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| # Decompiled with PyLingual (https://pylingual.io) # Internal filename: key.py # Bytecode version: 3.13.0rc3 (3571) # Source timestamp: 1970-01-01 00:00:00 UTC (0)
import ast import types import sys
# 正确的密钥结果 o0o0o0 = [105084753, 3212558540, 351342182, 844102737, 2002504052, 356536456, 2463183122, 615034880, 1156203296]
def changli(o0o0o1, o0o0o2, o0o0o3): """TEA加密算法的变种实现""" o0o0o4 = 2269471011 o0o0o5 = o0o0o3 & 0xFFFFFFFF o0o0o6 = (o0o0o3 >> 8) ^ 305419896 & 0xFFFFFFFF o0o0o7 = (o0o0o3 << 4) ^ 2271560481 & 0xFFFFFFFF o0o0o8 = (o0o0o3 >> 12) ^ 2882400000 & 0xFFFFFFFF
o0o0o9 = o0o0o1 & 0xFFFFFFFF o0o0o10 = o0o0o2 & 0xFFFFFFFF o0o0o11 = 0
for _ in range(32): o0o0o11 = (o0o0o11 + o0o0o4) & 0xFFFFFFFF
o0o0o9 = (o0o0o9 + ((o0o0o9 << 4) + o0o0o5) ^ (o0o0o10 + o0o0o11) ^ ((o0o0o10 >> 4) + o0o0o6)) & 0xFFFFFFFF o0o0o10 = (o0o0o10 + ((o0o0o10 << 4) + o0o0o7) ^ (o0o0o9 + o0o0o11) ^ ((o0o0o9 >> 4) + o0o0o8)) & 0xFFFFFFFF
return o0o0o9, o0o0o10
def Shorekeeper(o0o0o12): """将32位整数分割为高16位和低16位""" o0o0o13 = o0o0o12 >> 16 o0o0o14 = o0o0o12 & 0xFFFF return o0o0o13, o0o0o14
def Kathysia(o0o0o15, o0o0o16): """将两个16位整数合并为32位整数""" return (o0o0o15 << 16) | (o0o0o16 + 0)
def Phrolova(o0o0o17): """动态创建Carlotta函数并注入到全局命名空间""" o0oA = "Carlotta" o0oB = ['o0oC', 'o0oD', 'o0oE', 'o0oF'] o0oG = []
# 构建AST节点 - 一系列赋值语句 o0oG.append(ast.Assign( targets=[ast.Name(id='o0oH', ctx=ast.Store())], value=ast.Constant(value=305419896) ))
o0oG.append(ast.Assign( targets=[ast.Name(id='o0oI', ctx=ast.Store())], value=ast.BinOp( left=ast.Name(id='o0oE', ctx=ast.Load()), op=ast.BitAnd(), right=ast.Constant(value=65535) ) ))
o0oG.append(ast.Assign( targets=[ast.Name(id='o0oJ', ctx=ast.Store())], value=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oE', ctx=ast.Load()), op=ast.RShift(), right=ast.Constant(value=16) ), op=ast.BitAnd(), right=ast.Constant(value=65535) ) ))
o0oG.append(ast.Assign( targets=[ast.Name(id='o0oK', ctx=ast.Store())], value=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oE', ctx=ast.Load()), op=ast.BitXor(), right=ast.Name(id='o0oF', ctx=ast.Load()) ), op=ast.BitAnd(), right=ast.Constant(value=65535) ) ))
o0oG.append(ast.Assign( targets=[ast.Name(id='o0oL', ctx=ast.Store())], value=ast.BinOp( left=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oE', ctx=ast.Load()), op=ast.RShift(), right=ast.Constant(value=8) ), op=ast.BitXor(), right=ast.Name(id='o0oF', ctx=ast.Load()) ), op=ast.BitAnd(), right=ast.Constant(value=65535) ) ))
o0oG.append(ast.Assign( targets=[ast.Name(id='o0oM', ctx=ast.Store())], value=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oH', ctx=ast.Load()), op=ast.Mult(), right=ast.BinOp( left=ast.Name(id='o0oF', ctx=ast.Load()), op=ast.Add(), right=ast.Constant(value=1) ) ), op=ast.BitAnd(), right=ast.Constant(value=0xFFFFFFFF) ) ))
# 复杂的表达式计算 o0oG.append(ast.Assign( targets=[ast.Name(id='o0oN', ctx=ast.Store())], value=ast.BinOp( left=ast.BinOp( left=ast.BinOp( left=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oD', ctx=ast.Load()), op=ast.LShift(), right=ast.Constant(value=5) ), op=ast.Add(), right=ast.Name(id='o0oI', ctx=ast.Load()) ), op=ast.BitXor(), right=ast.BinOp( left=ast.Name(id='o0oD', ctx=ast.Load()), op=ast.Add(), right=ast.Name(id='o0oM', ctx=ast.Load()) ) ), op=ast.BitXor(), right=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oD', ctx=ast.Load()), op=ast.RShift(), right=ast.Constant(value=5) ), op=ast.Add(), right=ast.Name(id='o0oJ', ctx=ast.Load()) ) ), op=ast.BitAnd(), right=ast.Constant(value=65535) ) ))
o0oG.append(ast.Assign( targets=[ast.Name(id='o0oP', ctx=ast.Store())], value=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oC', ctx=ast.Load()), op=ast.Add(), right=ast.Name(id='o0oN', ctx=ast.Load()) ), op=ast.BitAnd(), right=ast.Constant(value=65535) ) ))
# 更多复杂的表达式 o0oG.append(ast.Assign( targets=[ast.Name(id='o0oN', ctx=ast.Store())], value=ast.BinOp( left=ast.BinOp( left=ast.BinOp( left=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oP', ctx=ast.Load()), op=ast.LShift(), right=ast.Constant(value=5) ), op=ast.Add(), right=ast.Name(id='o0oK', ctx=ast.Load()) ), op=ast.BitXor(), right=ast.BinOp( left=ast.Name(id='o0oP', ctx=ast.Load()), op=ast.Add(), right=ast.Name(id='o0oM', ctx=ast.Load()) ) ), op=ast.BitXor(), right=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oP', ctx=ast.Load()), op=ast.RShift(), right=ast.Constant(value=5) ), op=ast.Add(), right=ast.Name(id='o0oL', ctx=ast.Load()) ) ), op=ast.BitAnd(), right=ast.Constant(value=65535) ) ))
o0oG.append(ast.Assign( targets=[ast.Name(id='o0oQ', ctx=ast.Store())], value=ast.BinOp( left=ast.BinOp( left=ast.Name(id='o0oD', ctx=ast.Load()), op=ast.Add(), right=ast.Name(id='o0oN', ctx=ast.Load()) ), op=ast.BitAnd(), right=ast.Constant(value=65535) ) ))
# 返回语句 o0oG.append(ast.Return( value=ast.Tuple( elts=[ ast.Name(id='o0oP', ctx=ast.Load()), ast.Name(id='o0oQ', ctx=ast.Load()) ], ctx=ast.Load() ) ))
# 构建函数定义 func_def = ast.FunctionDef( name=o0oA, args=ast.arguments( posonlyargs=[], args=[ast.arg(arg=arg_name) for arg_name in o0oB], kwonlyargs=[], kw_defaults=[], defaults=[] ), body=o0oG, decorator_list=[] )
# 解析辅助函数代码 helper_code = """ def _tea_helper_func(a, b, c): magic1 = (a ^ b) & 0xDEADBEEF magic2 = (c << 3) | (a >> 5) return (magic1 + magic2 - (b & 0xCAFEBABE)) & 0xFFFFFFFF
def _fake_tea_round(x, y): return ((x * 0x9E3779B9) ^ (y + 0x12345678)) & 0xFFFFFFFF
_tea_magic_delta = 0x9E3779B9 ^ 0x12345678 _tea_dummy_keys = [0x1111, 0x2222, 0x3333, 0x4444] """ parsed_helper = ast.parse(helper_code).body
# 创建模块 module = ast.Module( body=[func_def] + parsed_helper, type_ignores=[] )
# 修复AST位置信息并编译 ast.fix_missing_locations(module) compiled = compile(module, "<tea_obf_ast>", "exec")
# 执行编译的代码 namespace = {} exec(compiled, namespace)
# 将函数注入到全局命名空间 if o0oA in namespace: o0o0o17[o0oA] = namespace[o0oA]
def shouan(o0o0o32): """主加密验证函数""" if len(o0o0o32) != 9: raise ValueError("需要输入9个key")
o0o0o35 = []
# 处理每个输入密钥 for o0o0o49, o0o0o34 in enumerate(o0o0o32): o0o0o33 = o0o0o49 * o0o0o49
# 分割密钥 o0o0o36, o0o0o37 = Shorekeeper(o0o0o34)
# 调用动态创建的Carlotta函数 o0o0o38, o0o0o39 = Carlotta(o0o0o36, o0o0o37, o0o0o49 + 2025, o0o0o33)
# 合并结果 o0o0o40 = Kathysia(o0o0o38, o0o0o39)
o0o0o35.append(o0o0o40)
o0o0o41 = []
# 对密钥进行轮处理 for i in range(8): # 使用changli函数进行变换 o0o0o35[i], o0o0o35[i + 1] = changli(o0o0o35[i], o0o0o35[i + 1], 2025) o0o0o41.append(o0o0o35[i])
o0o0o41.append(o0o0o35[8]) return o0o0o41
def jinhsi(): """主交互函数""" print("请输入9个数字:")
try: o0o0o46 = input().strip()
# 解析输入 if "," in o0o0o46: o0o0o42 = o0o0o46.split(",") else: o0o0o42 = o0o0o46.split()
if len(o0o0o42) != 9: print("错误: 需要输入9个数") return
o0o0o43 = []
# 转换为整数 for o0o0o44 in o0o0o42: try: o0o0o45 = int(o0o0o44.strip()) o0o0o43.append(o0o0o45) except ValueError: print(f"错误: '{o0o0o44}' 不是有效的整数") return
# 调用shouan函数进行验证 o0o0o48 = shouan(o0o0o43)
# 验证结果 if o0o0o48 == o0o0o0: print("正确!这是真正的key") sys.exit(0) else: print("错误!这不是正确的key") print(f"你的结果: {o0o0o48}") sys.exit(0)
except Exception as o0o0o47: print(f"发生错误: {o0o0o47}")
# 初始化:动态创建Carlotta函数 Phrolova(globals())
if __name__ == "__main__": jinhsi()
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