from itertools import combinations import time import threading from collections import defaultdict import math from multiprocessing import Pool # 配置参数(优化阈值) TARGET = 28635 # 目标值 BASE_VALUES = [38.5,44,61,70.5,75.5,93] # 基础系数列表 FLUCTUATION = 1.0 # 系数波动范围 MAX_SOLUTIONS = 3 # 每个组合的最大解数量 SOLVER_TIMEOUT = 180 # 求解超时时间(秒) THREE_VAR_THRESHOLD = 259000 # 使用三个变量的阈值 PRODUCT_RANGE_THRESHOLD = 129000 # 乘积范围限制阈值 HIGH_TARGET_THRESHOLD = 259000 # 更高目标值阈值 SHOW_PROGRESS = True # 是否显示进度 MAX_SOLUTIONS_PER_COMB = 100 # 每个组合的最大解数量,用于提前终止 USE_MULTIPROCESSING = True # 是否使用多进程加速 def is_valid_product(p): """确保单个乘积不超过129000""" return p <= 129000 # 严格限制所有乘积不超过129000 def find_single_variable_solutions(values): """查找单个数的解(a*x = TARGET)""" solutions = [] for a in values: quotient = TARGET / a if quotient != int(quotient): continue x = int(quotient) if 1 <= x <= 10000 and is_valid_product(a * x): solutions.append((a, x)) if len(solutions) >= MAX_SOLUTIONS: break return solutions def find_two_variable_solutions(values): """优化的双变量求解算法,确保每个乘积不超过129000""" solutions = defaultdict(list) for i, a in enumerate(values): for b in values[i:]: seen_xy = set() # 调整x的最大值,确保a*x不超过129000 if max_x < min_x: continue x_count = max_x - min_x + 1 x_step = max(1, x_count // 1000) for x in range(min_x, max_x + 1, x_step): ax = a * x if ax > 129000: # 额外检查确保不超过129000 continue remainder = TARGET - ax if remainder < b: break if remainder > b * 10000: continue if remainder % b == 0: y = remainder // b by = b * y if 1 <= y <= 10000 and by <= 129000: # 确保b*y也不超过129000 xy_pair = (x, y) if a <= b else (y, x) if xy_pair not in seen_xy: seen_xy.add(xy_pair) solutions[(a, b)].append((a, x, b, y)) if len(solutions[(a, b)]) >= MAX_SOLUTIONS_PER_COMB: break return solutions def process_three_var_combination(args): """处理三变量组合的辅助函数,用于并行计算""" a, b, c, value_ranges, target = args solutions = [] seen_xyz = set() min_x, max_x = value_ranges[a] x_count = max_x - min_x + 1 x_step = max(1, x_count // 1000) for x in range(min_x, max_x + 1, x_step): ax = a * x if not is_valid_product(ax): continue remainder1 = target - ax if remainder1 < 0: break if max_y < min_y: continue y_count = max_y - min_y + 1 y_step = max(1, y_count // 100) for y in range(min_y, max_y + 1, y_step): by = b * y if not is_valid_product(by): continue remainder2 = remainder1 - by if remainder2 < 0: break if remainder2 > c * 10000: continue if remainder2 % c == 0: z = remainder2 // c if 1 <= z <= 10000 and is_valid_product(c * z): xyz_tuple = tuple(sorted([x, y, z])) if xyz_tuple not in seen_xyz: seen_xyz.add(xyz_tuple) solutions.append((a, x, b, y, c, z)) if len(solutions) >= MAX_SOLUTIONS_PER_COMB: return solutions return solutions def find_three_variable_solutions(values): """优化的三变量求解算法,确保每个乘积不超过129000""" solutions = defaultdict(list) sorted_values = sorted(values) # 预计算每个系数的有效范围,确保每个乘积不超过129000 value_ranges = {} for a in sorted_values: value_ranges[a] = (min_x, max_x) combinations_list = [] for i, a in enumerate(sorted_values): for j in range(i + 1, len(sorted_values)): b = sorted_values[j] for k in range(j + 1, len(sorted_values)): c = sorted_values[k] combinations_list.append((a, b, c, value_ranges, TARGET)) if USE_MULTIPROCESSING: with Pool() as pool: results = pool.map(process_three_var_combination, combinations_list) for i, (a, b, c, _, _) in enumerate(combinations_list): if results[i]: solutions[(a, b, c)] = results[i] else: total_combinations = len(combinations_list) for i, (a, b, c, _, _) in enumerate(combinations_list): res = process_three_var_combination((a, b, c, value_ranges, TARGET)) if res: solutions[(a, b, c)] = res if SHOW_PROGRESS and i % 10 == 0: print(f"\r三变量组合进度: {i}/{total_combinations} 组", end='') if SHOW_PROGRESS and not USE_MULTIPROCESSING: print(f"\r三变量组合进度: {total_combinations}/{total_combinations} 组 - 完成") return solutions def find_balanced_solutions(solutions, var_count, num=2): """从所有解中筛选出最平衡的解""" if var_count == 1 or not solutions: return solutions balanced = [] for sol in solutions: vars = sol[1::2] # 获取解中的变量值 diff = max(vars) - min(vars) # 计算变量之间的最大差值 balanced.append((diff, sol)) # 按差值排序,返回差值最小的解 return [s for _, s in sorted(balanced, key=lambda x: x[0])[:num]] def find_original_solutions(solutions, balanced_solutions, num=3): """从剩余解中获取原始顺序的解""" if not solutions: return [] remaining = [s for s in solutions if s not in balanced_solutions] return remaining[:num] def display_solutions(solutions_dict, var_count): """优化的解显示函数""" if not solutions_dict: return print(f"\n找到 {len(solutions_dict)} 组{var_count}变量解:") for i, (coeffs, pair_solutions) in enumerate(sorted(solutions_dict.items()), 1): balanced = find_balanced_solutions(pair_solutions, var_count) original = find_original_solutions(pair_solutions, balanced) all_display = balanced + original if var_count == 1: a = coeffs print(f"\n{i}. 组合: a={a} ({len(pair_solutions)} 个有效解)") elif var_count == 2: a, b = coeffs print(f"\n{i}. 组合: a={a}, b={b} ({len(pair_solutions)} 个有效解)") else: a, b, c = coeffs print(f"\n{i}. 组合: a={a}, b={b}, c={c} ({len(pair_solutions)} 个有效解)") for j, sol in enumerate(all_display, 1): tag = "[平衡解]" if j <= len(balanced) else "[原始解]" if var_count == 1: a, x = sol print(f" {j}. x={x}, a*x={a*x:.1f}, 总和={a*x:.1f} {tag}") elif var_count == 2: a, x, b, y = sol print(f" {j}. x={x}, y={y}, a*x={a*x:.1f}, b*y={b*y:.1f}, 总和={a*x + b*y:.1f} {tag}") else: a, x, b, y, c, z = sol print(f" {j}. x={x}, y={y}, z={z}, " f"a*x={a*x:.1f}, b*y={b*y:.1f}, c*z={c*z:.1f}, " f"总和={a*x + b*y + c*z:.1f} {tag}") def run_with_timeout(func, args=(), kwargs=None, timeout=SOLVER_TIMEOUT): """运行函数并设置超时限制""" if kwargs is None: kwargs = {} result = [] error = [] def wrapper(): try: result.append(func(*args, **kwargs)) except Exception as e: error.append(e) thread = threading.Thread(target=wrapper) thread.daemon = True thread.start() thread.join(timeout) if thread.is_alive(): print(f"警告: {func.__name__} 超时({timeout}秒),跳过此方法") return None if error: return result[0] def main(): print(f"目标值: {TARGET}") # 生成波动后的系数 FLUCTUATED_VALUES = [round(v - FLUCTUATION, 1) for v in BASE_VALUES] # 尝试基础系数 print(f"\n==== 尝试基础系数 ====") # 目标值255966 > 259000不成立,会按顺序尝试单、双、三变量解 base_solutions = { 'single': run_with_timeout(find_single_variable_solutions, args=(BASE_VALUES,)), 'two': run_with_timeout(find_two_variable_solutions, args=(BASE_VALUES,)), 'three': [] } has_solution = False # 显示单变量解 if base_solutions['single']: has_solution = True display_solutions({a: [sol] for a, sol in zip(BASE_VALUES, base_solutions['single']) if sol}, 1) # 显示双变量解 if base_solutions['two'] and len(base_solutions['two']) > 0: has_solution = True display_solutions(base_solutions['two'], 2) # 单变量和双变量都无解时,尝试三变量解 if not has_solution: print(f"\n==== 单变量和双变量无解,尝试三变量解 ====") base_solutions['three'] = run_with_timeout(find_three_variable_solutions, args=(BASE_VALUES,)) if base_solutions['three'] and len(base_solutions['three']) > 0: has_solution = True display_solutions(base_solutions['three'], 3) if has_solution: print(f"\n使用基础系数列表,共找到有效解") return # 如果基础系数没有找到解,尝试波动系数 print(f"\n==== 尝试波动系数 ====") fluctuated_solutions = { 'single': run_with_timeout(find_single_variable_solutions, args=(FLUCTUATED_VALUES,)), 'two': run_with_timeout(find_two_variable_solutions, args=(FLUCTUATED_VALUES,)), 'three': [] } has_solution = False # 显示单变量解 if fluctuated_solutions['single']: has_solution = True display_solutions({a: [sol] for a, sol in zip(FLUCTUATED_VALUES, fluctuated_solutions['single']) if sol}, 1) # 显示双变量解 if fluctuated_solutions['two'] and len(fluctuated_solutions['two']) > 0: has_solution = True display_solutions(fluctuated_solutions['two'], 2) # 单变量和双变量都无解时,尝试三变量解 if not has_solution: print(f"\n==== 单变量和双变量无解,尝试三变量解 ====") fluctuated_solutions['three'] = run_with_timeout(find_three_variable_solutions, args=(FLUCTUATED_VALUES,)) if fluctuated_solutions['three'] and len(fluctuated_solutions['three']) > 0: has_solution = True display_solutions(fluctuated_solutions['three'], 3) if has_solution: print(f"\n使用波动系数列表,共找到有效解") return # 如果所有系数集都没有找到解 print("\n没有找到符合条件的解,即使使用波动后的系数列表。") if __name__ == "__main__": main() print(f"\n总耗时: {time.time() - start_time:.2f}秒")
Standard input is empty
目标值: 28635 ==== 尝试基础系数 ==== 找到 14 组2变量解: 1. 组合: a=38.5, b=61 (6 个有效解) 1. x=232, y=323.0, a*x=8932.0, b*y=19703.0, 总和=28635.0 [平衡解] 2. x=354, y=246.0, a*x=13629.0, b*y=15006.0, 总和=28635.0 [平衡解] 3. x=110, y=400.0, a*x=4235.0, b*y=24400.0, 总和=28635.0 [原始解] 4. x=476, y=169.0, a*x=18326.0, b*y=10309.0, 总和=28635.0 [原始解] 5. x=598, y=92.0, a*x=23023.0, b*y=5612.0, 总和=28635.0 [原始解] 2. 组合: a=38.5, b=70.5 (5 个有效解) 1. x=264, y=262.0, a*x=10164.0, b*y=18471.0, 总和=28635.0 [平衡解] 2. x=123, y=339.0, a*x=4735.5, b*y=23899.5, 总和=28635.0 [平衡解] 3. x=405, y=185.0, a*x=15592.5, b*y=13042.5, 总和=28635.0 [原始解] 4. x=546, y=108.0, a*x=21021.0, b*y=7614.0, 总和=28635.0 [原始解] 5. x=687, y=31.0, a*x=26449.5, b*y=2185.5, 总和=28635.0 [原始解] 3. 组合: a=38.5, b=75.5 (5 个有效解) 1. x=279, y=237.0, a*x=10741.5, b*y=17893.5, 总和=28635.0 [平衡解] 2. x=128, y=314.0, a*x=4928.0, b*y=23707.0, 总和=28635.0 [平衡解] 3. x=430, y=160.0, a*x=16555.0, b*y=12080.0, 总和=28635.0 [原始解] 4. x=581, y=83.0, a*x=22368.5, b*y=6266.5, 总和=28635.0 [原始解] 5. x=732, y=6.0, a*x=28182.0, b*y=453.0, 总和=28635.0 [原始解] 4. 组合: a=38.5, b=93 (4 个有效解) 1. x=222, y=216.0, a*x=8547.0, b*y=20088.0, 总和=28635.0 [平衡解] 2. x=36, y=293.0, a*x=1386.0, b*y=27249.0, 总和=28635.0 [平衡解] 3. x=408, y=139.0, a*x=15708.0, b*y=12927.0, 总和=28635.0 [原始解] 4. x=594, y=62.0, a*x=22869.0, b*y=5766.0, 总和=28635.0 [原始解] 5. 组合: a=44, b=61 (11 个有效解) 1. x=264, y=279, a*x=11616.0, b*y=17019.0, 总和=28635.0 [平衡解] 2. x=325, y=235, a*x=14300.0, b*y=14335.0, 总和=28635.0 [平衡解] 3. x=20, y=455, a*x=880.0, b*y=27755.0, 总和=28635.0 [原始解] 4. x=81, y=411, a*x=3564.0, b*y=25071.0, 总和=28635.0 [原始解] 5. x=142, y=367, a*x=6248.0, b*y=22387.0, 总和=28635.0 [原始解] 6. 组合: a=44, b=70.5 (4 个有效解) 1. x=231, y=262.0, a*x=10164.0, b*y=18471.0, 总和=28635.0 [平衡解] 2. x=372, y=174.0, a*x=16368.0, b*y=12267.0, 总和=28635.0 [平衡解] 3. x=90, y=350.0, a*x=3960.0, b*y=24675.0, 总和=28635.0 [原始解] 4. x=513, y=86.0, a*x=22572.0, b*y=6063.0, 总和=28635.0 [原始解] 7. 组合: a=44, b=75.5 (4 个有效解) 1. x=263, y=226.0, a*x=11572.0, b*y=17063.0, 总和=28635.0 [平衡解] 2. x=112, y=314.0, a*x=4928.0, b*y=23707.0, 总和=28635.0 [平衡解] 3. x=414, y=138.0, a*x=18216.0, b*y=10419.0, 总和=28635.0 [原始解] 4. x=565, y=50.0, a*x=24860.0, b*y=3775.0, 总和=28635.0 [原始解] 8. 组合: a=44, b=93 (7 个有效解) 1. x=171, y=227, a*x=7524.0, b*y=21111.0, 总和=28635.0 [平衡解] 2. x=264, y=183, a*x=11616.0, b*y=17019.0, 总和=28635.0 [平衡解] 3. x=78, y=271, a*x=3432.0, b*y=25203.0, 总和=28635.0 [原始解] 4. x=357, y=139, a*x=15708.0, b*y=12927.0, 总和=28635.0 [原始解] 5. x=450, y=95, a*x=19800.0, b*y=8835.0, 总和=28635.0 [原始解] 9. 组合: a=61, b=70.5 (4 个有效解) 1. x=162, y=266.0, a*x=9882.0, b*y=18753.0, 总和=28635.0 [平衡解] 2. x=303, y=144.0, a*x=18483.0, b*y=10152.0, 总和=28635.0 [平衡解] 3. x=21, y=388.0, a*x=1281.0, b*y=27354.0, 总和=28635.0 [原始解] 4. x=444, y=22.0, a*x=27084.0, b*y=1551.0, 总和=28635.0 [原始解] 10. 组合: a=61, b=75.5 (4 个有效解) 1. x=160, y=250.0, a*x=9760.0, b*y=18875.0, 总和=28635.0 [平衡解] 2. x=311, y=128.0, a*x=18971.0, b*y=9664.0, 总和=28635.0 [平衡解] 3. x=9, y=372.0, a*x=549.0, b*y=28086.0, 总和=28635.0 [原始解] 4. x=462, y=6.0, a*x=28182.0, b*y=453.0, 总和=28635.0 [原始解] 11. 组合: a=61, b=93 (5 个有效解) 1. x=195, y=180, a*x=11895.0, b*y=16740.0, 总和=28635.0 [平衡解] 2. x=102, y=241, a*x=6222.0, b*y=22413.0, 总和=28635.0 [平衡解] 3. x=9, y=302, a*x=549.0, b*y=28086.0, 总和=28635.0 [原始解] 4. x=288, y=119, a*x=17568.0, b*y=11067.0, 总和=28635.0 [原始解] 5. x=381, y=58, a*x=23241.0, b*y=5394.0, 总和=28635.0 [原始解] 12. 组合: a=70.5, b=75.5 (3 个有效解) 1. x=162, y=228.0, a*x=11421.0, b*y=17214.0, 总和=28635.0 [平衡解] 2. x=313, y=87.0, a*x=22066.5, b*y=6568.5, 总和=28635.0 [平衡解] 3. x=11, y=369.0, a*x=775.5, b*y=27859.5, 总和=28635.0 [原始解] 13. 组合: a=70.5, b=93 (6 个有效解) 1. x=174, y=176.0, a*x=12267.0, b*y=16368.0, 总和=28635.0 [平衡解] 2. x=236, y=129.0, a*x=16638.0, b*y=11997.0, 总和=28635.0 [平衡解] 3. x=50, y=270.0, a*x=3525.0, b*y=25110.0, 总和=28635.0 [原始解] 4. x=112, y=223.0, a*x=7896.0, b*y=20739.0, 总和=28635.0 [原始解] 5. x=298, y=82.0, a*x=21009.0, b*y=7626.0, 总和=28635.0 [原始解] 14. 组合: a=75.5, b=93 (2 个有效解) 1. x=144, y=191.0, a*x=10872.0, b*y=17763.0, 总和=28635.0 [平衡解] 2. x=330, y=40.0, a*x=24915.0, b*y=3720.0, 总和=28635.0 [平衡解] 使用基础系数列表,共找到有效解 总耗时: 0.01秒