use uv & make lint happy
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@@ -3,49 +3,53 @@
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测试密码哈希和验证逻辑
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"""
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from __future__ import annotations
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import hashlib
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import bcrypt
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from app.auth import get_password_hash, verify_password_legacy, bcrypt_cache
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from app.auth import bcrypt_cache, get_password_hash, verify_password_legacy
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def test_password_logic():
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"""测试密码逻辑"""
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print("=== 测试密码哈希和验证逻辑 ===\n")
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# 测试密码
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password = "password123"
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print(f"原始密码: {password}")
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# 1. 生成哈希
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print("\n1. 生成密码哈希...")
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hashed = get_password_hash(password)
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print(f"bcrypt 哈希: {hashed}")
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# 2. 验证密码
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print("\n2. 验证密码...")
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is_valid = verify_password_legacy(password, hashed)
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print(f"验证结果: {'✅ 成功' if is_valid else '❌ 失败'}")
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# 3. 测试错误密码
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print("\n3. 测试错误密码...")
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wrong_password = "wrongpassword"
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is_valid_wrong = verify_password_legacy(wrong_password, hashed)
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print(f"错误密码验证结果: {'❌ 不应该成功' if is_valid_wrong else '✅ 正确拒绝'}")
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# 4. 测试缓存
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print(f"\n4. 缓存状态:")
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print("\n4. 缓存状态:")
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print(f"缓存中的条目数: {len(bcrypt_cache)}")
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if hashed in bcrypt_cache:
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print(f"缓存的 MD5: {bcrypt_cache[hashed]}")
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expected_md5 = hashlib.md5(password.encode()).hexdigest().encode()
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print(f"期望的 MD5: {expected_md5}")
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print(f"缓存匹配: {'✅' if bcrypt_cache[hashed] == expected_md5 else '❌'}")
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# 5. 再次验证(应该使用缓存)
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print("\n5. 再次验证(使用缓存)...")
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is_valid_cached = verify_password_legacy(password, hashed)
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print(f"缓存验证结果: {'✅ 成功' if is_valid_cached else '❌ 失败'}")
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print("\n=== 测试完成 ===")
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if __name__ == "__main__":
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test_password_logic()
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