* feat(kms): add AppRole configuration surface for Vault auth Extend VaultAuthMethod::AppRole with secret_id_file (re-read on every login so external rotation is picked up), a configurable auth mount (default "approle"), and an optional fail-closed safety window. All new fields are serde(default) so previously persisted configurations keep deserializing, and the strict admin-configure deserializer accepts them as optional. Environment selection: setting RUSTFS_KMS_VAULT_APPROLE_ROLE_ID switches both Vault backends to AppRole; the secret_id comes from RUSTFS_KMS_VAULT_APPROLE_SECRET_ID_FILE (path stored, file wins) or RUSTFS_KMS_VAULT_APPROLE_SECRET_ID, following the static secret-key file precedent. validate() rejects AppRole configs without a role_id, without any secret_id source, or with an empty mount. Also append the CredentialsUnavailable error variant used by the fail-closed credential gate. * feat(kms): implement AppRole login with background renewal and fail-closed expiry Implement the AppRoleLogin token source (vaultrs approle login + renew-self) and wire lease-bound credentials through the provider: - Each successful login/renewal installs a new client generation in the ArcSwap; in-flight requests finish on the generation they captured. - A background renewal task refreshes at half the lease TTL: renewable tokens are renewed in place, everything else (or a failed renewal) falls back to a fresh login. Auth exchanges run under the typed retry policy (OpClass::Auth) and failed cycles retry on a fixed cadence, so the provider recovers once Vault does. - Fail-closed: current() refuses to hand out a token inside the configured safety window of its expiry (default: one attempt timeout), returning CredentialsUnavailable instead of sending a request whose token may lapse mid-flight. - Refreshes are single-flight: concurrent triggers for the same generation coalesce into one login. - The renewal task's owner handle lives on the KMS service version: stop() shuts it down explicitly and reconfigure recycles it via cancel-on-drop when the old version is discarded. - The secret_id file is re-read on every login attempt; missing or empty files fail the attempt without contacting Vault. Crate-owned copies of tokens and secret_ids are zeroized on drop, and Debug output of every credential-carrying type stays redacted (leak regression tests). The renewal machinery is covered by paused-clock tests driving a scripted token source: renew-at-half-TTL timing, login fallback, fail-closed window entry and recovery, prompt task recycling, and coalesced concurrent refreshes. * feat(kms): add Vault Agent token file authentication Add the TokenFile source: the token is read from an agent-managed sink file (RUSTFS_KMS_VAULT_TOKEN_FILE or the TokenFile auth config) and re-read once per poll interval (default 30s) through the existing renewal loop, so a token rotated by the agent installs a new client generation within one poll of the atomic replace. Each successful read extends the token's observed validity to twice the poll interval; a file that disappears or turns empty keeps failing the refresh until the fail-closed window trips, and heals the provider as soon as it is restored. Reads are strict and never contact Vault on failure: the file must be non-empty after trimming, and on Unix group/other permission bits are a hard error (mirroring the SFTP host-key rule). Rotation detection uses a content digest; the token itself is never stored on the source and the crate-owned copy is zeroized. Configuring the token file together with AppRole or an explicit static token is rejected as a configuration error. All new config fields are serde(default) and the strict admin-configure deserializer accepts the new variant. Covered by paused-clock tests (atomic replacement installs a new generation next cycle, deletion fails closed and recovers, prompt task recycling) plus negatives for missing/empty/over-permissive files and a Debug leak regression. * docs(kms): add Vault authentication and credential lifecycle runbook Cover choosing between static token, AppRole, and Vault Agent token file auth; AppRole role setup with SecretID delivery and rotation; Agent sink deployment with the permission requirements; and the fail-closed window semantics with a troubleshooting table keyed on the renewal task's log lines.
7.9 KiB
Vault KMS authentication runbook
This runbook covers how the RustFS Vault KMS backends (KV2 and Transit) authenticate to Vault, how to deploy AppRole and Vault Agent token-file authentication, and how the fail-closed credential window behaves in production. For what each backend stores in Vault and the KV2/Transit policy scopes, see KMS backend security properties.
Choosing an authentication method
| Method | Config tag | Credential lifetime | Background renewal | Recommended for |
|---|---|---|---|---|
| Static token | Token |
Whatever the operator provisioned; RustFS never renews it | None | Development; short-lived experiments |
| AppRole | AppRole |
Lease-bound token obtained by login; renewed by RustFS | Renew at half TTL, re-login on failure | Production without a Vault Agent sidecar |
| Agent token file | TokenFile |
Owned by Vault Agent; RustFS only re-reads the sink file | File re-read once per poll interval | Production with a Vault Agent (or equivalent) managing auth |
Exactly one method must be configured. Setting RUSTFS_KMS_VAULT_TOKEN_FILE together with RUSTFS_KMS_VAULT_APPROLE_ROLE_ID or an explicit RUSTFS_KMS_VAULT_TOKEN is rejected at startup with a configuration error, because the effective identity would be ambiguous.
The default dev-token fallback for RUSTFS_KMS_VAULT_TOKEN is rejected outside explicit development mode (RUSTFS_KMS_ALLOW_INSECURE_DEV_DEFAULTS=true), as are plain-HTTP Vault addresses and disabled TLS verification.
AppRole authentication
Vault-side setup
Create a policy scoped to exactly what the backend needs (see the KV2 and Transit policy examples in KMS backend security properties), then an AppRole that issues tokens carrying it:
vault policy write rustfs-kms rustfs-kms-policy.hcl
vault auth enable approle
vault write auth/approle/role/rustfs-kms \
token_policies="rustfs-kms" \
token_ttl=1h \
token_max_ttl=24h \
secret_id_ttl=90d \
secret_id_num_uses=0
Keep token_ttl comfortably above the RustFS per-attempt timeout (default 30s): the fail-closed window defaults to one attempt timeout, so a token TTL close to it leaves almost no usable lifetime.
RustFS configuration
RUSTFS_KMS_BACKEND=vault-transit # or "vault" for the KV2 backend
RUSTFS_KMS_VAULT_ADDRESS=https://vault.example.com:8200
RUSTFS_KMS_VAULT_APPROLE_ROLE_ID=<role-id>
RUSTFS_KMS_VAULT_APPROLE_SECRET_ID_FILE=/etc/rustfs/approle-secret-id
# Alternatively, inline (the file takes precedence when both are set):
# RUSTFS_KMS_VAULT_APPROLE_SECRET_ID=<secret-id>
# Optional, defaults to "approle":
# RUSTFS_KMS_VAULT_APPROLE_MOUNT=approle
RustFS logs in at startup, then renews the token at half its TTL in the background. If renewal fails (network, Vault sealed, token revoked), it falls back to a full re-login; if that also fails, it keeps retrying every few seconds until Vault recovers.
SecretID delivery and rotation
Deliver the SecretID out of band — a secrets-manager-mounted file, an init-container writing RUSTFS_KMS_VAULT_APPROLE_SECRET_ID_FILE, or Vault response wrapping unwrapped by your deployment tooling. Treat it like a password: owner-readable file permissions, never in logs or shell history.
The secret_id file is re-read on every login attempt, so rotating the SecretID is a two-step operation with no restart: generate a new SecretID (vault write -f auth/approle/role/rustfs-kms/secret-id), atomically replace the file, then revoke the old SecretID accessor. The already-issued token keeps renewing; the new SecretID is only needed at the next full re-login.
An empty or missing secret_id file fails the login attempt immediately (no Vault round trip) and is retried on the normal refresh cadence, so repairing the file heals the backend without a restart.
Vault Agent token file
In this mode a Vault Agent (or any equivalent process) owns authentication and token renewal, and RustFS only reads the token sink file.
Vault Agent example
auto_auth {
method "approle" {
config = {
role_id_file_path = "/etc/vault-agent/role-id"
secret_id_file_path = "/etc/vault-agent/secret-id"
}
}
sink "file" {
config = {
path = "/run/vault-agent/token"
mode = 0600
}
}
}
RustFS configuration
RUSTFS_KMS_BACKEND=vault-transit
RUSTFS_KMS_VAULT_ADDRESS=https://vault.example.com:8200
RUSTFS_KMS_VAULT_TOKEN_FILE=/run/vault-agent/token
The poll interval (poll_interval_secs in the TokenFile auth configuration, default 30 seconds) controls how often the file is re-read. Each successful read grants the token an observed validity of twice the poll interval and installs a fresh client generation, so an agent-rotated token is picked up within one poll interval of the atomic replace.
Requirements enforced at every read, each failing the refresh without contacting Vault:
- The file must exist and be non-empty after trimming whitespace.
- On Unix, the file must not be readable or writable by group or other (mode
0600or stricter). Wider permissions are a hard error naming the offending mode, mirroring the SFTP host-key rule. RustFS must run as the file's owner.
If the agent stops refreshing the file that is fine — RustFS re-reads the same token and keeps going as long as the token itself is valid on the Vault side. If the file disappears or turns empty, RustFS keeps serving requests on the last-read token until the fail-closed window trips, and heals automatically once the file is restored.
Fail-closed window
For lease-bound credentials (AppRole tokens, token files), current() refuses to hand out a token that is within the safety window of its expiry and has not been refreshed. Requests then fail with KMS credentials unavailable: ... instead of being sent with a token that could lapse mid-flight and fail unpredictably on the Vault side.
- Default window: one per-attempt timeout (
RUSTFS_KMS_TIMEOUT_SECS, default 30s) — a request issued now can legitimately stay in flight that long, so the token must outlive it. - Override:
refresh_safety_window_secson theAppRoleorTokenFileauth configuration. - Static tokens never trip the window: they carry no lease and are assumed valid until Vault says otherwise.
The window is a symptom threshold, not the fault itself: by the time it trips, refresh has been failing for roughly half the token TTL (AppRole) or two poll intervals (token file).
Troubleshooting
| Symptom | Log line to look for | Likely cause and fix |
|---|---|---|
Requests fail with KMS credentials unavailable |
Vault credential refresh failed; retrying until the credentials recover (warn, repeated) |
Vault unreachable/sealed, or the credential source is broken; the provider recovers on its own once refresh succeeds — fix the cause, no restart needed |
| Renewal succeeded but re-login later fails | Vault token renewal failed; falling back to a fresh login followed by login errors |
SecretID expired/revoked or AppRole role changed; rotate the secret_id file |
| Token file mode error at startup or during polls | has insecure permissions in the error |
Fix the sink mode (0600) and the file owner; the next poll heals the provider |
| Token file missing/empty errors | Failed to read Vault token file / token file ... is empty |
Vault Agent down or sink misconfigured; restart the agent, the next poll heals the provider |
| Startup fails immediately with a configuration error naming two env vars | — | Two auth methods configured at once; keep exactly one of token, AppRole, token file |
When diagnosing, confirm three clocks/lifetimes in order: the Vault token TTL (vault token lookup with the token's accessor), the RustFS refresh cadence (half TTL or the poll interval), and the fail-closed window. The renewal task logs every failed cycle, so a silent gap in warnings combined with CredentialsUnavailable errors points at the process clock or a paused runtime rather than Vault.