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325 lines
14 KiB
Python
325 lines
14 KiB
Python
import math
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from collections import deque
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from pathlib import Path
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from libs.utils import get_pixels_per_frame, strip_comments
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def calculate_base_score(play_note_list: deque[dict]) -> int:
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total_notes = 0
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balloon_num = 0
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balloon_count = 0
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drumroll_sec = 0
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for i in range(len(play_note_list)):
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note = play_note_list[i]
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if i < len(play_note_list)-1:
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next_note = play_note_list[i+1]
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else:
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next_note = play_note_list[len(play_note_list)-1]
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if note.get('note') in {'1','2','3','4'}:
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total_notes += 1
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elif note.get('note') in {'5', '6'}:
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drumroll_sec += (next_note['ms'] - note['ms']) / 1000
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elif note.get('note') in {'7', '9'}:
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balloon_num += 1
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balloon_count += next_note['balloon']
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total_score = (1000000 - (balloon_count * 100) - (drumroll_sec * 1692.0079999994086)) / total_notes
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return math.ceil(total_score / 10) * 10
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class TJAParser:
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def __init__(self, path: str):
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#Defined on startup
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self.folder_path = Path(path)
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self.folder_name = self.folder_path.name
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self.file_path = self.folder_path / f"{self.folder_name}.tja"
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#Defined on file_to_data()
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self.data = []
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#Defined on get_metadata()
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self.title = ''
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self.title_ja = ''
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self.subtitle = ''
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self.subtitle_ja = ''
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self.wave = self.folder_path / ""
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self.offset = 0
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self.demo_start = 0
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self.course_data = dict()
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#Defined in metadata but can change throughout the chart
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self.bpm = 120
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self.time_signature = 4/4
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self.distance = 0
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self.scroll_modifier = 1
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self.current_ms = 0
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self.barline_display = True
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self.gogo_time = False
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def _file_to_data(self):
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with open(self.file_path, 'rt', encoding='utf-8-sig') as tja_file:
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for line in tja_file:
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line = strip_comments(line).strip()
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if line != '':
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self.data.append(str(line))
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return self.data
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def get_metadata(self):
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self._file_to_data()
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current_diff = None # Track which difficulty we're currently processing
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for item in self.data:
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if item[0] == '#':
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continue
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elif 'SUBTITLEJA' in item:
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self.subtitle_ja = str(item.split('SUBTITLEJA:')[1])
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elif 'TITLEJA' in item:
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self.title_ja = str(item.split('TITLEJA:')[1])
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elif 'SUBTITLE' in item:
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self.subtitle = str(item.split('SUBTITLE:')[1][2:])
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elif 'TITLE' in item:
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self.title = str(item.split('TITLE:')[1])
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elif 'BPM' in item:
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self.bpm = float(item.split(':')[1])
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elif 'WAVE' in item:
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filename = item.split(':')[1].strip()
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self.wave = self.folder_path / filename
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elif 'OFFSET' in item:
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self.offset = float(item.split(':')[1])
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elif 'DEMOSTART' in item:
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self.demo_start = float(item.split(':')[1])
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elif 'COURSE' in item:
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# Determine which difficulty we're now processing
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course = str(item.split(':')[1]).lower().strip()
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# Map the course string to its corresponding index
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if course == 'dan' or course == '6':
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current_diff = 6
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self.course_data[6] = []
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elif course == 'tower' or course == '5':
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current_diff = 5
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self.course_data[5] = []
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elif course == 'edit' or course == '4':
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current_diff = 4
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self.course_data[4] = []
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elif course == 'oni' or course == '3':
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current_diff = 3
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self.course_data[3] = []
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elif course == 'hard' or course == '2':
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current_diff = 2
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self.course_data[2] = []
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elif course == 'normal' or course == '1':
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current_diff = 1
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self.course_data[1] = []
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elif course == 'easy' or course == '0':
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current_diff = 0
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self.course_data[0] = []
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# Only process these items if we have a current difficulty
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elif current_diff is not None:
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if 'LEVEL' in item:
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level = int(item.split(':')[1])
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self.course_data[current_diff].append(level)
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elif 'BALLOON' in item:
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balloon_data = item.split(':')[1]
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if balloon_data == '':
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continue
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self.course_data[current_diff].append([int(x) for x in balloon_data.split(',')])
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elif 'SCOREINIT' in item:
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score_init = item.split(':')[1]
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if score_init == '':
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continue
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self.course_data[current_diff].append([int(x) for x in score_init.split(',')])
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elif 'SCOREDIFF' in item:
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score_diff = item.split(':')[1]
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if score_diff == '':
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continue
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self.course_data[current_diff].append(int(score_diff))
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return [self.title, self.title_ja, self.subtitle, self.subtitle_ja,
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self.bpm, self.wave, self.offset, self.demo_start, self.course_data]
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def data_to_notes(self, diff):
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self._file_to_data()
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note_start = -1
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note_end = -1
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target_found = False
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diffs = {0: "easy", 1: "normal", 2: "hard", 3: "oni", 4: "edit", 5: "tower", 6: "dan"}
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# Get the name corresponding to this difficulty number
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diff_name = diffs.get(diff, "").lower()
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i = 0
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while i < len(self.data):
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line = self.data[i]
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# Check if this is the start of a difficulty section
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if line.startswith("COURSE:"):
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course_value = line[7:].strip().lower()
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# Match either the exact number or the name
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if (course_value.isdigit() and int(course_value) == diff) or course_value == diff_name:
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target_found = True
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else:
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target_found = False
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# If we found our target section, look for START and END markers
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if target_found:
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if line == "#START":
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note_start = i + 1
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elif line == "#END" and note_start != -1:
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note_end = i
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break # We found our complete section
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i += 1
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notes = []
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bar = []
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#Check for measures and separate when comma exists
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for i in range(note_start, note_end):
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line = self.data[i]
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if line.startswith("#"):
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bar.append(line)
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else:
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if line == ',':
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if len(bar) == 0 or all(item.startswith('#') for item in bar):
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bar.append('')
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notes.append(bar)
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bar = []
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else:
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item = line.strip(',')
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bar.append(item)
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if item != line:
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notes.append(bar)
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bar = []
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print(self.course_data)
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if len(self.course_data[diff]) < 2:
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return notes, None
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return notes, self.course_data[diff][1]
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def get_se_note(self, play_note_list, ms_per_measure, note, note_ms):
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#Someone please refactor this
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se_notes = {'1': [0, 1, 2],
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'2': [3, 4],
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'3': 5,
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'4': 6,
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'5': 7,
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'6': 14,
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'7': 9,
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'8': 10,
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'9': 11}
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if len(play_note_list) > 1:
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prev_note = play_note_list[-2]
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if prev_note['note'] in {'1', '2'}:
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if note_ms - prev_note['ms'] <= (ms_per_measure/8) - 1:
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prev_note['se_note'] = se_notes[prev_note['note']][1]
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else:
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prev_note['se_note'] = se_notes[prev_note['note']][0]
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else:
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prev_note['se_note'] = se_notes[prev_note['note']]
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if len(play_note_list) > 3:
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if play_note_list[-4]['note'] == play_note_list[-3]['note'] == play_note_list[-2]['note'] == '1':
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if (play_note_list[-3]['ms'] - play_note_list[-4]['ms'] < (ms_per_measure/8)) and (play_note_list[-2]['ms'] - play_note_list[-3]['ms'] < (ms_per_measure/8)):
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if len(play_note_list) > 5:
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if (play_note_list[-4]['ms'] - play_note_list[-5]['ms'] >= (ms_per_measure/8)) and (play_note_list[-1]['ms'] - play_note_list[-2]['ms'] >= (ms_per_measure/8)):
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play_note_list[-3]['se_note'] = se_notes[play_note_list[-3]['note']][2]
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else:
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play_note_list[-3]['se_note'] = se_notes[play_note_list[-3]['note']][2]
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else:
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play_note_list[-1]['se_note'] = se_notes[note]
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if play_note_list[-1]['note'] in {'1', '2'}:
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play_note_list[-1]['se_note'] = se_notes[note][0]
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else:
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play_note_list[-1]['se_note'] = se_notes[note]
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def notes_to_position(self, diff):
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play_note_list = deque()
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bar_list = deque()
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draw_note_list = deque()
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notes, balloon = self.data_to_notes(diff)
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index = 0
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balloon_index = 0
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for bar in notes:
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#Length of the bar is determined by number of notes excluding commands
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bar_length = sum(len(part) for part in bar if '#' not in part)
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for part in bar:
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if '#JPOSSCROLL' in part:
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continue
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elif '#NMSCROLL' in part:
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continue
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elif '#MEASURE' in part:
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divisor = part.find('/')
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self.time_signature = float(part[9:divisor]) / float(part[divisor+1:])
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continue
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elif '#SCROLL' in part:
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self.scroll_modifier = float(part[7:])
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continue
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elif '#BPMCHANGE' in part:
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self.bpm = float(part[11:])
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continue
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elif '#BARLINEOFF' in part:
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self.barline_display = False
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continue
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elif '#BARLINEON' in part:
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self.barline_display = True
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continue
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elif '#GOGOSTART' in part:
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self.gogo_time = True
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continue
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elif '#GOGOEND' in part:
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self.gogo_time = False
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continue
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elif '#LYRIC' in part:
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continue
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#Unrecognized commands will be skipped for now
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elif '#' in part:
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continue
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#https://gist.github.com/KatieFrogs/e000f406bbc70a12f3c34a07303eec8b#measure
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ms_per_measure = 60000 * (self.time_signature*4) / self.bpm
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#Determines how quickly the notes need to move across the screen to reach the judgment circle in time
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pixels_per_frame = get_pixels_per_frame(self.bpm * self.time_signature * self.scroll_modifier, self.time_signature*4, self.distance)
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pixels_per_ms = pixels_per_frame / (1000 / 60)
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bar_ms = self.current_ms
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load_ms = bar_ms - (self.distance / pixels_per_ms)
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if self.barline_display:
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bar_list.append({'note': 'barline', 'ms': bar_ms, 'load_ms': load_ms, 'ppf': pixels_per_frame})
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#Empty bar is still a bar, otherwise start increment
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if len(part) == 0:
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self.current_ms += ms_per_measure
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increment = 0
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else:
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increment = ms_per_measure / bar_length
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for note in part:
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note_ms = self.current_ms
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load_ms = note_ms - (self.distance / pixels_per_ms)
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#Do not add blank notes otherwise lag
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if note != '0':
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play_note_list.append({'note': note, 'ms': note_ms, 'load_ms': load_ms, 'ppf': pixels_per_frame, 'index': index})
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self.get_se_note(play_note_list, ms_per_measure, note, note_ms)
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index += 1
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if note in {'5', '6', '8'}:
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play_note_list[-1]['color'] = 255
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if note == '8' and play_note_list[-2]['note'] in ('7', '9'):
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if balloon is None:
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raise Exception("Balloon note found, but no count was specified")
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if balloon_index >= len(balloon):
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play_note_list[-1]['balloon'] = 0
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else:
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play_note_list[-1]['balloon'] = int(balloon[balloon_index])
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balloon_index += 1
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self.current_ms += increment
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# https://stackoverflow.com/questions/72899/how-to-sort-a-list-of-dictionaries-by-a-value-of-the-dictionary-in-python
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# Sorting by load_ms is necessary for drawing, as some notes appear on the
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# screen slower regardless of when they reach the judge circle
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# Bars can be sorted like this because they don't need hit detection
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draw_note_list = deque(sorted(play_note_list, key=lambda d: d['load_ms']))
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bar_list = deque(sorted(bar_list, key=lambda d: d['load_ms']))
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return play_note_list, draw_note_list, bar_list
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