mirror of
https://github.com/blakeblackshear/frigate.git
synced 2024-12-29 00:06:19 +01:00
dc54981784
* Moved FrigateApp.init_config() into FrigateConfig.load() * Move frigate config loading into main * Store PlusApi in FrigateConfig * Register SIGTERM handler in main * Ensure logging is setup during config parsing * Removed pointless try * Moved config initialization out of FrigateApp * Made FrigateApp.shm_frame_count into a function * Removed log calls from signal handlers python's logging calls are not re-entrant, which caused at least one of these to deadlock randomly. * Reopen stdout/err on process fork This helps avoid deadlocks (https://github.com/python/cpython/issues/91776). * Make mypy happy * Whoops. I might have forgotten to save. Truly an amateur mistake. * Always call FrigateApp.stop()
197 lines
5.9 KiB
Python
197 lines
5.9 KiB
Python
"""Handle outputting raw frigate frames"""
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import logging
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import multiprocessing as mp
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import os
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import shutil
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import signal
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import threading
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from typing import Optional
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from wsgiref.simple_server import make_server
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from setproctitle import setproctitle
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from ws4py.server.wsgirefserver import (
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WebSocketWSGIHandler,
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WebSocketWSGIRequestHandler,
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WSGIServer,
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)
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from ws4py.server.wsgiutils import WebSocketWSGIApplication
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from frigate.comms.detections_updater import DetectionSubscriber, DetectionTypeEnum
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from frigate.comms.ws import WebSocket
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from frigate.config import FrigateConfig
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from frigate.const import CACHE_DIR, CLIPS_DIR
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from frigate.output.birdseye import Birdseye
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from frigate.output.camera import JsmpegCamera
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from frigate.output.preview import PreviewRecorder
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from frigate.util.image import SharedMemoryFrameManager
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logger = logging.getLogger(__name__)
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def output_frames(
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config: FrigateConfig,
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):
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threading.current_thread().name = "output"
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setproctitle("frigate.output")
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stop_event = mp.Event()
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def receiveSignal(signalNumber, frame):
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stop_event.set()
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signal.signal(signal.SIGTERM, receiveSignal)
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signal.signal(signal.SIGINT, receiveSignal)
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frame_manager = SharedMemoryFrameManager()
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# start a websocket server on 8082
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WebSocketWSGIHandler.http_version = "1.1"
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websocket_server = make_server(
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"127.0.0.1",
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8082,
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server_class=WSGIServer,
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handler_class=WebSocketWSGIRequestHandler,
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app=WebSocketWSGIApplication(handler_cls=WebSocket),
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)
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websocket_server.initialize_websockets_manager()
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websocket_thread = threading.Thread(target=websocket_server.serve_forever)
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detection_subscriber = DetectionSubscriber(DetectionTypeEnum.video)
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jsmpeg_cameras: dict[str, JsmpegCamera] = {}
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birdseye: Optional[Birdseye] = None
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preview_recorders: dict[str, PreviewRecorder] = {}
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preview_write_times: dict[str, float] = {}
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move_preview_frames("cache")
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for camera, cam_config in config.cameras.items():
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if not cam_config.enabled:
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continue
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jsmpeg_cameras[camera] = JsmpegCamera(cam_config, stop_event, websocket_server)
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preview_recorders[camera] = PreviewRecorder(cam_config)
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preview_write_times[camera] = 0
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if config.birdseye.enabled:
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birdseye = Birdseye(config, stop_event, websocket_server)
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websocket_thread.start()
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while not stop_event.is_set():
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(topic, data) = detection_subscriber.check_for_update(timeout=1)
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if not topic:
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continue
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(
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camera,
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frame_time,
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current_tracked_objects,
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motion_boxes,
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regions,
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) = data
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frame_id = f"{camera}{frame_time}"
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frame = frame_manager.get(frame_id, config.cameras[camera].frame_shape_yuv)
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if frame is None:
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logger.debug(f"Failed to get frame {frame_id} from SHM")
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continue
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# send camera frame to ffmpeg process if websockets are connected
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if any(
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ws.environ["PATH_INFO"].endswith(camera) for ws in websocket_server.manager
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):
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# write to the converter for the camera if clients are listening to the specific camera
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jsmpeg_cameras[camera].write_frame(frame.tobytes())
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# send output data to birdseye if websocket is connected or restreaming
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if config.birdseye.enabled and (
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config.birdseye.restream
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or any(
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ws.environ["PATH_INFO"].endswith("birdseye")
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for ws in websocket_server.manager
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)
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):
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birdseye.write_data(
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camera,
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current_tracked_objects,
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motion_boxes,
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frame_time,
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frame,
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)
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# send frames for low fps recording
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generated_preview = preview_recorders[camera].write_data(
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current_tracked_objects, motion_boxes, frame_time, frame
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)
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preview_write_times[camera] = frame_time
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# if another camera generated a preview,
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# check for any cameras that are currently offline
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# and need to generate a preview
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if generated_preview:
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for camera, time in preview_write_times.copy().items():
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if time != 0 and frame_time - time > 10:
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preview_recorders[camera].flag_offline(frame_time)
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preview_write_times[camera] = frame_time
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frame_manager.close(frame_id)
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move_preview_frames("clips")
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while True:
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(topic, data) = detection_subscriber.check_for_update(timeout=0)
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if not topic:
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break
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(
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camera,
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frame_time,
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current_tracked_objects,
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motion_boxes,
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regions,
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) = data
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frame_id = f"{camera}{frame_time}"
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frame = frame_manager.get(frame_id, config.cameras[camera].frame_shape_yuv)
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frame_manager.close(frame_id)
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detection_subscriber.stop()
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for jsmpeg in jsmpeg_cameras.values():
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jsmpeg.stop()
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for preview in preview_recorders.values():
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preview.stop()
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if birdseye is not None:
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birdseye.stop()
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websocket_server.manager.close_all()
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websocket_server.manager.stop()
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websocket_server.manager.join()
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websocket_server.shutdown()
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websocket_thread.join()
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logger.info("exiting output process...")
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def move_preview_frames(loc: str):
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preview_holdover = os.path.join(CLIPS_DIR, "preview_restart_cache")
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preview_cache = os.path.join(CACHE_DIR, "preview_frames")
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try:
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if loc == "clips":
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shutil.move(preview_cache, preview_holdover)
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elif loc == "cache":
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if not os.path.exists(preview_holdover):
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return
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shutil.move(preview_holdover, preview_cache)
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except shutil.Error:
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logger.error("Failed to restore preview cache.")
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