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192 lines
6.5 KiB
Python
192 lines
6.5 KiB
Python
15 years ago
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# -*- coding: ISO-8859-1 -*-
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# std library
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from struct import unpack
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# uhh I don't really like this, but there are so many constants to
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# import otherwise
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from constants import *
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from EventDispatcher import EventDispatcher
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class MidiFileParser:
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"""
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The MidiFileParser is the lowest level parser that see the data as
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midi data. It generates events that gets triggered on the outstream.
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"""
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def __init__(self, raw_in, outstream):
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"""
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raw_data is the raw content of a midi file as a string.
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"""
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# internal values, don't mess with 'em directly
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self.raw_in = raw_in
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self.dispatch = EventDispatcher(outstream)
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# Used to keep track of stuff
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self._running_status = None
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def parseMThdChunk(self):
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"Parses the header chunk"
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raw_in = self.raw_in
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header_chunk_type = raw_in.nextSlice(4)
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header_chunk_zise = raw_in.readBew(4)
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# check if it is a proper midi file
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if header_chunk_type != 'MThd':
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raise TypeError, "It is not a valid midi file!"
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# Header values are at fixed locations, so no reason to be clever
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self.format = raw_in.readBew(2)
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self.nTracks = raw_in.readBew(2)
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self.division = raw_in.readBew(2)
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# Theoretically a header larger than 6 bytes can exist
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# but no one has seen one in the wild
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# But correctly ignore unknown data if it is though
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if header_chunk_zise > 6:
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raw_in.moveCursor(header_chunk_zise-6)
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# call the header event handler on the stream
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self.dispatch.header(self.format, self.nTracks, self.division)
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def parseMTrkChunk(self):
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"Parses a track chunk. This is the most important part of the parser."
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# set time to 0 at start of a track
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self.dispatch.reset_time()
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dispatch = self.dispatch
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raw_in = self.raw_in
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# Trigger event at the start of a track
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dispatch.start_of_track(self._current_track)
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# position cursor after track header
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raw_in.moveCursor(4)
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# unsigned long is 4 bytes
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tracklength = raw_in.readBew(4)
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track_endposition = raw_in.getCursor() + tracklength # absolute position!
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while raw_in.getCursor() < track_endposition:
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# find relative time of the event
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time = raw_in.readVarLen()
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dispatch.update_time(time)
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# be aware of running status!!!!
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peak_ahead = raw_in.readBew(move_cursor=0)
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if (peak_ahead & 0x80):
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# the status byte has the high bit set, so it
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# was not running data but proper status byte
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status = self._running_status = raw_in.readBew()
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else:
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# use that darn running status
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status = self._running_status
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# could it be illegal data ?? Do we need to test for that?
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# I need more example midi files to be shure.
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# Also, while I am almost certain that no realtime
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# messages will pop up in a midi file, I might need to
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# change my mind later.
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# we need to look at nibbles here
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hi_nible, lo_nible = status & 0xF0, status & 0x0F
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# match up with events
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# Is it a meta_event ??
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# these only exists in midi files, not in transmitted midi data
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# In transmitted data META_EVENT (0xFF) is a system reset
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if status == META_EVENT:
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meta_type = raw_in.readBew()
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meta_length = raw_in.readVarLen()
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meta_data = raw_in.nextSlice(meta_length)
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dispatch.meta_event(meta_type, meta_data)
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# Is it a sysex_event ??
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elif status == SYSTEM_EXCLUSIVE:
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# ignore sysex events
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sysex_length = raw_in.readVarLen()
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# don't read sysex terminator
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sysex_data = raw_in.nextSlice(sysex_length-1)
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# only read last data byte if it is a sysex terminator
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# It should allways be there, but better safe than sorry
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if raw_in.readBew(move_cursor=0) == END_OFF_EXCLUSIVE:
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eo_sysex = raw_in.readBew()
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dispatch.sysex_event(sysex_data)
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# the sysex code has not been properly tested, and might be fishy!
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# is it a system common event?
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elif hi_nible == 0xF0: # Hi bits are set then
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data_sizes = {
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MTC:1,
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SONG_POSITION_POINTER:2,
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SONG_SELECT:1,
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}
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data_size = data_sizes.get(hi_nible, 0)
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common_data = raw_in.nextSlice(data_size)
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common_type = lo_nible
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dispatch.system_common(common_type, common_data)
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# Oh! Then it must be a midi event (channel voice message)
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else:
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data_sizes = {
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PATCH_CHANGE:1,
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CHANNEL_PRESSURE:1,
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NOTE_OFF:2,
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NOTE_ON:2,
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AFTERTOUCH:2,
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CONTINUOUS_CONTROLLER:2,
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PITCH_BEND:2,
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}
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data_size = data_sizes.get(hi_nible, 0)
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channel_data = raw_in.nextSlice(data_size)
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event_type, channel = hi_nible, lo_nible
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dispatch.channel_messages(event_type, channel, channel_data)
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def parseMTrkChunks(self):
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"Parses all track chunks."
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for t in range(self.nTracks):
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self._current_track = t
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self.parseMTrkChunk() # this is where it's at!
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self.dispatch.eof()
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if __name__ == '__main__':
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# get data
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test_file = 'test/midifiles/minimal.mid'
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test_file = 'test/midifiles/cubase-minimal.mid'
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test_file = 'test/midifiles/Lola.mid'
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# f = open(test_file, 'rb')
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# raw_data = f.read()
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# f.close()
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#
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#
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# # do parsing
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from MidiToText import MidiToText
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from RawInstreamFile import RawInstreamFile
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midi_in = MidiFileParser(RawInstreamFile(test_file), MidiToText())
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midi_in.parseMThdChunk()
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midi_in.parseMTrkChunks()
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