Files
platform/docs/per-user-linux-accounts.md
pastilhasandClaude Opus 5 040ea41dbc per-user linux accounts are not optional any more
OFFICER_OS_USERS is gone. The platform behaves as it always would have with the
flag on, and there is nothing to enable.

Six conditionals, five of which were dead weight — provisionOsAccount,
deprovisionOsAccount and the create/delete paths each opened with an early
"not enabled on this server" return, and the API told the frontend whether to
render the Linux controls at all. Those go, along with the 'disabled'
DeprovisionResult stage, which nothing can produce now.

The sixth is the one with teeth. assertSecretsClosed opened with
`if (!OS_USERS_ENABLED) return`, described in its own comment as "a no-op when
the feature is off, so an existing install is unaffected until the owner opts
in". It is now unconditional: the server refuses to boot while any .env in the
project root is group- or world-readable. A member's shell reading .env and
printing JWT_SECRET was confirmed exploitable when this check was written, and a
prerequisite that only holds when somebody remembers to set a variable is not a
prerequisite.

Nothing to remove on the environment side — the flag was never in .env.example
or in the setup script.

Not typechecked: node_modules is empty in this tree and installs are frozen, so
tsgo could not run. All six files parse under `bun build --no-bundle`, and the
changes are deletions of dead branches plus one removed early return. Formatted
with prettier 3.9.6 via bunx rather than the pinned resolution, for the same
reason; its one unrelated reformat was reverted by hand.

Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
2026-08-12 22:58:35 +00:00

27 KiB

Per-user Linux accounts

Status: in progress. Stage 1 (the account and the privilege-drop mechanism) is being built now. Agents are explicitly out of scope for the first pass.

What this is for

Today every execution capability — terminal, chat, files, tasks, items, desktop, browser — runs as the owner's OS user in the owner's home. That is why capabilities/registry.ts declares them kind: 'execution' and why authorize.ts strips them from a grant even if a row somehow contains one. The registry says so out loud: "revisit only if per-user home confinement is ever solved — and that is a project, not a checkbox."

This is that project. A member gets a real Linux account whose home is the directory the platform already provisions for them, and the surfaces that execute code run as that account. The payoff is three things at once:

  • Isolation — a member cannot read another member's files, because the kernel says so rather than because a path check happened to be right.
  • Permissions — "may they see this" becomes a mode bit, checked by the OS on every syscall, instead of a predicate the platform has to remember to apply on every route.
  • Separable agentsclaude and opencode run as the member, with their own ~/.claude, their own transcripts and their own session state, because the CLI groups by HOME and cwd.

The target for the first test

A member signs in and:

  • the file browser shows their home as the root and cannot navigate above it;
  • the terminal lands in their home and has no permission to see anything above it.

Nothing else changes. Agents stay owner-only until this much is solid.

The layout, and what each mode bit is for

data/                       711  service user    traverse only — a member cannot enumerate the members
└── <email>/                711  service user    traverse only — a member cannot see their OWN siblings
    ├── home/               700  the member      their real Linux home
    ├── attachments/        700  service user    platform-written; unreachable even by name
    ├── email_accounts/     700  service user    "
    ├── dashboards/         700  service user    "
    └── …                   700  service user    "

The important line is the second one. data/<email>/ is traverse-only to its own member: they need x to reach home/, and they must not have r, or they could list the platform's private tree beside it. And because every sibling is 700 service user, knowing a name does not help — traversal without read gets you exactly one place, which is where they are going anyway.

This is also what resolves the two-sided ownership problem. The platform runs as the service user and writes attachments, email databases and dashboards into data/<email>/; the member owns only home/. Nobody needs a shared group, a setgid bit or an ACL, and neither side can write where the other lives.

Members' homes stay under DATA_PATH rather than moving to /home/<user>. They are the platform's data, they belong with the rest of that account's data, and the directory is already provisioned there by provisionUserDirs. A move would also break getOwnerHomeDir's fallback, which is the only shape the code has ever had for a non-owner home.

Hard prerequisite: the secrets a shell can currently read

This must be fixed before any member gets a shell, and it is not optional.

On this machine, verified 2026-08-11:

path mode consequence
/home/pastilhas 751 traversable by anyone (no listing)
…/officer.dev 775 listable by anyone
…/platform/.env 664 world-readable

platform/.env holds POSTGRES_URL, the JWT signing secret and every service credential. A member with a real shell could read it and mint themselves an owner token, which makes the whole exercise worse than not doing it — the capability model would be intact and completely bypassed.

So stage 1 includes: chmod 600 on every .env, chmod 751 on the project root so the tree is traversable but not listable, and a boot-time check that refuses to enable OS users while any .env under the project root is group- or world-readable. A prerequisite that is merely written down is a prerequisite that gets skipped.

The same applies to capabilities/ (775 today) and to the repo checkout itself: a member can read the platform source. That is acceptable — it is not secret — but anything credential-shaped inside it is not.

The mechanism, and the trap in it

Bun.spawn silently ignores uid and gid

Verified on bun 1.3.10, 2026-08-11. From uid 1000:

Bun.spawn(['id', '-u'], { uid: 65534, gid: 65534 })   // exit 0, prints "1000"

It does not throw. It does not warn. It accepts the option and runs as the parent. Every agent, task and script spawn in this codebase goes through Bun.spawn.

Two honest qualifications, because the danger is narrower than it first looks:

  • Bun's own types do not declare uid, so bunx tsgo rejects it. Typed code cannot reach this by accident — confirmed while writing the test, which needs a cast to reproduce the behaviour at all.
  • What can reach it is a spread of untyped config, an as any, or a plain-JS sidecar. Two of the four sidecars are .mjs.

So the exposure is real but bounded, and the mitigation is the same either way: privilege drops go through an external wrapper, and a test pins Bun's runtime behaviour. If Bun ever implements the option, that test fails and tells us we may simplify. A silently absent isolation boundary is the worst possible outcome of this project, so it is worth a test that exists only to observe something staying broken.

sudo -n setpriv, and why both words are needed

runAs builds:

sudo -n setpriv --reuid=<user> --regid=<user> --init-groups --reset-env -- <argv…>
  • --reuid/--regid set the real ids, not just effective — there is nothing to switch back to.
  • --init-groups applies the account's supplementary groups. Without it the process keeps the owner's groups, which is a quiet way to retain access we just took away.
  • --reset-env clears the inherited environment and then sets HOME, SHELL, USER, LOGNAME and PATH from the target's passwd entry. Both halves matter: the parent's env contains the owner's HOME, and on a process started by PM2 in the platform directory it contains everything Bun auto-loaded from .env.

sudo is not optional, and the reason is not the uid. Measured 2026-08-11: --init-groups fails with initgroups failed: Operation not permitted for an unprivileged caller even when reuid'ing to its own accountsetgroups(2) is root-only, unconditionally. So there is no unprivileged form of this. -n makes a missing sudoers entry an immediate error rather than a process hanging on a password prompt no user will ever see.

Verified end to end, dropping to the current account:

$ sudo -n setpriv --reuid=pastilhas --regid=pastilhas --init-groups --reset-env -- \
    sh -c 'id -u; id -G; echo HOME=$HOME; echo SECRET=${POSTGRES_URL:-unset}'
1000
1000 4 24 27 30 46 101 988 1001      ← supplementary groups from the account, not inherited
HOME=/home/pastilhas                 ← from passwd, after the reset
SECRET=unset                         ← the platform's .env did NOT cross

That last line is the whole security property, demonstrated rather than asserted, and it is pinned by a test (os-user.test.ts → "does not pass the platform environment through").

sudo -u <user> alone would also work and be shorter. It is not used because its environment handling is sudoers policyenv_reset, env_keep, always_set_home — and "which variables cross into a member's shell" must not depend on a config file someone may have edited.

Root is available: scripts/setup/setup.sh §4 installs /etc/sudoers.d/officer-service granting the service user NOPASSWD: ALL on the full profile. The light profile deliberately skips it, so a light install that wants OS users needs a narrow entry — useradd, chown, setpriv — which is better than the blanket rule anyway.

The terminal is the easy one

sidecar/pty/sessions.mjs uses node-pty under node, and node-pty's spawn genuinely honours uid/gid (it is a native binding, not Bun's spawn). Two options; we take the second:

  1. Run the pty sidecar as root and pass uid/gid per session.
  2. Keep the sidecar unprivileged and make the command setpriv … <shell> -i.

(2) means no root daemon and one mechanism shared with everything else. A root daemon accepting session requests over a socket is a bigger promise than this feature needs to make.

Naming

The username the owner chose, verbatim. whoami in a member's terminal says who they are, their prompt is their name, and a commit from their edge checkout is attributed to something recognisable.

This carried an officer_ prefix for about an hour. The prefix bought three things — no collision with a system account, a greppable record of what the feature created, and a member unable to pick a name that shadows something real — and cost the only thing anyone would notice. Measured before removing it: useradd on this host accepts everything validateUsername already permits, including dots, hyphens, underscores and uppercase.

What replaced the prefix's safety is the adoption rule, and it had to. ensureOsUser reuses an existing Linux account, which is what makes it re-runnable. That was safe by construction while only we created officer_* names. With the name being whatever was typed, adoption became the dangerous path: a platform account named root would have found root in passwd, and every runAs for that member would have been a root shell. So an existing account is adopted only when its passwd home is already exactly the home we are about to confine — that is what makes it ours — and any uid below 1000 is refused outright as belt and braces.

Verified:

username "root"          -> refused: 'root' is a system account on this machine.
username "daemon"        -> refused: 'daemon' is a system account on this machine.
the owner's own account  -> refused: 'pastilhas' is already a user on this machine, with its
                            home at /home/pastilhas. Refusing to take it over.

The resolved name is stored on the user row (users.os_user) rather than re-derived. useradd can adjust or refuse a name, and re-deriving would mean the platform's idea of who a member is could drift from what is actually in /etc/passwd.

The ancestor trap

A member's home sits under DATA_PATH, which on a normal install sits under the owner's home — and /home/<owner> is 750 on Debian and Ubuntu. Every mode bit on the account tree can be correct, the directory can exist, and the member still cannot reach it, because they have no x on an ancestor four levels up.

What that surfaced as, on the first real install:

ssh-keygen failed: Could not stat …/data/jg@pertento.ai/home/.ssh: Permission denied

Which points at exactly the wrong thing. .ssh was there and correctly owned; the account could not traverse /home/pastilhas.

firstUntraversableAncestor now walks the chain as the member before anything tries to use the home, and the error names the directory and the fix (chmod o+x <dir>). x without r is the ask throughout: traversal, not listing — nobody gains the ability to enumerate the owner's home.

The development machine happened to be 751 already, which is exactly why the probe passed there and failed on a fresh install. Worth remembering as a shape of mistake: the probe used /tmp, so it never crossed the ancestor that mattered.

Out of scope, and honest about it

  • This is not a sandbox. A member with a shell is on the machine. They cannot read the owner's files or another member's, and sudo is not theirs — but they can run code, see process names, and reach the network. It isolates members from each other and from accidents, not from the host.

  • Agents come later — but by less than this said. Two claims here were wrong and are corrected on 2026-08-11; the superseded text is in the git history of this file, and the working state is COMMS/sidecar-app-store/2026-08-11-per-user-claude-handoff.md.

    It said the SDK "has nowhere to put a uid", so dropping privileges had to happen outside it, making a member's turn its own process — "a change of shape rather than a flag". It is a flag: sdk.d.ts:951 exposes spawnClaudeCodeProcess, documented for running Claude Code "in VMs, containers, or remote environments", and node:child_process.spawn already satisfies the SpawnedProcess shape it wants. So the existing sidecar wraps the CLI spawn in runAsArgv per turn and there is no second process to stand up.

    It also said the credential is not the problem because officer-anthropic-proxy already holds it, so a member's claude "needs only ANTHROPIC_BASE_URL pointed at the proxy". That is backwards. The proxy holds the owner's credential (sidecar/claude/proxy.ts:7 reads the owner's own ~/.claude/.credentials.json), so pointing a member at it spends the owner's account on the member's turns. Per-user Claude means their own login in their own home, and setpriv --reset-env is what makes that the default rather than something to remember: nothing crosses into their process unless it is written into the argv.

    What does remain out of scope: no platform process ever runs as a member. The agent sidecar needs POSTGRES_URL and the JWT signing secret, so a member-uid process holding them could read every account and sign a token as the owner — more than their shell can do, and already refused by assertSecretsClosed. The harness stays the service user's; only claude itself drops privileges.

  • pty, vault and opencode receive no identity at all (TODO.md → Multi-user). pty keys purely on a sessionId from the query string, and its /_officer/sessions endpoints list and kill every session on the box. Safe today only because terminal is owner-only. The moment a member has a shell that is a cross-user kill switch, so it is fixed in the same stage as the terminal, not after.

  • Email change orphans a home. The on-disk layout is keyed on email everywhere. Renaming an account would leave its home behind under the old address. Pre-existing, unfixed, worth knowing.

What the first real run proved, and what it corrected

Stage 1 was exercised end to end against a throwaway DATA_PATH with a real useradd. Every property below was observed, not reasoned about:

attempted, as the member result
write in own home OK
read …/<email>/attachments/private.txt Permission denied
ls …/<email>/ (their own account dir) Permission denied
ls $DATA_PATH (enumerate the members) Permission denied
ls …/other-member@example.com/home Permission denied
cd $HOME/.. succeeds — see below

Three bugs surfaced only by running it:

  1. chmod after chown fails forever. chmod requires ownership, so once the home belongs to the member the service user cannot set its mode. Both orderings fail unprivileged — the first on the second run, the second immediately. Both operations now go through sudo, which is what makes the function re-runnable.

  2. A member could read another member's home. provisionUserDirs created directories at the default umask (755), and the confinement pass only ever ran for the account being created. DATA_PATH being unlistable is not protection when the child is world-readable and the attacker knows an email address. The skeleton is now created closed — 711 on the account directory, 700 inside — so unconfined is also unreachable.

  3. platform/.env was readable, and printing JWT_SECRET from a member's shell was confirmed. This is the prerequisite above, demonstrated. It is now a boot check (assertSecretsClosed) that refuses to start while any .env in the project root is group- or world-readable.

    That check was itself conditional on OFFICER_OS_USERS until 2026-08-12, which meant the guarantee was opt-in. The flag is gone and the check is unconditional: a security prerequisite that only holds when somebody remembers to set a variable is not a prerequisite. Per-user Linux accounts are now simply what the platform does, so there is nothing to enable and nothing to forget.

cd $HOME/.. succeeding is correct and worth being precise about. 711 grants traversal, so cd works while ls does not — they can stand in the directory and see nothing in it. Beyond that, a real shell can reach /etc, /usr and anything else the system leaves world-readable, because that is what a shell is. So:

  • the file browser genuinely cannot go above the home — that is path containment in resolveUserPath, enforced by the platform;
  • the terminal cannot read anything above the home, but is not confined to it. Confining it would mean a namespace or a chroot, which is a different and much larger feature.

Say "cannot see behind it", not "cannot leave it".

SSH: two keys, two directions

A member is meant to behave like a real user on the machine — reachable over SSH, able to push to Gitea as themselves, able to have an agent do the same on their behalf. That needs two keys, and they are not alternatives:

where who holds the private half what it is for
inbound ~/.ssh/authorized_keys the member, on their laptop they SSH into this machine
outbound ~/.ssh/id_ed25519 this machine, generated here the machine authenticates to Gitea as them

The tempting simplification is "if they pasted a key, skip generating one." It breaks the actual goal. Agent forwarding covers a human in an interactive session; a platform-spawned agent has no agent socket to borrow, so an edge checkout it is asked to commit and push needs a key that lives on the box. So the inbound key is optional — an account without one is simply platform-only — and the outbound keypair is generated regardless.

No Linux password, ever. useradd is called with none, which leaves ! in shadow. That blocks password login and does not block key auth, so "real user, reachable over SSH, no password anywhere" is the resting state. The privilege drop is sudo -n setpriv performed by the platform, so there is nothing to authenticate. Keeping the platform password and the machine out of each other's business is the point: a Linux password would be a second door that changing the platform password does not close and deleting the platform account does not lock.

Validation is about line count, not key shape. Every line of authorized_keys is a credential, so a pasted value containing a newline would silently install a second authorized key. validatePublicKey refuses anything multi-line, refuses a private key with a message saying so, and refuses an options prefix (command="…" ssh-ed25519 …) — legitimate OpenSSH, but not something anyone pastes by accident, and it can force a command.

Everything is written with sudo install. The home is 700 and owned by the member, so the service user cannot create .ssh at all. install sets content, owner and mode in one step, which also closes the window where a key file briefly exists at the process umask. File content goes via a temp path rather than shell text, so nothing has to reason about quoting a value that came from a form.

StrictHostKeyChecking accept-new, not a seeded known_hosts. The Gitea SSH endpoint is not knowable at account-creation time — the platform stores an HTTP base URL, and SSH may be a different host or port. The failure this avoids is specific: the default setting makes a first connection prompt, and a prompt in a non-interactive agent turn is a hang, not an error. accept-new trusts on first use and still refuses a changed host key, which is the attack that matters.

The generated public key is stored on the user row (users.os_ssh_public_key) and shown after creation and on the user's row afterwards. It is public by definition, and it has an errand attached that nothing else will remind anyone about: it has to be added to that person's Gitea account or their pushes fail with a permission error that says nothing about a missing key.

Verified end to end with a real useradd: .ssh 700 and id_ed25519 600 both owned by the member and readable by them, authorized_keys byte-identical to what was pasted, the key not rotated on a second run (it has been added to Gitea by then), and a multi-line paste refused with authorized_keys left untouched.

Docker: rootless, one daemon per member

Verified working on a real member account, 2026-08-11.

Not the docker group. usermod -aG docker <user> is the one-line version and it is root: membership means talking to the host daemon, which runs as root, so docker run -v /:/host -it alpine chroot /host is a root shell. That reads .env, every other member's home and the wallet seed — every boundary above, bypassed by one documented command. The group is not "access to Docker", it is "root, by a longer route".

Rootless gives what was actually wanted: a daemon per account, containers in that account's user namespace, images under their own home. Measured — the daemon runs as the member, docker pull put 403 MB in their home, and docker ps -a showed nothing while the owner had four containers running.

Host prerequisites, all in setup.sh as core packages: uidmap (newuidmap/newgidmap — rootless cannot start without them), dbus-user-session, and Docker's own rootless extras. useradd allocates the /etc/subuid range automatically wherever login.defs sets SUB_UID_COUNT, and userdel reclaims it.

loginctl enable-linger is required, not optional. Officer's shells are not login sessions, so without it a member's daemon would stop the moment their terminal closed.

The setup tool's exit code is not the gate. It writes ~/.config/systemd/user/docker.service and then fails its own systemctl --user start with "Unit docker.service not found", because nothing reloaded a manager that was already running. So: run it, daemon-reload, start it ourselves, and verify by asking the daemon its version.

Two features built the same day collided. Creating a volume copies xattrs, and the DEFAULT ACLs on a member's home — added so the file browser could read their files — are inherited by Docker's storage, where a mapped id inside a user namespace is not a valid id to set:

failed to copy xattrs: failed to set xattr "system.posix_acl_default" on …/volumes/…/_data: invalid argument

Every container failed to start while the image pulled perfectly. The fix strips DEFAULT ACLs from ~/.local/share/docker only (setfacl -R -k), leaving the access ACLs the file browser depends on. Losing the platform's reach into Docker's internal storage costs nothing: it is layers and volume data, read through docker or not at all.

The port space is shared, and that is not fixed

A rootless daemon is isolated; the host's port space is not. RootlessKit publishes into it, so a member mapping 5432 collides with the owner's production Postgres — observed immediately:

error while calling RootlessKit PortManager.AddPort(): listen tcp4 0.0.0.0:5432: bind: address already in use

Two consequences worth knowing:

  • Publish on 127.0.0.1 explicitly. A bare -p 15432:5432 binds 0.0.0.0 in rootless mode, putting a member's dev database on the network. 127.0.0.1:15432:5432 is all they need to reach it from their own shell.
  • Nothing allocates ports. With one member the owner manages it by hand, which is where this stands deliberately. With several, a per-member offset is the crude answer that works.

Follow-ups this creates

  • Deleting a member no longer removes their home. It belongs to their uid, so the platform cannot remove it — rm -rf fails with EPERM, which is how it was noticed. deleteUserHandler does not touch disk today so nothing is broken, but account deletion will need userdel and a sudo rm to stop leaving an orphaned, unremovable directory behind.

  • confineUserTree sets DATA_PATH itself to 711. If a container ever bind-mounts a path under DATA_PATH and runs as another uid, it will traverse but not list.

    This happened, and it was worse than the note predicted. Reported from a live server: a bind-mounted postgres:18-alpine crash-looped with mkdir: can't create directory '…/18/docker' on a directory that already existed. Two reasons the prediction was too mild. The image's inner uid is 70, which maps through the member's subuid range to 231141 — neither the service user nor the member, so other. And by then the home carried default:other::--- from the ACL work, so other had lost even the traverse bit that the 711 reasoning assumed. Traverse-but-not-list became no-traverse-at-all.

    3bea46f's fix — stripping defaults from ~/.local/share/docker — covered NAMED VOLUMES only. A bind source lives wherever the member put it. A named volume passes with the bug present, which is exactly why that fix looked complete.

    Now: ~/.local/dockers is provisioned at 711 with all ACLs removed (setfacl -R -b, not -k), and is the documented place for compose bind mounts. 711 rather than 700 is the point — a container's inner uid needs x to reach a bind source inside, and no ACL can grant what the mode denies. -b rather than -k because -k left mask::--- behind, so inherited named entries read as rwx #effective:---: an ACL that says one thing and means another.

    Bounded deliberately. A member bind-mounting from elsewhere in their home still hits the denial; this is the place that works, not a guarantee about everywhere. The alternatives were worse — extending the strip cannot work when the member chooses the path, and d:other::--x on the whole home loosens every directory forever to fix one local case.

Stages

  1. The account and the mechanism. users.os_user; ensureOsUser (useradd + chown + the mode bits above); runAs; the .env permission gate; tests including the Bun-ignores-uid pin. No behaviour change — accounts are created and nothing uses them yet.
  2. getOwnerHomeDir honours its email argument. It takes an email and throws it away whenever HOME_DIR is set, which is always on a real install. Seven call sites; this one change repoints the file browser, chat, tasks, agents and the VNC password file per account.
  3. The file browser, rooted at the member's home. Containment already exists — resolveUserPath + isInside, which has the ..-escape fix in it — so this is a root-resolution change, not new security code.
  4. The terminal, via setpriv, plus pty identity. One execution capability reopened.
  5. Agents. Separately, later, with the SDK problem solved first.