| CVE |
Vendors |
Products |
Updated |
CVSS v3.1 |
| In JetBrains GoLand before 2026.2 arbitrary code execution was possible before granting project trust in the Go Modules integration |
| In JetBrains GoLand before 2026.2 arbitrary code execution was possible before granting project trust via the configured Go SDK |
| In JetBrains WebStorm before 2026.2 arbitrary code execution was possible before granting project trust via project-local linter tooling |
| In JetBrains WebStorm before 2026.2 arbitrary code execution was possible before granting project trust via the configured Node.js interpreter |
| In JetBrains PhpStorm before 2026.2 arbitrary code execution was possible before granting project trust via the configured interpreter |
| In JetBrains IntelliJ IDEA before 2026.2 hTML injection was possible in an IDE notification, allowing silent user activity tracking |
| In JetBrains IntelliJ IDEA before 2026.2 arbitrary code execution was possible before granting project trust via development container configuration |
| In JetBrains IntelliJ IDEA before 2026.2 unauthorized input injection was possible in a Remote Development session |
| In JetBrains IntelliJ IDEA before 2026.2 unauthorized file access was possible in a Remote Development session |
| In JetBrains IntelliJ IDEA before 2026.2 arbitrary code injection was possible via UI Designer form files |
| In JetBrains PyCharm before 2026.1.4, 2026.2 arbitrary code execution via malicious Python executable was possible on untrusted project open |
| In JetBrains TeamCity before 2026.1.2, 2025.11.6 code execution in Git VCS roots was possible |
| NIOSSLCertificate._subjectAlternativeNames provides access to the raw bytes for a cert's SANs. NIOSSL provides access to a buffer assumed to be backed by an ASN1_STRING, but not all SANs are backed by ASN1_STRING, so accessing the buffer for such a type can lead to out-of-bounds memory access. This vulnerability is addressed in swift-nio-ssl version 2.37.2. |
| Logto omits validation of the SAML <Conditions> element, enabling attackers to strip time and audience restrictions and replay assertions indefinitely. |
| Logto allows unverified email-based SSO account linking, enabling an attacker to register an identity at a permissive IdP using a victim’s email and gain unauthorized access to the victim’s account. |
| Proxygen lacked a generalized slow-consumer detection mechanism in its core HTTP session layer. A remote, unauthenticated attacker could exploit HTTP/2 flow-control by setting SETTINGS_INITIAL_WINDOW_SIZE to 0 or withholding WINDOW_UPDATE frames, causing the server to buffer complete response bodies in memory indefinitely for stalled streams. By opening many simultaneous streams requesting large resources while preventing the server from transmitting responses, an attacker could induce unbounded memory growth leading to service degradation, resource exhaustion, or denial of service. Versions v2017.01.16.00 through v2026.07.20.00 are affected. |
| A non-global organization admin in one tenant can bypass tenant boundaries to delete, create, or modify resources in any other tenant by exploiting a mismatch between authorization (based on ?id=) and action (based on request body). |
| In affected versions of Octopus Deploy Insufficient checks on the project trigger actions allows an unauthorized user to trigger a deployment. |
| Improper control of generation of code ('Code Injection') in the variables feature in Devolutions PowerShell Universal 2026.2.2 and earlier allows an authenticated user with variable write permission to execute arbitrary PowerShell code via a crafted variable value that is not properly escaped when written to the variables configuration file. |
| Cleartext storage of sensitive information in the variables feature in Devolutions PowerShell Universal 2026.2.2 and earlier allows a local actor with file system access to read secret values via secret variables stored in cleartext on disk when no vault is selected. |