
||
|
||
spawn_background_task(_background_layer_timelapse(), name="background-layer-timelapse")
|
||
|
||
log_timing("All background tasks scheduled")
|
||
|
||
# Auto-scan for timelapse if recording was active during the print
|
||
if archive_id and data.get("timelapse_was_active") and data.get("status") == "completed":
|
||
logger.info("[TIMELAPSE] Timelapse was active during print, scheduling auto-scan for archive %s", archive_id)
|
||
# Schedule timelapse scan as background task with retries
|
||
# The printer needs time to encode the video after print completion
|
||
baseline = _timelapse_baselines.pop(printer_id, None)
|
||
spawn_background_task(
|
||
_scan_for_timelapse_with_retries(archive_id, baseline),
|
||
name=f"scan-timelapse-{archive_id}",
|
||
)
|
||
log_timing("Timelapse scan scheduled")
|
||
|
||
logger.info("[CALLBACK] on_print_complete finished for printer %s, archive %s", printer_id, archive_id)
|
||
|
||
|
||
# AMS sensor history recording
|
||
_ams_history_task: asyncio.Task | None = None
|
||
AMS_HISTORY_INTERVAL = 300 # Record every 5 minutes
|
||
AMS_HISTORY_RETENTION_DAYS = 30 # Keep data for 30 days
|
||
_ams_cleanup_counter = 0 # Track recordings to trigger periodic cleanup
|
||
# Track alarm cooldowns (printer_id:ams_id:type -> last_alarm_time)
|
||
_ams_alarm_cooldown: dict[str, datetime] = {}
|
||
AMS_ALARM_COOLDOWN_MINUTES = 60 # Don't send same alarm more than once per hour
|
||
|
||
|
||
def _ams_has_filament(ams_data: dict) -> bool:
|
||
"""True if this AMS unit has at least one tray slot holding filament.
|
||
|
||
Bambu firmware reports loaded slots via `tray_exist_bits`, a per-AMS hex
|
||
bitmap (one bit per tray slot — bit set = spool present). Empty AMS units
|
||
still report sensor readings, but those readings are ambient and not
|
||
actionable: no filament to dry, no humidity to push down. #1619 — gate
|
||
humidity/temperature alarms on this check so empty units don't generate
|
||
hourly noise. Sensor history still records regardless so the UI charts
|
||
stay continuous.
|
||
|
||
Fallback path inspects the `tray` array's `tray_type` fields for setups
|
||
where `tray_exist_bits` is missing (some early-connection pushall shapes).
|
||
"""
|
||
bits = ams_data.get("tray_exist_bits")
|
||
if isinstance(bits, str) and bits.strip():
|
||
try:
|
||
return int(bits, 16) > 0
|
||
except ValueError:
|
||
pass
|
||
trays = ams_data.get("tray")
|
||
if isinstance(trays, list):
|
||
return any(
|
||
isinstance(t, dict) and isinstance(t.get("tray_type"), str) and t["tray_type"].strip() for t in trays
|
||
)
|
||
return False
|
||
|
||
|
||
async def record_ams_history():
|
||
"""Background task to record AMS humidity and temperature data."""
|
||
logger = logging.getLogger(__name__)
|
||
|
||
# Wait a short time for MQTT connections to establish on startup
|
||
await asyncio.sleep(10)
|
||
|
||
while True:
|
||
try:
|
||
from backend.app.models.ams_history import AMSSensorHistory
|
||
from backend.app.models.printer import Printer
|
||
from backend.app.models.settings import Settings
|
||
|
||
async with async_session() as db:
|
||
# Get all active printers
|
||
result = await db.execute(select(Printer).where(Printer.is_active.is_(True)))
|
||
printers = result.scalars().all()
|
||
|
||
# Get alarm thresholds from settings
|
||
humidity_threshold = 60.0 # Default: fair threshold
|
||
temp_threshold = 35.0 # Default: fair threshold
|
||
result = await db.execute(select(Settings).where(Settings.key == "ams_humidity_fair"))
|
||
setting = result.scalar_one_or_none()
|
||
if setting:
|
||
try:
|
||
humidity_threshold = float(setting.value)
|
||
except (ValueError, TypeError):
|
||
pass # Keep default threshold if stored value is invalid
|
||
result = await db.execute(select(Settings).where(Settings.key == "ams_temp_fair"))
|
||
setting = result.scalar_one_or_none()
|
||
if setting:
|
||
try:
|
||
temp_threshold = float(setting.value)
|
||
except (ValueError, TypeError):
|
||
pass # Keep default threshold if stored value is invalid
|
||
|
||
# Per-filament humidity threshold overrides (#1605) — resolved
|
||
# per-AMS below from the loaded tray types. Reuses the same
|
||
# resolver as the auto-drying scheduler so behavior stays in
|
||
# lockstep across both consumers.
|
||
from backend.app.services.print_scheduler import PrintScheduler
|
||
|
||
per_type_humidity_thresholds: dict[str, int] = {}
|
||
result = await db.execute(select(Settings).where(Settings.key == "ams_humidity_thresholds"))
|
||
setting = result.scalar_one_or_none()
|
||
if setting and setting.value:
|
||
try:
|
||
raw = json.loads(setting.value)
|
||
if isinstance(raw, dict):
|
||
for k, v in raw.items():
|
||
try:
|
||
per_type_humidity_thresholds[str(k).upper() if k != "default" else "default"] = int(
|
||
v
|
||
)
|
||
except (TypeError, ValueError):
|
||
continue
|
||
except (ValueError, TypeError):
|
||
pass # Invalid JSON → no overrides, fall through to global threshold
|
||
|
||
recorded_count = 0
|
||
for printer in printers:
|
||
# Get current state from printer manager
|
||
state = printer_manager.get_status(printer.id)
|
||
if not state or not state.connected or not state.raw_data:
|
||
continue # Skip disconnected printers - don't use stale data
|
||
|
||
raw_data = state.raw_data
|
||
if "ams" not in raw_data or not isinstance(raw_data["ams"], list):
|
||
continue
|
||
|
||
# Record data for each AMS unit
|
||
for ams_data in raw_data["ams"]:
|
||
ams_id = int(ams_data.get("id", 0))
|
||
|
||
# Get humidity (prefer humidity_raw)
|
||
humidity_raw = ams_data.get("humidity_raw")
|
||
humidity_idx = ams_data.get("humidity")
|
||
humidity = None
|
||
if humidity_raw is not None:
|
||
try:
|
||
humidity = float(humidity_raw)
|
||
except (ValueError, TypeError):
|
||
pass # Skip unparseable humidity; will try fallback
|
||
if humidity is None and humidity_idx is not None:
|
||
try:
|
||
humidity = float(humidity_idx)
|
||
except (ValueError, TypeError):
|
||
pass # Skip unparseable humidity index value
|
||
|
||
# Get temperature
|
||
temperature = None
|
||
temp_str = ams_data.get("temp")
|
||
if temp_str is not None:
|
||
try:
|
||
temperature = float(temp_str)
|
||
except (ValueError, TypeError):
|
||
pass # Skip unparseable temperature value
|
||
|
||
# Skip if no data
|
||
if humidity is None and temperature is None:
|
||
continue
|
||
|
||
# Record the data point
|
||
history = AMSSensorHistory(
|
||
printer_id=printer.id,
|
||
ams_id=ams_id,
|
||
humidity=humidity,
|
||
humidity_raw=float(humidity_raw) if humidity_raw else None,
|
||
temperature=temperature,
|
||
)
|
||
db.add(history)
|
||
recorded_count += 1
|
||
|
||
# Generate AMS label and determine if it's AMS-HT (A, B, C, D or HT-A for AMS-Lite/Hub)
|
||
is_ams_ht = ams_id >= 128
|
||
if is_ams_ht:
|
||
ams_label = f"HT-{chr(65 + (ams_id - 128))}"
|
||
else:
|
||
ams_label = f"AMS-{chr(65 + ams_id)}"
|
||
|
||
# Skip alarm dispatch for empty AMS units — humidity /
|
||
# temperature readings are ambient with no filament to
|
||
# protect, and the hourly notification just becomes
|
||
# noise. Sensor history was already recorded above so
|
||
# the UI charts stay continuous (#1619). Per-AMS check
|
||
# so a multi-AMS setup with one loaded + one empty
|
||
# still alarms on the loaded unit.
|
||
if not _ams_has_filament(ams_data):
|
||
continue
|
||
|
||
# Resolve per-filament humidity threshold for this AMS
|
||
# unit (#1605). Falls back to the global ams_humidity_fair
|
||
# when no per-type overrides are configured.
|
||
trays = ams_data.get("tray", []) or []
|
||
effective_humidity_threshold = float(
|
||
PrintScheduler.resolve_humidity_threshold(
|
||
trays, per_type_humidity_thresholds, int(humidity_threshold)
|
||
)
|
||
)
|
||
|
||
# Check humidity alarm (only if above threshold)
|
||
if humidity is not None and humidity > effective_humidity_threshold:
|
||
cooldown_key = f"{printer.id}:{ams_id}:humidity"
|
||
last_alarm = _ams_alarm_cooldown.get(cooldown_key)
|
||
now = datetime.now(timezone.utc)
|
||
if (
|
||
last_alarm is None
|
||
or (now - last_alarm).total_seconds() >= AMS_ALARM_COOLDOWN_MINUTES * 60
|
||
):
|
||
_ams_alarm_cooldown[cooldown_key] = now
|
||
logger.info(
|
||
f"Sending humidity alarm for {printer.name} {ams_label}: {humidity}% > {effective_humidity_threshold}%"
|
||
)
|
||
try:
|
||
# Call different notification method based on AMS type
|
||
if is_ams_ht:
|
||
await notification_service.on_ams_ht_humidity_high(
|
||
printer.id,
|
||
printer.name,
|
||
ams_label,
|
||
humidity,
|
||
effective_humidity_threshold,
|
||
db,
|
||
)
|
||
else:
|
||
await notification_service.on_ams_humidity_high(
|
||
printer.id,
|
||
printer.name,
|
||
ams_label,
|
||
humidity,
|
||
effective_humidity_threshold,
|
||
db,
|
||
)
|
||
except Exception as e:
|
||
logger.warning("Failed to send humidity alarm: %s", e)
|
||
|
||
# Check temperature alarm (only if above threshold)
|
||
if temperature is not None and temperature > temp_threshold:
|
||
cooldown_key = f"{printer.id}:{ams_id}:temperature"
|
||
last_alarm = _ams_alarm_cooldown.get(cooldown_key)
|
||
now = datetime.now(timezone.utc)
|
||
if (
|
||
last_alarm is None
|
||
or (now - last_alarm).total_seconds() >= AMS_ALARM_COOLDOWN_MINUTES * 60
|
||
):
|
||
_ams_alarm_cooldown[cooldown_key] = now
|
||
logger.info(
|
||
f"Sending temperature alarm for {printer.name} {ams_label}: {temperature}°C > {temp_threshold}°C"
|
||
)
|
||
try:
|
||
# Call different notification method based on AMS type
|
||
if is_ams_ht:
|
||
await notification_service.on_ams_ht_temperature_high(
|
||
printer.id, printer.name, ams_label, temperature, temp_threshold, db
|
||
)
|
||
else:
|
||
await notification_service.on_ams_temperature_high(
|
||
printer.id, printer.name, ams_label, temperature, temp_threshold, db
|
||
)
|
||
except Exception as e:
|
||
logger.warning("Failed to send temperature alarm: %s", e)
|
||
|
||
await db.commit()
|
||
if recorded_count > 0:
|
||
logger.info("Recorded %s AMS sensor history entries", recorded_count)
|
||
|
||
# Periodic cleanup of old data (every ~288 recordings = ~24 hours at 5min interval)
|
||
global _ams_cleanup_counter
|
||
_ams_cleanup_counter += 1
|
||
if _ams_cleanup_counter >= 288:
|
||
_ams_cleanup_counter = 0
|
||
# Get retention days from settings
|
||
from backend.app.models.settings import Settings
|
||
|
||
result = await db.execute(select(Settings).where(Settings.key == "ams_history_retention_days"))
|
||
setting = result.scalar_one_or_none()
|
||
retention_days = int(setting.value) if setting else AMS_HISTORY_RETENTION_DAYS
|
||
|
||
cutoff = datetime.utcnow() - timedelta(days=retention_days)
|
||
result = await db.execute(delete(AMSSensorHistory).where(AMSSensorHistory.recorded_at < cutoff))
|
||
await db.commit()
|
||
if result.rowcount > 0:
|
||
logger.info(
|
||
f"Cleaned up {result.rowcount} old AMS sensor history entries (older than {retention_days} days)"
|
||
)
|
||
|
||
# Wait until next recording interval
|
||
await asyncio.sleep(AMS_HISTORY_INTERVAL)
|
||
|
||
except asyncio.CancelledError:
|
||
break
|
||
except Exception as e:
|
||
logger.warning("AMS history recording failed: %s", e)
|
||
await asyncio.sleep(60) # Wait a bit before retrying
|
||
|
||
|
||
def start_ams_history_recording():
|
||
"""Start the AMS history recording background task."""
|
||
global _ams_history_task
|
||
if _ams_history_task is None:
|
||
_ams_history_task = asyncio.create_task(record_ams_history())
|
||
logging.getLogger(__name__).info("AMS history recording started")
|
||
|
||
|
||
def stop_ams_history_recording():
|
||
"""Stop the AMS history recording background task."""
|
||
global _ams_history_task
|
||
if _ams_history_task:
|
||
_ams_history_task.cancel()
|
||
_ams_history_task = None
|
||
logging.getLogger(__name__).info("AMS history recording stopped")
|
||
|
||
|
||
# Printer sensor history recording (nozzle / bed / chamber)
|
||
_printer_sensor_history_task: asyncio.Task | None = None
|
||
PRINTER_SENSOR_HISTORY_INTERVAL = 60 # Record every minute — heaters move faster than AMS humidity
|
||
PRINTER_SENSOR_HISTORY_RETENTION_DAYS = 30
|
||
_printer_sensor_cleanup_counter = 0
|
||
# Sensor kinds tracked in state.temperatures — these are the normalised keys the
|
||
# MQTT parser writes, so we don't need to handle per-model field aliases here
|
||
# (nozzle_temper / left_nozzle_temper / right_nozzle_temper / chamber_temper
|
||
# are all collapsed by services/bambu_mqtt.py before they reach this loop).
|
||
_SENSOR_KINDS = ("nozzle", "nozzle_2", "bed", "chamber")
|
||
_SENSOR_TARGET_KEYS = {
|
||
"nozzle": "nozzle_target",
|
||
"nozzle_2": "nozzle_2_target",
|
||
"bed": "bed_target",
|
||
"chamber": "chamber_target",
|
||
}
|
||
|
||
|
||
async def record_printer_sensor_history():
|
||
"""Background task to record nozzle / bed / chamber readings.
|
||
|
||
Pulls from `state.temperatures` (already normalised across all printer
|
||
models by the MQTT parser) rather than re-parsing raw_data, so we get
|
||
free coverage of dual-nozzle H2D, sensor-only X1C chamber, etc.
|
||
"""
|
||
logger = logging.getLogger(__name__)
|
||
|
||
await asyncio.sleep(10)
|
||
|
||
while True:
|
||
try:
|
||
from backend.app.models.printer import Printer
|
||
from backend.app.models.printer_sensor_history import PrinterSensorHistory
|
||
from backend.app.models.settings import Settings
|
||
|
||
async with async_session() as db:
|
||
result = await db.execute(select(Printer).where(Printer.is_active.is_(True)))
|
||
printers = result.scalars().all()
|
||
|
||
recorded_count = 0
|
||
for printer in printers:
|
||
state = printer_manager.get_status(printer.id)
|
||
if not state or not state.connected:
|
||
continue
|
||
|
||
temps = getattr(state, "temperatures", None) or {}
|
||
if not isinstance(temps, dict):
|
||
continue
|
||
|
||
for kind in _SENSOR_KINDS:
|
||
if kind not in temps:
|
||
continue
|
||
try:
|
||
value = float(temps[kind])
|
||
except (ValueError, TypeError):
|
||
continue
|
||
|
||
target_raw = temps.get(_SENSOR_TARGET_KEYS[kind])
|
||
target_val: float | None = None
|
||
if target_raw is not None:
|
||
try:
|
||
target_val = float(target_raw)
|
||
except (ValueError, TypeError):
|
||
target_val = None
|
||
|
||
db.add(
|
||
PrinterSensorHistory(
|
||
printer_id=printer.id,
|
||
sensor_kind=kind,
|
||
value=value,
|
||
target=target_val,
|
||
)
|
||
)
|
||
recorded_count += 1
|
||
|
||
await db.commit()
|
||
if recorded_count > 0:
|
||
logger.debug("Recorded %s printer sensor history entries", recorded_count)
|
||
|
||
# Periodic cleanup — once every ~24h at this interval.
|
||
global _printer_sensor_cleanup_counter
|
||
_printer_sensor_cleanup_counter += 1
|
||
cleanup_every = max(1, (24 * 60 * 60) // PRINTER_SENSOR_HISTORY_INTERVAL)
|
||
if _printer_sensor_cleanup_counter >= cleanup_every:
|
||
_printer_sensor_cleanup_counter = 0
|
||
result = await db.execute(
|
||
select(Settings).where(Settings.key == "printer_sensor_history_retention_days")
|
||
)
|
||
setting = result.scalar_one_or_none()
|
||
retention_days = int(setting.value) if setting else PRINTER_SENSOR_HISTORY_RETENTION_DAYS
|
||
|
||
cutoff = datetime.utcnow() - timedelta(days=retention_days)
|
||
cleanup = await db.execute(
|
||
delete(PrinterSensorHistory).where(PrinterSensorHistory.recorded_at < cutoff)
|
||
)
|
||
await db.commit()
|
||
if cleanup.rowcount > 0:
|
||
logger.info(
|
||
"Cleaned up %s old printer sensor history entries (older than %s days)",
|
||
cleanup.rowcount,
|
||
retention_days,
|
||
)
|
||
|
||
await asyncio.sleep(PRINTER_SENSOR_HISTORY_INTERVAL)
|
||
|
||
except asyncio.CancelledError:
|
||
break
|
||
except Exception as e:
|
||
logger.warning("Printer sensor history recording failed: %s", e)
|
||
await asyncio.sleep(60)
|
||
|
||
|
||
def start_printer_sensor_history_recording():
|
||
global _printer_sensor_history_task
|
||
if _printer_sensor_history_task is None:
|
||
_printer_sensor_history_task = asyncio.create_task(record_printer_sensor_history())
|
||
logging.getLogger(__name__).info("Printer sensor history recording started")
|
||
|
||
|
||
def stop_printer_sensor_history_recording():
|
||
global _printer_sensor_history_task
|
||
if _printer_sensor_history_task:
|
||
_printer_sensor_history_task.cancel()
|
||
_printer_sensor_history_task = None
|
||
logging.getLogger(__name__).info("Printer sensor history recording stopped")
|
||
|
||
|
||
# Printer runtime tracking
|
||
_runtime_tracking_task: asyncio.Task | None = None
|
||
RUNTIME_TRACKING_INTERVAL = 30 # Update every 30 seconds
|
||
|
||
|
||
async def track_printer_runtime():
|
||
"""Background task to track printer active runtime (RUNNING state only).
|
||
|
||
PAUSE is intentionally excluded — the runtime counter feeds hours-based
|
||
maintenance intervals (rod lubrication, belt checks, nozzle cleaning)
|
||
which track mechanical wear. Pause time has no motion and no wear, so
|
||
counting it inflates maintenance warnings (#1521).
|
||
"""
|
||
logger = logging.getLogger(__name__)
|
||
|
||
# Wait for MQTT connections to establish on startup
|
||
await asyncio.sleep(15)
|
||
|
||
while True:
|
||
try:
|
||
from backend.app.models.printer import Printer
|
||
|
||
# Fetch printer IDs in a short-lived read-only session
|
||
async with async_session() as db:
|
||
result = await db.execute(
|
||
select(Printer.id, Printer.name, Printer.runtime_seconds, Printer.last_runtime_update).where(
|
||
Printer.is_active.is_(True)
|
||
)
|
||
)
|
||
printer_rows = result.all()
|
||
|
||
now = datetime.now(timezone.utc)
|
||
updated_count = 0
|
||
|
||
# Update each printer in its own short session to minimise write-lock
|
||
# hold time and avoid blocking critical commits like queue status
|
||
# updates (#897).
|
||
for pid, pname, runtime_secs, last_update in printer_rows:
|
||
state = printer_manager.get_status(pid)
|
||
if not state:
|
||
logger.debug("[%s] Runtime tracking: no state available", pname)
|
||
continue
|
||
if not state.connected:
|
||
logger.debug("[%s] Runtime tracking: not connected", pname)
|
||
continue
|
||
|
||
needs_commit = False
|
||
new_runtime = runtime_secs
|
||
new_last_update = last_update
|
||
|
||
if state.state == "RUNNING":
|
||
if last_update:
|
||
lu = last_update if last_update.tzinfo else last_update.replace(tzinfo=timezone.utc)
|
||
elapsed = (now - lu).total_seconds()
|
||
if elapsed > 0:
|
||
new_runtime = runtime_secs + int(elapsed)
|
||
updated_count += 1
|
||
needs_commit = True
|
||
logger.debug(
|
||
f"[{pname}] Runtime tracking: added {int(elapsed)}s, "
|
||
f"total={new_runtime}s ({new_runtime / 3600:.2f}h)"
|
||
)
|
||
else:
|
||
needs_commit = True
|
||
logger.debug("[%s] Runtime tracking: first active detection", pname)
|
||
new_last_update = now
|
||
else:
|
||
if last_update is not None:
|
||
logger.debug(f"[{pname}] Runtime tracking: state={state.state}, clearing last_runtime_update")
|
||
new_last_update = None
|
||
needs_commit = True
|
||
|
||
if needs_commit:
|
||
try:
|
||
async with async_session() as db:
|
||
result = await db.execute(select(Printer).where(Printer.id == pid))
|
||
printer = result.scalar_one_or_none()
|
||
if printer:
|
||
printer.runtime_seconds = new_runtime
|
||
printer.last_runtime_update = new_last_update
|
||
await db.commit()
|
||
except Exception as e:
|
||
logger.warning("[%s] Runtime tracking commit failed: %s", pname, e)
|
||
|
||
if updated_count > 0:
|
||
logger.debug("Updated runtime for %s printer(s)", updated_count)
|
||
|
||
except asyncio.CancelledError:
|
||
logger.info("Runtime tracking cancelled")
|
||
break
|
||
except Exception as e:
|
||
logger.warning("Runtime tracking failed: %s", e)
|
||
|
||
await asyncio.sleep(RUNTIME_TRACKING_INTERVAL)
|
||
|
||
|
||
def start_runtime_tracking():
|
||
"""Start the printer runtime tracking background task."""
|
||
global _runtime_tracking_task
|
||
if _runtime_tracking_task is None:
|
||
_runtime_tracking_task = asyncio.create_task(track_printer_runtime())
|
||
logging.getLogger(__name__).info("Printer runtime tracking started")
|
||
|
||
|
||
def stop_runtime_tracking():
|
||
"""Stop the printer runtime tracking background task."""
|
||
global _runtime_tracking_task
|
||
if _runtime_tracking_task:
|
||
_runtime_tracking_task.cancel()
|
||
_runtime_tracking_task = None
|
||
logging.getLogger(__name__).info("Printer runtime tracking stopped")
|
||
|
||
|
||
# SpoolBuddy device watchdog
|
||
_spoolbuddy_watchdog_task: asyncio.Task | None = None
|
||
SPOOLBUDDY_WATCHDOG_INTERVAL = 15
|
||
|
||
|
||
async def _spoolbuddy_watchdog_loop():
|
||
"""Periodic check for SpoolBuddy devices that have gone offline."""
|
||
from backend.app.api.routes.spoolbuddy import spoolbuddy_watchdog
|
||
|
||
while True:
|
||
try:
|
||
await spoolbuddy_watchdog()
|
||
except asyncio.CancelledError:
|
||
break
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning("SpoolBuddy watchdog failed: %s", e)
|
||
await asyncio.sleep(SPOOLBUDDY_WATCHDOG_INTERVAL)
|
||
|
||
|
||
def start_spoolbuddy_watchdog():
|
||
global _spoolbuddy_watchdog_task
|
||
if _spoolbuddy_watchdog_task is None:
|
||
_spoolbuddy_watchdog_task = asyncio.create_task(_spoolbuddy_watchdog_loop())
|
||
logging.getLogger(__name__).info("SpoolBuddy watchdog started")
|
||
|
||
|
||
def stop_spoolbuddy_watchdog():
|
||
global _spoolbuddy_watchdog_task
|
||
if _spoolbuddy_watchdog_task:
|
||
_spoolbuddy_watchdog_task.cancel()
|
||
_spoolbuddy_watchdog_task = None
|
||
logging.getLogger(__name__).info("SpoolBuddy watchdog stopped")
|
||
|
||
|
||
# Camera stream orphan cleanup
|
||
_camera_cleanup_task: asyncio.Task | None = None
|
||
CAMERA_CLEANUP_INTERVAL = 60
|
||
|
||
|
||
async def _camera_cleanup_loop():
|
||
"""Periodically clean up orphaned ffmpeg processes."""
|
||
from backend.app.api.routes.camera import cleanup_orphaned_streams
|
||
|
||
while True:
|
||
try:
|
||
await cleanup_orphaned_streams()
|
||
except asyncio.CancelledError:
|
||
break
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning("Camera stream cleanup failed: %s", e)
|
||
await asyncio.sleep(CAMERA_CLEANUP_INTERVAL)
|
||
|
||
|
||
def start_camera_cleanup():
|
||
global _camera_cleanup_task
|
||
if _camera_cleanup_task is None:
|
||
_camera_cleanup_task = asyncio.create_task(_camera_cleanup_loop())
|
||
logging.getLogger(__name__).info("Camera stream cleanup started")
|
||
|
||
|
||
def stop_camera_cleanup():
|
||
global _camera_cleanup_task
|
||
if _camera_cleanup_task:
|
||
_camera_cleanup_task.cancel()
|
||
_camera_cleanup_task = None
|
||
logging.getLogger(__name__).info("Camera stream cleanup stopped")
|
||
|
||
|
||
# ---------------------------------------------------------------------------
|
||
# Expected-print TTL eviction
|
||
# ---------------------------------------------------------------------------
|
||
|
||
|
||
def _evict_stale_expected_prints() -> None:
|
||
"""Remove entries from _expected_prints / _expected_print_creators that are
|
||
older than _EXPECTED_PRINT_TTL_SECONDS.
|
||
|
||
This prevents unbounded growth when a print is registered (via
|
||
register_expected_print) but on_print_start never fires — e.g. because the
|
||
printer disconnects, the app restarts, or the print is started directly from
|
||
the printer panel without going through the queue.
|
||
"""
|
||
# Use monotonic time so the TTL is unaffected by system clock adjustments
|
||
# (e.g. NTP sync, DST changes).
|
||
cutoff = time.monotonic() - _EXPECTED_PRINT_TTL_SECONDS
|
||
stale_keys = [k for k, t in _expected_print_registered_at.items() if t < cutoff]
|
||
if not stale_keys:
|
||
return
|
||
|
||
evicted_archive_ids: set[int] = set()
|
||
for key in stale_keys:
|
||
archive_id = _expected_prints.pop(key, None)
|
||
if archive_id is not None:
|
||
evicted_archive_ids.add(archive_id)
|
||
_expected_print_creators.pop(key, None)
|
||
_expected_print_registered_at.pop(key, None)
|
||
|
||
# Also clean up _print_ams_mappings and _print_plate_ids for archive_ids
|
||
# that have no remaining live keys in _expected_prints (all variants
|
||
# were just evicted).
|
||
live_archive_ids = set(_expected_prints.values())
|
||
for archive_id in evicted_archive_ids:
|
||
if archive_id not in live_archive_ids:
|
||
_print_ams_mappings.pop(archive_id, None)
|
||
_print_plate_ids.pop(archive_id, None)
|
||
|
||
logging.getLogger(__name__).info(
|
||
"Evicted %d stale expected-print entries (TTL=%ds)", len(stale_keys), _EXPECTED_PRINT_TTL_SECONDS
|
||
)
|
||
|
||
|
||
async def _expected_prints_cleanup_loop() -> None:
|
||
"""Background task: periodically evict stale expected-print entries."""
|
||
while True:
|
||
try:
|
||
_evict_stale_expected_prints()
|
||
except asyncio.CancelledError:
|
||
raise
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning("Expected prints cleanup failed: %s", e)
|
||
await asyncio.sleep(_EXPECTED_PRINT_CLEANUP_INTERVAL)
|
||
|
||
|
||
def start_expected_prints_cleanup() -> None:
|
||
global _expected_prints_cleanup_task
|
||
if _expected_prints_cleanup_task is None:
|
||
_expected_prints_cleanup_task = asyncio.create_task(_expected_prints_cleanup_loop())
|
||
logging.getLogger(__name__).info("Expected prints cleanup started")
|
||
|
||
|
||
def stop_expected_prints_cleanup() -> None:
|
||
global _expected_prints_cleanup_task
|
||
if _expected_prints_cleanup_task:
|
||
_expected_prints_cleanup_task.cancel()
|
||
_expected_prints_cleanup_task = None
|
||
logging.getLogger(__name__).info("Expected prints cleanup stopped")
|
||
|
||
|
||
# ---------------------------------------------------------------------------
|
||
# L-2: Periodic auth-token cleanup (stale TOTP + expired revoked JTIs)
|
||
# ---------------------------------------------------------------------------
|
||
|
||
_auth_cleanup_task: asyncio.Task | None = None
|
||
_AUTH_CLEANUP_INTERVAL = 3600 # seconds (hourly)
|
||
|
||
|
||
async def _run_auth_cleanup() -> None:
|
||
"""Single cleanup pass: remove stale TOTP records, expired revoked JTIs, and old rate-limit events."""
|
||
from backend.app.core.database import async_session
|
||
from backend.app.models.auth_ephemeral import AuthEphemeralToken, AuthRateLimitEvent
|
||
from backend.app.models.user_totp import UserTOTP
|
||
|
||
now = datetime.now(timezone.utc)
|
||
|
||
# Remove unconfirmed (is_enabled=False) TOTP records older than 1 hour.
|
||
try:
|
||
async with async_session() as db:
|
||
stale_cutoff = now - timedelta(hours=1)
|
||
result = await db.execute(
|
||
select(UserTOTP).where(
|
||
UserTOTP.is_enabled.is_(False),
|
||
UserTOTP.created_at < stale_cutoff,
|
||
)
|
||
)
|
||
stale_records = result.scalars().all()
|
||
if stale_records:
|
||
for rec in stale_records:
|
||
await db.delete(rec)
|
||
await db.commit()
|
||
logging.info("Auth cleanup: removed %d stale unconfirmed TOTP record(s)", len(stale_records))
|
||
except Exception as e:
|
||
logging.warning("Auth cleanup: failed to purge stale TOTP records: %s", e)
|
||
|
||
# Remove expired revoked-JTI entries (they are no longer needed once the
|
||
# original token's exp has passed — the token would be rejected by JWT
|
||
# signature verification regardless).
|
||
try:
|
||
async with async_session() as db:
|
||
await db.execute(
|
||
delete(AuthEphemeralToken).where(
|
||
AuthEphemeralToken.token_type == "revoked_jti",
|
||
AuthEphemeralToken.expires_at < now,
|
||
)
|
||
)
|
||
await db.commit()
|
||
except Exception as e:
|
||
logging.warning("Auth cleanup: failed to purge expired revoked JTIs: %s", e)
|
||
|
||
# L-R6-B: Purge AuthRateLimitEvent rows older than the lockout window (15 min).
|
||
# Events outside this window can never affect rate-limit decisions — they only
|
||
# consume DB space. Use the same window constant as the rate limiter so the
|
||
# two are always in sync.
|
||
try:
|
||
from backend.app.api.routes.mfa import LOCKOUT_WINDOW
|
||
|
||
async with async_session() as db:
|
||
await db.execute(
|
||
delete(AuthRateLimitEvent).where(
|
||
AuthRateLimitEvent.occurred_at < now - LOCKOUT_WINDOW,
|
||
)
|
||
)
|
||
await db.commit()
|
||
except Exception as e:
|
||
logging.warning("Auth cleanup: failed to purge stale rate-limit events: %s", e)
|
||
|
||
|
||
async def _auth_cleanup_loop() -> None:
|
||
"""Periodic background task: run auth cleanup every hour."""
|
||
while True:
|
||
try:
|
||
await _run_auth_cleanup()
|
||
except asyncio.CancelledError:
|
||
break
|
||
except Exception as e:
|
||
logging.warning("Auth cleanup loop error: %s", e)
|
||
await asyncio.sleep(_AUTH_CLEANUP_INTERVAL)
|
||
|
||
|
||
def start_auth_cleanup() -> None:
|
||
global _auth_cleanup_task
|
||
if _auth_cleanup_task is None:
|
||
_auth_cleanup_task = asyncio.create_task(_auth_cleanup_loop())
|
||
logging.getLogger(__name__).info("Auth periodic cleanup started")
|
||
|
||
|
||
def stop_auth_cleanup() -> None:
|
||
global _auth_cleanup_task
|
||
if _auth_cleanup_task:
|
||
_auth_cleanup_task.cancel()
|
||
_auth_cleanup_task = None
|
||
logging.getLogger(__name__).info("Auth periodic cleanup stopped")
|
||
|
||
|
||
@asynccontextmanager
|
||
async def lifespan(app: FastAPI):
|
||
# Startup
|
||
# Install Windows-only asyncio Proactor cleanup-RST filter (#1113) before
|
||
# anything else can spawn tasks that might trip it.
|
||
from backend.app.core.asyncio_handlers import install_proactor_reset_filter
|
||
|
||
install_proactor_reset_filter()
|
||
|
||
await init_db()
|
||
|
||
# Register an app-scoped httpx client for Bambu Cloud services so
|
||
# per-request BambuCloudService instances reuse the same connection pool
|
||
# (important for routes like /cloud/filament-info that chain many
|
||
# get_setting_detail calls). The shared client stores no region/token
|
||
# state, so the per-request ownership pattern that fixed the region-bleed
|
||
# bug is preserved.
|
||
import httpx as _httpx
|
||
|
||
from backend.app.services.bambu_cloud import set_shared_http_client
|
||
from backend.app.services.makerworld import (
|
||
set_shared_http_client as set_shared_makerworld_http_client,
|
||
)
|
||
from backend.app.services.orca_cloud import (
|
||
set_shared_http_client as set_shared_orca_http_client,
|
||
)
|
||
|
||
_shared_cloud_http_client = _httpx.AsyncClient(timeout=30.0)
|
||
set_shared_http_client(_shared_cloud_http_client)
|
||
# Reuse the same connection pool for MakerWorld — different host, same
|
||
# keep-alive pool saves a TLS handshake per request.
|
||
set_shared_makerworld_http_client(_shared_cloud_http_client)
|
||
# Same for Orca Cloud — without this the per-request OrcaCloudService()
|
||
# each spun up (and never closed) its own client, leaking sockets.
|
||
set_shared_orca_http_client(_shared_cloud_http_client)
|
||
|
||
# Fix queue items stuck with invalid "aborted" status (should be "cancelled").
|
||
# This can happen when a print was cancelled mid-print on versions before this fix.
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.models.print_queue import PrintQueueItem
|
||
|
||
result = await db.execute(select(PrintQueueItem).where(PrintQueueItem.status == "aborted"))
|
||
aborted_items = result.scalars().all()
|
||
if aborted_items:
|
||
for item in aborted_items:
|
||
item.status = "cancelled"
|
||
await db.commit()
|
||
logging.info("Fixed %d queue item(s) with invalid 'aborted' status → 'cancelled'", len(aborted_items))
|
||
except Exception as e:
|
||
logging.warning("Failed to fix aborted queue items: %s", e)
|
||
|
||
# Restore debug logging state from previous session
|
||
await init_debug_logging()
|
||
|
||
# Set up printer manager callbacks
|
||
loop = asyncio.get_event_loop()
|
||
printer_manager.set_event_loop(loop)
|
||
printer_manager.set_status_change_callback(on_printer_status_change)
|
||
printer_manager.set_print_start_callback(on_print_start)
|
||
printer_manager.set_print_complete_callback(on_print_complete)
|
||
printer_manager.set_print_running_observed_callback(on_print_running_observed)
|
||
printer_manager.set_finish_photo_moment_callback(on_finish_photo_moment)
|
||
printer_manager.set_ams_change_callback(on_ams_change)
|
||
|
||
# Rehydrate persisted awaiting-plate-clear gate (#961) so prompts survive restarts
|
||
await printer_manager.load_awaiting_plate_clear_from_db()
|
||
|
||
# Layer change callback for external camera timelapse
|
||
async def on_layer_change(printer_id: int, layer_num: int):
|
||
"""Capture timelapse frame on layer change + first layer notification."""
|
||
from backend.app.services.layer_timelapse import on_layer_change as tl_layer_change
|
||
|
||
await tl_layer_change(printer_id, layer_num)
|
||
|
||
# #1867: bank a recent in-print frame so the FINISH-state finish-photo
|
||
# path (firmware that never emits stg_cur=22, e.g. A1 Mini) has a
|
||
# pre-swap image to fall back on instead of a live grab of the swapped
|
||
# plate. Layer-driven, so it freezes at the final object layer.
|
||
await _maybe_bank_inprint_frame(printer_id, layer_num)
|
||
|
||
# First layer complete notification (layer_num >= 2 means layer 1 is done).
|
||
# Gate on actual printing state — Bambu firmware ticks layer_num during
|
||
# the pre-print calibration sequence (homing / mesh-level / bed scan /
|
||
# nozzle clean), so a bare layer_num check can fire minutes before the
|
||
# first real extrusion. We require gcode_state == RUNNING and
|
||
# mc_print_sub_stage in (0 = "Printing", None) so calibration sub-stages
|
||
# (1, 9, 14, ...) are excluded. The window widens to [2, 10] because if
|
||
# the layer counter advanced past 2 during PREPARE, the next on_layer_change
|
||
# edge fires later; _first_layer_notified stays clear until we actually send
|
||
# so a deferred re-evaluation can win. See issue #1837.
|
||
if 2 <= layer_num <= 10 and not _first_layer_notified.get(printer_id, False):
|
||
client = printer_manager.get_client(printer_id)
|
||
state = client.state if client else None
|
||
if not state or state.state != "RUNNING":
|
||
return
|
||
if state.mc_print_sub_stage not in (None, 0):
|
||
return
|
||
_first_layer_notified[printer_id] = True
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.models.printer import Printer
|
||
|
||
result = await db.execute(select(Printer).where(Printer.id == printer_id))
|
||
printer = result.scalar_one_or_none()
|
||
if not printer:
|
||
return
|
||
printer_name = printer.name
|
||
filename = (state.subtask_name or state.gcode_file or "Unknown") if state else "Unknown"
|
||
total_layers = state.total_layers if state else 0
|
||
|
||
image_data = await _capture_snapshot_for_notification(
|
||
printer_id, printer, logging.getLogger(__name__)
|
||
)
|
||
await notification_service.on_first_layer_complete(
|
||
printer_id, printer_name, filename, total_layers, db, image_data=image_data
|
||
)
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning("First layer notification failed: %s", e)
|
||
|
||
printer_manager.set_layer_change_callback(on_layer_change)
|
||
|
||
# Event-driven bed cooldown: fires whenever bed_temper arrives via MQTT
|
||
async def on_bed_temp_update(printer_id: int, bed_temp: float):
|
||
waiter = _bed_cool_waiters.get(printer_id)
|
||
if not waiter:
|
||
return
|
||
threshold = waiter["threshold"]
|
||
if bed_temp > threshold:
|
||
return
|
||
# Bed is at or below threshold — fire notification and remove waiter
|
||
waiter_info = _bed_cool_waiters.pop(printer_id, None)
|
||
if not waiter_info:
|
||
return # Another callback already handled it
|
||
bed_cool_logger = logging.getLogger(__name__)
|
||
bed_cool_logger.info(
|
||
"[BED-COOL] Bed cooled to %.1f°C on printer %s (threshold: %.0f°C)",
|
||
bed_temp,
|
||
printer_id,
|
||
threshold,
|
||
)
|
||
try:
|
||
printer_info = printer_manager.get_printer(printer_id)
|
||
p_name = printer_info.name if printer_info else "Unknown"
|
||
async with async_session() as db:
|
||
await notification_service.on_bed_cooled(
|
||
printer_id=printer_id,
|
||
printer_name=p_name,
|
||
bed_temp=bed_temp,
|
||
threshold=threshold,
|
||
filename=waiter_info["filename"],
|
||
db=db,
|
||
)
|
||
except Exception as e:
|
||
bed_cool_logger.warning("[BED-COOL] Failed to send notification: %s", e)
|
||
|
||
printer_manager.set_bed_temp_update_callback(on_bed_temp_update)
|
||
|
||
async def on_drying_complete(printer_id: int, ams_id: int):
|
||
"""Smart-plug auto-off-after-drying trigger (#1349).
|
||
|
||
Fires once per AMS unit when ``dry_time`` falls from >0 to 0. The
|
||
manager walks all plugs linked to this printer and turns off only
|
||
the ones with ``auto_off_after_drying`` enabled, after their
|
||
per-plug delay. Multiple AMS units finishing close together (e.g. a
|
||
dual-AMS dry that ends within the same MQTT push) call this once
|
||
per unit — the manager's ``_cancel_pending_off`` collapses
|
||
repeated scheduling on the same plug to one timer, so duplicate
|
||
fires are safe.
|
||
"""
|
||
try:
|
||
async with async_session() as db:
|
||
await smart_plug_manager.on_drying_complete(printer_id, db)
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning(
|
||
"Failed to schedule auto-off-after-drying for printer %d (AMS %d): %s",
|
||
printer_id,
|
||
ams_id,
|
||
e,
|
||
)
|
||
|
||
printer_manager.set_drying_complete_callback(on_drying_complete)
|
||
|
||
async def on_assignment_verified(printer_id: int, ams_id: int, tray_id: int, verified: bool, detail: dict):
|
||
"""Surface the read-back result of a spool assignment to the UI (#2582).
|
||
|
||
The MQTT client confirms (or fails to confirm) that the tray telemetry
|
||
echoed back the filament id we pushed. We relay that as a websocket
|
||
event so the frontend can toast "loaded" / "assignment didn't take"
|
||
instead of the historic silent fire-and-forget, which made the
|
||
AMS→Studio hand-off feel random to users.
|
||
"""
|
||
try:
|
||
from backend.app.services.spool_assignment_notifications import (
|
||
_slot_label_from_global_tray,
|
||
)
|
||
|
||
if ams_id == 255:
|
||
global_id = 254 + tray_id
|
||
elif ams_id >= 128:
|
||
global_id = ams_id
|
||
else:
|
||
global_id = ams_id * 4 + tray_id
|
||
slot_label = _slot_label_from_global_tray(global_id)
|
||
|
||
printer_info = printer_manager.get_printer(printer_id)
|
||
printer_name = printer_info.name if printer_info else f"Printer {printer_id}"
|
||
|
||
await ws_manager.broadcast(
|
||
{
|
||
"type": "spool_assignment_verified",
|
||
"printer_id": printer_id,
|
||
"printer_name": printer_name,
|
||
"ams_id": ams_id,
|
||
"tray_id": tray_id,
|
||
"slot": slot_label,
|
||
"verified": verified,
|
||
# Present on success: False means the filament setting landed
|
||
# but the K-profile (cali_idx) did not — the reporter's exact
|
||
# "loaded but no flow profile" symptom.
|
||
"kprofile_applied": detail.get("kprofile_applied", True),
|
||
# Present on failure: whether any tray telemetry was seen in
|
||
# the window (distinguishes "printer silent" from "printer
|
||
# stored something else").
|
||
"saw_tray": detail.get("saw_tray", False),
|
||
}
|
||
)
|
||
except Exception as e:
|
||
logging.getLogger(__name__).warning(
|
||
"Failed to broadcast assignment verification for printer %d AMS%d-T%d: %s",
|
||
printer_id,
|
||
ams_id,
|
||
tray_id,
|
||
e,
|
||
)
|
||
|
||
printer_manager.set_assignment_verified_callback(on_assignment_verified)
|
||
|
||
# Initialize MQTT relay from settings
|
||
async with async_session() as db:
|
||
from backend.app.api.routes.settings import get_setting
|
||
|
||
mqtt_settings = {
|
||
"mqtt_enabled": (await get_setting(db, "mqtt_enabled") or "false") == "true",
|
||
"mqtt_broker": await get_setting(db, "mqtt_broker") or "",
|
||
"mqtt_port": int(await get_setting(db, "mqtt_port") or "1883"),
|
||
"mqtt_username": await get_setting(db, "mqtt_username") or "",
|
||
"mqtt_password": await get_setting(db, "mqtt_password") or "",
|
||
"mqtt_topic_prefix": await get_setting(db, "mqtt_topic_prefix") or "bambuddy",
|
||
"mqtt_use_tls": (await get_setting(db, "mqtt_use_tls") or "false") == "true",
|
||
}
|
||
await mqtt_relay.configure(mqtt_settings)
|
||
|
||
# Restore MQTT smart plug subscriptions
|
||
if mqtt_settings.get("mqtt_enabled"):
|
||
from backend.app.models.smart_plug import SmartPlug
|
||
from backend.app.services.mqtt_smart_plug import subscribe_plug_to_mqtt
|
||
|
||
result = await db.execute(select(SmartPlug).where(SmartPlug.plug_type == "mqtt"))
|
||
mqtt_plugs = result.scalars().all()
|
||
restored = 0
|
||
for plug in mqtt_plugs:
|
||
if subscribe_plug_to_mqtt(mqtt_relay.smart_plug_service, plug):
|
||
restored += 1
|
||
if restored:
|
||
logging.info("Restored %s MQTT smart plug subscriptions", restored)
|
||
|
||
# Connect to all active printers
|
||
async with async_session() as db:
|
||
await init_printer_connections(db)
|
||
|
||
# Auto-connect to Spoolman if enabled
|
||
async with async_session() as db:
|
||
from backend.app.api.routes.settings import get_setting
|
||
|
||
spoolman_enabled = await get_setting(db, "spoolman_enabled")
|
||
spoolman_url = await get_setting(db, "spoolman_url")
|
||
|
||
if spoolman_enabled and spoolman_enabled.lower() == "true" and spoolman_url:
|
||
try:
|
||
client = await init_spoolman_client(spoolman_url)
|
||
if await client.health_check():
|
||
logging.info("Auto-connected to Spoolman at %s", spoolman_url)
|
||
# Ensure the 'tag' extra field exists for RFID/UUID storage
|
||
field_ok = await client.ensure_tag_extra_field()
|
||
if not field_ok:
|
||
logging.error("Spoolman tag extra field registration failed — NFC tag links may not persist")
|
||
# Register the BambuStudio slicer-preset fields used by the
|
||
# spool-edit / assign flow. Spoolman rejects PATCHes with
|
||
# unknown extra keys, so these must exist before any update
|
||
# that touches them.
|
||
for field_name in ("bambu_slicer_filament", "bambu_slicer_filament_name"):
|
||
if not await client.ensure_extra_field(field_name):
|
||
logging.warning(
|
||
"Spoolman extra field %r registration failed — "
|
||
"spool slicer-preset edits will return 502",
|
||
field_name,
|
||
)
|
||
else:
|
||
logging.warning("Spoolman at %s is not reachable", spoolman_url)
|
||
except Exception as e:
|
||
logging.warning("Failed to auto-connect to Spoolman: %s", e)
|
||
|
||
# Start the print scheduler
|
||
spawn_background_task(print_scheduler.run(), name="print-scheduler")
|
||
|
||
# Start the smart plug scheduler for time-based on/off
|
||
smart_plug_manager.start_scheduler()
|
||
|
||
# Resume any pending auto-offs that were interrupted by restart
|
||
await smart_plug_manager.resume_pending_auto_offs()
|
||
|
||
# Start the notification digest scheduler
|
||
notification_service.start_digest_scheduler()
|
||
|
||
# Start the GitHub backup scheduler
|
||
await github_backup_service.start_scheduler()
|
||
|
||
# Start the local backup scheduler
|
||
await local_backup_service.start_scheduler()
|
||
await obico_detection_service.start()
|
||
|
||
# Start the library trash sweeper (#1008)
|
||
await library_trash_service.start_scheduler()
|
||
|
||
# Start the archive auto-purge sweeper (#1008 follow-up)
|
||
await archive_purge_service.start_scheduler()
|
||
|
||
# Start AMS history recording
|
||
start_ams_history_recording()
|
||
|
||
# Start printer sensor (nozzle / bed / chamber) history recording
|
||
start_printer_sensor_history_recording()
|
||
|
||
# Start printer runtime tracking
|
||
start_runtime_tracking()
|
||
|
||
# Start SpoolBuddy device watchdog
|
||
start_spoolbuddy_watchdog()
|
||
|
||
# Start camera stream orphan cleanup
|
||
start_camera_cleanup()
|
||
|
||
# Start expected-print TTL eviction (prevents memory leak when prints are
|
||
# registered but on_print_start never fires)
|
||
start_expected_prints_cleanup()
|
||
|
||
# L-2: Start periodic auth cleanup (stale TOTP + expired revoked JTIs)
|
||
start_auth_cleanup()
|
||
|
||
# Event-loop stall watchdog: dumps all thread stacks to stderr if the loop
|
||
# freezes (#1486 — silent "container hangs after adding a printer" reports).
|
||
from backend.app.services.loop_watchdog import start_loop_watchdog
|
||
|
||
start_loop_watchdog()
|
||
|
||
# Initialize virtual printer manager and sync from DB
|
||
from backend.app.services.virtual_printer import virtual_printer_manager
|
||
|
||
virtual_printer_manager.set_session_factory(async_session)
|
||
virtual_printer_manager.set_printer_manager(printer_manager)
|
||
try:
|
||
await virtual_printer_manager.sync_from_db()
|
||
logging.info("Virtual printer manager synced from database")
|
||
except Exception as e:
|
||
logging.warning("Failed to sync virtual printers: %s", e)
|
||
|
||
yield
|
||
|
||
# Shutdown
|
||
print_scheduler.stop()
|
||
smart_plug_manager.stop_scheduler()
|
||
notification_service.stop_digest_scheduler()
|
||
github_backup_service.stop_scheduler()
|
||
local_backup_service.stop_scheduler()
|
||
library_trash_service.stop_scheduler()
|
||
archive_purge_service.stop_scheduler()
|
||
obico_detection_service.stop()
|
||
stop_ams_history_recording()
|
||
stop_printer_sensor_history_recording()
|
||
stop_runtime_tracking()
|
||
stop_spoolbuddy_watchdog()
|
||
stop_camera_cleanup()
|
||
from backend.app.services.loop_watchdog import stop_loop_watchdog
|
||
|
||
stop_loop_watchdog()
|
||
# Tear down all camera fan-out broadcasters (#1089) so subscribers exit
|
||
# cleanly rather than waiting on a queue that nothing will ever fill.
|
||
try:
|
||
from backend.app.services.camera_fanout import shutdown_all_broadcasters
|
||
|
||
await shutdown_all_broadcasters()
|
||
except Exception as e:
|
||
logging.warning("Failed to shut down camera broadcasters: %s", e)
|
||
stop_expected_prints_cleanup()
|
||
stop_auth_cleanup()
|
||
printer_manager.disconnect_all()
|
||
await close_spoolman_client()
|
||
|
||
# Stop all virtual printer services
|
||
await virtual_printer_manager.stop_all()
|
||
|
||
await mqtt_smart_plug_service.disconnect(timeout=2)
|
||
|
||
await mqtt_relay.disconnect(timeout=2)
|
||
|
||
# Drop the shared Bambu Cloud HTTP client we registered at startup.
|
||
set_shared_http_client(None)
|
||
set_shared_makerworld_http_client(None)
|
||
set_shared_orca_http_client(None)
|
||
await _shared_cloud_http_client.aclose()
|
||
|
||
# Checkpoint WAL (SQLite only) and close all database connections
|
||
from backend.app.core.db_dialect import is_sqlite
|
||
|
||
if is_sqlite():
|
||
try:
|
||
async with engine.begin() as conn:
|
||
await conn.execute(text("PRAGMA wal_checkpoint(TRUNCATE)"))
|
||
logging.info("WAL checkpoint completed")
|
||
except Exception as e:
|
||
logging.warning("WAL checkpoint failed: %s", e)
|
||
await engine.dispose()
|
||
|
||
|
||
app = FastAPI(
|
||
title=app_settings.app_name,
|
||
description="Archive and manage Bambu Lab 3MF files",
|
||
version=APP_VERSION,
|
||
lifespan=lifespan,
|
||
)
|
||
|
||
|
||
# =============================================================================
|
||
# Authentication Middleware - Secures ALL API routes by default
|
||
# =============================================================================
|
||
# Public routes that don't require authentication even when auth is enabled
|
||
PUBLIC_API_ROUTES = {
|
||
# Auth routes needed before/during login
|
||
"/api/v1/auth/status",
|
||
"/api/v1/auth/login",
|
||
"/api/v1/auth/setup", # Needed for initial setup and recovery
|
||
# Advanced auth status needed for login page
|
||
"/api/v1/auth/advanced-auth/status",
|
||
"/api/v1/auth/forgot-password", # Password reset for advanced auth
|
||
"/api/v1/auth/forgot-password/confirm", # Complete password reset with token (H-6)
|
||
# 2FA routes that are called BEFORE a JWT is issued (pre-auth flow)
|
||
"/api/v1/auth/2fa/verify", # Exchange pre_auth_token + 2FA code for JWT
|
||
"/api/v1/auth/2fa/email/send", # Send OTP email (pre_auth_token based)
|
||
# OIDC routes that must be reachable without a JWT
|
||
"/api/v1/auth/oidc/providers", # Public list of enabled providers
|
||
"/api/v1/auth/oidc/callback", # Redirect target from OIDC provider
|
||
"/api/v1/auth/oidc/exchange", # Exchange short-lived OIDC token for JWT
|
||
# Version check for updates (no sensitive data)
|
||
"/api/v1/updates/version",
|
||
# Metrics endpoint handles its own prometheus_token authentication
|
||
"/api/v1/metrics",
|
||
# Appliance bootstrap (#1589 follow-up): the SPA's i18n setup polls
|
||
# this BEFORE a JWT is available to pick up the firstboot wizard's
|
||
# hostname / timezone / locale and the chrony NTP-gate state. The
|
||
# response contains user-set defaults and a public sync flag — no
|
||
# secrets. Without this entry the global auth middleware returns 401
|
||
# before the route handler runs, regardless of the route's own
|
||
# "no auth required" intent.
|
||
"/api/v1/system/appliance",
|
||
# Cam Wall kiosk feed (#2531): a TV or Pi in kiosk mode has no login, so it
|
||
# authenticates with a long-lived ``camwall``-scoped token in the query
|
||
# string — exactly like the camera streams two lists below, and for the same
|
||
# reason (no header to put a JWT in). "Public" here only means the middleware
|
||
# steps aside; the route still runs RequireCamWallTokenIfAuthEnabled, which
|
||
# rejects an absent, expired, revoked, or wrong-scoped token. In particular a
|
||
# plain ``camera_stream`` token does NOT open this door.
|
||
"/api/v1/camwall/printers",
|
||
}
|
||
|
||
# Route prefixes that are public (for routes with dynamic segments)
|
||
PUBLIC_API_PREFIXES = [
|
||
# WebSocket connections handle their own auth
|
||
"/api/v1/ws",
|
||
# OIDC authorize redirects — include provider_id in path
|
||
"/api/v1/auth/oidc/authorize/",
|
||
]
|
||
|
||
# Route patterns that are public (read-only display data)
|
||
# These are checked with "in path" - needed because browsers load images/videos
|
||
# via <img src> and <video src> which don't include Authorization headers
|
||
PUBLIC_API_PATTERNS = [
|
||
# Thumbnails
|
||
"/thumbnail", # /archives/{id}/thumbnail, /library/files/{id}/thumbnail
|
||
"/plate-thumbnail/", # /archives/{id}/plate-thumbnail/{plate_id}
|
||
# Images and media
|
||
"/photos/", # /archives/{id}/photos/{filename}
|
||
"/project-image/", # /archives/{id}/project-image/{path}
|
||
"/qrcode", # /archives/{id}/qrcode
|
||
"/timelapse", # /archives/{id}/timelapse (video)
|
||
"/cover", # /printers/{id}/cover
|
||
"/icon", # /external-links/{id}/icon
|
||
# Camera (streams loaded via <img> tag)
|
||
"/camera/stream", # /printers/{id}/camera/stream
|
||
"/camera/snapshot", # /printers/{id}/camera/snapshot
|
||
# Streaming-overlay status feed (#2613): OBS loads /overlay/{id} with no login
|
||
# and this backs it, authenticated by an ``overlay``-scoped token in the query
|
||
# string (same reasoning as the camera streams above — no header to carry a
|
||
# JWT). "Public" only means the middleware steps aside; the route still runs
|
||
# RequireOverlayTokenIfAuthEnabled, which rejects an absent, expired, revoked,
|
||
# or wrong-scoped token — a camwall or camera_stream token does NOT open it.
|
||
"/overlay-status", # /printers/{id}/overlay-status
|
||
# Slicer token-authenticated downloads — protocol handlers (bambustudioopen://,
|
||
# orcaslicer://) cannot send auth headers. These endpoints validate a short-lived
|
||
# download token in the URL path instead.
|
||
"/dl/", # /archives/{id}/dl/{token}/{filename}, /library/files/{id}/dl/{token}/{filename}
|
||
# Obico ML API fetches JPEG frames by one-shot nonce (issue #172 follow-up).
|
||
# The nonce itself is the credential: 32-byte random, single-use, ~30s TTL.
|
||
"/obico/cached-frame/", # /obico/cached-frame/{nonce}
|
||
]
|
||
|
||
|
||
_security_headers_logger = logging.getLogger("backend.app.main.security_headers")
|
||
|
||
|
||
def _parse_trusted_frame_origins() -> tuple[str, ...]:
|
||
"""Parse TRUSTED_FRAME_ORIGINS env var into a validated allowlist (#1191).
|
||
|
||
Format: comma-separated list of ``scheme://host[:port]`` origins.
|
||
|
||
Used by ``security_headers_middleware`` to relax ``frame-ancestors`` for
|
||
trusted same-LAN deployments (e.g. Home Assistant Webpage panel embedding
|
||
Bambuddy from a different port). Defaults to empty — strict ``'none'``.
|
||
|
||
Invalid entries are dropped with a warning rather than failing startup, so
|
||
a typo in one origin doesn't take the whole deployment down.
|
||
"""
|
||
raw = os.environ.get("TRUSTED_FRAME_ORIGINS", "").strip()
|
||
if not raw:
|
||
return ()
|
||
valid: list[str] = []
|
||
for item in raw.split(","):
|
||
candidate = item.strip()
|
||
if not candidate:
|
||
continue
|
||
try:
|
||
parsed = urlparse(candidate)
|
||
except ValueError as e:
|
||
_security_headers_logger.warning("TRUSTED_FRAME_ORIGINS: dropping %r — %s", candidate, e)
|
||
continue
|
||
if parsed.scheme not in ("http", "https"):
|
||
_security_headers_logger.warning("TRUSTED_FRAME_ORIGINS: dropping %r — must be http(s)", candidate)
|
||
continue
|
||
if not parsed.netloc:
|
||
_security_headers_logger.warning("TRUSTED_FRAME_ORIGINS: dropping %r — missing host", candidate)
|
||
continue
|
||
if parsed.path and parsed.path != "/":
|
||
_security_headers_logger.warning("TRUSTED_FRAME_ORIGINS: dropping %r — paths not allowed", candidate)
|
||
continue
|
||
if parsed.query or parsed.fragment:
|
||
_security_headers_logger.warning(
|
||
"TRUSTED_FRAME_ORIGINS: dropping %r — query/fragment not allowed", candidate
|
||
)
|
||
continue
|
||
if "*" in parsed.netloc:
|
||
_security_headers_logger.warning("TRUSTED_FRAME_ORIGINS: dropping %r — wildcards not allowed", candidate)
|
||
continue
|
||
valid.append(f"{parsed.scheme}://{parsed.netloc}")
|
||
if valid:
|
||
_security_headers_logger.info("TRUSTED_FRAME_ORIGINS: %s", ", ".join(valid))
|
||
return tuple(valid)
|
||
|
||
|
||
_TRUSTED_FRAME_ORIGINS: tuple[str, ...] = _parse_trusted_frame_origins()
|
||
|
||
|
||
def _frame_ancestors(default_value: str) -> str:
|
||
"""Compose the ``frame-ancestors`` CSP directive (#1191).
|
||
|
||
``default_value`` is the strict directive used when the operator has not
|
||
configured ``TRUSTED_FRAME_ORIGINS`` — typically ``'none'`` (catch-all and
|
||
docs) or ``'self'`` (gcode-viewer, served same-origin). When trusted origins
|
||
are configured, ``'self'`` is always included so same-origin embedding never
|
||
breaks even if an operator forgets to add their own origin to the list.
|
||
"""
|
||
if _TRUSTED_FRAME_ORIGINS:
|
||
return "frame-ancestors 'self' " + " ".join(_TRUSTED_FRAME_ORIGINS) + ";"
|
||
return f"frame-ancestors {default_value};"
|
||
|
||
|
||
@app.middleware("http")
|
||
async def security_headers_middleware(request, call_next):
|
||
"""Add standard HTTP security headers to every response."""
|
||
# Per-request nonce stamped into `script-src` (#1460). On its own this
|
||
# changes nothing for Bambuddy's own pages — index.html has no inline
|
||
# scripts since the SW registration moved to /sw-register.js. The reason
|
||
# it's here is Cloudflare: a CF-fronted deployment has the bot-detection
|
||
# script injected into the HTML on the edge, with a fresh hash on every
|
||
# load (so hashes can't be allowlisted). When CF sees a nonce in our CSP,
|
||
# it clones the same nonce onto its injected <script>, and the inline
|
||
# script passes the policy without us needing 'unsafe-inline'. See
|
||
# https://developers.cloudflare.com/cloudflare-challenges/challenge-types/javascript-detections/#if-you-have-a-content-security-policy-csp
|
||
csp_nonce = secrets.token_urlsafe(16)
|
||
response = await call_next(request)
|
||
response.headers["X-Content-Type-Options"] = "nosniff"
|
||
# X-Frame-Options is the legacy cross-origin embedding control. Modern
|
||
# browsers honour CSP frame-ancestors instead, and the legacy
|
||
# `ALLOW-FROM <url>` syntax is deprecated and inconsistent across vendors.
|
||
# When operators have explicitly allowlisted trusted frame origins (#1191
|
||
# — typically Home Assistant on a different port), drop X-Frame-Options
|
||
# and let the CSP-side frame-ancestors directive govern embedding.
|
||
if not _TRUSTED_FRAME_ORIGINS:
|
||
response.headers["X-Frame-Options"] = "SAMEORIGIN"
|
||
response.headers["Referrer-Policy"] = "strict-origin-when-cross-origin"
|
||
# Content-Security-Policy for the React SPA.
|
||
# Notes:
|
||
# - 'unsafe-inline' for style-src: React and UI libs inject inline styles at runtime.
|
||
# - connect-src ws:/wss:: MQTT/printer WebSocket connections.
|
||
# - img-src data: / blob:: base64 thumbnails and Blob-URL timelapse previews.
|
||
# - media-src blob:: timelapse video player uses Blob URLs.
|
||
# - font-src data:: some icon fonts are embedded as data URIs.
|
||
if request.url.path.startswith("/gcode-viewer"):
|
||
# The gcode viewer is embedded in an iframe served by this same origin,
|
||
# so frame-ancestors must allow 'self'. prettygcode.js also uses eval()
|
||
# internally, so script-src needs 'unsafe-eval'.
|
||
response.headers["Content-Security-Policy"] = (
|
||
"default-src 'self'; "
|
||
"script-src 'self' 'unsafe-eval'; "
|
||
"style-src 'self' 'unsafe-inline'; "
|
||
"img-src 'self' data: blob:; "
|
||
"media-src 'self' blob:; "
|
||
"connect-src 'self' ws: wss:; "
|
||
"font-src 'self' data:; "
|
||
"object-src 'none'; "
|
||
"base-uri 'self'; "
|
||
"frame-src 'self' http: https:; " + _frame_ancestors("'self'")
|
||
)
|
||
elif request.url.path in ("/docs", "/redoc", "/docs/oauth2-redirect"):
|
||
# FastAPI's built-in Swagger UI / ReDoc pages load assets from
|
||
# cdn.jsdelivr.net and bootstrap with an inline <script>, so the
|
||
# default CSP would render a blank page.
|
||
response.headers["Content-Security-Policy"] = (
|
||
"default-src 'self'; "
|
||
"script-src 'self' 'unsafe-inline' https://cdn.jsdelivr.net; "
|
||
"style-src 'self' 'unsafe-inline' https://cdn.jsdelivr.net https://fonts.googleapis.com; "
|
||
"img-src 'self' data: blob: https://fastapi.tiangolo.com https://cdn.redoc.ly; "
|
||
"connect-src 'self'; "
|
||
"font-src 'self' data: https://fonts.gstatic.com; "
|
||
"worker-src 'self' blob:; "
|
||
"object-src 'none'; "
|
||
"base-uri 'self'; " + _frame_ancestors("'none'")
|
||
)
|
||
else:
|
||
response.headers["Content-Security-Policy"] = (
|
||
"default-src 'self'; "
|
||
f"script-src 'self' 'nonce-{csp_nonce}'; "
|
||
"style-src 'self' 'unsafe-inline'; "
|
||
"img-src 'self' data: blob:; "
|
||
"media-src 'self' blob:; "
|
||
"connect-src 'self' ws: wss:; "
|
||
"font-src 'self' data:; "
|
||
"object-src 'none'; "
|
||
"base-uri 'self'; "
|
||
"frame-src 'self' http: https:; " + _frame_ancestors("'none'")
|
||
)
|
||
if request.url.scheme == "https":
|
||
response.headers["Strict-Transport-Security"] = "max-age=31536000; includeSubDomains"
|
||
return response
|
||
|
||
|
||
@app.middleware("http")
|
||
async def auth_middleware(request, call_next):
|
||
"""Enforce authentication on all API routes when auth is enabled.
|
||
|
||
This middleware provides defense-in-depth by checking auth at the API gateway level,
|
||
regardless of whether individual routes have auth dependencies.
|
||
"""
|
||
from starlette.responses import JSONResponse
|
||
|
||
path = request.url.path
|
||
|
||
# Only apply to API routes
|
||
if not path.startswith("/api/"):
|
||
return await call_next(request)
|
||
|
||
# Allow public routes
|
||
if path in PUBLIC_API_ROUTES:
|
||
return await call_next(request)
|
||
|
||
# Allow public prefixes
|
||
for prefix in PUBLIC_API_PREFIXES:
|
||
if path.startswith(prefix):
|
||
return await call_next(request)
|
||
|
||
# Allow public patterns (read-only display data like thumbnails)
|
||
for pattern in PUBLIC_API_PATTERNS:
|
||
if pattern in path:
|
||
return await call_next(request)
|
||
|
||
# Check if auth is enabled. Fail CLOSED on any exception during the
|
||
# probe — GHSA-6mf4-q26m-47pv: the previous fail-open path here let
|
||
# an attacker who could force a DB exception (e.g. file-descriptor
|
||
# exhaustion via login flood) bypass auth on every protected endpoint.
|
||
try:
|
||
async with async_session() as db:
|
||
from backend.app.core.auth import is_auth_enabled
|
||
|
||
auth_enabled = await is_auth_enabled(db)
|
||
|
||
if not auth_enabled:
|
||
# Auth disabled, allow all requests
|
||
return await call_next(request)
|
||
except Exception:
|
||
logging.getLogger(__name__).exception("auth_middleware: failing closed on auth-probe error from %s", path)
|
||
return JSONResponse(
|
||
status_code=503,
|
||
content={"detail": "Authentication service temporarily unavailable"},
|
||
)
|
||
|
||
# Auth is enabled - require valid token
|
||
auth_header = request.headers.get("Authorization")
|
||
x_api_key = request.headers.get("X-API-Key")
|
||
|
||
# Check for API key auth first
|
||
if x_api_key or (auth_header and auth_header.startswith("Bearer bb_")):
|
||
# API key authentication - let the request through to be validated by route handler
|
||
# API keys are validated per-route since they have different permission levels
|
||
return await call_next(request)
|
||
|
||
# Check for JWT auth
|
||
if not auth_header or not auth_header.startswith("Bearer "):
|
||
return JSONResponse(
|
||
status_code=401,
|
||
content={"detail": "Authentication required"},
|
||
headers={"WWW-Authenticate": "Bearer"},
|
||
)
|
||
|
||
# Validate JWT token
|
||
import jwt
|
||
|
||
try:
|
||
from backend.app.core.auth import (
|
||
ALGORITHM,
|
||
SECRET_KEY,
|
||
_is_token_fresh,
|
||
get_user_by_username,
|
||
is_jti_revoked,
|
||
)
|
||
|
||
token = auth_header.replace("Bearer ", "")
|
||
payload = jwt.decode(token, SECRET_KEY, algorithms=[ALGORITHM])
|
||
username = payload.get("sub")
|
||
if not username:
|
||
raise ValueError("No username in token")
|
||
jti = payload.get("jti")
|
||
if not jti:
|
||
raise ValueError("No jti in token")
|
||
iat = payload.get("iat")
|
||
|
||
# Verify user exists, is active, and token is still fresh (L-R8-A).
|
||
# Reject revoked tokens first (defense-in-depth gateway check), reusing
|
||
# this session so the gateway adds a single pooled checkout, not two (#2572).
|
||
async with async_session() as db:
|
||
if await is_jti_revoked(jti, db):
|
||
return JSONResponse(
|
||
status_code=401,
|
||
content={"detail": "Token has been revoked"},
|
||
headers={"WWW-Authenticate": "Bearer"},
|
||
)
|
||
user = await get_user_by_username(db, username)
|
||
if not user or not user.is_active:
|
||
return JSONResponse(
|
||
status_code=401,
|
||
content={"detail": "User not found or inactive"},
|
||
headers={"WWW-Authenticate": "Bearer"},
|
||
)
|
||
if not _is_token_fresh(iat, user):
|
||
return JSONResponse(
|
||
status_code=401,
|
||
content={"detail": "Token no longer valid"},
|
||
headers={"WWW-Authenticate": "Bearer"},
|
||
)
|
||
except jwt.ExpiredSignatureError:
|
||
return JSONResponse(
|
||
status_code=401,
|
||
content={"detail": "Token has expired"},
|
||
headers={"WWW-Authenticate": "Bearer"},
|
||
)
|
||
except (jwt.InvalidTokenError, ValueError, Exception):
|
||
return JSONResponse(
|
||
status_code=401,
|
||
content={"detail": "Invalid token"},
|
||
headers={"WWW-Authenticate": "Bearer"},
|
||
)
|
||
|
||
return await call_next(request)
|
||
|
||
|
||
@app.middleware("http")
|
||
async def trace_id_middleware(request, call_next):
|
||
"""Stamp every HTTP request with a trace ID and echo it back.
|
||
|
||
Decorated AFTER auth_middleware on purpose: Starlette stacks
|
||
@app.middleware decorators LIFO, so the last-decorated runs first
|
||
inbound. Putting the trace stamp last makes it the OUTERMOST layer,
|
||
which means auth-middleware log lines (and every line emitted on the
|
||
way down to and back from the route handler) all carry the same
|
||
trace ID. If we put it before auth, auth's logs would be stamped
|
||
with the *previous* request's ID — useless for correlation.
|
||
|
||
Honours an inbound ``X-Trace-Id`` header so callers running their
|
||
own tracing can correlate their span IDs with our log lines, but
|
||
only if the value passes the whitelist gate in
|
||
``backend.app.core.trace.normalise_inbound_trace_id`` — anything
|
||
rejected (too long, contains control chars, etc.) silently triggers
|
||
a freshly minted server-side ID rather than failing the request.
|
||
|
||
The minted (or echoed) ID is set on a ContextVar so that every log
|
||
record emitted during the request — application logs *and* uvicorn's
|
||
access log — carries it via TraceIDFilter, and is also written to
|
||
the ``X-Trace-Id`` response header so clients can pin a server-side
|
||
log search to the exact request they made.
|
||
"""
|
||
from backend.app.core.trace import (
|
||
generate_trace_id,
|
||
normalise_inbound_trace_id,
|
||
trace_id_var,
|
||
)
|
||
|
||
inbound = normalise_inbound_trace_id(request.headers.get("X-Trace-Id"))
|
||
trace_id = inbound if inbound is not None else generate_trace_id()
|
||
|
||
token = trace_id_var.set(trace_id)
|
||
try:
|
||
response = await call_next(request)
|
||
finally:
|
||
# Reset the ContextVar so a record emitted in a totally
|
||
# unrelated background task that just happens to inherit this
|
||
# context doesn't keep referencing this request's ID forever.
|
||
# In practice ContextVar.reset is best-effort under asyncio
|
||
# task-spawn semantics, but the cost is one attribute write so
|
||
# we may as well do it.
|
||
trace_id_var.reset(token)
|
||
|
||
response.headers["X-Trace-Id"] = trace_id
|
||
return response
|
||
|
||
|
||
# API routes
|
||
app.include_router(auth.router, prefix=app_settings.api_prefix)
|
||
app.include_router(mfa.router, prefix=app_settings.api_prefix)
|
||
app.include_router(bug_report.router, prefix=app_settings.api_prefix)
|
||
app.include_router(users.router, prefix=app_settings.api_prefix)
|
||
app.include_router(groups.router, prefix=app_settings.api_prefix)
|
||
app.include_router(printers.router, prefix=app_settings.api_prefix)
|
||
app.include_router(archives.router, prefix=app_settings.api_prefix)
|
||
app.include_router(filaments.router, prefix=app_settings.api_prefix)
|
||
app.include_router(inventory.router, prefix=app_settings.api_prefix)
|
||
app.include_router(labels.router, prefix=app_settings.api_prefix)
|
||
app.include_router(settings_routes.router, prefix=app_settings.api_prefix)
|
||
app.include_router(cloud.router, prefix=app_settings.api_prefix)
|
||
app.include_router(orca_cloud.router, prefix=app_settings.api_prefix)
|
||
app.include_router(local_presets.router, prefix=app_settings.api_prefix)
|
||
app.include_router(smart_plugs.router, prefix=app_settings.api_prefix)
|
||
app.include_router(print_log.router, prefix=app_settings.api_prefix)
|
||
app.include_router(print_queue.router, prefix=app_settings.api_prefix)
|
||
app.include_router(kprofiles.router, prefix=app_settings.api_prefix)
|
||
app.include_router(notifications.router, prefix=app_settings.api_prefix)
|
||
app.include_router(notification_templates.router, prefix=app_settings.api_prefix)
|
||
app.include_router(user_notifications.router, prefix=app_settings.api_prefix)
|
||
app.include_router(spoolman.router, prefix=app_settings.api_prefix)
|
||
app.include_router(spoolman_inventory.router, prefix=app_settings.api_prefix)
|
||
app.include_router(updates.router, prefix=app_settings.api_prefix)
|
||
app.include_router(sponsor_prompt.router, prefix=app_settings.api_prefix)
|
||
app.include_router(maintenance.router, prefix=app_settings.api_prefix)
|
||
app.include_router(camera.router, prefix=app_settings.api_prefix)
|
||
app.include_router(camwall.router, prefix=app_settings.api_prefix)
|
||
app.include_router(external_links.router, prefix=app_settings.api_prefix)
|
||
app.include_router(projects.router, prefix=app_settings.api_prefix)
|
||
app.include_router(library.router, prefix=app_settings.api_prefix)
|
||
app.include_router(library_tags.router, prefix=app_settings.api_prefix)
|
||
app.include_router(library_trash.router, prefix=app_settings.api_prefix)
|
||
app.include_router(slice_jobs.router, prefix=app_settings.api_prefix)
|
||
app.include_router(slicer_pipelines.router, prefix=app_settings.api_prefix)
|
||
app.include_router(pipeline_runs.pipeline_run_create_router, prefix=app_settings.api_prefix)
|
||
app.include_router(pipeline_runs.pipeline_run_router, prefix=app_settings.api_prefix)
|
||
app.include_router(slicer_presets.router, prefix=app_settings.api_prefix)
|
||
app.include_router(archive_purge.router, prefix=app_settings.api_prefix)
|
||
app.include_router(makerworld.router, prefix=app_settings.api_prefix)
|
||
app.include_router(api_keys.router, prefix=app_settings.api_prefix)
|
||
app.include_router(webhook.router, prefix=app_settings.api_prefix)
|
||
app.include_router(ams_history.router, prefix=app_settings.api_prefix)
|
||
app.include_router(printer_sensor_history.router, prefix=app_settings.api_prefix)
|
||
app.include_router(system.router, prefix=app_settings.api_prefix)
|
||
app.include_router(support.router, prefix=app_settings.api_prefix)
|
||
app.include_router(websocket.router, prefix=app_settings.api_prefix)
|
||
app.include_router(discovery.router, prefix=app_settings.api_prefix)
|
||
app.include_router(pending_uploads.router, prefix=app_settings.api_prefix)
|
||
app.include_router(firmware.router, prefix=app_settings.api_prefix)
|
||
app.include_router(github_backup.router, prefix=app_settings.api_prefix)
|
||
app.include_router(local_backup.router, prefix=app_settings.api_prefix)
|
||
app.include_router(obico.router, prefix=app_settings.api_prefix)
|
||
app.include_router(metrics.router, prefix=app_settings.api_prefix)
|
||
app.include_router(virtual_printers.router, prefix=app_settings.api_prefix)
|
||
app.include_router(spoolbuddy.router, prefix=app_settings.api_prefix)
|
||
|
||
|
||
# Serve static files (React build)
|
||
if app_settings.static_dir.exists() and any(app_settings.static_dir.iterdir()):
|
||
app.mount(
|
||
"/assets",
|
||
StaticFiles(directory=app_settings.static_dir / "assets"),
|
||
name="assets",
|
||
)
|
||
if (app_settings.static_dir / "img").exists():
|
||
app.mount(
|
||
"/img",
|
||
StaticFiles(directory=app_settings.static_dir / "img"),
|
||
name="img",
|
||
)
|
||
if (app_settings.static_dir / "icons").exists():
|
||
app.mount(
|
||
"/icons",
|
||
StaticFiles(directory=app_settings.static_dir / "icons"),
|
||
name="icons",
|
||
)
|
||
# Self-hosted Inter woff2 files (#1460). Without this mount /fonts/*.woff2
|
||
# falls through to the SPA catch-all and returns index.html, which the
|
||
# browser's font sanitizer rejects ("downloadable font: rejected by
|
||
# sanitizer").
|
||
if (app_settings.static_dir / "fonts").exists():
|
||
app.mount(
|
||
"/fonts",
|
||
StaticFiles(directory=app_settings.static_dir / "fonts"),
|
||
name="fonts",
|
||
)
|
||
|
||
|
||
@app.get("/")
|
||
async def serve_frontend():
|
||
"""Serve the React frontend."""
|
||
index_file = app_settings.static_dir / "index.html"
|
||
if index_file.exists():
|
||
return FileResponse(index_file, headers=_HTML_CACHE_HEADERS)
|
||
return {
|
||
"message": "Bambuddy API",
|
||
"docs": "/docs",
|
||
"frontend": "Build and place React app in /static directory",
|
||
}
|
||
|
||
|
||
# index.html must always be revalidated — Vite emits content-hashed JS/CSS
|
||
# bundles (e.g. `index-JRaF_JhW.js`), so the JS itself is safe to cache
|
||
# forever, but the HTML wrapping it is the only file that knows which hash
|
||
# is current. Without explicit cache-control headers Chromium decides
|
||
# heuristically (typically 10% of the time since Last-Modified) and on
|
||
# long-running kiosks happily serves stale HTML across browser restarts.
|
||
# That stale HTML references an old bundle hash, the old bundle is also
|
||
# in the disk cache, and the user ends up running pre-update JS forever
|
||
# without ever knowing why. ``no-cache`` (revalidate every time, but a
|
||
# 304 is cheap) is the correct setting for an SPA's entry HTML.
|
||
_HTML_CACHE_HEADERS = {"Cache-Control": "no-cache, must-revalidate"}
|
||
|
||
|
||
@app.get("/health")
|
||
async def health_check():
|
||
"""Health check endpoint."""
|
||
return {"status": "healthy"}
|
||
|
||
|
||
# GET + HEAD on the three PWA bootstrap routes (#1460). Scanners and a plain
|
||
# `curl -I` use HEAD; FastAPI's @app.get only registers GET, so HEAD answers
|
||
# with 405 Method Not Allowed and shows up as a "broken manifest" red herring
|
||
# in deployment debugging.
|
||
@app.api_route("/manifest.json", methods=["GET", "HEAD"])
|
||
async def serve_manifest():
|
||
"""Serve PWA manifest."""
|
||
manifest_file = app_settings.static_dir / "manifest.json"
|
||
if manifest_file.exists():
|
||
return FileResponse(manifest_file, media_type="application/manifest+json")
|
||
return {"error": "Manifest not found"}
|
||
|
||
|
||
@app.api_route("/sw.js", methods=["GET", "HEAD"])
|
||
async def serve_service_worker():
|
||
"""Serve service worker."""
|
||
sw_file = app_settings.static_dir / "sw.js"
|
||
if sw_file.exists():
|
||
return FileResponse(
|
||
sw_file,
|
||
media_type="application/javascript",
|
||
headers={"Cache-Control": "no-cache, no-store, must-revalidate"},
|
||
)
|
||
return {"error": "Service worker not found"}
|
||
|
||
|
||
@app.api_route("/sw-register.js", methods=["GET", "HEAD"])
|
||
async def serve_sw_register():
|
||
"""Serve the service-worker registration bootstrap script.
|
||
|
||
Served as a real JS file so the strict `script-src 'self'` CSP covers it
|
||
without needing 'unsafe-inline' or per-build hashes on the inline tag.
|
||
"""
|
||
reg_file = app_settings.static_dir / "sw-register.js"
|
||
if reg_file.exists():
|
||
return FileResponse(reg_file, media_type="application/javascript")
|
||
return {"error": "sw-register.js not found"}
|
||
|
||
|
||
# ── GCode viewer static files ────────────────────────────────────────────────
|
||
# Served via explicit routes so ordering is guaranteed (app.mount() loses
|
||
# to the /{full_path:path} catch-all in some Starlette versions).
|
||
_gcode_viewer_dir = (app_settings.static_dir.parent / "gcode_viewer").resolve()
|
||
|
||
# Surface packaging gaps at startup instead of as silent runtime 404s. If the
|
||
# directory is missing the explicit @app.get("/gcode-viewer/...") routes below
|
||
# return bare HTTPException(404) which renders as {"detail":"Not Found"} in
|
||
# the 3D Preview iframe (#1218) — easy to miss in normal operation, easy to
|
||
# spot if the operator scans the startup log or a support bundle.
|
||
if not (_gcode_viewer_dir / "index.html").is_file():
|
||
logging.getLogger(__name__).error(
|
||
"Embedded GCode viewer assets missing at %s — /gcode-viewer/ will return 404 "
|
||
"and 3D Preview will fail. This indicates a packaging bug; the gcode_viewer/ "
|
||
"directory must be present alongside static/.",
|
||
_gcode_viewer_dir,
|
||
)
|
||
|
||
|
||
def _gcode_viewer_response(rel: str) -> FileResponse:
|
||
from fastapi import HTTPException as _HTTPException
|
||
|
||
safe = (_gcode_viewer_dir / rel).resolve()
|
||
if not safe.is_relative_to(_gcode_viewer_dir):
|
||
raise _HTTPException(status_code=403)
|
||
if safe.is_file():
|
||
mt, _ = _mimetypes.guess_type(str(safe))
|
||
return FileResponse(str(safe), media_type=mt or "application/octet-stream")
|
||
raise _HTTPException(status_code=404)
|
||
|
||
|
||
@app.get("/gcode-viewer/")
|
||
async def serve_gcode_viewer_index() -> FileResponse:
|
||
"""Raw PrettyGCode viewer for the iframe. The bare ``/gcode-viewer``
|
||
(no trailing slash) intentionally falls through to the SPA catch-all so a
|
||
full-page reload re-enters the React layout instead of serving the iframe
|
||
contents standalone."""
|
||
return _gcode_viewer_response("index.html")
|
||
|
||
|
||
@app.get("/gcode-viewer/{file_path:path}")
|
||
async def serve_gcode_viewer_file(file_path: str) -> FileResponse:
|
||
return _gcode_viewer_response(file_path)
|
||
|
||
|
||
# Catch-all route for React Router (must be last)
|
||
@app.get("/{full_path:path}")
|
||
async def serve_spa(full_path: str):
|
||
"""Serve React app for client-side routing."""
|
||
# Don't intercept API routes - raise proper 404 so FastAPI can handle redirects
|
||
if full_path.startswith("api/"):
|
||
from fastapi import HTTPException
|
||
|
||
raise HTTPException(status_code=404, detail="Not found")
|
||
|
||
index_file = app_settings.static_dir / "index.html"
|
||
if index_file.exists():
|
||
return FileResponse(index_file, headers=_HTML_CACHE_HEADERS)
|
||
|
||
return {"error": "Frontend not built"}
|