# Operator write rights Most of `workspace_settings.operator_settings` is visibility: flags that hide pages from operators so the UI stays uncluttered. They are not enforced, and were never meant to be. `manage_schedules` and `manage_triggers` are different. They are **enforced** on the write paths, because hiding the schedules page never stopped an operator creating a schedule through the API, the CLI or MCP. An admin who wants operators to see what is scheduled without letting them change it could not express that with a visibility flag alone. ## Where the gate lives On the router, not in the handlers. `gate_operator_writes` is layered in `windmill-api/src/lib.rs` over the schedules router, the trigger routers, the native-trigger routers and capture, and refuses anything that is not a GET/HEAD/OPTIONS. That is not a style choice. A trigger kind can register routes of its own beside the shared CRUD ones — bulk HTTP creation, the Postgres publication and replication-slot setup — and those are hand-written, one per feature. A check inside each handler misses every one of those extra routes, along with the whole native-trigger family, which does not use the shared handlers at all. On the router the author of the next route writes nothing and is covered anyway. **A layer only covers the routers it is on.** It closes routes added *inside* a gated router; it says nothing about a new feature that performs trigger writes from a router of its own. Capture is exactly that — it configures a trigger without creating one, and saving a Postgres capture config creates a replication slot and a publication on the target database — and it needed its own layer rather than inheriting one. That includes `move`, which re-points existing capture configs between runnables: the builders, which call it on every script and flow creation, skip it while the right is withdrawn, since captures only arrive through a saved config. Before adding a feature that writes trigger or schedule state, ask which router it lands on. Three consequences to keep in mind when adding a route under one of these: - A read served over POST gets refused, and an unprompted refusal reaches the operator as a bare privilege toast. The connection test is button-fired, so it only refuses someone who asked. The HTTP route and email address availability checks and the Azure scope and topic lists run on editor open, so their config sections skip them while the lock is set. Put new reads on GET; if one must stay POST, check nothing fires it unprompted. - Anything mounted under a gated router inherits the gate. The native-trigger mount also carries the workspace's integration setup, which is a settings concern, so the layer goes on the trigger routes alone rather than the whole mount. - A route operating on *jobs* rather than configuration inherits it too. `resume_suspended_trigger_jobs` and its cancel twin stay gated: an operator who can neither suspend nor un-suspend a trigger should not override the consequence. Weigh the next one rather than taking the router's answer. `check_operator_can_manage` is still the function underneath, for a write that cannot be reached through one of these routers. `/acls/add` and `/acls/remove` are the case that needs it: sharing an object is a write to it, but that router serves every kind there is, so it can only be gated per kind from inside the handlers. `manage_kind_for_acl_kind` holds that list, spelled out rather than matched on the `_trigger` suffix so a kind named otherwise cannot slip through ungated. It refuses with `PermissionDenied` (403), never `NotAuthorized` (401): the frontend reads an uncaught 401 as an expired session and logs the user out, so 401 here ejects an operator from the app rather than telling them why. Both integration tests assert the status for that reason. ## In the UI The shared lists (`TriggerList`, `SchedulesList`, `NativeTriggerTable`) derive a per-row `canEdit` from `canWrite && !$lock` and leave `canWrite` itself alone, because `canWrite` also tells `SharedBadge` whether a row belongs to someone else — fold the lock into it and every row, including ones the operator owns and has never shared, claims to be shared read-only. Gate write affordances on `canEdit`, never the badge. Each schedule and trigger editor folds the lock into its own `can_write`, so a withdrawn operator gets the same read-only editor as someone without write access to the folder. There, unlike the list pages, nothing reads `can_write` as a sharing hint. It is derived for a new trigger too, so the toolbar, which takes its permissions from `can_write`, needs no lock of its own. Sharing is gated in `ShareModal`, which locks itself off the kind it was opened on rather than relying on each of the dozen menu entries that open it. The cache is per process, so withdrawing a right has to reach every replica: an `AFTER UPDATE OF operator_settings` trigger writes a `notify_operator_settings_change` row and `process_notify_event` drops the entry. Keep both ends if you touch either, or a workspace that withdrew a right keeps authorizing writes on every other replica until its own entry expires. ## Granted unless withdrawn These name capabilities operators already hold, so absence has to mean "never configured", not a value. That is easy to get wrong in two places, and the obvious implementation gets both wrong: - The read coalesces to **true** (`operator_rights`), including for a workspace with no `workspace_settings` row, which is what `OperatorManageRights::default` is for. Coalescing to false instead revokes the right on upgrade for every workspace that ever saved operator settings, since those rows carry explicit keys and none of them is this one. - The update endpoint **merges** into the stored jsonb and takes these two as `Option`, so an omitted key keeps its stored value. It has to: `operator_settings` is git-synced as a whole object (`cli/src/core/settings.ts` posts the file's contents verbatim), so a settings file written before these keys existed reaches the endpoint on every pull. A serde or SQL default of either polarity turns that pull into a silent withdrawal or a silent restoration. The visibility flags are plain `bool` and always serialize, so the merge is a no-op for them and their behaviour is unchanged. Do not model a right that an admin *grants* on these. Granted-by-default and granted-on-request are opposite polarities, and a gate written for one is wrong for the other.