Wärtsilä Energy A.I CyberSecurity Scoring
27/03/2026
Access Monitoring Plan
Access Monitoring Plan
No incidents recorded for Wärtsilä Energy in 2026.
No incidents recorded for Wärtsilä Energy in 2026.
No incidents recorded for Wärtsilä Energy in 2026.
Latest updates, reports, and threat intel affecting the global network.
Technology group Wärtsilä has successfully achieved SOC 2 Type 1 compliance for its GEMS Cloud Connect software – formerly known as GEMS...
Wärtsilä Corporation has reported the completion of three major fire safety and explosion tests for its Quantum3 battery energy storage...
Wärtsilä has completed three major fire safety and explosion tests for its Quantum3 battery energy storage system.
Technology group Wärtsilä has successfully completed three major fire safety and explosion tests for its battery energy storage system,...
The November 2025 issue of World Pipelines captures a midstream industry in flux: adapting to the digital revolution, tightening security postures,...
Wärtsilä will provide a 68 MW energy storage system under contract to Zenobē in In Lerwick, Shetland.
Explore how Graciosa Island transformed its energy system and now thrives on renewable power with the innovative island grid.
Technology group Wärtsilä will supply 282MW of flexible engines to operate a new data center project in Ohio, USA. The onsite power facility...
Technology group Wärtsilä will supply 282MW of flexible engines to operate a new data center project in Ohio, USA.
Cline is an autonomous coding agent as an SDK, IDE extension, or CLI assistant. Prior to 3.0.30, the Cline Hub dashboard server launched by the cline dashboard command accepts WebSocket connections on the /browser endpoint without validating the Origin header, and when ROOM_SECRET is unset for local 127.0.0.1 binds, isAuthorizedBrowserRequest() allows attacker-controlled websites to send desktopCommand frames that read workspace state, mutate MCP and provider settings, and trigger command execution when a provider or model is configured. This issue is fixed in version 3.0.30.
CoreWCF is a port of the service side of Windows Communication Foundation (WCF) to .NET Core. In version 1.9.0, CoreWCF SPNEGO SecurityContextToken negotiation can expose the proof key recovered from the RSTR when TransportWithMessageCredential with Windows client credentials and session establishment are used, allowing an observer to impersonate the authenticated Windows principal and decrypt or forge WS-SecureConversation traffic. This issue is fixed in version 1.9.1.
CoreWCF is a port of the service side of Windows Communication Foundation (WCF) to .NET Core. Prior to 1.8.1 and 1.9.1, CoreWCF WS-Security endorsing and supporting signature verification does not ensure the selected ds:Signature covers the expected Security header target, allowing an attacker with one captured signed SOAP envelope to replay arbitrary service operations as the victim principal. This issue is fixed in versions 1.8.1 and 1.9.1.
CoreWCF is a port of the service side of Windows Communication Foundation (WCF) to .NET Core. Prior to 1.8.1 and 1.9.1, CoreWCF SAML 1.1 and SAML 2.0 token validation does not correctly resolve the issuer signing key or require signed tokens when IdentityConfiguration is used with federated bindings, allowing an unauthenticated remote attacker to impersonate any principal the trusted STS could issue. This issue is fixed in versions 1.8.1 and 1.9.1.
CoreWCF is a port of the service side of Windows Communication Foundation (WCF) to .NET Core. Prior to 1.8.1 and 1.9.1, CoreWCF SAML token validation does not enforce SubjectConfirmation method URIs or holder-of-key proof keys in SamlSecurityTokenHandler, allowing holder-of-key downgrade or custom confirmation method assertions to authenticate a subject without proving authority over the assertion. This issue is fixed in versions 1.8.1 and 1.9.1.
curl -i -X GET 'https://api.rankiteo.com/underwriter-getcompany-history?
linkedin_id=axa' -H 'apikey: YOUR_API_KEY_HERE'
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