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Watchdog enhancements (#20237)
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* refactor get_video_properties and use json output from ffprobe * add zmq topic * publish valid segment data in recording maintainer * check for valid video data - restart separate record ffmpeg process if no video data has been received in 120s - refactor datetime import * listen to correct topic in embeddings maintainer * refactor to move get_latest_segment_datetime logic to recordings maintainer * debug logging * cleanup
This commit is contained in:
parent
b6552987b0
commit
12f8c3feac
@ -2,6 +2,7 @@
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import logging
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import logging
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from enum import Enum
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from enum import Enum
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from typing import Any
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from .zmq_proxy import Publisher, Subscriber
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from .zmq_proxy import Publisher, Subscriber
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@ -10,18 +11,21 @@ logger = logging.getLogger(__name__)
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class RecordingsDataTypeEnum(str, Enum):
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class RecordingsDataTypeEnum(str, Enum):
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all = ""
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all = ""
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recordings_available_through = "recordings_available_through"
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saved = "saved" # segment has been saved to db
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latest = "latest" # segment is in cache
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valid = "valid" # segment is valid
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invalid = "invalid" # segment is invalid
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class RecordingsDataPublisher(Publisher[tuple[str, float]]):
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class RecordingsDataPublisher(Publisher[Any]):
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"""Publishes latest recording data."""
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"""Publishes latest recording data."""
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topic_base = "recordings/"
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topic_base = "recordings/"
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def __init__(self, topic: RecordingsDataTypeEnum) -> None:
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def __init__(self) -> None:
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super().__init__(topic.value)
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super().__init__()
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def publish(self, payload: tuple[str, float], sub_topic: str = "") -> None:
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def publish(self, payload: Any, sub_topic: str = "") -> None:
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super().publish(payload, sub_topic)
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super().publish(payload, sub_topic)
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@ -32,3 +36,11 @@ class RecordingsDataSubscriber(Subscriber):
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def __init__(self, topic: RecordingsDataTypeEnum) -> None:
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def __init__(self, topic: RecordingsDataTypeEnum) -> None:
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super().__init__(topic.value)
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super().__init__(topic.value)
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def _return_object(
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self, topic: str, payload: tuple | None
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) -> tuple[str, Any] | tuple[None, None]:
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if payload is None:
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return (None, None)
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return (topic, payload)
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@ -144,7 +144,7 @@ class EmbeddingMaintainer(threading.Thread):
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EventMetadataTypeEnum.regenerate_description
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EventMetadataTypeEnum.regenerate_description
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)
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)
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self.recordings_subscriber = RecordingsDataSubscriber(
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self.recordings_subscriber = RecordingsDataSubscriber(
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RecordingsDataTypeEnum.recordings_available_through
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RecordingsDataTypeEnum.saved
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)
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)
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self.review_subscriber = ReviewDataSubscriber("")
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self.review_subscriber = ReviewDataSubscriber("")
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self.detection_subscriber = DetectionSubscriber(DetectionTypeEnum.video.value)
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self.detection_subscriber = DetectionSubscriber(DetectionTypeEnum.video.value)
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@ -525,20 +525,28 @@ class EmbeddingMaintainer(threading.Thread):
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def _process_recordings_updates(self) -> None:
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def _process_recordings_updates(self) -> None:
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"""Process recordings updates."""
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"""Process recordings updates."""
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while True:
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while True:
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recordings_data = self.recordings_subscriber.check_for_update()
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update = self.recordings_subscriber.check_for_update()
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if recordings_data == None:
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if not update:
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break
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break
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camera, recordings_available_through_timestamp = recordings_data
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(raw_topic, payload) = update
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self.recordings_available_through[camera] = (
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if not raw_topic or not payload:
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recordings_available_through_timestamp
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break
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)
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logger.debug(
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topic = str(raw_topic)
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f"{camera} now has recordings available through {recordings_available_through_timestamp}"
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)
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if topic.endswith(RecordingsDataTypeEnum.saved.value):
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camera, recordings_available_through_timestamp, _ = payload
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self.recordings_available_through[camera] = (
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recordings_available_through_timestamp
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)
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logger.debug(
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f"{camera} now has recordings available through {recordings_available_through_timestamp}"
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)
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def _process_review_updates(self) -> None:
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def _process_review_updates(self) -> None:
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"""Process review updates."""
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"""Process review updates."""
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@ -80,9 +80,7 @@ class RecordingMaintainer(threading.Thread):
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[CameraConfigUpdateEnum.add, CameraConfigUpdateEnum.record],
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[CameraConfigUpdateEnum.add, CameraConfigUpdateEnum.record],
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)
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)
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self.detection_subscriber = DetectionSubscriber(DetectionTypeEnum.all.value)
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self.detection_subscriber = DetectionSubscriber(DetectionTypeEnum.all.value)
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self.recordings_publisher = RecordingsDataPublisher(
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self.recordings_publisher = RecordingsDataPublisher()
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RecordingsDataTypeEnum.recordings_available_through
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)
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self.stop_event = stop_event
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self.stop_event = stop_event
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self.object_recordings_info: dict[str, list] = defaultdict(list)
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self.object_recordings_info: dict[str, list] = defaultdict(list)
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@ -98,6 +96,41 @@ class RecordingMaintainer(threading.Thread):
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and not d.startswith("preview_")
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and not d.startswith("preview_")
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]
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]
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# publish newest cached segment per camera (including in use files)
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newest_cache_segments: dict[str, dict[str, Any]] = {}
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for cache in cache_files:
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cache_path = os.path.join(CACHE_DIR, cache)
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basename = os.path.splitext(cache)[0]
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camera, date = basename.rsplit("@", maxsplit=1)
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start_time = datetime.datetime.strptime(
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date, CACHE_SEGMENT_FORMAT
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).astimezone(datetime.timezone.utc)
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if (
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camera not in newest_cache_segments
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or start_time > newest_cache_segments[camera]["start_time"]
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):
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newest_cache_segments[camera] = {
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"start_time": start_time,
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"cache_path": cache_path,
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}
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for camera, newest in newest_cache_segments.items():
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self.recordings_publisher.publish(
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(
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camera,
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newest["start_time"].timestamp(),
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newest["cache_path"],
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),
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RecordingsDataTypeEnum.latest.value,
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)
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# publish None for cameras with no cache files (but only if we know the camera exists)
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for camera_name in self.config.cameras:
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if camera_name not in newest_cache_segments:
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self.recordings_publisher.publish(
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(camera_name, None, None),
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RecordingsDataTypeEnum.latest.value,
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)
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files_in_use = []
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files_in_use = []
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for process in psutil.process_iter():
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for process in psutil.process_iter():
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try:
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try:
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@ -111,7 +144,7 @@ class RecordingMaintainer(threading.Thread):
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except psutil.Error:
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except psutil.Error:
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continue
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continue
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# group recordings by camera
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# group recordings by camera (skip in-use for validation/moving)
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grouped_recordings: defaultdict[str, list[dict[str, Any]]] = defaultdict(list)
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grouped_recordings: defaultdict[str, list[dict[str, Any]]] = defaultdict(list)
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for cache in cache_files:
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for cache in cache_files:
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# Skip files currently in use
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# Skip files currently in use
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@ -233,7 +266,9 @@ class RecordingMaintainer(threading.Thread):
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recordings[0]["start_time"].timestamp()
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recordings[0]["start_time"].timestamp()
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if self.config.cameras[camera].record.enabled
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if self.config.cameras[camera].record.enabled
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else None,
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else None,
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)
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None,
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),
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RecordingsDataTypeEnum.saved.value,
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)
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)
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recordings_to_insert: list[Optional[Recordings]] = await asyncio.gather(*tasks)
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recordings_to_insert: list[Optional[Recordings]] = await asyncio.gather(*tasks)
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@ -250,7 +285,7 @@ class RecordingMaintainer(threading.Thread):
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async def validate_and_move_segment(
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async def validate_and_move_segment(
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self, camera: str, reviews: list[ReviewSegment], recording: dict[str, Any]
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self, camera: str, reviews: list[ReviewSegment], recording: dict[str, Any]
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) -> None:
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) -> Optional[Recordings]:
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cache_path: str = recording["cache_path"]
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cache_path: str = recording["cache_path"]
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start_time: datetime.datetime = recording["start_time"]
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start_time: datetime.datetime = recording["start_time"]
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record_config = self.config.cameras[camera].record
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record_config = self.config.cameras[camera].record
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@ -261,7 +296,7 @@ class RecordingMaintainer(threading.Thread):
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or not self.config.cameras[camera].record.enabled
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or not self.config.cameras[camera].record.enabled
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):
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):
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self.drop_segment(cache_path)
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self.drop_segment(cache_path)
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return
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return None
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if cache_path in self.end_time_cache:
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if cache_path in self.end_time_cache:
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end_time, duration = self.end_time_cache[cache_path]
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end_time, duration = self.end_time_cache[cache_path]
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@ -270,10 +305,18 @@ class RecordingMaintainer(threading.Thread):
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self.config.ffmpeg, cache_path, get_duration=True
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self.config.ffmpeg, cache_path, get_duration=True
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)
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)
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if segment_info["duration"]:
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if not segment_info.get("has_valid_video", False):
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duration = float(segment_info["duration"])
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logger.warning(
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else:
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f"Invalid or missing video stream in segment {cache_path}. Discarding."
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duration = -1
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)
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self.recordings_publisher.publish(
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(camera, start_time.timestamp(), cache_path),
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RecordingsDataTypeEnum.invalid.value,
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)
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self.drop_segment(cache_path)
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return None
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duration = float(segment_info.get("duration", -1))
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# ensure duration is within expected length
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# ensure duration is within expected length
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if 0 < duration < MAX_SEGMENT_DURATION:
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if 0 < duration < MAX_SEGMENT_DURATION:
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@ -284,8 +327,18 @@ class RecordingMaintainer(threading.Thread):
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logger.warning(f"Failed to probe corrupt segment {cache_path}")
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logger.warning(f"Failed to probe corrupt segment {cache_path}")
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logger.warning(f"Discarding a corrupt recording segment: {cache_path}")
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logger.warning(f"Discarding a corrupt recording segment: {cache_path}")
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Path(cache_path).unlink(missing_ok=True)
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self.recordings_publisher.publish(
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return
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(camera, start_time.timestamp(), cache_path),
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RecordingsDataTypeEnum.invalid.value,
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)
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self.drop_segment(cache_path)
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return None
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# this segment has a valid duration and has video data, so publish an update
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self.recordings_publisher.publish(
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(camera, start_time.timestamp(), cache_path),
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RecordingsDataTypeEnum.valid.value,
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)
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record_config = self.config.cameras[camera].record
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record_config = self.config.cameras[camera].record
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highest = None
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highest = None
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@ -603,87 +603,87 @@ def auto_detect_hwaccel() -> str:
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async def get_video_properties(
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async def get_video_properties(
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ffmpeg, url: str, get_duration: bool = False
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ffmpeg, url: str, get_duration: bool = False
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) -> dict[str, Any]:
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) -> dict[str, Any]:
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async def calculate_duration(video: Optional[Any]) -> float:
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async def probe_with_ffprobe(
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duration = None
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url: str,
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) -> tuple[bool, int, int, Optional[str], float]:
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if video is not None:
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"""Fallback using ffprobe: returns (valid, width, height, codec, duration)."""
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# Get the frames per second (fps) of the video stream
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cmd = [
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fps = video.get(cv2.CAP_PROP_FPS)
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ffmpeg.ffprobe_path,
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total_frames = int(video.get(cv2.CAP_PROP_FRAME_COUNT))
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"-v",
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"quiet",
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if fps and total_frames:
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"-print_format",
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duration = total_frames / fps
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"json",
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"-show_format",
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# if cv2 failed need to use ffprobe
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"-show_streams",
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if duration is None:
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url,
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p = await asyncio.create_subprocess_exec(
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]
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ffmpeg.ffprobe_path,
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try:
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"-v",
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proc = await asyncio.create_subprocess_exec(
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"error",
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*cmd, stdout=asyncio.subprocess.PIPE, stderr=asyncio.subprocess.PIPE
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"-show_entries",
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"format=duration",
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"-of",
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"default=noprint_wrappers=1:nokey=1",
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f"{url}",
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stdout=asyncio.subprocess.PIPE,
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stderr=asyncio.subprocess.PIPE,
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)
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)
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await p.wait()
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stdout, _ = await proc.communicate()
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if proc.returncode != 0:
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return False, 0, 0, None, -1
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if p.returncode == 0:
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data = json.loads(stdout.decode())
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result = (await p.stdout.read()).decode()
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video_streams = [
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else:
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s for s in data.get("streams", []) if s.get("codec_type") == "video"
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result = None
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]
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if not video_streams:
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return False, 0, 0, None, -1
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if result:
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v = video_streams[0]
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try:
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width = int(v.get("width", 0))
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duration = float(result.strip())
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height = int(v.get("height", 0))
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except ValueError:
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codec = v.get("codec_name")
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duration = -1
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else:
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duration = -1
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return duration
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duration_str = data.get("format", {}).get("duration")
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duration = float(duration_str) if duration_str else -1.0
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width = height = 0
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return True, width, height, codec, duration
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except (json.JSONDecodeError, ValueError, KeyError, asyncio.SubprocessError):
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return False, 0, 0, None, -1
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try:
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def probe_with_cv2(url: str) -> tuple[bool, int, int, Optional[str], float]:
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# Open the video stream using OpenCV
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"""Primary attempt using cv2: returns (valid, width, height, fourcc, duration)."""
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video = cv2.VideoCapture(url)
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cap = cv2.VideoCapture(url)
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if not cap.isOpened():
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cap.release()
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return False, 0, 0, None, -1
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# Check if the video stream was opened successfully
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width = int(cap.get(cv2.CAP_PROP_FRAME_WIDTH))
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if not video.isOpened():
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height = int(cap.get(cv2.CAP_PROP_FRAME_HEIGHT))
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video = None
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valid = width > 0 and height > 0
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except Exception:
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fourcc = None
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video = None
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duration = -1.0
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result = {}
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if valid:
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fourcc_int = int(cap.get(cv2.CAP_PROP_FOURCC))
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fourcc = fourcc_int.to_bytes(4, "little").decode("latin-1").strip()
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|
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if get_duration:
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fps = cap.get(cv2.CAP_PROP_FPS)
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total_frames = int(cap.get(cv2.CAP_PROP_FRAME_COUNT))
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if fps > 0 and total_frames > 0:
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duration = total_frames / fps
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|
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cap.release()
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return valid, width, height, fourcc, duration
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|
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# try cv2 first
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has_video, width, height, fourcc, duration = probe_with_cv2(url)
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|
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# fallback to ffprobe if needed
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|
if not has_video or (get_duration and duration < 0):
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has_video, width, height, fourcc, duration = await probe_with_ffprobe(url)
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|
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result: dict[str, Any] = {"has_valid_video": has_video}
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if has_video:
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result.update({"width": width, "height": height})
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if fourcc:
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result["fourcc"] = fourcc
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if get_duration:
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if get_duration:
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result["duration"] = await calculate_duration(video)
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result["duration"] = duration
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|
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if video is not None:
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# Get the width of frames in the video stream
|
|
||||||
width = video.get(cv2.CAP_PROP_FRAME_WIDTH)
|
|
||||||
|
|
||||||
# Get the height of frames in the video stream
|
|
||||||
height = video.get(cv2.CAP_PROP_FRAME_HEIGHT)
|
|
||||||
|
|
||||||
# Get the stream encoding
|
|
||||||
fourcc_int = int(video.get(cv2.CAP_PROP_FOURCC))
|
|
||||||
fourcc = (
|
|
||||||
chr((fourcc_int >> 0) & 255)
|
|
||||||
+ chr((fourcc_int >> 8) & 255)
|
|
||||||
+ chr((fourcc_int >> 16) & 255)
|
|
||||||
+ chr((fourcc_int >> 24) & 255)
|
|
||||||
)
|
|
||||||
|
|
||||||
# Release the video stream
|
|
||||||
video.release()
|
|
||||||
|
|
||||||
result["width"] = round(width)
|
|
||||||
result["height"] = round(height)
|
|
||||||
result["fourcc"] = fourcc
|
|
||||||
|
|
||||||
return result
|
return result
|
||||||
|
|
||||||
|
|||||||
141
frigate/video.py
141
frigate/video.py
@ -1,10 +1,9 @@
|
|||||||
import datetime
|
|
||||||
import logging
|
import logging
|
||||||
import os
|
|
||||||
import queue
|
import queue
|
||||||
import subprocess as sp
|
import subprocess as sp
|
||||||
import threading
|
import threading
|
||||||
import time
|
import time
|
||||||
|
from datetime import datetime, timedelta, timezone
|
||||||
from multiprocessing import Queue, Value
|
from multiprocessing import Queue, Value
|
||||||
from multiprocessing.synchronize import Event as MpEvent
|
from multiprocessing.synchronize import Event as MpEvent
|
||||||
from typing import Any
|
from typing import Any
|
||||||
@ -13,6 +12,10 @@ import cv2
|
|||||||
|
|
||||||
from frigate.camera import CameraMetrics, PTZMetrics
|
from frigate.camera import CameraMetrics, PTZMetrics
|
||||||
from frigate.comms.inter_process import InterProcessRequestor
|
from frigate.comms.inter_process import InterProcessRequestor
|
||||||
|
from frigate.comms.recordings_updater import (
|
||||||
|
RecordingsDataSubscriber,
|
||||||
|
RecordingsDataTypeEnum,
|
||||||
|
)
|
||||||
from frigate.config import CameraConfig, DetectConfig, ModelConfig
|
from frigate.config import CameraConfig, DetectConfig, ModelConfig
|
||||||
from frigate.config.camera.camera import CameraTypeEnum
|
from frigate.config.camera.camera import CameraTypeEnum
|
||||||
from frigate.config.camera.updater import (
|
from frigate.config.camera.updater import (
|
||||||
@ -20,8 +23,6 @@ from frigate.config.camera.updater import (
|
|||||||
CameraConfigUpdateSubscriber,
|
CameraConfigUpdateSubscriber,
|
||||||
)
|
)
|
||||||
from frigate.const import (
|
from frigate.const import (
|
||||||
CACHE_DIR,
|
|
||||||
CACHE_SEGMENT_FORMAT,
|
|
||||||
PROCESS_PRIORITY_HIGH,
|
PROCESS_PRIORITY_HIGH,
|
||||||
REQUEST_REGION_GRID,
|
REQUEST_REGION_GRID,
|
||||||
)
|
)
|
||||||
@ -129,7 +130,7 @@ def capture_frames(
|
|||||||
|
|
||||||
fps.value = frame_rate.eps()
|
fps.value = frame_rate.eps()
|
||||||
skipped_fps.value = skipped_eps.eps()
|
skipped_fps.value = skipped_eps.eps()
|
||||||
current_frame.value = datetime.datetime.now().timestamp()
|
current_frame.value = datetime.now().timestamp()
|
||||||
frame_name = f"{config.name}_frame{frame_index}"
|
frame_name = f"{config.name}_frame{frame_index}"
|
||||||
frame_buffer = frame_manager.write(frame_name)
|
frame_buffer = frame_manager.write(frame_name)
|
||||||
try:
|
try:
|
||||||
@ -199,6 +200,11 @@ class CameraWatchdog(threading.Thread):
|
|||||||
self.requestor = InterProcessRequestor()
|
self.requestor = InterProcessRequestor()
|
||||||
self.was_enabled = self.config.enabled
|
self.was_enabled = self.config.enabled
|
||||||
|
|
||||||
|
self.segment_subscriber = RecordingsDataSubscriber(RecordingsDataTypeEnum.all)
|
||||||
|
self.latest_valid_segment_time: float = 0
|
||||||
|
self.latest_invalid_segment_time: float = 0
|
||||||
|
self.latest_cache_segment_time: float = 0
|
||||||
|
|
||||||
def _update_enabled_state(self) -> bool:
|
def _update_enabled_state(self) -> bool:
|
||||||
"""Fetch the latest config and update enabled state."""
|
"""Fetch the latest config and update enabled state."""
|
||||||
self.config_subscriber.check_for_updates()
|
self.config_subscriber.check_for_updates()
|
||||||
@ -243,6 +249,11 @@ class CameraWatchdog(threading.Thread):
|
|||||||
if enabled:
|
if enabled:
|
||||||
self.logger.debug(f"Enabling camera {self.config.name}")
|
self.logger.debug(f"Enabling camera {self.config.name}")
|
||||||
self.start_all_ffmpeg()
|
self.start_all_ffmpeg()
|
||||||
|
|
||||||
|
# reset all timestamps
|
||||||
|
self.latest_valid_segment_time = 0
|
||||||
|
self.latest_invalid_segment_time = 0
|
||||||
|
self.latest_cache_segment_time = 0
|
||||||
else:
|
else:
|
||||||
self.logger.debug(f"Disabling camera {self.config.name}")
|
self.logger.debug(f"Disabling camera {self.config.name}")
|
||||||
self.stop_all_ffmpeg()
|
self.stop_all_ffmpeg()
|
||||||
@ -260,7 +271,37 @@ class CameraWatchdog(threading.Thread):
|
|||||||
if not enabled:
|
if not enabled:
|
||||||
continue
|
continue
|
||||||
|
|
||||||
now = datetime.datetime.now().timestamp()
|
while True:
|
||||||
|
update = self.segment_subscriber.check_for_update(timeout=0)
|
||||||
|
|
||||||
|
if update == (None, None):
|
||||||
|
break
|
||||||
|
|
||||||
|
raw_topic, payload = update
|
||||||
|
if raw_topic and payload:
|
||||||
|
topic = str(raw_topic)
|
||||||
|
camera, segment_time, _ = payload
|
||||||
|
|
||||||
|
if camera != self.config.name:
|
||||||
|
continue
|
||||||
|
|
||||||
|
if topic.endswith(RecordingsDataTypeEnum.valid.value):
|
||||||
|
self.logger.debug(
|
||||||
|
f"Latest valid recording segment time on {camera}: {segment_time}"
|
||||||
|
)
|
||||||
|
self.latest_valid_segment_time = segment_time
|
||||||
|
elif topic.endswith(RecordingsDataTypeEnum.invalid.value):
|
||||||
|
self.logger.warning(
|
||||||
|
f"Invalid recording segment detected for {camera} at {segment_time}"
|
||||||
|
)
|
||||||
|
self.latest_invalid_segment_time = segment_time
|
||||||
|
elif topic.endswith(RecordingsDataTypeEnum.latest.value):
|
||||||
|
if segment_time is not None:
|
||||||
|
self.latest_cache_segment_time = segment_time
|
||||||
|
else:
|
||||||
|
self.latest_cache_segment_time = 0
|
||||||
|
|
||||||
|
now = datetime.now().timestamp()
|
||||||
|
|
||||||
if not self.capture_thread.is_alive():
|
if not self.capture_thread.is_alive():
|
||||||
self.requestor.send_data(f"{self.config.name}/status/detect", "offline")
|
self.requestor.send_data(f"{self.config.name}/status/detect", "offline")
|
||||||
@ -298,18 +339,55 @@ class CameraWatchdog(threading.Thread):
|
|||||||
poll = p["process"].poll()
|
poll = p["process"].poll()
|
||||||
|
|
||||||
if self.config.record.enabled and "record" in p["roles"]:
|
if self.config.record.enabled and "record" in p["roles"]:
|
||||||
latest_segment_time = self.get_latest_segment_datetime(
|
now_utc = datetime.now().astimezone(timezone.utc)
|
||||||
p.get(
|
|
||||||
"latest_segment_time",
|
latest_cache_dt = (
|
||||||
datetime.datetime.now().astimezone(datetime.timezone.utc),
|
datetime.fromtimestamp(
|
||||||
|
self.latest_cache_segment_time, tz=timezone.utc
|
||||||
)
|
)
|
||||||
|
if self.latest_cache_segment_time > 0
|
||||||
|
else now_utc - timedelta(seconds=1)
|
||||||
)
|
)
|
||||||
|
|
||||||
if datetime.datetime.now().astimezone(datetime.timezone.utc) > (
|
latest_valid_dt = (
|
||||||
latest_segment_time + datetime.timedelta(seconds=120)
|
datetime.fromtimestamp(
|
||||||
):
|
self.latest_valid_segment_time, tz=timezone.utc
|
||||||
|
)
|
||||||
|
if self.latest_valid_segment_time > 0
|
||||||
|
else now_utc - timedelta(seconds=1)
|
||||||
|
)
|
||||||
|
|
||||||
|
latest_invalid_dt = (
|
||||||
|
datetime.fromtimestamp(
|
||||||
|
self.latest_invalid_segment_time, tz=timezone.utc
|
||||||
|
)
|
||||||
|
if self.latest_invalid_segment_time > 0
|
||||||
|
else now_utc - timedelta(seconds=1)
|
||||||
|
)
|
||||||
|
|
||||||
|
# ensure segments are still being created and that they have valid video data
|
||||||
|
cache_stale = now_utc > (latest_cache_dt + timedelta(seconds=120))
|
||||||
|
valid_stale = now_utc > (latest_valid_dt + timedelta(seconds=120))
|
||||||
|
invalid_stale_condition = (
|
||||||
|
self.latest_invalid_segment_time > 0
|
||||||
|
and now_utc > (latest_invalid_dt + timedelta(seconds=120))
|
||||||
|
and self.latest_valid_segment_time
|
||||||
|
<= self.latest_invalid_segment_time
|
||||||
|
)
|
||||||
|
invalid_stale = invalid_stale_condition
|
||||||
|
|
||||||
|
if cache_stale or valid_stale or invalid_stale:
|
||||||
|
if cache_stale:
|
||||||
|
reason = "No new recording segments were created"
|
||||||
|
elif valid_stale:
|
||||||
|
reason = "No new valid recording segments were created"
|
||||||
|
else: # invalid_stale
|
||||||
|
reason = (
|
||||||
|
"No valid segments created since last invalid segment"
|
||||||
|
)
|
||||||
|
|
||||||
self.logger.error(
|
self.logger.error(
|
||||||
f"No new recording segments were created for {self.config.name} in the last 120s. restarting the ffmpeg record process..."
|
f"{reason} for {self.config.name} in the last 120s. Restarting the ffmpeg record process..."
|
||||||
)
|
)
|
||||||
p["process"] = start_or_restart_ffmpeg(
|
p["process"] = start_or_restart_ffmpeg(
|
||||||
p["cmd"],
|
p["cmd"],
|
||||||
@ -328,7 +406,7 @@ class CameraWatchdog(threading.Thread):
|
|||||||
self.requestor.send_data(
|
self.requestor.send_data(
|
||||||
f"{self.config.name}/status/record", "online"
|
f"{self.config.name}/status/record", "online"
|
||||||
)
|
)
|
||||||
p["latest_segment_time"] = latest_segment_time
|
p["latest_segment_time"] = self.latest_cache_segment_time
|
||||||
|
|
||||||
if poll is None:
|
if poll is None:
|
||||||
continue
|
continue
|
||||||
@ -346,6 +424,7 @@ class CameraWatchdog(threading.Thread):
|
|||||||
self.stop_all_ffmpeg()
|
self.stop_all_ffmpeg()
|
||||||
self.logpipe.close()
|
self.logpipe.close()
|
||||||
self.config_subscriber.stop()
|
self.config_subscriber.stop()
|
||||||
|
self.segment_subscriber.stop()
|
||||||
|
|
||||||
def start_ffmpeg_detect(self):
|
def start_ffmpeg_detect(self):
|
||||||
ffmpeg_cmd = [
|
ffmpeg_cmd = [
|
||||||
@ -405,33 +484,6 @@ class CameraWatchdog(threading.Thread):
|
|||||||
p["logpipe"].close()
|
p["logpipe"].close()
|
||||||
self.ffmpeg_other_processes.clear()
|
self.ffmpeg_other_processes.clear()
|
||||||
|
|
||||||
def get_latest_segment_datetime(
|
|
||||||
self, latest_segment: datetime.datetime
|
|
||||||
) -> datetime.datetime:
|
|
||||||
"""Checks if ffmpeg is still writing recording segments to cache."""
|
|
||||||
cache_files = sorted(
|
|
||||||
[
|
|
||||||
d
|
|
||||||
for d in os.listdir(CACHE_DIR)
|
|
||||||
if os.path.isfile(os.path.join(CACHE_DIR, d))
|
|
||||||
and d.endswith(".mp4")
|
|
||||||
and not d.startswith("preview_")
|
|
||||||
]
|
|
||||||
)
|
|
||||||
newest_segment_time = latest_segment
|
|
||||||
|
|
||||||
for file in cache_files:
|
|
||||||
if self.config.name in file:
|
|
||||||
basename = os.path.splitext(file)[0]
|
|
||||||
_, date = basename.rsplit("@", maxsplit=1)
|
|
||||||
segment_time = datetime.datetime.strptime(
|
|
||||||
date, CACHE_SEGMENT_FORMAT
|
|
||||||
).astimezone(datetime.timezone.utc)
|
|
||||||
if segment_time > newest_segment_time:
|
|
||||||
newest_segment_time = segment_time
|
|
||||||
|
|
||||||
return newest_segment_time
|
|
||||||
|
|
||||||
|
|
||||||
class CameraCaptureRunner(threading.Thread):
|
class CameraCaptureRunner(threading.Thread):
|
||||||
def __init__(
|
def __init__(
|
||||||
@ -727,10 +779,7 @@ def process_frames(
|
|||||||
time.sleep(0.1)
|
time.sleep(0.1)
|
||||||
continue
|
continue
|
||||||
|
|
||||||
if (
|
if datetime.now().astimezone(timezone.utc) > next_region_update:
|
||||||
datetime.datetime.now().astimezone(datetime.timezone.utc)
|
|
||||||
> next_region_update
|
|
||||||
):
|
|
||||||
region_grid = requestor.send_data(REQUEST_REGION_GRID, camera_config.name)
|
region_grid = requestor.send_data(REQUEST_REGION_GRID, camera_config.name)
|
||||||
next_region_update = get_tomorrow_at_time(2)
|
next_region_update = get_tomorrow_at_time(2)
|
||||||
|
|
||||||
|
|||||||
Loading…
Reference in New Issue
Block a user