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267 lines
10 KiB
Python
267 lines
10 KiB
Python
from pathlib import Path
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from pymediainfo import MediaInfo
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from collections import Counter
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from ..constants import FRAME_CLASSES, MEDIA_TYPES
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from ..decorators import cached_method
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import langcodes
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class MediaInfoExtractor:
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"""Class to extract information from MediaInfo"""
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def __init__(self, file_path: Path):
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self.file_path = file_path
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self._cache = {} # Internal cache for method results
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try:
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self.media_info = MediaInfo.parse(file_path)
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self.video_tracks = [t for t in self.media_info.tracks if t.track_type == 'Video']
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self.audio_tracks = [t for t in self.media_info.tracks if t.track_type == 'Audio']
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self.sub_tracks = [t for t in self.media_info.tracks if t.track_type == 'Text']
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except Exception:
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self.media_info = None
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self.video_tracks = []
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self.audio_tracks = []
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self.sub_tracks = []
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# Build mapping from meta_type to extensions
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self._format_to_extensions = {}
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for ext, info in MEDIA_TYPES.items():
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meta_type = info.get('meta_type')
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if meta_type:
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if meta_type not in self._format_to_extensions:
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self._format_to_extensions[meta_type] = []
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self._format_to_extensions[meta_type].append(ext)
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def _get_frame_class_from_height(self, height: int) -> str | None:
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"""Get frame class from video height, finding closest match if exact not found"""
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if not height:
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return None
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# First try exact match
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for frame_class, info in FRAME_CLASSES.items():
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if height == info['nominal_height']:
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return frame_class
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# If no exact match, find closest
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closest = None
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min_diff = float('inf')
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for frame_class, info in FRAME_CLASSES.items():
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diff = abs(height - info['nominal_height'])
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if diff < min_diff:
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min_diff = diff
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closest = frame_class
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# Only return if difference is reasonable (within 50 pixels)
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if min_diff <= 50:
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return closest
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return None
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@cached_method()
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def extract_duration(self) -> float | None:
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"""Extract duration from media info in seconds"""
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if self.media_info:
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for track in self.media_info.tracks:
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if track.track_type == 'General':
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return getattr(track, 'duration', 0) / 1000 if getattr(track, 'duration', None) else None
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return None
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def extract_frame_class(self) -> str | None:
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"""Extract frame class from media info (480p, 720p, 1080p, etc.)"""
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if not self.video_tracks:
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return None
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height = getattr(self.video_tracks[0], 'height', None)
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width = getattr(self.video_tracks[0], 'width', None)
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if not height or not width:
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return None
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# Check if interlaced
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interlaced = getattr(self.video_tracks[0], 'interlaced', None)
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scan_type = 'i' if interlaced == 'Yes' else 'p'
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# Calculate effective height for frame class determination
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aspect_ratio = 16 / 9
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if height > width:
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effective_height = height / aspect_ratio
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else:
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effective_height = height
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# First, try to match width to typical widths
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width_matches = []
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for frame_class, info in FRAME_CLASSES.items():
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for tw in info['typical_widths']:
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if abs(width - tw) <= 5 and frame_class.endswith(scan_type):
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diff = abs(height - info['nominal_height'])
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width_matches.append((frame_class, diff))
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if width_matches:
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# Choose the frame class with the smallest height difference
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width_matches.sort(key=lambda x: x[1])
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return width_matches[0][0]
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# If no width match, fall back to height-based matching
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# First try exact match with standard frame classes
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frame_class = f"{int(round(effective_height))}{scan_type}"
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if frame_class in FRAME_CLASSES:
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return frame_class
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# Find closest standard height match
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closest_class = None
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min_diff = float('inf')
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for fc, info in FRAME_CLASSES.items():
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if fc.endswith(scan_type):
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diff = abs(effective_height - info['nominal_height'])
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if diff < min_diff:
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min_diff = diff
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closest_class = fc
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# Return closest standard match if within reasonable distance (20 pixels)
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if closest_class and min_diff <= 20:
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return closest_class
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# For non-standard resolutions, create a custom frame class
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return frame_class
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@cached_method()
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def extract_resolution(self) -> tuple[int, int] | None:
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"""Extract actual video resolution as (width, height) tuple from media info"""
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if not self.video_tracks:
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return None
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width = getattr(self.video_tracks[0], 'width', None)
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height = getattr(self.video_tracks[0], 'height', None)
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if width and height:
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return width, height
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return None
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@cached_method()
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def extract_aspect_ratio(self) -> str | None:
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"""Extract video aspect ratio from media info"""
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if not self.video_tracks:
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return None
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aspect_ratio = getattr(self.video_tracks[0], 'display_aspect_ratio', None)
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if aspect_ratio:
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return str(aspect_ratio)
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return None
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@cached_method()
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def extract_hdr(self) -> str | None:
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"""Extract HDR info from media info"""
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if not self.video_tracks:
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return None
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profile = getattr(self.video_tracks[0], 'format_profile', '') or ''
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if 'HDR' in profile.upper():
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return 'HDR'
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return None
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@cached_method()
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def extract_audio_langs(self) -> str | None:
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"""Extract audio languages from media info"""
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if not self.audio_tracks:
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return None
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langs = []
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for a in self.audio_tracks:
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lang_code = getattr(a, 'language', 'und') or 'und'
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try:
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# Try to get the 3-letter code
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lang_obj = langcodes.Language.get(lang_code.lower())
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alpha3 = lang_obj.to_alpha3()
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langs.append(alpha3)
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except:
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# If conversion fails, use the original code
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langs.append(lang_code.lower()[:3])
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lang_counts = Counter(langs)
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audio_langs = [f"{count}{lang}" if count > 1 else lang for lang, count in lang_counts.items()]
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return ','.join(audio_langs)
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@cached_method()
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def extract_video_tracks(self) -> list[dict]:
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"""Extract video track data"""
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tracks = []
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for v in self.video_tracks[:2]: # Up to 2 videos
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track_data = {
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'codec': getattr(v, 'format', None) or getattr(v, 'codec', None) or 'unknown',
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'width': getattr(v, 'width', None),
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'height': getattr(v, 'height', None),
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'bitrate': getattr(v, 'bit_rate', None),
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'fps': getattr(v, 'frame_rate', None),
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'profile': getattr(v, 'format_profile', None) or '',
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}
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tracks.append(track_data)
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return tracks
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@cached_method()
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def extract_audio_tracks(self) -> list[dict]:
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"""Extract audio track data"""
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tracks = []
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for a in self.audio_tracks[:10]: # Up to 10 audios
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track_data = {
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'codec': getattr(a, 'format', None) or getattr(a, 'codec', None) or 'unknown',
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'channels': getattr(a, 'channel_s', None),
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'language': getattr(a, 'language', None) or 'und',
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'bitrate': getattr(a, 'bit_rate', None),
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}
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tracks.append(track_data)
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return tracks
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@cached_method()
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def extract_subtitle_tracks(self) -> list[dict]:
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"""Extract subtitle track data"""
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tracks = []
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for s in self.sub_tracks[:10]: # Up to 10 subs
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track_data = {
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'language': getattr(s, 'language', None) or 'und',
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'format': getattr(s, 'format', None) or getattr(s, 'codec', None) or 'unknown',
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}
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tracks.append(track_data)
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return tracks
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@cached_method()
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def is_3d(self) -> bool:
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"""Check if the video is 3D"""
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if not self.video_tracks:
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return False
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multi_view = getattr(self.video_tracks[0], 'multi_view_count', None)
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if multi_view and int(multi_view) > 1:
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return True
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stereoscopic = getattr(self.video_tracks[0], 'stereoscopic', None)
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if stereoscopic == 'Yes':
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return True
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return False
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@cached_method()
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def extract_anamorphic(self) -> str | None:
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"""Extract anamorphic info for 3D videos"""
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if not self.video_tracks:
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return None
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anamorphic = getattr(self.video_tracks[0], 'anamorphic', None)
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if anamorphic == 'Yes' and self.is_3d():
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return 'Anamorphic:Yes'
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return None
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@cached_method()
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def extract_extension(self) -> str | None:
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"""Extract file extension based on container format"""
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if not self.media_info:
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return None
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general_track = next((t for t in self.media_info.tracks if t.track_type == 'General'), None)
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if not general_track:
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return None
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format_ = getattr(general_track, 'format', None)
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if format_ in self._format_to_extensions:
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exts = self._format_to_extensions[format_]
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if format_ == 'Matroska':
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if self.is_3d() and 'mk3d' in exts:
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return 'mk3d'
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else:
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return 'mkv'
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else:
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return exts[0] if exts else None
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return None
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@cached_method()
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def extract_3d_layout(self) -> str | None:
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"""Extract 3D stereoscopic layout from MediaInfo"""
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if not self.is_3d():
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return None
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stereoscopic = getattr(self.video_tracks[0], 'stereoscopic', None)
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return stereoscopic if stereoscopic else None |