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"""Maintain recording segments in cache."""
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import asyncio
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import datetime
import logging
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import multiprocessing as mp
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import os
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import queue
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import random
import string
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import threading
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from collections import defaultdict
from multiprocessing.synchronize import Event as MpEvent
from pathlib import Path
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from typing import Any , Optional , Tuple
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import numpy as np
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import psutil
from frigate.config import FrigateConfig , RetainModeEnum
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from frigate.const import (
CACHE_DIR ,
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CACHE_SEGMENT_FORMAT ,
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INSERT_MANY_RECORDINGS ,
MAX_SEGMENT_DURATION ,
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MAX_SEGMENTS_IN_CACHE ,
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RECORD_DIR ,
)
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from frigate.models import Event , Recordings
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from frigate.types import FeatureMetricsTypes
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from frigate.util.image import area
from frigate.util.services import get_video_properties
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logger = logging . getLogger ( __name__ )
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QUEUE_READ_TIMEOUT = 0.00001 # seconds
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class SegmentInfo :
def __init__ (
self , motion_box_count : int , active_object_count : int , average_dBFS : int
) -> None :
self . motion_box_count = motion_box_count
self . active_object_count = active_object_count
self . average_dBFS = average_dBFS
def should_discard_segment ( self , retain_mode : RetainModeEnum ) -> bool :
return (
retain_mode == RetainModeEnum . motion
and self . motion_box_count == 0
and self . average_dBFS == 0
) or (
retain_mode == RetainModeEnum . active_objects
and self . active_object_count == 0
)
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class RecordingMaintainer ( threading . Thread ):
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def __init__ (
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self ,
config : FrigateConfig ,
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inter_process_queue : mp . Queue ,
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object_recordings_info_queue : mp . Queue ,
audio_recordings_info_queue : Optional [ mp . Queue ],
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process_info : dict [ str , FeatureMetricsTypes ],
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stop_event : MpEvent ,
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):
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threading . Thread . __init__ ( self )
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self . name = "recording_maintainer"
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self . config = config
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self . inter_process_queue = inter_process_queue
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self . object_recordings_info_queue = object_recordings_info_queue
self . audio_recordings_info_queue = audio_recordings_info_queue
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self . process_info = process_info
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self . stop_event = stop_event
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self . object_recordings_info : dict [ str , list ] = defaultdict ( list )
self . audio_recordings_info : dict [ str , list ] = defaultdict ( list )
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self . end_time_cache : dict [ str , Tuple [ datetime . datetime , float ]] = {}
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async def move_files ( self ) -> None :
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cache_files = [
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 ( "clip_" )
]
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files_in_use = []
for process in psutil . process_iter ():
try :
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if process . name () != "ffmpeg" :
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continue
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flist = process . open_files ()
if flist :
for nt in flist :
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if nt . path . startswith ( CACHE_DIR ):
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files_in_use . append ( nt . path . split ( "/" )[ - 1 ])
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except psutil . Error :
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continue
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# group recordings by camera
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grouped_recordings : defaultdict [ str , list [ dict [ str , Any ]]] = defaultdict ( list )
for cache in cache_files :
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# Skip files currently in use
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if cache in files_in_use :
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continue
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cache_path = os . path . join ( CACHE_DIR , cache )
basename = os . path . splitext ( cache )[ 0 ]
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camera , date = basename . rsplit ( "@" , maxsplit = 1 )
# important that start_time is utc because recordings are stored and compared in utc
start_time = datetime . datetime . strptime (
date , CACHE_SEGMENT_FORMAT
) . astimezone ( datetime . timezone . utc )
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grouped_recordings [ camera ] . append (
{
"cache_path" : cache_path ,
"start_time" : start_time ,
}
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)
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# delete all cached files past the most recent MAX_SEGMENTS_IN_CACHE
keep_count = MAX_SEGMENTS_IN_CACHE
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for camera in grouped_recordings . keys ():
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# sort based on start time
grouped_recordings [ camera ] = sorted (
grouped_recordings [ camera ], key = lambda s : s [ "start_time" ]
)
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segment_count = len ( grouped_recordings [ camera ])
if segment_count > keep_count :
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logger . warning (
f "Unable to keep up with recording segments in cache for { camera } . Keeping the { keep_count } most recent segments out of { segment_count } and discarding the rest..."
)
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to_remove = grouped_recordings [ camera ][: - keep_count ]
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for rec in to_remove :
cache_path = rec [ "cache_path" ]
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Path ( cache_path ) . unlink ( missing_ok = True )
self . end_time_cache . pop ( cache_path , None )
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grouped_recordings [ camera ] = grouped_recordings [ camera ][ - keep_count :]
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tasks = []
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for camera , recordings in grouped_recordings . items ():
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# clear out all the object recording info for old frames
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while (
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len ( self . object_recordings_info [ camera ]) > 0
and self . object_recordings_info [ camera ][ 0 ][ 0 ]
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< recordings [ 0 ][ "start_time" ] . timestamp ()
):
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self . object_recordings_info [ camera ] . pop ( 0 )
# clear out all the audio recording info for old frames
while (
len ( self . audio_recordings_info [ camera ]) > 0
and self . audio_recordings_info [ camera ][ 0 ][ 0 ]
< recordings [ 0 ][ "start_time" ] . timestamp ()
):
self . audio_recordings_info [ camera ] . pop ( 0 )
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# get all events with the end time after the start of the oldest cache file
# or with end_time None
events : Event = (
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Event . select (
Event . start_time ,
Event . end_time ,
)
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. where (
Event . camera == camera ,
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( Event . end_time == None )
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| ( Event . end_time >= recordings [ 0 ][ "start_time" ] . timestamp ()),
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Event . has_clip ,
)
. order_by ( Event . start_time )
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)
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tasks . extend (
[ self . validate_and_move_segment ( camera , events , r ) for r in recordings ]
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)
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recordings_to_insert : list [ Optional [ Recordings ]] = await asyncio . gather ( * tasks )
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# fire and forget recordings entries
self . inter_process_queue . put (
( INSERT_MANY_RECORDINGS , [ r for r in recordings_to_insert if r is not None ])
)
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async def validate_and_move_segment (
self , camera : str , events : Event , recording : dict [ str , any ]
) -> None :
cache_path = recording [ "cache_path" ]
start_time = recording [ "start_time" ]
# Just delete files if recordings are turned off
if (
camera not in self . config . cameras
or not self . process_info [ camera ][ "record_enabled" ] . value
):
Path ( cache_path ) . unlink ( missing_ok = True )
self . end_time_cache . pop ( cache_path , None )
return
if cache_path in self . end_time_cache :
end_time , duration = self . end_time_cache [ cache_path ]
else :
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segment_info = await get_video_properties ( cache_path , get_duration = True )
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if segment_info [ "duration" ]:
duration = float ( segment_info [ "duration" ])
else :
duration = - 1
# ensure duration is within expected length
if 0 < duration < MAX_SEGMENT_DURATION :
end_time = start_time + datetime . timedelta ( seconds = duration )
self . end_time_cache [ cache_path ] = ( end_time , duration )
else :
if duration == - 1 :
logger . warning ( f "Failed to probe corrupt segment { cache_path } " )
logger . warning ( f "Discarding a corrupt recording segment: { cache_path } " )
Path ( cache_path ) . unlink ( missing_ok = True )
return
# if cached file's start_time is earlier than the retain days for the camera
if start_time <= (
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datetime . datetime . now () . astimezone ( datetime . timezone . utc )
- datetime . timedelta ( days = self . config . cameras [ camera ] . record . retain . days )
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):
# if the cached segment overlaps with the events:
overlaps = False
for event in events :
# if the event starts in the future, stop checking events
# and remove this segment
if event . start_time > end_time . timestamp ():
overlaps = False
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Path ( cache_path ) . unlink ( missing_ok = True )
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self . end_time_cache . pop ( cache_path , None )
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break
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# if the event is in progress or ends after the recording starts, keep it
# and stop looking at events
if event . end_time is None or event . end_time >= start_time . timestamp ():
overlaps = True
break
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if overlaps :
record_mode = self . config . cameras [ camera ] . record . events . retain . mode
# move from cache to recordings immediately
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return await self . move_segment (
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camera ,
start_time ,
end_time ,
duration ,
cache_path ,
record_mode ,
)
# if it doesn't overlap with an event, go ahead and drop the segment
# if it ends more than the configured pre_capture for the camera
else :
pre_capture = self . config . cameras [ camera ] . record . events . pre_capture
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camera_info = self . object_recordings_info [ camera ]
most_recently_processed_frame_time = (
camera_info [ - 1 ][ 0 ] if len ( camera_info ) > 0 else 0
)
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retain_cutoff = datetime . datetime . fromtimestamp (
most_recently_processed_frame_time - pre_capture
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) . astimezone ( datetime . timezone . utc )
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if end_time < retain_cutoff :
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Path ( cache_path ) . unlink ( missing_ok = True )
self . end_time_cache . pop ( cache_path , None )
# else retain days includes this segment
else :
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# assume that empty means the relevant recording info has not been received yet
camera_info = self . object_recordings_info [ camera ]
most_recently_processed_frame_time = (
camera_info [ - 1 ][ 0 ] if len ( camera_info ) > 0 else 0
)
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# ensure delayed segment info does not lead to lost segments
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if (
datetime . datetime . fromtimestamp (
most_recently_processed_frame_time
) . astimezone ( datetime . timezone . utc )
>= end_time
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):
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record_mode = self . config . cameras [ camera ] . record . retain . mode
return await self . move_segment (
camera , start_time , end_time , duration , cache_path , record_mode
)
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def segment_stats (
self , camera : str , start_time : datetime . datetime , end_time : datetime . datetime
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) -> SegmentInfo :
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active_count = 0
motion_count = 0
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for frame in self . object_recordings_info [ camera ]:
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# frame is after end time of segment
if frame [ 0 ] > end_time . timestamp ():
break
# frame is before start time of segment
if frame [ 0 ] < start_time . timestamp ():
continue
active_count += len (
[
o
for o in frame [ 1 ]
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if not o [ "false_positive" ] and o [ "motionless_count" ] == 0
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]
)
motion_count += sum ([ area ( box ) for box in frame [ 2 ]])
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audio_values = []
for frame in self . audio_recordings_info [ camera ]:
# frame is after end time of segment
if frame [ 0 ] > end_time . timestamp ():
break
# frame is before start time of segment
if frame [ 0 ] < start_time . timestamp ():
continue
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# add active audio label count to count of active objects
active_count += len ( frame [ 2 ])
# add sound level to audio values
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audio_values . append ( frame [ 1 ])
average_dBFS = 0 if not audio_values else np . average ( audio_values )
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return SegmentInfo ( motion_count , active_count , round ( average_dBFS ))
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async def move_segment (
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self ,
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camera : str ,
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start_time : datetime . datetime ,
end_time : datetime . datetime ,
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duration : float ,
cache_path : str ,
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store_mode : RetainModeEnum ,
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) -> Optional [ Recordings ]:
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segment_info = self . segment_stats ( camera , start_time , end_time )
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# check if the segment shouldn't be stored
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if segment_info . should_discard_segment ( store_mode ):
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Path ( cache_path ) . unlink ( missing_ok = True )
self . end_time_cache . pop ( cache_path , None )
return
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# directory will be in utc due to start_time being in utc
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directory = os . path . join (
RECORD_DIR ,
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start_time . strftime ( "%Y-%m- %d /%H" ),
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camera ,
)
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if not os . path . exists ( directory ):
os . makedirs ( directory )
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# file will be in utc due to start_time being in utc
file_name = f " { start_time . strftime ( '%M.%S.mp4' ) } "
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file_path = os . path . join ( directory , file_name )
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try :
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if not os . path . exists ( file_path ):
start_frame = datetime . datetime . now () . timestamp ()
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# add faststart to kept segments to improve metadata reading
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p = await asyncio . create_subprocess_exec (
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"ffmpeg" ,
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"-hide_banner" ,
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"-y" ,
"-i" ,
cache_path ,
"-c" ,
"copy" ,
"-movflags" ,
"+faststart" ,
file_path ,
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stderr = asyncio . subprocess . PIPE ,
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stdout = asyncio . subprocess . DEVNULL ,
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)
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await p . wait ()
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if p . returncode != 0 :
logger . error ( f "Unable to convert { cache_path } to { file_path } " )
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logger . error (( await p . stderr . read ()) . decode ( "ascii" ))
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return None
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else :
logger . debug (
f "Copied { file_path } in { datetime . datetime . now () . timestamp () - start_frame } seconds."
)
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try :
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# get the segment size of the cache file
# file without faststart is same size
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segment_size = round (
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float ( os . path . getsize ( cache_path )) / pow ( 2 , 20 ), 1
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)
except OSError :
segment_size = 0
os . remove ( cache_path )
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rand_id = "" . join (
random . choices ( string . ascii_lowercase + string . digits , k = 6 )
)
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return {
Recordings . id : f " { start_time . timestamp () } - { rand_id } " ,
Recordings . camera : camera ,
Recordings . path : file_path ,
Recordings . start_time : start_time . timestamp (),
Recordings . end_time : end_time . timestamp (),
Recordings . duration : duration ,
Recordings . motion : segment_info . motion_box_count ,
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# TODO: update this to store list of active objects at some point
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Recordings . objects : segment_info . active_object_count ,
Recordings . dBFS : segment_info . average_dBFS ,
Recordings . segment_size : segment_size ,
}
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except Exception as e :
logger . error ( f "Unable to store recording segment { cache_path } " )
Path ( cache_path ) . unlink ( missing_ok = True )
logger . error ( e )
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# clear end_time cache
self . end_time_cache . pop ( cache_path , None )
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return None
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def run ( self ) -> None :
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camera_count = sum ( camera . enabled for camera in self . config . cameras . values ())
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# Check for new files every 5 seconds
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wait_time = 0.0
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while not self . stop_event . wait ( wait_time ):
run_start = datetime . datetime . now () . timestamp ()
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stale_frame_count = 0
stale_frame_count_threshold = 10
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# empty the object recordings info queue
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while True :
try :
(
camera ,
frame_time ,
current_tracked_objects ,
motion_boxes ,
regions ,
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) = self . object_recordings_info_queue . get (
True , timeout = QUEUE_READ_TIMEOUT
)
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if frame_time < run_start - stale_frame_count_threshold :
stale_frame_count += 1
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if self . process_info [ camera ][ "record_enabled" ] . value :
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self . object_recordings_info [ camera ] . append (
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(
frame_time ,
current_tracked_objects ,
motion_boxes ,
regions ,
)
)
except queue . Empty :
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q_size = self . object_recordings_info_queue . qsize ()
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if q_size > camera_count :
logger . debug (
f "object_recordings_info loop queue not empty ( { q_size } )."
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)
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break
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if stale_frame_count > 0 :
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logger . debug ( f "Found { stale_frame_count } old frames." )
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# empty the audio recordings info queue if audio is enabled
if self . audio_recordings_info_queue :
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stale_frame_count = 0
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while True :
try :
(
camera ,
frame_time ,
dBFS ,
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audio_detections ,
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) = self . audio_recordings_info_queue . get (
True , timeout = QUEUE_READ_TIMEOUT
)
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if frame_time < run_start - stale_frame_count_threshold :
stale_frame_count += 1
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if self . process_info [ camera ][ "record_enabled" ] . value :
self . audio_recordings_info [ camera ] . append (
(
frame_time ,
dBFS ,
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audio_detections ,
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)
)
except queue . Empty :
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q_size = self . audio_recordings_info_queue . qsize ()
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if q_size > camera_count :
logger . debug (
f "object_recordings_info loop audio queue not empty ( { q_size } )."
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)
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break
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if stale_frame_count > 0 :
logger . error (
f "Found { stale_frame_count } old audio frames, segments from recordings may be missing"
)
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try :
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asyncio . run ( self . move_files ())
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except Exception as e :
logger . error (
"Error occurred when attempting to maintain recording cache"
)
logger . error ( e )
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duration = datetime . datetime . now () . timestamp () - run_start
wait_time = max ( 0 , 5 - duration )
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logger . info ( "Exiting recording maintenance..." )