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swagger-typescript-api CVE-2026-54663

| EUVDEUVD-2026-50364 MEDIUM
Improper Input Validation (CWE-20)
2026-07-29 https://github.com/acacode/swagger-typescript-api GHSA-x36r-4347-pm5x
6.1
CVSS 3.1 · Vendor: https://github.com/acacode/swagger-typescript-api
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Severity by source

Vendor (https://github.com/acacode/swagger-typescript-api) PRIMARY
6.1 MEDIUM
AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N
vuln.today AI
6.1 MEDIUM

Attacker serves malicious spec remotely (AV:N, PR:N); developer must run generator against it (UI:R); fetch escapes to internal network services (S:C); GET-only probing yields limited confidentiality and integrity impact (C:L, I:L, A:N).

3.1 AV:N/AC:L/PR:N/UI:R/S:C/C:L/I:L/A:N
4.0 AV:N/AC:L/AT:N/PR:N/UI:A/VC:L/VI:L/VA:N/SC:L/SI:N/SA:N

Primary rating from Vendor (https://github.com/acacode/swagger-typescript-api).

CVSS VectorVendor: https://github.com/acacode/swagger-typescript-api

Attack Vector
Network
Attack Complexity
Low
Privileges Required
None
User Interaction
Required
Scope
Changed
Confidentiality
Low
Integrity
Low
Availability
None

Lifecycle Timeline

2
Source Code Evidence Fetched
Jul 29, 2026 - 14:47 vuln.today
Analysis Generated
Jul 29, 2026 - 14:47 vuln.today

DescriptionCVE.org

Summary

swagger-typescript-api walks every $ref value in the input OpenAPI spec and, for any $ref whose target is an http(s):// URL, issues an HTTP GET to that URL during generation (warmUpRemoteSchemasCache). The only URL filter is a regex that matches ^https?:// - there is no private-IP allowlist, no DNS-rebinding protection, no redirect cap, and no same-origin check against the spec source. A malicious OpenAPI spec can therefore force the generator process to issue HTTP requests to arbitrary hosts and paths reachable from the generator's network, including 127.0.0.1, RFC-1918 ranges, internal hostnames, and the cloud instance-metadata endpoint at 169.254.169.254.

The attacker model is identical to the previously reported code-injection findings: a developer or CI pipeline that runs swagger-typescript-api generate against an attacker-controlled spec (remote URL, third-party / public OpenAPI registry, multi-tenant tenant input, or a spec file modified via PR).

Details

SwaggerSchemaResolver.fetchSwaggerSchemaFile (src/swagger-schema-resolver.ts:122) loads the entry-point spec. After it parses, ResolvedSwaggerSchema (src/resolved-swagger-schema.ts) calls warmUpRemoteSchemasCache which does a BFS over every external $ref:

ts
// src/resolved-swagger-schema.ts:399-445
private async warmUpRemoteSchemasCache() {
  if (typeof this.config.url !== "string" || !this.isHttpUrl(this.config.url)) {
    return;
  }
  const visited = new Set<string>();
  const queue = [this.stripHash(this.config.url)];

  while (queue.length > 0) {
    const currentUrl = queue.shift();
    if (!currentUrl || visited.has(currentUrl)) continue;
    visited.add(currentUrl);

    if (this.externalSchemaCache.has(currentUrl)) continue;
    const schema = await this.fetchRemoteSchemaDocument(currentUrl);   // <-- HTTP GET
    if (!schema) continue;
    this.externalSchemaCache.set(currentUrl, schema);

    for (const ref of this.extractRefsFromSchema(schema)) {
      const normalizedRef = this.normalizeRef(ref);
      if (normalizedRef.startsWith("#")) continue;

      const [externalPath = ""] = normalizedRef.split("#");
      if (!externalPath) continue;

      const absoluteUrl = this.resolveAbsoluteUrl(externalPath, currentUrl);
      if (absoluteUrl && !visited.has(absoluteUrl)) {
        queue.push(absoluteUrl);                                       // <-- recurse
      }
    }
  }
}

The fetch itself:

ts
// src/resolved-swagger-schema.ts:374
const response = await fetch(url, {
  headers: this.getRemoteRequestHeaders(),
});

…and the only URL-shape filter:

ts
// src/resolved-swagger-schema.ts:75-78
private isHttpUrl(value: string): boolean {
  return /^https?:\/\//i.test(value);
}

There is no IP allowlist (no rejection of 127.x, 10.x, 172.16-31.x, 192.168.x, 169.254.x, IPv6 ::1 / fc00::/7, etc.), no DNS-rebinding mitigation (the URL is passed straight to Node's built-in fetch, which itself follows up to 20 redirects by default), and no check that the new URL shares an origin with the spec source. Any $ref value that survives isHttpUrl is fetched.

Because fetch is Node's undici-backed implementation, an external 302 redirect from an attacker's spec server to an internal URL ALSO succeeds - even if the maintainer later adds a private-IP filter to the spec string itself, redirect-based SSRF would still work without additional mitigation in the fetch options (redirect: "manual" or a custom dispatcher with a same-host check).

PoC

Self-contained reproducer in comments (install swagger-typescript-api@13.12.1 into a local node_modules, spin up two loopback HTTP servers - one serving the spec, one pretending to be an "internal" service - run the generator against each, observe the internal server's hit count). Tested on swagger-typescript-api@13.12.1 and Node v24.11.1.

Payload spec (served from http://127.0.0.1:<spec-port>/spec.json):

json
{
  "openapi": "3.0.0",
  "info": { "title": "SSRF-payload", "version": "1.0.0" },
  "paths": {
    "/p": {
      "get": {
        "operationId": "p",
        "responses": {
          "200": {
            "description": "OK",
            "content": {
              "application/json": {
                "schema": {
                  "$ref": "http://127.0.0.1:<internal-port>/INTERNAL_ONLY_PATH/secret.json"
                }
              }
            }
          }
        }
      }
    }
  }
}

Steps:

bash
# 1. Start a loopback "internal" HTTP server that should not be reachable from a public spec.
# 2. Start a loopback "spec" HTTP server that serves the payload spec above.
# 3. Point the generator at the spec server.
npm install swagger-typescript-api@13.12.1
node -e "import('swagger-typescript-api').then(m => m.generateApi({
  output: '/tmp/out',
  url: 'http://127.0.0.1:<spec-port>/spec.json',
  httpClientType: 'fetch'
}))"

Observed (control vs payload):

[control] (no external $ref in spec) → internal-server hits: 0
[payload] ($ref → http://127.0.0.1:<internal-port>/...) → internal-server hits: 1
  hit: /INTERNAL_ONLY_PATH/secret.json  host=127.0.0.1:<internal-port>

The internal server received a GET /INTERNAL_ONLY_PATH/secret.json issued by the generator's warmUpRemoteSchemasCache while the developer was running swagger-typescript-api generate. The loopback target in the PoC stands in for any host reachable from the generator process - typical real-world targets include 169.254.169.254 (cloud IMDS), internal admin panels, intranet web apps, and corporate-VPN-only services.

Impact

Type: Server-Side Request Forgery (CWE-918) via unrestricted external-reference resolution in a code-generation tool.

Affected use cases:

  • A developer running sta generate --url https://attacker.example/openapi.json against an attacker-hosted spec.
  • A developer running the generator against any third-party or public OpenAPI spec they did not author (cached APIs on public schema registries, vendor / partner specs).
  • A CI/CD pipeline regenerating clients from a spec on every build.
  • A multi-tenant SaaS that generates per-tenant clients from tenant-supplied specs.
  • Any project where a contributor can modify the pinned spec via a pull request.

What an attacker can do with this:

  • Probe the generator's network reachability - enumerate which RFC-1918 hosts and internal services are alive based on timing and error states.
  • Hit cloud-provider instance metadata endpoints (http://169.254.169.254/...) on cloud-hosted CI runners. Even though the response body is not directly returned to the attacker, side effects (rate-limit, timing, error code reflected in logs) leak information.
  • Trigger side effects in internal services that have GET-mutating endpoints (rare but real).
  • Combine with the companion finding (Authorization-token forwarding to $ref URLs - filed separately) to escalate this from blind SSRF into direct credential exfiltration.

Lifecycle: generation-time. The fetch happens when the developer or CI pipeline runs swagger-typescript-api generate, not when the generated client is later imported.

Suggested fix:

Defense in depth at three layers, in priority order:

  1. Reject private / link-local / loopback addresses at the URL-validation layer. Resolve the URL's hostname, check the resulting IP against IPv4 ranges 127.0.0.0/8, 10.0.0.0/8, 172.16.0.0/12, 192.168.0.0/16, 169.254.0.0/16, 0.0.0.0/8, and IPv6 equivalents (::1, fc00::/7, fe80::/10, ::ffff:0:0/96). Re-resolve on every redirect to defeat DNS rebinding.
  2. Use a custom undici dispatcher with connect hook that re-checks the resolved IP at TCP-connect time - the only reliable way to defeat DNS rebinding in Node's built-in fetch.
  3. Set redirect: "manual" in the fetch options and validate each redirect URL through the same allowlist before following it.

If full SSRF mitigation is too invasive for a code-generation tool, at minimum surface the threat: log every external URL the generator is about to fetch (so a developer can grep for unexpected hosts in the output) and add an opt-out flag like --no-external-refs that disables warmUpRemoteSchemasCache entirely.

Submitted by: Hamza Haroon (thegr1ffyn)

AnalysisAI

Server-side request forgery in swagger-typescript-api <= 13.12.1 allows an attacker who controls or influences an OpenAPI spec to force the generator process to issue arbitrary HTTP GET requests to any host reachable from the generator's network - including loopback addresses, RFC-1918 ranges, and cloud instance-metadata endpoints at 169.254.169.254 - during code generation. Developers and CI/CD pipelines that process untrusted or third-party remote specs via the --url flag are directly in scope; the companion auth-token forwarding finding (filed separately by the same researcher) can escalate this from blind SSRF to direct credential exfiltration. A public proof-of-concept with step-by-step reproduction instructions was published alongside the advisory; no active exploitation has been confirmed in CISA KEV.

Technical ContextAI

The vulnerability resides in ResolvedSwaggerSchema.warmUpRemoteSchemasCache (src/resolved-swagger-schema.ts:399-445), which performs a breadth-first traversal of all external $ref URLs found in a parsed OpenAPI spec and issues an HTTP GET to each via Node.js's undici-backed fetch. The sole URL validation is a regex in isHttpUrl (src/resolved-swagger-schema.ts:75-78) that matches ^https?:// - there is no filtering for RFC-1918 ranges (10.x, 172.16-31.x, 192.168.x), loopback (127.x), link-local (169.254.x for cloud IMDS), or IPv6 equivalents (::1, fc00::/7, fe80::/10). Because Node.js fetch follows up to 20 redirects by default, an attacker-controlled redirect chain from a public server to an internal URL also succeeds, making naive post-hoc IP filtering insufficient without also setting redirect:'manual' and re-validating each hop. The affected package is pkg:npm/swagger-typescript-api. The input metadata lists CWE-20 (Improper Input Validation), but the advisory body explicitly classifies this as CWE-918 (Server-Side Request Forgery), which is the more precise root-cause category and is used here.

RemediationAI

Upgrade to swagger-typescript-api@13.12.2 immediately. This release implements layered SSRF mitigations: blocking of private, loopback, and link-local addresses for both IPv4 and IPv6 (including 169.254.0.0/16 cloud IMDS); manual redirect following capped at 5 hops with re-validation of each destination address; restriction of authorizationToken forwarding to same-origin URLs only; and cross-origin $ref fetches limited to public hosts. The fix was merged in PR #1779 (https://github.com/acacode/swagger-typescript-api/pull/1779), commit 306d59acb8ffbb00f953f807b97234b21f51d9de, and released as v13.12.2 (https://github.com/acacode/swagger-typescript-api/releases/tag/v13.12.2). If immediate upgrade is blocked, apply compensating controls in priority order: (1) avoid the --url flag entirely - download specs to a local path first and pass a file path to the generator, which prevents warmUpRemoteSchemasCache from activating with no functional trade-off for most teams; (2) run the generator inside a network-isolated container with no route to RFC-1918, loopback, or 169.254.x ranges, accepting that legitimate cross-origin $ref schemas will break; (3) pre-screen spec files for http(s):// $ref values using a JSON linter or grep before generation. Option (1) is the most reliable interim control and has no downsides for teams that can pre-download their specs.

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CVE-2026-54663 vulnerability details – vuln.today

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