The AWS Cloud Development Kit (CDK) is an open-source framework for defining cloud infrastructure using code. Users use it to create their own applications, which are converted to AWS CloudFormation templates during deployment to a user's AWS account. AWS CDK contains pre-built components called "constructs," which are higher-level abstractions providing defaults and best practices. This approach enables developers to use familiar programming languages to define complex cloud infrastructure more efficiently than writing raw CloudFormation templates.
The AWS CodePipeline construct deploys CodePipeline, a managed service that orchestrates software release processes through a series of stages, each comprising one or more actions executed by CodePipeline. To perform these actions, CodePipeline assumes IAM roles with permissions necessary for each step, allowing it to interact with AWS services and resources on behalf of the user.
An issue exists where, when using CDK to create a CodePipeline with the CDK Construct Library, CDK creates an AWS Identity and Access Management (AWS IAM) trust policy with overly broad permissions. Any user with unrestricted sts:AssumeRole permissions could assume that trust policy. This issue does not affect users who supply their own role for CodePipeline.
To leverage the issue, an actor has to be authenticated in the account and have an unrestricted sts:AssumeRole permission. The permissions an actor could leverage depend on the actions added to the pipeline. Possible permissions include actions on services such as CloudFormation, CodeCommit, Lambda, and ECS, as well as access to the S3 bucket holding pipeline build artifacts (see documentation).
Users can review their AWS CloudTrail logs for when the role was assumed to determine if this was expected.
The patches are included in the CDK Construct Library release v2.189.0. We recommend upgrading to the latest version and ensuring any forked or derivative code is patched to incorporate the new fixes.
When new CDK applications using the latest version are initialized, they will use the new behavior with more restrictive permissions.
Existing applications must upgrade to the latest version, change the feature flag (@aws-cdk/pipelines:reduceStageRoleTrustScope) and (@aws-cdk/pipelines:reduceCrossAccountActionRoleTrustScope) to true and redeploy the application to apply this fix and use the new behavior with more restrictive permissions.
You can explicitly supply the role for your CodePipeline and follow the policy recommendations detailed in CodePipeline documentation.
If you have any questions or comments about this advisory please contact AWS/Amazon Security via our vulnerability reporting page or directly via email to [email protected]. Please do not create a public GitHub issue.
A security vulnerability is a weakness in software, hardware, or configuration that can be exploited to compromise confidentiality, integrity, or availability. Many vulnerabilities are tracked as CVEs (Common Vulnerabilities and Exposures), which provide a standardized identifier so teams can coordinate patching, mitigation, and risk assessment across tools and vendors.
CVSS (Common Vulnerability Scoring System) estimates technical severity, but it doesn't automatically equal business risk. Prioritize using context like internet exposure, affected asset criticality, known exploitation (proof-of-concept or in-the-wild), and whether compensating controls exist. A "Medium" CVSS on an exposed, production system can be more urgent than a "Critical" on an isolated, non-production host.
A vulnerability is the underlying weakness. An exploit is the method or code used to take advantage of it. A zero-day is a vulnerability that is unknown to the vendor or has no publicly available fix when attackers begin using it. In practice, risk increases sharply when exploitation becomes reliable or widespread.
Recurring findings usually come from incomplete Asset Discovery, inconsistent patch management, inherited images, and configuration drift. In modern environments, you also need to watch the software supply chain: dependencies, containers, build pipelines, and third-party services can reintroduce the same weakness even after you patch a single host. Unknown or unmanaged assets (often called Shadow IT) are a common reason the same issues resurface.
Use a simple, repeatable triage model: focus first on externally exposed assets, high-value systems (identity, VPN, email, production), vulnerabilities with known exploits, and issues that enable remote code execution or privilege escalation. Then enforce patch SLAs and track progress using consistent metrics so remediation is steady, not reactive.
SynScan combines attack surface monitoring and continuous security auditing to keep your inventory current, flag high-impact vulnerabilities early, and help you turn raw findings into a practical remediation plan.