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asigalov61
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Parent(s):
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Upload 2 files
Browse files- TMIDIX.py +1911 -17
- midi_to_colab_audio.py +0 -0
TMIDIX.py
CHANGED
@@ -41,7 +41,9 @@ r'''############################################################################
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# Please see TMIDI 2.3/tegridy-tools repo for full MIDI.py module code
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#
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# Or you can always download the latest full version from:
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-
#
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#
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# Copyright 2020 Peter Billam
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#
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@@ -172,7 +174,7 @@ Translates a "score" into MIDI, using score2opus() then opus2midi()
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#--------------------------- Decoding stuff ------------------------
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def midi2opus(midi=b''):
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r'''Translates MIDI into a "opus". For a description of the
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"opus" format, see opus2midi()
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'''
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@@ -184,7 +186,8 @@ def midi2opus(midi=b''):
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if id != b'MThd':
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_warn("midi2opus: midi starts with "+str(id)+" instead of 'MThd'")
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_clean_up_warnings()
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-
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[length, format, tracks_expected, ticks] = struct.unpack(
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'>IHHH', bytes(my_midi[4:14]))
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if length != 6:
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@@ -264,23 +267,101 @@ see opus2midi() and score2opus().
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_clean_up_warnings()
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return score
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def midi2score(midi=b''):
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r'''
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Translates MIDI into a "score", using midi2opus() then opus2score()
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'''
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-
return opus2score(midi2opus(midi))
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def midi2ms_score(midi=b''):
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r'''
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Translates MIDI into a "score" with one beat per second and one
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tick per millisecond, using midi2opus() then to_millisecs()
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then opus2score()
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'''
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-
return opus2score(to_millisecs(midi2opus(midi)))
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#------------------------ Other Transformations ---------------------
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-
def to_millisecs(old_opus=None, desired_time_in_ms=1):
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r'''Recallibrates all the times in an "opus" to use one beat
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per second and one tick per millisecond. This makes it
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hard to retrieve any information about beats or barlines,
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@@ -320,7 +401,11 @@ but it does make it easy to mix different scores together.
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ticks_so_far = 0
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ms_so_far = 0.0
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previous_ms_so_far = 0.0
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-
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for old_event in old_opus[itrack]:
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# detect if ticks2tempo has something before this event
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# 20160702 if ticks2tempo is at the same time, leave it
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new_event = copy.deepcopy(old_event) # now handle the new event
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ms_so_far += (ms_per_old_tick * old_event[1] * desired_time_in_ms)
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new_event[1] = round(ms_so_far - previous_ms_so_far)
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-
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-
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ticks_so_far += event_delta_ticks
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new_opus.append(new_track)
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itrack += 1
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@@ -1378,6 +1473,7 @@ import tqdm
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from itertools import zip_longest
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from itertools import groupby
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from operator import itemgetter
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@@ -1389,6 +1485,8 @@ from difflib import SequenceMatcher as SM
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import statistics
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###################################################################################
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#
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# Original TMIDI Tegridy helper functions
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@@ -1499,7 +1597,8 @@ def Tegridy_SONG_to_MIDI_Converter(SONG,
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number_of_ticks_per_quarter = 425,
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list_of_MIDI_patches = [0, 24, 32, 40, 42, 46, 56, 71, 73, 0, 0, 0, 0, 0, 0, 0],
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output_file_name = 'TMIDI-Composition',
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text_encoding='ISO-8859-1'
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'''Tegridy SONG to MIDI Converter
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@@ -1516,8 +1615,9 @@ def Tegridy_SONG_to_MIDI_Converter(SONG,
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Project Los Angeles
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Tegridy Code 2020'''
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-
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-
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output_header = [number_of_ticks_per_quarter,
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[['track_name', 0, bytes(output_signature, text_encoding)]]]
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@@ -1549,7 +1649,222 @@ def Tegridy_SONG_to_MIDI_Converter(SONG,
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midi_file.write(midi_data)
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midi_file.close()
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return detailed_MIDI_stats
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###################################################################################
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-
#
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###################################################################################
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|
41 |
# Please see TMIDI 2.3/tegridy-tools repo for full MIDI.py module code
|
42 |
#
|
43 |
# Or you can always download the latest full version from:
|
44 |
+
#
|
45 |
+
# https://pjb.com.au/
|
46 |
+
# https://peterbillam.gitlab.io/miditools/
|
47 |
#
|
48 |
# Copyright 2020 Peter Billam
|
49 |
#
|
|
|
174 |
|
175 |
#--------------------------- Decoding stuff ------------------------
|
176 |
|
177 |
+
def midi2opus(midi=b'', do_not_check_MIDI_signature=False):
|
178 |
r'''Translates MIDI into a "opus". For a description of the
|
179 |
"opus" format, see opus2midi()
|
180 |
'''
|
|
|
186 |
if id != b'MThd':
|
187 |
_warn("midi2opus: midi starts with "+str(id)+" instead of 'MThd'")
|
188 |
_clean_up_warnings()
|
189 |
+
if do_not_check_MIDI_signature == False:
|
190 |
+
return [1000,[],]
|
191 |
[length, format, tracks_expected, ticks] = struct.unpack(
|
192 |
'>IHHH', bytes(my_midi[4:14]))
|
193 |
if length != 6:
|
|
|
267 |
_clean_up_warnings()
|
268 |
return score
|
269 |
|
270 |
+
def midi2score(midi=b'', do_not_check_MIDI_signature=False):
|
271 |
r'''
|
272 |
Translates MIDI into a "score", using midi2opus() then opus2score()
|
273 |
'''
|
274 |
+
return opus2score(midi2opus(midi, do_not_check_MIDI_signature))
|
275 |
|
276 |
+
def midi2ms_score(midi=b'', do_not_check_MIDI_signature=False):
|
277 |
r'''
|
278 |
Translates MIDI into a "score" with one beat per second and one
|
279 |
tick per millisecond, using midi2opus() then to_millisecs()
|
280 |
then opus2score()
|
281 |
'''
|
282 |
+
return opus2score(to_millisecs(midi2opus(midi, do_not_check_MIDI_signature)))
|
283 |
+
|
284 |
+
def midi2single_track_ms_score(midi_path_or_bytes,
|
285 |
+
recalculate_channels = False,
|
286 |
+
pass_old_timings_events= False,
|
287 |
+
verbose = False,
|
288 |
+
do_not_check_MIDI_signature=False
|
289 |
+
):
|
290 |
+
r'''
|
291 |
+
Translates MIDI into a single track "score" with 16 instruments and one beat per second and one
|
292 |
+
tick per millisecond
|
293 |
+
'''
|
294 |
+
|
295 |
+
if type(midi_path_or_bytes) == bytes:
|
296 |
+
midi_data = midi_path_or_bytes
|
297 |
+
|
298 |
+
elif type(midi_path_or_bytes) == str:
|
299 |
+
midi_data = open(midi_path_or_bytes, 'rb').read()
|
300 |
+
|
301 |
+
score = midi2score(midi_data, do_not_check_MIDI_signature)
|
302 |
+
|
303 |
+
if recalculate_channels:
|
304 |
+
|
305 |
+
events_matrixes = []
|
306 |
+
|
307 |
+
itrack = 1
|
308 |
+
events_matrixes_channels = []
|
309 |
+
while itrack < len(score):
|
310 |
+
events_matrix = []
|
311 |
+
for event in score[itrack]:
|
312 |
+
if event[0] == 'note' and event[3] != 9:
|
313 |
+
event[3] = (16 * (itrack-1)) + event[3]
|
314 |
+
if event[3] not in events_matrixes_channels:
|
315 |
+
events_matrixes_channels.append(event[3])
|
316 |
+
|
317 |
+
events_matrix.append(event)
|
318 |
+
events_matrixes.append(events_matrix)
|
319 |
+
itrack += 1
|
320 |
+
|
321 |
+
events_matrix1 = []
|
322 |
+
for e in events_matrixes:
|
323 |
+
events_matrix1.extend(e)
|
324 |
+
|
325 |
+
if verbose:
|
326 |
+
if len(events_matrixes_channels) > 16:
|
327 |
+
print('MIDI has', len(events_matrixes_channels), 'instruments!', len(events_matrixes_channels) - 16, 'instrument(s) will be removed!')
|
328 |
+
|
329 |
+
for e in events_matrix1:
|
330 |
+
if e[0] == 'note' and e[3] != 9:
|
331 |
+
if e[3] in events_matrixes_channels[:15]:
|
332 |
+
if events_matrixes_channels[:15].index(e[3]) < 9:
|
333 |
+
e[3] = events_matrixes_channels[:15].index(e[3])
|
334 |
+
else:
|
335 |
+
e[3] = events_matrixes_channels[:15].index(e[3])+1
|
336 |
+
else:
|
337 |
+
events_matrix1.remove(e)
|
338 |
+
|
339 |
+
if e[0] in ['patch_change', 'control_change', 'channel_after_touch', 'key_after_touch', 'pitch_wheel_change'] and e[2] != 9:
|
340 |
+
if e[2] in [e % 16 for e in events_matrixes_channels[:15]]:
|
341 |
+
if [e % 16 for e in events_matrixes_channels[:15]].index(e[2]) < 9:
|
342 |
+
e[2] = [e % 16 for e in events_matrixes_channels[:15]].index(e[2])
|
343 |
+
else:
|
344 |
+
e[2] = [e % 16 for e in events_matrixes_channels[:15]].index(e[2])+1
|
345 |
+
else:
|
346 |
+
events_matrix1.remove(e)
|
347 |
+
|
348 |
+
else:
|
349 |
+
events_matrix1 = []
|
350 |
+
itrack = 1
|
351 |
+
|
352 |
+
while itrack < len(score):
|
353 |
+
for event in score[itrack]:
|
354 |
+
events_matrix1.append(event)
|
355 |
+
itrack += 1
|
356 |
+
|
357 |
+
opus = score2opus([score[0], events_matrix1])
|
358 |
+
ms_score = opus2score(to_millisecs(opus, pass_old_timings_events=pass_old_timings_events))
|
359 |
+
|
360 |
+
return ms_score
|
361 |
|
362 |
#------------------------ Other Transformations ---------------------
|
363 |
|
364 |
+
def to_millisecs(old_opus=None, desired_time_in_ms=1, pass_old_timings_events = False):
|
365 |
r'''Recallibrates all the times in an "opus" to use one beat
|
366 |
per second and one tick per millisecond. This makes it
|
367 |
hard to retrieve any information about beats or barlines,
|
|
|
401 |
ticks_so_far = 0
|
402 |
ms_so_far = 0.0
|
403 |
previous_ms_so_far = 0.0
|
404 |
+
|
405 |
+
if pass_old_timings_events:
|
406 |
+
new_track = [['set_tempo',0,1000000 * desired_time_in_ms],['old_tpq', 0, old_tpq]] # new "crochet" is 1 sec
|
407 |
+
else:
|
408 |
+
new_track = [['set_tempo',0,1000000 * desired_time_in_ms],] # new "crochet" is 1 sec
|
409 |
for old_event in old_opus[itrack]:
|
410 |
# detect if ticks2tempo has something before this event
|
411 |
# 20160702 if ticks2tempo is at the same time, leave it
|
|
|
421 |
new_event = copy.deepcopy(old_event) # now handle the new event
|
422 |
ms_so_far += (ms_per_old_tick * old_event[1] * desired_time_in_ms)
|
423 |
new_event[1] = round(ms_so_far - previous_ms_so_far)
|
424 |
+
|
425 |
+
if pass_old_timings_events:
|
426 |
+
if old_event[0] != 'set_tempo':
|
427 |
+
previous_ms_so_far = ms_so_far
|
428 |
+
new_track.append(new_event)
|
429 |
+
else:
|
430 |
+
new_event[0] = 'old_set_tempo'
|
431 |
+
previous_ms_so_far = ms_so_far
|
432 |
+
new_track.append(new_event)
|
433 |
+
else:
|
434 |
+
if old_event[0] != 'set_tempo':
|
435 |
+
previous_ms_so_far = ms_so_far
|
436 |
+
new_track.append(new_event)
|
437 |
ticks_so_far += event_delta_ticks
|
438 |
new_opus.append(new_track)
|
439 |
itrack += 1
|
|
|
1473 |
|
1474 |
from itertools import zip_longest
|
1475 |
from itertools import groupby
|
1476 |
+
from collections import Counter
|
1477 |
|
1478 |
from operator import itemgetter
|
1479 |
|
|
|
1485 |
|
1486 |
import statistics
|
1487 |
|
1488 |
+
import matplotlib.pyplot as plt
|
1489 |
+
|
1490 |
###################################################################################
|
1491 |
#
|
1492 |
# Original TMIDI Tegridy helper functions
|
|
|
1597 |
number_of_ticks_per_quarter = 425,
|
1598 |
list_of_MIDI_patches = [0, 24, 32, 40, 42, 46, 56, 71, 73, 0, 0, 0, 0, 0, 0, 0],
|
1599 |
output_file_name = 'TMIDI-Composition',
|
1600 |
+
text_encoding='ISO-8859-1',
|
1601 |
+
verbose=True):
|
1602 |
|
1603 |
'''Tegridy SONG to MIDI Converter
|
1604 |
|
|
|
1615 |
|
1616 |
Project Los Angeles
|
1617 |
Tegridy Code 2020'''
|
1618 |
+
|
1619 |
+
if verbose:
|
1620 |
+
print('Converting to MIDI. Please stand-by...')
|
1621 |
|
1622 |
output_header = [number_of_ticks_per_quarter,
|
1623 |
[['track_name', 0, bytes(output_signature, text_encoding)]]]
|
|
|
1649 |
midi_file.write(midi_data)
|
1650 |
midi_file.close()
|
1651 |
|
1652 |
+
if verbose:
|
1653 |
+
print('Done! Enjoy! :)')
|
1654 |
+
|
1655 |
+
return detailed_MIDI_stats
|
1656 |
+
|
1657 |
+
###################################################################################
|
1658 |
+
|
1659 |
+
def Tegridy_ms_SONG_to_MIDI_Converter(ms_SONG,
|
1660 |
+
output_signature = 'Tegridy TMIDI Module',
|
1661 |
+
track_name = 'Composition Track',
|
1662 |
+
list_of_MIDI_patches = [0, 24, 32, 40, 42, 46, 56, 71, 73, 0, 0, 0, 0, 0, 0, 0],
|
1663 |
+
output_file_name = 'TMIDI-Composition',
|
1664 |
+
text_encoding='ISO-8859-1',
|
1665 |
+
timings_multiplier=1,
|
1666 |
+
verbose=True
|
1667 |
+
):
|
1668 |
+
|
1669 |
+
'''Tegridy milisecond SONG to MIDI Converter
|
1670 |
+
|
1671 |
+
Input: Input ms SONG in TMIDI ms SONG/MIDI.py ms Score format
|
1672 |
+
Output MIDI Track 0 name / MIDI Signature
|
1673 |
+
Output MIDI Track 1 name / Composition track name
|
1674 |
+
List of 16 MIDI patch numbers for output MIDI. Def. is MuseNet compatible patches.
|
1675 |
+
Output file name w/o .mid extension.
|
1676 |
+
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.
|
1677 |
+
Optional timings multiplier
|
1678 |
+
Optional verbose output
|
1679 |
+
|
1680 |
+
Output: MIDI File
|
1681 |
+
Detailed MIDI stats
|
1682 |
+
|
1683 |
+
Project Los Angeles
|
1684 |
+
Tegridy Code 2024'''
|
1685 |
+
|
1686 |
+
if verbose:
|
1687 |
+
print('Converting to MIDI. Please stand-by...')
|
1688 |
+
|
1689 |
+
output_header = [1000,
|
1690 |
+
[['set_tempo', 0, 1000000],
|
1691 |
+
['time_signature', 0, 4, 2, 24, 8],
|
1692 |
+
['track_name', 0, bytes(output_signature, text_encoding)]]]
|
1693 |
+
|
1694 |
+
patch_list = [['patch_change', 0, 0, list_of_MIDI_patches[0]],
|
1695 |
+
['patch_change', 0, 1, list_of_MIDI_patches[1]],
|
1696 |
+
['patch_change', 0, 2, list_of_MIDI_patches[2]],
|
1697 |
+
['patch_change', 0, 3, list_of_MIDI_patches[3]],
|
1698 |
+
['patch_change', 0, 4, list_of_MIDI_patches[4]],
|
1699 |
+
['patch_change', 0, 5, list_of_MIDI_patches[5]],
|
1700 |
+
['patch_change', 0, 6, list_of_MIDI_patches[6]],
|
1701 |
+
['patch_change', 0, 7, list_of_MIDI_patches[7]],
|
1702 |
+
['patch_change', 0, 8, list_of_MIDI_patches[8]],
|
1703 |
+
['patch_change', 0, 9, list_of_MIDI_patches[9]],
|
1704 |
+
['patch_change', 0, 10, list_of_MIDI_patches[10]],
|
1705 |
+
['patch_change', 0, 11, list_of_MIDI_patches[11]],
|
1706 |
+
['patch_change', 0, 12, list_of_MIDI_patches[12]],
|
1707 |
+
['patch_change', 0, 13, list_of_MIDI_patches[13]],
|
1708 |
+
['patch_change', 0, 14, list_of_MIDI_patches[14]],
|
1709 |
+
['patch_change', 0, 15, list_of_MIDI_patches[15]],
|
1710 |
+
['track_name', 0, bytes(track_name, text_encoding)]]
|
1711 |
+
|
1712 |
+
SONG = copy.deepcopy(ms_SONG)
|
1713 |
+
|
1714 |
+
if timings_multiplier != 1:
|
1715 |
+
for S in SONG:
|
1716 |
+
S[1] = S[1] * timings_multiplier
|
1717 |
+
if S[0] == 'note':
|
1718 |
+
S[2] = S[2] * timings_multiplier
|
1719 |
+
|
1720 |
+
output = output_header + [patch_list + SONG]
|
1721 |
+
|
1722 |
+
midi_data = score2midi(output, text_encoding)
|
1723 |
+
detailed_MIDI_stats = score2stats(output)
|
1724 |
+
|
1725 |
+
with open(output_file_name + '.mid', 'wb') as midi_file:
|
1726 |
+
midi_file.write(midi_data)
|
1727 |
+
midi_file.close()
|
1728 |
+
|
1729 |
+
if verbose:
|
1730 |
+
print('Done! Enjoy! :)')
|
1731 |
+
|
1732 |
+
return detailed_MIDI_stats
|
1733 |
+
|
1734 |
+
###################################################################################
|
1735 |
+
|
1736 |
+
def hsv_to_rgb(h, s, v):
|
1737 |
+
if s == 0.0:
|
1738 |
+
return v, v, v
|
1739 |
+
i = int(h*6.0)
|
1740 |
+
f = (h*6.0) - i
|
1741 |
+
p = v*(1.0 - s)
|
1742 |
+
q = v*(1.0 - s*f)
|
1743 |
+
t = v*(1.0 - s*(1.0-f))
|
1744 |
+
i = i%6
|
1745 |
+
return [(v, t, p), (q, v, p), (p, v, t), (p, q, v), (t, p, v), (v, p, q)][i]
|
1746 |
+
|
1747 |
+
def generate_colors(n):
|
1748 |
+
return [hsv_to_rgb(i/n, 1, 1) for i in range(n)]
|
1749 |
+
|
1750 |
+
def add_arrays(a, b):
|
1751 |
+
return [sum(pair) for pair in zip(a, b)]
|
1752 |
+
|
1753 |
+
#-------------------------------------------------------------------------------
|
1754 |
+
|
1755 |
+
def plot_ms_SONG(ms_song,
|
1756 |
+
preview_length_in_notes=0,
|
1757 |
+
block_lines_times_list = None,
|
1758 |
+
plot_title='ms Song',
|
1759 |
+
max_num_colors=129,
|
1760 |
+
drums_color_num=128,
|
1761 |
+
plot_size=(11,4),
|
1762 |
+
note_height = 0.75,
|
1763 |
+
show_grid_lines=False,
|
1764 |
+
return_plt = False
|
1765 |
+
):
|
1766 |
+
|
1767 |
+
'''Tegridy ms SONG plotter/vizualizer'''
|
1768 |
+
|
1769 |
+
notes = [s for s in ms_song if s[0] == 'note']
|
1770 |
+
|
1771 |
+
if (len(max(notes, key=len)) != 7) and (len(min(notes, key=len)) != 7):
|
1772 |
+
print('The song notes do not have patches information')
|
1773 |
+
print('Ploease add patches to the notes in the song')
|
1774 |
+
|
1775 |
+
else:
|
1776 |
+
|
1777 |
+
start_times = [s[1] / 1000 for s in notes]
|
1778 |
+
durations = [s[2] / 1000 for s in notes]
|
1779 |
+
pitches = [s[4] for s in notes]
|
1780 |
+
patches = [s[6] for s in notes]
|
1781 |
+
|
1782 |
+
colors = generate_colors(max_num_colors)
|
1783 |
+
colors[drums_color_num] = (1, 1, 1)
|
1784 |
+
|
1785 |
+
pbl = notes[preview_length_in_notes][1] / 1000
|
1786 |
+
|
1787 |
+
fig, ax = plt.subplots(figsize=plot_size)
|
1788 |
+
#fig, ax = plt.subplots()
|
1789 |
+
|
1790 |
+
# Create a rectangle for each note with color based on patch number
|
1791 |
+
for start, duration, pitch, patch in zip(start_times, durations, pitches, patches):
|
1792 |
+
rect = plt.Rectangle((start, pitch), duration, note_height, facecolor=colors[patch])
|
1793 |
+
ax.add_patch(rect)
|
1794 |
+
|
1795 |
+
# Set the limits of the plot
|
1796 |
+
ax.set_xlim([min(start_times), max(add_arrays(start_times, durations))])
|
1797 |
+
ax.set_ylim([min(pitches)-1, max(pitches)+1])
|
1798 |
+
|
1799 |
+
# Set the background color to black
|
1800 |
+
ax.set_facecolor('black')
|
1801 |
+
fig.patch.set_facecolor('white')
|
1802 |
+
|
1803 |
+
if preview_length_in_notes > 0:
|
1804 |
+
ax.axvline(x=pbl, c='white')
|
1805 |
+
|
1806 |
+
if block_lines_times_list:
|
1807 |
+
for bl in block_lines_times_list:
|
1808 |
+
ax.axvline(x=bl, c='white')
|
1809 |
+
|
1810 |
+
if show_grid_lines:
|
1811 |
+
ax.grid(color='white')
|
1812 |
+
|
1813 |
+
plt.xlabel('Time (s)', c='black')
|
1814 |
+
plt.ylabel('MIDI Pitch', c='black')
|
1815 |
+
|
1816 |
+
plt.title(plot_title)
|
1817 |
+
|
1818 |
+
if return_plt:
|
1819 |
+
return fig
|
1820 |
+
|
1821 |
+
plt.show()
|
1822 |
+
|
1823 |
+
###################################################################################
|
1824 |
+
|
1825 |
+
def Tegridy_SONG_to_Full_MIDI_Converter(SONG,
|
1826 |
+
output_signature = 'Tegridy TMIDI Module',
|
1827 |
+
track_name = 'Composition Track',
|
1828 |
+
number_of_ticks_per_quarter = 1000,
|
1829 |
+
output_file_name = 'TMIDI-Composition',
|
1830 |
+
text_encoding='ISO-8859-1',
|
1831 |
+
verbose=True):
|
1832 |
+
|
1833 |
+
'''Tegridy SONG to Full MIDI Converter
|
1834 |
+
|
1835 |
+
Input: Input SONG in Full TMIDI SONG/MIDI.py Score format
|
1836 |
+
Output MIDI Track 0 name / MIDI Signature
|
1837 |
+
Output MIDI Track 1 name / Composition track name
|
1838 |
+
Number of ticks per quarter for the output MIDI
|
1839 |
+
Output file name w/o .mid extension.
|
1840 |
+
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.
|
1841 |
+
|
1842 |
+
Output: MIDI File
|
1843 |
+
Detailed MIDI stats
|
1844 |
+
|
1845 |
+
Project Los Angeles
|
1846 |
+
Tegridy Code 2023'''
|
1847 |
+
|
1848 |
+
if verbose:
|
1849 |
+
print('Converting to MIDI. Please stand-by...')
|
1850 |
+
|
1851 |
+
output_header = [number_of_ticks_per_quarter,
|
1852 |
+
[['set_tempo', 0, 1000000],
|
1853 |
+
['track_name', 0, bytes(output_signature, text_encoding)]]]
|
1854 |
+
|
1855 |
+
song_track = [['track_name', 0, bytes(track_name, text_encoding)]]
|
1856 |
+
|
1857 |
+
output = output_header + [song_track + SONG]
|
1858 |
+
|
1859 |
+
midi_data = score2midi(output, text_encoding)
|
1860 |
+
detailed_MIDI_stats = score2stats(output)
|
1861 |
+
|
1862 |
+
with open(output_file_name + '.mid', 'wb') as midi_file:
|
1863 |
+
midi_file.write(midi_data)
|
1864 |
+
midi_file.close()
|
1865 |
+
|
1866 |
+
if verbose:
|
1867 |
+
print('Done! Enjoy! :)')
|
1868 |
|
1869 |
return detailed_MIDI_stats
|
1870 |
|
|
|
3512 |
|
3513 |
###################################################################################
|
3514 |
|
3515 |
+
# Binary chords functions
|
3516 |
+
|
3517 |
+
def tones_chord_to_bits(chord):
|
3518 |
+
bits = [0] * 12
|
3519 |
+
for num in chord:
|
3520 |
+
bits[num] = 1
|
3521 |
+
|
3522 |
+
return bits
|
3523 |
+
|
3524 |
+
def bits_to_tones_chord(bits):
|
3525 |
+
return [i for i, bit in enumerate(bits) if bit == 1]
|
3526 |
+
|
3527 |
+
def shift_bits(bits, n):
|
3528 |
+
return bits[-n:] + bits[:-n]
|
3529 |
+
|
3530 |
+
def bits_to_int(bits, shift_bits_value=0):
|
3531 |
+
bits = shift_bits(bits, shift_bits_value)
|
3532 |
+
result = 0
|
3533 |
+
for bit in bits:
|
3534 |
+
result = (result << 1) | bit
|
3535 |
+
|
3536 |
+
return result
|
3537 |
+
|
3538 |
+
def int_to_bits(n):
|
3539 |
+
bits = [0] * 12
|
3540 |
+
for i in range(12):
|
3541 |
+
bits[11 - i] = n % 2
|
3542 |
+
n //= 2
|
3543 |
+
|
3544 |
+
return bits
|
3545 |
+
|
3546 |
+
def bad_chord(chord):
|
3547 |
+
bad = any(b - a == 1 for a, b in zip(chord, chord[1:]))
|
3548 |
+
if (0 in chord) and (11 in chord):
|
3549 |
+
bad = True
|
3550 |
+
|
3551 |
+
return bad
|
3552 |
+
|
3553 |
+
def pitches_chord_to_int(pitches_chord, tones_transpose_value=0):
|
3554 |
+
|
3555 |
+
pitches_chord = [x for x in pitches_chord if 0 < x < 128]
|
3556 |
+
|
3557 |
+
if not (-12 < tones_transpose_value < 12):
|
3558 |
+
tones_transpose_value = 0
|
3559 |
+
|
3560 |
+
tones_chord = sorted(list(set([c % 12 for c in sorted(list(set(pitches_chord)))])))
|
3561 |
+
bits = tones_chord_to_bits(tones_chord)
|
3562 |
+
integer = bits_to_int(bits, shift_bits_value=tones_transpose_value)
|
3563 |
+
|
3564 |
+
return integer
|
3565 |
+
|
3566 |
+
def int_to_pitches_chord(integer, chord_base_pitch=60):
|
3567 |
+
if 0 < integer < 4096:
|
3568 |
+
bits = int_to_bits(integer)
|
3569 |
+
tones_chord = bits_to_tones_chord(bits)
|
3570 |
+
if not bad_chord(tones_chord):
|
3571 |
+
pitches_chord = [t+chord_base_pitch for t in tones_chord]
|
3572 |
+
return [pitches_chord, tones_chord]
|
3573 |
+
|
3574 |
+
else:
|
3575 |
+
return 0 # Bad chord code
|
3576 |
+
|
3577 |
+
else:
|
3578 |
+
return -1 # Bad integer code
|
3579 |
+
|
3580 |
+
###################################################################################
|
3581 |
+
|
3582 |
+
def bad_chord(chord):
|
3583 |
+
bad = any(b - a == 1 for a, b in zip(chord, chord[1:]))
|
3584 |
+
if (0 in chord) and (11 in chord):
|
3585 |
+
bad = True
|
3586 |
+
|
3587 |
+
return bad
|
3588 |
+
|
3589 |
+
def validate_pitches_chord(pitches_chord, return_sorted = True):
|
3590 |
+
|
3591 |
+
pitches_chord = sorted(list(set([x for x in pitches_chord if 0 < x < 128])))
|
3592 |
+
|
3593 |
+
tones_chord = sorted(list(set([c % 12 for c in sorted(list(set(pitches_chord)))])))
|
3594 |
+
|
3595 |
+
if not bad_chord(tones_chord):
|
3596 |
+
if return_sorted:
|
3597 |
+
pitches_chord.sort(reverse=True)
|
3598 |
+
return pitches_chord
|
3599 |
+
|
3600 |
+
else:
|
3601 |
+
if 0 in tones_chord and 11 in tones_chord:
|
3602 |
+
tones_chord.remove(0)
|
3603 |
+
|
3604 |
+
fixed_tones = [[a, b] for a, b in zip(tones_chord, tones_chord[1:]) if b-a != 1]
|
3605 |
+
|
3606 |
+
fixed_tones_chord = []
|
3607 |
+
for f in fixed_tones:
|
3608 |
+
fixed_tones_chord.extend(f)
|
3609 |
+
fixed_tones_chord = list(set(fixed_tones_chord))
|
3610 |
+
|
3611 |
+
fixed_pitches_chord = []
|
3612 |
+
|
3613 |
+
for p in pitches_chord:
|
3614 |
+
if (p % 12) in fixed_tones_chord:
|
3615 |
+
fixed_pitches_chord.append(p)
|
3616 |
+
|
3617 |
+
if return_sorted:
|
3618 |
+
fixed_pitches_chord.sort(reverse=True)
|
3619 |
+
|
3620 |
+
return fixed_pitches_chord
|
3621 |
+
|
3622 |
+
def validate_pitches(chord, channel_to_check = 0, return_sorted = True):
|
3623 |
+
|
3624 |
+
pitches_chord = sorted(list(set([x[4] for x in chord if 0 < x[4] < 128 and x[3] == channel_to_check])))
|
3625 |
+
|
3626 |
+
if pitches_chord:
|
3627 |
+
|
3628 |
+
tones_chord = sorted(list(set([c % 12 for c in sorted(list(set(pitches_chord)))])))
|
3629 |
+
|
3630 |
+
if not bad_chord(tones_chord):
|
3631 |
+
if return_sorted:
|
3632 |
+
chord.sort(key = lambda x: x[4], reverse=True)
|
3633 |
+
return chord
|
3634 |
+
|
3635 |
+
else:
|
3636 |
+
if 0 in tones_chord and 11 in tones_chord:
|
3637 |
+
tones_chord.remove(0)
|
3638 |
+
|
3639 |
+
fixed_tones = [[a, b] for a, b in zip(tones_chord, tones_chord[1:]) if b-a != 1]
|
3640 |
+
|
3641 |
+
fixed_tones_chord = []
|
3642 |
+
for f in fixed_tones:
|
3643 |
+
fixed_tones_chord.extend(f)
|
3644 |
+
fixed_tones_chord = list(set(fixed_tones_chord))
|
3645 |
+
|
3646 |
+
fixed_chord = []
|
3647 |
+
|
3648 |
+
for c in chord:
|
3649 |
+
if c[3] == channel_to_check:
|
3650 |
+
if (c[4] % 12) in fixed_tones_chord:
|
3651 |
+
fixed_chord.append(c)
|
3652 |
+
else:
|
3653 |
+
fixed_chord.append(c)
|
3654 |
+
|
3655 |
+
if return_sorted:
|
3656 |
+
fixed_chord.sort(key = lambda x: x[4], reverse=True)
|
3657 |
+
|
3658 |
+
return fixed_chord
|
3659 |
+
|
3660 |
+
else:
|
3661 |
+
chord.sort(key = lambda x: x[4], reverse=True)
|
3662 |
+
return chord
|
3663 |
+
|
3664 |
+
def adjust_score_velocities(score, max_velocity):
|
3665 |
+
|
3666 |
+
min_velocity = min([c[5] for c in score])
|
3667 |
+
max_velocity_all_channels = max([c[5] for c in score])
|
3668 |
+
min_velocity_ratio = min_velocity / max_velocity_all_channels
|
3669 |
+
|
3670 |
+
max_channel_velocity = max([c[5] for c in score])
|
3671 |
+
if max_channel_velocity < min_velocity:
|
3672 |
+
factor = max_velocity / min_velocity
|
3673 |
+
else:
|
3674 |
+
factor = max_velocity / max_channel_velocity
|
3675 |
+
for i in range(len(score)):
|
3676 |
+
score[i][5] = int(score[i][5] * factor)
|
3677 |
+
|
3678 |
+
def chordify_score(score,
|
3679 |
+
return_choridfied_score=True,
|
3680 |
+
return_detected_score_information=False
|
3681 |
+
):
|
3682 |
+
|
3683 |
+
if score:
|
3684 |
+
|
3685 |
+
num_tracks = 1
|
3686 |
+
single_track_score = []
|
3687 |
+
score_num_ticks = 0
|
3688 |
+
|
3689 |
+
if type(score[0]) == int and len(score) > 1:
|
3690 |
+
|
3691 |
+
score_type = 'MIDI_PY'
|
3692 |
+
score_num_ticks = score[0]
|
3693 |
+
|
3694 |
+
while num_tracks < len(score):
|
3695 |
+
for event in score[num_tracks]:
|
3696 |
+
single_track_score.append(event)
|
3697 |
+
num_tracks += 1
|
3698 |
+
|
3699 |
+
else:
|
3700 |
+
score_type = 'CUSTOM'
|
3701 |
+
single_track_score = score
|
3702 |
+
|
3703 |
+
if single_track_score and single_track_score[0]:
|
3704 |
+
|
3705 |
+
try:
|
3706 |
+
|
3707 |
+
if type(single_track_score[0][0]) == str or single_track_score[0][0] == 'note':
|
3708 |
+
single_track_score.sort(key = lambda x: x[1])
|
3709 |
+
score_timings = [s[1] for s in single_track_score]
|
3710 |
+
else:
|
3711 |
+
score_timings = [s[0] for s in single_track_score]
|
3712 |
+
|
3713 |
+
is_score_time_absolute = lambda sct: all(x <= y for x, y in zip(sct, sct[1:]))
|
3714 |
+
|
3715 |
+
score_timings_type = ''
|
3716 |
+
|
3717 |
+
if is_score_time_absolute(score_timings):
|
3718 |
+
score_timings_type = 'ABS'
|
3719 |
+
|
3720 |
+
chords = []
|
3721 |
+
cho = []
|
3722 |
+
|
3723 |
+
if score_type == 'MIDI_PY':
|
3724 |
+
pe = single_track_score[0]
|
3725 |
+
else:
|
3726 |
+
pe = single_track_score[0]
|
3727 |
+
|
3728 |
+
for e in single_track_score:
|
3729 |
+
|
3730 |
+
if score_type == 'MIDI_PY':
|
3731 |
+
time = e[1]
|
3732 |
+
ptime = pe[1]
|
3733 |
+
else:
|
3734 |
+
time = e[0]
|
3735 |
+
ptime = pe[0]
|
3736 |
+
|
3737 |
+
if time == ptime:
|
3738 |
+
cho.append(e)
|
3739 |
+
|
3740 |
+
else:
|
3741 |
+
if len(cho) > 0:
|
3742 |
+
chords.append(cho)
|
3743 |
+
cho = []
|
3744 |
+
cho.append(e)
|
3745 |
+
|
3746 |
+
pe = e
|
3747 |
+
|
3748 |
+
if len(cho) > 0:
|
3749 |
+
chords.append(cho)
|
3750 |
+
|
3751 |
+
else:
|
3752 |
+
score_timings_type = 'REL'
|
3753 |
+
|
3754 |
+
chords = []
|
3755 |
+
cho = []
|
3756 |
+
|
3757 |
+
for e in single_track_score:
|
3758 |
+
|
3759 |
+
if score_type == 'MIDI_PY':
|
3760 |
+
time = e[1]
|
3761 |
+
else:
|
3762 |
+
time = e[0]
|
3763 |
+
|
3764 |
+
if time == 0:
|
3765 |
+
cho.append(e)
|
3766 |
+
|
3767 |
+
else:
|
3768 |
+
if len(cho) > 0:
|
3769 |
+
chords.append(cho)
|
3770 |
+
cho = []
|
3771 |
+
cho.append(e)
|
3772 |
+
|
3773 |
+
if len(cho) > 0:
|
3774 |
+
chords.append(cho)
|
3775 |
+
|
3776 |
+
requested_data = []
|
3777 |
+
|
3778 |
+
if return_detected_score_information:
|
3779 |
+
|
3780 |
+
detected_score_information = []
|
3781 |
+
|
3782 |
+
detected_score_information.append(['Score type', score_type])
|
3783 |
+
detected_score_information.append(['Score timings type', score_timings_type])
|
3784 |
+
detected_score_information.append(['Score tpq', score_num_ticks])
|
3785 |
+
detected_score_information.append(['Score number of tracks', num_tracks])
|
3786 |
+
|
3787 |
+
requested_data.append(detected_score_information)
|
3788 |
+
|
3789 |
+
if return_choridfied_score and return_detected_score_information:
|
3790 |
+
requested_data.append(chords)
|
3791 |
+
|
3792 |
+
if return_choridfied_score and not return_detected_score_information:
|
3793 |
+
requested_data.extend(chords)
|
3794 |
+
|
3795 |
+
return requested_data
|
3796 |
+
|
3797 |
+
except Exception as e:
|
3798 |
+
print('Error!')
|
3799 |
+
print('Check score for consistency and compatibility!')
|
3800 |
+
print('Exception detected:', e)
|
3801 |
+
|
3802 |
+
else:
|
3803 |
+
return None
|
3804 |
+
|
3805 |
+
else:
|
3806 |
+
return None
|
3807 |
+
|
3808 |
+
def fix_monophonic_score_durations(monophonic_score):
|
3809 |
+
|
3810 |
+
fixed_score = []
|
3811 |
+
|
3812 |
+
if monophonic_score[0][0] == 'note':
|
3813 |
+
|
3814 |
+
for i in range(len(monophonic_score)-1):
|
3815 |
+
note = monophonic_score[i]
|
3816 |
+
|
3817 |
+
nmt = monophonic_score[i+1][1]
|
3818 |
+
|
3819 |
+
if note[1]+note[2] >= nmt:
|
3820 |
+
note_dur = nmt-note[1]-1
|
3821 |
+
else:
|
3822 |
+
note_dur = note[2]
|
3823 |
+
|
3824 |
+
new_note = [note[0], note[1], note_dur] + note[3:]
|
3825 |
+
|
3826 |
+
fixed_score.append(new_note)
|
3827 |
+
|
3828 |
+
fixed_score.append(monophonic_score[-1])
|
3829 |
+
|
3830 |
+
elif type(monophonic_score[0][0]) == int:
|
3831 |
+
|
3832 |
+
for i in range(len(monophonic_score)-1):
|
3833 |
+
note = monophonic_score[i]
|
3834 |
+
|
3835 |
+
nmt = monophonic_score[i+1][0]
|
3836 |
+
|
3837 |
+
if note[0]+note[1] >= nmt:
|
3838 |
+
note_dur = nmt-note[0]-1
|
3839 |
+
else:
|
3840 |
+
note_dur = note[1]
|
3841 |
+
|
3842 |
+
new_note = [note[0], note_dur] + note[2:]
|
3843 |
+
|
3844 |
+
fixed_score.append(new_note)
|
3845 |
+
|
3846 |
+
fixed_score.append(monophonic_score[-1])
|
3847 |
+
|
3848 |
+
return fixed_score
|
3849 |
|
3850 |
###################################################################################
|
3851 |
+
|
3852 |
+
from itertools import product
|
3853 |
+
|
3854 |
+
ALL_CHORDS = [[0], [7], [5], [9], [2], [4], [11], [10], [8], [6], [3], [1], [0, 9], [2, 5],
|
3855 |
+
[4, 7], [7, 10], [2, 11], [0, 3], [6, 9], [1, 4], [8, 11], [5, 8], [1, 10],
|
3856 |
+
[3, 6], [0, 4], [5, 9], [7, 11], [0, 7], [0, 5], [2, 10], [2, 7], [2, 9],
|
3857 |
+
[2, 6], [4, 11], [4, 9], [3, 7], [5, 10], [1, 9], [0, 8], [6, 11], [3, 11],
|
3858 |
+
[4, 8], [3, 10], [3, 8], [1, 5], [1, 8], [1, 6], [6, 10], [3, 9], [4, 10],
|
3859 |
+
[1, 7], [0, 6], [2, 8], [5, 11], [5, 7], [0, 10], [0, 2], [9, 11], [7, 9],
|
3860 |
+
[2, 4], [4, 6], [3, 5], [8, 10], [6, 8], [1, 3], [1, 11], [2, 7, 11],
|
3861 |
+
[0, 4, 7], [0, 5, 9], [2, 6, 9], [2, 5, 10], [1, 4, 9], [4, 8, 11], [3, 7, 10],
|
3862 |
+
[0, 3, 8], [3, 6, 11], [1, 5, 8], [1, 6, 10], [0, 4, 9], [2, 5, 9], [4, 7, 11],
|
3863 |
+
[2, 7, 10], [2, 6, 11], [0, 3, 7], [0, 5, 8], [1, 4, 8], [1, 6, 9], [3, 8, 11],
|
3864 |
+
[1, 5, 10], [3, 6, 10], [2, 5, 11], [4, 7, 10], [3, 6, 9], [0, 6, 9],
|
3865 |
+
[0, 3, 9], [2, 8, 11], [2, 5, 8], [1, 7, 10], [1, 4, 7], [0, 3, 6], [1, 4, 10],
|
3866 |
+
[5, 8, 11], [2, 5, 7], [0, 7, 10], [0, 2, 9], [0, 3, 5], [6, 9, 11], [4, 7, 9],
|
3867 |
+
[2, 4, 11], [5, 8, 10], [1, 3, 10], [1, 4, 6], [3, 6, 8], [1, 8, 11],
|
3868 |
+
[5, 7, 11], [0, 4, 10], [3, 5, 9], [0, 2, 6], [1, 7, 9], [0, 7, 9], [5, 7, 10],
|
3869 |
+
[2, 8, 10], [3, 9, 11], [0, 2, 5], [2, 4, 8], [2, 4, 7], [0, 2, 7], [2, 7, 9],
|
3870 |
+
[4, 9, 11], [4, 6, 9], [1, 3, 7], [2, 4, 9], [0, 5, 7], [0, 3, 10], [2, 9, 11],
|
3871 |
+
[0, 5, 10], [0, 6, 8], [4, 6, 10], [4, 6, 11], [1, 4, 11], [6, 8, 11],
|
3872 |
+
[1, 5, 11], [1, 6, 11], [1, 8, 10], [1, 6, 8], [3, 5, 8], [3, 8, 10],
|
3873 |
+
[1, 3, 8], [3, 5, 10], [1, 3, 6], [2, 5, 7, 10], [0, 3, 7, 10], [1, 4, 8, 11],
|
3874 |
+
[2, 4, 7, 11], [0, 4, 7, 9], [0, 2, 5, 9], [2, 6, 9, 11], [1, 5, 8, 10],
|
3875 |
+
[0, 3, 5, 8], [3, 6, 8, 11], [1, 3, 6, 10], [1, 4, 6, 9], [1, 5, 9], [0, 4, 8],
|
3876 |
+
[2, 6, 10], [3, 7, 11], [0, 3, 6, 9], [2, 5, 8, 11], [1, 4, 7, 10],
|
3877 |
+
[2, 5, 7, 11], [0, 2, 6, 9], [0, 4, 7, 10], [2, 4, 8, 11], [0, 3, 5, 9],
|
3878 |
+
[1, 4, 7, 9], [3, 6, 9, 11], [2, 5, 8, 10], [1, 4, 6, 10], [0, 3, 6, 8],
|
3879 |
+
[1, 3, 7, 10], [1, 5, 8, 11], [2, 4, 10], [5, 9, 11], [1, 5, 7], [0, 2, 8],
|
3880 |
+
[0, 4, 6], [1, 7, 11], [3, 7, 9], [1, 3, 9], [7, 9, 11], [5, 7, 9], [0, 6, 10],
|
3881 |
+
[0, 2, 10], [2, 6, 8], [0, 2, 4], [4, 8, 10], [1, 9, 11], [2, 4, 6],
|
3882 |
+
[3, 5, 11], [3, 5, 7], [0, 8, 10], [4, 6, 8], [1, 3, 11], [6, 8, 10],
|
3883 |
+
[1, 3, 5], [0, 2, 5, 10], [0, 5, 7, 9], [0, 3, 8, 10], [0, 2, 4, 7],
|
3884 |
+
[4, 6, 8, 11], [3, 5, 7, 10], [2, 7, 9, 11], [2, 4, 6, 9], [1, 6, 8, 10],
|
3885 |
+
[1, 4, 9, 11], [1, 3, 5, 8], [1, 3, 6, 11], [2, 5, 9, 11], [2, 4, 7, 10],
|
3886 |
+
[0, 2, 5, 8], [1, 5, 7, 10], [0, 4, 6, 9], [1, 3, 6, 9], [0, 3, 6, 10],
|
3887 |
+
[2, 6, 8, 11], [0, 2, 7, 9], [1, 4, 8, 10], [0, 3, 7, 9], [3, 5, 8, 11],
|
3888 |
+
[0, 5, 7, 10], [0, 2, 5, 7], [1, 4, 7, 11], [2, 4, 7, 9], [0, 3, 5, 10],
|
3889 |
+
[4, 6, 9, 11], [1, 4, 6, 11], [2, 4, 9, 11], [1, 6, 8, 11], [1, 3, 6, 8],
|
3890 |
+
[1, 3, 8, 10], [3, 5, 8, 10], [4, 7, 9, 11], [0, 2, 7, 10], [2, 5, 7, 9],
|
3891 |
+
[0, 2, 4, 9], [1, 6, 9, 11], [2, 4, 6, 11], [0, 3, 5, 7], [0, 5, 8, 10],
|
3892 |
+
[1, 4, 6, 8], [1, 3, 5, 10], [1, 3, 8, 11], [3, 6, 8, 10], [0, 2, 5, 7, 10],
|
3893 |
+
[0, 2, 4, 7, 9], [0, 2, 5, 7, 9], [1, 3, 7, 9], [1, 4, 6, 9, 11],
|
3894 |
+
[1, 3, 6, 8, 11], [3, 5, 9, 11], [1, 3, 6, 8, 10], [1, 4, 6, 8, 11],
|
3895 |
+
[1, 3, 5, 8, 10], [2, 4, 6, 9, 11], [2, 4, 8, 10], [2, 4, 7, 9, 11],
|
3896 |
+
[0, 3, 5, 7, 10], [1, 5, 7, 11], [0, 2, 6, 8], [0, 3, 5, 8, 10], [0, 4, 6, 10],
|
3897 |
+
[1, 3, 5, 9], [1, 5, 7, 9], [2, 6, 8, 10], [3, 7, 9, 11], [0, 2, 4, 8],
|
3898 |
+
[0, 4, 6, 8], [0, 4, 8, 10], [2, 4, 6, 10], [1, 3, 7, 11], [0, 2, 6, 10],
|
3899 |
+
[1, 5, 9, 11], [3, 5, 7, 11], [1, 7, 9, 11], [0, 2, 4, 6], [1, 3, 9, 11],
|
3900 |
+
[0, 2, 4, 10], [5, 7, 9, 11], [2, 4, 6, 8], [0, 2, 8, 10], [3, 5, 7, 9],
|
3901 |
+
[1, 3, 5, 7], [4, 6, 8, 10], [0, 6, 8, 10], [1, 3, 5, 11], [0, 3, 6, 8, 10],
|
3902 |
+
[0, 2, 4, 6, 9], [1, 4, 7, 9, 11], [2, 4, 6, 8, 11], [1, 3, 6, 9, 11],
|
3903 |
+
[1, 3, 5, 8, 11], [0, 2, 5, 8, 10], [1, 4, 6, 8, 10], [0, 3, 5, 7, 9],
|
3904 |
+
[2, 5, 7, 9, 11], [1, 3, 5, 7, 10], [0, 2, 4, 7, 10], [1, 3, 5, 7, 9],
|
3905 |
+
[1, 3, 5, 9, 11], [1, 5, 7, 9, 11], [1, 3, 7, 9, 11], [3, 5, 7, 9, 11],
|
3906 |
+
[2, 4, 6, 8, 10], [0, 4, 6, 8, 10], [0, 2, 6, 8, 10], [1, 3, 5, 7, 11],
|
3907 |
+
[0, 2, 4, 8, 10], [0, 2, 4, 6, 8], [0, 2, 4, 6, 10], [0, 2, 4, 6, 8, 10],
|
3908 |
+
[1, 3, 5, 7, 9, 11]]
|
3909 |
+
|
3910 |
+
def find_exact_match_variable_length(list_of_lists, target_list, uncertain_indices):
|
3911 |
+
# Infer possible values for each uncertain index
|
3912 |
+
possible_values = {idx: set() for idx in uncertain_indices}
|
3913 |
+
for sublist in list_of_lists:
|
3914 |
+
for idx in uncertain_indices:
|
3915 |
+
if idx < len(sublist):
|
3916 |
+
possible_values[idx].add(sublist[idx])
|
3917 |
+
|
3918 |
+
# Generate all possible combinations for the uncertain elements
|
3919 |
+
uncertain_combinations = product(*(possible_values[idx] for idx in uncertain_indices))
|
3920 |
+
|
3921 |
+
for combination in uncertain_combinations:
|
3922 |
+
# Create a copy of the target list and update the uncertain elements
|
3923 |
+
test_list = target_list[:]
|
3924 |
+
for idx, value in zip(uncertain_indices, combination):
|
3925 |
+
test_list[idx] = value
|
3926 |
+
|
3927 |
+
# Check if the modified target list is an exact match in the list of lists
|
3928 |
+
# Only consider sublists that are at least as long as the target list
|
3929 |
+
for sublist in list_of_lists:
|
3930 |
+
if len(sublist) >= len(test_list) and sublist[:len(test_list)] == test_list:
|
3931 |
+
return sublist # Return the matching sublist
|
3932 |
+
|
3933 |
+
return None # No exact match found
|
3934 |
+
|
3935 |
+
|
3936 |
+
def advanced_validate_chord_pitches(chord, channel_to_check = 0, return_sorted = True):
|
3937 |
+
|
3938 |
+
pitches_chord = sorted(list(set([x[4] for x in chord if 0 < x[4] < 128 and x[3] == channel_to_check])))
|
3939 |
+
|
3940 |
+
if pitches_chord:
|
3941 |
+
|
3942 |
+
tones_chord = sorted(list(set([c % 12 for c in sorted(list(set(pitches_chord)))])))
|
3943 |
+
|
3944 |
+
if not bad_chord(tones_chord):
|
3945 |
+
if return_sorted:
|
3946 |
+
chord.sort(key = lambda x: x[4], reverse=True)
|
3947 |
+
return chord
|
3948 |
+
|
3949 |
+
else:
|
3950 |
+
bad_chord_indices = list(set([i for s in [[tones_chord.index(a), tones_chord.index(b)] for a, b in zip(tones_chord, tones_chord[1:]) if b-a == 1] for i in s]))
|
3951 |
+
|
3952 |
+
good_tones_chord = find_exact_match_variable_length(ALL_CHORDS, tones_chord, bad_chord_indices)
|
3953 |
+
|
3954 |
+
if good_tones_chord is not None:
|
3955 |
+
|
3956 |
+
fixed_chord = []
|
3957 |
+
|
3958 |
+
for c in chord:
|
3959 |
+
if c[3] == channel_to_check:
|
3960 |
+
if (c[4] % 12) in good_tones_chord:
|
3961 |
+
fixed_chord.append(c)
|
3962 |
+
else:
|
3963 |
+
fixed_chord.append(c)
|
3964 |
+
|
3965 |
+
if return_sorted:
|
3966 |
+
fixed_chord.sort(key = lambda x: x[4], reverse=True)
|
3967 |
+
|
3968 |
+
else:
|
3969 |
+
|
3970 |
+
if 0 in tones_chord and 11 in tones_chord:
|
3971 |
+
tones_chord.remove(0)
|
3972 |
+
|
3973 |
+
fixed_tones = [[a, b] for a, b in zip(tones_chord, tones_chord[1:]) if b-a != 1]
|
3974 |
+
|
3975 |
+
fixed_tones_chord = []
|
3976 |
+
for f in fixed_tones:
|
3977 |
+
fixed_tones_chord.extend(f)
|
3978 |
+
fixed_tones_chord = list(set(fixed_tones_chord))
|
3979 |
+
|
3980 |
+
fixed_chord = []
|
3981 |
+
|
3982 |
+
for c in chord:
|
3983 |
+
if c[3] == channel_to_check:
|
3984 |
+
if (c[4] % 12) in fixed_tones_chord:
|
3985 |
+
fixed_chord.append(c)
|
3986 |
+
else:
|
3987 |
+
fixed_chord.append(c)
|
3988 |
+
|
3989 |
+
if return_sorted:
|
3990 |
+
fixed_chord.sort(key = lambda x: x[4], reverse=True)
|
3991 |
+
|
3992 |
+
return fixed_chord
|
3993 |
+
|
3994 |
+
else:
|
3995 |
+
chord.sort(key = lambda x: x[4], reverse=True)
|
3996 |
+
return chord
|
3997 |
+
|
3998 |
+
###################################################################################
|
3999 |
+
|
4000 |
+
def analyze_score_pitches(score, channels_to_analyze=[0]):
|
4001 |
+
|
4002 |
+
analysis = {}
|
4003 |
+
|
4004 |
+
score_notes = [s for s in score if s[3] in channels_to_analyze]
|
4005 |
+
|
4006 |
+
cscore = chordify_score(score_notes)
|
4007 |
+
|
4008 |
+
chords_tones = []
|
4009 |
+
|
4010 |
+
all_tones = []
|
4011 |
+
|
4012 |
+
all_chords_good = True
|
4013 |
+
|
4014 |
+
bad_chords = []
|
4015 |
+
|
4016 |
+
for c in cscore:
|
4017 |
+
tones = sorted(list(set([t[4] % 12 for t in c])))
|
4018 |
+
chords_tones.append(tones)
|
4019 |
+
all_tones.extend(tones)
|
4020 |
+
|
4021 |
+
if tones not in ALL_CHORDS:
|
4022 |
+
all_chords_good = False
|
4023 |
+
bad_chords.append(tones)
|
4024 |
+
|
4025 |
+
analysis['Number of notes'] = len(score_notes)
|
4026 |
+
analysis['Number of chords'] = len(cscore)
|
4027 |
+
analysis['Score tones'] = sorted(list(set(all_tones)))
|
4028 |
+
analysis['Shortest chord'] = sorted(min(chords_tones, key=len))
|
4029 |
+
analysis['Longest chord'] = sorted(max(chords_tones, key=len))
|
4030 |
+
analysis['All chords good'] = all_chords_good
|
4031 |
+
analysis['Bad chords'] = bad_chords
|
4032 |
+
|
4033 |
+
return analysis
|
4034 |
+
|
4035 |
+
###################################################################################
|
4036 |
+
|
4037 |
+
ALL_CHORDS_GROUPED = [[[0], [1], [2], [3], [4], [5], [6], [7], [8], [9], [10], [11]],
|
4038 |
+
[[0, 2], [0, 3], [0, 4], [0, 5], [0, 6], [0, 7], [0, 8], [0, 9], [0, 10],
|
4039 |
+
[1, 3], [1, 4], [1, 5], [1, 6], [1, 7], [1, 8], [1, 9], [1, 10], [1, 11],
|
4040 |
+
[2, 4], [2, 5], [2, 6], [2, 7], [2, 8], [2, 9], [2, 10], [2, 11], [3, 5],
|
4041 |
+
[3, 6], [3, 7], [3, 8], [3, 9], [3, 10], [3, 11], [4, 6], [4, 7], [4, 8],
|
4042 |
+
[4, 9], [4, 10], [4, 11], [5, 7], [5, 8], [5, 9], [5, 10], [5, 11], [6, 8],
|
4043 |
+
[6, 9], [6, 10], [6, 11], [7, 9], [7, 10], [7, 11], [8, 10], [8, 11],
|
4044 |
+
[9, 11]],
|
4045 |
+
[[0, 2, 4], [0, 2, 5], [0, 3, 5], [0, 2, 6], [0, 3, 6], [0, 4, 6], [0, 2, 7],
|
4046 |
+
[0, 3, 7], [0, 4, 7], [0, 5, 7], [0, 2, 8], [0, 3, 8], [0, 4, 8], [0, 5, 8],
|
4047 |
+
[0, 6, 8], [0, 2, 9], [0, 3, 9], [0, 4, 9], [0, 5, 9], [0, 6, 9], [0, 7, 9],
|
4048 |
+
[0, 2, 10], [0, 3, 10], [0, 4, 10], [0, 5, 10], [0, 6, 10], [0, 7, 10],
|
4049 |
+
[0, 8, 10], [1, 3, 5], [1, 3, 6], [1, 4, 6], [1, 3, 7], [1, 4, 7], [1, 5, 7],
|
4050 |
+
[1, 3, 8], [1, 4, 8], [1, 5, 8], [1, 6, 8], [1, 3, 9], [1, 4, 9], [1, 5, 9],
|
4051 |
+
[1, 6, 9], [1, 7, 9], [1, 3, 10], [1, 4, 10], [1, 5, 10], [1, 6, 10],
|
4052 |
+
[1, 7, 10], [1, 8, 10], [1, 3, 11], [1, 4, 11], [1, 5, 11], [1, 6, 11],
|
4053 |
+
[1, 7, 11], [1, 8, 11], [1, 9, 11], [2, 4, 6], [2, 4, 7], [2, 5, 7],
|
4054 |
+
[2, 4, 8], [2, 5, 8], [2, 6, 8], [2, 4, 9], [2, 5, 9], [2, 6, 9], [2, 7, 9],
|
4055 |
+
[2, 4, 10], [2, 5, 10], [2, 6, 10], [2, 7, 10], [2, 8, 10], [2, 4, 11],
|
4056 |
+
[2, 5, 11], [2, 6, 11], [2, 7, 11], [2, 8, 11], [2, 9, 11], [3, 5, 7],
|
4057 |
+
[3, 5, 8], [3, 6, 8], [3, 5, 9], [3, 6, 9], [3, 7, 9], [3, 5, 10], [3, 6, 10],
|
4058 |
+
[3, 7, 10], [3, 8, 10], [3, 5, 11], [3, 6, 11], [3, 7, 11], [3, 8, 11],
|
4059 |
+
[3, 9, 11], [4, 6, 8], [4, 6, 9], [4, 7, 9], [4, 6, 10], [4, 7, 10],
|
4060 |
+
[4, 8, 10], [4, 6, 11], [4, 7, 11], [4, 8, 11], [4, 9, 11], [5, 7, 9],
|
4061 |
+
[5, 7, 10], [5, 8, 10], [5, 7, 11], [5, 8, 11], [5, 9, 11], [6, 8, 10],
|
4062 |
+
[6, 8, 11], [6, 9, 11], [7, 9, 11]],
|
4063 |
+
[[0, 2, 4, 6], [0, 2, 4, 7], [0, 2, 5, 7], [0, 3, 5, 7], [0, 2, 4, 8],
|
4064 |
+
[0, 2, 5, 8], [0, 2, 6, 8], [0, 3, 5, 8], [0, 3, 6, 8], [0, 4, 6, 8],
|
4065 |
+
[0, 2, 4, 9], [0, 2, 5, 9], [0, 2, 6, 9], [0, 2, 7, 9], [0, 3, 5, 9],
|
4066 |
+
[0, 3, 6, 9], [0, 3, 7, 9], [0, 4, 6, 9], [0, 4, 7, 9], [0, 5, 7, 9],
|
4067 |
+
[0, 2, 4, 10], [0, 2, 5, 10], [0, 2, 6, 10], [0, 2, 7, 10], [0, 2, 8, 10],
|
4068 |
+
[0, 3, 5, 10], [0, 3, 6, 10], [0, 3, 7, 10], [0, 3, 8, 10], [0, 4, 6, 10],
|
4069 |
+
[0, 4, 7, 10], [0, 4, 8, 10], [0, 5, 7, 10], [0, 5, 8, 10], [0, 6, 8, 10],
|
4070 |
+
[1, 3, 5, 7], [1, 3, 5, 8], [1, 3, 6, 8], [1, 4, 6, 8], [1, 3, 5, 9],
|
4071 |
+
[1, 3, 6, 9], [1, 3, 7, 9], [1, 4, 6, 9], [1, 4, 7, 9], [1, 5, 7, 9],
|
4072 |
+
[1, 3, 5, 10], [1, 3, 6, 10], [1, 3, 7, 10], [1, 3, 8, 10], [1, 4, 6, 10],
|
4073 |
+
[1, 4, 7, 10], [1, 4, 8, 10], [1, 5, 7, 10], [1, 5, 8, 10], [1, 6, 8, 10],
|
4074 |
+
[1, 3, 5, 11], [1, 3, 6, 11], [1, 3, 7, 11], [1, 3, 8, 11], [1, 3, 9, 11],
|
4075 |
+
[1, 4, 6, 11], [1, 4, 7, 11], [1, 4, 8, 11], [1, 4, 9, 11], [1, 5, 7, 11],
|
4076 |
+
[1, 5, 8, 11], [1, 5, 9, 11], [1, 6, 8, 11], [1, 6, 9, 11], [1, 7, 9, 11],
|
4077 |
+
[2, 4, 6, 8], [2, 4, 6, 9], [2, 4, 7, 9], [2, 5, 7, 9], [2, 4, 6, 10],
|
4078 |
+
[2, 4, 7, 10], [2, 4, 8, 10], [2, 5, 7, 10], [2, 5, 8, 10], [2, 6, 8, 10],
|
4079 |
+
[2, 4, 6, 11], [2, 4, 7, 11], [2, 4, 8, 11], [2, 4, 9, 11], [2, 5, 7, 11],
|
4080 |
+
[2, 5, 8, 11], [2, 5, 9, 11], [2, 6, 8, 11], [2, 6, 9, 11], [2, 7, 9, 11],
|
4081 |
+
[3, 5, 7, 9], [3, 5, 7, 10], [3, 5, 8, 10], [3, 6, 8, 10], [3, 5, 7, 11],
|
4082 |
+
[3, 5, 8, 11], [3, 5, 9, 11], [3, 6, 8, 11], [3, 6, 9, 11], [3, 7, 9, 11],
|
4083 |
+
[4, 6, 8, 10], [4, 6, 8, 11], [4, 6, 9, 11], [4, 7, 9, 11], [5, 7, 9, 11]],
|
4084 |
+
[[0, 2, 4, 6, 8], [0, 2, 4, 6, 9], [0, 2, 4, 7, 9], [0, 2, 5, 7, 9],
|
4085 |
+
[0, 3, 5, 7, 9], [0, 2, 4, 6, 10], [0, 2, 4, 7, 10], [0, 2, 4, 8, 10],
|
4086 |
+
[0, 2, 5, 7, 10], [0, 2, 5, 8, 10], [0, 2, 6, 8, 10], [0, 3, 5, 7, 10],
|
4087 |
+
[0, 3, 5, 8, 10], [0, 3, 6, 8, 10], [0, 4, 6, 8, 10], [1, 3, 5, 7, 9],
|
4088 |
+
[1, 3, 5, 7, 10], [1, 3, 5, 8, 10], [1, 3, 6, 8, 10], [1, 4, 6, 8, 10],
|
4089 |
+
[1, 3, 5, 7, 11], [1, 3, 5, 8, 11], [1, 3, 5, 9, 11], [1, 3, 6, 8, 11],
|
4090 |
+
[1, 3, 6, 9, 11], [1, 3, 7, 9, 11], [1, 4, 6, 8, 11], [1, 4, 6, 9, 11],
|
4091 |
+
[1, 4, 7, 9, 11], [1, 5, 7, 9, 11], [2, 4, 6, 8, 10], [2, 4, 6, 8, 11],
|
4092 |
+
[2, 4, 6, 9, 11], [2, 4, 7, 9, 11], [2, 5, 7, 9, 11], [3, 5, 7, 9, 11]],
|
4093 |
+
[[0, 2, 4, 6, 8, 10], [1, 3, 5, 7, 9, 11]]]
|
4094 |
+
|
4095 |
+
def group_sublists_by_length(lst):
|
4096 |
+
unique_lengths = sorted(list(set(map(len, lst))), reverse=True)
|
4097 |
+
return [[x for x in lst if len(x) == i] for i in unique_lengths]
|
4098 |
+
|
4099 |
+
def pitches_to_tones_chord(pitches):
|
4100 |
+
return sorted(set([p % 12 for p in pitches]))
|
4101 |
+
|
4102 |
+
def tones_chord_to_pitches(tones_chord, base_pitch=60):
|
4103 |
+
return [t+base_pitch for t in tones_chord if 0 <= t < 12]
|
4104 |
+
|
4105 |
+
###################################################################################
|
4106 |
+
|
4107 |
+
def advanced_score_processor(raw_score,
|
4108 |
+
patches_to_analyze=list(range(129)),
|
4109 |
+
return_score_analysis=False,
|
4110 |
+
return_enhanced_score=False,
|
4111 |
+
return_enhanced_score_notes=False,
|
4112 |
+
return_enhanced_monophonic_melody=False,
|
4113 |
+
return_chordified_enhanced_score=False,
|
4114 |
+
return_chordified_enhanced_score_with_lyrics=False,
|
4115 |
+
return_score_tones_chords=False,
|
4116 |
+
return_text_and_lyric_events=False
|
4117 |
+
):
|
4118 |
+
|
4119 |
+
'''TMIDIX Advanced Score Processor'''
|
4120 |
+
|
4121 |
+
# Score data types detection
|
4122 |
+
|
4123 |
+
if raw_score and type(raw_score) == list:
|
4124 |
+
|
4125 |
+
num_ticks = 0
|
4126 |
+
num_tracks = 1
|
4127 |
+
|
4128 |
+
basic_single_track_score = []
|
4129 |
+
|
4130 |
+
if type(raw_score[0]) != int:
|
4131 |
+
if len(raw_score[0]) < 5 and type(raw_score[0][0]) != str:
|
4132 |
+
return ['Check score for errors and compatibility!']
|
4133 |
+
|
4134 |
+
else:
|
4135 |
+
basic_single_track_score = copy.deepcopy(raw_score)
|
4136 |
+
|
4137 |
+
else:
|
4138 |
+
num_ticks = raw_score[0]
|
4139 |
+
while num_tracks < len(raw_score):
|
4140 |
+
for event in raw_score[num_tracks]:
|
4141 |
+
ev = copy.deepcopy(event)
|
4142 |
+
basic_single_track_score.append(ev)
|
4143 |
+
num_tracks += 1
|
4144 |
+
|
4145 |
+
basic_single_track_score.sort(key=lambda x: x[4] if x[0] == 'note' else 128, reverse=True)
|
4146 |
+
basic_single_track_score.sort(key=lambda x: x[1])
|
4147 |
+
|
4148 |
+
enhanced_single_track_score = []
|
4149 |
+
patches = [0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0, 0]
|
4150 |
+
all_score_patches = []
|
4151 |
+
num_patch_changes = 0
|
4152 |
+
|
4153 |
+
for event in basic_single_track_score:
|
4154 |
+
if event[0] == 'patch_change':
|
4155 |
+
patches[event[2]] = event[3]
|
4156 |
+
enhanced_single_track_score.append(event)
|
4157 |
+
num_patch_changes += 1
|
4158 |
+
|
4159 |
+
if event[0] == 'note':
|
4160 |
+
if event[3] != 9:
|
4161 |
+
event.extend([patches[event[3]]])
|
4162 |
+
all_score_patches.extend([patches[event[3]]])
|
4163 |
+
else:
|
4164 |
+
event.extend([128])
|
4165 |
+
all_score_patches.extend([128])
|
4166 |
+
|
4167 |
+
if enhanced_single_track_score:
|
4168 |
+
if (event[1] == enhanced_single_track_score[-1][1]):
|
4169 |
+
if ([event[3], event[4]] != enhanced_single_track_score[-1][3:5]):
|
4170 |
+
enhanced_single_track_score.append(event)
|
4171 |
+
else:
|
4172 |
+
enhanced_single_track_score.append(event)
|
4173 |
+
|
4174 |
+
else:
|
4175 |
+
enhanced_single_track_score.append(event)
|
4176 |
+
|
4177 |
+
if event[0] not in ['note', 'patch_change']:
|
4178 |
+
enhanced_single_track_score.append(event)
|
4179 |
+
|
4180 |
+
enhanced_single_track_score.sort(key=lambda x: x[6] if x[0] == 'note' else -1)
|
4181 |
+
enhanced_single_track_score.sort(key=lambda x: x[4] if x[0] == 'note' else 128, reverse=True)
|
4182 |
+
enhanced_single_track_score.sort(key=lambda x: x[1])
|
4183 |
+
|
4184 |
+
# Analysis and chordification
|
4185 |
+
|
4186 |
+
cscore = []
|
4187 |
+
cescore = []
|
4188 |
+
chords_tones = []
|
4189 |
+
tones_chords = []
|
4190 |
+
all_tones = []
|
4191 |
+
all_chords_good = True
|
4192 |
+
bad_chords = []
|
4193 |
+
bad_chords_count = 0
|
4194 |
+
score_notes = []
|
4195 |
+
score_pitches = []
|
4196 |
+
score_patches = []
|
4197 |
+
num_text_events = 0
|
4198 |
+
num_lyric_events = 0
|
4199 |
+
num_other_events = 0
|
4200 |
+
text_and_lyric_events = []
|
4201 |
+
text_and_lyric_events_latin = None
|
4202 |
+
|
4203 |
+
analysis = {}
|
4204 |
+
|
4205 |
+
score_notes = [s for s in enhanced_single_track_score if s[0] == 'note' and s[6] in patches_to_analyze]
|
4206 |
+
score_patches = [sn[6] for sn in score_notes]
|
4207 |
+
|
4208 |
+
if return_text_and_lyric_events:
|
4209 |
+
text_and_lyric_events = [e for e in enhanced_single_track_score if e[0] in ['text_event', 'lyric']]
|
4210 |
+
|
4211 |
+
if text_and_lyric_events:
|
4212 |
+
text_and_lyric_events_latin = True
|
4213 |
+
for e in text_and_lyric_events:
|
4214 |
+
try:
|
4215 |
+
tle = str(e[2].decode())
|
4216 |
+
except:
|
4217 |
+
tle = str(e[2])
|
4218 |
+
|
4219 |
+
for c in tle:
|
4220 |
+
if not 0 <= ord(c) < 128:
|
4221 |
+
text_and_lyric_events_latin = False
|
4222 |
+
|
4223 |
+
if (return_chordified_enhanced_score or return_score_analysis) and any(elem in patches_to_analyze for elem in score_patches):
|
4224 |
+
|
4225 |
+
cescore = chordify_score([num_ticks, enhanced_single_track_score])
|
4226 |
+
|
4227 |
+
if return_score_analysis:
|
4228 |
+
|
4229 |
+
cscore = chordify_score(score_notes)
|
4230 |
+
|
4231 |
+
score_pitches = [sn[4] for sn in score_notes]
|
4232 |
+
|
4233 |
+
text_events = [e for e in enhanced_single_track_score if e[0] == 'text_event']
|
4234 |
+
num_text_events = len(text_events)
|
4235 |
+
|
4236 |
+
lyric_events = [e for e in enhanced_single_track_score if e[0] == 'lyric']
|
4237 |
+
num_lyric_events = len(lyric_events)
|
4238 |
+
|
4239 |
+
other_events = [e for e in enhanced_single_track_score if e[0] not in ['note', 'patch_change', 'text_event', 'lyric']]
|
4240 |
+
num_other_events = len(other_events)
|
4241 |
+
|
4242 |
+
for c in cscore:
|
4243 |
+
tones = sorted(set([t[4] % 12 for t in c if t[3] != 9]))
|
4244 |
+
|
4245 |
+
if tones:
|
4246 |
+
chords_tones.append(tones)
|
4247 |
+
all_tones.extend(tones)
|
4248 |
+
|
4249 |
+
if tones not in ALL_CHORDS:
|
4250 |
+
all_chords_good = False
|
4251 |
+
bad_chords.append(tones)
|
4252 |
+
bad_chords_count += 1
|
4253 |
+
|
4254 |
+
analysis['Number of ticks per quarter note'] = num_ticks
|
4255 |
+
analysis['Number of tracks'] = num_tracks
|
4256 |
+
analysis['Number of all events'] = len(enhanced_single_track_score)
|
4257 |
+
analysis['Number of patch change events'] = num_patch_changes
|
4258 |
+
analysis['Number of text events'] = num_text_events
|
4259 |
+
analysis['Number of lyric events'] = num_lyric_events
|
4260 |
+
analysis['All text and lyric events Latin'] = text_and_lyric_events_latin
|
4261 |
+
analysis['Number of other events'] = num_other_events
|
4262 |
+
analysis['Number of score notes'] = len(score_notes)
|
4263 |
+
analysis['Number of score chords'] = len(cscore)
|
4264 |
+
analysis['Score patches'] = sorted(set(score_patches))
|
4265 |
+
analysis['Score pitches'] = sorted(set(score_pitches))
|
4266 |
+
analysis['Score tones'] = sorted(set(all_tones))
|
4267 |
+
if chords_tones:
|
4268 |
+
analysis['Shortest chord'] = sorted(min(chords_tones, key=len))
|
4269 |
+
analysis['Longest chord'] = sorted(max(chords_tones, key=len))
|
4270 |
+
analysis['All chords good'] = all_chords_good
|
4271 |
+
analysis['Number of bad chords'] = bad_chords_count
|
4272 |
+
analysis['Bad chords'] = sorted([list(c) for c in set(tuple(bc) for bc in bad_chords)])
|
4273 |
+
|
4274 |
+
else:
|
4275 |
+
analysis['Error'] = 'Provided score does not have specified patches to analyse'
|
4276 |
+
analysis['Provided patches to analyse'] = sorted(patches_to_analyze)
|
4277 |
+
analysis['Patches present in the score'] = sorted(set(all_score_patches))
|
4278 |
+
|
4279 |
+
if return_enhanced_monophonic_melody:
|
4280 |
+
|
4281 |
+
score_notes_copy = copy.deepcopy(score_notes)
|
4282 |
+
chordified_score_notes = chordify_score(score_notes_copy)
|
4283 |
+
|
4284 |
+
melody = [c[0] for c in chordified_score_notes]
|
4285 |
+
|
4286 |
+
fixed_melody = []
|
4287 |
+
|
4288 |
+
for i in range(len(melody)-1):
|
4289 |
+
note = melody[i]
|
4290 |
+
nmt = melody[i+1][1]
|
4291 |
+
|
4292 |
+
if note[1]+note[2] >= nmt:
|
4293 |
+
note_dur = nmt-note[1]-1
|
4294 |
+
else:
|
4295 |
+
note_dur = note[2]
|
4296 |
+
|
4297 |
+
melody[i][2] = note_dur
|
4298 |
+
|
4299 |
+
fixed_melody.append(melody[i])
|
4300 |
+
fixed_melody.append(melody[-1])
|
4301 |
+
|
4302 |
+
if return_score_tones_chords:
|
4303 |
+
cscore = chordify_score(score_notes)
|
4304 |
+
for c in cscore:
|
4305 |
+
tones_chord = sorted(set([t[4] % 12 for t in c if t[3] != 9]))
|
4306 |
+
if tones_chord:
|
4307 |
+
tones_chords.append(tones_chord)
|
4308 |
+
|
4309 |
+
if return_chordified_enhanced_score_with_lyrics:
|
4310 |
+
score_with_lyrics = [e for e in enhanced_single_track_score if e[0] in ['note', 'text_event', 'lyric']]
|
4311 |
+
chordified_enhanced_score_with_lyrics = chordify_score(score_with_lyrics)
|
4312 |
+
|
4313 |
+
# Returned data
|
4314 |
+
|
4315 |
+
requested_data = []
|
4316 |
+
|
4317 |
+
if return_score_analysis and analysis:
|
4318 |
+
requested_data.append([[k, v] for k, v in analysis.items()])
|
4319 |
+
|
4320 |
+
if return_enhanced_score and enhanced_single_track_score:
|
4321 |
+
requested_data.append([num_ticks, enhanced_single_track_score])
|
4322 |
+
|
4323 |
+
if return_enhanced_score_notes and score_notes:
|
4324 |
+
requested_data.append(score_notes)
|
4325 |
+
|
4326 |
+
if return_enhanced_monophonic_melody and fixed_melody:
|
4327 |
+
requested_data.append(fixed_melody)
|
4328 |
+
|
4329 |
+
if return_chordified_enhanced_score and cescore:
|
4330 |
+
requested_data.append(cescore)
|
4331 |
+
|
4332 |
+
if return_chordified_enhanced_score_with_lyrics and chordified_enhanced_score_with_lyrics:
|
4333 |
+
requested_data.append(chordified_enhanced_score_with_lyrics)
|
4334 |
+
|
4335 |
+
if return_score_tones_chords and tones_chords:
|
4336 |
+
requested_data.append(tones_chords)
|
4337 |
+
|
4338 |
+
if return_text_and_lyric_events and text_and_lyric_events:
|
4339 |
+
requested_data.append(text_and_lyric_events)
|
4340 |
+
|
4341 |
+
return requested_data
|
4342 |
+
|
4343 |
+
else:
|
4344 |
+
return ['Check score for errors and compatibility!']
|
4345 |
+
|
4346 |
+
###################################################################################
|
4347 |
+
|
4348 |
+
import random
|
4349 |
+
import copy
|
4350 |
+
|
4351 |
+
###################################################################################
|
4352 |
+
|
4353 |
+
def replace_bad_tones_chord(bad_tones_chord):
|
4354 |
+
bad_chord_p = [0] * 12
|
4355 |
+
for b in bad_tones_chord:
|
4356 |
+
bad_chord_p[b] = 1
|
4357 |
+
|
4358 |
+
match_ratios = []
|
4359 |
+
good_chords = []
|
4360 |
+
for c in ALL_CHORDS:
|
4361 |
+
good_chord_p = [0] * 12
|
4362 |
+
for cc in c:
|
4363 |
+
good_chord_p[cc] = 1
|
4364 |
+
|
4365 |
+
good_chords.append(good_chord_p)
|
4366 |
+
match_ratios.append(sum(i == j for i, j in zip(good_chord_p, bad_chord_p)) / len(good_chord_p))
|
4367 |
+
|
4368 |
+
best_good_chord = good_chords[match_ratios.index(max(match_ratios))]
|
4369 |
+
|
4370 |
+
replaced_chord = []
|
4371 |
+
for i in range(len(best_good_chord)):
|
4372 |
+
if best_good_chord[i] == 1:
|
4373 |
+
replaced_chord.append(i)
|
4374 |
+
|
4375 |
+
return [replaced_chord, max(match_ratios)]
|
4376 |
+
|
4377 |
+
###################################################################################
|
4378 |
+
|
4379 |
+
def check_and_fix_chord(chord,
|
4380 |
+
channel_index=3,
|
4381 |
+
pitch_index=4
|
4382 |
+
):
|
4383 |
+
|
4384 |
+
tones_chord = sorted(set([t[pitch_index] % 12 for t in chord if t[channel_index] != 9]))
|
4385 |
+
|
4386 |
+
notes_events = [t for t in chord if t[channel_index] != 9]
|
4387 |
+
notes_events.sort(key=lambda x: x[pitch_index], reverse=True)
|
4388 |
+
|
4389 |
+
drums_events = [t for t in chord if t[channel_index] == 9]
|
4390 |
+
|
4391 |
+
checked_and_fixed_chord = []
|
4392 |
+
|
4393 |
+
if tones_chord:
|
4394 |
+
|
4395 |
+
new_tones_chord = advanced_check_and_fix_tones_chord(tones_chord, high_pitch=notes_events[0][pitch_index])
|
4396 |
+
|
4397 |
+
if new_tones_chord != tones_chord:
|
4398 |
+
|
4399 |
+
if len(notes_events) > 1:
|
4400 |
+
checked_and_fixed_chord.extend([notes_events[0]])
|
4401 |
+
for cc in notes_events[1:]:
|
4402 |
+
if cc[channel_index] != 9:
|
4403 |
+
if (cc[pitch_index] % 12) in new_tones_chord:
|
4404 |
+
checked_and_fixed_chord.extend([cc])
|
4405 |
+
checked_and_fixed_chord.extend(drums_events)
|
4406 |
+
else:
|
4407 |
+
checked_and_fixed_chord.extend([notes_events[0]])
|
4408 |
+
else:
|
4409 |
+
checked_and_fixed_chord.extend(chord)
|
4410 |
+
else:
|
4411 |
+
checked_and_fixed_chord.extend(chord)
|
4412 |
+
|
4413 |
+
checked_and_fixed_chord.sort(key=lambda x: x[pitch_index], reverse=True)
|
4414 |
+
|
4415 |
+
return checked_and_fixed_chord
|
4416 |
+
|
4417 |
+
###################################################################################
|
4418 |
+
|
4419 |
+
def find_similar_tones_chord(tones_chord,
|
4420 |
+
max_match_threshold=1,
|
4421 |
+
randomize_chords_matches=False,
|
4422 |
+
custom_chords_list=[]):
|
4423 |
+
chord_p = [0] * 12
|
4424 |
+
for b in tones_chord:
|
4425 |
+
chord_p[b] = 1
|
4426 |
+
|
4427 |
+
match_ratios = []
|
4428 |
+
good_chords = []
|
4429 |
+
|
4430 |
+
if custom_chords_list:
|
4431 |
+
CHORDS = copy.deepcopy([list(x) for x in set(tuple(t) for t in custom_chords_list)])
|
4432 |
+
else:
|
4433 |
+
CHORDS = copy.deepcopy(ALL_CHORDS)
|
4434 |
+
|
4435 |
+
if randomize_chords_matches:
|
4436 |
+
random.shuffle(CHORDS)
|
4437 |
+
|
4438 |
+
for c in CHORDS:
|
4439 |
+
good_chord_p = [0] * 12
|
4440 |
+
for cc in c:
|
4441 |
+
good_chord_p[cc] = 1
|
4442 |
+
|
4443 |
+
good_chords.append(good_chord_p)
|
4444 |
+
match_ratio = sum(i == j for i, j in zip(good_chord_p, chord_p)) / len(good_chord_p)
|
4445 |
+
if match_ratio < max_match_threshold:
|
4446 |
+
match_ratios.append(match_ratio)
|
4447 |
+
else:
|
4448 |
+
match_ratios.append(0)
|
4449 |
+
|
4450 |
+
best_good_chord = good_chords[match_ratios.index(max(match_ratios))]
|
4451 |
+
|
4452 |
+
similar_chord = []
|
4453 |
+
for i in range(len(best_good_chord)):
|
4454 |
+
if best_good_chord[i] == 1:
|
4455 |
+
similar_chord.append(i)
|
4456 |
+
|
4457 |
+
return [similar_chord, max(match_ratios)]
|
4458 |
+
|
4459 |
+
###################################################################################
|
4460 |
+
|
4461 |
+
def generate_tones_chords_progression(number_of_chords_to_generate=100,
|
4462 |
+
start_tones_chord=[],
|
4463 |
+
custom_chords_list=[]):
|
4464 |
+
|
4465 |
+
if start_tones_chord:
|
4466 |
+
start_chord = start_tones_chord
|
4467 |
+
else:
|
4468 |
+
start_chord = random.choice(ALL_CHORDS)
|
4469 |
+
|
4470 |
+
chord = []
|
4471 |
+
|
4472 |
+
chords_progression = [start_chord]
|
4473 |
+
|
4474 |
+
for i in range(number_of_chords_to_generate):
|
4475 |
+
if not chord:
|
4476 |
+
chord = start_chord
|
4477 |
+
|
4478 |
+
if custom_chords_list:
|
4479 |
+
chord = find_similar_tones_chord(chord, randomize_chords_matches=True, custom_chords_list=custom_chords_list)[0]
|
4480 |
+
else:
|
4481 |
+
chord = find_similar_tones_chord(chord, randomize_chords_matches=True)[0]
|
4482 |
+
|
4483 |
+
chords_progression.append(chord)
|
4484 |
+
|
4485 |
+
return chords_progression
|
4486 |
+
|
4487 |
+
###################################################################################
|
4488 |
+
|
4489 |
+
def ascii_texts_search(texts = ['text1', 'text2', 'text3'],
|
4490 |
+
search_query = 'Once upon a time...',
|
4491 |
+
deterministic_matching = False
|
4492 |
+
):
|
4493 |
+
|
4494 |
+
texts_copy = texts
|
4495 |
+
|
4496 |
+
if not deterministic_matching:
|
4497 |
+
texts_copy = copy.deepcopy(texts)
|
4498 |
+
random.shuffle(texts_copy)
|
4499 |
+
|
4500 |
+
clean_texts = []
|
4501 |
+
|
4502 |
+
for t in texts_copy:
|
4503 |
+
text_words_list = [at.split(chr(32)) for at in t.split(chr(10))]
|
4504 |
+
|
4505 |
+
clean_text_words_list = []
|
4506 |
+
for twl in text_words_list:
|
4507 |
+
for w in twl:
|
4508 |
+
clean_text_words_list.append(''.join(filter(str.isalpha, w.lower())))
|
4509 |
+
|
4510 |
+
clean_texts.append(clean_text_words_list)
|
4511 |
+
|
4512 |
+
text_search_query = [at.split(chr(32)) for at in search_query.split(chr(10))]
|
4513 |
+
clean_text_search_query = []
|
4514 |
+
for w in text_search_query:
|
4515 |
+
for ww in w:
|
4516 |
+
clean_text_search_query.append(''.join(filter(str.isalpha, ww.lower())))
|
4517 |
+
|
4518 |
+
if clean_texts[0] and clean_text_search_query:
|
4519 |
+
texts_match_ratios = []
|
4520 |
+
words_match_indexes = []
|
4521 |
+
for t in clean_texts:
|
4522 |
+
word_match_count = 0
|
4523 |
+
wmis = []
|
4524 |
+
|
4525 |
+
for c in clean_text_search_query:
|
4526 |
+
if c in t:
|
4527 |
+
word_match_count += 1
|
4528 |
+
wmis.append(t.index(c))
|
4529 |
+
else:
|
4530 |
+
wmis.append(-1)
|
4531 |
+
|
4532 |
+
words_match_indexes.append(wmis)
|
4533 |
+
words_match_indexes_consequtive = all(abs(b) - abs(a) == 1 for a, b in zip(wmis, wmis[1:]))
|
4534 |
+
words_match_indexes_consequtive_ratio = sum([abs(b) - abs(a) == 1 for a, b in zip(wmis, wmis[1:])]) / len(wmis)
|
4535 |
+
|
4536 |
+
if words_match_indexes_consequtive:
|
4537 |
+
texts_match_ratios.append(word_match_count / len(clean_text_search_query))
|
4538 |
+
else:
|
4539 |
+
texts_match_ratios.append(((word_match_count / len(clean_text_search_query)) + words_match_indexes_consequtive_ratio) / 2)
|
4540 |
+
|
4541 |
+
if texts_match_ratios:
|
4542 |
+
max_text_match_ratio = max(texts_match_ratios)
|
4543 |
+
max_match_ratio_text = texts_copy[texts_match_ratios.index(max_text_match_ratio)]
|
4544 |
+
max_text_words_match_indexes = words_match_indexes[texts_match_ratios.index(max_text_match_ratio)]
|
4545 |
+
|
4546 |
+
return [max_match_ratio_text, max_text_match_ratio, max_text_words_match_indexes]
|
4547 |
+
|
4548 |
+
else:
|
4549 |
+
return None
|
4550 |
+
|
4551 |
+
###################################################################################
|
4552 |
+
|
4553 |
+
def ascii_text_words_counter(ascii_text):
|
4554 |
+
|
4555 |
+
text_words_list = [at.split(chr(32)) for at in ascii_text.split(chr(10))]
|
4556 |
+
|
4557 |
+
clean_text_words_list = []
|
4558 |
+
for twl in text_words_list:
|
4559 |
+
for w in twl:
|
4560 |
+
wo = ''
|
4561 |
+
for ww in w.lower():
|
4562 |
+
if 96 < ord(ww) < 123:
|
4563 |
+
wo += ww
|
4564 |
+
if wo != '':
|
4565 |
+
clean_text_words_list.append(wo)
|
4566 |
+
|
4567 |
+
words = {}
|
4568 |
+
for i in clean_text_words_list:
|
4569 |
+
words[i] = words.get(i, 0) + 1
|
4570 |
+
|
4571 |
+
words_sorted = dict(sorted(words.items(), key=lambda item: item[1], reverse=True))
|
4572 |
+
|
4573 |
+
return len(clean_text_words_list), words_sorted, clean_text_words_list
|
4574 |
+
|
4575 |
+
###################################################################################
|
4576 |
+
|
4577 |
+
def check_and_fix_tones_chord(tones_chord):
|
4578 |
+
|
4579 |
+
lst = tones_chord
|
4580 |
+
|
4581 |
+
if len(lst) == 2:
|
4582 |
+
if lst[1] - lst[0] == 1:
|
4583 |
+
return [lst[-1]]
|
4584 |
+
else:
|
4585 |
+
if 0 in lst and 11 in lst:
|
4586 |
+
lst.remove(0)
|
4587 |
+
return lst
|
4588 |
+
|
4589 |
+
non_consecutive = [lst[0]]
|
4590 |
+
|
4591 |
+
if len(lst) > 2:
|
4592 |
+
for i in range(1, len(lst) - 1):
|
4593 |
+
if lst[i-1] + 1 != lst[i] and lst[i] + 1 != lst[i+1]:
|
4594 |
+
non_consecutive.append(lst[i])
|
4595 |
+
non_consecutive.append(lst[-1])
|
4596 |
+
|
4597 |
+
if 0 in non_consecutive and 11 in non_consecutive:
|
4598 |
+
non_consecutive.remove(0)
|
4599 |
+
|
4600 |
+
return non_consecutive
|
4601 |
+
|
4602 |
+
###################################################################################
|
4603 |
+
|
4604 |
+
def find_closest_tone(tones, tone):
|
4605 |
+
return min(tones, key=lambda x:abs(x-tone))
|
4606 |
+
|
4607 |
+
def advanced_check_and_fix_tones_chord(tones_chord, high_pitch=0):
|
4608 |
+
|
4609 |
+
lst = tones_chord
|
4610 |
+
|
4611 |
+
if 0 < high_pitch < 128:
|
4612 |
+
ht = high_pitch % 12
|
4613 |
+
else:
|
4614 |
+
ht = 12
|
4615 |
+
|
4616 |
+
cht = find_closest_tone(lst, ht)
|
4617 |
+
|
4618 |
+
if len(lst) == 2:
|
4619 |
+
if lst[1] - lst[0] == 1:
|
4620 |
+
return [cht]
|
4621 |
+
else:
|
4622 |
+
if 0 in lst and 11 in lst:
|
4623 |
+
if find_closest_tone([0, 11], cht) == 11:
|
4624 |
+
lst.remove(0)
|
4625 |
+
else:
|
4626 |
+
lst.remove(11)
|
4627 |
+
return lst
|
4628 |
+
|
4629 |
+
non_consecutive = []
|
4630 |
+
|
4631 |
+
if len(lst) > 2:
|
4632 |
+
for i in range(0, len(lst) - 1):
|
4633 |
+
if lst[i] + 1 != lst[i+1]:
|
4634 |
+
non_consecutive.append(lst[i])
|
4635 |
+
if lst[-1] - lst[-2] > 1:
|
4636 |
+
non_consecutive.append(lst[-1])
|
4637 |
+
|
4638 |
+
if cht not in non_consecutive:
|
4639 |
+
non_consecutive.append(cht)
|
4640 |
+
non_consecutive.sort()
|
4641 |
+
if any(abs(non_consecutive[i+1] - non_consecutive[i]) == 1 for i in range(len(non_consecutive) - 1)):
|
4642 |
+
final_list = [x for x in non_consecutive if x == cht or abs(x - cht) > 1]
|
4643 |
+
else:
|
4644 |
+
final_list = non_consecutive
|
4645 |
+
|
4646 |
+
else:
|
4647 |
+
final_list = non_consecutive
|
4648 |
+
|
4649 |
+
if 0 in final_list and 11 in final_list:
|
4650 |
+
if find_closest_tone([0, 11], cht) == 11:
|
4651 |
+
final_list.remove(0)
|
4652 |
+
else:
|
4653 |
+
final_list.remove(11)
|
4654 |
+
|
4655 |
+
if cht in final_list or ht in final_list:
|
4656 |
+
return final_list
|
4657 |
+
else:
|
4658 |
+
return ['Error']
|
4659 |
+
|
4660 |
+
###################################################################################
|
4661 |
+
|
4662 |
+
def create_similarity_matrix(list_of_values, matrix_length=0):
|
4663 |
+
|
4664 |
+
counts = Counter(list_of_values).items()
|
4665 |
+
|
4666 |
+
if matrix_length > 0:
|
4667 |
+
sim_matrix = [0] * max(matrix_length, len(list_of_values))
|
4668 |
+
else:
|
4669 |
+
sim_matrix = [0] * len(counts)
|
4670 |
+
|
4671 |
+
for c in counts:
|
4672 |
+
sim_matrix[c[0]] = c[1]
|
4673 |
+
|
4674 |
+
similarity_matrix = [[0] * len(sim_matrix) for _ in range(len(sim_matrix))]
|
4675 |
+
|
4676 |
+
for i in range(len(sim_matrix)):
|
4677 |
+
for j in range(len(sim_matrix)):
|
4678 |
+
if max(sim_matrix[i], sim_matrix[j]) != 0:
|
4679 |
+
similarity_matrix[i][j] = min(sim_matrix[i], sim_matrix[j]) / max(sim_matrix[i], sim_matrix[j])
|
4680 |
+
|
4681 |
+
return similarity_matrix, sim_matrix
|
4682 |
+
|
4683 |
+
###################################################################################
|
4684 |
+
|
4685 |
+
def augment_enhanced_score_notes(enhanced_score_notes,
|
4686 |
+
timings_divider=16,
|
4687 |
+
full_sorting=True,
|
4688 |
+
timings_shift=0,
|
4689 |
+
pitch_shift=0
|
4690 |
+
):
|
4691 |
+
|
4692 |
+
esn = copy.deepcopy(enhanced_score_notes)
|
4693 |
+
|
4694 |
+
for e in esn:
|
4695 |
+
e[1] = int(e[1] / timings_divider) + timings_shift
|
4696 |
+
e[2] = int(e[2] / timings_divider) + timings_shift
|
4697 |
+
e[4] = e[4] + pitch_shift
|
4698 |
+
|
4699 |
+
if full_sorting:
|
4700 |
+
|
4701 |
+
# Sorting by patch, pitch, then by start-time
|
4702 |
+
esn.sort(key=lambda x: x[6])
|
4703 |
+
esn.sort(key=lambda x: x[4], reverse=True)
|
4704 |
+
esn.sort(key=lambda x: x[1])
|
4705 |
+
|
4706 |
+
return esn
|
4707 |
+
|
4708 |
+
###################################################################################
|
4709 |
+
|
4710 |
+
def stack_list(lst, base=12):
|
4711 |
+
return sum(j * base**i for i, j in enumerate(lst[::-1]))
|
4712 |
+
|
4713 |
+
def destack_list(num, base=12):
|
4714 |
+
lst = []
|
4715 |
+
while num:
|
4716 |
+
lst.append(num % base)
|
4717 |
+
num //= base
|
4718 |
+
return lst[::-1]
|
4719 |
+
|
4720 |
+
###################################################################################
|
4721 |
+
|
4722 |
+
def extract_melody(chordified_enhanced_score,
|
4723 |
+
melody_range=[48, 84],
|
4724 |
+
melody_channel=0,
|
4725 |
+
melody_patch=0,
|
4726 |
+
melody_velocity=0,
|
4727 |
+
stacked_melody=False,
|
4728 |
+
stacked_melody_base_pitch=60
|
4729 |
+
):
|
4730 |
+
|
4731 |
+
if stacked_melody:
|
4732 |
+
|
4733 |
+
|
4734 |
+
all_pitches_chords = []
|
4735 |
+
for e in chordified_enhanced_score:
|
4736 |
+
all_pitches_chords.append(sorted(set([p[4] for p in e]), reverse=True))
|
4737 |
+
|
4738 |
+
melody_score = []
|
4739 |
+
for i, chord in enumerate(chordified_enhanced_score):
|
4740 |
+
|
4741 |
+
if melody_velocity > 0:
|
4742 |
+
vel = melody_velocity
|
4743 |
+
else:
|
4744 |
+
vel = chord[0][5]
|
4745 |
+
|
4746 |
+
melody_score.append(['note', chord[0][1], chord[0][2], melody_channel, stacked_melody_base_pitch+(stack_list([p % 12 for p in all_pitches_chords[i]]) % 12), vel, melody_patch])
|
4747 |
+
|
4748 |
+
else:
|
4749 |
+
|
4750 |
+
melody_score = copy.deepcopy([c[0] for c in chordified_enhanced_score if c[0][3] != 9])
|
4751 |
+
|
4752 |
+
for e in melody_score:
|
4753 |
+
|
4754 |
+
e[3] = melody_channel
|
4755 |
+
|
4756 |
+
if melody_velocity > 0:
|
4757 |
+
e[5] = melody_velocity
|
4758 |
+
|
4759 |
+
e[6] = melody_patch
|
4760 |
+
|
4761 |
+
if e[4] < melody_range[0]:
|
4762 |
+
e[4] = (e[4] % 12) + melody_range[0]
|
4763 |
+
|
4764 |
+
if e[4] >= melody_range[1]:
|
4765 |
+
e[4] = (e[4] % 12) + (melody_range[1]-12)
|
4766 |
+
|
4767 |
+
return fix_monophonic_score_durations(melody_score)
|
4768 |
+
|
4769 |
+
###################################################################################
|
4770 |
+
|
4771 |
+
def flip_enhanced_score_notes(enhanced_score_notes):
|
4772 |
+
|
4773 |
+
min_pitch = min([e[4] for e in enhanced_score_notes if e[3] != 9])
|
4774 |
+
|
4775 |
+
fliped_score_pitches = [127 - e[4]for e in enhanced_score_notes if e[3] != 9]
|
4776 |
+
|
4777 |
+
delta_min_pitch = min_pitch - min([p for p in fliped_score_pitches])
|
4778 |
+
|
4779 |
+
output_score = copy.deepcopy(enhanced_score_notes)
|
4780 |
+
|
4781 |
+
for e in output_score:
|
4782 |
+
if e[3] != 9:
|
4783 |
+
e[4] = (127 - e[4]) + delta_min_pitch
|
4784 |
+
|
4785 |
+
return output_score
|
4786 |
+
|
4787 |
+
###################################################################################
|
4788 |
+
|
4789 |
+
ALL_CHORDS_SORTED = [[0], [0, 2], [0, 3], [0, 4], [0, 2, 4], [0, 5], [0, 2, 5], [0, 3, 5], [0, 6],
|
4790 |
+
[0, 2, 6], [0, 3, 6], [0, 4, 6], [0, 2, 4, 6], [0, 7], [0, 2, 7], [0, 3, 7],
|
4791 |
+
[0, 4, 7], [0, 5, 7], [0, 2, 4, 7], [0, 2, 5, 7], [0, 3, 5, 7], [0, 8],
|
4792 |
+
[0, 2, 8], [0, 3, 8], [0, 4, 8], [0, 5, 8], [0, 6, 8], [0, 2, 4, 8],
|
4793 |
+
[0, 2, 5, 8], [0, 2, 6, 8], [0, 3, 5, 8], [0, 3, 6, 8], [0, 4, 6, 8],
|
4794 |
+
[0, 2, 4, 6, 8], [0, 9], [0, 2, 9], [0, 3, 9], [0, 4, 9], [0, 5, 9], [0, 6, 9],
|
4795 |
+
[0, 7, 9], [0, 2, 4, 9], [0, 2, 5, 9], [0, 2, 6, 9], [0, 2, 7, 9],
|
4796 |
+
[0, 3, 5, 9], [0, 3, 6, 9], [0, 3, 7, 9], [0, 4, 6, 9], [0, 4, 7, 9],
|
4797 |
+
[0, 5, 7, 9], [0, 2, 4, 6, 9], [0, 2, 4, 7, 9], [0, 2, 5, 7, 9],
|
4798 |
+
[0, 3, 5, 7, 9], [0, 10], [0, 2, 10], [0, 3, 10], [0, 4, 10], [0, 5, 10],
|
4799 |
+
[0, 6, 10], [0, 7, 10], [0, 8, 10], [0, 2, 4, 10], [0, 2, 5, 10],
|
4800 |
+
[0, 2, 6, 10], [0, 2, 7, 10], [0, 2, 8, 10], [0, 3, 5, 10], [0, 3, 6, 10],
|
4801 |
+
[0, 3, 7, 10], [0, 3, 8, 10], [0, 4, 6, 10], [0, 4, 7, 10], [0, 4, 8, 10],
|
4802 |
+
[0, 5, 7, 10], [0, 5, 8, 10], [0, 6, 8, 10], [0, 2, 4, 6, 10],
|
4803 |
+
[0, 2, 4, 7, 10], [0, 2, 4, 8, 10], [0, 2, 5, 7, 10], [0, 2, 5, 8, 10],
|
4804 |
+
[0, 2, 6, 8, 10], [0, 3, 5, 7, 10], [0, 3, 5, 8, 10], [0, 3, 6, 8, 10],
|
4805 |
+
[0, 4, 6, 8, 10], [0, 2, 4, 6, 8, 10], [1], [1, 3], [1, 4], [1, 5], [1, 3, 5],
|
4806 |
+
[1, 6], [1, 3, 6], [1, 4, 6], [1, 7], [1, 3, 7], [1, 4, 7], [1, 5, 7],
|
4807 |
+
[1, 3, 5, 7], [1, 8], [1, 3, 8], [1, 4, 8], [1, 5, 8], [1, 6, 8], [1, 3, 5, 8],
|
4808 |
+
[1, 3, 6, 8], [1, 4, 6, 8], [1, 9], [1, 3, 9], [1, 4, 9], [1, 5, 9], [1, 6, 9],
|
4809 |
+
[1, 7, 9], [1, 3, 5, 9], [1, 3, 6, 9], [1, 3, 7, 9], [1, 4, 6, 9],
|
4810 |
+
[1, 4, 7, 9], [1, 5, 7, 9], [1, 3, 5, 7, 9], [1, 10], [1, 3, 10], [1, 4, 10],
|
4811 |
+
[1, 5, 10], [1, 6, 10], [1, 7, 10], [1, 8, 10], [1, 3, 5, 10], [1, 3, 6, 10],
|
4812 |
+
[1, 3, 7, 10], [1, 3, 8, 10], [1, 4, 6, 10], [1, 4, 7, 10], [1, 4, 8, 10],
|
4813 |
+
[1, 5, 7, 10], [1, 5, 8, 10], [1, 6, 8, 10], [1, 3, 5, 7, 10],
|
4814 |
+
[1, 3, 5, 8, 10], [1, 3, 6, 8, 10], [1, 4, 6, 8, 10], [1, 11], [1, 3, 11],
|
4815 |
+
[1, 4, 11], [1, 5, 11], [1, 6, 11], [1, 7, 11], [1, 8, 11], [1, 9, 11],
|
4816 |
+
[1, 3, 5, 11], [1, 3, 6, 11], [1, 3, 7, 11], [1, 3, 8, 11], [1, 3, 9, 11],
|
4817 |
+
[1, 4, 6, 11], [1, 4, 7, 11], [1, 4, 8, 11], [1, 4, 9, 11], [1, 5, 7, 11],
|
4818 |
+
[1, 5, 8, 11], [1, 5, 9, 11], [1, 6, 8, 11], [1, 6, 9, 11], [1, 7, 9, 11],
|
4819 |
+
[1, 3, 5, 7, 11], [1, 3, 5, 8, 11], [1, 3, 5, 9, 11], [1, 3, 6, 8, 11],
|
4820 |
+
[1, 3, 6, 9, 11], [1, 3, 7, 9, 11], [1, 4, 6, 8, 11], [1, 4, 6, 9, 11],
|
4821 |
+
[1, 4, 7, 9, 11], [1, 5, 7, 9, 11], [1, 3, 5, 7, 9, 11], [2], [2, 4], [2, 5],
|
4822 |
+
[2, 6], [2, 4, 6], [2, 7], [2, 4, 7], [2, 5, 7], [2, 8], [2, 4, 8], [2, 5, 8],
|
4823 |
+
[2, 6, 8], [2, 4, 6, 8], [2, 9], [2, 4, 9], [2, 5, 9], [2, 6, 9], [2, 7, 9],
|
4824 |
+
[2, 4, 6, 9], [2, 4, 7, 9], [2, 5, 7, 9], [2, 10], [2, 4, 10], [2, 5, 10],
|
4825 |
+
[2, 6, 10], [2, 7, 10], [2, 8, 10], [2, 4, 6, 10], [2, 4, 7, 10],
|
4826 |
+
[2, 4, 8, 10], [2, 5, 7, 10], [2, 5, 8, 10], [2, 6, 8, 10], [2, 4, 6, 8, 10],
|
4827 |
+
[2, 11], [2, 4, 11], [2, 5, 11], [2, 6, 11], [2, 7, 11], [2, 8, 11],
|
4828 |
+
[2, 9, 11], [2, 4, 6, 11], [2, 4, 7, 11], [2, 4, 8, 11], [2, 4, 9, 11],
|
4829 |
+
[2, 5, 7, 11], [2, 5, 8, 11], [2, 5, 9, 11], [2, 6, 8, 11], [2, 6, 9, 11],
|
4830 |
+
[2, 7, 9, 11], [2, 4, 6, 8, 11], [2, 4, 6, 9, 11], [2, 4, 7, 9, 11],
|
4831 |
+
[2, 5, 7, 9, 11], [3], [3, 5], [3, 6], [3, 7], [3, 5, 7], [3, 8], [3, 5, 8],
|
4832 |
+
[3, 6, 8], [3, 9], [3, 5, 9], [3, 6, 9], [3, 7, 9], [3, 5, 7, 9], [3, 10],
|
4833 |
+
[3, 5, 10], [3, 6, 10], [3, 7, 10], [3, 8, 10], [3, 5, 7, 10], [3, 5, 8, 10],
|
4834 |
+
[3, 6, 8, 10], [3, 11], [3, 5, 11], [3, 6, 11], [3, 7, 11], [3, 8, 11],
|
4835 |
+
[3, 9, 11], [3, 5, 7, 11], [3, 5, 8, 11], [3, 5, 9, 11], [3, 6, 8, 11],
|
4836 |
+
[3, 6, 9, 11], [3, 7, 9, 11], [3, 5, 7, 9, 11], [4], [4, 6], [4, 7], [4, 8],
|
4837 |
+
[4, 6, 8], [4, 9], [4, 6, 9], [4, 7, 9], [4, 10], [4, 6, 10], [4, 7, 10],
|
4838 |
+
[4, 8, 10], [4, 6, 8, 10], [4, 11], [4, 6, 11], [4, 7, 11], [4, 8, 11],
|
4839 |
+
[4, 9, 11], [4, 6, 8, 11], [4, 6, 9, 11], [4, 7, 9, 11], [5], [5, 7], [5, 8],
|
4840 |
+
[5, 9], [5, 7, 9], [5, 10], [5, 7, 10], [5, 8, 10], [5, 11], [5, 7, 11],
|
4841 |
+
[5, 8, 11], [5, 9, 11], [5, 7, 9, 11], [6], [6, 8], [6, 9], [6, 10],
|
4842 |
+
[6, 8, 10], [6, 11], [6, 8, 11], [6, 9, 11], [7], [7, 9], [7, 10], [7, 11],
|
4843 |
+
[7, 9, 11], [8], [8, 10], [8, 11], [9], [9, 11], [10], [11]]
|
4844 |
+
|
4845 |
+
###################################################################################
|
4846 |
+
|
4847 |
+
MIDI_Instruments_Families = {
|
4848 |
+
0: 'Piano Family',
|
4849 |
+
1: 'Chromatic Percussion Family',
|
4850 |
+
2: 'Organ Family',
|
4851 |
+
3: 'Guitar Family',
|
4852 |
+
4: 'Bass Family',
|
4853 |
+
5: 'Strings Family',
|
4854 |
+
6: 'Ensemble Family',
|
4855 |
+
7: 'Brass Family',
|
4856 |
+
8: 'Reed Family',
|
4857 |
+
9: 'Pipe Family',
|
4858 |
+
10: 'Synth Lead Family',
|
4859 |
+
11: 'Synth Pad Family',
|
4860 |
+
12: 'Synth Effects Family',
|
4861 |
+
13: 'Ethnic Family',
|
4862 |
+
14: 'Percussive Family',
|
4863 |
+
15: 'Sound Effects Family',
|
4864 |
+
16: 'Drums Family',
|
4865 |
+
-1: 'Unknown Family',
|
4866 |
+
}
|
4867 |
+
|
4868 |
+
###################################################################################
|
4869 |
+
|
4870 |
+
def patch_to_instrument_family(MIDI_patch, drums_patch=128):
|
4871 |
+
|
4872 |
+
if 0 <= MIDI_patch < 128:
|
4873 |
+
return MIDI_patch // 8, MIDI_Instruments_Families[MIDI_patch // 8]
|
4874 |
+
|
4875 |
+
elif MIDI_patch == drums_patch:
|
4876 |
+
return MIDI_patch // 8, MIDI_Instruments_Families[16]
|
4877 |
+
|
4878 |
+
else:
|
4879 |
+
return -1, MIDI_Instruments_Families[-1]
|
4880 |
+
|
4881 |
+
###################################################################################
|
4882 |
+
|
4883 |
+
def patch_list_from_enhanced_score_notes(enhanced_score_notes,
|
4884 |
+
default_patch=0,
|
4885 |
+
drums_patch=9,
|
4886 |
+
verbose=False
|
4887 |
+
):
|
4888 |
+
|
4889 |
+
patches = [-1] * 16
|
4890 |
+
|
4891 |
+
for idx, e in enumerate(enhanced_score_notes):
|
4892 |
+
if e[3] != 9:
|
4893 |
+
if patches[e[3]] == -1:
|
4894 |
+
patches[e[3]] = e[6]
|
4895 |
+
else:
|
4896 |
+
if patches[e[3]] != e[6]:
|
4897 |
+
if e[6] in patches:
|
4898 |
+
e[3] = patches.index(e[6])
|
4899 |
+
else:
|
4900 |
+
if -1 in patches:
|
4901 |
+
patches[patches.index(-1)] = e[6]
|
4902 |
+
else:
|
4903 |
+
patches[-1] = e[6]
|
4904 |
+
|
4905 |
+
if verbose:
|
4906 |
+
print('=' * 70)
|
4907 |
+
print('WARNING! Composition has more than 15 patches!')
|
4908 |
+
print('Conflict note number:', idx)
|
4909 |
+
print('Conflict channel number:', e[3])
|
4910 |
+
print('Conflict patch number:', e[6])
|
4911 |
+
|
4912 |
+
patches = [p if p != -1 else default_patch for p in patches]
|
4913 |
+
|
4914 |
+
patches[9] = drums_patch
|
4915 |
+
|
4916 |
+
if verbose:
|
4917 |
+
print('=' * 70)
|
4918 |
+
print('Composition patches')
|
4919 |
+
print('=' * 70)
|
4920 |
+
for c, p in enumerate(patches):
|
4921 |
+
print('Cha', str(c).zfill(2), '---', str(p).zfill(3), Number2patch[p])
|
4922 |
+
print('=' * 70)
|
4923 |
+
|
4924 |
+
return patches
|
4925 |
+
|
4926 |
+
###################################################################################
|
4927 |
+
|
4928 |
+
def patch_enhanced_score_notes(enhanced_score_notes,
|
4929 |
+
default_patch=0,
|
4930 |
+
drums_patch=9,
|
4931 |
+
verbose=False
|
4932 |
+
):
|
4933 |
+
|
4934 |
+
#===========================================================================
|
4935 |
+
|
4936 |
+
enhanced_score_notes_with_patch_changes = []
|
4937 |
+
|
4938 |
+
patches = [-1] * 16
|
4939 |
+
|
4940 |
+
overflow_idx = -1
|
4941 |
+
|
4942 |
+
for idx, e in enumerate(enhanced_score_notes):
|
4943 |
+
if e[3] != 9:
|
4944 |
+
if patches[e[3]] == -1:
|
4945 |
+
patches[e[3]] = e[6]
|
4946 |
+
else:
|
4947 |
+
if patches[e[3]] != e[6]:
|
4948 |
+
if e[6] in patches:
|
4949 |
+
e[3] = patches.index(e[6])
|
4950 |
+
else:
|
4951 |
+
if -1 in patches:
|
4952 |
+
patches[patches.index(-1)] = e[6]
|
4953 |
+
else:
|
4954 |
+
overflow_idx = idx
|
4955 |
+
break
|
4956 |
+
|
4957 |
+
enhanced_score_notes_with_patch_changes.append(e)
|
4958 |
+
|
4959 |
+
#===========================================================================
|
4960 |
+
|
4961 |
+
overflow_patches = []
|
4962 |
+
|
4963 |
+
if overflow_idx != -1:
|
4964 |
+
for idx, e in enumerate(enhanced_score_notes[overflow_idx:]):
|
4965 |
+
if e[3] != 9:
|
4966 |
+
if e[6] not in patches:
|
4967 |
+
if e[6] not in overflow_patches:
|
4968 |
+
overflow_patches.append(e[6])
|
4969 |
+
enhanced_score_notes_with_patch_changes.append(['patch_change', e[1], e[3], e[6]])
|
4970 |
+
else:
|
4971 |
+
e[3] = patches.index(e[6])
|
4972 |
+
|
4973 |
+
enhanced_score_notes_with_patch_changes.append(e)
|
4974 |
+
|
4975 |
+
#===========================================================================
|
4976 |
+
|
4977 |
+
patches = [p if p != -1 else default_patch for p in patches]
|
4978 |
+
|
4979 |
+
patches[9] = drums_patch
|
4980 |
+
|
4981 |
+
#===========================================================================
|
4982 |
+
|
4983 |
+
if verbose:
|
4984 |
+
print('=' * 70)
|
4985 |
+
print('Composition patches')
|
4986 |
+
print('=' * 70)
|
4987 |
+
for c, p in enumerate(patches):
|
4988 |
+
print('Cha', str(c).zfill(2), '---', str(p).zfill(3), Number2patch[p])
|
4989 |
+
print('=' * 70)
|
4990 |
+
|
4991 |
+
if overflow_patches:
|
4992 |
+
print('Extra composition patches')
|
4993 |
+
print('=' * 70)
|
4994 |
+
for c, p in enumerate(overflow_patches):
|
4995 |
+
print(str(p).zfill(3), Number2patch[p])
|
4996 |
+
print('=' * 70)
|
4997 |
+
|
4998 |
+
return enhanced_score_notes_with_patch_changes, patches, overflow_patches
|
4999 |
+
|
5000 |
+
###################################################################################
|
5001 |
+
|
5002 |
+
def create_enhanced_monophonic_melody(monophonic_melody):
|
5003 |
+
|
5004 |
+
enhanced_monophonic_melody = []
|
5005 |
+
|
5006 |
+
for i, note in enumerate(monophonic_melody[:-1]):
|
5007 |
+
|
5008 |
+
enhanced_monophonic_melody.append(note)
|
5009 |
+
|
5010 |
+
if note[1]+note[2] < monophonic_melody[i+1][1]:
|
5011 |
+
|
5012 |
+
delta_time = monophonic_melody[i+1][1] - (note[1]+note[2])
|
5013 |
+
enhanced_monophonic_melody.append(['silence', note[1]+note[2], delta_time, note[3], 0, 0, note[6]])
|
5014 |
+
|
5015 |
+
enhanced_monophonic_melody.append(monophonic_melody[-1])
|
5016 |
+
|
5017 |
+
return enhanced_monophonic_melody
|
5018 |
+
|
5019 |
+
###################################################################################
|
5020 |
+
|
5021 |
+
def frame_monophonic_melody(monophonic_melody, min_frame_time_threshold=10):
|
5022 |
+
|
5023 |
+
mzip = list(zip(monophonic_melody[:-1], monophonic_melody[1:]))
|
5024 |
+
|
5025 |
+
times_counts = Counter([(b[1]-a[1]) for a, b in mzip]).most_common()
|
5026 |
+
|
5027 |
+
mc_time = next((item for item, count in times_counts if item >= min_frame_time_threshold), min_frame_time_threshold)
|
5028 |
+
|
5029 |
+
times = [(b[1]-a[1]) // mc_time for a, b in mzip] + [monophonic_melody[-1][2] // mc_time]
|
5030 |
+
|
5031 |
+
framed_melody = []
|
5032 |
+
|
5033 |
+
for i, note in enumerate(monophonic_melody):
|
5034 |
+
|
5035 |
+
stime = note[1]
|
5036 |
+
count = times[i]
|
5037 |
+
|
5038 |
+
if count != 0:
|
5039 |
+
for j in range(count):
|
5040 |
+
|
5041 |
+
new_note = copy.deepcopy(note)
|
5042 |
+
new_note[1] = stime + (j * mc_time)
|
5043 |
+
new_note[2] = mc_time
|
5044 |
+
framed_melody.append(new_note)
|
5045 |
+
|
5046 |
+
else:
|
5047 |
+
framed_melody.append(note)
|
5048 |
+
|
5049 |
+
return [framed_melody, mc_time]
|
5050 |
+
|
5051 |
+
###################################################################################
|
5052 |
+
|
5053 |
+
def delta_score_notes(score_notes,
|
5054 |
+
timings_clip_value=255,
|
5055 |
+
even_timings=False,
|
5056 |
+
compress_timings=False
|
5057 |
+
):
|
5058 |
+
|
5059 |
+
delta_score = []
|
5060 |
+
|
5061 |
+
pe = score_notes[0]
|
5062 |
+
|
5063 |
+
for n in score_notes:
|
5064 |
+
|
5065 |
+
note = copy.deepcopy(n)
|
5066 |
+
|
5067 |
+
time = n[1] - pe[1]
|
5068 |
+
dur = n[2]
|
5069 |
+
|
5070 |
+
if even_timings:
|
5071 |
+
if time != 0 and time % 2 != 0:
|
5072 |
+
time += 1
|
5073 |
+
if dur % 2 != 0:
|
5074 |
+
dur += 1
|
5075 |
+
|
5076 |
+
time = max(0, min(timings_clip_value, time))
|
5077 |
+
dur = max(0, min(timings_clip_value, dur))
|
5078 |
+
|
5079 |
+
if compress_timings:
|
5080 |
+
time /= 2
|
5081 |
+
dur /= 2
|
5082 |
+
|
5083 |
+
note[1] = int(time)
|
5084 |
+
note[2] = int(dur)
|
5085 |
+
|
5086 |
+
delta_score.append(note)
|
5087 |
+
|
5088 |
+
pe = n
|
5089 |
+
|
5090 |
+
return delta_score
|
5091 |
+
|
5092 |
+
###################################################################################
|
5093 |
+
|
5094 |
+
# This is the end of the TMIDI X Python module
|
5095 |
+
|
5096 |
+
###################################################################################
|
midi_to_colab_audio.py
ADDED
The diff for this file is too large to render.
See raw diff
|
|