mirror of
https://github.com/moparisthebest/SickRage
synced 2024-11-11 03:45:01 -05:00
0d9fbc1ad7
This version of SickBeard uses both TVDB and TVRage to search and gather it's series data from allowing you to now have access to and download shows that you couldn't before because of being locked into only what TheTVDB had to offer. Also this edition is based off the code we used in our XEM editon so it does come with scene numbering support as well as all the other features our XEM edition has to offer. Please before using this with your existing database (sickbeard.db) please make a backup copy of it and delete any other database files such as cache.db and failed.db if present, we HIGHLY recommend starting out with no database files at all to make this a fresh start but the choice is at your own risk! Enjoy!
217 lines
7.7 KiB
Python
217 lines
7.7 KiB
Python
"""
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Musical Instrument Digital Interface (MIDI) audio file parser.
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Documentation:
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- Standard MIDI File Format, Dustin Caldwell (downloaded on wotsit.org)
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Author: Victor Stinner
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Creation: 27 december 2006
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"""
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from lib.hachoir_parser import Parser
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from lib.hachoir_core.field import (FieldSet, Bits, ParserError,
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String, UInt32, UInt24, UInt16, UInt8, Enum, RawBytes)
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from lib.hachoir_core.endian import BIG_ENDIAN
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from lib.hachoir_core.text_handler import textHandler, hexadecimal
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from lib.hachoir_core.tools import createDict, humanDurationNanosec
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from lib.hachoir_parser.common.tracker import NOTE_NAME
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MAX_FILESIZE = 10 * 1024 * 1024
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class Integer(Bits):
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def __init__(self, parent, name, description=None):
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Bits.__init__(self, parent, name, 8, description)
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stream = parent.stream
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addr = self.absolute_address
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value = 0
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while True:
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bits = stream.readBits(addr, 8, parent.endian)
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value = (value << 7) + (bits & 127)
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if not(bits & 128):
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break
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addr += 8
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self._size += 8
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if 32 < self._size:
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raise ParserError("Integer size is bigger than 32-bit")
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self.createValue = lambda: value
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def parseNote(parser):
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yield Enum(UInt8(parser, "note", "Note number"), NOTE_NAME)
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yield UInt8(parser, "velocity")
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def parseControl(parser):
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yield UInt8(parser, "control", "Controller number")
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yield UInt8(parser, "value", "New value")
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def parsePatch(parser):
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yield UInt8(parser, "program", "New program number")
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def parseChannel(parser):
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yield UInt8(parser, "channel", "Channel number")
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def parsePitch(parser):
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yield UInt8(parser, "bottom", "(least sig) 7 bits of value")
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yield UInt8(parser, "top", "(most sig) 7 bits of value")
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def parseText(parser, size):
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yield String(parser, "text", size)
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def formatTempo(field):
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return humanDurationNanosec(field.value*1000)
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def parseTempo(parser, size):
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yield textHandler(UInt24(parser, "microsec_quarter", "Microseconds per quarter note"), formatTempo)
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def parseTimeSignature(parser, size):
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yield UInt8(parser, "numerator", "Numerator of time signature")
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yield UInt8(parser, "denominator", "denominator of time signature 2=quarter 3=eighth, etc.")
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yield UInt8(parser, "nb_tick", "Number of ticks in metronome click")
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yield UInt8(parser, "nb_32nd_note", "Number of 32nd notes to the quarter note")
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class Command(FieldSet):
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COMMAND = {}
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for channel in xrange(16):
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COMMAND[0x80+channel] = ("Note off (channel %u)" % channel, parseNote)
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COMMAND[0x90+channel] = ("Note on (channel %u)" % channel, parseNote)
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COMMAND[0xA0+channel] = ("Key after-touch (channel %u)" % channel, parseNote)
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COMMAND[0xB0+channel] = ("Control change (channel %u)" % channel, parseControl)
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COMMAND[0xC0+channel] = ("Program (patch) change (channel %u)" % channel, parsePatch)
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COMMAND[0xD0+channel] = ("Channel after-touch (channel %u)" % channel, parseChannel)
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COMMAND[0xE0+channel] = ("Pitch wheel change (channel %u)" % channel, parsePitch)
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COMMAND_DESC = createDict(COMMAND, 0)
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COMMAND_PARSER = createDict(COMMAND, 1)
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META_COMMAND_TEXT = 1
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META_COMMAND_NAME = 3
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META_COMMAND = {
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0x00: ("Sets the track's sequence number", None),
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0x01: ("Text event", parseText),
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0x02: ("Copyright info", parseText),
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0x03: ("Sequence or Track name", parseText),
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0x04: ("Track instrument name", parseText),
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0x05: ("Lyric", parseText),
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0x06: ("Marker", parseText),
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0x07: ("Cue point", parseText),
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0x2F: ("End of the track", None),
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0x51: ("Set tempo", parseTempo),
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0x58: ("Time Signature", parseTimeSignature),
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0x59: ("Key signature", None),
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0x7F: ("Sequencer specific information", None),
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}
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META_COMMAND_DESC = createDict(META_COMMAND, 0)
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META_COMMAND_PARSER = createDict(META_COMMAND, 1)
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def createFields(self):
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yield Integer(self, "time", "Delta time in ticks")
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yield Enum(textHandler(UInt8(self, "command"), hexadecimal), self.COMMAND_DESC)
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command = self["command"].value
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if command == 0xFF:
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yield Enum(textHandler(UInt8(self, "meta_command"), hexadecimal), self.META_COMMAND_DESC)
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yield UInt8(self, "data_len")
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size = self["data_len"].value
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if size:
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command = self["meta_command"].value
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if command in self.META_COMMAND_PARSER:
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parser = self.META_COMMAND_PARSER[command]
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else:
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parser = None
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if parser:
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for field in parser(self, size):
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yield field
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else:
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yield RawBytes(self, "data", size)
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else:
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if command not in self.COMMAND_PARSER:
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raise ParserError("Unknown command: %s" % self["command"].display)
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parser = self.COMMAND_PARSER[command]
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for field in parser(self):
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yield field
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def createDescription(self):
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if "meta_command" in self:
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return self["meta_command"].display
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else:
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return self["command"].display
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class Track(FieldSet):
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def __init__(self, *args):
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FieldSet.__init__(self, *args)
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self._size = (8 + self["size"].value) * 8
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def createFields(self):
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yield String(self, "marker", 4, "Track marker (MTrk)", charset="ASCII")
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yield UInt32(self, "size")
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if True:
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while not self.eof:
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yield Command(self, "command[]")
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else:
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size = self["size"].value
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if size:
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yield RawBytes(self, "raw", size)
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def createDescription(self):
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command = self["command[0]"]
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if "meta_command" in command \
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and command["meta_command"].value in (Command.META_COMMAND_TEXT, Command.META_COMMAND_NAME) \
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and "text" in command:
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return command["text"].value.strip("\r\n")
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else:
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return ""
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class Header(FieldSet):
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static_size = 10*8
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FILE_FORMAT = {
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0: "Single track",
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1: "Multiple tracks, synchronous",
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2: "Multiple tracks, asynchronous",
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}
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def createFields(self):
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yield UInt32(self, "size")
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yield Enum(UInt16(self, "file_format"), self.FILE_FORMAT)
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yield UInt16(self, "nb_track")
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yield UInt16(self, "delta_time", "Delta-time ticks per quarter note")
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def createDescription(self):
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return "%s; %s tracks" % (
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self["file_format"].display, self["nb_track"].value)
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class MidiFile(Parser):
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MAGIC = "MThd"
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PARSER_TAGS = {
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"id": "midi",
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"category": "audio",
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"file_ext": ["mid", "midi"],
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"mime": (u"audio/mime", ),
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"magic": ((MAGIC, 0),),
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"min_size": 64,
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"description": "MIDI audio"
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}
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endian = BIG_ENDIAN
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def validate(self):
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if self.stream.readBytes(0, 4) != self.MAGIC:
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return "Invalid signature"
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if self["header/size"].value != 6:
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return "Invalid header size"
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return True
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def createFields(self):
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yield String(self, "signature", 4, r"MIDI signature (MThd)", charset="ASCII")
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yield Header(self, "header")
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while not self.eof:
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yield Track(self, "track[]")
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def createDescription(self):
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return "MIDI audio: %s" % self["header"].description
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def createContentSize(self):
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count = self["/header/nb_track"].value - 1
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start = self["track[%u]" % count].absolute_address
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# Search "End of track" of last track
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end = self.stream.searchBytes("\xff\x2f\x00", start, MAX_FILESIZE*8)
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if end is not None:
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return end + 3*8
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return None
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