| | |
| |
|
| | r'''############################################################################### |
| | ################################################################################### |
| | # |
| | # |
| | # Tegridy MIDI X Module (TMIDI X / tee-midi eks) |
| | # |
| | # NOTE: TMIDI X Module starts after the partial MIDI.py module @ line 1450 |
| | # |
| | # Based upon MIDI.py module v.6.7. by Peter Billam / pjb.com.au |
| | # |
| | # Project Los Angeles |
| | # |
| | # Tegridy Code 2025 |
| | # |
| | # https://github.com/Tegridy-Code/Project-Los-Angeles |
| | # |
| | # |
| | ################################################################################### |
| | ################################################################################### |
| | # Copyright 2025 Project Los Angeles / Tegridy Code |
| | # |
| | # Licensed under the Apache License, Version 2.0 (the "License"); |
| | # you may not use this file except in compliance with the License. |
| | # You may obtain a copy of the License at |
| | # |
| | # http://www.apache.org/licenses/LICENSE-2.0 |
| | # |
| | # Unless required by applicable law or agreed to in writing, software |
| | # distributed under the License is distributed on an "AS IS" BASIS, |
| | # WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
| | # See the License for the specific language governing permissions and |
| | # limitations under the License. |
| | ################################################################################### |
| | ################################################################################### |
| | # |
| | # PARTIAL MIDI.py Module v.6.7. by Peter Billam |
| | # Please see TMIDI 2.3/tegridy-tools repo for full MIDI.py module code |
| | # |
| | # Or you can always download the latest full version from: |
| | # |
| | # https://pjb.com.au/ |
| | # https://peterbillam.gitlab.io/miditools/ |
| | # |
| | # Copyright 2020 Peter Billam |
| | # |
| | ################################################################################### |
| | ################################################################################### |
| | # unsupported 20091104 ... |
| | # ['set_sequence_number', dtime, sequence] |
| | # ['raw_data', dtime, raw] |
| | |
| | # 20150914 jimbo1qaz MIDI.py str/bytes bug report |
| | # I found a MIDI file which had Shift-JIS titles. When midi.py decodes it as |
| | # latin-1, it produces a string which cannot even be accessed without raising |
| | # a UnicodeDecodeError. Maybe, when converting raw byte strings from MIDI, |
| | # you should keep them as bytes, not improperly decode them. However, this |
| | # would change the API. (ie: text = a "string" ? of 0 or more bytes). It |
| | # could break compatiblity, but there's not much else you can do to fix the bug |
| | # https://en.wikipedia.org/wiki/Shift_JIS |
| | |
| | This module offers functions: concatenate_scores(), grep(), |
| | merge_scores(), mix_scores(), midi2opus(), midi2score(), opus2midi(), |
| | opus2score(), play_score(), score2midi(), score2opus(), score2stats(), |
| | score_type(), segment(), timeshift() and to_millisecs(), |
| | where "midi" means the MIDI-file bytes (as can be put in a .mid file, |
| | or piped into aplaymidi), and "opus" and "score" are list-structures |
| | as inspired by Sean Burke's MIDI-Perl CPAN module. |
| | |
| | Warning: Version 6.4 is not necessarily backward-compatible with |
| | previous versions, in that text-data is now bytes, not strings. |
| | This reflects the fact that many MIDI files have text data in |
| | encodings other that ISO-8859-1, for example in Shift-JIS. |
| | |
| | Download MIDI.py from http://www.pjb.com.au/midi/free/MIDI.py |
| | and put it in your PYTHONPATH. MIDI.py depends on Python3. |
| | |
| | There is also a call-compatible translation into Lua of this |
| | module: see http://www.pjb.com.au/comp/lua/MIDI.html |
| | |
| | Backup web site: https://peterbillam.gitlab.io/miditools/ |
| | |
| | The "opus" is a direct translation of the midi-file-events, where |
| | the times are delta-times, in ticks, since the previous event. |
| | |
| | The "score" is more human-centric; it uses absolute times, and |
| | combines the separate note_on and note_off events into one "note" |
| | event, with a duration: |
| | ['note', start_time, duration, channel, note, velocity] # in a "score" |
| | |
| | EVENTS (in an "opus" structure) |
| | ['note_off', dtime, channel, note, velocity] # in an "opus" |
| | ['note_on', dtime, channel, note, velocity] # in an "opus" |
| | ['key_after_touch', dtime, channel, note, velocity] |
| | ['control_change', dtime, channel, controller(0-127), value(0-127)] |
| | ['patch_change', dtime, channel, patch] |
| | ['channel_after_touch', dtime, channel, velocity] |
| | ['pitch_wheel_change', dtime, channel, pitch_wheel] |
| | ['text_event', dtime, text] |
| | ['copyright_text_event', dtime, text] |
| | ['track_name', dtime, text] |
| | ['instrument_name', dtime, text] |
| | ['lyric', dtime, text] |
| | ['marker', dtime, text] |
| | ['cue_point', dtime, text] |
| | ['text_event_08', dtime, text] |
| | ['text_event_09', dtime, text] |
| | ['text_event_0a', dtime, text] |
| | ['text_event_0b', dtime, text] |
| | ['text_event_0c', dtime, text] |
| | ['text_event_0d', dtime, text] |
| | ['text_event_0e', dtime, text] |
| | ['text_event_0f', dtime, text] |
| | ['end_track', dtime] |
| | ['set_tempo', dtime, tempo] |
| | ['smpte_offset', dtime, hr, mn, se, fr, ff] |
| | ['time_signature', dtime, nn, dd, cc, bb] |
| | ['key_signature', dtime, sf, mi] |
| | ['sequencer_specific', dtime, raw] |
| | ['raw_meta_event', dtime, command(0-255), raw] |
| | ['sysex_f0', dtime, raw] |
| | ['sysex_f7', dtime, raw] |
| | ['song_position', dtime, song_pos] |
| | ['song_select', dtime, song_number] |
| | ['tune_request', dtime] |
| | |
| | DATA TYPES |
| | channel = a value 0 to 15 |
| | controller = 0 to 127 (see http://www.pjb.com.au/muscript/gm.html#cc ) |
| | dtime = time measured in "ticks", 0 to 268435455 |
| | velocity = a value 0 (soft) to 127 (loud) |
| | note = a value 0 to 127 (middle-C is 60) |
| | patch = 0 to 127 (see http://www.pjb.com.au/muscript/gm.html ) |
| | pitch_wheel = a value -8192 to 8191 (0x1FFF) |
| | raw = bytes, of length 0 or more (for sysex events see below) |
| | sequence_number = a value 0 to 65,535 (0xFFFF) |
| | song_pos = a value 0 to 16,383 (0x3FFF) |
| | song_number = a value 0 to 127 |
| | tempo = microseconds per crochet (quarter-note), 0 to 16777215 |
| | text = bytes, of length 0 or more |
| | ticks = the number of ticks per crochet (quarter-note) |
| | |
| | In sysex_f0 events, the raw data must not start with a \xF0 byte, |
| | since this gets added automatically; |
| | but it must end with an explicit \xF7 byte! |
| | In the very unlikely case that you ever need to split sysex data |
| | into one sysex_f0 followed by one or more sysex_f7s, then only the |
| | last of those sysex_f7 events must end with the explicit \xF7 byte |
| | (again, the raw data of individual sysex_f7 events must not start |
| | with any \xF7 byte, since this gets added automatically). |
| | |
| | Since version 6.4, text data is in bytes, not in a ISO-8859-1 string. |
| | |
| | |
| | GOING THROUGH A SCORE WITHIN A PYTHON PROGRAM |
| | channels = {2,3,5,8,13} |
| | itrack = 1 # skip 1st element which is ticks |
| | while itrack < len(score): |
| | for event in score[itrack]: |
| | if event[0] == 'note': # for example, |
| | pass # do something to all notes |
| | # or, to work on events in only particular channels... |
| | channel_index = MIDI.Event2channelindex.get(event[0], False) |
| | if channel_index and (event[channel_index] in channels): |
| | pass # do something to channels 2,3,5,8 and 13 |
| | itrack += 1 |
| | |
| | ''' |
| |
|
| | |
| |
|
| | __version__ = "25.7.8" |
| |
|
| | print('=' * 70) |
| | print('TMIDIX Python module') |
| | print('Version:', __version__) |
| | print('=' * 70) |
| | print('Loading module...') |
| |
|
| | |
| |
|
| | import sys, struct, copy |
| |
|
| | Version = '6.7' |
| | VersionDate = '20201120' |
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|
| | _previous_warning = '' |
| | _previous_times = 0 |
| | _no_warning = False |
| |
|
| | |
| |
|
| | def opus2midi(opus=[], text_encoding='ISO-8859-1'): |
| | r'''The argument is a list: the first item in the list is the "ticks" |
| | parameter, the others are the tracks. Each track is a list |
| | of midi-events, and each event is itself a list; see above. |
| | opus2midi() returns a bytestring of the MIDI, which can then be |
| | written either to a file opened in binary mode (mode='wb'), |
| | or to stdout by means of: sys.stdout.buffer.write() |
| | |
| | my_opus = [ |
| | 96, |
| | [ # track 0: |
| | ['patch_change', 0, 1, 8], # and these are the events... |
| | ['note_on', 5, 1, 25, 96], |
| | ['note_off', 96, 1, 25, 0], |
| | ['note_on', 0, 1, 29, 96], |
| | ['note_off', 96, 1, 29, 0], |
| | ], # end of track 0 |
| | ] |
| | my_midi = opus2midi(my_opus) |
| | sys.stdout.buffer.write(my_midi) |
| | ''' |
| | if len(opus) < 2: |
| | opus=[1000, [],] |
| | tracks = copy.deepcopy(opus) |
| | ticks = int(tracks.pop(0)) |
| | ntracks = len(tracks) |
| | if ntracks == 1: |
| | format = 0 |
| | else: |
| | format = 1 |
| |
|
| | my_midi = b"MThd\x00\x00\x00\x06"+struct.pack('>HHH',format,ntracks,ticks) |
| | for track in tracks: |
| | events = _encode(track, text_encoding=text_encoding) |
| | my_midi += b'MTrk' + struct.pack('>I',len(events)) + events |
| | _clean_up_warnings() |
| | return my_midi |
| |
|
| |
|
| | def score2opus(score=None, text_encoding='ISO-8859-1'): |
| | r''' |
| | The argument is a list: the first item in the list is the "ticks" |
| | parameter, the others are the tracks. Each track is a list |
| | of score-events, and each event is itself a list. A score-event |
| | is similar to an opus-event (see above), except that in a score: |
| | 1) the times are expressed as an absolute number of ticks |
| | from the track's start time |
| | 2) the pairs of 'note_on' and 'note_off' events in an "opus" |
| | are abstracted into a single 'note' event in a "score": |
| | ['note', start_time, duration, channel, pitch, velocity] |
| | score2opus() returns a list specifying the equivalent "opus". |
| | |
| | my_score = [ |
| | 96, |
| | [ # track 0: |
| | ['patch_change', 0, 1, 8], |
| | ['note', 5, 96, 1, 25, 96], |
| | ['note', 101, 96, 1, 29, 96] |
| | ], # end of track 0 |
| | ] |
| | my_opus = score2opus(my_score) |
| | ''' |
| | if len(score) < 2: |
| | score=[1000, [],] |
| | tracks = copy.deepcopy(score) |
| | ticks = int(tracks.pop(0)) |
| | opus_tracks = [] |
| | for scoretrack in tracks: |
| | time2events = dict([]) |
| | for scoreevent in scoretrack: |
| | if scoreevent[0] == 'note': |
| | note_on_event = ['note_on',scoreevent[1], |
| | scoreevent[3],scoreevent[4],scoreevent[5]] |
| | note_off_event = ['note_off',scoreevent[1]+scoreevent[2], |
| | scoreevent[3],scoreevent[4],scoreevent[5]] |
| | if time2events.get(note_on_event[1]): |
| | time2events[note_on_event[1]].append(note_on_event) |
| | else: |
| | time2events[note_on_event[1]] = [note_on_event,] |
| | if time2events.get(note_off_event[1]): |
| | time2events[note_off_event[1]].append(note_off_event) |
| | else: |
| | time2events[note_off_event[1]] = [note_off_event,] |
| | continue |
| | if time2events.get(scoreevent[1]): |
| | time2events[scoreevent[1]].append(scoreevent) |
| | else: |
| | time2events[scoreevent[1]] = [scoreevent,] |
| |
|
| | sorted_times = [] |
| | for k in time2events.keys(): |
| | sorted_times.append(k) |
| | sorted_times.sort() |
| |
|
| | sorted_events = [] |
| | for time in sorted_times: |
| | sorted_events.extend(time2events[time]) |
| |
|
| | abs_time = 0 |
| | for event in sorted_events: |
| | delta_time = event[1] - abs_time |
| | abs_time = event[1] |
| | event[1] = delta_time |
| | opus_tracks.append(sorted_events) |
| | opus_tracks.insert(0,ticks) |
| | _clean_up_warnings() |
| | return opus_tracks |
| |
|
| | def score2midi(score=None, text_encoding='ISO-8859-1'): |
| | r''' |
| | Translates a "score" into MIDI, using score2opus() then opus2midi() |
| | ''' |
| | return opus2midi(score2opus(score, text_encoding), text_encoding) |
| |
|
| | |
| |
|
| | def midi2opus(midi=b'', do_not_check_MIDI_signature=False): |
| | r'''Translates MIDI into a "opus". For a description of the |
| | "opus" format, see opus2midi() |
| | ''' |
| | my_midi=bytearray(midi) |
| | if len(my_midi) < 4: |
| | _clean_up_warnings() |
| | return [1000,[],] |
| | id = bytes(my_midi[0:4]) |
| | if id != b'MThd': |
| | _warn("midi2opus: midi starts with "+str(id)+" instead of 'MThd'") |
| | _clean_up_warnings() |
| | if do_not_check_MIDI_signature == False: |
| | return [1000,[],] |
| | [length, format, tracks_expected, ticks] = struct.unpack( |
| | '>IHHH', bytes(my_midi[4:14])) |
| | if length != 6: |
| | _warn("midi2opus: midi header length was "+str(length)+" instead of 6") |
| | _clean_up_warnings() |
| | return [1000,[],] |
| | my_opus = [ticks,] |
| | my_midi = my_midi[14:] |
| | track_num = 1 |
| | while len(my_midi) >= 8: |
| | track_type = bytes(my_midi[0:4]) |
| | if track_type != b'MTrk': |
| | |
| | pass |
| | [track_length] = struct.unpack('>I', my_midi[4:8]) |
| | my_midi = my_midi[8:] |
| | if track_length > len(my_midi): |
| | _warn('midi2opus: track #'+str(track_num)+' length '+str(track_length)+' is too large') |
| | _clean_up_warnings() |
| | return my_opus |
| | my_midi_track = my_midi[0:track_length] |
| | my_track = _decode(my_midi_track) |
| | my_opus.append(my_track) |
| | my_midi = my_midi[track_length:] |
| | track_num += 1 |
| | _clean_up_warnings() |
| | return my_opus |
| |
|
| | def opus2score(opus=[]): |
| | r'''For a description of the "opus" and "score" formats, |
| | see opus2midi() and score2opus(). |
| | ''' |
| | if len(opus) < 2: |
| | _clean_up_warnings() |
| | return [1000,[],] |
| | tracks = copy.deepcopy(opus) |
| | ticks = int(tracks.pop(0)) |
| | score = [ticks,] |
| | for opus_track in tracks: |
| | ticks_so_far = 0 |
| | score_track = [] |
| | chapitch2note_on_events = dict([]) |
| | for opus_event in opus_track: |
| | ticks_so_far += opus_event[1] |
| | if opus_event[0] == 'note_off' or (opus_event[0] == 'note_on' and opus_event[4] == 0): |
| | cha = opus_event[2] |
| | pitch = opus_event[3] |
| | key = cha*128 + pitch |
| | if chapitch2note_on_events.get(key): |
| | new_event = chapitch2note_on_events[key].pop(0) |
| | new_event[2] = ticks_so_far - new_event[1] |
| | score_track.append(new_event) |
| | elif pitch > 127: |
| | pass |
| | else: |
| | pass |
| | elif opus_event[0] == 'note_on': |
| | cha = opus_event[2] |
| | pitch = opus_event[3] |
| | key = cha*128 + pitch |
| | new_event = ['note',ticks_so_far,0,cha,pitch, opus_event[4]] |
| | if chapitch2note_on_events.get(key): |
| | chapitch2note_on_events[key].append(new_event) |
| | else: |
| | chapitch2note_on_events[key] = [new_event,] |
| | else: |
| | opus_event[1] = ticks_so_far |
| | score_track.append(opus_event) |
| | |
| | for chapitch in chapitch2note_on_events: |
| | note_on_events = chapitch2note_on_events[chapitch] |
| | for new_e in note_on_events: |
| | new_e[2] = ticks_so_far - new_e[1] |
| | score_track.append(new_e) |
| | pass |
| | score.append(score_track) |
| | _clean_up_warnings() |
| | return score |
| |
|
| | def midi2score(midi=b'', do_not_check_MIDI_signature=False): |
| | r''' |
| | Translates MIDI into a "score", using midi2opus() then opus2score() |
| | ''' |
| | return opus2score(midi2opus(midi, do_not_check_MIDI_signature)) |
| |
|
| | def midi2ms_score(midi=b'', do_not_check_MIDI_signature=False): |
| | r''' |
| | Translates MIDI into a "score" with one beat per second and one |
| | tick per millisecond, using midi2opus() then to_millisecs() |
| | then opus2score() |
| | ''' |
| | return opus2score(to_millisecs(midi2opus(midi, do_not_check_MIDI_signature))) |
| |
|
| | def midi2single_track_ms_score(midi_path_or_bytes, |
| | recalculate_channels = False, |
| | pass_old_timings_events= False, |
| | verbose = False, |
| | do_not_check_MIDI_signature=False |
| | ): |
| | r''' |
| | Translates MIDI into a single track "score" with 16 instruments and one beat per second and one |
| | tick per millisecond |
| | ''' |
| |
|
| | if type(midi_path_or_bytes) == bytes: |
| | midi_data = midi_path_or_bytes |
| |
|
| | elif type(midi_path_or_bytes) == str: |
| | midi_data = open(midi_path_or_bytes, 'rb').read() |
| |
|
| | score = midi2score(midi_data, do_not_check_MIDI_signature) |
| |
|
| | if recalculate_channels: |
| |
|
| | events_matrixes = [] |
| |
|
| | itrack = 1 |
| | events_matrixes_channels = [] |
| | while itrack < len(score): |
| | events_matrix = [] |
| | for event in score[itrack]: |
| | if event[0] == 'note' and event[3] != 9: |
| | event[3] = (16 * (itrack-1)) + event[3] |
| | if event[3] not in events_matrixes_channels: |
| | events_matrixes_channels.append(event[3]) |
| |
|
| | events_matrix.append(event) |
| | events_matrixes.append(events_matrix) |
| | itrack += 1 |
| |
|
| | events_matrix1 = [] |
| | for e in events_matrixes: |
| | events_matrix1.extend(e) |
| |
|
| | if verbose: |
| | if len(events_matrixes_channels) > 16: |
| | print('MIDI has', len(events_matrixes_channels), 'instruments!', len(events_matrixes_channels) - 16, 'instrument(s) will be removed!') |
| |
|
| | for e in events_matrix1: |
| | if e[0] == 'note' and e[3] != 9: |
| | if e[3] in events_matrixes_channels[:15]: |
| | if events_matrixes_channels[:15].index(e[3]) < 9: |
| | e[3] = events_matrixes_channels[:15].index(e[3]) |
| | else: |
| | e[3] = events_matrixes_channels[:15].index(e[3])+1 |
| | else: |
| | events_matrix1.remove(e) |
| | |
| | if e[0] in ['patch_change', 'control_change', 'channel_after_touch', 'key_after_touch', 'pitch_wheel_change'] and e[2] != 9: |
| | if e[2] in [e % 16 for e in events_matrixes_channels[:15]]: |
| | if [e % 16 for e in events_matrixes_channels[:15]].index(e[2]) < 9: |
| | e[2] = [e % 16 for e in events_matrixes_channels[:15]].index(e[2]) |
| | else: |
| | e[2] = [e % 16 for e in events_matrixes_channels[:15]].index(e[2])+1 |
| | else: |
| | events_matrix1.remove(e) |
| | |
| | else: |
| | events_matrix1 = [] |
| | itrack = 1 |
| | |
| | while itrack < len(score): |
| | for event in score[itrack]: |
| | events_matrix1.append(event) |
| | itrack += 1 |
| |
|
| | opus = score2opus([score[0], events_matrix1]) |
| | ms_score = opus2score(to_millisecs(opus, pass_old_timings_events=pass_old_timings_events)) |
| |
|
| | return ms_score |
| |
|
| | |
| |
|
| | def to_millisecs(old_opus=None, desired_time_in_ms=1, pass_old_timings_events = False): |
| | r'''Recallibrates all the times in an "opus" to use one beat |
| | per second and one tick per millisecond. This makes it |
| | hard to retrieve any information about beats or barlines, |
| | but it does make it easy to mix different scores together. |
| | ''' |
| | if old_opus == None: |
| | return [1000 * desired_time_in_ms,[],] |
| | try: |
| | old_tpq = int(old_opus[0]) |
| | except IndexError: |
| | _warn('to_millisecs: the opus '+str(type(old_opus))+' has no elements') |
| | return [1000 * desired_time_in_ms,[],] |
| | new_opus = [1000 * desired_time_in_ms,] |
| | |
| | ticks2tempo = {} |
| | itrack = 1 |
| | while itrack < len(old_opus): |
| | ticks_so_far = 0 |
| | for old_event in old_opus[itrack]: |
| | if old_event[0] == 'note': |
| | raise TypeError('to_millisecs needs an opus, not a score') |
| | ticks_so_far += old_event[1] |
| | if old_event[0] == 'set_tempo': |
| | ticks2tempo[ticks_so_far] = old_event[2] |
| | itrack += 1 |
| | |
| | tempo_ticks = [] |
| | for k in ticks2tempo.keys(): |
| | tempo_ticks.append(k) |
| | tempo_ticks.sort() |
| | |
| | |
| | itrack = 1 |
| | while itrack < len(old_opus): |
| | ms_per_old_tick = 400 / old_tpq |
| | i_tempo_ticks = 0 |
| | ticks_so_far = 0 |
| | ms_so_far = 0.0 |
| | previous_ms_so_far = 0.0 |
| |
|
| | if pass_old_timings_events: |
| | new_track = [['set_tempo',0,1000000 * desired_time_in_ms],['old_tpq', 0, old_tpq]] |
| | else: |
| | new_track = [['set_tempo',0,1000000 * desired_time_in_ms],] |
| | for old_event in old_opus[itrack]: |
| | |
| | |
| | event_delta_ticks = old_event[1] * desired_time_in_ms |
| | if (i_tempo_ticks < len(tempo_ticks) and |
| | tempo_ticks[i_tempo_ticks] < (ticks_so_far + old_event[1]) * desired_time_in_ms): |
| | delta_ticks = tempo_ticks[i_tempo_ticks] - ticks_so_far |
| | ms_so_far += (ms_per_old_tick * delta_ticks * desired_time_in_ms) |
| | ticks_so_far = tempo_ticks[i_tempo_ticks] |
| | ms_per_old_tick = ticks2tempo[ticks_so_far] / (1000.0*old_tpq * desired_time_in_ms) |
| | i_tempo_ticks += 1 |
| | event_delta_ticks -= delta_ticks |
| | new_event = copy.deepcopy(old_event) |
| | ms_so_far += (ms_per_old_tick * old_event[1] * desired_time_in_ms) |
| | new_event[1] = round(ms_so_far - previous_ms_so_far) |
| |
|
| | if pass_old_timings_events: |
| | if old_event[0] != 'set_tempo': |
| | previous_ms_so_far = ms_so_far |
| | new_track.append(new_event) |
| | else: |
| | new_event[0] = 'old_set_tempo' |
| | previous_ms_so_far = ms_so_far |
| | new_track.append(new_event) |
| | else: |
| | if old_event[0] != 'set_tempo': |
| | previous_ms_so_far = ms_so_far |
| | new_track.append(new_event) |
| | ticks_so_far += event_delta_ticks |
| | new_opus.append(new_track) |
| | itrack += 1 |
| | _clean_up_warnings() |
| | return new_opus |
| |
|
| | def event2alsaseq(event=None): |
| | r'''Converts an event into the format needed by the alsaseq module, |
| | http://pp.com.mx/python/alsaseq |
| | The type of track (opus or score) is autodetected. |
| | ''' |
| | pass |
| |
|
| | def grep(score=None, channels=None): |
| | r'''Returns a "score" containing only the channels specified |
| | ''' |
| | if score == None: |
| | return [1000,[],] |
| | ticks = score[0] |
| | new_score = [ticks,] |
| | if channels == None: |
| | return new_score |
| | channels = set(channels) |
| | global Event2channelindex |
| | itrack = 1 |
| | while itrack < len(score): |
| | new_score.append([]) |
| | for event in score[itrack]: |
| | channel_index = Event2channelindex.get(event[0], False) |
| | if channel_index: |
| | if event[channel_index] in channels: |
| | new_score[itrack].append(event) |
| | else: |
| | new_score[itrack].append(event) |
| | itrack += 1 |
| | return new_score |
| |
|
| | def score2stats(opus_or_score=None): |
| | r'''Returns a dict of some basic stats about the score, like |
| | bank_select (list of tuples (msb,lsb)), |
| | channels_by_track (list of lists), channels_total (set), |
| | general_midi_mode (list), |
| | ntracks, nticks, patch_changes_by_track (list of dicts), |
| | num_notes_by_channel (list of numbers), |
| | patch_changes_total (set), |
| | percussion (dict histogram of channel 9 events), |
| | pitches (dict histogram of pitches on channels other than 9), |
| | pitch_range_by_track (list, by track, of two-member-tuples), |
| | pitch_range_sum (sum over tracks of the pitch_ranges), |
| | ''' |
| | bank_select_msb = -1 |
| | bank_select_lsb = -1 |
| | bank_select = [] |
| | channels_by_track = [] |
| | channels_total = set([]) |
| | general_midi_mode = [] |
| | num_notes_by_channel = dict([]) |
| | patches_used_by_track = [] |
| | patches_used_total = set([]) |
| | patch_changes_by_track = [] |
| | patch_changes_total = set([]) |
| | percussion = dict([]) |
| | pitches = dict([]) |
| | pitch_range_sum = 0 |
| | pitch_range_by_track = [] |
| | is_a_score = True |
| | if opus_or_score == None: |
| | return {'bank_select':[], 'channels_by_track':[], 'channels_total':[], |
| | 'general_midi_mode':[], 'ntracks':0, 'nticks':0, |
| | 'num_notes_by_channel':dict([]), |
| | 'patch_changes_by_track':[], 'patch_changes_total':[], |
| | 'percussion':{}, 'pitches':{}, 'pitch_range_by_track':[], |
| | 'ticks_per_quarter':0, 'pitch_range_sum':0} |
| | ticks_per_quarter = opus_or_score[0] |
| | i = 1 |
| | nticks = 0 |
| | while i < len(opus_or_score): |
| | highest_pitch = 0 |
| | lowest_pitch = 128 |
| | channels_this_track = set([]) |
| | patch_changes_this_track = dict({}) |
| | for event in opus_or_score[i]: |
| | if event[0] == 'note': |
| | num_notes_by_channel[event[3]] = num_notes_by_channel.get(event[3],0) + 1 |
| | if event[3] == 9: |
| | percussion[event[4]] = percussion.get(event[4],0) + 1 |
| | else: |
| | pitches[event[4]] = pitches.get(event[4],0) + 1 |
| | if event[4] > highest_pitch: |
| | highest_pitch = event[4] |
| | if event[4] < lowest_pitch: |
| | lowest_pitch = event[4] |
| | channels_this_track.add(event[3]) |
| | channels_total.add(event[3]) |
| | finish_time = event[1] + event[2] |
| | if finish_time > nticks: |
| | nticks = finish_time |
| | elif event[0] == 'note_off' or (event[0] == 'note_on' and event[4] == 0): |
| | finish_time = event[1] |
| | if finish_time > nticks: |
| | nticks = finish_time |
| | elif event[0] == 'note_on': |
| | is_a_score = False |
| | num_notes_by_channel[event[2]] = num_notes_by_channel.get(event[2],0) + 1 |
| | if event[2] == 9: |
| | percussion[event[3]] = percussion.get(event[3],0) + 1 |
| | else: |
| | pitches[event[3]] = pitches.get(event[3],0) + 1 |
| | if event[3] > highest_pitch: |
| | highest_pitch = event[3] |
| | if event[3] < lowest_pitch: |
| | lowest_pitch = event[3] |
| | channels_this_track.add(event[2]) |
| | channels_total.add(event[2]) |
| | elif event[0] == 'patch_change': |
| | patch_changes_this_track[event[2]] = event[3] |
| | patch_changes_total.add(event[3]) |
| | elif event[0] == 'control_change': |
| | if event[3] == 0: |
| | bank_select_msb = event[4] |
| | elif event[3] == 32: |
| | bank_select_lsb = event[4] |
| | if bank_select_msb >= 0 and bank_select_lsb >= 0: |
| | bank_select.append((bank_select_msb,bank_select_lsb)) |
| | bank_select_msb = -1 |
| | bank_select_lsb = -1 |
| | elif event[0] == 'sysex_f0': |
| | if _sysex2midimode.get(event[2], -1) >= 0: |
| | general_midi_mode.append(_sysex2midimode.get(event[2])) |
| | if is_a_score: |
| | if event[1] > nticks: |
| | nticks = event[1] |
| | else: |
| | nticks += event[1] |
| | if lowest_pitch == 128: |
| | lowest_pitch = 0 |
| | channels_by_track.append(channels_this_track) |
| | patch_changes_by_track.append(patch_changes_this_track) |
| | pitch_range_by_track.append((lowest_pitch,highest_pitch)) |
| | pitch_range_sum += (highest_pitch-lowest_pitch) |
| | i += 1 |
| |
|
| | return {'bank_select':bank_select, |
| | 'channels_by_track':channels_by_track, |
| | 'channels_total':channels_total, |
| | 'general_midi_mode':general_midi_mode, |
| | 'ntracks':len(opus_or_score)-1, |
| | 'nticks':nticks, |
| | 'num_notes_by_channel':num_notes_by_channel, |
| | 'patch_changes_by_track':patch_changes_by_track, |
| | 'patch_changes_total':patch_changes_total, |
| | 'percussion':percussion, |
| | 'pitches':pitches, |
| | 'pitch_range_by_track':pitch_range_by_track, |
| | 'pitch_range_sum':pitch_range_sum, |
| | 'ticks_per_quarter':ticks_per_quarter} |
| |
|
| | |
| |
|
| | _sysex2midimode = { |
| | "\x7E\x7F\x09\x01\xF7": 1, |
| | "\x7E\x7F\x09\x02\xF7": 0, |
| | "\x7E\x7F\x09\x03\xF7": 2, |
| | } |
| |
|
| | |
| | MIDI_events = tuple('''note_off note_on key_after_touch |
| | control_change patch_change channel_after_touch |
| | pitch_wheel_change'''.split()) |
| |
|
| | Text_events = tuple('''text_event copyright_text_event |
| | track_name instrument_name lyric marker cue_point text_event_08 |
| | text_event_09 text_event_0a text_event_0b text_event_0c |
| | text_event_0d text_event_0e text_event_0f'''.split()) |
| |
|
| | Nontext_meta_events = tuple('''end_track set_tempo |
| | smpte_offset time_signature key_signature sequencer_specific |
| | raw_meta_event sysex_f0 sysex_f7 song_position song_select |
| | tune_request'''.split()) |
| | |
| |
|
| | |
| | Meta_events = Text_events + Nontext_meta_events |
| | All_events = MIDI_events + Meta_events |
| |
|
| | |
| | Number2patch = { |
| | 0:'Acoustic Grand', |
| | 1:'Bright Acoustic', |
| | 2:'Electric Grand', |
| | 3:'Honky-Tonk', |
| | 4:'Electric Piano 1', |
| | 5:'Electric Piano 2', |
| | 6:'Harpsichord', |
| | 7:'Clav', |
| | 8:'Celesta', |
| | 9:'Glockenspiel', |
| | 10:'Music Box', |
| | 11:'Vibraphone', |
| | 12:'Marimba', |
| | 13:'Xylophone', |
| | 14:'Tubular Bells', |
| | 15:'Dulcimer', |
| | 16:'Drawbar Organ', |
| | 17:'Percussive Organ', |
| | 18:'Rock Organ', |
| | 19:'Church Organ', |
| | 20:'Reed Organ', |
| | 21:'Accordion', |
| | 22:'Harmonica', |
| | 23:'Tango Accordion', |
| | 24:'Acoustic Guitar(nylon)', |
| | 25:'Acoustic Guitar(steel)', |
| | 26:'Electric Guitar(jazz)', |
| | 27:'Electric Guitar(clean)', |
| | 28:'Electric Guitar(muted)', |
| | 29:'Overdriven Guitar', |
| | 30:'Distortion Guitar', |
| | 31:'Guitar Harmonics', |
| | 32:'Acoustic Bass', |
| | 33:'Electric Bass(finger)', |
| | 34:'Electric Bass(pick)', |
| | 35:'Fretless Bass', |
| | 36:'Slap Bass 1', |
| | 37:'Slap Bass 2', |
| | 38:'Synth Bass 1', |
| | 39:'Synth Bass 2', |
| | 40:'Violin', |
| | 41:'Viola', |
| | 42:'Cello', |
| | 43:'Contrabass', |
| | 44:'Tremolo Strings', |
| | 45:'Pizzicato Strings', |
| | 46:'Orchestral Harp', |
| | 47:'Timpani', |
| | 48:'String Ensemble 1', |
| | 49:'String Ensemble 2', |
| | 50:'SynthStrings 1', |
| | 51:'SynthStrings 2', |
| | 52:'Choir Aahs', |
| | 53:'Voice Oohs', |
| | 54:'Synth Voice', |
| | 55:'Orchestra Hit', |
| | 56:'Trumpet', |
| | 57:'Trombone', |
| | 58:'Tuba', |
| | 59:'Muted Trumpet', |
| | 60:'French Horn', |
| | 61:'Brass Section', |
| | 62:'SynthBrass 1', |
| | 63:'SynthBrass 2', |
| | 64:'Soprano Sax', |
| | 65:'Alto Sax', |
| | 66:'Tenor Sax', |
| | 67:'Baritone Sax', |
| | 68:'Oboe', |
| | 69:'English Horn', |
| | 70:'Bassoon', |
| | 71:'Clarinet', |
| | 72:'Piccolo', |
| | 73:'Flute', |
| | 74:'Recorder', |
| | 75:'Pan Flute', |
| | 76:'Blown Bottle', |
| | 77:'Skakuhachi', |
| | 78:'Whistle', |
| | 79:'Ocarina', |
| | 80:'Lead 1 (square)', |
| | 81:'Lead 2 (sawtooth)', |
| | 82:'Lead 3 (calliope)', |
| | 83:'Lead 4 (chiff)', |
| | 84:'Lead 5 (charang)', |
| | 85:'Lead 6 (voice)', |
| | 86:'Lead 7 (fifths)', |
| | 87:'Lead 8 (bass+lead)', |
| | 88:'Pad 1 (new age)', |
| | 89:'Pad 2 (warm)', |
| | 90:'Pad 3 (polysynth)', |
| | 91:'Pad 4 (choir)', |
| | 92:'Pad 5 (bowed)', |
| | 93:'Pad 6 (metallic)', |
| | 94:'Pad 7 (halo)', |
| | 95:'Pad 8 (sweep)', |
| | 96:'FX 1 (rain)', |
| | 97:'FX 2 (soundtrack)', |
| | 98:'FX 3 (crystal)', |
| | 99:'FX 4 (atmosphere)', |
| | 100:'FX 5 (brightness)', |
| | 101:'FX 6 (goblins)', |
| | 102:'FX 7 (echoes)', |
| | 103:'FX 8 (sci-fi)', |
| | 104:'Sitar', |
| | 105:'Banjo', |
| | 106:'Shamisen', |
| | 107:'Koto', |
| | 108:'Kalimba', |
| | 109:'Bagpipe', |
| | 110:'Fiddle', |
| | 111:'Shanai', |
| | 112:'Tinkle Bell', |
| | 113:'Agogo', |
| | 114:'Steel Drums', |
| | 115:'Woodblock', |
| | 116:'Taiko Drum', |
| | 117:'Melodic Tom', |
| | 118:'Synth Drum', |
| | 119:'Reverse Cymbal', |
| | 120:'Guitar Fret Noise', |
| | 121:'Breath Noise', |
| | 122:'Seashore', |
| | 123:'Bird Tweet', |
| | 124:'Telephone Ring', |
| | 125:'Helicopter', |
| | 126:'Applause', |
| | 127:'Gunshot', |
| | } |
| | Notenum2percussion = { |
| | 35:'Acoustic Bass Drum', |
| | 36:'Bass Drum 1', |
| | 37:'Side Stick', |
| | 38:'Acoustic Snare', |
| | 39:'Hand Clap', |
| | 40:'Electric Snare', |
| | 41:'Low Floor Tom', |
| | 42:'Closed Hi-Hat', |
| | 43:'High Floor Tom', |
| | 44:'Pedal Hi-Hat', |
| | 45:'Low Tom', |
| | 46:'Open Hi-Hat', |
| | 47:'Low-Mid Tom', |
| | 48:'Hi-Mid Tom', |
| | 49:'Crash Cymbal 1', |
| | 50:'High Tom', |
| | 51:'Ride Cymbal 1', |
| | 52:'Chinese Cymbal', |
| | 53:'Ride Bell', |
| | 54:'Tambourine', |
| | 55:'Splash Cymbal', |
| | 56:'Cowbell', |
| | 57:'Crash Cymbal 2', |
| | 58:'Vibraslap', |
| | 59:'Ride Cymbal 2', |
| | 60:'Hi Bongo', |
| | 61:'Low Bongo', |
| | 62:'Mute Hi Conga', |
| | 63:'Open Hi Conga', |
| | 64:'Low Conga', |
| | 65:'High Timbale', |
| | 66:'Low Timbale', |
| | 67:'High Agogo', |
| | 68:'Low Agogo', |
| | 69:'Cabasa', |
| | 70:'Maracas', |
| | 71:'Short Whistle', |
| | 72:'Long Whistle', |
| | 73:'Short Guiro', |
| | 74:'Long Guiro', |
| | 75:'Claves', |
| | 76:'Hi Wood Block', |
| | 77:'Low Wood Block', |
| | 78:'Mute Cuica', |
| | 79:'Open Cuica', |
| | 80:'Mute Triangle', |
| | 81:'Open Triangle', |
| | } |
| |
|
| | Event2channelindex = { 'note':3, 'note_off':2, 'note_on':2, |
| | 'key_after_touch':2, 'control_change':2, 'patch_change':2, |
| | 'channel_after_touch':2, 'pitch_wheel_change':2 |
| | } |
| |
|
| | |
| | |
| | |
| |
|
| | def _twobytes2int(byte_a): |
| | r'''decode a 16 bit quantity from two bytes,''' |
| | return (byte_a[1] | (byte_a[0] << 8)) |
| |
|
| | def _int2twobytes(int_16bit): |
| | r'''encode a 16 bit quantity into two bytes,''' |
| | return bytes([(int_16bit>>8) & 0xFF, int_16bit & 0xFF]) |
| |
|
| | def _read_14_bit(byte_a): |
| | r'''decode a 14 bit quantity from two bytes,''' |
| | return (byte_a[0] | (byte_a[1] << 7)) |
| |
|
| | def _write_14_bit(int_14bit): |
| | r'''encode a 14 bit quantity into two bytes,''' |
| | return bytes([int_14bit & 0x7F, (int_14bit>>7) & 0x7F]) |
| |
|
| | def _ber_compressed_int(integer): |
| | r'''BER compressed integer (not an ASN.1 BER, see perlpacktut for |
| | details). Its bytes represent an unsigned integer in base 128, |
| | most significant digit first, with as few digits as possible. |
| | Bit eight (the high bit) is set on each byte except the last. |
| | ''' |
| | ber = bytearray(b'') |
| | seven_bits = 0x7F & integer |
| | ber.insert(0, seven_bits) |
| | integer >>= 7 |
| | while integer > 0: |
| | seven_bits = 0x7F & integer |
| | ber.insert(0, 0x80|seven_bits) |
| | integer >>= 7 |
| | return ber |
| |
|
| | def _unshift_ber_int(ba): |
| | r'''Given a bytearray, returns a tuple of (the ber-integer at the |
| | start, and the remainder of the bytearray). |
| | ''' |
| | if not len(ba): |
| | _warn('_unshift_ber_int: no integer found') |
| | return ((0, b"")) |
| | byte = ba[0] |
| | ba = ba[1:] |
| | integer = 0 |
| | while True: |
| | integer += (byte & 0x7F) |
| | if not (byte & 0x80): |
| | return ((integer, ba)) |
| | if not len(ba): |
| | _warn('_unshift_ber_int: no end-of-integer found') |
| | return ((0, ba)) |
| | byte = ba[0] |
| | ba = ba[1:] |
| | integer <<= 7 |
| |
|
| |
|
| | def _clean_up_warnings(): |
| | |
| | |
| | |
| | if _no_warning: |
| | return |
| | global _previous_times |
| | global _previous_warning |
| | if _previous_times > 1: |
| | |
| | |
| | |
| | sys.stderr.write(' previous message repeated {0} times\n'.format(_previous_times)) |
| | elif _previous_times > 0: |
| | sys.stderr.write(' previous message repeated\n') |
| | _previous_times = 0 |
| | _previous_warning = '' |
| |
|
| |
|
| | def _warn(s=''): |
| | if _no_warning: |
| | return |
| | global _previous_times |
| | global _previous_warning |
| | if s == _previous_warning: |
| | _previous_times = _previous_times + 1 |
| | else: |
| | _clean_up_warnings() |
| | sys.stderr.write(str(s) + "\n") |
| | _previous_warning = s |
| |
|
| |
|
| | def _some_text_event(which_kind=0x01, text=b'some_text', text_encoding='ISO-8859-1'): |
| | if str(type(text)).find("'str'") >= 0: |
| | data = bytes(text, encoding=text_encoding) |
| | else: |
| | data = bytes(text) |
| | return b'\xFF' + bytes((which_kind,)) + _ber_compressed_int(len(data)) + data |
| |
|
| |
|
| | def _consistentise_ticks(scores): |
| | |
| | if len(scores) == 1: |
| | return copy.deepcopy(scores) |
| | are_consistent = True |
| | ticks = scores[0][0] |
| | iscore = 1 |
| | while iscore < len(scores): |
| | if scores[iscore][0] != ticks: |
| | are_consistent = False |
| | break |
| | iscore += 1 |
| | if are_consistent: |
| | return copy.deepcopy(scores) |
| | new_scores = [] |
| | iscore = 0 |
| | while iscore < len(scores): |
| | score = scores[iscore] |
| | new_scores.append(opus2score(to_millisecs(score2opus(score)))) |
| | iscore += 1 |
| | return new_scores |
| |
|
| |
|
| | |
| | def _decode(trackdata=b'', exclude=None, include=None, |
| | event_callback=None, exclusive_event_callback=None, no_eot_magic=False): |
| | r'''Decodes MIDI track data into an opus-style list of events. |
| | The options: |
| | 'exclude' is a list of event types which will be ignored SHOULD BE A SET |
| | 'include' (and no exclude), makes exclude a list |
| | of all possible events, /minus/ what include specifies |
| | 'event_callback' is a coderef |
| | 'exclusive_event_callback' is a coderef |
| | ''' |
| | trackdata = bytearray(trackdata) |
| | if exclude == None: |
| | exclude = [] |
| | if include == None: |
| | include = [] |
| | if include and not exclude: |
| | exclude = All_events |
| | include = set(include) |
| | exclude = set(exclude) |
| |
|
| | |
| | event_code = -1; |
| | event_count = 0; |
| | events = [] |
| |
|
| | while (len(trackdata)): |
| | |
| | eot = False |
| | event_count += 1 |
| |
|
| | E = [] |
| | |
| |
|
| | |
| | [time, trackdata] = _unshift_ber_int(trackdata) |
| |
|
| | |
| | first_byte = trackdata[0] & 0xFF |
| | trackdata = trackdata[1:] |
| | if (first_byte < 0xF0): |
| | if (first_byte & 0x80): |
| | event_code = first_byte |
| | else: |
| | |
| | trackdata.insert(0, first_byte) |
| | if (event_code == -1): |
| | _warn("Running status not set; Aborting track.") |
| | return [] |
| |
|
| | command = event_code & 0xF0 |
| | channel = event_code & 0x0F |
| |
|
| | if (command == 0xF6): |
| | pass |
| | elif (command == 0xC0 or command == 0xD0): |
| | parameter = trackdata[0] |
| | trackdata = trackdata[1:] |
| | else: |
| | parameter = (trackdata[0], trackdata[1]) |
| | trackdata = trackdata[2:] |
| |
|
| | |
| | |
| |
|
| | if (command == 0x80): |
| | if 'note_off' in exclude: |
| | continue |
| | E = ['note_off', time, channel, parameter[0], parameter[1]] |
| | elif (command == 0x90): |
| | if 'note_on' in exclude: |
| | continue |
| | E = ['note_on', time, channel, parameter[0], parameter[1]] |
| | elif (command == 0xA0): |
| | if 'key_after_touch' in exclude: |
| | continue |
| | E = ['key_after_touch', time, channel, parameter[0], parameter[1]] |
| | elif (command == 0xB0): |
| | if 'control_change' in exclude: |
| | continue |
| | E = ['control_change', time, channel, parameter[0], parameter[1]] |
| | elif (command == 0xC0): |
| | if 'patch_change' in exclude: |
| | continue |
| | E = ['patch_change', time, channel, parameter] |
| | elif (command == 0xD0): |
| | if 'channel_after_touch' in exclude: |
| | continue |
| | E = ['channel_after_touch', time, channel, parameter] |
| | elif (command == 0xE0): |
| | if 'pitch_wheel_change' in exclude: |
| | continue |
| | E = ['pitch_wheel_change', time, channel, |
| | _read_14_bit(parameter) - 0x2000] |
| | else: |
| | _warn("Shouldn't get here; command=" + hex(command)) |
| |
|
| | elif (first_byte == 0xFF): |
| | |
| | |
| | |
| | |
| | command = trackdata[0] & 0xFF |
| | trackdata = trackdata[1:] |
| | [length, trackdata] = _unshift_ber_int(trackdata) |
| | if (command == 0x00): |
| | if (length == 2): |
| | E = ['set_sequence_number', time, _twobytes2int(trackdata)] |
| | else: |
| | _warn('set_sequence_number: length must be 2, not ' + str(length)) |
| | E = ['set_sequence_number', time, 0] |
| |
|
| | elif command >= 0x01 and command <= 0x0f: |
| | |
| | |
| | |
| | |
| | text_data = bytes(trackdata[0:length]) |
| | |
| | if (command == 0x01): |
| | E = ['text_event', time, text_data] |
| | elif (command == 0x02): |
| | E = ['copyright_text_event', time, text_data] |
| | elif (command == 0x03): |
| | E = ['track_name', time, text_data] |
| | elif (command == 0x04): |
| | E = ['instrument_name', time, text_data] |
| | elif (command == 0x05): |
| | E = ['lyric', time, text_data] |
| | elif (command == 0x06): |
| | E = ['marker', time, text_data] |
| | elif (command == 0x07): |
| | E = ['cue_point', time, text_data] |
| | |
| | elif (command == 0x08): |
| | E = ['text_event_08', time, text_data] |
| | elif (command == 0x09): |
| | E = ['text_event_09', time, text_data] |
| | elif (command == 0x0a): |
| | E = ['text_event_0a', time, text_data] |
| | elif (command == 0x0b): |
| | E = ['text_event_0b', time, text_data] |
| | elif (command == 0x0c): |
| | E = ['text_event_0c', time, text_data] |
| | elif (command == 0x0d): |
| | E = ['text_event_0d', time, text_data] |
| | elif (command == 0x0e): |
| | E = ['text_event_0e', time, text_data] |
| | elif (command == 0x0f): |
| | E = ['text_event_0f', time, text_data] |
| |
|
| | |
| | elif (command == 0x2F): |
| | E = ['end_track', time] |
| | |
| | |
| | elif (command == 0x51): |
| | if length != 3: |
| | _warn('set_tempo event, but length=' + str(length)) |
| | E = ['set_tempo', time, |
| | struct.unpack(">I", b'\x00' + trackdata[0:3])[0]] |
| | elif (command == 0x54): |
| | if length != 5: |
| | _warn('smpte_offset event, but length=' + str(length)) |
| | E = ['smpte_offset', time] + list(struct.unpack(">BBBBB", trackdata[0:5])) |
| | elif (command == 0x58): |
| | if length != 4: |
| | _warn('time_signature event, but length=' + str(length)) |
| | E = ['time_signature', time] + list(trackdata[0:4]) |
| | elif (command == 0x59): |
| | if length != 2: |
| | _warn('key_signature event, but length=' + str(length)) |
| | E = ['key_signature', time] + list(struct.unpack(">bB", trackdata[0:2])) |
| | elif (command == 0x7F): |
| | E = ['sequencer_specific', time, bytes(trackdata[0:length])] |
| | else: |
| | E = ['raw_meta_event', time, command, |
| | bytes(trackdata[0:length])] |
| | |
| | |
| | |
| |
|
| | |
| | trackdata = trackdata[length:] |
| |
|
| | |
| | elif (first_byte == 0xF0 or first_byte == 0xF7): |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | [length, trackdata] = _unshift_ber_int(trackdata) |
| | if first_byte == 0xF0: |
| | |
| | |
| | E = ['sysex_f0', time, bytes(trackdata[0:length])] |
| | else: |
| | E = ['sysex_f7', time, bytes(trackdata[0:length])] |
| | trackdata = trackdata[length:] |
| |
|
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| |
|
| | elif (first_byte == 0xF2): |
| | |
| | E = ['song_position', time, _read_14_bit(trackdata[:2])] |
| | trackdata = trackdata[2:] |
| |
|
| | elif (first_byte == 0xF3): |
| | |
| | E = ['song_select', time, trackdata[0]] |
| | trackdata = trackdata[1:] |
| | |
| |
|
| | elif (first_byte == 0xF6): |
| | E = ['tune_request', time] |
| | |
| |
|
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| |
|
| | r''' |
| | elif (first_byte > 0xF0) { # Some unknown kinda F-series event #### |
| | # Here we only produce a one-byte piece of raw data. |
| | # But the encoder for 'raw_data' accepts any length of it. |
| | E = [ 'raw_data', |
| | time, substr(trackdata,Pointer,1) ] |
| | # DTime and the Data (in this case, the one Event-byte) |
| | ++Pointer; # itself |
| | |
| | ''' |
| | elif first_byte > 0xF0: |
| | |
| | |
| | E = ['raw_data', time, trackdata[0]] |
| | trackdata = trackdata[1:] |
| | else: |
| | _warn("Aborting track. Command-byte first_byte=" + hex(first_byte)) |
| | break |
| | |
| |
|
| | |
| | |
| | if E and (E[0] == 'end_track'): |
| | |
| | eot = True |
| | if not no_eot_magic: |
| | if E[1] > 0: |
| | E = ['text_event', E[1], ''] |
| | else: |
| | E = [] |
| |
|
| | if E and not (E[0] in exclude): |
| | |
| | |
| | |
| | |
| | events.append(E) |
| | if eot: |
| | break |
| |
|
| | |
| |
|
| | return events |
| |
|
| |
|
| | |
| | def _encode(events_lol, unknown_callback=None, never_add_eot=False, |
| | no_eot_magic=False, no_running_status=False, text_encoding='ISO-8859-1'): |
| | |
| | |
| | |
| | |
| | |
| |
|
| | |
| | |
| | |
| | |
| | |
| | |
| |
|
| | data = [] |
| |
|
| | |
| | events = copy.deepcopy(events_lol) |
| |
|
| | if not never_add_eot: |
| | |
| | if events: |
| | last = events[-1] |
| | if not (last[0] == 'end_track'): |
| | if (last[0] == 'text_event' and len(last[2]) == 0): |
| | |
| | if no_eot_magic: |
| | |
| | |
| | events.append(['end_track', 0]) |
| | else: |
| | |
| | last[0] = 'end_track' |
| | else: |
| | |
| | events.append(['end_track', 0]) |
| | else: |
| | events = [['end_track', 0],] |
| |
|
| | |
| | last_status = -1 |
| |
|
| | for event_r in (events): |
| | E = copy.deepcopy(event_r) |
| | |
| | if not E: |
| | continue |
| |
|
| | event = E.pop(0) |
| | if not len(event): |
| | continue |
| |
|
| | dtime = int(E.pop(0)) |
| | |
| |
|
| | event_data = '' |
| |
|
| | if ( |
| | event == 'note_on' |
| | or event == 'note_off' |
| | or event == 'control_change' |
| | or event == 'key_after_touch' |
| | or event == 'patch_change' |
| | or event == 'channel_after_touch' |
| | or event == 'pitch_wheel_change' ): |
| |
|
| | |
| | if (event == 'note_off'): |
| | status = 0x80 | (int(E[0]) & 0x0F) |
| | parameters = struct.pack('>BB', int(E[1])&0x7F, int(E[2])&0x7F) |
| | elif (event == 'note_on'): |
| | status = 0x90 | (int(E[0]) & 0x0F) |
| | parameters = struct.pack('>BB', int(E[1])&0x7F, int(E[2])&0x7F) |
| | elif (event == 'key_after_touch'): |
| | status = 0xA0 | (int(E[0]) & 0x0F) |
| | parameters = struct.pack('>BB', int(E[1])&0x7F, int(E[2])&0x7F) |
| | elif (event == 'control_change'): |
| | status = 0xB0 | (int(E[0]) & 0x0F) |
| | parameters = struct.pack('>BB', int(E[1])&0xFF, int(E[2])&0xFF) |
| | elif (event == 'patch_change'): |
| | status = 0xC0 | (int(E[0]) & 0x0F) |
| | parameters = struct.pack('>B', int(E[1]) & 0xFF) |
| | elif (event == 'channel_after_touch'): |
| | status = 0xD0 | (int(E[0]) & 0x0F) |
| | parameters = struct.pack('>B', int(E[1]) & 0xFF) |
| | elif (event == 'pitch_wheel_change'): |
| | status = 0xE0 | (int(E[0]) & 0x0F) |
| | parameters = _write_14_bit(int(E[1]) + 0x2000) |
| | else: |
| | _warn("BADASS FREAKOUT ERROR 31415!") |
| |
|
| | |
| | |
| | |
| | |
| | |
| |
|
| | data.append(_ber_compressed_int(dtime)) |
| | if (status != last_status) or no_running_status: |
| | data.append(struct.pack('>B', status)) |
| | data.append(parameters) |
| | |
| | last_status = status |
| | continue |
| | else: |
| | |
| | |
| | |
| | |
| | last_status = -1 |
| |
|
| | if event == 'raw_meta_event': |
| | event_data = _some_text_event(int(E[0]), E[1], text_encoding) |
| | elif (event == 'set_sequence_number'): |
| | event_data = b'\xFF\x00\x02'+_int2twobytes(E[0]) |
| |
|
| | |
| | |
| | elif (event == 'text_event'): |
| | event_data = _some_text_event(0x01, E[0], text_encoding) |
| | elif (event == 'copyright_text_event'): |
| | event_data = _some_text_event(0x02, E[0], text_encoding) |
| | elif (event == 'track_name'): |
| | event_data = _some_text_event(0x03, E[0], text_encoding) |
| | elif (event == 'instrument_name'): |
| | event_data = _some_text_event(0x04, E[0], text_encoding) |
| | elif (event == 'lyric'): |
| | event_data = _some_text_event(0x05, E[0], text_encoding) |
| | elif (event == 'marker'): |
| | event_data = _some_text_event(0x06, E[0], text_encoding) |
| | elif (event == 'cue_point'): |
| | event_data = _some_text_event(0x07, E[0], text_encoding) |
| | elif (event == 'text_event_08'): |
| | event_data = _some_text_event(0x08, E[0], text_encoding) |
| | elif (event == 'text_event_09'): |
| | event_data = _some_text_event(0x09, E[0], text_encoding) |
| | elif (event == 'text_event_0a'): |
| | event_data = _some_text_event(0x0A, E[0], text_encoding) |
| | elif (event == 'text_event_0b'): |
| | event_data = _some_text_event(0x0B, E[0], text_encoding) |
| | elif (event == 'text_event_0c'): |
| | event_data = _some_text_event(0x0C, E[0], text_encoding) |
| | elif (event == 'text_event_0d'): |
| | event_data = _some_text_event(0x0D, E[0], text_encoding) |
| | elif (event == 'text_event_0e'): |
| | event_data = _some_text_event(0x0E, E[0], text_encoding) |
| | elif (event == 'text_event_0f'): |
| | event_data = _some_text_event(0x0F, E[0], text_encoding) |
| | |
| |
|
| | elif (event == 'end_track'): |
| | event_data = b"\xFF\x2F\x00" |
| |
|
| | elif (event == 'set_tempo'): |
| | |
| | |
| | event_data = b'\xFF\x51\x03'+struct.pack('>I',E[0])[1:] |
| | elif (event == 'smpte_offset'): |
| | |
| | event_data = struct.pack(">BBBbBBBB", 0xFF,0x54,0x05,E[0],E[1],E[2],E[3],E[4]) |
| | elif (event == 'time_signature'): |
| | |
| | event_data = struct.pack(">BBBbBBB", 0xFF, 0x58, 0x04, E[0],E[1],E[2],E[3]) |
| | elif (event == 'key_signature'): |
| | event_data = struct.pack(">BBBbB", 0xFF, 0x59, 0x02, E[0],E[1]) |
| | elif (event == 'sequencer_specific'): |
| | |
| | event_data = _some_text_event(0x7F, E[0], text_encoding) |
| | |
| |
|
| | |
| | elif (event == 'sysex_f0'): |
| | |
| | |
| | event_data = bytearray(b'\xF0')+_ber_compressed_int(len(E[0]))+bytearray(E[0]) |
| | elif (event == 'sysex_f7'): |
| | |
| | event_data = bytearray(b'\xF7')+_ber_compressed_int(len(E[0]))+bytearray(E[0]) |
| |
|
| | elif (event == 'song_position'): |
| | event_data = b"\xF2" + _write_14_bit( E[0] ) |
| | elif (event == 'song_select'): |
| | event_data = struct.pack('>BB', 0xF3, E[0] ) |
| | elif (event == 'tune_request'): |
| | event_data = b"\xF6" |
| | elif (event == 'raw_data'): |
| | _warn("_encode: raw_data event not supported") |
| | |
| | continue |
| | |
| |
|
| | else: |
| | |
| | if unknown_callback: |
| | |
| | pass |
| | else: |
| | _warn("Unknown event: "+str(event)) |
| | |
| | |
| | continue |
| |
|
| | |
| | if str(type(event_data)).find("'str'") >= 0: |
| | event_data = bytearray(event_data.encode('Latin1', 'ignore')) |
| | if len(event_data): |
| | |
| | |
| | data.append(_ber_compressed_int(dtime)+event_data) |
| |
|
| | return b''.join(data) |
| |
|
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| | |
| |
|
| | import os |
| |
|
| | import datetime |
| |
|
| | from datetime import datetime |
| |
|
| | import pickle |
| |
|
| | import matplotlib.pyplot as plt |
| |
|
| | |
| | |
| | |
| | |
| | |
| |
|
| | def Tegridy_TXT_to_INT_Converter(input_TXT_string, line_by_line_INT_string=True, max_INT = 0): |
| |
|
| | '''Tegridy TXT to Intergers Converter |
| | |
| | Input: Input TXT string in the TMIDI-TXT format |
| | |
| | Type of output TXT INT string: line-by-line or one long string |
| | |
| | Maximum absolute integer to process. Maximum is inclusive |
| | Default = process all integers. This helps to remove outliers/unwanted ints |
| | |
| | Output: List of pure intergers |
| | String of intergers in the specified format: line-by-line or one long string |
| | Number of processed integers |
| | Number of skipped integers |
| | |
| | Project Los Angeles |
| | Tegridy Code 2021''' |
| |
|
| | print('Tegridy TXT to Intergers Converter') |
| |
|
| | output_INT_list = [] |
| |
|
| | npi = 0 |
| | nsi = 0 |
| |
|
| | TXT_List = list(input_TXT_string) |
| | for char in TXT_List: |
| | if max_INT != 0: |
| | if abs(ord(char)) <= max_INT: |
| | output_INT_list.append(ord(char)) |
| | npi += 1 |
| | else: |
| | nsi += 1 |
| | else: |
| | output_INT_list.append(ord(char)) |
| | npi += 1 |
| | |
| | if line_by_line_INT_string: |
| | output_INT_string = '\n'.join([str(elem) for elem in output_INT_list]) |
| | else: |
| | output_INT_string = ' '.join([str(elem) for elem in output_INT_list]) |
| |
|
| | print('Converted TXT to INTs:', npi, ' / ', nsi) |
| |
|
| | return output_INT_list, output_INT_string, npi, nsi |
| |
|
| | |
| |
|
| | def Tegridy_INT_to_TXT_Converter(input_INT_list): |
| |
|
| | '''Tegridy Intergers to TXT Converter |
| | |
| | Input: List of intergers in TMIDI-TXT-INT format |
| | Output: Decoded TXT string in TMIDI-TXT format |
| | Project Los Angeles |
| | Tegridy Code 2020''' |
| |
|
| | output_TXT_string = '' |
| |
|
| | for i in input_INT_list: |
| | output_TXT_string += chr(int(i)) |
| | |
| | return output_TXT_string |
| |
|
| | |
| |
|
| | def Tegridy_INT_String_to_TXT_Converter(input_INT_String, line_by_line_input=True): |
| |
|
| | '''Tegridy Intergers String to TXT Converter |
| | |
| | Input: List of intergers in TMIDI-TXT-INT-String format |
| | Output: Decoded TXT string in TMIDI-TXT format |
| | Project Los Angeles |
| | Tegridy Code 2020''' |
| | |
| | print('Tegridy Intergers String to TXT Converter') |
| |
|
| | if line_by_line_input: |
| | input_string = input_INT_String.split('\n') |
| | else: |
| | input_string = input_INT_String.split(' ') |
| |
|
| | output_TXT_string = '' |
| |
|
| | for i in input_string: |
| | try: |
| | output_TXT_string += chr(abs(int(i))) |
| | except: |
| | print('Bad note:', i) |
| | continue |
| | |
| | print('Done!') |
| |
|
| | return output_TXT_string |
| |
|
| | |
| |
|
| | def Tegridy_SONG_to_MIDI_Converter(SONG, |
| | output_signature = 'Tegridy TMIDI Module', |
| | track_name = 'Composition Track', |
| | number_of_ticks_per_quarter = 425, |
| | list_of_MIDI_patches = [0, 24, 32, 40, 42, 46, 56, 71, 73, 0, 0, 0, 0, 0, 0, 0], |
| | output_file_name = 'TMIDI-Composition', |
| | text_encoding='ISO-8859-1', |
| | verbose=True): |
| |
|
| | '''Tegridy SONG to MIDI Converter |
| | |
| | Input: Input SONG in TMIDI SONG/MIDI.py Score format |
| | Output MIDI Track 0 name / MIDI Signature |
| | Output MIDI Track 1 name / Composition track name |
| | Number of ticks per quarter for the output MIDI |
| | List of 16 MIDI patch numbers for output MIDI. Def. is MuseNet compatible patches. |
| | Output file name w/o .mid extension. |
| | Optional text encoding if you are working with text_events/lyrics. This is especially useful for Karaoke. Please note that anything but ISO-8859-1 is a non-standard way of encoding text_events according to MIDI specs. |
| | |
| | Output: MIDI File |
| | Detailed MIDI stats |
| | |
| | Project Los Angeles |
| | Tegridy Code 2020''' |
| | |
| | if verbose: |
| | print('Converting to MIDI. Please stand-by...') |
| | |
| | output_header = [number_of_ticks_per_quarter, |
| | [['track_name', 0, bytes(output_signature, text_encoding)]]] |
| |
|
| | patch_list = [['patch_change', 0, 0, list_of_MIDI_patches[0]], |
| | ['patch_change', 0, 1, list_of_MIDI_patches[1]], |
| | ['patch_change', 0, 2, list_of_MIDI_patches[2]], |
| | ['patch_change', 0, 3, list_of_MIDI_patches[3]], |
| | ['patch_change', 0, 4, list_of_MIDI_patches[4]], |
| | ['patch_change', 0, 5, list_of_MIDI_patches[5]], |
| | ['patch_change', 0, 6, list_of_MIDI_patches[6]], |
| | ['patch_change', 0, 7, list_of_MIDI_patches[7]], |
| | ['patch_change', 0, 8, list_of_MIDI_patches[8]], |
| | ['patch_change', 0, 9, list_of_MIDI_patches[9]], |
| | ['patch_change', 0, 10, list_of_MIDI_patches[10]], |
| | ['patch_change', 0, 11, list_of_MIDI_patches[11]], |
| | ['patch_change', 0, 12, list_of_MIDI_patches[12]], |
| | ['patch_change', 0, 13, list_of_MIDI_patches[13]], |
| | ['patch_change', 0, 14, list_of_MIDI_patches[14]], |
| | ['patch_change', 0, 15, list_of_MIDI_patches[15]], |
| | ['track_name', 0, bytes(track_name, text_encoding)]] |
| |
|
| | output = output_header + [patch_list + SONG] |
| |
|
| | midi_data = score2midi(output, text_encoding) |
| | detailed_MIDI_stats = score2stats(output) |
| |
|
| | with open(output_file_name + '.mid', 'wb') as midi_file: |
| | midi_file.write(midi_data) |
| | midi_file.close() |
| | |
| | if verbose: |
| | print('Done! Enjoy! :)') |
| | |
| | return detailed_MIDI_stats |
| |
|
| | |
| |
|
| | def Tegridy_ms_SONG_to_MIDI_Converter(ms_SONG, |
| | output_signature = 'Tegridy TMIDI Module', |
| | track_name = 'Composition Track', |
| | list_of_MIDI_patches = [0, 24, 32, 40, 42, 46, 56, 71, 73, 0, 0, 0, 0, 0, 0, 0], |
| | output_file_name = 'TMIDI-Composition', |
| | text_encoding='ISO-8859-1', |
| | timings_multiplier=1, |
| | verbose=True |
| | ): |
| |
|
| | '''Tegridy milisecond SONG to MIDI Converter |
| | |
| | Input: Input ms SONG in TMIDI ms SONG/MIDI.py ms Score format |
| | Output MIDI Track 0 name / MIDI Signature |
| | Output MIDI Track 1 name / Composition track name |
| | List of 16 MIDI patch numbers for output MIDI. Def. is MuseNet compatible patches. |
| | Output file name w/o .mid extension. |
| | Optional text encoding if you are working with text_events/lyrics. This is especially useful for Karaoke. Please note that anything but ISO-8859-1 is a non-standard way of encoding text_events according to MIDI specs. |
| | Optional timings multiplier |
| | Optional verbose output |
| | |
| | Output: MIDI File |
| | Detailed MIDI stats |
| | |
| | Project Los Angeles |
| | Tegridy Code 2024''' |
| | |
| | if verbose: |
| | print('Converting to MIDI. Please stand-by...') |
| |
|
| | output_header = [1000, |
| | [['set_tempo', 0, 1000000], |
| | ['time_signature', 0, 4, 2, 24, 8], |
| | ['track_name', 0, bytes(output_signature, text_encoding)]]] |
| |
|
| | patch_list = [['patch_change', 0, 0, list_of_MIDI_patches[0]], |
| | ['patch_change', 0, 1, list_of_MIDI_patches[1]], |
| | ['patch_change', 0, 2, list_of_MIDI_patches[2]], |
| | ['patch_change', 0, 3, list_of_MIDI_patches[3]], |
| | ['patch_change', 0, 4, list_of_MIDI_patches[4]], |
| | ['patch_change', 0, 5, list_of_MIDI_patches[5]], |
| | ['patch_change', 0, 6, list_of_MIDI_patches[6]], |
| | ['patch_change', 0, 7, list_of_MIDI_patches[7]], |
| | ['patch_change', 0, 8, list_of_MIDI_patches[8]], |
| | ['patch_change', 0, 9, list_of_MIDI_patches[9]], |
| | ['patch_change', 0, 10, list_of_MIDI_patches[10]], |
| | ['patch_change', 0, 11, list_of_MIDI_patches[11]], |
| | ['patch_change', 0, 12, list_of_MIDI_patches[12]], |
| | ['patch_change', 0, 13, list_of_MIDI_patches[13]], |
| | ['patch_change', 0, 14, list_of_MIDI_patches[14]], |
| | ['patch_change', 0, 15, list_of_MIDI_patches[15]], |
| | ['track_name', 0, bytes(track_name, text_encoding)]] |
| |
|
| | SONG = copy.deepcopy(ms_SONG) |
| |
|
| | if timings_multiplier != 1: |
| | for S in SONG: |
| | S[1] = S[1] * timings_multiplier |
| | if S[0] == 'note': |
| | S[2] = S[2] * timings_multiplier |
| |
|
| | output = output_header + [patch_list + SONG] |
| |
|
| | midi_data = score2midi(output, text_encoding) |
| | detailed_MIDI_stats = score2stats(output) |
| |
|
| | with open(output_file_name + '.mid', 'wb') as midi_file: |
| | midi_file.write(midi_data) |
| | midi_file.close() |
| | |
| | if verbose: |
| | print('Done! Enjoy! :)') |
| | |
| | return detailed_MIDI_stats |
| |
|
| | |
| |
|
| | def hsv_to_rgb(h, s, v): |
| | if s == 0.0: |
| | return v, v, v |
| | i = int(h*6.0) |
| | f = (h*6.0) - i |
| | p = v*(1.0 - s) |
| | q = v*(1.0 - s*f) |
| | t = v*(1.0 - s*(1.0-f)) |
| | i = i%6 |
| | return [(v, t, p), (q, v, p), (p, v, t), (p, q, v), (t, p, v), (v, p, q)][i] |
| |
|
| | def generate_colors(n): |
| | return [hsv_to_rgb(i/n, 1, 1) for i in range(n)] |
| |
|
| | def add_arrays(a, b): |
| | return [sum(pair) for pair in zip(a, b)] |
| |
|
| | |
| |
|
| | def plot_ms_SONG(ms_song, |
| | preview_length_in_notes=0, |
| | block_lines_times_list = None, |
| | plot_title='ms Song', |
| | max_num_colors=129, |
| | drums_color_num=128, |
| | plot_size=(11,4), |
| | note_height = 0.75, |
| | show_grid_lines=False, |
| | return_plt = False, |
| | timings_multiplier=1, |
| | save_plt='', |
| | save_only_plt_image=True, |
| | save_transparent=False |
| | ): |
| |
|
| | '''Tegridy ms SONG plotter/vizualizer''' |
| |
|
| | notes = [s for s in ms_song if s[0] == 'note'] |
| |
|
| | if (len(max(notes, key=len)) != 7) and (len(min(notes, key=len)) != 7): |
| | print('The song notes do not have patches information') |
| | print('Ploease add patches to the notes in the song') |
| |
|
| | else: |
| |
|
| | start_times = [(s[1] * timings_multiplier) / 1000 for s in notes] |
| | durations = [(s[2] * timings_multiplier) / 1000 for s in notes] |
| | pitches = [s[4] for s in notes] |
| | patches = [s[6] for s in notes] |
| |
|
| | colors = generate_colors(max_num_colors) |
| | colors[drums_color_num] = (1, 1, 1) |
| |
|
| | pbl = (notes[preview_length_in_notes][1] * timings_multiplier) / 1000 |
| |
|
| | fig, ax = plt.subplots(figsize=plot_size) |
| | |
| |
|
| | |
| | for start, duration, pitch, patch in zip(start_times, durations, pitches, patches): |
| | rect = plt.Rectangle((start, pitch), duration, note_height, facecolor=colors[patch]) |
| | ax.add_patch(rect) |
| |
|
| | |
| | ax.set_xlim([min(start_times), max(add_arrays(start_times, durations))]) |
| | ax.set_ylim([min(pitches)-1, max(pitches)+1]) |
| |
|
| | |
| | ax.set_facecolor('black') |
| | fig.patch.set_facecolor('white') |
| |
|
| | if preview_length_in_notes > 0: |
| | ax.axvline(x=pbl, c='white') |
| |
|
| | if block_lines_times_list: |
| | for bl in block_lines_times_list: |
| | ax.axvline(x=bl, c='white') |
| | |
| | if show_grid_lines: |
| | ax.grid(color='white') |
| |
|
| | plt.xlabel('Time (s)', c='black') |
| | plt.ylabel('MIDI Pitch', c='black') |
| |
|
| | plt.title(plot_title) |
| |
|
| | if save_plt != '': |
| | if save_only_plt_image: |
| | plt.axis('off') |
| | plt.title('') |
| | plt.savefig(save_plt, transparent=save_transparent, bbox_inches='tight', pad_inches=0, facecolor='black') |
| | plt.close() |
| | |
| | else: |
| | plt.savefig(save_plt) |
| | plt.close() |
| |
|
| | if return_plt: |
| | plt.close(fig) |
| | return fig |
| |
|
| | plt.show() |
| | plt.close() |
| |
|
| | |
| |
|
| | def Tegridy_SONG_to_Full_MIDI_Converter(SONG, |
| | output_signature = 'Tegridy TMIDI Module', |
| | track_name = 'Composition Track', |
| | number_of_ticks_per_quarter = 1000, |
| | output_file_name = 'TMIDI-Composition', |
| | text_encoding='ISO-8859-1', |
| | verbose=True): |
| |
|
| | '''Tegridy SONG to Full MIDI Converter |
| | |
| | Input: Input SONG in Full TMIDI SONG/MIDI.py Score format |
| | Output MIDI Track 0 name / MIDI Signature |
| | Output MIDI Track 1 name / Composition track name |
| | Number of ticks per quarter for the output MIDI |
| | Output file name w/o .mid extension. |
| | Optional text encoding if you are working with text_events/lyrics. This is especially useful for Karaoke. Please note that anything but ISO-8859-1 is a non-standard way of encoding text_events according to MIDI specs. |
| | |
| | Output: MIDI File |
| | Detailed MIDI stats |
| | |
| | Project Los Angeles |
| | Tegridy Code 2023''' |
| | |
| | if verbose: |
| | print('Converting to MIDI. Please stand-by...') |
| | |
| | output_header = [number_of_ticks_per_quarter, |
| | [['set_tempo', 0, 1000000], |
| | ['track_name', 0, bytes(output_signature, text_encoding)]]] |
| |
|
| | song_track = [['track_name', 0, bytes(track_name, text_encoding)]] |
| |
|
| | output = output_header + [song_track + SONG] |
| |
|
| | midi_data = score2midi(output, text_encoding) |
| | detailed_MIDI_stats = score2stats(output) |
| |
|
| | with open(output_file_name + '.mid', 'wb') as midi_file: |
| | midi_file.write(midi_data) |
| | midi_file.close() |
| | |
| | if verbose: |
| | print('Done! Enjoy! :)') |
| | |
| | return detailed_MIDI_stats |
| |
|
| | |
| |
|
| | def Tegridy_File_Time_Stamp(input_file_name='File_Created_on_', ext = ''): |
| |
|
| | '''Tegridy File Time Stamp |
| | |
| | Input: Full path and file name without extention |
| | File extension |
| | |
| | Output: File name string with time-stamp and extension (time-stamped file name) |
| | |
| | Project Los Angeles |
| | Tegridy Code 2021''' |
| |
|
| | print('Time-stamping output file...') |
| |
|
| | now = '' |
| | now_n = str(datetime.now()) |
| | now_n = now_n.replace(' ', '_') |
| | now_n = now_n.replace(':', '_') |
| | now = now_n.replace('.', '_') |
| | |
| | fname = input_file_name + str(now) + ext |
| |
|
| | return(fname) |
| |
|
| | |
| |
|
| | def Tegridy_Any_Pickle_File_Writer(Data, input_file_name='TMIDI_Pickle_File'): |
| |
|
| | '''Tegridy Pickle File Writer |
| | |
| | Input: Data to write (I.e. a list) |
| | Full path and file name without extention |
| | |
| | Output: Named Pickle file |
| | |
| | Project Los Angeles |
| | Tegridy Code 2021''' |
| |
|
| | print('Tegridy Pickle File Writer') |
| |
|
| | full_path_to_output_dataset_to = input_file_name + '.pickle' |
| |
|
| | if os.path.exists(full_path_to_output_dataset_to): |
| | os.remove(full_path_to_output_dataset_to) |
| | print('Removing old Dataset...') |
| | else: |
| | print("Creating new Dataset file...") |
| |
|
| | with open(full_path_to_output_dataset_to, 'wb') as filehandle: |
| | |
| | pickle.dump(Data, filehandle, protocol=pickle.HIGHEST_PROTOCOL) |
| |
|
| | print('Dataset was saved as:', full_path_to_output_dataset_to) |
| | print('Task complete. Enjoy! :)') |
| |
|
| | |
| |
|
| | def Tegridy_Any_Pickle_File_Reader(input_file_name='TMIDI_Pickle_File', ext='.pickle', verbose=True): |
| |
|
| | '''Tegridy Pickle File Loader |
| | |
| | Input: Full path and file name with or without extention |
| | File extension if different from default .pickle |
| | |
| | Output: Standard Python 3 unpickled data object |
| | |
| | Project Los Angeles |
| | Tegridy Code 2021''' |
| |
|
| | if verbose: |
| | print('Tegridy Pickle File Loader') |
| | print('Loading the pickle file. Please wait...') |
| |
|
| | if os.path.basename(input_file_name).endswith(ext): |
| | fname = input_file_name |
| | |
| | else: |
| | fname = input_file_name + ext |
| |
|
| | with open(fname, 'rb') as pickle_file: |
| | content = pickle.load(pickle_file) |
| |
|
| | if verbose: |
| | print('Done!') |
| |
|
| | return content |
| |
|