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Atomicorp WAF Research Note: CVE-2026-46555
WhatsApp MCP: Unauthenticated bridge API allows message sending and arbitrary file exfiltration
CVE Details
- Already protected by existing Atomicorp WAF rules
- Protection status: Understanding Atomicorp WAF Protection Status
- CVE: CVE-2026-46555
- Name: WhatsApp MCP: Unauthenticated bridge API allows message sending and arbitrary file exfiltration
- Severity: High
- CVSS: 7.1 (v3.1) (High)
- CVSS version: 3.1
- CVSS source: NVD
- CVSS vector:
CVSS:3.1/AV:L/AC:L/PR:L/UI:N/S:U/C:H/I:H/A:N- Attack vector: Local
- Attack complexity: Low
- Privileges required: Low
- User interaction: None
- Scope: Unchanged
- Confidentiality impact: High
- Integrity impact: High
- Availability impact: None
- CWE: CWE-22 — Improper Limitation of a Pathname to a Restricted Directory (‘Path Traversal’), CWE-306 — Missing Authentication for Critical Function, CWE-346 — Origin Validation Error
- Related CAPEC attack patterns (via MITRE CWE relationships): CAPEC-111 (opens in a new tab) , CAPEC-12 (opens in a new tab) , CAPEC-126 (opens in a new tab) , CAPEC-141 (opens in a new tab) , CAPEC-142 (opens in a new tab) , CAPEC-160 (opens in a new tab) , CAPEC-166 (opens in a new tab) , CAPEC-21 (opens in a new tab) , CAPEC-216 (opens in a new tab) , CAPEC-36 (opens in a new tab) , CAPEC-384 (opens in a new tab) , CAPEC-385 (opens in a new tab) , CAPEC-386 (opens in a new tab) , CAPEC-387 (opens in a new tab) , CAPEC-388 (opens in a new tab) , CAPEC-510 (opens in a new tab) , CAPEC-59 (opens in a new tab) , CAPEC-60 (opens in a new tab) , CAPEC-62 (opens in a new tab) , CAPEC-64 (opens in a new tab) , CAPEC-75 (opens in a new tab) , CAPEC-76 (opens in a new tab) , CAPEC-78 (opens in a new tab) , CAPEC-79 (opens in a new tab) , CAPEC-89 (opens in a new tab)
- Vendor: verygoodplugins
- Vulnerable product: whatsapp mcp server
- CVE published: 2026-07-20
- CVE last modified: 2026-08-18
- Affected versions (NVD configurations):
- whatsapp mcp server: < 0.2.1
- EPSS: 0.0019; 8.6th percentile (FIRST (opens in a new tab) )
- Latest Update: 2026-09-06
- Selected Rule IDs observed: 340007 , 344360 , 347009 , 390709
- Matching rules: 4; rules with blocking actions: 4
- Would-block Rule IDs: 340007 , 344360 , 347009 , 390709
- Request surfaces inspected: JSON request data, Request URI, Request argument names, Request arguments, Request cookies, Request filename, SOAP request data, XML request data
Technical CPE data
This section lists vulnerable CPE matches retained from the NVD configurations. It supplements the readable affected-product information above.
cpe:2.3:a:verygoodplugins:whatsapp_mcp_server:*:*:*:*:*:*:*:*- Version end (exclusive):
0.2.1 - NVD match criteria ID:
32AD7D53-BB8C-4DA9-BE52-E6A9AC5C0985
- Version end (exclusive):
Vulnerability Description
WhatsApp MCP Server is a Model Context Protocol (MCP) server for WhatsApp, enabling Claude to read and send WhatsApp messages. Prior to version 0.2.1, the whatsapp-bridge HTTP API listens on 127.0.0.1:8080 without authentication and without Host header validation, and the /api/send endpoint accepts an absolute media_path parameter without confining it to a safe directory. Combined, these issues allow any local process running as the same user as the bridge to send WhatsApp messages from the paired account without authorization; the same caller to read arbitrary files readable by the user (e.g. SSH private keys, browser session data, source code, dotfiles) and exfiltrate them as WhatsApp document attachments; and/or a remote attacker to trigger the same operations via DNS rebinding from a webpage the user visits, since no Host header validation is performed. In MCP environments, “local caller” extends beyond processes the user explicitly launched — sibling MCP servers, IDE extensions, and tool-triggered flows running in the user’s session can act as the effective caller. This issue is fixed in whatsapp-mcp v0.2.1 and corresponding Docker images / release artifacts. Users should upgrade immediately. The fix introduces bearer token authentication on the bridge HTTP API (configured via environment variable, required on all requests, validated with constant-time comparison); host header allow-list validation to prevent DNS rebinding; and confinement of media_path to a configured directory, with rejection of absolute paths outside the root and path traversal sequences. This is a breaking change for clients of the bridge API. For users who cannot immediately upgrade: Stop the bridge, or block loopback access to port 8080, when the bridge is not actively in use; avoid running the bridge alongside untrusted MCP servers, browser extensions, or other untrusted local processes; avoid browsing untrusted sites while the bridge is running (DNS rebinding mitigation); and/or run the bridge under a dedicated user account or in a sandbox/container with no access to sensitive files.
Recommended Actions
Maintain the observed Atomicorp protections. Keep your Atomicorp commercial rules current and confirm that the selected observed rules (340007 , 344360 , 347009 , 390709 ) have not been locally disabled. Atomicorp commercial rules are enabled by default. If you use Atomic WAF, review the applicable policy and rule settings.
Apply the vendor’s remediation. WAF protection is defense in depth and does not replace upgrading or following the affected vendor’s guidance.
- Affected versions: verygoodplugins whatsapp-mcp version < 0.2.1.
- The CVE record does not include written upgrade or workaround instructions, but it does publish the following patch or mitigation reference:
Validate after changes. Confirm rule updates are current, review WAF events for the affected application, and test application behavior after vendor upgrades, mitigations, or local policy changes.
Research Notes
Atomicorp WAF protections are designed around attack techniques and exploit behaviors, allowing existing protections to apply across multiple vulnerabilities without requiring a unique rule for every CVE.
Public Vulnerability References
- NVD (opens in a new tab)
- CVE Record (opens in a new tab)
- CVE authority reference: https://github.com/verygoodplugins/whatsapp-mcp/blob/main/SECURITY.md (opens in a new tab)
- Patch or mitigation: https://github.com/verygoodplugins/whatsapp-mcp/releases/tag/v0.2.1 (opens in a new tab)
- Vendor advisory: https://github.com/verygoodplugins/whatsapp-mcp/security/advisories/GHSA-7jj9-4qqq-4xc4 (opens in a new tab)
Test or Research Source
- Source: Atomicorp AI Research Framework
- Tags: cve, derived, traversal, waf-probe
Research Note Context
This research note documents exploit-technique analysis associated with this vulnerability and references Atomicorp WAF protections observed during engineering review, testing, or validation activities.
Atomicorp security controls are generally designed to identify and mitigate attack techniques and exploit behaviors rather than individual CVE identifiers. As a result, protections developed for one vulnerability may also apply to related attack variants and future vulnerabilities using similar techniques.
Learn More
Atomicorp develops commercially supported security technologies for web applications, servers, endpoints, workloads, and legacy enterprise platforms.
Organizations interested in protecting systems against exploit techniques associated with vulnerabilities such as this one can learn more about:
- Atomic ModSecurity Rules: commercially maintained WAF rules for ModSecurity deployments, including protections for web attacks, bots, scanners, malware, exploitation attempts, and emerging vulnerability classes.
- Atomic WAF: an enterprise web application firewall with Atomicorp rules, centralized management, reporting, authentication controls, and operational tooling.
- Atomic ModSecurity Integrator: a special licensing option for MSPs, MSSPs, OEMs, VARs, reverse proxy providers, and other integrators who want to incorporate Atomicorp ModSecurity rule technology into their own products or services.
- Atomic OSSEC: an enterprise OSSEC-based intrusion detection, compliance, and security monitoring platform.
- Atomic Protector: workload protection for Linux, web, cloud, data center, and hybrid environments.
For additional information, product evaluations, or technical discussions, visit https://www.atomicorp.com/ or https://modsecurity.io/ (opens in a new tab) .