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1108 Commits
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53eb94659b |
feat(telemetry): extend feature-usage tracking beyond AI features (#10681)
* feat(telemetry): extend feature-usage tracking to long-tail features Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: describe telemetry as product feature usage rather than AI usage Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor(telemetry): trim disclosure copy and drop unused pick origin Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(telemetry): count trigger fires per run and key hub picks from hub data Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(telemetry): slugify hub keys and order both writers' upserts Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(telemetry): key native trigger adoption by service so it matches fires Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: update ee-repo-ref for native trigger adoption fix Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor(telemetry): move feature-usage collection into the ee crate * docs: point feature-telemetry at the moved registry and rust writer * docs: correct the trigger-fire gate comment to match measured step counts * docs: put the private-build caveat on the verification step * chore: update ee-repo-ref to f079db9e7962a413b349c4ff8036080894f30771 This commit updates the EE repository reference after PR #725 was merged in windmill-ee-private. Previous ee-repo-ref: 055adb80416f9339c9a28ae7fbaeadad30d74959 New ee-repo-ref: f079db9e7962a413b349c4ff8036080894f30771 Automated by sync-ee-ref workflow. --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> Co-authored-by: Ruben Fiszel <ruben@windmill.dev> Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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98bacab907 |
refactor: combine the per-minute counters onto one shared helper (#10687)
* refactor: combine the per-minute counters onto one shared helper Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep dashmap in windmill-store for the azure devops token cache Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor: name the sweep counter for what it counts Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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30f5d2e766 |
perf: declare a settings pass instead of reading one setting at a time (#10698)
* perf: read global_settings once per settings-load pass `initial_load` reads several dozen settings back to back, one `SELECT value FROM global_settings WHERE name = $1` each: 50 serialized round trips before a worker is ready, 32 before a server is. On localhost that is ~20ms and invisible; against a real database it is 50x the RTT per process start, which `EXIT_AFTER_N_JOBS` turns into a per-job cost. `with_global_settings_snapshot` reads the whole table (12 rows on a typical instance) into a tokio task-local, and `load_value_from_global_settings` serves from it. Scoping it to the task is what keeps the single-setting reload paths correct: a `notify_global_setting_change` event for one key runs outside any scope and still reads the database, so a live settings change reaches a running worker as before. Agent workers hold an HTTP connection with no snapshot to take and are unchanged. `load_smtp_config` and `reload_custom_tags_setting` had their own inline copies of the same query; they go through the shared loader so they land in the snapshot too. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: state the snapshot contract on the reader and the query `load_value_from_global_settings` is called from ~10 crates and one of them writes a setting then immediately re-reads it through `reload_custom_tags_setting`; say on the function itself that a scope, when one is installed, serves the read and leaves `db` unused. The query comment claimed the table is a handful of rows. It is not bounded that way: `workspace_dependencies_map_rebuilt:<workspace_id>` adds a row per workspace and never removes it. Those dynamically named rows are also why the snapshot fetches the whole table instead of the wanted names, so state that as the reason. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: bound the settings snapshot and keep it out of two reads Three review findings, all real: The snapshot fetched the whole table, which is not bounded by the settings that exist: `workspace_dependencies_map_rebuilt:<workspace_id>` adds a row per workspace with no cleanup path, and no settings pass reads one. It now fetches only statically named rows, and reads of a `<prefix>:<id>` name skip the snapshot and go to the database. Correctness does not rest on that naming convention — a colon-free dynamic name would simply be in the snapshot and still answered correctly — only the bound does. A snapshot query that failed inside an enclosing snapshot awaited the body bare, so its reads were served by the outer snapshot rather than falling through as documented. The task-local carries an explicit bypass state and the failure path scopes it. `reload_jwt_secret_setting` decided whether to generate-and-upsert the JWT secret from a snapshot-served read, so a replica booting alongside another could overwrite the secret it had just generated and invalidate its tokens. That read goes through the new `load_value_from_global_settings_fresh`. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the snapshot query on the primary-key index `name NOT LIKE '%:%'` bounded the rows returned but not the work: a leading wildcard cannot use the index, so Postgres read every row anyway. Against 50k dynamically named rows it plans as a seq scan of 516 buffers whether or not seqscans are enabled — and worker connections disable them, so the plan was one the query shape forbade rather than one the planner chose. `name = ANY($1)` over an explicit list plans as a bitmap index scan, 7 buffers, bounded by the listed names rather than by table size. That list is also exactly the set the snapshot may answer from, so a name outside it falls through to the database instead of reading as unset: listing a setting is a performance choice, never a correctness one, which is what keeps the list safe to maintain by hand. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor: declare a settings pass instead of reading one setting at a time Replaces the prefetch-list snapshot with a pass the call sites build themselves. `SettingsPass` collects the reads `initial_load` will make as `(name, applier)` pairs, fetches them together, then replays the appliers in declaration order. Declaring is what makes the batch exact. The same `if server_mode` / `if *CLOUD_HOSTED` / `cfg` branches that used to guard a read now guard a declaration, so the fetch asks for what this process needs and nothing else, and there is no list of setting names to keep in sync with anything. Ordering is preserved end to end: appliers run in the order they were declared, and non-setting work in the middle of the sequence keeps its place as a step, so nothing moves and nothing runs twice. Steps that need several settings at once take them together. The batch distinguishes three states where a per-setting read only ever produced two at a given call site: - a value, - genuinely unset, which several settings must see in order to restore a default when the setting is cleared, - could not be read, which must leave the in-memory value alone. Collapsing this into "unset" would let one failed query reset workspace fairness and the queue caps across a cluster. Over HTTP the reads go out together rather than sequentially, so an agent worker's settings load costs one round instead of ~36, with no new endpoint. A setting an agent may not request still resolves to unset, as the per-setting call returned for it. `reload_*` keeps working per setting for the notify path, sharing its apply half with the pass. The wrappers no caller was left using are dropped. worker startup: 50 queries -> 2 (the batch, and jwt_secret which stays its own read so the pass cannot sit between reading it absent and upserting a replacement over another replica's). Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: run the pass's non-setting steps in declaration order too Review round found the settings pass had a gap: the reads were declared but the work interleaved between them still awaited inline, so it all ran before `pass.run` applied anything. `manage_audit_partitions` therefore saw `AUDIT_LOG_RETENTION_DAYS` at its compile-time default rather than the configured value, and dropped every partition past that default. An instance keeping 30 days on CE lost the 14-to-30-day band on startup and on every full-reload tick. The `STORE_AUDIT_LOGS_S3` export anchor had the same cause: the gate read `false` before the setting applied, so an env-var-enabled export never anchored and its first tick skipped the rows committed before it. `action` exists so a step keeps its place in the sequence; every remaining inline await is now one, which fixes both and leaves no phase where a read can observe a value the pass has not applied yet. Two more from the same round: A batch that fails as a whole now falls back to per-setting reads. Skipping every applier preserves known-good state on a reload tick, but a starting process has none, and would have run on compile-time defaults until the next full reload twelve hours later. `FORCE_RUBY_REPOS` is honored again: the batched url-list path parsed without the `FORCE_` check its per-setting counterpart applied, so the override was silently dropped. `load_setting_value` never had one, so the third helper was never affected. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: declare the object-store and worker-config steps in the pass too Two awaits were left running ahead of `pass.run`, so the settings they read were still at their compile-time defaults. The object-store reload is the one that matters: an AWS OIDC store mints its first token against an issuer built from `BASE_URL` (`oidc_ee.rs`), and with `OTEL_ENVIRONMENT` set nothing loads that before this pass does, so the store signed with the unset default, left `OBJECT_STORE_SETTINGS` empty and fell back to the ten-second retry while startup carried on. `reload_worker_config` calls `store_pull_query`, which reads the workspace fairness knobs. It happened to converge because the enabled flag re-stores the query when it changes, but it was reading defaults on the way there. Both are steps now, which is also what the earlier fix should have covered: the only await left outside a step is `pass.run` itself. Also from the same round: `fetch_settings_batch`'s doc comment had been stranded on the helper inserted above it, and the batch-failure fallback re-ran the same reads on an agent worker, where the batch already is the per-setting read. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: point the setting-loader docs at functions that still exist `reload_setting` went with the other wrappers no caller was left using, but two doc links still referenced it. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: decide the jwt secret in sql so the read can be batched `reload_jwt_secret_setting` generated a secret whenever its read came back absent or unparseable, and upserted it unconditionally. Two replicas booting against an empty row therefore each installed their own and rejected each other's tokens, and the same happened on a running cluster whenever the row was deleted or set to a non-string. Keeping the read next to the write kept the window narrow but never closed it, and it was the reason this one setting could not go through the settings pass. `get_or_create_jwt_secret` puts the decision in the statement instead: INSERT ... ON CONFLICT (name) DO UPDATE SET value = EXCLUDED.value WHERE jsonb_typeof(global_settings.value) <> 'string' RETURNING value First writer wins, a usable secret is never overwritten, and an empty RETURNING is how a caller learns another process's secret stands. The `WHERE` also keeps a normal startup from writing at all, which matters because `notify_global_setting_change` fires on every write to this table and an unconditional upsert would have made each start trigger a cluster-wide reload. Because the statement decides rather than the caller's read, a stale value is harmless and `jwt_secret` is now an ordinary declaration. Worker startup is a single batch round. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep a failed read from dropping a FORCE_ override or clearing a setting Two ways a read that did not succeed was being treated as an answer. A `FORCE_` override used to be checked before the read, so a failed read could not affect it. Moving that check into the parser put it behind a value arriving, and a failed read skips its applier, so a forced private registry fell back to the public index and a forced `settings.xml` was deleted from disk by the Maven step that follows it. Forced settings are declared as steps with no read now: the override outranks the database, so there is nothing to fetch and nothing to lose when a fetch fails. The setting loaders were passing `v.ok().flatten()` to their appliers, which turns a database error into "unset". Most appliers ignore `None`, but `apply_tag_per_workspace_workspaces` clears the workspace whitelist with it, making every workspace eligible for per-workspace tags, and `apply_fork_workspace_tag_append_fork_suffix` stores `false`. Both are also reached from the notify handlers, so a blip during a reload changed routing for the cluster. They take `?` now, as the code they replaced did by leaving the error arm empty, and the other five are converted with them so an applier that later grows a `None` branch cannot inherit the problem. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: route hub_api_secret through the FORCE-aware declaration `HUB_API_SECRET` lives in an `ArcSwap` rather than an `Arc<RwLock<_>>`, so it could not use `option_setting` and was declared by hand with a bare `setting` plus `parse_option_setting_value` — which is exactly the path that skips the `FORCE_` handling, so a failed read still dropped `FORCE_HUB_API_SECRET`. The rule now lives in `option_setting_with`, which takes the store closure and leaves `option_setting` a wrapper over it, so a setting held in something other than an `RwLock` reaches it too rather than having to reimplement it. The three remaining hand-written parses are `parse_setting_value`, which has no `FORCE_` handling to miss: `load_setting_value` never had the check either. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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633d7bcb2e |
feat: add trigger_history table with source tracking (#10696)
* feat: add trigger_history table with source tracking Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: gate trigger history reads on scopes and harden its writers Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: filter trigger history scopes in SQL and match the cleared-handler diff Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: record a trigger restore from the trashbin in its history Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: record bulk http trigger creates and document the recording boundary Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: lock the trigger row when capturing its history preimage Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: only record an auto-disable that actually flipped the schedule Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: state the auto-disable invariant once instead of at four call sites Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * feat: render trigger history changes as a structured field diff Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: make a server-initiated disable atomic with its history row Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: note that the auto-disable savepoint takes no pool connection Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: note the flow fallback is the last chance to disable Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: never leave a trigger enabled because its history row failed Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: retry the disable history row instead of dropping it on first failure Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: use the design-system Button for the change-value expander Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: hold the trigger row lock across its disable history row Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the history-loss alert out of the listener cancellation race Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: read the history workspace through the trigger-workspace seam Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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22eadab67d |
perf: resolve the worker external IP in the background (#10697)
* perf: resolve the worker external IP in the background `run_workers` awaited `external_ip::get_ip()` — an HTTPS GET to hub.windmill.dev — before spawning any worker, so every worker process paid that round trip before its first job pull. Measured on a CE debug build it was 120-450 ms of a ~200-500 ms startup, and behind a firewall the call does not fail fast: it burns its whole 5 s connect timeout, on every process start. That cost is per-job under EXIT_AFTER_N_JOBS. The value is informational (it is only written to `worker_ping.ip`, which the workers list displays so users can whitelist the address), so nothing needs to wait on it. It now resolves into a process-wide cache off the startup path, and `WORKER_EXTERNAL_IP` supplies it explicitly for deployments that know their egress address or have no egress at all. Until it resolves the ping carries no IP, which `insert_ping_query` now COALESCEs so a reclaimed row keeps the address the previous process wrote instead of being blanked. The main loop reports the IP as soon as it lands rather than on the next periodic tick, so a short-lived process still records it. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep unknown worker IPs out of the whitelist alert Review follow-ups: - `WhitelistIp` filtered only the `'unretrievable IP'` sentinel, so the `'NO IP'` one a pending or failed lookup now leaves in the row would be offered as an address to whitelist. It filters both. - Register `WORKER_EXTERNAL_IP` in `ENV_SETTINGS` so operators can confirm from the instance settings view that it took effect. - The worker tracked whether it had reported the IP by re-reading the cache after each ping rather than remembering what the ping carried, so a lookup landing mid-ping marked it reported without it reaching the row. The value is read once and threaded through `insert_ping` / `update_worker_ping_full`. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: report a sentinel IP once the lookup has definitively failed Keeping the previous process's address on a reclaimed `worker_ping` row is right while the lookup is still in flight, but not once it has failed: the row would advertise an address nothing has confirmed, and the whitelist alert would offer it. A failed lookup now reports `UNKNOWN_IP`, leaving NULL to mean "in flight". `WORKER_EXTERNAL_IP` is rejected when longer than the `varchar(50)` column rather than panicking the worker on its initial ping, which is a hard failure. Adds the regression guard for the `ON CONFLICT` semantics: reverting to `ip = EXCLUDED.ip` would compile and blank every reclaimed row. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the agent initial ping acceptable to older servers An agent worker routinely runs against a server of a different version, and one predating the background lookup rejects an initial ping carrying no IP — which `run_worker` turns into a panic, so a newly upgraded agent would crash-loop against it. The not-resolved-yet case goes over the wire as the sentinel instead, and the server maps it back so a reclaimed row still keeps its address while resolution is pending. Also documents `ip` as the one conditional exception to `insert_ping_query`'s "only `started_at` and `jobs_executed` survive a restart", and adds `WORKER_EXTERNAL_IP` to the README env-var table. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: deliver the resolved IP to servers that only take it at registration A server predating the background lookup applies `ip` from the initial ping only, and ignores it on the periodic ones. An agent registering before its lookup resolves would therefore keep the sentinel forever on such a server, where it used to report its real address. It registers a second time once the address is known, skipping that when the address is still unknown, when the server is reached over SQL and needs no second registration, or once a job has run, since registering clears the row's current job. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: re-register the resolved IP even after a job has run Gating the second registration on "this process has not run a job yet" meant an agent that pulled queued work before its lookup resolved never delivered the address to a server that only takes one at registration. No job of the worker is in flight where that runs, so the gate bought nothing beyond the last job's id, which the next job refills. Documents the two cases where WORKER_EXTERNAL_IP stops being an optimisation and becomes the only way to report an address: an agent against such a server, and a process shorter-lived than the lookup. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * revert: drop the WORKER_EXTERNAL_IP escape hatch Supplying the address by hand skips the hub lookup, which is not something to make easy. Resolving it in the background is what keeps it off the startup path; opting out of it is a separate decision this does not need to take. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: distinguish an IP never established from one that could not be retrieved `NO IP` was doing double duty: the column default for a row whose lookup has not resolved, and the marker for one that failed. An operator reading the workers list could not tell "not resolved yet" from "this instance cannot reach the hub", and the latter is the actionable one. A failed lookup now reports `unretrievable IP`, which is also what it reported before the lookup moved off the startup path. That leaves `NO IP` meaning only "no address established", which is what an agent sends while its lookup is in flight and what the server maps back to "unresolved" — so the wire sentinel no longer collides with the failure marker, and an agent delivers the failure to a server that only reads an IP at registration. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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a91d55769d | chore: pin git-sync scripts to hub 28903/28904 (cli 1.787.0) (#10682) | ||
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71b9989daa |
feat: auto-build binaries to object storage on deployment (#10673)
* feat: auto-build binaries to object storage on deployment Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: queue the auto-build from pre-locked deploys and off the lock slot Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: materialize companion modules before a deploy-time build Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep a build job from stamping lock_error_logs on a healthy script Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * test: de-flake test_flow_lock_all and surface the lock error it hides Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * test: trim drafting history from the flow-lock fixture comments Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: stop a binary build from restarting dedicated workers Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the build-job marker off the agent wire and out of user args Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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2fcce4526a |
feat: add EXIT_AFTER_N_JOBS worker mode for environment cleanup (#10671)
* feat: add EXIT_AFTER_N_JOBS worker mode for environment cleanup Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: address review findings on the EXIT_AFTER_N_JOBS worker mode Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: address round-2 review findings on EXIT_AFTER_N_JOBS Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: address round-3 review findings on EXIT_AFTER_N_JOBS Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: bound WORKER_SUFFIX length and document the same-worker drain Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: validate the assembled worker name length Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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4cb51cf7bc |
feat: add memory limits to the go build subprocess (#10666)
* feat: bound go compilation memory with GOMEMLIMIT Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: bound the whole go build tree, not each toolchain process Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the go build memlimit and parallelism atomic Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: log the go limits actually installed and stop serializing small workers Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: make go build parallelism authoritative over persisted GOFLAGS Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: canonicalize the go build -p value and floor the module-step budget Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: parse GOMAXPROCS for -p the way the go runtime does Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: read GOMAXPROCS with go's own grammar and report limits neutrally Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: derive go build parallelism from the cgroup quota over its own period Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep go's minimum build parallelism under sub-CPU quotas Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the windows 1CU cap out of go's two-compiler floor Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: record that a worker runs one job at a time Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: scope the one-job-at-a-time rule away from native workers Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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84f3b0094d |
fix: harden custom env var name handling in the nativets/bun prologue (#10634)
* fix: escape and validate custom env var names in the nativets prologue
Custom workspace environment variable names were spliced verbatim into the
generated NativeTS/Bun JS prologue (both the `const {name}` binding and the
`process.env['{name}']` assignment), while only the value was escaped. A
non-identifier name could therefore alter the generated program.
- Add `escape_js_single_quoted` / `is_valid_js_identifier` helpers.
- worker.rs and bun_executor.rs: escape the name as a string literal, and only
emit the `const {name}` binding for valid identifiers.
- set_environment_variable: reject non-identifier names on write (deletion stays
unrestricted so existing rows remain removable).
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
* fix: address review — reserved-word const gate, grandfathered-name editability
- Gate the `const {name}` prologue binding on `can_bind_as_prologue_const`, which
additionally excludes JS reserved words and the prologue's own bindings
(`process`, `BASE_URL`, `BASE_INTERNAL_URL`); such names would otherwise emit a
SyntaxError that breaks every NativeTS run. They are still exposed via
`process.env['{name}']`.
- set_environment_variable: only enforce the identifier check for names that don't
already exist, so editing the value of a pre-existing non-identifier name (the
edit UI resubmits the name) isn't rejected with no in-product fix.
- Document the name constraint on the endpoint in openapi.yaml.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
* fix: exclude eval/arguments from const gate; skip existence query on valid names
- Strict-mode ES modules forbid `eval` and `arguments` as binding names, so add
them to the non-bindable set — otherwise an env var named `eval`/`arguments`
emits `const eval = ...`, a SyntaxError that breaks every NativeTS run.
- set_environment_variable: run the existence check only when the name isn't a
valid identifier, so the common (valid-name) path skips the extra query; trim
the rationale comment.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
* fix: allow `async` as a prologue const binding; note reserved-bindings coupling
`async` is a contextual keyword, not a reserved word — `const async = ...` is
valid, so it needn't be excluded from the const binding. Also cross-reference the
prologue head from PROLOGUE_RESERVED_BINDINGS so the two stay in sync.
Co-Authored-By: Claude Opus 4.8 <noreply@anthropic.com>
---------
Co-authored-by: Claude Opus 4.8 <noreply@anthropic.com>
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5b0a159a01 |
fix(smtp): explain why a test email failed instead of 'deadline has elapsed' (#10620)
* fix(smtp): explain why a test email failed instead of 'deadline has elapsed' Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(smtp): keep non-SMTP error codes and retire a stale test alert Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: update ee-repo-ref to f0df8b82c4c089d384423ed64b8504506084820d This commit updates the EE repository reference after PR #721 was merged in windmill-ee-private. Previous ee-repo-ref: 1ffaf3dea81e007c6c11146c1e12e97e83f5b938 New ee-repo-ref: f0df8b82c4c089d384423ed64b8504506084820d Automated by sync-ee-ref workflow. --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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bf1b2cdcf9 |
fix(duckdb): cast list columns in quicksearch so tables containing them can be previewed (#10614)
* fix(duckdb): cast columns in quicksearch so nested types can be previewed
DuckDB's `CONCAT` implicitly casts scalars but rejects nested types:
D SELECT CONCAT(' ', ['a','b']);
Binder Error: Cannot concatenate types VARCHAR and VARCHAR[] - an explicit
cast is required
Quicksearch concatenates every visible column, so one LIST, STRUCT or MAP column
makes a table impossible to preview — both the grid and its row count fail:
Binder Error: Cannot concatenate types VARCHAR, VARCHAR, BIGINT, ...,
VARCHAR[], ... and TIMESTAMP WITH TIME ZONE - an explicit cast is required
LINE 1: ... FROM "raw"."accounts" WHERE ($1 = '' OR CONCAT(' ', "id", ...
Every scalar in that list concatenates fine on its own — VARCHAR, BIGINT,
DOUBLE, BOOLEAN, DATE and TIMESTAMPTZ were each checked individually — so the
array column is the entire cause.
Cast each column in the predicate. The comparison is textual either way, so no
result changes, and the projection is untouched: casting there would change the
types the caller reads back. This follows the shape already used for MSSQL in
`mssql_needs_cast_for_eq`.
Both DuckDB quicksearch sites are covered, SELECT and COUNT. Fixing one leaves
the grid rendering while the row count still errors.
Tests include the live path: the Database Manager sends a
`-- WM_INTERNAL_DB_SELECT {...}` marker and the backend expands it, so the new
test drives that expansion with the real 27-column definition captured from a
failing job, `sync_id VARCHAR[]` included. It fails without the fix and passes
with it.
* fix(frontend): cast columns in the DuckDB quicksearch
Same defect as the Rust query builders, in the implementation that actually
runs. `make_select_query` / `make_count_query` in windmill-common have no callers
anywhere in the repo; the query the browser sends is built here.
DuckDB's CONCAT implicitly casts scalars but rejects nested types, and
quicksearch concatenates every visible column, so one LIST column makes a table
impossible to preview — both the page and its row count fail with
Binder Error: Cannot concatenate types VARCHAR, ..., VARCHAR[], ... and
TIMESTAMP WITH TIME ZONE - an explicit cast is required
The helper lives in select.ts and is imported by count.ts so the two cannot
drift, and both call sites are fixed: fixing only SELECT leaves the grid
rendering while the row count still errors.
* fix(duckdb): cast only list columns in quicksearch, leaving other SQL byte-identical
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
* test(frontend): pin the DuckDB quicksearch column list byte-for-byte
Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com>
---------
Co-authored-by: Ruben Fiszel <ruben@windmill.dev>
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com>
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b7d2052b03 | block the whole 0.0.0.0/8 range in the SSRF filters (#10597) | ||
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330175f83b |
Revert "fix: scope a fork's cloned app policy and custom path to its creator …" (#10592)
This reverts commit
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8e95bfe615 |
fix: scope a fork's cloned app policy and custom path to its creator (#10589)
* fix: scope cloned app policy and custom path to the fork's creator Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor: share the app custom-path scoping rule across its call sites Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: tighten the cloned-app-policy comments Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: correct the execution_mode and custom-path scoping rationale Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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8c6211c277 |
feat: offer more dev workspace environment labels (#10570)
* feat: allow custom dev workspace environment labels Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: reject dev labels that shadow a tracked branch's namespace Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: guard dev labels against a repo's assumed default branch Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: state the badge-cap rationale once and drop unenforceable openapi constraints Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor: offer a fixed list of environment labels instead of free text Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: match the accepted label set to the openapi enum exactly Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: stop describing the label set as dev/staging only Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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c61404a0f4 |
feat: preview merge result in git-sync PR diff check (#10542)
* feat: preview PR merge result in git-sync diff check * chore: update ee-repo-ref * fix: match pr diff sentinels as structured field, tighten comments * chore: update ee-repo-ref * fix: neutral verdict for unfetchable pr head, testable sentinel parse * chore: bump git-sync pull script pin to hub/28889 * chore: bump git-sync pull script pin to hub/28890 * fix: cover failed history deepening in unavailable-head check text * chore: update ee-repo-ref to 181fa0c206d7f84a289b4396a7f7764bc815d284 This commit updates the EE repository reference after PR #712 was merged in windmill-ee-private. Previous ee-repo-ref: 36f5c0e9d147f9eed63ebc316f2aef9f86b500af New ee-repo-ref: 181fa0c206d7f84a289b4396a7f7764bc815d284 Automated by sync-ee-ref workflow. --------- Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> Co-authored-by: Ruben Fiszel <ruben@windmill.dev> |
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5ce29b3436 |
feat: add public sharing option for job pages (#10573)
* feat: add public sharing option for job pages Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: gate public run sharing and address review findings Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: address review nits on public run sharing Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: key public run view on workspace, job and token Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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e203ab087a |
feat: allow a dev workspace to have its own dev workspace (#10534)
* feat: allow a dev workspace to have its own dev workspace Fixes WIN-2324 Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep every dev workspace in a chain on a distinct deploy branch Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: count a dev workspace the caller has no seat in as holding its label Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor: keep the attach form standing when a candidate takes the last label Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the label toggle visible when a candidate's dev workspace clashes Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: describe the cycle guard by what holds, not by what changed Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: refuse to archive a fork-backed dev workspace that owns a nested dev Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: put the deploy target and item filters under the pairing they configure Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: refuse to archive any dev workspace that owns a nested dev Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: fix the fixture family count Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: put the deploy target with the pairing line it restates, above protections Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: name the same family head in the workspace menu and the scope picker Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: stop offering to delete a dev workspace from the sidebar settings menu Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: state the visibility boundary the lineage root actually resolves to Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: serialize dev-pairing creation against teardown of the same workspace Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: lock both sides of an attach so adjacent pairings cannot share a label Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: serialize dev pairings on one key, the invariant being chain-wide Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: scope the pairing lock to the chains an operation reads Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: hold the pairing lock across renames and re-check the cycle under it Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: hide the fork-delete action until the workspace entry has loaded Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: lock archive before it reads the pairing state it acts on Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: describe the archive lock test by what it pins, and drop an unused fixture row Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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340d3cd565 |
feat(dbt): reach any dbt adapter through a dbt_profile resource, and constrain the warehouse picker (#10525)
* feat(dbt): reach any dbt adapter through a dbt_profile resource, and constrain the warehouse picker
The workspace dbt warehouse picker listed every resource in the workspace, so a
slack or github resource was an offerable answer to a field that can only be a
warehouse. Constraining it exposed that the set of resource types that actually
work is both smaller than the docs claim and too small to be useful:
- `render_profile` translates only six adapters from a Windmill resource; the
rest (clickhouse, duckdb, salesforce, mssql, oracle) refused one outright.
- `redshift` and `duckdb` name no resource type anywhere, so two of the
adapters the quickstart advertises were unreachable.
- the `databricks` resource carries `workspace_url`, while the renderer demanded
`host`, so that warehouse could never render at all.
So the picker gets a constraint and dbt gets an escape hatch wide enough to make
it honest. `dbt_profile` is a resource whose value IS a `profiles.yml` target —
`{ type, target }` — passed to dbt unchanged, so any adapter and any key it
documents works.
`DbtAdapter` is now open: it carries dbt's own `type:` spelling plus an optional
`KnownAdapter` (the eleven Windmill has facts about — a field mapping, a pip
package, the license gate). Anything else is carried by name and installed as
`dbt-<name>`, the convention every adapter on PyPI follows, so "whatever dbt
supports" no longer means "whatever this enum lists". The license gate is
unaffected: `sqlserver`/`oracle` still resolve to their `KnownAdapter` and are
still gated. The name is confined to `[a-z0-9_-]` starting alphanumeric because
it reaches a pip requirement and a venv path on the host.
Two adjacent fixes fall out: the project's own `profiles.yml` and the
descriptor's `profile.type` now accept any adapter instead of the closed list,
and a databricks resource renders its `host` from `workspace_url`.
The picker is constrained to `dbt_profile` plus the translated types, so nothing
it offers can fail for want of a mapping.
Fixes WIN-2320
* fix: drop the unused DbtAdapter::from_resource_type wrapper
Nothing calls it: a Windmill resource type maps through
KnownAdapter::from_resource_type, and the executor resolves an adapter from
the resource's own dbt spelling or by inference. CI builds with -D warnings,
so the dead wrapper failed every backend check.
* fix(dbt): make dbt_profile the block itself, and address the review findings
**A `dbt_profile`'s value IS a `profiles.yml` output block**, `type` included.
It was `{ type, output }`, which asked the user to restructure their block
before pasting it — a translation step, in the one type that exists to avoid
translation. The schema now declares no properties, so the resource form renders
a single JSON editor over the value.
That means the value's shape can no longer say what it is: a `dbt_profile` and
Windmill's bigquery resource are both objects with a `type` (the latter says
`type: service_account`). So the warehouse carries its resource's type
(`DbtWarehouseConnection.resource_type`), and detection is exact. It also makes
decision 9's "the resource type name is the authority" true at runtime for the
translated path, which until now resolved its adapter by sniffing fields.
Review findings, all three reviewers:
- **[P0] an author-chosen adapter became an unsandboxed PyPI install.** `dbt-` is
not a reserved prefix, and `provision_core_1x` installs through `run_tool`,
outside the nsjail ordinary dependency installation uses — so `dbt-<name>` from
a script author's `type` could run a PEP 517 build backend as the worker. Now
gated on a list of published adapters plus `DBT_EXTRA_ADAPTERS`, so trust stays
the admin's call. The open set survives: the engines that ship their adapters
install nothing and take any type.
- **[P1] `type: fabric` rendered as `sqlserver`.** dbt's `type:` was resolved
through the resource-type table, where `fabric` is a Windmill alias for SQL
Server — so a Fabric profile installed dbt-sqlserver, was enterprise-gated, and
failed on an ODBC driver without ever naming Fabric. dbt types now have their
own table.
- **[P1] two spellings of one adapter compared unequal.** `PartialEq` covers the
carried name, so `postgres` != `postgresql` even resolving to one adapter, and
the descriptor/resource check rejected valid configs with a message naming the
same adapter twice. The name is normalised to the adapter's dbt spelling.
- **[P2] identity keys.** `database_key` is what a Windmill resource spells it,
and only translated adapters have one; the rest read dbt's `database`.
- **[P2] duplicate `sslrootcert`** when a block carried both a PEM and a path.
Verified with three real dbt builds: a flat `dbt_profile` postgres block, the
same with `type: postgresql` under a `profile.type: postgres` descriptor (the
alias case, which failed before), and trino for the unknown-adapter path.
* docs(dbt): say that installing an adapter is gated, not just using one
The open-adapter text promised every future adapter is installed as dbt-<name>,
which ensure_adapter_installable refuses outside PUBLISHED_ADAPTERS and
DBT_EXTRA_ADAPTERS. Separates the two: rendering, licensing and identity are open
to any adapter, and only the dbt-core 1.x PyPI install is gated, because that is
the step that runs outside the sandbox.
* fix(dbt): keep a dbt_profile's own sslrootcert when Windmill writes none
The previous round skipped the block's sslrootcert unconditionally to avoid
emitting the key twice, which drops a path-only CA reference — a certificate
baked into the image or mounted on the worker, which is the block's own trust
source. Skipped now only when a root_certificate_pem is present, which is when
Windmill writes a replacement.
* fix(frontend): let a resource type declare no properties
A schema without `properties` is a JSON-edited resource type, not a broken one -
`dbt_profile` is a profiles.yml block whose keys belong to its adapter, so there
is nothing for Windmill to declare. Both editors assumed properties exist:
- ResourceEditor threw on Object.keys(undefined) while deriving the field order,
which left the drawer on its loading skeleton forever, so the resource could
not be viewed or edited at all.
- ApiConnectForm caught the same throw and reported the type as missing from the
workspace, offering to sync a type it already had.
Both now fall back to the raw JSON editor, which is what usesRawEditor already
intended for a schema with no properties.
* chore: cut the new comments to AGENTS.md's four-line cap
Each still states its constraint once; the long-form rationale belongs in
docs/dbt-runtime.md and the PR, not beside the code.
* fix(dbt): keep a dbt_profile's empty and nested collections intact
A block with no children reads back as null, so `extensions: []` reached the
adapter as a missing value rather than the empty list dbt was handed, and a
nested array went through the scalar path and arrived as a quoted JSON string.
Both are keys dbt passes to the adapter as it finds them, so the type has to
survive: empty collections are emitted inline, and the value half of an entry
recurses instead of bottoming out at a scalar.
The test parses the rendered YAML back rather than string-matching it, since
what matters is what a YAML reader sees.
Also cuts DbtWarehouseConnection.resource_type's comment to the four-line cap.
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c054018c9b |
require an explicit user for azure workload identity on postgres (#10521)
* fix: name the pg login in the job log for token auth modes Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor: route remaining pg login defaults through login_name Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: require an explicit user for azure workload identity on postgres Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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2d2cdb7a99 |
allowlist resource_type and escape fuzzy-search highlights (#10509)
* fix: allowlist resource_type and escape search highlights * fix: bound path length and keep marked-label offsets entity-aware * fix: match postgres word-char semantics and drop double-escaping * fix: sanitize db constraint and rls errors instead of relying on the regex |
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9f3d15583a |
fix: log the db auth mode used and hint at the ms_entraid sentinel (#10508)
* fix: surface which auth mode a sql connection used and hint at ms_entraid Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: scope the ms_entraid hint to azure hosts and pin the sentinel trim Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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f365929eaa |
feat(fork): merge a fork deletion on evidence, not on the counters (#10484)
* feat(fork): merge a fork deletion on evidence, not on the counters `workspace_diff.ahead`/`.behind` record that a write happened on a side, not what it was or who made it. That leaves one row shape undecidable: an item the parent has and the fork does not can mean the parent added it, the fork deleted it, or a git-sync pull reverted a deploy that had just brought it in. #10467 kept every such row out of the merge direction, which killed the phantom but also dropped the only way to propagate a fork-side deletion and left a rename's old path behind in the parent. Record the evidence instead: - `workspace_diff` gains, per side, the last event's kind (`write` / `delete` / `rename_from`) and origin (`authored` / `sync`). Rows written before the migration have neither and keep #10467's behavior. - The kind is probed from whether the path still holds an item once the write has committed; an item kind the probe doesn't map records no evidence rather than a deletion. Create and update are not split — nothing at that point tells them apart for every kind, and the comparison already recomputes existence per side. - The origin comes from an `X-Windmill-Deploy-Origin` header the API scopes into a task-local for the request. It is the load-bearing half: recording `delete` alone would read a git-sync revert as a fork deletion and reproduce the original bug. Two clients set it — `wmill sync push` (which the git-sync auto-pull runs inside a job) and the compare page's parent→fork "Update fork". Merging the other way stays authored so a deletion keeps propagating up a fork chain. - The merge direction admits a parent-only row only when the fork's last event was an authored delete or rename-away. Such a row stays opt-in, never bulk-selected, and reads "Removes in <parent>"; the update direction keeps offering it back as "New". A fork deletion and a rename now merge into the parent, a rename leaves no duplicate behind, and a fork the parent also edited surfaces in both directions instead of the parent silently winning. Fixes WIN-2289 Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(fork): address review — detached tallies, enum wire values, doc duplication Codex P1: a dependency job tallies its deploy whenever it happens to finish, and the event kind is probed from the state at that moment. If anything removed the path in between (a git-sync revert), the stale tally read that deletion as its own and filed it as authored — handing the merge exactly the removal this is meant to withhold. `tally_deployed_object_changes` now takes `Option<DeployOrigin>`; `None` bumps the counter and leaves the evidence columns as the last vouching tally left them, and the worker path passes it. Covered by extending the removal-origin test: a detached tally after the sync archive must not disturb `(delete, sync)`. Also from review: - `fork_removed_it` compares through `DeployOrigin::as_str()` / `DeployEventKind::as_str()` rather than repeating their wire values, so a renamed variant can't silently make the predicate always false. - `deploy_origin`'s module doc no longer claims `sync` is inert: it cannot make the merge propose a removal, but it does drop a row out of both sides of the `all_ahead_items_visible` comparison. - `WorkspaceDiffRow` says why only the fork half of the evidence is consumed. - The delete-vs-revert rationale is stated once (the migration) instead of restated in eight files. - `PATH_KEYED_TABLES` is swept by a test: its query is built at runtime, so a wrong table name is not a compile error and would only surface as a failed tally for that trigger kind in a fork. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(fork): let only a request task vouch for a deploy event Round 2 found the first fix incomplete. Detaching only the failed/cancelled dependency path left the common route untouched: a dependency job that succeeds calls `handle_deployment_metadata` from the worker, where `deploy_origin::current()` read as `Authored`. A sync archiving the script while its lock generation was pending then had its deletion probed on completion and refiled as authored — the same fabricated removal, on the path most deploys actually take. `current()` now returns `Option`, `Some` only inside the request scope the API always enters. Having no scope means "not the task that served this write", which is true of every worker-side call and needs no marking at the call site. The integration test drives the real `handle_deployment_metadata` off a request task instead of the tally directly, and fails without this. Two more from the same round: - The script dependency handler passed no `renamed_from`, unlike the flow and app handlers next to it. A lock-generating create has no earlier tally, so that was the only chance for the path a rename vacated to be recorded at all — renames of Python/TS scripts left the old path in the parent, which the bash-only manual check missed. - The tally now drops a `renamed_from` equal to the path itself. Callers pass the previous path whether or not the deploy moved the item, so an unfiltered one both counted the path twice and stamped it `rename_from` when nothing was renamed. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(fork): carry a deploy's origin into the dependency job it queues Round 3 caught the previous fix cutting too deep. Refusing a detached tally any claim also refused its rename evidence, and a lock-generating deploy has no other tally — so the `renamed_from` added alongside it was inert, and a renamed flow, app or Python script still left its old path in the parent with nothing to merge. Flows and apps always generate, so renames worked essentially nowhere. The two capabilities are now separate. `TallyEvidence` says whether the tallying task served the write (`Served`, may probe what the path holds now) or is reporting one that committed earlier (`Deferred`, may not), and each column is written only from a source that answers for it. The origin itself is a fact of the deploy either way, so the request stamps it into the dependency job's args and the worker re-enters the scope with it — the last place that knows it handing it to the only tally that will run. Also from round 3: `WorkspaceDiffRow`'s event fields skip serializing `None` rather than emitting `null`, matching what the schema declares (OpenAPI 3.0.3 ignores a `description` sibling of `$ref`, so those moved onto the shared schemas). Verified against a live worker: renaming a flow in a fork records `(rename_from, authored)` on the vacated path and the merge offers its removal, while the deployed path claims nothing. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(fork): mark the CLI's parent-to-fork merge as sync `wmill workspace merge --direction to-fork` is the CLI's "Update fork" and deletes items in the fork, but without the marker the compare page sets. Its deletions were recorded as authored fork decisions, so once the parent recreated such a path the merge would offer deleting it there. Also from review: an unrecognized deploy-origin arg now reads as no evidence rather than as authored — strict where a request header is lenient, since an unmarked request really is authored but an unreadable stored value is skew. Reading the arg moved next to `stamp_origin_arg`, the half that writes it, so the round trip a lock-generating deploy depends on is covered by one test. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: drop the imports the shared arg reader made unused CI compiles with `-D warnings`, so this was four red Backend jobs rather than a lint. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(fork): stop a stale deferred rename from restating a removed path Nothing orders these events. A tally that served the write made its claim inside its own commit, but a deferred one reports a write that landed at an unknown remove. So a lock-generating rename whose dependency job finished after a sync had removed the vacated path could overwrite `(delete, sync)` with `(rename_from, authored)` — the path is gone either way, so the merge would then offer removing it from the parent on the strength of the older event. A deferred claim now only writes where the side has none, which is the case it exists for: a vacated path that nothing else has spoken for. The regression asserts the ordering directly, and fails without the guard. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(fork): record a rename's vacated path from the request that made it The deferred mechanism could not be made correct, as round 7 showed: its guard protected an existing row, but that row is deleted as soon as the two workspaces agree on the path — so a rename job finishing after the reconciliation inserted fresh, and the stale claim reappeared against whatever the parent later recreated there. Ordering cannot be recovered outside the row, because the row is disposable. So the vacated path is now recorded by the request, which is inside its own commit and whose row shares the counter's lifetime. A deploy that hands its metadata to a dependency job — every flow and app, and any script needing a lock — calls `tally_rename_vacated_path` once its transaction has committed; scripts reach it through the post-commit hook they already had, which grew a second variant rather than new plumbing. That lets the whole deferred apparatus go: `TallyEvidence`, the origin job arg and its round trip. `deploy_origin::current` is `Some` only inside a request scope again, and `handle_deployment_metadata` hands `renamed_from` to the tally only when it can answer for it — git-sync still gets it either way, so the rename keeps naming itself in the commit message. The vacated path's kind now reads `delete` rather than `rename_from` for these deploys, since it is probed rather than declared. The merge treats the two alike; only the row's tooltip is less specific. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(fork): cover raw-app renames, and stop firing CI before the lock exists Two things the vacated-path call broke or missed: - `create_script` reads its third return value as "no lock generation needed" to decide whether the script is runnable now, and the new `VacatedPath` variant made that true for renames that do generate. Those fired dependent CI tests from the API against a version with no lockfile, and again from the dependency job. The variant now decides it explicitly. - Raw apps rename through `update_app_raw`, a separate route into `update_app_internal`, which the new call had not been attached to. Both routes now go through one helper. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * test(fork): assert the kind only an inline rename can record `rename_from` is what a deploy says when it knows it moved the item, which only the path that reports both halves from its own request can. Nothing pinned it, and that is the side the vacated-path change touched. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: update ee-repo-ref to a45bec03922d305aad5893ed354dc029c7f97bb4 This commit updates the EE repository reference after PR #709 was merged in windmill-ee-private. Previous ee-repo-ref: 62f494b2a51de0dfc0cfa0c3530ff19a1d32667c New ee-repo-ref: a45bec03922d305aad5893ed354dc029c7f97bb4 Automated by sync-ee-ref workflow. --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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beef6e295c |
feat: azure workload identity auth for mssql and postgres resources (#10470)
* feat: azure workload identity auth for mssql and postgres resources * refactor: keep mssql config lines untouched by the auth-mode change * fix: single-flight token refresh, cache eviction and identity-aware pg cache key * fix: back off after a failed entra id refresh and normalize blank pg identity fields * fix: re-check the fallback token lifetime after a failed refresh * refactor: select workload identity with a sentinel password instead of resource fields * fix: log the workload identity mode on the postgres path too |
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0827fd285b |
chore: pin git-sync scripts to hub 28870/28871 (cli 1.777.2-gitsync.0) (#10480)
* chore: pin git-sync pull script to hub 28870 (cli 1.777.2-gitsync.0) * chore: pin git-sync deploy script to hub 28871 (cli 1.777.2-gitsync.0) |
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baefa1345b |
feat: give dbt its own editor with an explicitly refreshed model graph (#10448)
* feat: give dbt its own editor with an explicitly refreshed model graph Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: bump ee ref for the agent-worker dbt editor graph Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: scope editor graph retention by principal, carry parse context, honor nlang Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: bump ee ref Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the dbt editor's model graph and log panel mounted across tabs Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the dbt_edge to dbt_node joins on an index-usable equality Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: poll a parse until the job ends, resolve the project key, correct the docs Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: surface a slow parse's job, bound poll failures, drop banned bindable defaults Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: hide the dbt Generated UI content, not only its tab Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: honor disabled Triggers in the dbt tab fallback, record permissioned_as Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * feat: one dbt pane with the run drawn on the models, and a full-height script graph Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * feat: move the dbt build arguments behind the Build button Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: trim the dbt editor toolbar and stop the graph asserting a cause it lacks Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * feat: mark dbt as alpha in the language picker and announce it once Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: trim the dbt alpha notice Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * feat: give a selected dbt model the whole detail section, with a close that deselects Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: close the dbt detail panel by clicking away, and make its close obvious Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: cache the agent-worker dbt query, which needs the private feature to compile Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: never fall back to a settings tab the embedder disabled Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: preview dbt rows from the same project the graph was parsed from * feat: hide the script-kind selector for dbt projects * fix: pin a dbt row preview to the project its graph was parsed from * fix: pin a dbt row preview to the arguments its graph was parsed under * fix: keep dbt preview placeholders live while its vars stay pinned * fix: report a warehouse-less dbt parse's counts and flag stale preview args * fix: tell the pinned-vars case apart from a stale placeholder * chore: update ee-repo-ref to 59044635769f18f8ff5073236cfc7b5f41e917cc This commit updates the EE repository reference after PR #707 was merged in windmill-ee-private. Previous ee-repo-ref: 7e424384cdd4cef8653b55b04f17ad3f801bc50c New ee-repo-ref: 59044635769f18f8ff5073236cfc7b5f41e917cc Automated by sync-ee-ref workflow. --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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fb82748296 |
fix: make on_behalf_of control permissions for scripts and flows (#10438)
* fix: make on_behalf_of control permissions for scripts and flows Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: inherit the recorded on-behalf-of identity when a preserving deploy omits it Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep an omitted permissioned_as from re-versioning an unchanged script Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: derive the on-behalf-of principal from the email and reject mismatched pairs Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: stop workspace deploys from carrying a source-workspace principal Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: correct the onBehalfOfPermissionedAs param doc Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * test: pin that workspace deploys never carry a source-workspace principal Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: correct the omitted-principal contract and refresh generated prompts Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep external-superadmin principals on email-only redeploys Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: scope the recorded principal to its workspace and prefer real accounts Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: carry the recorded principal correctly through drafts and set-permissioned-as Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: sweep draft identity pairs on email change and offboarding Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: leave group identities alone when sweeping a user's email Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: treat only g/ without an email as a group, and match the offboard preview Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: stop the group guard from skipping rows with no recorded principal Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: state the group guard once instead of restating it Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor: make the permissioned_as the only stored on-behalf-of identity Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * perf: skip resolving the on-behalf-of address for sync clients that discard it Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: address the local review of the identity refactor Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: resolve the on-behalf-of identity coherently across clones, offboarding and no-op deploys * test: pin that a fork keeps only the on-behalf-of identities that resolve in it * fix: decide a principal prefix-first everywhere and canonicalize bare addresses * fix: prefix a slash-containing address so a reader cannot take it for a group * fix: read an address as a username before the group- convention * fix: rewrite the canonical principal when an account's address moves * fix: keep the address form of a principal to accounts without a usr row * fix: reject an identity a job row cannot carry and read it uncached at dispatch * fix: count characters against the job identity width and cap the backfill * refactor: name the script/flow principal on_behalf_of, as apps do * docs: state the caller-must-authorize contract on the identity resolvers * fix: keep writing on_behalf_of_email until every worker reads the principal * fix: err high on the compatibility version and document the last resolver * fix: keep the compatibility address current through identity mutations * fix: carry the compatibility address with the principal on every copy path * chore: re-pin the EE ref to the companion branch merged with EE main * fix: key the dbt retry lookup on the stored principal * fix: keep a mixed-version address recoverable through a fork * fix: read a round-tripped address uncached so a redeploy is not rejected * fix: refuse an email change that would make a principal unenqueueable * chore: update ee-repo-ref to ac3d7d015296f041ae44ab6bc4953485f44d36e4 This commit updates the EE repository reference after PR #704 was merged in windmill-ee-private. Previous ee-repo-ref: 219b0b03905a1a0028054b3a4985724e77d09036 New ee-repo-ref: ac3d7d015296f041ae44ab6bc4953485f44d36e4 Automated by sync-ee-ref workflow. --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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8d9c81a4da |
order script hard-delete and dbt graph publication locks consistently (#10446)
* fix: order script hard-delete and dbt graph publication locks consistently Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: clear dbt retry state after the script delete, not before Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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032300e28e |
feat: run dbt projects as a first-class Windmill runtime (#10326)
* fix: mount only the engine in the dbt jail, reject shadowed and malformed args
Review round 42.
The jail mounted the whole dbt cache directory, whose siblings of the
engine are `repos/` and `packages/` — other workspaces' private checkouts
and package trees, kept apart by cache key rather than by permissions. A
jailed project could read them. It now mounts the engine's own directory,
which the provisioner names; verified from inside the jail that `repos/`,
`packages/` and `state/` are invisible while the engine stays usable.
A `{{ placeholder }}` may no longer take the name of a run argument this
runtime defines. It was silently dropped from the signature, so a
descriptor like `value: "{{ select }}"` deployed and then could not be
run at all: the built-in `select` is an array and the interpolation needs
a scalar. Refused at parse, so the deploy says so.
A `vars` override that is not an object is refused rather than ignored.
Argument-schema validation is opt-in, so a string or an array silently
ran the descriptor's own vars — against a different schema or alias than
the caller asked for. `select` and `exclude` already refused theirs.
* feat(dbt): the project is the script's module bundle, not a git checkout
A dbt script now carries its whole dbt project as its module bundle. The
descriptor is the script content; `<script>__dbt/` holds the project verbatim,
so importing an existing project is `cp -r` plus `wmill sync push`, and the
worker materialises the bundle into the job directory instead of cloning.
Backend
- `prepare_project` writes the script's modules and requires `dbt_project.yml`
at the bundle root. `checkout`, the git-ssh command, the clone cache and the
repository resource are gone, along with `repo`, `project`, `ref` and
`git_ssh_identity` on the descriptor.
- Run identity and the package cache key take a `project_digest` (sorted SHA256
over the bundle) where the commit used to sit, so an edited project cannot
resume a previous run's `run_results.json` or reuse its `dbt_packages`.
- The per-run graph re-ingest is now gated on `vars` placeholders and `$var:`
env alone.
- `capture_dependency_job` takes the script's modules so a dependency job, which
has no generic module-writing step, materialises them itself.
- `dbt deps` caching strips the git remote from every package it cached, not
just the tree root: `packages.yml` can render a token into a `git:` URL.
- `git_clone.rs` is dropped and `ansible_executor.rs` returns to its own copy of
the clone helpers.
CLI
- `wmill sync pull` keeps a dbt script's lock beside its folder rather than
inside it, so the folder holds nothing but the project.
- Directories dbt generates (`target-path`, `packages-install-path`,
`clean-targets` and the usual defaults, read from `dbt_project.yml`) are
excluded from the bundle, from the sync diff and from staleness hashing.
- A module-only edit now pushes its parent dbt script and is reported as a
changed module rather than passing unnoticed.
* fix: keep a script's modules in the worker's file-system cache
The first fetch of a script version reads the database and carries its
modules; every later fetch imports from the worker's cache directory, whose
`RawScript::import` hard-coded `modules: None` and whose `export` never wrote
them. A worker restart therefore started running the script without its own
files, silently — for a dbt script, without its project, which fails with
"carries no project"; for any other script with a module bundle, with the
imports missing.
`modules.json` is now written on every export and required on import, so an
entry written by an older version fails to import and is refetched rather than
serving a stripped script for as long as the directory lives.
Also derives a dbt run's `project_digest` from the bundle the run actually
carries: `handle_dbt_job` was passing `None`, which collapsed every project in
a workspace onto one digest and let `dbt retry` resume a different project's
`run_results.json`.
* fix(dbt): give every phase the script's environment, bound the cache copies
`dbt deps` ran without the script's environment variables on an unsandboxed
worker, so a `packages.yml` resolving a private package URL through
`env_var()` could not see them while the package cache key was still built on
their digest. `with_invocation_env`, applied at three of the four call sites,
is folded into `dbt_command` so no phase can be added without it, and
`DBT_TARGET_PATH` is set after both environments rather than before.
The package cache copies ran through a bare `Command::output()`: the tree is
the project's, so a cancelled or timed-out job held its worker slot until `cp`
finished. Both the restore and the publish now run under the job poller like
every other phase.
* fix(dbt): only offer commands whose writes match the graph, honour packages-install-path
`dbt_command: run` is dropped from the allowed overrides. Asset dispatch fires a
script's deploy-time writes on any successful job, and `dbt run` covers models
only, so a project with seeds or snapshots notified consumers of relations the
invocation left stale. That is the same reason `test` was already excluded.
Narrowing what a run touches is `select`/`exclude`, which scope the graph too.
`dbt deps` writes to the project's `packages-install-path`, so a project that
moved it got no package cache at all: the publish found nothing at
`dbt_packages` and every job resolved its dependencies over the network again.
The path is read from `dbt_project.yml` and validated as project-relative,
since both cache copies are rooted at it.
Also states the sidecar's mutator contract at the module level: the dbt manifest
tables carry no RLS and grant `windmill_user` full access, so a user-scoped
transaction is not enforcement and every caller must have verified write access
to the script itself.
CLI: a module file is now grouped with its parent script for the push. Left in
a group of its own it got its own `alreadySynced`, so a push touching several
files of one bundle deployed the script once per file; the resulting versions
raced, and the asset graph could end up describing none of them.
* fix(dbt): seed a project for browser-created scripts, refuse a no-op retry
A dbt script created in the browser only got a descriptor, and the runtime
refuses a script whose bundle has no `dbt_project.yml`, so the advertised
Create → Deploy → Run path always failed its dependency job. New dbt scripts
now start with a project that builds: pointing `profile.resource` at a
warehouse is the one edit, and growing it is `wmill sync pull` plus a local
editor, which is where dbt development happens.
`dbt retry` builds its graph from the previous run's error, fail and skipped
nodes alone, so retrying an all-green run selected nothing and wrote nothing —
and a job that succeeds having written nothing still dispatches every
deploy-time write, waking every downstream consumer for relations no one
touched. Refused, with the reason.
CLI: a configured `target-path` or `packages-install-path` may be nested
(`build/target`), and `clean-targets` has a block form as well as an inline
one. Both are now parsed, and the exclusion compares the project-relative path
rather than the top-level segment, so a nested generated tree no longer lands
in the bundle and no longer makes a local `dbt run` look like a project change.
* fix(dbt): lock a project once, find the parent on either path separator
A dbt script's modules are its dbt project, not helper code with dependencies
of its own, so the generic per-module lock loop is skipped for it: the parent
lock already ran `dbt deps` and `dbt parse` over the whole project. Locking
each file separately re-materialised the bundle and re-invoked dbt once per
file, so a project of N files paid N project-sized passes and a large one timed
the deploy out. The 13-file fixture went from 14 relock passes to 1.
`pushParentScriptForModule` searched the raw path for `__dbt/`, so on Windows,
where the folder is spelled `__dbt\`, a module-only edit returned without
deploying its parent while the caller still recorded the file as synced. It now
goes through `getScriptBasePathFromModulePath`, which normalizes separators.
Also drops the last of the external-repository wording from the descriptor's
module docs and from the `codebase` rejection a user can hit.
* feat(dbt): infer the run form locally, keep test-only retries from cascading
`windmill-parser-wasm-yaml` 1.770.0 carries `parse_dbt`, so the browser and the
CLI derive a dbt script's run arguments from its descriptor instead of waiting
for the deploy to hand back a schema. Pins bumped in both.
`generate-metadata` was rewriting a dbt script's `lock` field on every run: a
dbt lock comes from the dependency job on a worker, so nothing generates it
locally and the resolved `!inline` reference was left inlined into the metadata
or blanked. It is restored instead, and a push straight after
`generate-metadata` is a no-op again.
A retry now needs a failed node that materialises something. `dbt retry` builds
its graph from error, fail and skipped nodes, and with `test_behavior:
after_all` a failing test is what `run_results.json` ends up describing — so the
retry reran tests, wrote nothing, succeeded, and still dispatched every
deploy-time write.
The dbt badge's destination is deterministic: writers outrank readers, and among
several writers of one relation (which the backend permits) the smallest id
wins, rather than whichever write edge arrived last.
* feat(dbt): browse the project and read a run's per-node result
Two views a dbt user expects and that the generic script surfaces do not give.
**The project.** A dbt script's editor gains a Project tab beside its
descriptor: the module bundle as the tree dbt itself expects, each file
read-only with syntax highlighting. The existing module tab strip is a flat row
built for a couple of helper files and does not survive a real project; a
13-file fixture already overflows it. Directories sort before files so it reads
like the checkout on disk, and an empty bundle explains the `cp -r` instead of
showing a blank pane.
**The run.** `DisplayResult` renders a dbt invocation's per-node breakdown above
the raw payload: totals, then a table of node, kind, target relation, rows and
time, with failures and warnings sorted first and carrying their message. The
data was already structured; it was being shown as JSON to scroll and PASS/WARN
counts to find in the log. On a failed run the same JSON rides in the error
message after the exit-status line, so it is parsed back out — that is the case
worth rendering, since the failing node is what the user came for.
* docs(dbt): say that profile.resource is what buys the asset graph
The starter descriptor described `profile.resource` as the thing rendered into
profiles.yml, with the project's own file as an equal alternative. It is not
equal: the resource PATH is the warehouse's identity in the asset graph, so a
project bringing its own profiles.yml runs fine and silently gets no assets, no
lineage and no cascade. The deploy already says so in its log; now the
descriptor a user starts from says it too, before they choose.
* fix(dbt): authorize a resource used only for asset identity, clean up after failed installs
A descriptor setting both `profile.profiles_yml` and `profile.resource` took
its connection from the project's file but returned the resource path as the
graph's warehouse identity without ever reading it. A script editor could
therefore publish `table://<any resource>/...` writes, and wake that
warehouse's subscribers, while connecting somewhere else. The resource is now
read on that path too — reading is what authorizes it — so the combination
keeps working for the case that wants it (keep your own profiles.yml, still get
lineage) and fails closed otherwise.
Provisioning cleaned up its staging directory only on the paths someone
remembered, so a run of failed or cancelled first-use installs accumulated
venvs, tarballs and installer scripts until the worker's disk was gone. All
three engines now hold their scratch paths in a guard that removes them on
drop, which is the one exit every path takes, cancellation included.
Frontend: `partial success` is dbt's word for a node that built but whose tests
failed, counted in `totals.error` and redone by a retry, so it ranks with the
failures instead of rendering green with its message hidden. And the run panel
now keys off the worker's engine discriminator rather than `{nodes, totals}`,
which is a shape an ordinary script can return. Both pinned by unit tests on
the extracted `parseDbtRun` helpers.
* feat(dbt): show a run's models on the run page
The run page is where you land on a running job, and until now it showed a dbt
run as streaming text: the per-node table only renders once the job has
produced a result, and the graph that moves per model lived on the pipeline
page you had to navigate to. A Models section now sits above the result,
scoped to the running script's own relations and its `ref()` lineage, polling
while the job is in flight so nodes move as dbt walks the DAG.
No `resolveGraph`: that merges drafts and live editor buffers into the
persisted graph, and a run page has neither.
* feat(dbt): retry failed nodes automatically, and from any worker
**Node-level retry, in the job.** `retry_failed_nodes: {attempts, delay_seconds}`
rebuilds only what a failed build left failed or skipped, before the job reports
failure. dbt confines a failure to its own subtree and `dbt retry` resumes
exactly that set, so a transient warehouse error costs those nodes rather than
the project. Doing it in-job is what keeps the state question out of it: the
previous attempt's `run_results.json` is still in the job directory, so there is
nothing to persist and no worker to land back on. This is the granularity
astronomer-cosmos gets from one Airflow task per model, without the ~6x that
per-model tasks measured.
A retry's `run_results.json` names only the nodes it redid, so it overlays the
accumulated results rather than replacing them: the job's result has to be every
node the job touched, or the nodes that succeeded before the retry settle no
materializations. Pinned by a test.
**Durable retry state.** `run_results.json` is now saved to `dbt_run_state` as
well as the worker's local cache, so an explicit `dbt_command: retry` works from
any worker of the group rather than only the one that failed. Only the results
are stored: `dbt retry` also needs `manifest.json`, roughly sixty times larger
and growing with the project (732 KB against 12 KB on the six-node fixture), but
the manifest is a pure function of the project files, vars and env, all of which
the stored identity already pins, so a worker restoring from the database
re-derives it with a `dbt parse` of about a second.
* fix(dbt): restore the sqlx cache, make retries cancellable and path-aware
**SQLx cache.** A `cargo sqlx prepare` deleted 750 entries, including the
enterprise queries CI needs under `SQLX_OFFLINE=true`, and the check that was
supposed to catch it reported zero losses because it was run from `backend/`
with a `backend/`-prefixed path, so its baseline was empty and it failed open.
All 750 are restored; the branch now adds 19 and deletes none, and
`SQLX_OFFLINE=true cargo check` passes.
**Retry backoff observes cancellation.** `canceled_by` is only written by the
job poller, which does not run between attempts, so re-reading it reported the
state as of the failed attempt and missed every cancel issued during the wait
— the whole window the check exists to cover. The wait now reads
`v2_job_queue.canceled_by` each second, and the job's deadline is honoured
before starting another dbt process.
**Retry state follows its script.** `dbt_run_state` is path-keyed like the
manifest sidecar but, unlike it, nothing regenerates it: a rename moves the row
so a resumable failure survives, while archive and delete clear it, so a script
later created at that path cannot inherit a stranger's failure and its
arguments.
**CLI.** `table` joins ducklake and s3object in the local graph's auto-trigger
kinds, matching `is_auto_trigger_kind` and the frontend's set; without it a
local graph and the generated docs omitted a cascade edge the deploy has.
* fix(dbt): carry only the project files a bundle can hold, and say what it drops
Exploring real and edge-case projects surfaced three frictions, all in the
import path a user hits first.
**A binary file broke the push, opaquely.** dbt projects carry images under
`docs/`, stray `.DS_Store` files and occasionally a parquet seed. Read as text
they become mojibake, and a NUL among them is rejected by Postgres with
`unsupported Unicode escape sequence` — which `wmill sync push` then reported as
success, exiting 0 with the script never created. Binary files are now detected
the way `git` detects them, by a NUL in the first 8000 bytes rather than by
extension, and skipped with the reason.
**The size guard the docs promised did not exist.** Now it does: 5 MB per file,
which only ever catches a committed dataset. Real dbt code is about 500 bytes
median and 1.9 KB at p90.
**Skipped files became a permanent phantom diff.** The push dropped them while
the sync diff still offered them, so every push reported changes no push could
resolve. One predicate now answers for the push, the staleness hash and the
diff.
Verified on a project with unicode filenames and content, CRLF endings, an
empty model, an ephemeral model, a disabled model, a `.md` docs block, an
extensionless README, six levels of nesting, a 7.6 MB seed and a PNG: it
pushes, round-trips byte-for-byte through pull, deploys to 7 dbt nodes and 6
`table://` assets (ephemeral and disabled correctly absent), and runs green.
* fix(dbt): resolve dbt-core against the adapter, settle partial success, unify status
**Adapters could not be provisioned.** The 1.x engine pinned `dbt-core` to a
fixed version independent of the adapter, but several adapters cap below it:
`dbt-mysql` at `~=1.7`, `dbt-oracle` and `dbt-databricks` below 1.12, and
`dbt-salesforce` has no package at all (it exists only inside Fusion). Those
projects failed at provisioning with a uv resolver dump. The install now asks
for a range and lets the adapter choose, and records what the resolver picked so
the lock pins a version that adapter can take.
The floor is the CLI this runtime invokes: resolving down to dbt-core 1.7
produced a working venv that then failed with `No such option '--target'`, which
is worse than not resolving. An adapter with no release in range now fails
naming itself and pointing at `dbt-core-2x` or `fusion`, instead of a resolver
dump. Salesforce is refused up front with the reason.
**`partial success` left a model stuck on `Running`.** It is dbt's word for a
node that built and then failed its tests, and it was already treated as a
failure when counting totals and deciding a retry — but the two sites that
settle the RELATION fell through to "says nothing", so the tailer's `Running`
was never replaced and a finished job showed a model still building. Six status
comparisons had drifted apart, two folding case and four not, while dbt-core 1.x
echoes the author's casing and 2.x uppercases; they are now one classifier.
**Agent workers.** The durable retry state and the cancellation poll both need a
database, which an agent worker reaches only through the API. The automatic node
retry is refused there rather than running a wait it could not interrupt, and
the docs say "any worker with a database connection" instead of overclaiming.
Also clears `dbt_run_state` when a path stops being a dbt script, and moves
`run_identity`'s contract onto `run_identity` from the digest helper below it.
* feat(dbt): show the transform behind a model on the run graph
The run page's graph carried a node for the script itself and drew every
relation as a bare table. Both were wrong for that page: the graph there is
already scoped to one script, so a node standing for it distinguishes nothing
(on the pipeline page it separates one project from another, which is why it
exists), and dbt's own DAG node is the model — the SQL and the relation it
writes are one thing, so a graph of relations alone leaves out what a reader
came to see.
The script node is dropped, and selecting a model now shows its SQL underneath
the canvas with its file path and materialization, read-only, the same view the
pipeline details pane gives.
* feat(dbt): move the graph with the run
The worker has always recorded a state per relation as dbt walks the DAG —
`running` when a model starts, `materialized` or `failed` when it ends — but
nothing rendered it: the graph response carries what a relation IS, not what a
particular run is doing to it, so the canvas had nothing to show and a running
job looked identical to a finished one.
`assets/run_progress/{job_id}` returns that state for one job, the run page
polls it beside the graph, and the asset node carries a spinner or its outcome.
Errors and retries need nothing extra: a failed node writes `failed`, and an
in-job retry rewrites the same row, so the node returns to `running` and on to
its new outcome by itself.
`materialized_partition` holds a relation's CURRENT state keyed by relation, so
filtering on `job_id` returns exactly what this run last touched — which is the
question a run page asks, and why a superseded older run shows nothing.
* feat(dbt): a dbt project is not a data pipeline
Deploying a dbt script marked it `auto_kind = 'pipeline'`, which enrolled it
in pipeline membership: the folder became a Pipeline entry on the home page,
the script folded into it, and `/pipeline/<folder>` opened a canvas holding
the project's whole model DAG next to the pipeline's own scripts. A folder
holding both then read as two projects in one editor, and the pipeline editor
offered to author transforms that are in fact authored in a local `dbt run`
loop and pushed as the script's bundle.
A dbt script is now never a pipeline member, and the pipeline canvas drops the
dbt script node. Its models stay, with their `ref()` lineage: the relations are
what a downstream pipeline script reads, and dropping them would break the
cascade from a dbt run — the point of giving dbt models `table://` identity.
Also drops a screenshot committed to this branch by accident.
* fix(dbt): authorize run_progress through the job, drop dbt from the local graph
`run_progress` read `materialized_partition` through `user_db` on the
assumption that RLS would scope the rows. That table has RLS disabled and no
policies, so any workspace member could pass a job id and read that run's
relation paths, row counts and error text. It now joins `v2_job`, which does
carry per-user policies, so a caller who cannot see the job sees nothing —
the same pattern `v2_job_completed` reads need. Verified as a plain member:
the old query returned 6 rows for another user's run, the new one returns 0,
while the job's owner still sees all 6.
The CLI's local graph still forced `in_pipeline` on every dbt script, so
`pipeline docs --local` and `pipeline dev` kept presenting a dbt project as a
pipeline the deploy no longer enrolls. It now skips them, matching the server.
A dbt descriptor has no asset parser locally, so nothing is lost: its models
come from the manifest the deploy derives.
Declares `run_progress` in openapi.yaml so the frontend uses the generated
client instead of a handwritten fetch; the generated `status` union also
replaces a hand-rolled string mapping.
* fix(dbt): drop the dbt node from the CLI's deployed pipeline views too
`pipeline dev` and `pipeline docs` (without `--local`) read `/assets/graph`
directly. That endpoint is asset-usage driven rather than membership driven, so
it returns a dbt script like any producer — and both commands render every
runnable, so a dbt project still showed up as a pipeline script there after the
local builder stopped emitting one.
`hideDbtRunnables` mirrors the frontend's projection of the same payload. It is
generic over the graph shape so the bounded-cascade view (`BCGraph`, a narrower
type over identical JSON) passes through without a cast.
The relations stay: they are what a downstream pipeline script reads, and the
node is what attributes them to a producer for every other consumer of the
endpoint, so the filter belongs in the views rather than the query.
* fix(dbt): narrow a selective run's cascade, settle the finished run graph
Review-round fixes.
A `select`/`exclude` run builds part of the project, but asset dispatch reads
the deploy-time write set for the whole script, so a run selecting one model
woke the subscribers of every other. Dispatch now intersects that set with the
relations the run actually recorded as materialized, scoped to dbt because it is
the only producer whose write set is decided per run. A run that recorded
nothing still dispatches everything, so an agent worker whose reconciliation
failed cascades as before. Verified both ways: `select: [extra_model]` no longer
wakes the `fct_orders` subscriber, and a full run still does.
`hideDbtRunnables` keyed its removal set on path alone while the graph keys
runnables by `(usage_kind, path)`, so a flow sharing a path with a dbt script
lost its node, edges and triggers too. Both copies now key on the pair.
The run graph never took a final reading when a job finished, so the last state
shown was whatever the tick before completion saw. Only `dbt-core-1x` streams
node events; the other engines record every relation during end-of-run
reconciliation, so their finished graph showed nothing until a reload.
`DbtNodeOutcome::Inconclusive` collapsed statuses the tally has to tell apart,
so two sites re-lowercased the status beside the classifier and `no-op` landed
in `totals.error` — a clean run reporting an error in its own result. Split into
Warn / Skipped / NoOp / Unknown so every site falls out of one match; `no-op` is
kept out of the retry set, which dbt spells as error / fail / skipped.
Also: reattach two doc comments to the items they describe, and correct the
engine-distribution table — only dbt-core-2x is baked into the images, 1.x is a
per-adapter venv provisioned on first use, and the default is compiled in rather
than an instance setting.
* fix(dbt): make the model chip inert where its project node is not on the graph
The canvas passed `onDbtSelect` unconditionally, so the chip always rendered
`cursor-pointer` and hover-highlighted — but the owner map is empty on both
graphs this feature added, since the run page carries no runnables and the
pipeline page hides the dbt node. The chip advertised a click that resolved to
nothing. It now takes its handlers only when the relation has an owner on this
graph, so it stays live on the surfaces that do show the project node.
`classify_status` and `DbtNodeOutcome` were `pub` in a private module with no
caller outside the file, unlike every neighbour.
* fix(dbt): take the cascade's write set from the run's own result
The previous narrowing read `materialized_partition`, which was wrong twice.
That table keeps one row per relation and the newest writer takes `job_id`, so
two overlapping runs over the same model erase each other's claim to it: the
earlier job would dispatch a subset of what it built, or none of it.
And an empty row set was read as "recording failed, dispatch everything" when it
is also a real answer. A `select` matching no model, or one resolving to tests
only, exits 0 having built nothing — and then woke every consumer of every model
in the project, which is the opposite of what the narrowing exists to do and is
reachable by a typo in a run argument.
The run now reports the relations it materialized in its own result, which is
immutable and per job. Absent means the producer said nothing (a job from before
the field, a non-dbt producer) and the whole deploy-time set dispatches as
before; present-and-empty means it built nothing and dispatches nothing.
Verified on all three: an unmatched selector builds nothing and wakes nobody, a
selector naming one unsubscribed model wakes nobody, and a full run wakes the
subscriber.
Also indexes `materialized_partition (workspace_id, job_id)` -- the run page
polls that shape every 2s and no existing index leads with `job_id` -- corrects
the selective-cascade section of the design doc, which still described the old
deploy-time behavior, and reattaches `buildLocalPipelineGraph`'s doc comment.
* docs(dbt): attach the CLI JSDoc to its function, correct the index rationale
The `hideDbtRunnables` JSDoc ended up documenting the type declared beneath it —
made while fixing the same mistake one function down.
The migration's comment credited the cascade with a `job_id` lookup that the
same commit replaced with a read of the job's own result. The run page's poll is
the only reader keyed on that column.
* fix(dbt): refuse graph publication for a removed script, allow test-only retries
An archived or hard-deleted script could still republish its graph: the
publication guard filtered `deleted` but not `archived`, and treated a missing
row as "nothing newer exists" rather than "nothing left to publish for". A
dependency job or dynamic run finishing after the removal put the asset,
provenance and subscription rows back with nothing left to clear them.
`dbt_command: retry` refused a run whose only failures were tests, which is
precisely what `test_behavior: after_all` produces. That restriction existed
because a successful job dispatched its whole deploy-time write set, so a
test-only retry would have woken every consumer for relations no one touched —
the cascade now dispatches what the run reports materializing, so it wakes
nobody and the restriction only blocked a legitimate retry.
* fix(dbt): gate run progress behind the job-read check, not RLS alone
The endpoint joined `v2_job` so RLS would decide visibility, which it does — but
`require_job_read_access` adds two things RLS does not: a scoped token's
`if_jobs:filter_tags` restriction, and the app-embed cutoff that stops untrusted
app JS from inheriting the viewer's broader job access. A scoped or embed token
could therefore read relation names, statuses, row counts and errors for jobs
the ordinary job endpoints deny it.
That helper is private to `windmill-api`, which depends on `windmill-api-assets`
rather than the reverse, so the endpoint moves to the job routes instead of the
check being duplicated. It is job-scoped anyway:
`/w/{ws}/assets/run_progress/{job_id}` becomes
`/w/{ws}/jobs/run_progress/{id}`, and the frontend follows the generated client.
* feat(dbt): a dbt run does not trigger downstream runs
dbt orders its own DAG, so a cascade only ever adds one thing: waking a Windmill
script that reads a mart. That edge is narrow, and only half of it can even be
expressed — nothing outside dbt can declare a `table://` write, since
`// materialize` accepts DuckLake targets only, so an ingestion script cannot
wake a dbt project.
Against that, dispatching correctly is not cheap. A run's `select` can build any
subset of the project, so the deploy-time write set is not what ran; using it
wakes consumers of relations the run never touched, and narrowing it needs a
per-job record of what was built. The per-relation state table cannot supply one
(it keeps a single row per relation stamped with the last writer), and the
result field added for it made a run's own output carry the cascade's bookkeeping.
So `asset_dispatch` returns early for `ScriptLang::Dbt`, before the producer
gate. dbt still materializes, records per-model state and publishes its graph:
models, `ref()` lineage and live run progress are unchanged, and a
`# on table://<mart>` reader still renders beside the model it reads. It simply
does not fire. Wiring it up later means deciding what a selective run should
notify, which is the actual work.
Verified: a full run of a 6-model project succeeds and starts nothing, where it
previously triggered its subscriber; the run page still reports all 6 relations
and the folder graph still carries 14 tables and 8 ref() edges.
* fix(dbt): remove the cascade surface, settle stranded models, fix nested __mod
Stopping dispatch left its surface behind. `table://` was still an auto-trigger
kind, `persist_ingest` still derived subscriptions from a manifest's reads, and
the deploy still accepted `# on table://` — so the canvas drew cascade arrows
into scripts nothing could wake. All three are gone: the kind no longer derives,
the ingest only deletes rows earlier versions wrote, and the deploy refuses the
annotation with a message saying why rather than persisting a silent no-op.
`DescriptorTriggers` went with them; every field it parsed was cascade config.
A model marked `running` by the live tailer was never settled when the run did
not finish: reconciliation only revisits nodes `run_results.json` names, and a
cancelled or timed-out run has none for the model in flight, so the finished job
showed a relation building forever. It is now settled on every exit path.
Verified by cancelling a run mid-flight: 3 models `running` before, 3 `failed`
after, none stranded.
`getScriptBasePathFromModulePath` took the first matching suffix rather than the
outermost boundary, so `proj__dbt/models/legacy__mod/a.sql` resolved to
`proj__dbt/models/legacy`. dbt owns its directory names verbatim, so a folder
ending `__mod` is legal inside a project, and a module-only sync would have
looked for a descriptor that is not there and skipped the deploy.
* fix(dbt): colour a finished run's models from its own result
`materialized_partition` keeps one row per relation stamped with whichever job
wrote it last, so reopening a run showed only the models no later run had
touched since — down to none for an old run, which reads as a broken page rather
than as stale data. Reproduced: a 6-model run reported 6 relations, then a second
run rebuilt one shared model and the first reported 5.
A finished run already carries the answer. Its result lists every node with a
status, and the graph carries each asset's dbt `unique_id`, so the two join
directly — no path derivation, nothing stored twice, and nothing a later run can
overwrite. The endpoint stays for the live window, where the result does not
exist yet, and as the fallback for a run that never produced one (cancelled or
killed, whose relations the worker settles in the table instead).
`relationOutcome` mirrors the worker's `classify_status` so the colour drawn over
a record agrees with the record: `warn`, `skipped` and `no-op` leave the relation
untouched and stay uncoloured, as do tests and analyses, which match no asset.
Verified in the browser on the run whose model had been stolen: all six
relations green again, both sources correctly uncoloured.
* docs(dbt): record why only dbt-core 1.x has live per-model progress
`emits_node_events()` reads as "the Rust engines produce no node events", which
is false and would close off the option. They produce exactly the same events;
they put them on the console and ignore `--log-format-file json`, which both
accept. Measured on 2.0.0-alpha.5 and fusion 2.0.0-preview.202: 15 node events
each on stdout, 0 in the file log, for a three-model project.
Taking them means owning the job log's presentation to work around a flag that
is documented and simply unimplemented, so the note records the measurement, the
sample event, and that flipping the predicate is the whole change once either
engine honours it.
* fix(dbt): give HighlightCode a dialect-agnostic sql language
`npm run check` had three errors the fast check does not reach: `"sql"` is not a
value `HighlightCode` accepts. Every SQL dialect it knows maps to one grammar,
but a dbt model is compiled by whichever adapter the project targets, so naming
a dialect would be a guess — `sql` is now a value in its own right.
`langOf` was typed `string` and returned `markdown`, `python` and `text`, none
of which the component accepts either, so a dbt project's YAML and Python files
rendered unhighlighted. It now returns the component's own prop type, which is
what caught them, and `undefined` for what has no grammar rather than a name
that silently means the same thing.
Verified in the project panel: SQL 22 tokens, YAML 27, where YAML was plain.
* fix(dbt): stop failing no-op models, drop table triggers client-side, keep cross-selection edges
The sweep that settles a run's stranded relations was marking `no-op`, `warn`
and `skipped` models FAILED on successful runs: reconciliation reports those
nodes without settling their record, so they were indistinguishable from a model
the run never reached. It now excludes every relation the run accounted for, so
only the genuinely abandoned ones are settled.
`table` was removed from the backend's auto-trigger kinds but left in both
client mirrors, so the editor and `pipeline dev`/`docs` kept drawing cascade
arrows the deploy will not create.
`isModuleEntryPoint` scanned for the first `__mod/`, the same bug its sibling
just had: a `legacy__mod/script.ts` nested in a dbt project — dbt owns those
names verbatim — read as that script's entry point. Both now anchor on the
outermost boundary.
A script selecting a model whose parent another script builds dropped the parent
entirely, so no `dbt_edge` could reach it and the two relations sat on the graph
unconnected. The parent is now kept as an endpoint and recorded as a READ, since
this script does not build it — splitting a project across selections only
composes if the seam still draws.
* fix(dbt): don't double-run after-all tests, count only models a script builds
An `after_all` run whose test phase failed saves a `run_results.json` holding
tests alone. Retrying it reran exactly those tests — and then the test phase ran
the whole suite again, appending a second copy of every result: duplicate ids in
the run table, doubled totals. A retry whose saved results are tests alone IS
the test phase, so the suite is not run after it, and the two phases now merge
by node id rather than concatenating.
Keeping a selection's unselected parents as nodes made them count toward the
`×N` badge, whose tooltip says "materializes N models" — a script selecting one
mart claimed the staging models upstream of it, and the number grew with the
seam. The count now comes from the relations the script writes.
That change also made the cross-selection read block dead, with a comment
asserting the inverse of what now happens; it is removed, and the test that
covered it still passes on the new arm. The test I added landed between a
neighbouring test's comment and its `#[test]`, orphaning the attribute so that
test stopped running.
Two display fixes: the run page no longer shows a relation's SQL when the
provenance belongs to another project that materializes the same relation, and
the editor no longer draws an explicit `# on table://` arrow the deploy refuses.
The starter descriptor no longer promises the removed cascade.
* fix(dbt): clear untouched models, reject unknown descriptor fields
A `no-op` model was left `running` forever on a successful run. The previous
attempt at this stopped the sweep marking such models FAILED but gave them no
terminal state instead, so they simply never settled. Reconciliation now returns
what it settled and what the run reported but did not build, and the two get
opposite treatment: a relation the run left untouched has its row DELETED, which
is what the finished run's own result says about it (`relationOutcome` colours a
`no-op` nothing), so the live and settled views agree; only a relation the run
never reached at all is failed.
The descriptor accepted unknown fields, so `selcet:` was ignored and left an
empty selection — building the whole project — and a misspelled `target` fell
back to the profile's default. It rejects them now. That immediately caught two
of our own test fixtures still passing `repo:`, a field removed with the git
path, which is exactly the class of mistake it exists to stop.
`isDbtModulePath` matched `__dbt/` anywhere in a path, the third site with that
bug: `foo__mod/vendor/x__dbt/a.ts` read as a dbt project file, and the push then
looked for `foo.script.yaml` and could skip the edit.
A verbatim dbt bundle dropped any file named `*.lock` before it reached the
module map, so an authored `uv.lock` never deployed and the unmodified-project
round trip quietly lost it. The exclusion now applies only to `__mod` bundles,
where `.lock` really is the script's own lockfile — in the walker that hashes
modules too, or a change to such a file would not register as one.
Also: `langOf` fell back to `undefined`, which HighlightCode resolves to
TypeScript rather than to no highlighting, so seeds and Markdown were coloured
as code; and four comments still gave the removed cascade as the reason for
sharing an asset node, which is now lineage.
* fix(dbt): retry failed tests too, anchor the last __dbt path check
`retry_failed_nodes` only ran after the model phase, which fails before the
`after_all` test phase exists — so a project whose models built and whose tests
failed got no retry at all, exempting exactly the failure mode that separate
phase produces. The loop is now a function, called after both phases.
`isDbtGeneratedPath` matched `__dbt/` anywhere, the fourth site with that bug:
`foo__mod/vendor/x__dbt/target/a.ts` counted as generated dbt output, so
`ignoreF` excluded an ordinary module file and a module-only edit never deployed
its parent script.
`wmill sync push` still dropped an ADDED or DELETED `.lock` three branches
before the module arm, so the earlier fix only covered a first push: adding a
`uv.lock` to a deployed project was reported as a change forever and never
applied, and deleting one left it deployed. Editing worked, which is what made
the round trip look whole.
Also removes a duplicate `#[test]` that was double-registering a test and
detaching its neighbour's comment, and rewrites seven comments that still gave
the cascade as the reason for behaviour that now serves lineage only.
* fix(dbt): bound the excluded-file read, keep the retry budget job-wide
`isBundledModuleFile` read a file in full before deciding it was too big or
binary, so a project sitting next to a multi-gigabyte parquet seed loaded the
whole thing only to reject it. It now takes the size from `stat` and reads at
most the 8 KB the NUL check needs: a 191 MB file is rejected in 0.0ms at 82 MB
RSS.
Calling the retry helper after both phases gave each its own `attempts` budget,
so a job could spend double what the descriptor asked for — the bound exists
because every attempt is a real dbt invocation holding a worker slot. The budget
is now the job's, spent across whichever phases fail, and the field says so.
Extracting that helper had also placed it between `#[allow(clippy::
too_many_arguments)]` and `run_dbt`, taking the attribute off the 12-argument
function it was written for.
* fix(dbt): actually spend the retry budget
`retry_failed_nodes` looped on `while *remaining > 0` and never decremented it,
so a failing job reissued `dbt retry` — logging "attempt 1 of 3" each time —
until the job's deadline instead of `attempts` times. The decrement existed
briefly and was lost when the function was re-extracted by hand.
Claiming and counting are now one operation, `claim_attempt`, because keeping
them apart is exactly how the bound goes missing: the loop cannot iterate
without spending the budget.
Its test is bounded by its own `for` rather than by the function under test. An
earlier version collected `std::iter::from_fn(|| claim_attempt(..))`, which
against a non-spending `claim_attempt` is an infinite iterator — it allocated
until the machine died. A test for a loop bound must fail an assertion when the
bound regresses, not consume the host: it now reports `[1, 1, 1, …]` against
`[1, 2, 3]` in 0.00s.
* fix(dbt): ask before reading, not after
Bounding `isBundledModuleFile` did nothing for the bundle builder, which read
the whole file into memory and only then asked whether to keep it — so a
multi-gigabyte seed beside a project was still loaded in full just to be
skipped. The predicate is now consulted first, and the read happens only for
files the bundle actually carries.
* feat(dbt): animate the ref() edges feeding the model being built
The nodes moved during a run but the edges did not, so the graph showed where
dbt had got to without showing it flowing there.
Reuses the canvas's existing rule rather than adding a second one: an edge
animates when it touches what is happening. For a pipeline that is the running
script; for dbt the unit of work is the model, so a `ref()` edge animates while
its target builds. Same `animated` field, same visual language, no new styling.
Verified mid-run on a 7-model project: of six `ref()` edges only the two feeding
the model then building were animated, and none once the job finished.
* feat(dbt): show what each model wrote, and say when its SQL is another project's
Three things a reader wanted from the run graph and could not get.
Row counts: the worker already records one per relation and `run_progress`
already returned it, but the graph used only `status` and dropped the number. A
model that built green having emitted zero rows is the failure that looks like a
success, so the count is on the node.
The relation's fully-qualified name, copyable: there is no table browser to open,
so the next best affordance is the exact identifier to paste into a SQL client.
It is parsed with `splitRelation`, which honours quoting the way the worker's
`split_relation` does — splitting on every period renders
`"wh"."analytics.v2"."orders"` as a relation `orders` in a schema `v2`, which
does not exist.
And when two projects materialize one relation, the graph keeps a single
provenance winner, so the losing project's node carries the other's model. The
SQL was already suppressed there — correctly, it is not this run's code — but
silently, which reads as a dead click. It now says so.
* fix(dbt): a finished run's graph is the models it built, not today's project
`/assets/graph` is the current deploy, so an old run's graph drifted with the
project: a model added after it appeared as though the run had built it, and the
older the run the wronger the picture. A finished run's node set now comes from
its own result, which named exactly what it touched.
Sources survive the filter regardless — dbt never lists them in
`run_results.json` because it does not build them, but they are the upstream the
run read, and dropping them would leave the models hanging.
The graph is still the current deploy's, so a model renamed or deleted since
cannot be drawn at all. Rather than a silently shorter graph, the count is
stated above it.
Verified by adding a model after a run: the old run renders 7 models without it,
a fresh run renders 8 with it.
* feat(dbt): preview a model's rows with `dbt show`
There was no way to see the data behind a node — only its SQL and its row count.
`dbt show` selects from a model and returns rows, and every engine ships it, so
the preview needs no adapter code of ours: no connection path, no dialect-correct
quoting, no type coercion for ten warehouses. It runs against the profile the
run already renders.
It is a `dbt_command` rather than a new endpoint, so it inherits the whole job
path — authorization, isolation, cancellation, logs, engine provisioning — and
`limit` joins the run form beside it. That the allowlist can admit it at all is a
consequence of dropping the cascade: while a successful job dispatched its
deploy-time write set, a command that wrote nothing woke every consumer for
relations nothing had touched.
Read-only, and treated as such: no graph republish, no materialization records,
no retry state, no test phase. Captured rather than streamed, like `dbt ls` —
these rows are the result, not commentary, and the job-log writer is what
`NO_LOGS_AT_ALL` discards.
Verified: `{"dbt_command":"show","select":["stg_customers"],"limit":3}` returns
three rows; a preview leaves `materialized_partition` untouched (62 → 62, 0 rows
for the job); `clean` is still refused by the allowlist.
* feat(dbt): preview a model's rows from the graph, and keep our locks out of dbt projects
The run page could show a model's SQL and how many rows it wrote, but not the
data. Selecting a model now offers "Preview rows", which runs the script with
`dbt_command: show` and renders the result as a table.
Explicit rather than on-select: a preview is a job, so it costs a worker slot
and the engine's start-up, and previewing on every click would spend both on
mere navigation. Sources are excluded — dbt shows what a model SELECTs, and a
source is not one.
Also: `updateModuleLocks` was the one module helper that never learned about
verbatim bundles, so it walked a dbt project writing `foo.lock` beside `foo.sql`.
None of those files is a Windmill script needing a lockfile, and the bundle
promises to round-trip the project byte-for-byte — our artifacts have no business
in it.
Verified in the browser: selecting `stg_customers` and previewing returns the
columns `id`/`src` and five rows from the warehouse.
* fix(dbt): keep a run's models when another project owns their provenance
Scoping a finished run's graph to the ids it named dropped relations whose
provenance winner belongs to a different project — so a run of a project sharing
a schema showed 3 of the 6 models it had built. An id that was never this run's
package cannot be judged against its result, so it is kept: the relation IS one
the run wrote, and hiding it understates the run. The same rule applies to the
"no longer in the project" count, which otherwise reported deletions that were
only provenance collisions.
Previews are now cached per model and survive the selection moving. One was
thrown away whenever the reader clicked elsewhere, which for a job costing a
worker slot and an engine start-up meant re-running it to see it again — and the
run continues in the background, so leaving and returning finds the rows there.
The spinner also never span: `startIcon` takes the icon and its classes
separately, so the animation has to be passed alongside.
How long it took is shown with the rows. A preview is a job, and its cost should
not be something the reader has to guess at.
* fix(dbt): resolve argument references, clamp the show limit, flag renamed relations
`handle_dbt_job` cloned `job.args` where every other executor calls
`build_args_map`, so a `$var:` / `$res:` / `$encrypted:` argument reached dbt as
the literal string. A placeholder holding a schema or an `enabled` flag would
then build a different slice of the project than the caller asked for.
`--limit` took any positive i64, and the worker buffers the whole of dbt's
stdout to read the rows out of it — so a caller with only run permission could
make it hold an unbounded allocation. It is clamped to a ceiling now, extracted
as `show_limit` so the bound is pinned by a test rather than inline in an async
function nothing can reach.
And a model keeps its id when its alias or schema changes, so an old run's node
showed today's relation while the run wrote another — the page asserting it had
materialized a table that did not exist yet. The run's result carries the
relation each node actually wrote, so the drift is detectable without a graph
snapshot, and the count is stated above the graph. Rendering the run's own
lineage still needs a per-job snapshot; this stops the page claiming otherwise.
* fix(dbt): stop persisting resolved secrets, bound the preview by bytes
Resolving `$var:` / `$res:` / `$encrypted:` for dbt — added in the previous
commit — meant `save_run_state` wrote the resolved PLAINTEXT into
`dbt_run_state.args` and the worker's `state.json`. The row outlives the job, so
a secret stayed in the database and a later `dbt_command: retry` replayed it
after the grant was revoked or the value rotated. The invocation now carries the
args as submitted alongside the resolved ones, run state persists those, and the
restore path resolves them again under whoever is retrying.
Clamping `--limit` bounded the row COUNT, not the size: one column can hold a
megabyte, so a thousand rows is a thousand megabytes, and `run_capturing`
buffers all of it. The captured output has a byte ceiling now.
`limit` became a built-in argument without joining `RESERVED_ARG_NAMES`, so a
descriptor writing `{{ limit }}` was silently handed the preview control's
default instead of being told the name is taken.
Two display fixes: the relation-drift banner compared a canonicalized (lower
case) asset path against the warehouse's own spelling, so it fired on every
model of every finished Snowflake run; and caching a preview's failure left
`Preview rows` dead for that model until reload.
* feat(dbt): key the graph by script version so a run renders its own project
The dbt graph was keyed by path alone, so a deploy overwrote the only copy and a
run page could only ever show today's project — an older run rendered today's
models, SQL and `ref()` lineage no matter what it had run. My previous attempt
filtered that view to the ids the run named, which stopped it lying but could not
show what was gone: the data no longer existed.
`dbt_node` / `dbt_edge` now carry `script_hash` in their primary key, so each
deployed version keeps its own graph, and the run page passes the version its job
recorded. Per DEPLOY, not per run — ten thousand runs of one version share one
graph — and a composite FK to `script (workspace_id, hash)` with ON DELETE
CASCADE means a version's graph dies with it. Nothing pruned these before,
because there was one copy per path; they would otherwise have accumulated with
no sweep.
Two deploys of one path now write disjoint rows, so the graph can no longer be
lost to a race. `claim_graph_publication` remains only for what is still
path-keyed — the `asset` usage rows — and an older deploy finishing late records
its own graph before declining to touch those, where before it published nothing
at all.
A pinned request is scoped by the version's own nodes rather than by `asset`:
that table describes the current deploy, so scoping through it would filter a
model out of the very run that built it.
Verified end to end: deployed v1 (8 models), ran it, deployed v2 with four models
removed and one rewritten. The old run renders 8 models, 6 ref() edges and v1's
SQL; a new run renders 4 and the v2 rewrite.
* fix(dbt): scope graph cleanup to one version, bound the preview capture
Archive and delete both act on a single `hash`, but the graph cleanup they
called deleted every row for the path. Now that the graph is keyed per
version, archiving an old version erased the live one's models, SQL and
lineage, and nothing repaired it. Both callers have the path in hand, so the
by-hash wrapper is gone and they use the version-scoped clear directly.
`dbt show` checked its 8 MB ceiling after `wait_with_output` had already
buffered everything, so the ceiling could not bound what the worker held.
`run_capturing` now reads both pipes incrementally against a caller-supplied
limit and kills the child on overflow. The read buffers are heap-allocated:
as arrays they were baked into the future, which the job poller boxes several
layers deep, and that overflowed the worker thread's stack — a `dbt show` run
aborted the whole worker process.
A retry's `dbt parse` ran on the arguments as submitted while the build ran on
resolved ones, so a `$var:` shaping the graph parsed verbatim. The parse moves
to the caller, after resolution.
A run that names its own `select`/`exclude` now drops the descriptor's
`selector`: dbt resolves `--selector` instead of `--select`, so passing both
made a preview of one model return another's rows.
Also: log instead of silently swallowing a `modules` column that fails to
deserialize (pre-existing, but for dbt it means running with no project at
all); keep the model SQL reachable once a preview has landed; render which
node the rows came from; stringify object-valued cells; document
`dbt_script_hash` in the OpenAPI spec.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* docs: record the per-worktree dev environment and the backend-run check
Three mistakes this guidance would have prevented, each of which cost a cycle:
A worktree has its own database and ports, but AGENTS.md stated the
single-checkout defaults as facts. Pointing `DATABASE_URL` at another
worktree's database makes `cargo sqlx prepare` fail on every query touching a
table your migrations added — and it deletes `.sqlx/` before it fails, so the
cache is gutted rather than merely stale. Starting a backend on the wrong port
leaves the UI up with every call 502ing, which reads as an application bug.
Both values are now discoverable with commands that work as written.
`prepare` is also documented as the wrong tool for a removal-only change: the
cache is already complete for CI, and the only residue is orphaned entries that
can be found by text-matching against the sources without a database.
Nothing told a reader that `cargo check` does not exercise a worker path. A
read buffer declared as an array inside an async block is baked into the
future, and once boxed by the job poller it overflows the worker thread's
stack — compiling and unit-testing clean while aborting the whole worker
process at runtime.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): scope the remaining path-wide reads and clears to one version
Four places still spoke for a whole path after the graph became per-version:
The relation-root drift check read `dbt_node` by path with an unordered
`LIMIT 1`, so with v1 at root A and v2 at root B it could answer with v1's
row, suppress the refresh v2 needed, and leave v2's graph naming relations the
run does not build. It now reads this job's version.
`dbt_dep`'s no-resource branch cleared the path, so a descriptor edited to
bring its own `profiles.yml` emptied every earlier version's graph and with it
every finished run's page. The ownership being given up is the path-keyed
`asset` usages cleared beside it; the graph clear is now this version's.
The graph was inserted before the publication claim checked the version was
still live. Archive and delete only soft-update `script`, so the foreign key
still accepted an in-flight dependency job's rows and the failed claim
committed them — and because pinned queries deliberately serve archived
versions, deleted model SQL became readable again. The write is now gated on a
`FOR UPDATE` liveness check.
`clear_dbt_run_state_by_script_hash` resolved a hash to a path and deleted the
path's saved run. `dbt_run_state` is keyed by path by design — one saved run
per script — so archiving one version discarded the live version's resumable
failure. It clears only once no live version of the path is left; `identity`
already refuses a resume whose project, warehouse or engine moved.
"Preview rows" ran `runScriptByPath` while the SQL beside it was pinned to a
hash, so an old run showed its own SQL over today's rows. Verified end to end:
with v3 deployed, the v2 run's preview runs v2's hash and returns v2's rows.
Also: keep the TAIL of a captured stderr, since dbt prints its summary last;
one `$derived` for the parsed result rather than five; collapse three
near-identical argument accessors onto one generic; fold the single-use
`copy_dir_command` into its caller; and give `parseDbtRun.ts` one status
classifier instead of spelling dbt's failure vocabulary twice.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* refactor(dbt): one JobCtx down the executor, one table per adapter
Two changes aimed at the operations this code will keep having: adding a
phase, and adding a warehouse.
`JobCtx` already bundled the five values every phase needs, and nine functions
took it — but the top of the executor threaded the fields apart and rebuilt the
struct at each call, so the same literal appeared eight times and each new
phase meant five more parameters. It is now built once per entry point and
reborrowed. `prepare_project` goes from 21 parameters to 17, `retry_failed_nodes`
from 15 to 11, and `run_dbt` drops below the lint threshold. The two remaining
constructions are the worker boundary, where the pieces genuinely arrive apart.
`DbtAdapter` answered five questions with five parallel matches over the same
eleven variants, plus a sixth list of adapters kept by hand in a test. The
facts now live in one `AdapterSpec` per adapter, reached through one exhaustive
match, so adding a warehouse states its name, driver, package, port, database
key and licensing together and the compiler demands the arm. Each arm spreads
from a Postgres base, which makes the inheritance visible per adapter instead
of hidden in the `_ =>` defaults `default_port` and `database_key` used to
carry. `DbtAdapter::ALL` replaces the list the test kept separately.
Verified by dumping all seven facts for all eleven adapters before and after:
byte-identical.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): job-keyed run progress, and stop path-wide reads and clears
Six findings from the last round, in the order they bite.
The publication liveness gate refused on `archived`, but `create_script`
archives the parent on every redeploy — so deploying v2 while v1's dependency
job was still parsing left v1 without a graph, permanently, which is the exact
case the unconditional write existed to serve. It gates on `deleted` alone now;
an explicit archive is still covered by the `FOR UPDATE` ordering.
A project-owned `profiles.yml` trusted `profile.type` instead of reading the
file. The Rust engines carry every adapter, so a CE script could declare
`postgres` over a target that is `sqlserver` and have dbt connect with the
enterprise adapter. The file is read whichever way, and a descriptor that
disagrees with it is refused.
Renaming a dbt script, or editing one so its newest version is no longer dbt,
cleared the graph for the whole path — every older version's models, SQL and
lineage, which their own finished runs still render. Neither needs it: graph
queries join on `(path, hash)` through a `language = 'dbt'` CTE, so an old
version's rows cannot attach to whatever lives at that path next.
Live progress read `materialized_partition`, whose key is the relation and
whose `job_id` is only the last writer. Two runs of one project took rows from
each other. Progress now has its own job-keyed table; the relation table is
untouched, because one row per relation is right for the pipeline canvas and
fork defer. Verified with two overlapping builds: both keep 6 rows in the new
table, while the old one attributes 6 to one run and 0 to the other.
`Scratch::drop` removed a half-installed virtualenv synchronously from inside
the job future, blocking a runtime thread; it goes to `spawn_blocking`, with a
direct call when there is no runtime to hand it to.
The E2E list asked for a `# on table://` subscription the deploy now refuses.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* feat(dbt): snapshot a dynamic descriptor's graph per run
A `{{ }}` placeholder in `vars` can enable a different set of models per run, so
those runs re-ingest the graph. Keyed by version alone, each re-ingest
overwrote the last: reopening an older run showed the newer run's project, and
a model only the older run built was gone entirely — no SQL, no lineage, and
nothing the saved result could colour, since it can only tint nodes that are
there.
`dbt_node` / `dbt_edge` gain `job_id`. A run of a dynamic descriptor writes its
own snapshot under its job id and its page reads it back; a static descriptor
writes the version's graph once, under a zero-UUID sentinel, and every run of it
reads that. The sentinel is a value rather than NULL because `job_id` is part of
the primary key and Postgres does not treat two NULLs as the same key, so each
re-ingest would add a row set instead of replacing one.
`/assets/graph` takes `dbt_job_id` and prefers a snapshot when one exists,
falling back to the version's graph otherwise — so a run page passes it
unconditionally and static descriptors are unaffected. Snapshots age out after
30 days, pruned by the runs that write them, so no background sweep has to learn
about these tables.
Verified end to end: one deploy, two runs of it with `extra=yes` and `extra=no`
gating a model's `enabled`. The version's graph holds 6 models, run 1's snapshot
7 including `opt_extra`, run 2's 6 without it; the endpoint returns each run's
own and falls back to the version's when the parameter is omitted.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* perf(dbt): only snapshot a run whose graph differs, and prune from every run
Two costs the per-run snapshot carried, both found by measuring it rather than
by reading it.
A snapshot was written for every run of a dynamic descriptor, but marking one
dynamic is conservative: `graph_is_per_run` is true whenever `vars` holds a
`{{ }}` placeholder or `env` holds a `$var:`, which says the arguments reach dbt
and not that they change which models exist. The usual case is a date var, whose
graph is identical run after run, so the table filled with copies of an
unchanging picture — around 1 KB per model per run, which is a gigabyte or so a
month for a 200-model project on an hourly schedule. A row set now carries a
digest of its nodes, edges and relation root, and a run whose digest matches the
version's writes nothing; the read already falls back to the version's graph, so
those pages are unchanged. Only a run whose model set really differs pays.
The prune was hung off the progress reporter, which exists only for engines that
emit node events — so a Fusion or dbt-core-2x instance accumulated snapshots and
never deleted any. Retention that stops working because of an engine choice is
not retention; it runs detached from every dbt run instead.
Verified against a descriptor with a var-gated model: the version's graph holds
8 rows, a run that resolves to that same graph stores none at all, and a run
that enables the extra model stores its own 9. Both pages still render their own
project — 6 assets without the extra model, 7 with it.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): scope every dbt_node join to the chosen snapshot
`job_id` joined the key, but only the scoping CTE and `dbt_edge` were taught to
filter on it. The outer node SELECT and the parent/child joins in the edge query
were not, so each model came back once per retained snapshot plus once for the
version's graph, and each edge matched every combination of the two — the model
count multiplied and the edge join fanned out quadratically. Measured against
one stored snapshot: 17 node rows where 8 are wanted, and 28 edge pairs where 7
are. The response dedup hid the edge blow-up from the payload, not from the
plan, and the run page refetches the graph every two seconds.
The progress table gained writers it was missing. `terminalize_running_relations`
settled only the relation-keyed table, so a cancelled or killed run — the case
that function exists for, since it leaves no `run_results.json` — showed every
in-flight model still spinning on the run page for as long as the row lived. An
agent worker cannot write the new table at all, having no database of its own,
so the read falls back to the relation-keyed one when a job has no rows there.
Also: a wrapped string literal missing its backslash put eighteen spaces in the
middle of the profile-disagreement error; a comment still described concurrent
runs of one dynamic version overwriting each other's graph, which is what
keying by job removed; and the `materialized_partition` index justified itself
by a run-page poll that has since moved to another table, though the closing
sweep still earns it.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): give a graph snapshot a marker row, and scope what reads it
Five findings, four of which are the same mistake in different places: a
snapshot's identity was inferred from its contents.
Existence was inferred from a `dbt_node` row, so a dynamic run that disabled
every model — a legitimately empty graph — read as "no snapshot" and its page
showed the deployed models instead. The digest was a column repeated on every
node and read back with a `LIMIT 1` carrying no `job_id`, so a run could compare
itself against another run's digest and suppress a snapshot it needed. The
relation-root drift check read the same rows unscoped, so after a drift it could
find a previous run's root and conclude nothing had moved.
`dbt_graph_snapshot` holds one row per stored graph — path, version, job,
digest, timestamp. Existence is that row, the digest lives there once, the drift
check reads the deployed row explicitly, and the retention sweep deletes markers
first and then the rows no marker stands for. The digest is SHA-256 rather than
`DefaultHasher`, whose output is documented as unstable across Rust releases:
this value outlives the process that computed it, so a toolchain bump would have
silently stopped every comparison matching and quietly reinstated the duplicate
snapshots the digest exists to prevent.
`/run_progress` ignored the view token, so a share-link viewer got the graph and
was refused the progress that colours it.
A preview sent only its own three arguments, so a descriptor with a required
`{{ }}` var could not be previewed at all and an overridden one previewed a
different relation than the page was showing. The run's arguments go first now,
with the preview's three overriding.
Verified on a project whose only model is var-gated: the deploy stores a marker
with zero nodes, a run with the var set stores a marker with one, and the
endpoint answers 0 and 1 respectively rather than showing the deployed models
for both.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* refactor(dbt): squash the runtime's migrations into one
Ten migrations reshaping the same three tables is a history no installation
ever had. `dbt_node` gained `script_hash`, then `job_id`, then `ingested_at`,
with its primary key rebuilt twice; `graph_digest` was added by one migration
and dropped by the next after the digest moved to its own table. On a fresh
database all of that replays to arrive at a shape the schema can simply state,
and this feature has never shipped, so there is no upgrade path to preserve.
One migration now creates `dbt_node`, `dbt_edge`, `dbt_graph_snapshot`,
`dbt_run_state` and `dbt_run_progress` in their final shape, carrying forward
the rationale each of the replaced migrations recorded. The enum additions stay
in `add_dbt_lang`, since a value cannot be added and used in one transaction,
and the `materialized_partition` index stays separate because it belongs to a
table this feature did not introduce.
Verified by rebuilding: dropped the five tables, replayed from the single
migration, and confirmed the result is identical — same primary keys, the same
two composite `script` foreign keys, the same seven indexes. Every `sqlx::query!`
in the workspace then compiled against it, which checks each column's name, type
and nullability, and a deploy plus run on the rebuilt schema produced 8 nodes,
7 edges, a snapshot marker and 6 progress rows.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): authorize snapshot reads, bound the prune, give the marker a lifecycle
`dbt_job_id` is caller-supplied and selected straight from `dbt_graph_snapshot`,
which carries no RLS — so a caller who could see the script could read any run's
model set and relation paths, which a dynamic alias or schema can encode. Both
graph queries now require the job itself to be visible, in the authed
transaction, the same gate `raw_code` already applies to the script that
produced it.
The drift check compared against the deployed graph alone, which misses the way
back: a run at root B republishes the path-keyed `asset` usages at B, and
returning the profile to A then matches the deploy and skips the refresh,
leaving those usages at B while dbt builds A. It reads the most recent ingest
for the version instead — the one that last wrote them — ordered rather than an
arbitrary `LIMIT 1`.
The prune anti-joined every non-deployed node and edge with no age predicate, so
each run scanned the whole retained sidecar and concurrent runs duplicated it.
All three deletes share one age bound again, with the sentinel spelled as a
literal so the partial indexes apply — a bound parameter cannot be proven to
match the index predicate.
`dbt_graph_snapshot` was the one dbt table nothing in the script lifecycle
deleted: no `script` foreign key and absent from both `clear_dbt_manifest*`
sites. A marker outliving its rows is read as a snapshot with no nodes, and its
digest still answers the suppression check, so an identical run would write
nothing and then render an empty graph. It cascades like the rows now and both
clears take it.
Also: the preview cleared `exclude` rather than inheriting it, since previewing
a model the run excluded reached dbt as `--select m --exclude m`; and
`terminalize_running_relations` no longer claims to cover a killed worker, which
never reaches it.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): quote profile names, record where usages were published, stop polling the graph
A profile name comes from the project's own `dbt_project.yml` and a target from
the descriptor, and both were interpolated into `profiles.yml` as bare YAML —
including as mapping keys. A name like `prod # hidden` truncates the mapping and
a newline opens a sibling key of the author's choosing. Both are rendered as
quoted scalars now, as are the BigQuery keyfile's keys, with a test that asserts
the document still parses to exactly the keys we wrote.
The drift check read the most recent ingest, which latches: a run that returns
to the deployed root re-ingests but stores no snapshot (its digest matches the
version's), so the moved run's rows stay newest and every later run pays an
extra parse and ingest. The publisher now records the root it published the
path-keyed usages at, which is the only thing that answers "where do the current
usages point" — the deploy's own root goes stale as soon as a run republishes.
The run page polled `/assets/graph` every two seconds alongside progress, so it
re-sent every node's SQL for the length of a run — hundreds of KB a tick on a
real project, for a graph that a dynamic descriptor re-ingests exactly once
before the build. It fetches once more shortly after mount and then polls
progress alone.
Node results carry `outcome` beside `status`. `status` stays dbt's own word, but
dbt owns that vocabulary — 1.x and 2.x differ on casing and `no-op` arrived in a
minor release — so publishing only it would force a break or a lie the first
time it moves. `outcome` is the stable half a downstream script branches on.
Also: the worker's dbt entry points are `pub(crate)`, since nothing outside the
crate calls them and they resolve secrets and launch processes; and the snapshot
gate records that it is RLS-only where `/jobs/run_progress` also honours a
share-link token, which is a gap in what a shared page shows rather than in what
it protects.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* test(dbt): pin the graph storage invariants against a real database
Every defect review found in this area was DB-shaped — which row set a read
resolves to, which rows a clear takes, whether a snapshot exists at all — and
none of it is reachable from a unit test on a pure function. Four rounds
established these answers and nothing guarded them, which is why each round kept
finding another.
Six cases, on the harness the repo already uses for schema-shaped behaviour:
an identical run stores no snapshot and leaves no marker; a differing run keeps
its own while the version's is untouched; an empty run graph is still a snapshot
rather than an absent one; clearing one version leaves the others whole; the
path-wide clear takes the markers with it; and the sweep ages out run snapshots
while never touching a version's own graph.
`IngestedNode` gains `Default` so a test can state the two fields a case is
about rather than the eighteen it is not.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* perf(dbt): bound a script's stored graphs by deploy count
Run snapshots expire on a clock, but a VERSION's graph could not: its reader is
every finished run of that version, and a run page is as old as its job. So
nothing reclaimed them — a deploy graph went only when its `script` row was hard
deleted, which Windmill does not routinely do. A CI deploying on every commit
added a full model set with SQL bodies per commit, forever: roughly 200 KB a
deploy for a 200-model project, which is gigabytes a year across an instance.
Bounded by COUNT instead of age, since age is the thing that cannot be right
here. The newest 50 deploys per path keep their graph and older ones are
reclaimed, making growth `versions x models` rather than unbounded in time.
Generous on purpose: reaching the bound empties that version's run pages, so it
exists to stop unbounded growth rather than to be hit in normal use. Ordered by
the script's own `created_at`, so a late-finishing job re-ingesting an old
version cannot promote it.
Pinned by a test that deploys past the bound and asserts both halves: the count
holds, and the newest version is always among the survivors.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): let the run page know when its snapshot has landed
The one-shot graph refetch was wrong: a dynamic descriptor's ingest happens
before the build but after cloning, dependency install and parse, so a fixed
delay either fires too early — and the run page then shows the deployed models
for the whole run, never that run's own — or keeps re-sending the whole graph
for the length of it. Neither is a timing problem to tune; the page had no way
to tell "the snapshot is not written yet" from "this run has none".
`/assets/graph` answers that directly: `dbt_snapshot_job` is the job the dbt half
resolved from, when one was asked for and found. The page polls the graph until
that is its own job, and stops. A static descriptor never snapshots, so an
attempt cap ends it there rather than polling for the run's duration.
`dbt_node.relation_root` is gone. The drift check moved to the marker's
`published_relation_root`, which left the column written on every node and read
by nothing.
`outcome` was published as the stable half of the result contract, but the
in-tree consumer still ranked and coloured from dbt's own word — so the field
existed and nothing used it. `statusRank` takes it, `DbtRunResult` passes it, and
`classifyStatus` is documented as the fallback for results that predate it and
for the live event stream, which carries dbt's word alone.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* docs(dbt): record what a share-link viewer actually sees
The comment at the snapshot gate said the graph "falls back to the deployed
set", which is only the rarer half of it. A share link is an extra grant for a
logged-in user who lacks access to the job, so the usual case is no read on the
script either — and then the `live` CTE matches nothing and the whole dbt half
comes back empty. A blank Models panel over working progress rows, not a
fallback.
`docs/dbt-runtime.md` now carries the analysis a follow-up needs: that relaxing
this leaks nothing, because `v2_job_completed.result` already gives that viewer
every node's `unique_id` and `relation_name` — the graph's only incremental
exposure is `raw_code`, which is gated separately on seeing the script. And the
shape of the fix: `OptViewToken` and `validate_view_token` are self-contained
enough to move into `windmill-api-auth`, which `windmill-api-assets` already
depends on, after which the gate can honour a token for that job's snapshot
alone while `raw_code` stays where it is.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): keep model SQL behind the scripts:read scope, and unbreak CI
`/assets/graph` is authorized as `assets:read`, and RLS decides whether the
caller can see the script that produced a node — but RLS is not a scoped
token's grants. A token deliberately narrowed to `assets:read` could therefore
read model source and repository paths for scripts outside its `scripts:read`
paths. The same `build_scope_path_predicate` the macro endpoint already applies
now gates `raw_code` and `original_file_path`; the relation's shape is
unaffected, only its body is withheld.
`DbtAdapter::ALL` exists for the tests that must cover every adapter, so it is
dead in a release build and `-D warnings` failed all four backend checks on it.
It is `#[cfg(test)]` now.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): stop the graph poll at the ingest, and type `limit` in the schema
The poll's stop condition was a snapshot appearing, with a 40-attempt cap
behind it — so a STATIC descriptor, which never snapshots, took the cap every
time and re-fetched the whole graph forty times. That is most of what removing
the poll was meant to save, and static is the common case.
The ingest runs BEFORE the build, so the first model to report progress proves
it has already happened: a snapshot absent by then is one this run never
writes. Progress arriving is now the second exit, and the cap is only a
backstop for a run that reports none at all.
`limit` is declared `Typ::Int` but `dbt_arg_schema` had no integer arm, so the
run form and the generated clients saw an untyped default and offered no
numeric control for a value the worker clamps. Covered by the schema test.
`relationOutcome` still re-derived from dbt's word while `statusRank` had moved
to `outcome`; both read it now.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): make a retry prove its arguments still resolve the same
The saved arguments are the ones SUBMITTED, so a `$var:` in them is re-resolved
on retry. The identity did not cover the resolved values, so a variable that
changed between the failed run and the retry was accepted — and which graph the
retry then used depended on WHERE it landed: a worker holding the local
snapshot replays the saved manifest, while a database restore reparses with the
new value. Placement decided whether the resumed failures described the
relations being built.
The identity gains a digest of the resolved arguments, and is compared in two
halves because resolution happens between them. Project, warehouse, engine and
env are checkable up front; the arguments are not, because a retry request
carries only `dbt_command` and the ones to compare are the SAVED arguments after
this caller has re-resolved them. Comparing the whole string up front would have
refused every retry — which is what the obvious version of this fix does.
A row written before the digest existed has no last segment, and still restores
rather than being refused.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): keep pre-upgrade retries working, and stop losing a late snapshot
Splitting the identity on its last `|` read a pre-upgrade row's env digest as an
arguments digest and left only `<run_identity>` as the prefix, so every saved
failure on an upgraded instance became unretryable — a regression the previous
commit's own test missed by using an identity with no `|` in it at all, which is
not what an old one looks like. The digest is tagged (`|args=`) rather than
positional, and the test now uses a real pre-upgrade identity.
The graph poll gave up after a bounded number of tries, but provisioning and
`dbt deps` precede the ingest and can outlast that on a cold worker — and the
engines that emit no node events never produce the progress that ends it early.
A finished run now reloads the graph unconditionally, and the poll's own exit
issues one last load: progress proves the ingest happened, not that the previous
tick saw it, and dbt's compile window is wider than one tick.
A `dbt retry` restores the failed run's arguments inside the worker and they are
never written back to the retry job, whose own args are just
`{"dbt_command": "retry"}` — so previewing a row on a retry's page ran without
the vars the run used. The result now carries the invocation's arguments as
SUBMITTED, so a `$var:` stays a reference and no resolved value is published.
The deploy-count sweep ran instance-wide on every dbt run: `FROM script WHERE
language = 'dbt'` has no index to stand on, and both orphan deletes are the
complement of every partial index here. It is scoped to the running script's
`(workspace_id, path)` — which `index_script_on_path_created_at` serves — and
the orphan deletes only run when a marker actually went.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): hide dbt from module-less pickers, and stabilise the retry digests
`processLangs` feeds every language picker, including flow steps and app inline
scripts. Those are raw bodies with nowhere to carry a module bundle, and a dbt
script IS its bundle — so choosing dbt there produced a job that could only fail
once the worker looked for `dbt_project.yml`. Those two surfaces use
`processInlineLangs`, which drops the languages that need modules; a flow still
reaches dbt the way it reaches any script, by path to a deployed one.
`graph_digest` moved to SHA-256 because it is persisted and compared by a later
worker, and `DefaultHasher` is documented as unstable across Rust releases — but
the retry identity's own digests were left on it, and they are persisted in
`dbt_run_state.identity` for exactly the same comparison. A toolchain bump would
have refused every saved failure as a different project. All three go through
one `stable_digest`, length-prefixed so no split of the same bytes collides.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): enforce the tag scope on snapshot reads, reset state between runs
A tag scope is an orthogonal hard restriction: a token limited to some tags must
not read a job outside them however else it is authorized. The snapshot lookup
went through `v2_job` RLS alone, which knows nothing about tags, so such a token
could still retrieve a run's model set and its dynamic relation paths. The same
predicate `require_job_read_access` applies for the progress half of the page is
applied here — `get_scope_tags` is already public in `windmill-api-auth`, and it
is `None` for an unscoped caller, so a normal session pays nothing.
SvelteKit reuses the run graph between run ids, and `graphTries`, `polled` and
`raw` all describe the previous job: a spent retry count stopped the next run's
snapshot poll before it began, and stale progress coloured its models with
another run's statuses. All three reset when the graph key changes.
Also a wrapped string literal missing its backslashes, which put two ~22-space
runs in the middle of the retry-refusal message.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* docs(dbt): put each digest helper's rationale on its own function
Inserting `stable_digest` above `split_identity` split that function's doc, so
five lines describing where the identity divides ended up introducing the
hasher. Each is back on the function it describes, stated once.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
* fix(dbt): read the run-pinned graph through the job, not the asset graph
Pinning the asset graph to one run is job-scoped data, but `dbt_job_id` sat on
`/assets/graph`, authorized as `assets:read`. The job-read contract —
`require_job_read_access` — is five parts that pull in opposite directions (tag
scope restrictive, `created_by` permissive, app-embed restrictive-overriding,
view token permissive, RLS underneath), so plain RLS is neither a stricter nor a
looser approximation of it. Restating the parts near the graph query kept leaving
one out: first the job check entirely, then the share-link asymmetry, then the
tag scope, and the app-embed restriction was still missing and failing open.
The helper cannot be called from `windmill-api-assets`, because `windmill-api`
depends on that crate. So move the read instead of the check: the run-pinned
graph is now `GET /w/{w_id}/jobs/dbt_graph/{id}` in `windmill-api`, on the same
gate as the `run_progress` it colours, and `/assets/graph` has no `dbt_job_id`
parameter at all.
- `asset_graph_for` takes the job as an argument from an already-authorized
caller; the route handler passes `None`.
- Extract the graph response into a `AssetGraph` component schema, now that two
paths return it.
- The run page fetches the job route when it has a job id.
* fix(dbt): charge assets:read on the run-graph route, trust the job gate in SQL
Round 13 findings on the route moved last commit.
The scope domain comes from the URL segment, so putting the read under `/jobs`
asked a scoped token for `jobs:read` alone while returning asset-graph data that
`/assets/graph` charges `assets:read` for. A token narrowed to polling run status
could read workspace topology, and the missing-job fallback made it cheaper still
— any random UUID skipped the job gate. Both scopes are now required: the job
gate reaches this run, `assets:read` reaches asset data at all.
The `chosen` CTE re-decided job visibility under plain RLS after the caller had
already passed `require_job_read_access`. It could only disagree, and did so
silently by falling back to the deployed graph — a share-link viewer entitled to
the run was shown a different run's model set. Dropped; the contract is that a
job reaching `asset_graph_for` is already authorized.
Also: the flow editor's `+` insert menu still offered dbt (the third
`processLangs` caller, missed when the other two moved to `processInlineLangs`),
the docs still described the deleted `dbt_job_id` parameter, and the new handler
had again been inserted between `get_run_progress`'s doc comment and its
function.
* fix(dbt): resolve a pinned run's version from the job row, not script RLS
Local codex review of the branch.
A share-link viewer is entitled to the run and usually has no grant on the
project — that is what the link works around. The graph's `live` CTE resolved the
version by selecting `script` inside the viewer's RLS transaction, so it answered
for their access to the project rather than for the run they were given: the
Models panel came back blank beneath working progress rows.
A pinned run now takes its path and hash from the job row the handler already
read after authorizing the job, so `live` does not consult `script` at all.
`raw_code` keeps its own `EXISTS` against `script`, so the model bodies stay
behind access to the project. Verified under RLS as an unprivileged role: the
shape query goes 0 rows -> 1, the `raw_code` gate stays 0.
Taking the version from the job also means a caller can no longer pin one
project's version while naming another's run, since `dbt_script_hash` is ignored
when a job is given.
The run page's graph fetch is a raw `fetch`, which bypasses the interceptor that
adds `X-View-Token` to generated-client calls, so a shared page was refused
before any of this mattered; it goes through `appendViewToken` now.
Also trims three comments to the AGENTS.md limit, dropping drafting-history
rationale that belongs in docs/dbt-runtime.md.
* fix(dbt): snapshot vars-overridden runs, carry the pinned version everywhere
Second local codex pass.
A `vars` run argument overrides the descriptor's, and vars drive `enabled`,
alias, schema, database and materialization — so such a run builds relations the
deployed graph does not describe. It now snapshots under its own job id, which
per-job keying makes safe: the version's graph stays for runs that did not
override. The old comment claimed gating on it would strand the override's graph
for the next default run, which was true only when the write went to the
deployed slot.
Two sites still read the caller's `dbt_script_hash` instead of the version
resolved from the job, so `/jobs/dbt_graph/{id}` without that redundant
parameter dropped models the run's version had and a later deploy removed.
The `dbt_snapshot_job` marker re-checked `v2_job` under RLS — the recheck the
graph query itself drops. A share-link viewer got the right graph and a null
marker, so the run page refetched it 40 times before giving up.
`wmill script preview` read the bundle with the generic `__mod` suffix and
script-module parsing, so previewing a `.dbt.yaml` omitted the project and failed
on the missing `dbt_project.yml`. It uses the same suffix and verbatim read as
deploy.
* fix(dbt): key retry state by principal, not by script path alone
`dbt_run_state` held one row per (workspace, script path), and a retry replaces
the caller's arguments with the saved ones. Anyone able to run the script could
therefore retry whoever ran it last, replaying that run's literal `select` and
`vars` against the warehouse and publishing them as their own job's
`invocation_args`. Running the script was already theirs to do; seeing another
principal's arguments was not.
`permissioned_as` joins the key, so a retry resumes only state written under the
same authority. Two runs sharing an authority can already act for each other, so
this is the boundary that matches the rest of the job model.
* test(dbt): pin what a caller without access to the project sees of its run
The share-link case had no regression guard, and every fix in this area touched
one of its two halves: the graph's SHAPE has to survive a caller who cannot read
the script, and the model SQL must not.
Two cases against a real database, calling `asset_graph_for` as a member with no
grant on the project's folder: pinned to a run, the models render and `raw_code`
is withheld; unpinned, the same caller sees nothing of it, so making the first
work did not relax the second.
Both assertions were checked by mutation — reverting the `live` bypass empties
the graph, and dropping the `raw_code` script gate leaks `select 1` — so neither
passes on the code it is meant to catch.
* fix(dbt): key the worker-local retry cache by principal too
Keying `dbt_run_state` by `permissioned_as` left its worker-local twin keyed by
workspace and script path alone, so the boundary held only where the database row
was consulted. An agent worker never reads that table — `Connection::Http` leaves
`latest_job` as `None` — so there the local cache was the whole boundary and it
had none: the next principal to retry the script on that worker restored the
previous one's `select` and `vars`.
Also records the sqlx `--all-targets` trap in the update-sqlx skill: it is needed
for queries inside tests, and in a CE checkout it aborts on `tests/otel.rs`
(EE-only `otel_ee`) after having already emptied the cache.
* fix(dbt): log a dropped retry-state save, correct the run-progress contract
Saving retry state is best-effort — losing it costs a retry, not the run that
just finished — but `.ok()` dropped the reason too. The only symptom was `dbt
retry` reporting nothing to resume, which reads as a bug in retry rather than a
failed write. Found by running a real failing build against a worker whose
binary predated the `permissioned_as` column: the insert violated NOT NULL and
said nothing.
The run-progress endpoint's OpenAPI description promised an empty list for a
caller who cannot see the job. It is refused instead; an empty list means the job
recorded nothing yet or is unknown here.
* fix(dbt): return the retry-state write failure the warning was added to report
`save_run_state` discarded the insert result, so the caller's warning could never
fire and a lost retry row stayed silent — the symptom being `dbt retry` finding
nothing on another worker.
The error is held rather than returned at once: the worker-local copy is what an
agent worker resumes from, so a failed insert must not cost that too. Every exit
after it surfaces it, including the ones that give up on the local save.
* fix(dbt): decide a retry's graph from its restored args, keep local state in step
Three from the seventh local review.
A retry submits only `dbt_command`, so the vars-override check ran against an
empty argument set and left `graph_is_per_run` false. The failed run's arguments
are restored afterwards, and those are what the retry builds with — an overridden
one wrote no snapshot for its own job and its page fell back to the deployed
graph, showing the wrong enabled models, aliases and schemas. The decision is
re-asked once the restore has happened.
A failed durable write no longer publishes the worker-local generation either.
`restore` accepts a local generation only when the database row names it, so
publishing one the database never recorded made this worker reject its own newest
state and resume the previous run's — its selection and vars, or "nothing to
retry" if that one had succeeded. An agent worker attempts no durable write, so
it keeps its local copy as before.
A rename that also converts away from dbt moved the old path's retry state onto
the new one, reinstating what the conversion had just cleared and leaving one
user's arguments and results under a path no dbt script occupies. It moves only
while the destination stays dbt, and clears the source otherwise.
* fix(dbt): drop retry state when a run produced none, let module pushes fail loudly
Three from the eighth local review.
A run that never wrote `run_results.json` — cancelled, timed out, or dead before
dbt got there — left the PREVIOUS run's state authoritative in both the database
and the local pointer, so a later `dbt retry` resumed that older invocation's
failed nodes. Producing nothing resumable now clears both copies, so neither can
answer for the other.
`wmill sync push` wrapped the descriptor lookup and its deployment in one
try/catch meant for a missing parent. Any API failure or invalid descriptor was
reported as "no parent found" and swallowed, so a module-only push exited zero
with the remote project unchanged. Only the lookup is tolerated now.
Also condenses a comment that narrated how earlier status comparisons behaved.
* fix(dbt): forget retry state on pre-build exits too, drop cascade claims
A dynamic run whose pre-build `dbt parse` or graph ingest fails returns before
the save that clears stale state, so the previous run stayed authoritative in
both the database and the local pointer and `dbt retry` resumed ITS failed nodes
— writing relations the run that just failed never touched. Both exits now
invalidate, through one helper shared with the no-artifact case.
Two frontend comments described dbt producer rows as driving cascade dispatch.
The executor returns before dispatch for every dbt job and deployment rejects
`table://` subscriptions, so they promised behaviour that cannot occur; they
describe the lineage and ownership that is actually retained.
* fix(dbt): let the database decide retry state where it is reachable
A SQL worker treated "no `dbt_run_state` row" as no opinion and accepted any
worker-local generation. But no row is the authoritative answer that the last
invocation left nothing resumable, so a local pointer that outlived it — an
unlink that failed, a process killed between the delete and the removal, a stale
cache — resurrected a replaced run and let `dbt retry` write relations it never
touched. An agent worker keeps accepting its local copy: it has no authority to
consult.
Invalidation failures are logged rather than dropped, since a silent one is
exactly what leaves the pointer behind.
* docs(dbt): record how to run an agent worker locally, keep archived graphs
Every step of standing one up fails as something else: a normal build cannot
start one at all, the server's routes need a separate feature, and all three
token mistakes surface as a bare 401 on the agent with the reason only in the
server log. Written down with the error each produces.
Also keeps a dbt script's graph when it is ARCHIVED rather than deleted. The
pinned read resolves versions through a CTE that already skips archived rows, so
clearing bought nothing and emptied the Models panel of every completed run of
the project. Deletion still clears it.
* feat(dbt): let an agent worker publish its graph, through one endpoint
An agent worker was refused any dbt script whose profile comes from a Windmill
resource — the common case — because it could neither read the stored relation
root to check for drift nor re-ingest a corrected one.
Those look like two needs but collapse into one: verification exists only to
decide whether the stored graph still describes reality, so a worker that can
PUBLISH never has to ask. It stores what it just parsed.
`POST /api/agent_workers/dbt_graph/{workspace_id}` is the whole addition. It
wraps the same `replace_dbt_manifest` the SQL path calls, so digest suppression,
the marker write and retention cannot drift between the two transports, and it
refuses a job the token's tags do not cover. `IngestedManifest`/`IngestedNode`
gain Deserialize to cross the wire.
Two guards go, both now false: the pre-build refusal, and the `Connection::Sql`
gate added earlier to stop a `vars` override grounding an agent run.
Live progress stays SQL-only — that is a per-model event stream, and routing it
through the API would mean a round trip per node.
* docs(dbt): warn that a differing cargo feature set swaps the shared binary
* docs(dbt): record the verified agent-worker behaviour and the tmpfs quota trap
An agent worker now runs a dbt job end to end, retries, and publishes its graph
— confirmed with a dynamic descriptor whose per-run snapshot came back through
the new endpoint. The doc said it was refused; that was true before the endpoint
existed.
Also `WINDMILL_DIR`: on a dev box the job dies with `Disk quota exceeded (os
error 122)` writing the project's files while `df` shows free space AND free
inodes, because /tmp is a tmpfs carrying a per-USER quota. Point the worker at a
real disk rather than trying to clean up beneath it.
* chore(dbt): pin the EE revision carrying the agent graph endpoint
* fix(dbt): bind the published graph to the job, break the completed-page poll loop
Five from the thirteenth local review.
The EE endpoint took `script_path` and `script_hash` from the payload and checked
only that the supplied job carried one of the agent's tags, so an agent holding
any matching-tag job could name another script and replace its graph. Both are
read from the verified queue row now and the request carries only the job id. A
raw preview has no version, so it no-ops rather than 422ing before dbt runs.
`IngestedManifest`/`IngestedNode` take `#[serde(default)]`: they were
serialize-only, and a field the serializer skips made the whole manifest
unparseable on the receiving side.
A completed run page fetched the graph forever — `load()` assigns `raw`, which
recomputes `settled`, which re-entered the same effect. The final fetch is keyed
to the job by a plain (non-reactive) variable, and `settled` is read untracked.
The pin now names a revision that compiles: the previous one still called
`authed.tags()`, a method that does not exist, because both that fix and the JSON
response landed after it was committed.
* fix(dbt): keep a run snapshot out of the script's deployed ownership
Everything `persist_ingest` writes after the manifest is keyed by PATH — one row
set per script, describing what is deployed there. A run snapshot was still
reaching it, so a one-off `vars` override republished that invocation's relations
as the script's ownership and the workspace graph stayed on the override's
schemas and aliases: an ordinary run of a static descriptor never ingests again
to correct it, so only a redeploy would. A snapshot now stops after recording its
own rows.
The row preview also selected a bare model name, which dbt resolves across every
installed package while `show` takes a single node — a project model sharing its
name with a package's was previewed wrongly or refused. It selects the
package-qualified FQN.
* fix(dbt): forget stale retry state when preparation itself fails
`prepare_project` runs before every path that could clear it, and it fails for
reasons unrelated to the saved run — a profile that stopped resolving, a
provision cancelled, packages that will not install. The invocation still left
nothing resumable, so the previous one must not stay authoritative: a repaired
project would otherwise let `dbt retry` rebuild an older run's selection and
write relations the latest invocation never reached. A retry is exempt, since it
is trying to use that state and failing to prepare says nothing about it.
Also corrects the runtime doc, which still described agent workers as unable to
run dynamic descriptors or Windmill-resolved profiles. They publish their graph
through the API now; what they do not get is live progress and a durable retry
row, and the doc says so.
* fix(dbt): spell the whole FQN for preview, bound retained retry generations
The FQN selector added last commit was `<package>.<name>`, but a dbt FQN is the
resource's path within its package and the matcher must consume the selector and
end on equal lengths — so it matched nothing for a model under `models/marts/`,
which is the layout most projects use and the one this repo's own complex fixture
has. The middle segments come from `original_file_path`, whose first element is
the resource root the FQN excludes. Without a path it falls back to the bare
name: ambiguous across packages, but a selector dbt resolves rather than rejects.
Tested on a nested model, which is the input that separates the three spellings.
Superseded retry generations were removed only when a later run published one,
and never inside the hour-long grace period — so a burst left a manifest and a
results copy per run with nothing afterwards to collect them. At most four now
sit in the grace window, oldest evicted first.
* fix(dbt): scope preview state to the run, seed the project on a language switch
Previews are keyed by `unique_id`, which is the same string for the same model in
every run, and the run-change effect reset only the graph and progress. Opening a
second run of one project therefore showed the previous run's rows immediately,
and `runPreview` treated them as cached and refused to fetch. A generation
counter also drops a preview that resolves after navigation, which the reset
alone cannot catch.
The dbt project was seeded only by the empty-script bootstrap, but dbt is in the
ordinary language picker: reaching it by switching a draft produced a script with
no `dbt_project.yml`, which the runtime refuses to deploy or run. Both entry
points seed now, and neither touches modules that already exist.
* chore(dbt): cache the agent graph endpoint's query for the EE offline build
* fix(dbt): publish the graph a moved profile built
A run snapshot stopped before everything `persist_ingest` keys by PATH, which is
right for a one-off `vars` override and wrong for the other two reasons a run
re-ingests. `graph_is_per_run` was one bool for all of them, and the profile
drift check both sets it and reads back what the publisher recorded: a profile
moved A->B was detected by every run forever, each paying a `dbt parse` for a
snapshot nobody reads while the asset rows went on naming schema A.
The reason is carried now (`GraphRefresh`), and it decides both writes. Drift is
the version's own move, so it rewrites the VERSION's graph and republishes the
ownership that ends the drift; a dynamic descriptor snapshots under its job id
and still publishes; anything the CALLER scoped — an overridden `vars`, a
narrowed `select` — snapshots and publishes nothing, so one invocation's subset
can neither stand as what the script owns nor drop the models it left out from
the version's graph. Where they meet the caller wins, and the next ordinary run
settles the drift.
A restore also rebuilt `run_results.json` by copying the generation directory a
second time, so a burst of saves pruning it mid-restore left `dbt retry` with
nothing to resume and a job that reported success. It is written from the bytes
the restore already read; a manifest that went the same way falls back to the
parse a database restore pays anyway, and a generation that vanished before
either read falls back to the database's row for that same run instead of
reporting there is nothing to retry.
* fix(dbt): select a row preview by package, not by file path
The preview built dbt's FQN by dropping one segment of `original_file_path`,
which assumes the model root is `models/`. A project setting
`model-paths: ["src/models"]` turned `src/models/marts/orders.sql` into
`pkg.models.marts.orders`, and dbt's matcher — equal lengths, compared from the
front — resolves that to nothing: the preview came back empty for every model in
the project.
It selects `<name>,package:<pkg>` instead. The comma is dbt's intersection
operator, so this names the node by its own name and the package it belongs to,
which is what the FQN was reaching for and needs no knowledge of the resource
root. Verified on dbt-core 1.12, dbt-core 2.0.0-alpha.5 and fusion
2.0.0-preview.202, including a package shipping a model whose name the root
project also uses.
* fix(dbt): refuse a lockfile version that is not one, keep a named selector
Two things a preview reaches that a deploy does not vouch for.
A raw preview submits its own `lock`, so `engine_version` arrives from the
caller and was interpolated straight into the engine cache path — `../..` in it
made the download, extraction and rename land anywhere the worker can write,
and provisioning runs on the host rather than inside the dbt jail. Both it and
`adapter_version` (a pip requirement) are now accepted only as a plain version
token.
`effective_selector` also read any submitted `select`/`exclude` as an override
of the descriptor's named selector. The generated run form posts a default back
for every field the caller left untouched, and a selector descriptor's `select`
default is `[]` — so pressing Test, saving a schedule or firing a webhook built
the WHOLE project instead of `--selector nightly`. An override is now one that
DIFFERS from the descriptor's own value; a run that wants the whole project
despite the selector asks with `["*"]`.
* fix(dbt): let a moved profile settle, from the runs that actually happen
Two ways the drift check could never come to rest, both verified against a real
run of a real project on a normal worker.
`add_caller_args` read any submitted `select`/`exclude` as a caller's narrowing.
The generated run form posts a default back for every field left untouched, so
every run from the UI, a schedule, a webhook or a flow step carried them and was
marked caller-scoped: with the profile moved A->B, each one stored its models
under its own job id and left the workspace graph — and the root the check reads
back — at A. Since no UI run omits the field, the "an ordinary run settles it"
escape hatch was unreachable. Both this and `effective_selector` now ask one
question, `selection_is_overridden`: DIFFERENT from the descriptor's, not merely
submitted.
The root was also recorded beside the path-keyed publication rather than beside
the graph it describes, so a version that cannot claim the path — an older one
run by hash, a deploy overtaken by a newer one — rewrote its graph at the moved
root and recorded nothing. Its next run then compared against a root that was
absent or two moves stale and skipped the refresh its own run page needed. It is
written wherever the deployed row's graph is.
Verified end to end: same UI-shaped arguments before and after, the moved
profile now republishes (asset rows and version graph both move to the new
schema), a second run detects nothing and re-parses nothing, and moving the
profile back settles it again.
`prune_dbt_run_graphs` also ran from runs alone, while a deploy writes a whole
node set of its own, `raw_code` per model included: a project redeployed on
every push by CI and run nightly kept one full graph per push until the next
run, and one deployed but never run kept them for good.
* fix(dbt): drop a self-dependent effect in the run graph
`previewGen` was `$state` written by the effect that also reads it, three lines
under a `finalLoadFor` that is a plain `let` for exactly that reason. Nothing
reactive reads it — the only reads are inside `runPreview`, a plain async
function — so it becomes a plain `let` too.
* fix(dbt): pin a retry to the engine versions it resolved
`run_identity` carried the engine KIND but not the version it resolved, nor the
dbt-core 1.x adapter's. Redeploy an unchanged project after a release and it
locks a newer dbt or adapter while the saved `run_results.json` still passes the
check, so `dbt retry` feeds one version's artifacts to another — the exact
reproducibility the lockfile exists to hold. Both resolved versions are in the
identity now; a real failure and retry still resumes.
Also drops three comments that outlived what they describe: two said `[]`
clears a descriptor's selector, which `selection_is_overridden` reversed, and
one pointed at an agent-worker guard that no longer exists — the agent path
reaches the ingest deliberately and publishes through the API.
* fix(dbt): discard a run graph the page has already navigated away from
The component is reused across runs, so a slow `/jobs/dbt_graph` or progress
response could land after the reset and put the previous run's models, statuses
and failure state on the current run's page, where nothing would fetch again to
correct it. Every response is now checked against the generation it was
requested under — the counter the preview path already used, renamed for what
it means.
The graph poll also backs off. Neither of its stops is reachable for a whole
class of runs — `dbt_snapshot_job` never matches a static descriptor, and
`polled` stays empty for the engines that emit no node events — so an ordinary
run walked to the cap, re-sending every model's SQL 40 times in two minutes.
* fix(dbt): forget the previous run when the durable save fails, keep quoting
`save_run_state` returns the database error when its upsert fails, which leaves
run N-1's row and local generation in place: same project, same arguments, so a
`dbt retry` matches them and resumes an older attempt's failed nodes against
this checkout — the outcome the no-results branch twelve lines above calls
`invalidate_run_state` to prevent, reached by another door. It now goes through
the same call. Best effort, since the delete goes to the database that just
refused a write, but the local pointer is what a retry landing back here reads.
The run page also rejoined a relation's parts after `splitRelation` stripped
their quotes, so the one name the button exists to paste —
`"wh"."analytics.v2"."Order Items"` — was copied as something no client
resolves. It copies `relation_name` verbatim.
And a source on a finished run was called another project's: the check that
guards against two projects claiming one relation asks whether this run executed
the node, and a run executes no sources — they appear in no `run_results.json`.
Nothing materializes a source, so that warning could never be true of one.
Docs: the `vars`-override paragraph still said such a run does not refresh the
graph, which the table above it contradicts — it refreshes under its job id and
publishes nothing.
* fix(dbt): keep the asset rows and the version's models describing one graph
The workspace graph takes an asset's relations from the path-keyed `asset` rows
and its models, SQL, tests and lineage from the version's `dbt_node`/`dbt_edge`.
A dynamic descriptor published the former while storing the latter under its own
job id, so a placeholder that moved an alias or a schema left the current graph
with assets no model stands behind — nothing dbt contributes to them survives.
Ownership is published exactly when the VERSION's graph was written now, which
is the only state in which the two agree. Two cases are settled elsewhere by
design: an override's relations are a one-off, and a dynamic descriptor at a
moved profile keeps the deploy's ownership until a redeploy — its runs each show
their own models and it re-parses regardless, so the undetected drift costs it
nothing it was not already paying.
An agent worker has no durable row, so its local `current` pointer is the whole
of what a retry reads — and every local publication failure returned success
with the PREVIOUS run's pointer still in place. Where a row exists that is
harmless (`restore` takes a local generation only when the row names it), so the
abandonment is scoped to the agent case.
A failed `dbt show` also cleared the retry state: the preparation-failure exempts
`retry` but not a read-only command, and the run page's row preview is exactly
that, run as the principal the state is keyed by — so a preview that could not
provision took the retry away from the run being looked at.
Frontend: the run-change reset left `loading` and `failed` behind, so the gap
before the next run's answer rendered "no models in the asset graph" — a claim
about the descriptor — over a project that is fine. And three derivations argued
from "the graph is the current deploy", which the pinned endpoint made untrue;
each is still needed, for the version-graph rewrite and retention reasons now
written down.
* fix(cli): let --skip-scripts cover a script's module files
The module shortcut in `elementsToMap` maps the file and `continue`s before
every skip filter, and a module is deployed as part of its parent script — so
`wmill sync push --skip-scripts` still pushed the script whenever one of its
modules changed, and pull still overwrote them locally. Harmless while a module
was a rare helper file; every file of a dbt project is one of these now.
* docs(dbt): a dynamic descriptor's ownership stays the deploy's
* fix(dbt): read the run out of a failure whose message has braces of its own
`parseDbtRun` anchored on the FIRST `{` in the error message and parsed
everything after it. The worker appends the structured result after the error
text, and dbt's errors carry braces — a Jinja template, the compiled SQL, an
adapter's own JSON — so the failures most worth reading were the ones whose
summary and per-node outcomes the run page dropped. Every brace is tried now,
bounded, and the first that parses as a run wins.
Pins the EE revision that gives the agent publish endpoint the deleted-version
guard the SQL path takes: deletion is soft, the foreign key still accepts graph
rows, and the pinned graph query serves non-live versions, so an agent finishing
during a delete put a deleted project's model SQL back on screen. The query is
byte-identical to `persist_ingest`'s, so the offline cache already covers it —
verified with a full-EE `SQLX_OFFLINE=true` check.
* fix(dbt): seed a project when a modular draft switches to dbt
`seedDbtProject` returned whenever the draft carried any module at all, so a
modular script holding a `helper.ts` reached dbt with none of what dbt needs:
the project view is read-only, and the worker refuses a bundle without
`dbt_project.yml`, so that draft could neither run nor deploy. Keyed on the
project file now, and the seed goes in under whatever is already there — the
previous language's helpers are inert to dbt and the user's to remove.
Also records this runtime's schema in `backend/summarized_schema.txt`: the
`table` asset kind, the `dbt` script language, the five dbt tables and the
`materialization_status` enum the progress table uses.
* docs(dbt): move the pipeline-membership rationale out of the deploy path
* fix(dbt): gate a pinned run's model SQL on the version it belongs to
The `EXISTS` against `script` is the only thing standing between a share-link
viewer and the project's source, and it matched the workspace and path alone.
`extra_perms` is a grant on a ROW: archive a version that granted someone
access, recreate the path with narrower permissions, and that stale grant
satisfied the probe while the query returned the NEW version's `raw_code`. Both
probes name the hash now. The regression test drives exactly that shape and
fails without it, returning `select 2` to a caller granted only on the archived
version.
* fix(dbt): keep a delimiter an identifier escaped by doubling
Every dialect these relations come from escapes its own delimiter by doubling
it, and both split functions closed the quoted section on the first half and
reopened on the second: `"schema"."a""b"` came out as `a.b`. The manifest keeps
the real spelling, so the run wrote its per-model status and row counts under an
asset path no graph node has — the node simply never moves, which is the failure
mode this splitter exists to prevent.
Fixed in the worker and in its frontend mirror, which have to agree, with a case
per delimiter on both sides.
* fix(dbt): key retry state by the caller, not only by the principal it runs as
An `on_behalf_of` script executes every caller's job as its owner, so
`permissioned_as` names one principal for all of them and the retry state — the
durable row and the worker-local generation both — collapsed onto a single
entry. After one caller's run failed, the next could submit `dbt_command: retry`
and resume it: their arguments replayed against the warehouse, and handed back
through `invocation_args`. Nothing else separated them, and on an agent worker
the local directory is the whole boundary.
`created_by` joins the key in both places. For an ordinary script it changes
nothing — `permissioned_as` is already that caller — and a run that was itself
superseded was never resumable anyway.
Includes the offline cache for the four changed queries and the three the
pinned-graph regression test added last commit, which had none: `prepare`
without `--all-targets` does not compile test targets, so CI's
`SQLX_OFFLINE=true ... --all-targets` would have failed on them.
* fix(dbt): compare the schema too when reporting a relation that moved
`relationDrift` compared the leaf name alone, and the move it exists to report —
a profile repointed at another schema, which a later run then writes into the
version's graph — leaves every model's name exactly where it was. So the one
case that reliably produces a graph naming relations this run did not write was
the one case the notice stayed silent for.
The schema segment joins the comparison, qualified against qualified: an
unqualified one means the target's own database, which the relation names
anyway, so comparing that would report a move on every node.
* fix(dbt): bound the retry state now that it is keyed per caller
Keying by `created_by` fixed one caller resuming another's run and created a
growth problem doing it: a shared `on_behalf_of` script kept one row and one
worker directory for everyone who had ever run it, and the generation prune only
bounds files INSIDE a directory.
Three bounds, none of them new machinery. A run with nothing failed or skipped
saves nothing — `dbt retry` builds from those nodes alone, so that state could
only ever be refused — while still clearing what the previous run left, since
its failures are no longer what last happened here. The rows expire on the same
30-day clock as a run snapshot, swept per path by the prune every dbt job
already spawns. And the worker-local directories are swept there too, by the age
of the pointer a save rewrites, because their digest names neither the script
nor the caller.
* docs(dbt): the retry state is worker-affine only on an agent worker
* fix(auth): only the server may set a token label that names a user
`create_token_internal` wrote `NewToken.label` verbatim, and the auth layer reads
some labels as an IDENTITY: `username_override_from_label` maps
`ephemeral-script-end-user-<name>` to exactly `<name>`, which then becomes
`created_by` on every job that token pushes. The label is free-form request
input, so any member could mint a token that speaks as somebody else — the shape
`require_job_read_access` already works around when it refuses to trust
`username_override` and falls back to an RLS probe, and the one that made dbt's
retry-state key (`created_by`) forgeable for an `on_behalf_of` script.
The labels are refused where request input enters: the member-facing
`tokens/create`, and `impersonate`, which names its subject in
`impersonate_email` and has no business renaming the caller too. The legitimate
producers are unaffected — a job's own token comes from `create_token_for_owner`
in the worker, and native triggers and app-embed tokens build their labels
themselves rather than accepting one.
`Ephemeral lsp token` stays allowed: its override is the fixed sentinel `lsp`,
not a name the caller chose, and the editor mints exactly that label through this
endpoint for its language server. The test pins the two lists together, so an arm
added to `username_override_from_label` that lets a label choose a name fails
until it is reserved too.
* Revert "fix(auth): only the server may set a token label that names a user"
This reverts commit
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25084170d7 |
feat: make job subprocess oom_score_adj configurable (#10443)
* feat: make job subprocess oom_score_adj configurable via JOB_OOM_SCORE_ADJ Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: warn when JOB_OOM_SCORE_ADJ leaves no gap over the worker's own score Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * style: drop em dash from JOB_OOM_SCORE_ADJ doc comment Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: warn on any oom_score_adj gap too small to steer the OOM killer Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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bd7156682d |
fix: keep native triggers attached when a runnable is renamed (#10432)
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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dda59767c2 |
feat: stamp webhook trigger_kind on token-driven job runs (#10431)
* feat: stamp ui vs webhook trigger_kind on direct job runs * fix: gate ui trigger kind on min worker version and dedupe display names * docs: state that the ui trigger kind attributes rather than proves * refactor: fold the trigger fallback into one trigger_or_fallback helper * feat: hold trigger_kind as a tolerant label on the worker paths * chore: refresh the sqlx offline cache for the trigger_kind label queries * chore: update ee-repo-ref to 7de7daff5eed410e0c815ad6b292d2b4303f02f2 This commit updates the EE repository reference after PR #700 was merged in windmill-ee-private. Previous ee-repo-ref: 974ab910d9a30c5565e1198ee312acc6d11239f3 New ee-repo-ref: 7de7daff5eed410e0c815ad6b292d2b4303f02f2 Automated by sync-ee-ref workflow. * fix: keep the API job structs tolerant of unknown trigger kinds too * chore: point ee-repo-ref at the merged EE main --------- Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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68a52f45a7 | refactor: deprecate username_to_email in favor of WM_END_USER_EMAIL (#10429) | ||
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3716a71fd7 |
fix: credit the token owner instead of the token label in the audit trail (#10423)
* fix: credit the token owner instead of the token label in the audit trail Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: address review findings on token-owner audit attribution Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: carry token-label provenance explicitly instead of inferring it Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: point ee-repo-ref at the companion branch Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: trust only non-forgeable token labels to name the acting entity Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: reject reserved system-token labels at token creation Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: narrow the token-label guard to server-minted namespaces Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: add the provenance field to the remaining ApiAuthed literals Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: stop trusting the email- label, which no mint produces Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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e0d6dc1a19 |
fix: harden flow-orchestration token refresh (mint from job_perms) (#10419)
* fix: harden flow-orchestration token refresh (mint from job_perms) * refactor: address review nits on flow token refresh |
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318c9f0073 |
feat(git-sync): dedicated base url for GitHub webhook delivery (#10411)
* feat(git-sync): let GitHub webhooks register a dedicated base url Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): validate the webhook base url and apply it on change Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: pin ee ref for the git-sync webhook base url change Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): validate and reconcile the webhook base url on every write path Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): route every declarative settings writer through the same rules Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): let the reconciler own the webhook field write-back Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): make the webhook base url validators agree across UI and server Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): lock the workspace row across git_sync read-modify-writes Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * test: pin the webhook base url validator to its server counterpart Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): retry a failed webhook move on every re-apply of the setting Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): retry pending webhook moves on every declarative re-apply Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): reject non-string webhook base urls and bound the sweep Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): reject credential-bearing webhook base urls Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): keep credentials out of webhook base url validation errors Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): redact through the last authority @ when reporting a bad url Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): stop echoing unparsed webhook base urls instead of scrubbing them Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): never echo a submitted webhook base url in validation errors Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): keep the submitted scheme out of validation errors Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor(git-sync): drop the webhook sweep, surface stale receivers in settings Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): refresh the stale webhook list when settings are saved Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): mark registered_url nullable and drop the duplicated field error Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: pin ee ref after dropping the reconcile lock and CAS Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(git-sync): refresh the stale webhook list on category saves too Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: update ee-repo-ref to aa05ca8e97fc8265cd724753a80db37f83243254 This commit updates the EE repository reference after PR #695 was merged in windmill-ee-private. Previous ee-repo-ref: 3e6cd9226b68707233ae2434511fe5131dce808b New ee-repo-ref: aa05ca8e97fc8265cd724753a80db37f83243254 Automated by sync-ee-ref workflow. --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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81b23a2ba0 |
feat: make the fork lineage the only deploy relationship (#10410)
* feat: make the fork lineage the only deploy relationship `workspace_settings.deploy_to` (2023) and `workspace.parent_workspace_id` (2025) both expressed "which workspace does this one deploy into". Fork creation and dev-workspace attach seeded both, but nothing kept them in agreement, so every reader picked one and they disagreed. Drop `deploy_to`. A migration folds surviving pairs into the lineage: a sole claimant on a target with no dev workspace becomes that target's dev workspace and keeps its own job tags, while many-to-one pairs become plain forks. Pairs that the lineage cannot express -- dangling target, self-reference, chain, mutual -- are reported and left unlinked. Job tags were never lineage-aware: `per_workspace_tag` mapped any parented workspace to its parent while `$workspace` interpolated the raw id, so a fork running a script tagged `<tag>-$workspace` produced a tag no worker serves and the job queued forever. Both paths now resolve to the nearest ancestor whose id an admin would provision workers for. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: preserve unconvertible deploy links and sweep tag caches on reparent Review findings on the deploy_to unification: - convert chains instead of discarding them, and keep whatever the lineage cannot express in workspace_deploy_to_unmigrated so the down migration can restore it - ignore soft-deleted workspaces when choosing between a dev workspace and a plain fork; an archived claimant was demoting live pairs - mirror attach_dev_workspace's git-sync strip, which the migration skipped - sweep the tag cache over whole subtrees on rename and delete: tag resolution now walks ancestors, so a nested fork kept a tag nothing serves - call a dev workspace a dev workspace in the settings copy - redirect a root away from ?tab=deploy_to instead of rendering an empty target Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: detect lineage cycles and record archived links in the deploy_to migration Second review round on the unification: - detect cycles over the lineage as it would exist after conversion, not over the deploy_to graph alone: a root whose target was one of its own forks closed a loop that no deploy_to edge revealed - record an archived source's link instead of filtering it out entirely, which dropped it with the column - treat a fork whose deploy_to merely repeats its parent as redundant rather than reporting every pre-existing fork as unmigrated - read the row count from the lineage update rather than the git-sync one - sweep the tag cache when archiving a dev workspace, the last site that mutates is_dev_workspace without one Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: resolve $workspace on preprocessed flow tags regardless of $args Third review round on the unification: - a flow tag containing only `$workspace` skipped interpolation entirely on the preprocessed path, because the branch that ran it keys on `$args`. The raw tag was written back and named a queue no worker serves. Resolve `$workspace` before the branch and leave `$args` to it. - record the new table's foreign key in the schema summary - describe what the archive tag sweep actually does: the dev flag is cleared for any archived workspace, which is why it is unconditional Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the deploy_to leftovers table only when it holds something * fix: sweep tag caches on archive only where the dev flag actually changes * feat: broadcast lineage changes and walk ws_specific ancestors only - propagate tag-cache invalidation across processes over notify_events: the cache is per-process, so replicas kept resolving stale lineage for the TTL. The listener clears the whole cache rather than tracking ids, since a single mutation invalidates an unbounded set of descendants and lineage changes are rare admin actions. - narrow list_ws_specific_versions to ancestors: walking down as well made a root fan out over its entire live fork subtree, and each member costs an identity lookup plus an RLS switch and probe. Ancestors are bounded by the fork depth limit. - probe the leftovers table unqualified so rollback restores on a PG_SCHEMA install, where search_path is not public - drop the nativets client method for the removed edit_deploy_to endpoint Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: let a prod see its dev workspace in ws_specific, and stop the walk oscillating Descending into plain forks made a root fan out over its whole live fork subtree, but a dev workspace is the paired editable environment rather than a throwaway copy, so a prod should still see it. There is at most one per parent and attach rejects nested dev chains, so that edge stays bounded. The edges run both ways, so the recursion never converged: it bounced parent<->dev until the depth cap on every call, 33 rows for a two-member set. A visited-path guard ends the walk when nothing new is reachable. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep dev pairings unnested, gate the delete broadcast, cover the ws_specific walk Fifth review round: - a root that already owns a dev workspace no longer converts: linking it under its deploy target would leave that dev nested beneath a fork, the shape attach_dev_workspace refuses to create. The link is preserved instead. - broadcast a lineage change on delete only when descendants are orphaned. Deleting a leaf, which ephemeral fork churn does constantly, changes nobody else's resolution and was making every replica drop its whole tag cache. - call list_ws_specific_versions in a test. plpgsql defers everything past a raw parse to the first call, so replaying the migration only proved it parses. - use unwrap_or_default for the descendant sweeps, which run after the transaction has committed; a transient failure must not fail the request - trim the traversal comment to the four-line limit Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: cache the renamed tally query and clear instance alerts on conversion The integration test's query was never cached: `cargo sqlx prepare` without --all-targets skips test targets entirely, and renaming its fixture workspace changed the query text. Regenerated with --all-targets --features all_sqlx_features,private, which is what lets the EE-gated otel test compile. Also from review: - clear error_handler_fallback_to_instance_alerts on converted workspaces. Dispatch ignores it once a parent exists, but the settings page keeps submitting the stored true, which the API rejects on a fork. - restore the schema summary row to the file's name: columns format and put it back in alphabetical order Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: never cache an unresolvable tag workspace, and unadvertise the removed endpoint - lookup_tag_workspace cached a "no row" result as self-resolution. A rename resolves the new id before its row lands, so a fork could be pinned to its own wm-fork-* id -- which nothing serves -- for the whole TTL, and its schedules kept re-pushing onto that dead tag. Fall back for the call without caching, matching how the error path already behaved. - change_workspace_id swept its children but never itself. Sweep the new and old ids and broadcast unconditionally, since a rename always changes lineage. - openapi-deref.{json,yaml} are served to clients via include_str!, so they were advertising edit_deploy_to after it started 404ing. The audit-action enum keeps the entry: historical rows still carry it. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: align the served YAML spec with the JSON one and correct two comments - the YAML deref lost the removed path but kept deploy_to on get_settings, so the two served specs disagreed. Both are now identical. - the rename-sweep comment blamed cached-unresolvable lookups, which the same commit stopped caching. The real reason is that workspace ids are reclaimable, so a new id can carry a previous occupant's resolution. - the instance-alert comment claimed the settings page submits the stored true and gets a 400. It hides the option on a fork and sends false; the hazard is the value outliving the pairing and re-enabling alerts after a detach. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore: update ee-repo-ref to 82da6cb2bafeda18acd6b70c599013a12117ecb0 This commit updates the EE repository reference after PR #694 was merged in windmill-ee-private. Previous ee-repo-ref: f9ddf6a75aa13d1c13a3d7216a361a96f75ca435 New ee-repo-ref: 82da6cb2bafeda18acd6b70c599013a12117ecb0 Automated by sync-ee-ref workflow. * fix: grant the deploy_to preservation table to the windmill roles * test: drop the one-shot migration tests, keep the ws_specific execution guard The two conversion tests replayed the migration against the fully-migrated schema, which is not how it runs -- in production it runs mid-sequence against the schema as of that point. A later migration touching workspace or workspace_settings would break them without breaking anything real, and sqlx checksums already freeze a released migration. They earned their keep finding the archived-claimant and nested-dev cases during development; there is nothing left for them to guard. list_ws_specific_versions is different: it is live, no caller exercises it, and plpgsql only parses a function body until first call. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: invalidate a reclaimed fork id cluster-wide without flushing every entry Gating the delete broadcast on orphaned descendants stopped leaf churn flushing every replica, but fork ids are reclaimable: the deleting process invalidated locally while every other replica kept the old parent for the TTL, so a job pushed in a recreated fork routed to the previous parent's tag. The broadcast payload now carries meaning. A workspace id drops that one entry, used for leaf deletion where exactly one id changed what it denotes. The `*` sentinel drops everything, used for attach, detach, archive, rename and deletions that orphan descendants -- reshaping a subtree no single id names. Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: name the right broadcast for each invalidation case * docs: attach does invalidate the tag cache; the resolver walks the whole chain --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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faa2aaf214 |
fix: truncate strings on char boundaries to avoid panics on multibyte input (#10390)
* fix: truncate strings on char boundaries to avoid panics on multibyte input * fix: add borrowed truncate_chars helper and pin ee ref for audit fix * docs: clarify truncate_with_ellipsis length contract * chore: update ee-repo-ref to bbfb0de0dc9fa06130a231eb10c64f60238d1bbd This commit updates the EE repository reference after PR #690 was merged in windmill-ee-private. Previous ee-repo-ref: de15aeff12daf457711f5b981de691418484535c New ee-repo-ref: bbfb0de0dc9fa06130a231eb10c64f60238d1bbd Automated by sync-ee-ref workflow. --------- Co-authored-by: windmill-internal-app[bot] <windmill-internal-app[bot]@users.noreply.github.com> |
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3b95c947d4 |
test(wac): pin the failure record with one corpus both SDKs read (#10385)
* test(wac): pin the failure record with one corpus both SDKs read Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * test(wac): add the behaviour matrix that verified the failure record Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs(wac): record how to exercise an unreleased SDK change Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): guard the whole extra pair, not just its value Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): never rehash an untrusted extra key Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): walk only a real __dict__ when collecting extra Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs(wac): name the divergence the corpus cannot pin Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore(wac): state the extra-encoding constraints in four lines Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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fbf9f04e10 |
fix: surface the real postgres error when data table migrations fail (#10371)
* fix: surface the real postgres error when data table migrations fail Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: address review nits on the data table migration error fix Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: name the exact grant a data table migration needs Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: quote both identifiers in the data table grant hint Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * feat: add a data table connection and privilege check to workspace settings Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: report data table privileges from the capability fields, not the grant list Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: read grant targets from the server and drop the public schema guess Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: render the search_path suggestion server-side and pin the granted database Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: key the connection check on request identity, not the data table name Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: declare the data table check schema field nullable and required Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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aeaea57ca1 |
fix(wac): one failure record for tasks and steps, in every round (#10368)
* fix(wac): hand a caught task and step failure the same shape in every round Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * refactor(wac): decide the failure record once, server-side Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): leave a legacy SDK's failure marker untouched, and ship wacError to jsr Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): carry a step's custom error fields, and bound the stack in bytes Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): keep a step's extra fields serializable and bounded Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): record a non-Error throw the way a task records it Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): guard the last unguarded throw site in the step marker Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): make failure reporting non-throwing on both clients Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): take the step traceback the way the executor takes it Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): contain the reads that happen before a failure is checkpointed Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): fall back to the checkpointed marker, not the live one Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): keep non-finite fields and hostile proxies out of the checkpoint path Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix(wac): keep the snapshot that passed the serialization probe Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * chore(wac): keep the failure-record module's surface to what is used Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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a0798a3d82 |
refactor(flows): make the flow-value round-trip preserve display-only fields in one place (#10382)
Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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1b6b2aa859 |
fix(datatable): provision the replication user on managed postgres (#10375)
* fix(datatable): provision the replication user on managed postgres * fix(datatable): serialize replication user provisioning and sync config schema * fix(datatable): keep replication cleanup best-effort and self-heal a null password |
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f9d5da11b7 |
feat: allow changing an account email in the superadmin settings (#10355)
* feat: allow changing an account email in the superadmin settings * fix: cover slack_email and usage rows, and scope job rewrites to the queue * fix: compare the destination email case-insensitively * fix: only warn about the consequences once the email is edited * docs: warn that changing an account email is a last resort * fix: repoint app policies and raw-email permissioned_as, reject self-change * fix: repoint folder default rules and guard the varchar(55) job column |
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78e115bee5 |
fix: datatable full schema hangs behind a transaction-pooling postgres proxy (#10352)
* fix: datatable full schema hangs behind a transaction-pooling postgres proxy * test: pause the clock in the pg connection shutdown test |
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4d3ff0299f |
feat: mark failed jobs as resolved so handled failures stop showing red (#10319)
* feat: mark failed jobs as resolved so handled failures stop showing red Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: constrain auto-resolve to the proven retry chain and honor resolved filter everywhere Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: apply resolved filter to queue-union, concurrency and delete paths, bound note Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: sweep resolutions on workspace delete, verify helper args, enforce UI limits Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: count resolution note in characters on both sides of the API Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: skip the queue lookup for cancel-all under the resolved-only filter Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: converge retry auto-resolution from either commit order, keep notes on re-resolve Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: correct the idempotency claim on the retry auto-resolve sweep Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * feat: gate resolution notes and attribution behind enterprise, add note popover Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: hide resolution from operators, exclude flow steps, enforce EE licence at runtime Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: add job_resolution.automatic to the summarized schema Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: preserve stored attribution when re-resolving without a valid licence Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * docs: condense the attribution-preservation comment to four lines Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: validate resolution notes by code point instead of a UTF-16 maxlength Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: keep the resolution popover open when a note is rejected Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * feat: offer to resolve the original failure after a successful re-run Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: verify supersession server-side and stop re-runs overwriting notes Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: apply tag scope to the superseding run Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> * fix: exclude obscured cross-workspace runs from resolution actions Co-Authored-By: Claude Opus 5 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 (1M context) <noreply@anthropic.com> |
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9cef724ff2 |
feat: bind WAC approval urls to a named wait_for_approval step (#10317)
* feat: bind WAC approval urls to a named wait_for_approval step Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: reject duplicate WAC approval step keys instead of renaming them Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: reject WAC approval links minted for a step that is not awaiting approval Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: bind WAC approval links to the awaiting step and stop step key aliasing Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: reject empty approval keys and scope minted-key writes to the workspace Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: enforce WAC approval binding at consumption and reject colliding keys Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: make WAC approval binding and collision checks atomic, harden TS step keys Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: decrement WAC suspend atomically instead of from a pre-lock snapshot Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * chore: add sqlx cache entry for the atomic WAC suspend decrement Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: omit empty approver param from python get_approval_urls Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * test: pin the suspend-snapshot decrement and the colliding-mint race Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * test: drop the suspend-snapshot interleave test, it cannot both be stable and discriminate Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> * fix: reject step keys that cannot be minted as a URL path segment Co-Authored-By: Claude Opus 5 <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 5 <noreply@anthropic.com> |
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2143d45815 |
fix: WAC wait_for_approval reads its own approval result, not the first (#10314)
In prepare_checkpoint_for_resume the resume_job lookup took the oldest row
for the job (ORDER BY created_at ASC LIMIT 1), so a WAC workflow with
multiple sequential wait_for_approval() calls always read the first
approval's result for every step. Consumed rows are never deleted, so the
2nd and 3rd approvals inherited the 1st's result (all showed approved:true
even if the 2nd was cancelled and the 3rd timed out).
Track the resume_job row ids consumed by earlier approval steps in the
checkpoint (consumed_resume_ids) and exclude them, so each step reads its
own row. This is channel-agnostic and needs no clock reasoning:
resume_job.resume_id is only hash(step_key) for the inline resume URL; the
approval page, the in-run approve button, Slack, Teams and resume-as-owner
all store a random resume_id, so filtering by resume_id would drop those
approvals and return approved:false even for a legitimate approval. A
timed-out step matches no row and still falls to the else branch returning
{approved: false}.
Adds a regression test driving three sequential approvals (approved,
cancelled, timed-out) against Postgres.
Fixes WIN-2241
Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com>
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992ed01244 |
fix: do not apply workspace display name on git-sync pull (#10308)
* fix: do not apply workspace display name on git-sync pull The workspace display name is stored in settings.yaml and was re-applied on every pull via changeWorkspaceName. Because settings.yaml is shared across the branches of a repo, a workspace could have its name overwritten by another workspace that syncs the same repo. Keep name in settings.yaml for reference (written on push) but stop applying it on pull. Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * docs: consolidate workspace-name rationale to one comment (review nit) Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> * chore: bump git-sync hub scripts to windmill-cli 1.769.1 Repin GIT_SYNC_PULL_SCRIPT_PATH (28795->28808), LATEST_GIT_SYNC_SCRIPT_PATH (28796->28809) and frontend gitInitRepo to the hub scripts bundling windmill-cli@1.769.1, so backend automatic git pulls no longer apply the workspace display name (the CLI fix in this PR only reaches auto-pull via the pinned hub script bundle). Co-Authored-By: Claude Opus 4.8 (1M context) <noreply@anthropic.com> --------- Co-authored-by: Claude Opus 4.8 (1M context) <noreply@anthropic.com> |