perf: filter scan optimization and portfolio selection improvements
Precompute p_ball to speed up exhaustive filtering, add fixed-ball validation with labeled exceptions, and improve portfolio selection via ymd-seeded shuffle and coverage-aware tie-breaking. Include lotto draw 1225 history update. Co-authored-by: Cursor <cursoragent@cursor.com>
This commit is contained in:
@@ -3812,9 +3812,10 @@ class BallFilter:
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if len(set_ball & {3, 20, 44}) == 3: return 2928
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if len(set_ball & {3, 20, 44}) == 3: return 2928
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return None
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return None
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def extract_final_candidates(self, ball, no=None, until_end=False, df=None):
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def extract_final_candidates(self, ball, no=None, until_end=False, df=None, p_ball=None):
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p_ball = df[df['no'] == no - 1].values.tolist()[0]
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if p_ball is None:
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p_ball = p_ball[1:7]
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p_ball = df[df['no'] == no - 1].values.tolist()[0]
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p_ball = p_ball[1:7]
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filter_set = set()
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filter_set = set()
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@@ -4447,7 +4448,9 @@ class BallFilter:
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return filter_set
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return filter_set
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def filter(self, ball, no, until_end=False, df=None, filter_ball=None):
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def filter(self, ball, no, until_end=False, df=None, filter_ball=None, p_ball=None):
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filter_type = self.extract_final_candidates(ball=ball, no=no, until_end=until_end, df=df)
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filter_type = self.extract_final_candidates(
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ball=ball, no=no, until_end=until_end, df=df, p_ball=p_ball
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)
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return filter_type
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return filter_type
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@@ -5,8 +5,10 @@ from DataCrawler import DataCrawler
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import json
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import json
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import os
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import os
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import random
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import pandas as pd
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import pandas as pd
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import itertools
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import itertools
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from collections import Counter
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from datetime import datetime, timedelta
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from datetime import datetime, timedelta
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from TelegramBot import TelegramBot
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from TelegramBot import TelegramBot
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@@ -98,6 +100,70 @@ class Practice:
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return
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return
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def validate_fixed_balls(self, resources_path, ymd, fixed_balls):
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"""
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고정수 BallFilter 통과 여부를 검증한다.
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Returns:
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dict: total, passed_count, failed_count, draw_no, details
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"""
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lotto_history_json = os.path.join(resources_path, 'lotto_history.json')
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ball_filter = BallFilter(lotto_history_json)
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draw_no = ball_filter.getNextNo(ymd)
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lotto_history_txt = os.path.join(resources_path, 'lotto_history.txt')
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df_ball = pd.read_csv(lotto_history_txt, header=None)
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df_ball.columns = ['no', 'b1', 'b2', 'b3', 'b4', 'b5', 'b6', 'bn']
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prev_row = df_ball[df_ball['no'] == draw_no - 1].values.tolist()[0]
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p_ball = prev_row[1:7]
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details = []
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passed_count = 0
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for index, ball in enumerate(fixed_balls):
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filter_type = ball_filter.filter(
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ball=ball, no=draw_no, until_end=False, df=df_ball, p_ball=p_ball
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)
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passed = len(filter_type) == 0
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if passed:
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passed_count += 1
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details.append({
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'index': index + 1,
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'ball': ball,
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'passed': passed,
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'filter_reasons': sorted(filter_type),
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})
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return {
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'draw_no': draw_no,
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'total': len(fixed_balls),
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'passed_count': passed_count,
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'failed_count': len(fixed_balls) - passed_count,
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'details': details,
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}
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@staticmethod
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def format_fixed_validation_summary(validation):
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"""고정수 검증 결과를 Telegram/로그용 문자열로 변환한다."""
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lines = [
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" - 고정수 필터 검증: {}/{} 통과".format(
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validation['passed_count'], validation['total']
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)
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]
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if validation['failed_count'] > 0:
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lines.append(
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" - 필터 예외 포함: {}개 (고정수 유지)".format(
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validation['failed_count']
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)
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)
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for item in validation['details']:
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if item['passed']:
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continue
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reason = item['filter_reasons'][0] if item['filter_reasons'] else 'unknown'
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lines.append(
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" * #{} {} -> {}".format(item['index'], item['ball'], reason)
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)
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return "\n".join(lines)
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def _can_add_ball(self, ball, fixed_balls, selected_balls, max_overlap):
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def _can_add_ball(self, ball, fixed_balls, selected_balls, max_overlap):
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ball_set = set(ball)
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ball_set = set(ball)
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@@ -111,11 +177,48 @@ class Practice:
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return True
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return True
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def select_portfolio(self, fixed_balls, candidates, target_count):
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@staticmethod
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def _portfolio_number_counts(fixed_balls, selected_balls):
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"""포트폴리오 내 번호 등장 횟수를 집계한다."""
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counts = Counter()
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for ball in fixed_balls + selected_balls:
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counts.update(ball)
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return counts
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@staticmethod
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def _coverage_priority(ball, number_counts):
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"""낮을수록 포트폴리오에 덜 등장한 번호 위주 조합이다."""
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return sum(number_counts.get(number, 0) for number in ball)
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def _pick_best_candidate(self, unique_candidates, selected_keys, fixed_balls, selected, max_overlap):
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"""겹침 제약을 만족하는 후보 중 번호 커버리지가 가장 넓은 조합을 고른다."""
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number_counts = self._portfolio_number_counts(fixed_balls, selected)
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best_candidate = None
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best_score = None
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best_key = None
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for candidate in unique_candidates:
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key = tuple(candidate)
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if key in selected_keys:
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continue
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if not self._can_add_ball(candidate, fixed_balls, selected, max_overlap):
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continue
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score = self._coverage_priority(candidate, number_counts)
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if best_candidate is None or score < best_score or (score == best_score and key < best_key):
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best_candidate = candidate
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best_score = score
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best_key = key
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return best_candidate, best_key
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def select_portfolio(self, fixed_balls, candidates, target_count, shuffle_seed=None):
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"""
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"""
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2차 포트폴리오 선정:
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2차 포트폴리오 선정:
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- 중복 제거
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- 중복 제거
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- shuffle_seed 기반 셔플로 순서 편향 완화
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- 고정수/선정수 간 중복도(겹치는 번호 수) 제약을 단계적으로 완화하며 선택
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- 고정수/선정수 간 중복도(겹치는 번호 수) 제약을 단계적으로 완화하며 선택
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- 동률 후보는 번호 커버리지가 넓은 조합 우선
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"""
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"""
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unique_candidates = []
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unique_candidates = []
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seen = set()
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seen = set()
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@@ -128,6 +231,10 @@ class Practice:
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seen.add(key)
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seen.add(key)
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unique_candidates.append(list(key))
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unique_candidates.append(list(key))
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if shuffle_seed is not None:
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rng = random.Random(int(shuffle_seed))
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rng.shuffle(unique_candidates)
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if target_count <= 0:
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if target_count <= 0:
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return []
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return []
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@@ -139,26 +246,27 @@ class Practice:
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overlap_stages = [2, 3, 4, 5]
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overlap_stages = [2, 3, 4, 5]
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for max_overlap in overlap_stages:
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for max_overlap in overlap_stages:
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for candidate in unique_candidates:
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while len(selected) < target_count:
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key = tuple(candidate)
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best_candidate, best_key = self._pick_best_candidate(
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if key in selected_keys:
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unique_candidates, selected_keys, fixed_balls, selected, max_overlap
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continue
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)
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if best_candidate is None:
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break
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if self._can_add_ball(candidate, fixed_balls, selected, max_overlap):
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selected.append(best_candidate)
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selected.append(candidate)
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selected_keys.add(best_key)
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selected_keys.add(key)
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if len(selected) >= target_count:
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return selected
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# 단계 완화 후에도 부족하면 남은 조합을 순서대로 채움
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for candidate in unique_candidates:
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key = tuple(candidate)
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if key in selected_keys:
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continue
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selected.append(candidate)
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selected_keys.add(key)
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if len(selected) >= target_count:
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if len(selected) >= target_count:
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return selected
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while len(selected) < target_count:
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best_candidate, best_key = self._pick_best_candidate(
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unique_candidates, selected_keys, fixed_balls, selected, max_overlap=6
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)
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if best_candidate is None:
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break
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break
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selected.append(best_candidate)
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selected_keys.add(best_key)
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return selected
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return selected
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@@ -175,15 +283,19 @@ class Practice:
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df_ball = pd.read_csv(lottoHistoryFileName, header=None)
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df_ball = pd.read_csv(lottoHistoryFileName, header=None)
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df_ball.columns = ['no', 'b1', 'b2', 'b3', 'b4', 'b5', 'b6', 'bn']
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df_ball.columns = ['no', 'b1', 'b2', 'b3', 'b4', 'b5', 'b6', 'bn']
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prev_row = df_ball[df_ball['no'] == no - 1].values.tolist()[0]
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p_ball = prev_row[1:7]
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passed_candidates = []
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passed_candidates = []
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nCr = list(itertools.combinations(candidates, 6))
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for idx, ball in enumerate(itertools.combinations(candidates, 6)):
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for idx, ball in enumerate(nCr):
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if idx % 1000000 == 0:
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if idx % 1000000 == 0:
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print(" - {} processed, pass: {}".format(idx, len(passed_candidates)))
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print(" - {} processed, pass: {}".format(idx, len(passed_candidates)))
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ball = list(ball)
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ball = list(ball)
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filter_type = ballFilter.filter(ball=ball, no=no, until_end=False, df=df_ball)
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filter_type = ballFilter.filter(
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ball=ball, no=no, until_end=False, df=df_ball, p_ball=p_ball
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)
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filter_size = len(filter_type)
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filter_size = len(filter_type)
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if 0 < filter_size:
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if 0 < filter_size:
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@@ -195,12 +307,11 @@ class Practice:
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selected_candidates = self.select_portfolio(
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selected_candidates = self.select_portfolio(
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fixed_balls=fixed_balls,
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fixed_balls=fixed_balls,
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candidates=passed_candidates,
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candidates=passed_candidates,
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target_count=variable_target_count
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target_count=variable_target_count,
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shuffle_seed=ymd,
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)
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)
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p_ball = df_ball[df_ball['no'] == no - 1].values.tolist()[0]
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p_no = prev_row[0]
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p_no = p_ball[0]
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p_ball = p_ball[1:7]
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return p_no, p_ball, selected_candidates, len(passed_candidates), variable_target_count
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return p_no, p_ball, selected_candidates, len(passed_candidates), variable_target_count
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@@ -243,6 +354,12 @@ if __name__ == '__main__':
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# 매주 고정
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# 매주 고정
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fixed_balls = []
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fixed_balls = []
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practice.predict1(fixed_balls)
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practice.predict1(fixed_balls)
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fixed_validation = practice.validate_fixed_balls(
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resources_path=resources_path,
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ymd=ymd,
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fixed_balls=fixed_balls,
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)
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print(Practice.format_fixed_validation_summary(fixed_validation))
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result_json[ymd].extend(fixed_balls)
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result_json[ymd].extend(fixed_balls)
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# 필터 기반 예측
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# 필터 기반 예측
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@@ -254,6 +371,15 @@ if __name__ == '__main__':
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)
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)
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result_json[ymd].extend(selected_candidates)
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result_json[ymd].extend(selected_candidates)
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if '_meta' not in result_json:
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result_json['_meta'] = {}
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result_json['_meta'][ymd] = {
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'fixed_validation': fixed_validation,
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'passed_count': passed_count,
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'selected_count': len(selected_candidates),
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'portfolio_shuffle_seed': ymd,
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}
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with open(recommend_result_file, 'w', encoding='utf-8') as outFp:
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with open(recommend_result_file, 'w', encoding='utf-8') as outFp:
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json.dump(result_json, outFp, ensure_ascii=False)
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json.dump(result_json, outFp, ensure_ascii=False)
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@@ -261,6 +387,7 @@ if __name__ == '__main__':
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total_cost = total_games * COST_PER_GAME
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total_cost = total_games * COST_PER_GAME
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p_str = "[지난주] {}\n - {} 회차, {}\n[금주] {}\n - {} 회차\n[모델#25]\n".format(last_weekend, p_no, str(p_ball), ymd, (p_no + 1))
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p_str = "[지난주] {}\n - {} 회차, {}\n[금주] {}\n - {} 회차\n[모델#25]\n".format(last_weekend, p_no, str(p_ball), ymd, (p_no + 1))
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p_str += " - 고정수: {}개\n".format(len(fixed_balls))
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p_str += " - 고정수: {}개\n".format(len(fixed_balls))
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p_str += Practice.format_fixed_validation_summary(fixed_validation) + "\n"
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p_str += " - 필터 통과 후보: {}개\n".format(passed_count)
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p_str += " - 필터 통과 후보: {}개\n".format(passed_count)
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p_str += " - 추가 선정: {}개 (목표 {}개)\n".format(len(selected_candidates), variable_target_count)
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p_str += " - 추가 선정: {}개 (목표 {}개)\n".format(len(selected_candidates), variable_target_count)
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p_str += " - 총 추천: {}개, 총 금액: {:,}원 (한도 {:,}원)\n".format(total_games, total_cost, MAX_BUDGET_KRW)
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p_str += " - 총 추천: {}개, 총 금액: {:,}원 (한도 {:,}원)\n".format(total_games, total_cost, MAX_BUDGET_KRW)
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@@ -1222,3 +1222,4 @@
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{"returnValue": "success", "drwNoDate": "2026-05-02", "drwNo": 1222, "drwtNo1": 4, "drwtNo2": 11, "drwtNo3": 17, "drwtNo4": 22, "drwtNo5": 32, "drwtNo6": 41, "bnusNo": 34}
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{"returnValue": "success", "drwNoDate": "2026-05-02", "drwNo": 1222, "drwtNo1": 4, "drwtNo2": 11, "drwtNo3": 17, "drwtNo4": 22, "drwtNo5": 32, "drwtNo6": 41, "bnusNo": 34}
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{"returnValue": "success", "drwNoDate": "2026-05-09", "drwNo": 1223, "drwtNo1": 16, "drwtNo2": 18, "drwtNo3": 20, "drwtNo4": 32, "drwtNo5": 33, "drwtNo6": 39, "bnusNo": 26}
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{"returnValue": "success", "drwNoDate": "2026-05-09", "drwNo": 1223, "drwtNo1": 16, "drwtNo2": 18, "drwtNo3": 20, "drwtNo4": 32, "drwtNo5": 33, "drwtNo6": 39, "bnusNo": 26}
|
||||||
{"returnValue": "success", "drwNoDate": "2026-05-16", "drwNo": 1224, "drwtNo1": 9, "drwtNo2": 18, "drwtNo3": 21, "drwtNo4": 27, "drwtNo5": 44, "drwtNo6": 45, "bnusNo": 28}
|
{"returnValue": "success", "drwNoDate": "2026-05-16", "drwNo": 1224, "drwtNo1": 9, "drwtNo2": 18, "drwtNo3": 21, "drwtNo4": 27, "drwtNo5": 44, "drwtNo6": 45, "bnusNo": 28}
|
||||||
|
{"returnValue": "success", "drwNoDate": "2026-05-23", "drwNo": 1225, "drwtNo1": 8, "drwtNo2": 9, "drwtNo3": 19, "drwtNo4": 25, "drwtNo5": 41, "drwtNo6": 42, "bnusNo": 33}
|
||||||
|
|||||||
@@ -1222,3 +1222,4 @@
|
|||||||
1222,4,11,17,22,32,41,34
|
1222,4,11,17,22,32,41,34
|
||||||
1223,16,18,20,32,33,39,26
|
1223,16,18,20,32,33,39,26
|
||||||
1224,9,18,21,27,44,45,28
|
1224,9,18,21,27,44,45,28
|
||||||
|
1225,8,9,19,25,41,42,33
|
||||||
Reference in New Issue
Block a user