Wpgmaps
Monthly
Unauthenticated denial of service in WP Go Maps WordPress plugin (versions <= 10.1.08) allows remote attackers without any credentials to exhaust server resources, degrading or disrupting availability for the affected WordPress installation. The vulnerability stems from CWE-770 (resource allocation without limits or throttling), enabling unconstrained consumption of server capacity via crafted network requests. No active exploitation has been confirmed by CISA KEV, and no public exploit code has been identified at time of analysis.
Broken access control in WP Go Maps WordPress plugin versions 10.1.04 and earlier allows unauthenticated remote attackers to access restricted resources without authorization. The flaw stems from missing authorization checks (CWE-862) on one or more plugin endpoints, enabling network-accessible exploitation with no credentials required. Impact is limited to a partial confidentiality breach - no data modification or availability impact - but the zero-barrier entry point makes it trivially reachable by automated scanners. No public exploit code or CISA KEV listing has been identified at time of analysis.
Authorization bypass in the WP Go Maps WordPress plugin (all versions up to and including 10.1.01) permits unauthenticated remote attackers to insert arbitrary records into plugin-managed database tables - maps, markers, circles, polygons, polylines, rectangles, and point labels - by exploiting a race condition between namespace validation and query execution in the plugin's REST API. The flaw exists because the WPGMZA prefix check in the phpClass parameter validation passes for legitimate plugin classes such as WPGMZA\Map and WPGMZA\Marker, which trigger a SQL INSERT into the corresponding table before the route rejects the request. No public exploit has been identified at time of analysis and the vulnerability is not listed in CISA KEV, though the unauthenticated network vector and low attack complexity make it trivially abusable against the wide WordPress install base.
WP Go Maps (formerly WP Google Maps) plugin for WordPress contains a Stored Cross-Site Scripting (XSS) vulnerability in the 'wpgmza_custom_js' parameter due to insufficient input sanitization and output escaping. Authenticated attackers with Subscriber-level privileges or higher can inject arbitrary JavaScript code that executes in the browsers of users visiting affected pages, potentially leading to session hijacking, credential theft, or malware distribution. The vulnerability affects all versions up to and including 10.0.05, with a CVSS score of 6.4 indicating moderate severity but significant practical impact due to low attack complexity and the ability to affect site-wide functionality.
The WP Go Maps (formerly WP Google Maps) plugin for WordPress is vulnerable to Reflected Cross-Site Scripting via the map id parameter in all versions up to, and including, 9.0.28 due to insufficient. Rated medium severity (CVSS 6.1), this vulnerability is remotely exploitable, no authentication required, low attack complexity. Public exploit code available and EPSS exploitation probability 54.2%.
Unauthenticated denial of service in WP Go Maps WordPress plugin (versions <= 10.1.08) allows remote attackers without any credentials to exhaust server resources, degrading or disrupting availability for the affected WordPress installation. The vulnerability stems from CWE-770 (resource allocation without limits or throttling), enabling unconstrained consumption of server capacity via crafted network requests. No active exploitation has been confirmed by CISA KEV, and no public exploit code has been identified at time of analysis.
Broken access control in WP Go Maps WordPress plugin versions 10.1.04 and earlier allows unauthenticated remote attackers to access restricted resources without authorization. The flaw stems from missing authorization checks (CWE-862) on one or more plugin endpoints, enabling network-accessible exploitation with no credentials required. Impact is limited to a partial confidentiality breach - no data modification or availability impact - but the zero-barrier entry point makes it trivially reachable by automated scanners. No public exploit code or CISA KEV listing has been identified at time of analysis.
Authorization bypass in the WP Go Maps WordPress plugin (all versions up to and including 10.1.01) permits unauthenticated remote attackers to insert arbitrary records into plugin-managed database tables - maps, markers, circles, polygons, polylines, rectangles, and point labels - by exploiting a race condition between namespace validation and query execution in the plugin's REST API. The flaw exists because the WPGMZA prefix check in the phpClass parameter validation passes for legitimate plugin classes such as WPGMZA\Map and WPGMZA\Marker, which trigger a SQL INSERT into the corresponding table before the route rejects the request. No public exploit has been identified at time of analysis and the vulnerability is not listed in CISA KEV, though the unauthenticated network vector and low attack complexity make it trivially abusable against the wide WordPress install base.
WP Go Maps (formerly WP Google Maps) plugin for WordPress contains a Stored Cross-Site Scripting (XSS) vulnerability in the 'wpgmza_custom_js' parameter due to insufficient input sanitization and output escaping. Authenticated attackers with Subscriber-level privileges or higher can inject arbitrary JavaScript code that executes in the browsers of users visiting affected pages, potentially leading to session hijacking, credential theft, or malware distribution. The vulnerability affects all versions up to and including 10.0.05, with a CVSS score of 6.4 indicating moderate severity but significant practical impact due to low attack complexity and the ability to affect site-wide functionality.
The WP Go Maps (formerly WP Google Maps) plugin for WordPress is vulnerable to Reflected Cross-Site Scripting via the map id parameter in all versions up to, and including, 9.0.28 due to insufficient. Rated medium severity (CVSS 6.1), this vulnerability is remotely exploitable, no authentication required, low attack complexity. Public exploit code available and EPSS exploitation probability 54.2%.