Common Weakness Enumeration

CWE-352

Cross-Site Request Forgery (CSRF)

The web application does not, or cannot, sufficiently verify whether a request was intentionally provided by the user who sent the request, which could have originated from an unauthorized actor.

CVE-2025-46516 (GCVE-0-2025-46516)

Vulnerability from cvelistv5 – Published: 2025-04-24 16:08 – Updated: 2026-04-28 16:12
VLAI
Title
WordPress Twitter Card Generator plugin <= 1.0.5 - Cross Site Request Forgery (CSRF) to Stored XSS vulnerability
Summary
Cross-Site Request Forgery (CSRF) vulnerability in silencecm Twitter Card Generator twitter-card-generator allows Stored XSS.This issue affects Twitter Card Generator: from n/a through <= 1.0.5.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
References
Impacted products
Vendor Product Version
silencecm Twitter Card Generator Affected: 0 , ≤ 1.0.5 (custom)
Create a notification for this product.
Date Public
2026-04-01 16:39
Credits
johska | Patchstack Bug Bounty Program
Show details on NVD website

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CVE-2025-46520 (GCVE-0-2025-46520)

Vulnerability from cvelistv5 – Published: 2025-04-24 16:08 – Updated: 2026-04-28 16:12
VLAI
Title
WordPress Related Posts via Taxonomies plugin <= 1.0.1 - Cross Site Request Forgery (CSRF) to Stored XSS vulnerability
Summary
Cross-Site Request Forgery (CSRF) vulnerability in alphasis Related Posts via Taxonomies related-posts-via-taxonomies allows Stored XSS.This issue affects Related Posts via Taxonomies: from n/a through <= 1.0.1.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
References
Impacted products
Vendor Product Version
alphasis Related Posts via Taxonomies Affected: 0 , ≤ 1.0.1 (custom)
Create a notification for this product.
Date Public
2026-04-01 16:39
Credits
johska | Patchstack Bug Bounty Program
Show details on NVD website

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CVE-2025-46522 (GCVE-0-2025-46522)

Vulnerability from cvelistv5 – Published: 2025-04-24 16:08 – Updated: 2026-04-28 16:12
VLAI
Title
WordPress Tabs plugin <= 4.0.3 - Cross Site Request Forgery (CSRF) to Stored XSS vulnerability
Summary
Cross-Site Request Forgery (CSRF) vulnerability in Billy Bryant Tabs gt-tabs allows Stored XSS.This issue affects Tabs: from n/a through <= 4.0.3.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
References
Impacted products
Vendor Product Version
Billy Bryant Tabs Affected: 0 , ≤ 4.0.3 (custom)
Create a notification for this product.
Date Public
2026-04-01 16:39
Credits
johska | Patchstack Bug Bounty Program
Show details on NVD website

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CVE-2025-46524 (GCVE-0-2025-46524)

Vulnerability from cvelistv5 – Published: 2025-04-24 16:08 – Updated: 2026-05-12 00:13
VLAI
Title
WordPress WP Filter Post Category plugin <= 2.1.4 - Cross Site Request Forgery (CSRF) to Stored XSS vulnerability
Summary
Cross-Site Request Forgery (CSRF) vulnerability in stesvis WP Filter Post Category wp-filter-post-categories allows Stored XSS.This issue affects WP Filter Post Category: from n/a through <= 2.1.4.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
References
Impacted products
Vendor Product Version
stesvis WP Filter Post Category Affected: 0 , ≤ 2.1.4 (custom)
Create a notification for this product.
Date Public
2026-04-01 16:40
Credits
johska | Patchstack Bug Bounty Program
Show details on NVD website

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CVE-2025-46528 (GCVE-0-2025-46528)

Vulnerability from cvelistv5 – Published: 2025-04-24 16:08 – Updated: 2026-04-28 16:12
VLAI
Title
WordPress Availability Calendar plugin <= 0.2.4 - Cross Site Request Forgery (CSRF) Vulnerability
Summary
Cross-Site Request Forgery (CSRF) vulnerability in Steve Availability Calendar availability allows Stored XSS.This issue affects Availability Calendar: from n/a through <= 0.2.4.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
References
Impacted products
Vendor Product Version
Steve Availability Calendar Affected: 0 , ≤ 0.2.4 (custom)
Create a notification for this product.
Date Public
2026-04-01 16:39
Credits
johska | Patchstack Bug Bounty Program
Show details on NVD website

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CVE-2025-46530 (GCVE-0-2025-46530)

Vulnerability from cvelistv5 – Published: 2025-04-24 16:09 – Updated: 2026-04-28 16:12
VLAI
Title
WordPress Hacklog Remote Attachment plugin <= 1.3.2 - Cross Site Request Forgery (CSRF) Vulnerability
Summary
Cross-Site Request Forgery (CSRF) vulnerability in HuangYe WuDeng Hacklog Remote Attachment hacklog-remote-attachment allows Stored XSS.This issue affects Hacklog Remote Attachment: from n/a through <= 1.3.2.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
References
Impacted products
Vendor Product Version
HuangYe WuDeng Hacklog Remote Attachment Affected: 0 , ≤ 1.3.2 (custom)
Create a notification for this product.
Date Public
2026-04-01 16:39
Credits
johska | Patchstack Bug Bounty Program
Show details on NVD website

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CVE-2025-46547 (GCVE-0-2025-46547)

Vulnerability from cvelistv5 – Published: 2025-04-25 00:00 – Updated: 2025-04-25 16:58
VLAI
Summary
In Sherpa Orchestrator 141851, the web application lacks protection against CSRF attacks, with resultant effects of an attacker conducting XSS attacks, adding a new user or role, or exploiting a SQL injection issue.
SSVC
Exploitation: none Automatable: no Technical Impact: total
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
Impacted products
Vendor Product Version
Sherpa Orchestrator Affected: 141851 (custom)
Create a notification for this product.
Show details on NVD website

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CVE-2025-46721 (GCVE-0-2025-46721)

Vulnerability from cvelistv5 – Published: 2025-05-13 15:29 – Updated: 2025-05-13 19:07
VLAI
Title
nosurf vulnerable to CSRF due to non-functional same-origin request checks
Summary
nosurf is cross-site request forgery (CSRF) protection middleware for Go. A vulnerability in versions prior to 1.2.0 allows an attacker who controls content on the target site, or on a subdomain of the target site (either via XSS, or otherwise) to bypass CSRF checks and issue requests on user's behalf. Due to misuse of the Go `net/http` library, nosurf categorizes all incoming requests as plain-text HTTP requests, in which case the `Referer` header is not checked to have the same origin as the target webpage. If the attacker has control over HTML contents on either the target website (e.g. `example.com`), or on a website hosted on a subdomain of the target (e.g. `attacker.example.com`), they will also be able to manipulate cookies set for the target website. By acquiring the secret CSRF token from the cookie, or overriding the cookie with a new token known to the attacker, `attacker.example.com` is able to craft cross-site requests to `example.com`. A patch for the issue was released in nosurf 1.2.0. In lieu of upgrading to a patched version of nosurf, users may additionally use another HTTP middleware to ensure that a non-safe HTTP request is coming from the same origin (e.g. by requiring a `Sec-Fetch-Site: same-origin` header in the request).
SSVC
Exploitation: poc Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
Impacted products
Vendor Product Version
justinas nosurf Affected: < 1.2.0
Create a notification for this product.
Show details on NVD website

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CVE-2025-46743 (GCVE-0-2025-46743)

Vulnerability from cvelistv5 – Published: 2025-05-12 16:14 – Updated: 2025-05-12 17:29
VLAI
Title
Cross-Site Request Forgery
Summary
An authenticated user's token could be used by another source after the user had logged out prior to the token expiring.
SSVC
Exploitation: none Automatable: no Technical Impact: partial
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
SEL
Impacted products
Show details on NVD website

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CVE-2025-47410 (GCVE-0-2025-47410)

Vulnerability from cvelistv5 – Published: 2025-10-18 15:15 – Updated: 2025-11-04 21:10
VLAI
Title
Apache Geode: CSRF attacks through GET requests to the Management and Monitoring REST API that can execute gfsh commands on the target system
Summary
Apache Geode is vulnerable to CSRF attacks through GET requests to the Management and Monitoring REST API that could allow an attacker who has tricked a user into giving up their Geode session credentials to submit malicious commands on the target system on behalf of the authenticated user. This issue affects Apache Geode: versions 1.10 through 1.15.1 Users are recommended to upgrade to version 1.15.2, which fixes the issue.
SSVC
Exploitation: none Automatable: no Technical Impact: total
CISA Coordinator (v2.0.3)
CWE
  • CWE-352 - Cross-Site Request Forgery (CSRF)
Assigner
Impacted products
Vendor Product Version
Apache Software Foundation Apache Geode Affected: 1.10.0 , < 1.15.2 (semver)
Create a notification for this product.
Credits
S. M. Zuhair Zaki
Show details on NVD website

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Mitigation ID: MIT-4

Phase: Architecture and Design

Strategy: Libraries or Frameworks

Description:

  • Use a vetted library or framework that does not allow this weakness to occur or provides constructs that make this weakness easier to avoid [REF-1482].
  • For example, use anti-CSRF packages such as the OWASP CSRFGuard. [REF-330]
  • Another example is the ESAPI Session Management control, which includes a component for CSRF. [REF-45]
Mitigation

Phase: Implementation

Description:

  • Ensure that the application is free of cross-site scripting issues (CWE-79), because most CSRF defenses can be bypassed using attacker-controlled script.
Mitigation

Phase: Architecture and Design

Description:

  • Generate a unique nonce for each form, place the nonce into the form, and verify the nonce upon receipt of the form. Be sure that the nonce is not predictable (CWE-330). [REF-332]
Mitigation

Phase: Architecture and Design

Description:

  • Identify especially dangerous operations. When the user performs a dangerous operation, send a separate confirmation request to ensure that the user intended to perform that operation.
Mitigation

Phase: Architecture and Design

Description:

  • Use the "double-submitted cookie" method as described by Felten and Zeller:
  • When a user visits a site, the site should generate a pseudorandom value and set it as a cookie on the user's machine. The site should require every form submission to include this value as a form value and also as a cookie value. When a POST request is sent to the site, the request should only be considered valid if the form value and the cookie value are the same.
  • Because of the same-origin policy, an attacker cannot read or modify the value stored in the cookie. To successfully submit a form on behalf of the user, the attacker would have to correctly guess the pseudorandom value. If the pseudorandom value is cryptographically strong, this will be prohibitively difficult.
  • This technique requires Javascript, so it may not work for browsers that have Javascript disabled. [REF-331]
Mitigation

Phase: Architecture and Design

Description:

  • Do not use the GET method for any request that triggers a state change.
Mitigation

Phase: Implementation

Description:

  • Check the HTTP Referer header to see if the request originated from an expected page. This could break legitimate functionality, because users or proxies may have disabled sending the Referer for privacy reasons.
CAPEC-111: JSON Hijacking (aka JavaScript Hijacking)

An attacker targets a system that uses JavaScript Object Notation (JSON) as a transport mechanism between the client and the server (common in Web 2.0 systems using AJAX) to steal possibly confidential information transmitted from the server back to the client inside the JSON object by taking advantage of the loophole in the browser's Same Origin Policy that does not prohibit JavaScript from one website to be included and executed in the context of another website.

CAPEC-462: Cross-Domain Search Timing

An attacker initiates cross domain HTTP / GET requests and times the server responses. The timing of these responses may leak important information on what is happening on the server. Browser's same origin policy prevents the attacker from directly reading the server responses (in the absence of any other weaknesses), but does not prevent the attacker from timing the responses to requests that the attacker issued cross domain.

CAPEC-467: Cross Site Identification

An attacker harvests identifying information about a victim via an active session that the victim's browser has with a social networking site. A victim may have the social networking site open in one tab or perhaps is simply using the "remember me" feature to keep their session with the social networking site active. An attacker induces a payload to execute in the victim's browser that transparently to the victim initiates a request to the social networking site (e.g., via available social network site APIs) to retrieve identifying information about a victim. While some of this information may be public, the attacker is able to harvest this information in context and may use it for further attacks on the user (e.g., spear phishing).

CAPEC-62: Cross Site Request Forgery

An attacker crafts malicious web links and distributes them (via web pages, email, etc.), typically in a targeted manner, hoping to induce users to click on the link and execute the malicious action against some third-party application. If successful, the action embedded in the malicious link will be processed and accepted by the targeted application with the users' privilege level. This type of attack leverages the persistence and implicit trust placed in user session cookies by many web applications today. In such an architecture, once the user authenticates to an application and a session cookie is created on the user's system, all following transactions for that session are authenticated using that cookie including potential actions initiated by an attacker and simply "riding" the existing session cookie.

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