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"""
convert_3part.py
λ§λΉλ
ΈκΈ° 1μΈ μ
λ³΄μ© MusicXML β 3ννΈ MML λ³νκΈ°
μ λ κ·μΉ:
1. μ λ μκ°μΆ κΈ°μ€
2. <duration>/<divisions> λ‘ μ€μ κΈΈμ΄ κ³μ°
3. <chord> note = μ§μ non-chord noteμ κ°μ μμμ
4. <backup>/<forward> λ°μ
5. tie(start/stop) λμΌ pitch λ³ν©
6. <harmony> 무μ
7. tempo: <sound tempo> μ°μ , μμΌλ©΄ metronome, κΈ°λ³Έκ° 120
8. λμ 3μ μ΄ν κ·Έλλ‘
9. λμ 4μ μ΄μ β μ΅μμ±+μ΅νμ±+νμ± λν 1μμΌλ‘ μΆμ½
10. μΆλ ₯ Part 1=Melody, Part 2=Chord1/Sub, Part 3=Chord2/Bass κ³ μ
11. λ΄λΆ κ³μ°μ Fraction κ³ μ λ°, μ΅μ’
μΆλ ₯ μ§μ μλ§ MML ν ν°μΌλ‘ λ³ν
12. pitch/start/duration/tempo 보쑴 μ΅μ°μ ; slur/layout/harmony text 무μ
Usage:
python convert_3part.py file1.mxl [file2.mxl ...] -o output.txt [--append]
"""
from __future__ import annotations
import argparse
import sys
import zipfile
import xml.etree.ElementTree as ET
from fractions import Fraction
from functools import lru_cache
from typing import List, Tuple, Optional, Dict
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# μμ
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
QUARTER_TICKS = 12 # quarter note = 12 ticks
WHOLE_TICKS = 48 # whole note = 48 ticks
STEP_TO_SEMI: Dict[str, int] = {
'C': 0, 'D': 2, 'E': 4, 'F': 5, 'G': 7, 'A': 9, 'B': 11
}
SEMI_TO_NOTE: Dict[int, str] = {
0: 'c', 1: 'c+', 2: 'd', 3: 'd+', 4: 'e',
5: 'f', 6: 'f+', 7: 'g', 8: 'g+', 9: 'a', 10: 'a+', 11: 'b'
}
# (tick, MML token) β λ΄λ¦Όμ°¨μ μ λ ¬ (DP greedyμ©)
MML_DUR_TABLE: List[Tuple[int, str]] = sorted([
(48, '1'), (36, '2.'), (24, '2'), (18, '4.'), (16, '3'),
(12, '4'), (9, '8.'), (8, '6'), (6, '8'), (4, '12'),
(3, '16'), (2, '24'), (1, '48'),
], reverse=True)
MML_TICK_TO_TOKEN: Dict[int, str] = dict(MML_DUR_TABLE)
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# MXL / XML μ΄κΈ°
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def open_mxl_or_xml(path: str) -> str:
"""MXL(zip) λλ μΌλ° XML/MusicXML νμΌμμ MusicXML λ¬Έμμ΄ λ°ν"""
if path.lower().endswith('.mxl'):
with zipfile.ZipFile(path) as zf:
# META-INF/container.xml μμ rootfile κ²½λ‘ μ°ΎκΈ°
try:
container = zf.read('META-INF/container.xml')
croot = ET.fromstring(container)
for elem in croot.iter():
if '}' in elem.tag:
elem.tag = elem.tag.split('}')[1]
rf = croot.find('.//rootfile')
xml_name = rf.attrib['full-path'] if rf is not None else ''
except Exception:
xml_name = ''
if not xml_name:
# fallback: 첫 λ²μ§Έ .xml λλ .musicxml νμΌ
xml_name = next(
(n for n in zf.namelist()
if n.endswith('.xml') or n.endswith('.musicxml')),
''
)
if not xml_name:
raise FileNotFoundError(f'MXL μμμ MusicXMLμ μ°Ύμ§ λͺ»ν¨: {path}')
return zf.read(xml_name).decode('utf-8', errors='replace')
else:
with open(path, encoding='utf-8', errors='replace') as f:
return f.read()
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# MusicXML νμ±
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def strip_ns(root: ET.Element) -> None:
"""namespace μ κ±°"""
for elem in root.iter():
if '}' in elem.tag:
elem.tag = elem.tag.split('}')[1]
def parse_tempo(root: ET.Element) -> int:
"""κ·μΉ 7: <sound tempo> μ°μ , μμΌλ©΄ metronome, κΈ°λ³Έ 120"""
for sound in root.iter('sound'):
t = sound.attrib.get('tempo')
if t:
try:
return int(float(t))
except ValueError:
pass
for metro in root.iter('metronome'):
bpm = metro.findtext('per-minute')
if bpm:
try:
return int(float(bpm))
except ValueError:
pass
return 120
def frac_tick(raw_dur: int, divisions: int) -> Fraction:
"""XML raw duration β Fraction ticks (κ·μΉ 2)"""
if divisions <= 0:
divisions = 1
return Fraction(raw_dur * QUARTER_TICKS, divisions)
# <type> μμ κΈ°λ° duration ν΄λ°± ν
μ΄λΈ (divisions μ€λ₯ μ μ¬μ©)
_TYPE_TICKS: dict = {
'breve': Fraction(96), 'whole': Fraction(48), 'half': Fraction(24),
'quarter': Fraction(12), 'eighth': Fraction(6), '16th': Fraction(3),
'32nd': Fraction(3, 2), '64th': Fraction(3, 4),
}
def _dur_from_type(note_elem: ET.Element) -> Optional[Fraction]:
"""<type> + <dot> μμλ‘ duration(ticks) κ³μ°. μμΌλ©΄ None."""
t = note_elem.findtext('type')
if t not in _TYPE_TICKS:
return None
ticks = _TYPE_TICKS[t]
for _ in note_elem.findall('dot'):
ticks = ticks * Fraction(3, 2)
return ticks
def parse_part(part_elem: ET.Element) -> Tuple[List[dict], Fraction]:
"""
λ¨μΌ <part>λ₯Ό μ λ μκ°μΆμΌλ‘ νμ± (κ·μΉ 1~6).
Returns: (events, total_ticks)
event = {'start': Fraction, 'dur': Fraction, 'midi': int, 'tie': frozenset}
"""
events: List[dict] = []
measure_start = Fraction(0)
divisions = 1
divisions_valid = False # XMLμμ μ ν¨ν divisions κ°(>0)μ μ½μλμ§ μ¬λΆ
for m in part_elem.findall('measure'):
# attributes μ°μ νμΈ
attr = m.find('attributes')
if attr is not None:
d = attr.findtext('divisions')
if d:
divisions = int(d)
if divisions > 0:
divisions_valid = True
# divisions=0 μΈ implicit λ§λλ Audiveris μν°ν©νΈ β 건λλ
if not divisions_valid and m.get('implicit') == 'yes':
continue
def get_dur(raw_dur: int, note_elem: Optional[ET.Element] = None) -> Fraction:
"""divisions μ ν¨νλ©΄ κ³μ°κ° μ¬μ©, μλλ©΄ <type> κΈ°λ° ν΄λ°±."""
if divisions_valid:
return frac_tick(raw_dur, divisions)
if note_elem is not None:
t = _dur_from_type(note_elem)
if t is not None:
return t
return frac_tick(raw_dur, max(divisions, 1))
cursor = Fraction(0) # λ§λ λ΄ raw cursor (frac ticks)
max_cursor = Fraction(0)
last_note_start: Optional[Fraction] = None
for child in m:
tag = child.tag
if tag == 'backup':
# κ·μΉ 4: backup
raw = int(child.findtext('duration', '0'))
cursor -= get_dur(raw)
elif tag == 'forward':
# κ·μΉ 4: forward
raw = int(child.findtext('duration', '0'))
cursor += get_dur(raw)
max_cursor = max(max_cursor, cursor)
elif tag == 'harmony':
# κ·μΉ 6: harmony 무μ
pass
elif tag == 'note':
raw_dur = int(child.findtext('duration', '0'))
dur_f = get_dur(raw_dur, child)
is_chord = child.find('chord') is not None
is_rest = child.find('rest') is not None
is_grace = child.find('grace') is not None
# κ·μΉ: grace κΈ°λ³Έ μ κ±°
if is_grace:
if not is_chord:
# graceλ duration=0 μ΄ λ§μ§λ§ νΉμ μμΌλ©΄
cursor += dur_f
max_cursor = max(max_cursor, cursor)
continue
# κ·μΉ 3: chord noteλ μ§μ non-chord noteμ κ°μ μμμ
if is_chord:
note_start = last_note_start if last_note_start is not None else cursor
else:
note_start = cursor
last_note_start = cursor
tie_types = frozenset(t.attrib.get('type') for t in child.findall('tie'))
if not is_rest:
p = child.find('pitch')
if p is not None:
step = p.findtext('step', 'C')
octave = int(p.findtext('octave', '4'))
alter = int(float(p.findtext('alter', '0')))
midi = (octave + 1) * 12 + STEP_TO_SEMI.get(step, 0) + alter
abs_start = measure_start + note_start
staff = int(child.findtext('staff', '1'))
events.append({
'start': abs_start,
'dur': dur_f,
'midi': midi,
'tie': tie_types,
'staff': staff,
})
# cursor κ°±μ (κ·μΉ 3: chordλ cursor μ΄λ μ ν¨)
if not is_chord:
cursor += dur_f
max_cursor = max(max_cursor, cursor)
else:
max_cursor = max(max_cursor, note_start + dur_f)
measure_start += max_cursor
return events, measure_start
def parse_xml_string(xml_str: str) -> Tuple[List[dict], Fraction, int]:
"""MusicXML λ¬Έμμ΄ β (λͺ¨λ ννΈ μ΄λ²€νΈ ν©μ°, μ΄ ticks, tempo)"""
root = ET.fromstring(xml_str.encode('utf-8', errors='replace')
if isinstance(xml_str, str) else xml_str)
strip_ns(root)
tempo = parse_tempo(root)
all_events: List[dict] = []
total_dur = Fraction(0)
for part in root.findall('part'):
evs, part_dur = parse_part(part)
all_events.extend(evs)
total_dur = max(total_dur, part_dur)
return all_events, total_dur, tempo
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# νμ΄ λ³ν© (κ·μΉ 5)
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def merge_ties(events: List[dict]) -> List[dict]:
"""λμΌ pitchμ tie startβstop μ°κ²°μ μ§μμμΌλ‘ λ³ν©"""
out: List[dict] = []
# midi β index in out
ongoing: Dict[int, int] = {}
for e in sorted(events, key=lambda x: (x['start'], x['midi'])):
midi = e['midi']
tie = e['tie']
if 'stop' in tie and midi in ongoing:
prev = out[ongoing[midi]]
# μ°μ(μ§μ noteμ λ == νμ¬ μμ)μ΄μ΄μΌ λ³ν©
if prev['start'] + prev['dur'] == e['start']:
prev['dur'] += e['dur']
if 'start' not in tie:
del ongoing[midi]
continue # νμ¬ μ΄λ²€νΈλ₯Ό λ³λ μΆκ°νμ§ μμ
# μ μ΄λ²€νΈλ‘ μΆκ°
new_ev = {k: v for k, v in e.items()}
out.append(new_ev)
if 'start' in tie:
ongoing[midi] = len(out) - 1
return out
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# λμμ μΆμ½ (κ·μΉ 8~9)
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def _best_middle(pitches: List[int], top: int, bot: int) -> Optional[int]:
"""
top/bot μ μΈ ν보μμ νμ± μ 체μ±μ κ°μ₯ μ΄λ¦¬λ 1μ λ°ν.
μ κ±° μ°μ μμ: μ₯νλΈ μ€λ³΅ > μμ 5λ μ€λ³΅ > ν΅κ³Όμ
"""
candidates = [p for p in pitches if p != top and p != bot]
if not candidates:
return None
top_cls = top % 12
bot_cls = bot % 12
# 1λ¨κ³: top/botκ³Ό μ₯νλΈ μ€λ³΅ μ κ±°
f1 = [p for p in candidates if p % 12 not in (top_cls, bot_cls)]
if f1:
candidates = f1
# 2λ¨κ³: topμ μμ 5λ(7λ°μ μλ) μ μ κ±°
p5_cls = (top_cls - 7) % 12
f2 = [p for p in candidates if p % 12 != p5_cls]
if f2:
candidates = f2
# 3λ¨κ³: νμ λ΄ μ°μ μμ (λ¨3/μ₯3/λ¨7 λ±) κΈ°μ€ μ ν
PREFERRED_INTERVALS = {3: 0, 4: 1, 10: 2, 9: 3, 7: 4, 8: 5, 5: 6, 2: 7}
def harmony_score(p: int):
interval = (top - p) % 12
return (PREFERRED_INTERVALS.get(interval, 10), -p)
return min(candidates, key=harmony_score)
def reduce_simultaneous(events: List[dict]) -> List[dict]:
"""
κ·μΉ 8~9: κ°μ start_tickμμ 4μ μ΄μ λμ μμμ΄λ©΄ 3μμΌλ‘ μΆμ½.
"""
by_start: Dict[Fraction, List[dict]] = {}
for e in events:
by_start.setdefault(e['start'], []).append(e)
result: List[dict] = []
for start in sorted(by_start):
group = sorted(by_start[start], key=lambda x: -x['midi'])
if len(group) <= 3:
result.extend(group)
else:
top = group[0]
bot = group[-1]
pitches = [ev['midi'] for ev in group]
mid_pitch = _best_middle(pitches, top['midi'], bot['midi'])
kept = [top]
if mid_pitch is not None:
# groupμμ ν΄λΉ pitchμ μ΄λ²€νΈ μ°ΎκΈ° (top/bot μ μΈ)
for ev in group[1:-1]:
if ev['midi'] == mid_pitch:
kept.append(ev)
break
kept.append(bot)
result.extend(kept)
return result
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# 3νΈλ λ°°μ (κ·μΉ 10)
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def assign_3_tracks(
events: List[dict],
total_dur: Fraction
) -> Tuple[List[dict], List[dict], List[dict]]:
"""
μ΄λ²€νΈλ₯Ό Melody(0) / Chord1(1) / Bass(2) 3νΈλμΌλ‘ λ°°μ .
λμ μμ: κ³ μβMelody, μ€κ°βChord1, μ μβBass.
λ¨λ
μ: λΉ νΈλμ Melody μ°μ λ°°μ .
"""
tracks: List[List[dict]] = [[], [], []]
track_end = [Fraction(-1)] * 3 # κ° νΈλμ νμ¬ μ μ λ tick
by_start: Dict[Fraction, List[dict]] = {}
for e in events:
by_start.setdefault(e['start'], []).append(e)
for start in sorted(by_start):
group = sorted(by_start[start], key=lambda x: -x['midi'])
n = len(group)
if n >= 3:
# 3μ: κ³ β0(Melody), μ€β1(Chord1), μ β2(Bass)
for tidx, ev in [(0, group[0]), (1, group[1]), (2, group[-1])]:
tracks[tidx].append(ev)
track_end[tidx] = ev['start'] + ev['dur']
elif n == 2:
# 2μ: κ³ βMelody, μ βBass μλ
pairs = [(0, group[0]), (2, group[1])]
for tidx, ev in pairs:
if track_end[tidx] <= ev['start']:
tracks[tidx].append(ev)
track_end[tidx] = ev['start'] + ev['dur']
elif track_end[1] <= ev['start']:
tracks[1].append(ev)
track_end[1] = ev['start'] + ev['dur']
# λͺ¨λ κ²ΉμΉλ©΄ skip (μμ€ νμ©)
else: # n == 1
ev = group[0]
# λΉ νΈλμ Melody μ°μ
assigned = False
for tidx in [0, 1, 2]:
if track_end[tidx] <= ev['start']:
tracks[tidx].append(ev)
track_end[tidx] = ev['start'] + ev['dur']
assigned = True
break
# λͺ¨λ busyλ©΄ pitchκ° κ°μ₯ κ°κΉμ΄ νΈλμ κ°μ λ°°μ
if not assigned:
closest = min(
range(3),
key=lambda i: abs(
(tracks[i][-1]['midi'] if tracks[i] else 60) - ev['midi']
)
)
tracks[closest].append(ev)
track_end[closest] = max(track_end[closest], ev['start'] + ev['dur'])
# κ° νΈλ start κΈ°μ€ μ λ ¬
for i in range(3):
tracks[i].sort(key=lambda e: (e['start'], -e['midi']))
return tracks[0], tracks[1], tracks[2]
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# ν± β MML ν ν° λΆν΄ (κ·μΉ 11)
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
@lru_cache(maxsize=4096)
def _decompose_dp(rem: int) -> Optional[tuple]:
"""DPλ‘ rem ν±μ MML ν ν° ν± λ¦¬μ€νΈλ‘ λΆν΄ (μ΅μ ν ν° μ)"""
if rem == 0:
return ()
best: Optional[tuple] = None
for tick, _ in MML_DUR_TABLE:
if tick <= rem:
tail = _decompose_dp(rem - tick)
if tail is not None:
cand = (tick,) + tail
if best is None or len(cand) < len(best):
best = cand
return best
def decompose_duration(ticks: Fraction) -> List[Tuple[int, str]]:
"""Fraction ν± β [(tick, MML_token), ...] (κ·μΉ 11)"""
iticks = round(float(ticks))
iticks = max(0, iticks)
if iticks == 0:
return []
parts = _decompose_dp(iticks)
if parts is None:
raise ValueError(f'λΆν΄ λΆκ°: {ticks} β {iticks} ticks')
return [(t, MML_TICK_TO_TOKEN[t]) for t in parts]
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# MML λΉλ
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def _midi_to_oct_note(midi: int) -> Tuple[int, str]:
return midi // 12 - 1, SEMI_TO_NOTE[midi % 12]
def build_track_mml(events: List[dict], total_dur: Fraction, optimize: bool = True) -> str:
"""μ΄λ²€νΈ 리μ€νΈ + μ΄ κΈΈμ΄ β MML λ¬Έμμ΄ (MML@ μ ; μ μΈ)
optimize=True:
- Β±1 μ₯νλΈ μ΄λ: oN λμ >/< μ¬μ©
- κ°μ μνκΈΈμ΄ 3κ° μ΄μ μ°μ: lN μ€μ ν suffix μλ΅
"""
# Phase 1: raw ν ν° μμ±
# ('oct', int) | ('note', str, str) | ('rest', str) | ('tie',)
raw: List[tuple] = []
cur_time = Fraction(0)
cur_oct: Optional[int] = None
for e in events:
if e['start'] > cur_time:
for _, tok in decompose_duration(e['start'] - cur_time):
raw.append(('rest', tok))
cur_time = e['start']
if e['start'] < cur_time:
continue
octave, note = _midi_to_oct_note(e['midi'])
if cur_oct != octave:
raw.append(('oct', octave))
cur_oct = octave
dur_parts = decompose_duration(e['dur'])
for i, (_, tok) in enumerate(dur_parts):
raw.append(('note', note, tok))
if i < len(dur_parts) - 1:
raw.append(('tie',))
cur_time = e['start'] + e['dur']
if cur_time < total_dur:
for _, tok in decompose_duration(total_dur - cur_time):
raw.append(('rest', tok))
# Phase 2: μ°μ κ°μ duration run κΈΈμ΄ κ³μ° (optimize μμλ§ μ¬μ©)
n = len(raw)
run_len = [1] * n
if optimize:
for i in range(n - 2, -1, -1):
a, b = raw[i], raw[i + 1]
if a[0] in ('note', 'rest') and b[0] in ('note', 'rest'):
da = a[2] if a[0] == 'note' else a[1]
db = b[2] if b[0] == 'note' else b[1]
if da == db:
run_len[i] = run_len[i + 1] + 1
# Phase 3: μΆλ ₯ μμ±
pieces: List[str] = []
cur_oct = None
cur_len: Optional[str] = None
for i, t in enumerate(raw):
if t[0] == 'oct':
new_oct = t[1]
if cur_oct is not None:
diff = new_oct - cur_oct
if optimize and diff == 1:
pieces.append('>')
elif optimize and diff == -1:
pieces.append('<')
else:
pieces.append(f'o{new_oct}')
else:
pieces.append(f'o{new_oct}')
cur_oct = new_oct
elif t[0] == 'tie':
pieces.append('&')
elif t[0] == 'rest':
suffix = t[1]
if optimize and run_len[i] >= 3 and suffix != cur_len:
pieces.append(f'l{suffix}')
cur_len = suffix
pieces.append('r' if suffix == cur_len else 'r' + suffix)
elif t[0] == 'note':
note, suffix = t[1], t[2]
if optimize and run_len[i] >= 3 and suffix != cur_len:
pieces.append(f'l{suffix}')
cur_len = suffix
pieces.append(note if suffix == cur_len else note + suffix)
return ''.join(pieces)
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# λ³ν νμ΄νλΌμΈ
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def convert_files(file_paths: List[str], optimize: bool = True) -> Tuple[str, str, str, int]:
"""
μ¬λ¬ νμΌ(νμ΄μ§ μμ)μ μ°κ²°ν΄ 3ννΈ MMLλ‘ λ³ν.
Returns: (melody_mml, chord1_mml, bass_mml, tempo)
"""
all_events: List[dict] = []
total_dur = Fraction(0)
tempo = 120
for path in file_paths:
xml_str = open_mxl_or_xml(path)
evs, dur, bpm = parse_xml_string(xml_str)
# νμ΄μ§ μ€νμ
μ μ©
for e in evs:
e['start'] += total_dur
all_events.extend(evs)
total_dur += dur
tempo = bpm
# νμ΄νλΌμΈ
all_events = merge_ties(all_events) # κ·μΉ 5
all_events = reduce_simultaneous(all_events) # κ·μΉ 8~9
mel, ch1, bas = assign_3_tracks(all_events, total_dur) # κ·μΉ 10
melody_mml = build_track_mml(mel, total_dur, optimize=optimize)
chord1_mml = build_track_mml(ch1, total_dur, optimize=optimize)
bass_mml = build_track_mml(bas, total_dur, optimize=optimize)
return melody_mml, chord1_mml, bass_mml, tempo
def format_output(melody: str, chord1: str, bass: str, tempo: int) -> str:
"""
3ννΈ MML κ²°κ³Όλ₯Ό ν
μ€νΈ νμμΌλ‘ ν¬λ§€ν
.
λ§λΉλ
ΈκΈ° 1μΈ μ
보μ©: MML@p1,p2,p3; ν΅ν© ν¬λ§·μΌλ‘ μΆλ ₯.
"""
lines = [
'Part 1',
f'MML@{melody};',
'',
'Part 2',
f'MML@{chord1};',
'',
'Part 3',
f'MML@{bass};',
]
return '\n'.join(lines)
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# κ°μΌκΈ λͺ¨λ
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def _clamp_midi_to_range(midi: int, lo: int, hi: int) -> int:
"""MIDI λ²νΈλ₯Ό lo~hi λ²μ μμΌλ‘ 12λ°μ λ¨μλ‘ μ‘°μ ."""
while midi > hi:
midi -= 12
while midi < lo:
midi += 12
return midi
def convert_files_gayageum(file_paths: List[str], optimize: bool = True) -> Tuple[str, str, str, int]:
"""
κ°μΌκΈ λͺ¨λ λ³ν.
Staff 1(μ€λ₯Έμ) β λν(o5~o8, MIDI 72~107): MIDI +48 ν ν΄λ¨ν
Staff 2(μΌμ) β νμ(o1~o4, MIDI 24~59): λ²μ λ²μ΄λλ©΄ ν΄λ¨ν
ν©μ° ν 3ννΈλ‘ μμΆ.
Returns: (melody_mml, chord1_mml, bass_mml, tempo)
"""
all_events: List[dict] = []
total_dur = Fraction(0)
tempo = 120
for path in file_paths:
xml_str = open_mxl_or_xml(path)
evs, dur, bpm = parse_xml_string(xml_str)
for e in evs:
e['start'] += total_dur
all_events.extend(evs)
total_dur += dur
tempo = bpm
all_events = merge_ties(all_events)
staff_map = split_by_staff(all_events)
mapped: List[dict] = []
# Staff 1: μ€λ₯Έμ β λν (o5~o8, MIDI 72~107)
for e in staff_map.get(1, []):
ne = dict(e)
ne['midi'] = _clamp_midi_to_range(e['midi'] + 48, 72, 107)
mapped.append(ne)
# Staff 2: μΌμ β νμ (o1~o4, MIDI 24~59)
for e in staff_map.get(2, []):
ne = dict(e)
ne['midi'] = _clamp_midi_to_range(e['midi'], 24, 59)
mapped.append(ne)
mapped = reduce_simultaneous(mapped)
mel, ch1, bas = assign_3_tracks(mapped, total_dur)
melody_mml = build_track_mml(mel, total_dur, optimize=optimize)
chord1_mml = build_track_mml(ch1, total_dur, optimize=optimize)
bass_mml = build_track_mml(bas, total_dur, optimize=optimize)
return melody_mml, chord1_mml, bass_mml, tempo
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# staff κΈ°λ° λΆλ¦¬
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def split_by_staff(events: List[dict]) -> Dict[int, List[dict]]:
"""μ΄λ²€νΈλ₯Ό staff λ²νΈλ³λ‘ λΆλ¦¬. {staff_num: [events]}"""
result: Dict[int, List[dict]] = {}
for e in events:
s = e.get('staff', 1)
result.setdefault(s, []).append(e)
return result
def convert_files_by_staff(file_paths: List[str], optimize: bool = True) -> Tuple[Dict[int, str], Fraction, int]:
"""
Staffλ³λ‘ MMLμ λΆλ¦¬ν΄μ λ°ν.
Returns: ({staff_num: mml_str}, total_dur, tempo)
"""
all_events: List[dict] = []
total_dur = Fraction(0)
tempo = 120
for path in file_paths:
xml_str = open_mxl_or_xml(path)
evs, dur, bpm = parse_xml_string(xml_str)
for e in evs:
e['start'] += total_dur
all_events.extend(evs)
total_dur += dur
tempo = bpm
all_events = merge_ties(all_events)
staff_events = split_by_staff(all_events)
staff_mmls: Dict[int, str] = {}
for staff_num, evs in sorted(staff_events.items()):
# staff λ΄ λμμμ λμμ μμΌλ‘ nκ° νΈλμΌλ‘ λΆλ¦¬
tracks = assign_n_tracks(evs, total_dur)
# κ° νΈλμ MMLλ‘ λ³ν ν ν©μ° (staff νλ = μ¬λ¬ νΈλ κ°λ₯)
track_mmls = [build_track_mml(t, total_dur, optimize=optimize) for t in tracks]
staff_mmls[staff_num] = track_mmls # νΈλ 리μ€νΈλ‘ μ μ₯
return staff_mmls, total_dur, tempo
def format_output_by_staff(staff_mmls: Dict[int, list], total_dur: Fraction, tempo: int) -> str:
"""
Staffλ³ MMLμ ννΈ ννλ‘ μΆλ ₯.
Staff 1 = μ€λ₯Έμ(λ©λ‘λ), Staff 2 = μΌμ(λ² μ΄μ€) μ.
"""
lines = []
part_num = 1
for staff_num, track_mmls in sorted(staff_mmls.items()):
hand = 'μ€λ₯Έμ' if staff_num == 1 else 'μΌμ' if staff_num == 2 else f'Staff {staff_num}'
for i, mml in enumerate(track_mmls, 1):
lines.append(f'Part {part_num} [{hand} Track {i}]')
lines.append(f'MML@{mml};')
lines.append('')
part_num += 1
return '\n'.join(lines)
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# --all-notes λͺ¨λ: λμμ μ λΆ ν¬ν¨, ννΈ μ = μ΅λ λμμ μ
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def assign_n_tracks(events: List[dict], total_dur: Fraction) -> List[List[dict]]:
"""
λμμμ λμμ μμΌλ‘ Nκ° νΈλμ λ°°μ . μ νλλ λ²λ¦¬μ§ μμ.
N = μ 체 μ
보μμ λμμ μΈλ¦¬λ μμ μ΅λ κ°μ.
Returns: Nκ° νΈλ 리μ€νΈ (κ° νΈλμ event dict 리μ€νΈ)
"""
if not events:
return [[]]
# κ° μμ μμ μ λμμ κ°μ νμ
β μ΅λκ° N
from collections import defaultdict
start_groups: dict = defaultdict(list)
for e in events:
start_groups[e['start']].append(e)
max_poly = max(len(g) for g in start_groups.values())
n = max(max_poly, 1)
tracks: List[List[dict]] = [[] for _ in range(n)]
for start, group in sorted(start_groups.items()):
# λμμ μ μ λ ¬
sorted_group = sorted(group, key=lambda e: e['midi'], reverse=True)
for i, ev in enumerate(sorted_group):
tracks[i % n].append(ev)
return tracks
def format_output_n(tracks: List[List[dict]], total_dur: Fraction, tempo: int, optimize: bool = True) -> str:
"""
NννΈ MML κ²°κ³Όλ₯Ό ν
μ€νΈ νμμΌλ‘ ν¬λ§€ν
.
Part 1 ~ Part N νμ.
"""
lines = []
for i, track in enumerate(tracks, 1):
mml = build_track_mml(track, total_dur, optimize=optimize)
lines.append(f'Part {i}')
lines.append(f'MML@{mml};')
lines.append('')
return '\n'.join(lines)
def convert_files_all_notes(file_paths: List[str]) -> Tuple[List[List[dict]], Fraction, int]:
"""
μ¬λ¬ νμΌμ μ°κ²°ν΄ NννΈ(μ΅λ λμμ μ)λ‘ λ³ν.
Returns: (tracks, total_dur, tempo)
"""
all_events: List[dict] = []
total_dur = Fraction(0)
tempo = 120
for path in file_paths:
xml_str = open_mxl_or_xml(path)
evs, dur, bpm = parse_xml_string(xml_str)
for e in evs:
e['start'] += total_dur
all_events.extend(evs)
total_dur += dur
tempo = bpm
all_events = merge_ties(all_events)
tracks = assign_n_tracks(all_events, total_dur)
return tracks, total_dur, tempo
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
# CLI
# βββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββββ
def main():
parser = argparse.ArgumentParser(description='MusicXML β 3ννΈ MML λ³νκΈ°')
parser.add_argument('files', nargs='+', help='μ
λ ₯ MXL/XML νμΌ (νμ΄μ§ μμ)')
parser.add_argument('-o', '--output', help='μΆλ ₯ νμΌ κ²½λ‘')
parser.add_argument('--append', action='store_true',
help='κΈ°μ‘΄ νμΌ νλ¨μ ꡬλΆμ κ³Ό ν¨κ» μΆκ°')
parser.add_argument('--all-notes', action='store_true',
help='λμμ μ λΆ ν¬ν¨, ννΈ μ=μ΅λ λμμ μ λͺ¨λ')
parser.add_argument('--gayageum', action='store_true',
help='κ°μΌκΈ λͺ¨λ: μ€λ₯Έμβλν(o5~o8), μΌμβνμ(o1~o4), 3ννΈ μΆλ ₯')
args = parser.parse_args()
print(f'λ³ν μ€: {args.files}', file=sys.stderr)
if args.gayageum:
melody, chord1, bass, tempo = convert_files_gayageum(args.files)
result_text = format_output(melody, chord1, bass, tempo)
print('κ°μΌκΈ λͺ¨λ: μ€λ₯Έμβλν(o5~o8), μΌμβνμ(o1~o4)', file=sys.stderr)
elif args.all_notes:
tracks, total_dur, tempo = convert_files_all_notes(args.files)
result_text = format_output_n(tracks, total_dur, tempo)
print(f'ννΈ μ: {len(tracks)}', file=sys.stderr)
else:
melody, chord1, bass, tempo = convert_files(args.files)
result_text = format_output(melody, chord1, bass, tempo)
if args.output:
if args.append:
SEP = '\n' + '-' * 40 + '\n'
with open(args.output, 'a', encoding='utf-8') as f:
f.write(SEP)
f.write(result_text)
f.write('\n')
else:
with open(args.output, 'w', encoding='utf-8') as f:
f.write(result_text)
f.write('\n')
print(f'μ μ₯: {args.output}', file=sys.stderr)
else:
print(result_text)
if __name__ == '__main__':
main()
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