π¨ CVE-2026-62985
request-filtering-agent is an http(s).Agent implementation that blocks requests to Private/Reserved IP addresses. Prior to 3.2.1, RequestFilteringHttpAgent and RequestFilteringHttpsAgent synchronously threw from createConnection when rejecting a literal private-IP host such as 169.254.169.254 or 127.0.0.1. Because Node.js http.request and http.get expect connection failures to be delivered asynchronously, the throw bypassed req.on('error') and became an uncaught exception that could terminate the application process. Hostnames resolved through the asynchronous lookup path were not affected by this error-delivery asymmetry. This issue is fixed in version 3.2.1.
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request-filtering-agent is an http(s).Agent implementation that blocks requests to Private/Reserved IP addresses. Prior to 3.2.1, RequestFilteringHttpAgent and RequestFilteringHttpsAgent synchronously threw from createConnection when rejecting a literal private-IP host such as 169.254.169.254 or 127.0.0.1. Because Node.js http.request and http.get expect connection failures to be delivered asynchronously, the throw bypassed req.on('error') and became an uncaught exception that could terminate the application process. Hostnames resolved through the asynchronous lookup path were not affected by this error-delivery asymmetry. This issue is fixed in version 3.2.1.
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GitHub
Merge commit from fork Β· azu/request-filtering-agent@9d12561
An http(s).Agent implementation that block request Private/Reserved IP addresses. Prevent SSRF. - Merge commit from fork Β· azu/request-filtering-agent@9d12561
π¨ CVE-2026-63627
mppx is a TypeScript interface for machine payments protocol. Prior to 0.8.2, FeePayerPolicy in src/tempo/internal/fee-payer.ts used decodeFunctionData to validate fee-sponsored calldata but did not reject trailing bytes. A client could append nonzero padding that increased intrinsic calldata gas while gas_limit and max_fee_per_gas remained within policy caps, causing the server fee_payer wallet to pay substantially more than the decoded transaction required. The tested 16 KB header limit bounded the demonstrated padding to about 5,500 bytes and produced approximately five times the normal transaction fee. This issue is fixed in version 0.8.2.
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mppx is a TypeScript interface for machine payments protocol. Prior to 0.8.2, FeePayerPolicy in src/tempo/internal/fee-payer.ts used decodeFunctionData to validate fee-sponsored calldata but did not reject trailing bytes. A client could append nonzero padding that increased intrinsic calldata gas while gas_limit and max_fee_per_gas remained within policy caps, causing the server fee_payer wallet to pay substantially more than the decoded transaction required. The tested 16 KB header limit bounded the demonstrated padding to about 5,500 bytes and produced approximately five times the normal transaction fee. This issue is fixed in version 0.8.2.
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GitHub
fix: reject non-canonical fee-payer transactions (#602) Β· wevm/mppx@24ddcca
TypeScript Interface for Machine Payments Protocol - fix: reject non-canonical fee-payer transactions (#602) Β· wevm/mppx@24ddcca
π¨ CVE-2026-65829
MPXJ is an open source library to read and write project plans from a variety of file formats and databases. From 7.3.0 until 16.5.0, reading a suitably crafted Primavera P3 PRX or SureTrak STX file can cause MPXJ to write files to arbitrary locations in the filesystem. This issue is fixed in version 16.5.0.
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MPXJ is an open source library to read and write project plans from a variety of file formats and databases. From 7.3.0 until 16.5.0, reading a suitably crafted Primavera P3 PRX or SureTrak STX file can cause MPXJ to write files to arbitrary locations in the filesystem. This issue is fixed in version 16.5.0.
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GitHub
PRX/STX: fix path traversal vulnerability Β· joniles/mpxj@4347315
Primary repository for MPXJ library. Contribute to joniles/mpxj development by creating an account on GitHub.
π¨ CVE-2026-76708
A vulnerability exists in the Analytics and Location Engine (ALE) where the application and underlying operating system use default, hard-coded credentials for several administrative and system accounts. An unauthenticated remote attacker could exploit this vulnerability by attempting to log in using these known default credentials.
Successful exploitation could result in an attacker gaining unauthorized access to the application's management interface and the underlying operating system, potentially leading to full system compromise.
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A vulnerability exists in the Analytics and Location Engine (ALE) where the application and underlying operating system use default, hard-coded credentials for several administrative and system accounts. An unauthenticated remote attacker could exploit this vulnerability by attempting to log in using these known default credentials.
Successful exploitation could result in an attacker gaining unauthorized access to the application's management interface and the underlying operating system, potentially leading to full system compromise.
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π¨ CVE-2026-76709
A vulnerability exists in the internal administrative component of Analytics and Location Engine (ALE). Successful exploitation of this vulnerability could allow an unauthenticated remote attacker to gain unauthorized write access to the file system with elevated privileges, potentially resulting in full system compromise.
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A vulnerability exists in the internal administrative component of Analytics and Location Engine (ALE). Successful exploitation of this vulnerability could allow an unauthenticated remote attacker to gain unauthorized write access to the file system with elevated privileges, potentially resulting in full system compromise.
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π¨ CVE-2026-76710
A vulnerability exists in the Analytics and Location Engine (ALE) management interface that may allow for the disclosure of sensitive information. An unauthenticated remote attacker could exploit this vulnerability by sending specially crafted requests to certain internal endpoints. Successful exploitation could result in the disclosure of sensitive site hierarchy, infrastructure details, and client device information.
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A vulnerability exists in the Analytics and Location Engine (ALE) management interface that may allow for the disclosure of sensitive information. An unauthenticated remote attacker could exploit this vulnerability by sending specially crafted requests to certain internal endpoints. Successful exploitation could result in the disclosure of sensitive site hierarchy, infrastructure details, and client device information.
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π¨ CVE-2026-76711
A vulnerability exists in an Analytics and Location Engine (ALE) component where the impacted process improperly processes incoming socket connections. An unauthenticated remote attacker could exploit this vulnerability by providing specially crafted input during the connection process. Successful exploitation could result in unauthorized data injection.
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A vulnerability exists in an Analytics and Location Engine (ALE) component where the impacted process improperly processes incoming socket connections. An unauthenticated remote attacker could exploit this vulnerability by providing specially crafted input during the connection process. Successful exploitation could result in unauthorized data injection.
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π¨ CVE-2026-76712
A vulnerability exists in the Analytics and Location Engine (ALE) that may allow for unauthorized access, information disclosure, or denial of service. An unauthenticated remote attacker could exploit the vulnerable system by sending specially crafted input or intercepting network communications. Successful exploitation could result in the disclosure of sensitive information, bypass of security controls, or a denial of service condition on the affected system.
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A vulnerability exists in the Analytics and Location Engine (ALE) that may allow for unauthorized access, information disclosure, or denial of service. An unauthenticated remote attacker could exploit the vulnerable system by sending specially crafted input or intercepting network communications. Successful exploitation could result in the disclosure of sensitive information, bypass of security controls, or a denial of service condition on the affected system.
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π¨ CVE-2026-76713
A vulnerability exists in the maintenance restore functionality of Analytics and Location Engine (ALE). Successful exploitation of this vulnerability could allow an authenticated remote attacker to gain unauthorized access to the file system with root privileges, potentially resulting in full system compromise.
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A vulnerability exists in the maintenance restore functionality of Analytics and Location Engine (ALE). Successful exploitation of this vulnerability could allow an authenticated remote attacker to gain unauthorized access to the file system with root privileges, potentially resulting in full system compromise.
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π¨ CVE-2026-76714
Vulnerabilities in the Analytics and Location Engine web interface allows remote authenticated users to run arbitrary commands on the underlying host. A successful exploit could allow an attacker to execute arbitrary commands as root on the underlying operating system leading to complete system compromise.
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Vulnerabilities in the Analytics and Location Engine web interface allows remote authenticated users to run arbitrary commands on the underlying host. A successful exploit could allow an attacker to execute arbitrary commands as root on the underlying operating system leading to complete system compromise.
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π¨ CVE-2026-76715
A vulnerability in an administrative component of Analytics and Location Engine (ALE) is vulnerable to a man-in-the-middle (MitM) attack. Successful exploitation of this vulnerability could allow an unauthenticated remote attacker to execute arbitrary code with root privileges on the affected appliance.
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A vulnerability in an administrative component of Analytics and Location Engine (ALE) is vulnerable to a man-in-the-middle (MitM) attack. Successful exploitation of this vulnerability could allow an unauthenticated remote attacker to execute arbitrary code with root privileges on the affected appliance.
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π¨ CVE-2026-76716
Multiple vulnerabilities exist in the Analytics and Location Engine (ALE) that may allow for unauthorized access or denial of service. An unauthenticated remote attacker could exploit these vulnerabilities by sending specially crafted input or leveraging improper security configurations. Successful exploitation could result in a denial of service condition or unauthorized access to sensitive information.
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Multiple vulnerabilities exist in the Analytics and Location Engine (ALE) that may allow for unauthorized access or denial of service. An unauthenticated remote attacker could exploit these vulnerabilities by sending specially crafted input or leveraging improper security configurations. Successful exploitation could result in a denial of service condition or unauthorized access to sensitive information.
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π¨ CVE-2026-76717
A vulnerability exists in the Analytics and Location Engine (ALE) API that may allow for the disclosure of sensitive information. An unauthenticated remote attacker could exploit this vulnerability by providing specially crafted input to a specific API endpoint. Successful exploitation could result in the disclosure of sensitive user information, including password hashes, which could be used to facilitate further attacks.
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A vulnerability exists in the Analytics and Location Engine (ALE) API that may allow for the disclosure of sensitive information. An unauthenticated remote attacker could exploit this vulnerability by providing specially crafted input to a specific API endpoint. Successful exploitation could result in the disclosure of sensitive user information, including password hashes, which could be used to facilitate further attacks.
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π¨ CVE-2026-77322
SIPGO is a library for writing SIP services in the GO language. Prior to 1.4.3, WSConnection.Read in sip/transport_ws.go creates a wsutil.Reader without setting MaxFrameSize, allowing NextFrame to accept a client-controlled header.Length before ParseMaxMessageLength is applied. An unauthenticated WS or WSS peer can send a frame header declaring an extremely large payload, causing an oversized allocation or a makeslice length panic before the payload is read and crashing or exhausting memory in the server process. This issue is fixed in version 1.4.3.
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SIPGO is a library for writing SIP services in the GO language. Prior to 1.4.3, WSConnection.Read in sip/transport_ws.go creates a wsutil.Reader without setting MaxFrameSize, allowing NextFrame to accept a client-controlled header.Length before ParseMaxMessageLength is applied. An unauthenticated WS or WSS peer can send a frame header declaring an extremely large payload, causing an oversized allocation or a makeslice length panic before the payload is read and crashing or exhausting memory in the server process. This issue is fixed in version 1.4.3.
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GitHub
fix: set websocket max frame size to prevent DOS from frame payload l⦠· emiago/sipgo@769e4bc
β¦ength
Reported by https://github.com/emiago/sipgo/security/advisories/GHSA-8h6x-h86x-75wh
Reported by https://github.com/emiago/sipgo/security/advisories/GHSA-8h6x-h86x-75wh
π¨ CVE-2026-79767
Gardener implements the automated management and operation of Kubernetes clusters as a service. Prior to 1.142.6, 1.143.3, 1.144.2, and 1.145.0, the customverbauthorizer admission plugin's mustCheckProjectMembers manage-members check compares changes to User subjects but does not account for Group or ServiceAccount subjects in Project.spec.members. A project administrator who lacks manage-members permission can add arbitrary Group or ServiceAccount subjects, including the system:authenticated Group, and thereby grant broad project access. The resulting access can include Shoots, Secrets, and cloud provider credentials. This issue is fixed in versions 1.142.6, 1.143.3, 1.144.2, and 1.145.0.
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Gardener implements the automated management and operation of Kubernetes clusters as a service. Prior to 1.142.6, 1.143.3, 1.144.2, and 1.145.0, the customverbauthorizer admission plugin's mustCheckProjectMembers manage-members check compares changes to User subjects but does not account for Group or ServiceAccount subjects in Project.spec.members. A project administrator who lacks manage-members permission can add arbitrary Group or ServiceAccount subjects, including the system:authenticated Group, and thereby grant broad project access. The resulting access can include Shoots, Secrets, and cloud provider credentials. This issue is fixed in versions 1.142.6, 1.143.3, 1.144.2, and 1.145.0.
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GitHub
[release-v1.144] Align `customverbauthorizer` subject handling with R⦠· gardener/gardener@63751db
β¦BAC subject types (#15080)
* Align customverbauthorizer subject handling with RBAC subject types
Update the member classification logic to properly account for all
non-service-account subject ki...
* Align customverbauthorizer subject handling with RBAC subject types
Update the member classification logic to properly account for all
non-service-account subject ki...
π¨ CVE-2026-83801
Nautobot is a Network Source of Truth and Network Automation Platform. Prior to 2.4.37 and 3.1.8, a user with extras.add_relationship or extras.change_relationship permission can store HTML or JavaScript in a Relationship description, and a user with dcim.add_modulefamily or dcim.change_modulefamily permission can store it in a Module Family name. Nautobot assigns these values to form field help_text rendered by render_field.html through Django's |safe filter without adequate neutralization. The stored content executes in the authenticated browser session of any user, including an administrator or superuser, who opens an affected create or edit form. This can enable actions as the victim, session or token theft, and further privilege escalation. This issue is fixed in versions 2.4.37 and 3.1.8.
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Nautobot is a Network Source of Truth and Network Automation Platform. Prior to 2.4.37 and 3.1.8, a user with extras.add_relationship or extras.change_relationship permission can store HTML or JavaScript in a Relationship description, and a user with dcim.add_modulefamily or dcim.change_modulefamily permission can store it in a Module Family name. Nautobot assigns these values to form field help_text rendered by render_field.html through Django's |safe filter without adequate neutralization. The stored content executes in the authenticated browser session of any user, including an administrator or superuser, who opens an affected create or edit form. This can enable actions as the victim, session or token theft, and further privilege escalation. This issue is fixed in versions 2.4.37 and 3.1.8.
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GitHub
Merge commit from fork Β· nautobot/nautobot@e6ff20d
* Fix for GHSA-56v6-2fhr-wxgq
* Added help text per feedback
* Added help text per feedback
π¨ CVE-2026-83805
Nautobot is a Network Source of Truth and Network Automation Platform. From 3.0.0 until 3.1.8, the generic ApprovalWorkflowStageResponse create endpoint does not enforce approver-group membership, change permission on the object under review, or the one-response-per-user restriction applied by the intended approve and deny actions. A user with only extras.add_approvalworkflowstageresponse can submit approved responses directly, while writable user and state fields permit responses to be attributed to arbitrary users. These forged responses can satisfy min_approvers, approve the workflow, and activate its gated ScheduledJob without a legitimate approver. This issue is fixed in version 3.1.8.
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Nautobot is a Network Source of Truth and Network Automation Platform. From 3.0.0 until 3.1.8, the generic ApprovalWorkflowStageResponse create endpoint does not enforce approver-group membership, change permission on the object under review, or the one-response-per-user restriction applied by the intended approve and deny actions. A user with only extras.add_approvalworkflowstageresponse can submit approved responses directly, while writable user and state fields permit responses to be attributed to arbitrary users. These forged responses can satisfy min_approvers, approve the workflow, and activate its gated ScheduledJob without a legitimate approver. This issue is fixed in version 3.1.8.
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GitHub
Merge commit from fork Β· nautobot/nautobot@8682707
* fix: prevent authorization bypass in approval workflow response API
* Add changelog
* Fix tests
* fix: remove insecure approval workflow response endpoint
* Fix `object_type` in nested user.
...
* Add changelog
* Fix tests
* fix: remove insecure approval workflow response endpoint
* Fix `object_type` in nested user.
...
π¨ CVE-2026-89281
The Apache Lounge Windows distribution of Apache HTTP Server build contains a hardcoded configuration path vulnerability within openssl.cnf path that can allow local code execution.
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The Apache Lounge Windows distribution of Apache HTTP Server build contains a hardcoded configuration path vulnerability within openssl.cnf path that can allow local code execution.
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Shaping the future together
A tale of several hijacks and what it taught me about runtime-driven testing
What do Ghostscript, Apache, PHP, GnuPG, wget, and Coreutils have in common? Explore the Windows file-hijacking issues linking them all.
π¨ CVE-2026-89282
The Apache Lounge Windows distribution of Apache HTTP Server build contains an insecure installation directory permissions vulnerability through its default install directory on C:\, which inherits write access for Authenticated Users.
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The Apache Lounge Windows distribution of Apache HTTP Server build contains an insecure installation directory permissions vulnerability through its default install directory on C:\, which inherits write access for Authenticated Users.
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Shaping the future together
A tale of several hijacks and what it taught me about runtime-driven testing
What do Ghostscript, Apache, PHP, GnuPG, wget, and Coreutils have in common? Explore the Windows file-hijacking issues linking them all.
π¨ CVE-2026-94574
A local cross-user code execution vulnerability exists in GNU wget (Windows builds from eternallybored.org) due to a hardcoded configuration file path (C:\msys64) that is writable by unprivileged users, allowing for arbitrary code execution via the use_askpass directive, potentially allowing local privilege escalation.
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A local cross-user code execution vulnerability exists in GNU wget (Windows builds from eternallybored.org) due to a hardcoded configuration file path (C:\msys64) that is writable by unprivileged users, allowing for arbitrary code execution via the use_askpass directive, potentially allowing local privilege escalation.
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Shaping the future together
A tale of several hijacks and what it taught me about runtime-driven testing
What do Ghostscript, Apache, PHP, GnuPG, wget, and Coreutils have in common? Explore the Windows file-hijacking issues linking them all.
π¨ CVE-2026-62364
wlc is a Weblate command-line client using Weblate's REST API. Prior to 2.0.1, automatically discovered configuration from .weblate, .weblate.ini, or weblate.ini can select the API URL while an unscoped API token is supplied through WLC_KEY or --key without a matching WLC_URL or --url. When wlc runs in an untrusted repository, pull request checkout, or directory with untrusted ancestor configuration, it can send the token to an attacker-controlled project-configured URL. URL-scoped keys in [keys] are not affected. This issue is fixed in version 2.0.1.
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wlc is a Weblate command-line client using Weblate's REST API. Prior to 2.0.1, automatically discovered configuration from .weblate, .weblate.ini, or weblate.ini can select the API URL while an unscoped API token is supplied through WLC_KEY or --key without a matching WLC_URL or --url. When wlc runs in an untrusted repository, pull request checkout, or directory with untrusted ancestor configuration, it can send the token to an attacker-controlled project-configured URL. URL-scoped keys in [keys] are not affected. This issue is fixed in version 2.0.1.
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GitHub
fix: require explicit URL for unscoped API keys Β· WeblateOrg/wlc@15cbdfc
Reject WLC_KEY or --key when the API URL comes only from automatically discovered project configuration. Allow the combinations when WLC_URL or --url pins the destination, and keep URL-scoped keys ...