CVE-2026-88059

CVE-2026-88059 is a medium-severity security vulnerability in @angular/common (npm), affecting versions >= 22.0.0, < 22.1.1. It is fixed in 22.1.1, 21.2.20, 20.3.28.

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Summary

Angular: Information Leak via HttpTransferCache Bypass When Using withRequestsMadeViaParent

A security bypass vulnerability was discovered in @angular/common when Server-Side Rendering (SSR) and hydration are enabled in applications using a hierarchical HttpClient configuration with withRequestsMadeViaParent().

The HttpTransferCache utility optimizes hydration by caching outgoing HTTP requests performed during SSR and transferring the cached state to the client-side application via TransferState (serialized as JSON in <script id="ng-state">). Following the remediation of CVE-2026-50170, HttpTransferCache automatically skips caching requests that contain authentication headers or credentials (Authorization, Cookie, withCredentials, etc.).

However, when a child HttpClient delegates to a parent client via withRequestsMadeViaParent(), the child's TransferCache interceptor evaluates whether the request is eligible for caching before delegating to the parent client's interceptor chain.

If an outgoing request originates as anonymous from the child client, the child TransferCache marks the request as cacheable. When the request reaches a parent interceptor that injects sensitive authentication credentials (such as an Authorization header or API token), the parent TransferCache correctly skips caching the authenticated request. However, when the backend returns the private, authenticated response, the child TransferCache still stores the response in TransferState based on its initial pre-delegation evaluation.

Attack Preconditions & Vulnerable Configurations

An application is affected only if all of the following conditions are met:

  • SSR and Hydration Enabled: The application uses Server-Side Rendering with hydration enabled (e.g., via provideClientHydration()).
  • Hierarchical HttpClient with Delegation: The application configures a child HttpClient using withRequestsMadeViaParent().
  • Parent-Level Authentication Injection: Authentication credentials (such as Authorization headers, session cookies, or custom API tokens filtered via withHttpTransferCacheOptions) are attached by an interceptor in the parent injector chain rather than on the initial child request.
  • Shared HTML Caching: The SSR HTML responses are cached by a shared caching layer (CDN, reverse proxy, or application-level HTML cache).

Vulnerable Code Pattern Example

// Parent Injector / Application Config
export const appConfig: ApplicationConfig = {
  providers: [
    provideHttpClient(
      // Parent interceptor attaches sensitive Authorization header
      withInterceptors([
        (req, next) => next(req.clone({ setHeaders: { Authorization: `Bearer ${getToken()}` } }))
      ])
    ),
  ],
};

// Child Injector / Feature or Component Config
const childClient = createEnvironmentInjector(
  [
    // Child delegates to parent; TransferCache evaluates req BEFORE parent auth interceptor runs
    provideHttpClient(withRequestsMadeViaParent()),
  ],
  parentInjector
).get(HttpClient);

// Request originates without auth headers -> marked cacheable by child TransferCache
childClient.get('/api/user/profile').subscribe();

Workarounds & Mitigations

For applications that cannot immediately upgrade to a patched version, use one of the following mitigations:

  1. Attach Credentials Before or Within the Child Client: Ensure authentication headers (e.g., Authorization) are attached directly when constructing the request or via an interceptor configured directly on the child HttpClient, rather than relying solely on parent interceptors.
  2. Apply Explicit Cache Filters on the Child Client: Configure withHttpTransferCacheOptions with a filter on the child client that explicitly excludes endpoints returning user-specific or sensitive data:
    provideClientHydration(
      withHttpTransferCacheOptions({
        filter: (req) => !req.url.includes('/api/private/'),
      })
    )
    
  3. Disable HTTP Transfer Cache for Sensitive Routes: If specific SSR routes handle user-authenticated data, disable transfer caching for those requests or ensure the SSR response sets Cache-Control: no-store / private headers at your edge/CDN layer so personalized HTML is never shared.

Impact

Successful exploitation allows sensitive, user-specific information belonging to an authenticated user to be leaked to unauthenticated or unauthorized users. This occurs when:

  1. During SSR, a child HttpClient initiates an unauthenticated request that is subsequently authenticated by a parent interceptor.
  2. The authenticated response body is cached into the SSR-rendered HTML page (TransferState).
  3. The rendered HTML page is stored by a shared caching layer (e.g., CDN, edge cache, or reverse proxy) or served across user sessions.
  4. Subsequent visitors requesting the same page receive the cached HTML containing the previous user's private data.

CVE-2026-88059 has a CVSS score of 4.0 (Medium). The vector is network-reachable, no privileges required, and no user interaction. A CVSS score reflects the worst-case severity of the vulnerability, not your specific exposure. Whether this affects your application depends on whether the vulnerable code is present and reachable in your environment. A fixed version is available (22.1.1, 21.2.20, 20.3.28); upgrading removes the vulnerable code path.

Affected versions

@angular/common (>= 22.0.0, < 22.1.1) @angular/common (>= 21.0.0, < 21.2.20) @angular/common (>= 20.0.0, < 20.3.28) @angular/common (<= 19.2.25)

Security releases

@angular/common → 22.1.1 (npm) @angular/common → 21.2.20 (npm) @angular/common → 20.3.28 (npm)

Kodem intelligence

Severity tells you how bad this could be in the worst case. It does not tell you whether you are exposed. Exploitability and impact are functions of runtime truth: whether the vulnerable code is present, reachable, and actually executes in your application. A vulnerable package can sit in your dependency tree and never run.

Kodem, an Intelligent Application Security platform, uses runtime intelligence to reveal which vulnerabilities actually execute in production, so teams prioritize the ones that genuinely matter. Kodem's runtime-powered SCA identifies whether this CVE is reachable in your applications.

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Remediation advice

The issue is resolved by updating @angular/common to run root interceptors in the terminal request chain so that delegated clients leave inherited root interceptors to the parent chain, preventing duplicate execution and ensuring HttpTransferCache evaluates cache eligibility after parent request interceptors run.

  • 22.1.1
  • 21.2.20
  • 20.3.28

Frequently Asked Questions

  1. What is CVE-2026-88059? CVE-2026-88059 is a medium-severity security vulnerability in @angular/common (npm), affecting versions >= 22.0.0, < 22.1.1. It is fixed in 22.1.1, 21.2.20, 20.3.28.
  2. How severe is CVE-2026-88059? CVE-2026-88059 has a CVSS score of 4.0 (Medium). This score reflects the worst-case severity of the vulnerability, not your specific exposure. Whether it represents real risk in your environment depends on whether the vulnerable code is present and reachable.
  3. Which versions of @angular/common are affected by CVE-2026-88059? @angular/common (npm) versions >= 22.0.0, < 22.1.1 is affected.
  4. Is there a fix for CVE-2026-88059? Yes. CVE-2026-88059 is fixed in 22.1.1, 21.2.20, 20.3.28. Upgrade to this version or later.
  5. Is CVE-2026-88059 exploitable, and should I be worried? Whether CVE-2026-88059 is exploitable in your environment depends on whether the vulnerable code is present and reachable. A CVSS score is a worst-case rating; it does not account for your specific deployment, configuration, or usage patterns. Kodem, an Intelligent Application Security platform, uses runtime intelligence to show which vulnerabilities actually execute in production, so you can focus on the ones that represent real risk. Get a demo
  6. What actually determines whether CVE-2026-88059 is exploitable, and how bad it is? Exploitability and impact are not fixed properties of a CVE. They depend on runtime truth: whether the vulnerable code is present, reachable, and actually executes in your application. A high CVSS score on a dependency that never runs is not the same as real risk. Kodem, an Intelligent Application Security platform, uses runtime intelligence to reveal which vulnerabilities actually execute in production, so teams prioritize the ones that genuinely matter.
  7. How do I fix CVE-2026-88059?
    • Upgrade @angular/common to 22.1.1 or later
    • Upgrade @angular/common to 21.2.20 or later
    • Upgrade @angular/common to 20.3.28 or later

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