cacheable-requestnpm
cacheable-request is a confirmed malicious npm package (MAL-2026-11964) that steals credentials and exfiltrates sensitive data (malicious version 13.0.20). Do not install it — remove it immediately and rotate any exposed credentials.
Malicious code in cacheable-request (npm)
What this malware does
npm/cacheable-request version 13.0.20 is a trojanized release published on 2026-08-04 during the compromise of the npm/GitHub maintainer account behind the keyv and cacheable package families (user "Jaredwray"). Attackers pushed the malicious payload to the source repository and cut releases through GitHub Actions, so the poisoned versions reached npm with a valid, signed provenance attestation (provenance attests build integrity, not source integrity). Delivery is through the npm install lifecycle: the trojanized package.json adds a preinstall hook ("preinstall": "node setup.mjs") that runs before any project code on a bare npm install, while the normal compiled output is left intact so the package still works after install. setup.mjs downloads a standalone Bun runtime and uses it to run a second stage (shipped as Math_Symbol.js, a heavily obfuscated ~728 KB Bun bundle, referenced at runtime as math_init.js). The stealer harvests credentials from cloud instance metadata (AWS IMDS at 169.254.169.254, ECS at 169.254.170.2, GCP, Azure), AWS/GCP/Azure keys, HashiCorp Vault tokens, Kubernetes service-account tokens, GitHub Actions OIDC and org/repo secrets, and npm tokens, with a TruffleHog-style regex sweep for further secrets and private keys. Using the stolen npm identity (including npm OIDC trusted publishing) it enumerates and republishes further packages the token can reach — which, for a maintainer controlling both keyv and cacheable, gave the worm a large blast radius. Stolen findings are exfiltrated to attacker-created GitHub repositories (descriptions reading "Shai-Hulud: Here We Go Again") and to destinations resolved over DNS, and autostart hooks are planted in the repository's .claude/ and .vscode/ configuration to run the loader when a developer or AI coding agent opens a clone. Treat any environment that installed this version (with install scripts enabled) as fully compromised and rotate every reachable credential. Part of the August 2026 npm worm that poisoned 400+ packages across many organizations.
This version of cacheable-request ships two files not present in the legitimate upstream package (jaredwray/cacheable-request): a heavily obfuscated setup.mjs and a 727KB obfuscated Math_Symbol.js bundle. package.json declares "preinstall": "node setup.mjs" and includes both files in the published tarball. On npm install, setup.mjs uses a rotated string array with an RC4-style XOR decoder to reconstruct URLs and API names, downloads the Bun runtime from github.com/oven-sh/bun releases matching the host platform (linux-x64, darwin-arm64, windows-x64, etc.), makes it executable (chmod on POSIX, PowerShell Expand-Archive with -ExecutionPolicy Bypass on Windows), and then invokes execFileSync on the freshly-downloaded Bun binary to run the bundled Math_Symbol.js payload (// @bun @bun-cjs header, char-code-array obfuscation reconstructed via String.fromCodePoint). The alternate-runtime pattern executes attacker-controlled bundled code outside Node's normal lifecycle visibility. The package name, README, LICENSE, dist/ contents, and author metadata are copied from the legitimate cacheable-request to maximize infection through name recognition; the real package has never shipped a preinstall hook, setup.mjs, Math_Symbol.js, or a Bun dependency.
Any computer that has this package installed or running should be considered fully compromised. All secrets and keys stored on that computer should be rotated immediately from a different computer. The package should be removed, but as full control of the computer may have been given to an outside entity, there is no guarantee that removing the package will remove all malicious software resulting from installing it.
Malicious versions
Indicators of compromise (SHA-256)
Detection & response playbook
Credential / info stealerFind it
Scan your lockfiles (package-lock.json, pnpm-lock.yaml, yarn.lock, requirements.txt, poetry.lock, etc.) and build artifacts for cacheable-request (version 13.0.20). O3 Security's supply-chain scanner checks every dependency against known-malicious package intelligence at install time and in CI, flagging cacheable-request across your stack and pipelines.
If you installed it — respond
cacheable-request is built to steal secrets, so assume every credential the build or runtime could read is compromised. Remove it from your project and lockfile, then rotate ALL exposed secrets — npm/registry tokens, cloud keys, CI/CD secrets, SSH keys, and any .env values — from a known-clean machine. Audit logs for unauthorized use of those credentials.
Did it already run?
If cacheable-request was ever installed, its post-install/runtime payload may have already executed. O3's L7 egress monitoring and runtime eBPF sensors detect the credential exfiltration or command-and-control callback after install and block the malicious outbound channel, so you catch and contain the actual compromise — not just the presence of the package.
How O3 protects you
O3 blocks cacheable-request before install through its supply-chain scanner, and if it has already run, detects and severs the exfiltration or C2 callback at runtime through L7 egress monitoring and eBPF.
Frequently asked questions
Campaign
References
Credits
- Aikido Security · finder
- Amazon Inspector · finder
- SafeDep · finder
- Socket Threat Research Team · finder
Detect & block this
O3 blocks cacheable-request-class packages before install and in CI — and if it already ran, its runtime egress monitoring catches the credential exfiltration and severs the channel.