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CWE-639 (通过用户控制密钥绕过授权机制) — Vulnerability Class 1147

1147 vulnerabilities classified as CWE-639 (通过用户控制密钥绕过授权机制). AI Chinese analysis included.

CWE-639 represents an authorization bypass weakness where systems fail to validate that a user is permitted to access a resource identified by a user-controlled key. Attackers typically exploit this by manipulating identifiers, such as changing a numeric user ID in a URL or API parameter, to retrieve or modify another user’s private data. This insecure direct object reference allows unauthorized access without requiring authentication bypasses. Developers prevent this vulnerability by implementing robust server-side authorization checks that verify the requesting user’s permissions against the requested resource, rather than trusting client-supplied identifiers. Additionally, using indirect references or opaque tokens instead of predictable, sequential keys can mitigate the risk of enumeration and unauthorized access attempts.

MITRE CWE Description
The system's authorization functionality does not prevent one user from gaining access to another user's data or record by modifying the key value identifying the data. Retrieval of a user record occurs in the system based on some key value that is under user control. The key would typically identify a user-related record stored in the system and would be used to lookup that record for presentation to the user. It is likely that an attacker would have to be an authenticated user in the system. However, the authorization process would not properly check the data access operation to ensure that the authenticated user performing the operation has sufficient entitlements to perform the requested data access, hence bypassing any other authorization checks present in the system. For example, attackers can look at places where user specific data is retrieved (e.g. search screens) and determine whether the key for the item being looked up is controllable externally. The key may be a hidden field in the HTML form field, might be passed as a URL parameter or as an unencrypted cookie variable, then in each of these cases it will be possible to tamper with the key value. One manifestation of this weakness is when a system uses sequential or otherwise easily-guessable session IDs that would allow one user to easily switch to another user's session and read/modify their data.
Common Consequences (3)
Access ControlBypass Protection Mechanism
Access control checks for specific user data or functionality can be bypassed.
Access ControlGain Privileges or Assume Identity
Horizontal escalation of privilege is possible (one user can view/modify information of another user).
Access ControlGain Privileges or Assume Identity
Vertical escalation of privilege is possible if the user-controlled key is actually a flag that indicates administrator status, allowing the attacker to gain administrative access.
Mitigations (3)
Architecture and DesignFor each and every data access, ensure that the user has sufficient privilege to access the record that is being requested.
Architecture and Design, ImplementationMake sure that the key that is used in the lookup of a specific user's record is not controllable externally by the user or that any tampering can be detected.
Architecture and DesignUse encryption in order to make it more difficult to guess other legitimate values of the key or associate a digital signature with the key so that the server can verify that there has been no tampering.
Examples (1)
The following code uses a parameterized statement, which escapes metacharacters and prevents SQL injection vulnerabilities, to construct and execute a SQL query that searches for an invoice matching the specified identifier [1]. The identifier is selected from a list of all invoices associated with the current authenticated user.
... conn = new SqlConnection(_ConnectionString); conn.Open(); int16 id = System.Convert.ToInt16(invoiceID.Text); SqlCommand query = new SqlCommand( "SELECT * FROM invoices WHERE id = @id", conn); query.Parameters.AddWithValue("@id", id); SqlDataReader objReader = objCommand.ExecuteReader(); ...
Bad · C#
CVE IDTitleCVSSSeverityPublished
CVE-2025-46387 Emby MediaBrowser 安全漏洞 — MediaBrowser 8.8 High2025-08-06
CVE-2025-46386 Emby MediaBrowser 安全漏洞 — MediaBrowser 8.8 High2025-08-06
CVE-2025-5947 Service Finder Bookings <= 6.0 - Authentication Bypass via User Switch Cookie — Service Finder Bookings 9.8 Critical2025-08-01
CVE-2025-53357 GLPI permits reservation modification by unauthorized users — glpi 5.4 Medium2025-07-30
CVE-2025-52448 Salesforce Tableau Server 安全漏洞 — Tableau Server 8.1 -2025-07-25
CVE-2025-52447 Salesforce Tableau 安全漏洞 — Tableau Server 8.1 -2025-07-25
CVE-2025-52446 Salesforce Tableau 安全漏洞 — Tableau Server 8.1 -2025-07-25
CVE-2025-34140 ETQ Reliance CG/NXG API Authorization Bypass via ;localized-text URI Suffix — Reliance CG (legacy) 5.3 -2025-07-22
CVE-2025-7900 Insecure Direct Object Reference in extension "femanager" (femanager) — Extension "femanager" 4.3 -2025-07-22
CVE-2025-7899 Insecure Direct Object Reference in extension "powermail" (powermail) — Extension "powermail" 7.5 -2025-07-22
CVE-2025-7938 jerryshensjf JPACookieShop 蛋糕商城JPA版 GoodsController.java updateGoods authorization — JPACookieShop 蛋糕商城JPA版 4.3 Medium2025-07-21
CVE-2025-4129 IDOR in PAVO Inc.'s PAVO Pay — PAVO Pay 7.5 High2025-07-21
CVE-2025-4040 IDOR in Turpak's Automatic Station Monitoring System — Automatic Station Monitoring System 7.1 High2025-07-21
CVE-2025-2301 IDOR in Akbim Software's Online Exam Registration — Online Exam Registration 4.4 Medium2025-07-21
CVE-2025-5681 IDOR in Turtek Software's Eyotek — Eyotek 6.5 Medium2025-07-21
CVE-2025-1469 IDOR in Turtek Software's Eyotek — Eyotek 7.5 High2025-07-21
CVE-2024-13175 IDOR in Vidco Software's VOC TESTER — VOC TESTER 5.5 Medium2025-07-18
CVE-2025-4855 Support Board <= 3.8.0 - Unauthenticated Authorization Bypass due to Use of Default Secret Key — Support Board 9.8 Critical2025-07-08
CVE-2025-6942 Delinea Secret Server 安全漏洞 — Secret Server 3.8 Low2025-07-02
CVE-2025-49135 CVAT missing validation for in-progress backup upload names — cvat 6.5AIMediumAI2025-06-25
CVE-2025-3091 MB connect line: Authorization bypass in mbCONNECT24/mymbCONNECT24 — mbCONNECT24 7.5 High2025-06-24
CVE-2025-49978 WordPress JobSearch plugin < 3.0.6 - Insecure Direct Object References (IDOR) Vulnerability — JobSearch 4.3 Medium2025-06-20
CVE-2025-49995 WordPress Download Attachments plugin <= 1.3.1 - Insecure Direct Object References (IDOR) vulnerability — Download Attachments 5.3 Medium2025-06-20
CVE-2025-6329 ScriptAndTools Real Estate Management System User Delete userdelete.php authorization — Real Estate Management System 5.4 Medium2025-06-20
CVE-2025-5195 Authorization Bypass Through User-Controlled Key in GitLab — GitLab 4.3 Medium2025-06-12
CVE-2024-45329 Fortinet FortiPortal 安全漏洞 — FortiPortal 3.9 Medium2025-06-10
CVE-2025-40661 Insecure Direct Object Reference (IDOR) vulnerability in DM Corporative CMS — DM Corporative CMS 6.5AIMediumAI2025-06-10
CVE-2025-40660 Insecure Direct Object Reference (IDOR) vulnerability in DM Corporative CMS — DM Corporative CMS 6.5AIMediumAI2025-06-10
CVE-2025-40659 Insecure Direct Object Reference (IDOR) vulnerability in DM Corporative CMS — DM Corporative CMS 6.5AIMediumAI2025-06-10
CVE-2025-40658 Insecure Direct Object Reference (IDOR) vulnerability in DM Corporative CMS — DM Corporative CMS 6.5AIMediumAI2025-06-10

Vulnerabilities classified as CWE-639 (通过用户控制密钥绕过授权机制) represent 1147 CVEs. The CWE taxonomy describes the weakness; review individual CVEs for product-specific impact.