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Author SHA1 Message Date
martmull 67fa0cc93c Fix flaky webhook delivery integration test (fixed sleep -> poll) (#22699)
# Context

Part of a CI flakiness sweep. `webhooks.integration-spec.ts` › "should
deliver webhook successfully when safe mode is disabled" intermittently
fails with `expect(receiver.receivedPayloads.length).toBe(1) ...
Received: 0` on unrelated PRs (example: run 28959576750, shard 3).

# Root cause

The test asserted delivery after a fixed 100ms sleep. Delivery actually
crosses: a fire-and-forget `EventEmitter2.emit` (the GraphQL response
returns before the job is even enqueued) → BullMQ hop 1
(`CallWebhookJobsJob`, which also recomputes the just-invalidated
`flatWebhookMaps` cache) → BullMQ hop 2 (`CallWebhookJob`) → HTTP POST
to the in-test receiver. Two Redis round trips plus a cache rebuild
routinely exceed 100ms on loaded CI runners. The global
`waitForAllJobsToFinish` only runs in `afterEach`, after the assertion.

# Fix

- Poll the receiver with the existing `expectEventually` helper (30s
deadline, 100ms interval) instead of sleeping, and give the test an
explicit 60s timeout (suite default is 20s). Worst case the test fails
slower; it can no longer fail while delivery is merely in flight.
- Bonus bug found during adversarial review of this fix: the `finally`
cleanup deleted config key `HTTP_TOOL_SAFE_MODE_ENABLED` while the test
creates `OUTBOUND_HTTP_SAFE_MODE_ENABLED`, silently leaving outbound
safe mode disabled in the DB for every suite that runs after this one.
Fixed the key.

Duplicate-delivery risk was checked: `CallWebhookJob.handle` never
throws (errors swallowed), so `retryLimit: 3` can't produce a second
payload that would break `toBe(1)`.

Test-only change, 1 file, +15/-9.

---
_Generated by [Claude
Code](https://claude.ai/code/session_01AtD2wWm3EthV6t3Hs31QyB)_

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2026-07-09 10:58:07 +02:00
martmull 0ea0c23556 refactor(app-marketplace): rename featured to vetted (#22674)
## What

Renames the application-registration "featured" flag to "vetted" across
the backend, frontend, GraphQL schema/DTOs, and the marketplace UI.

"Vetted" better describes what the flag actually does today: it marks an
app as reviewed and approved by the Twenty team (a trust signal), rather
than "featured" which reads as spotlighting/promotion. The admin toggle
description was already "Mark this app as reviewed and approved".

## How

- Renamed `isFeatured` -> `isVetted` on the `ApplicationRegistration`
entity, DTOs (`MarketplaceApp`, `MarketplaceAppDetail`,
`UpdateApplicationRegistrationPayload`), services, GraphQL fragments,
and the settings/admin UI (labels: "Featured" -> "Vetted", "Featured
only" -> "Vetted only", etc.).
- Renamed the `MARKETPLACE_FEATURED_APPLICATIONS` constant/file to
`MARKETPLACE_VETTED_APPLICATIONS`.
- Regenerated GraphQL client artifacts (`generated-metadata`,
`generated-admin`, `twenty-client-sdk`).

### Database

The `isFeatured` column is renamed in place to `isVetted` via a single
2.20 fast instance command (`ALTER TABLE ... RENAME COLUMN`). No new
column, no data-copy backfill.

- Since all 2.19 commands (including the existing `isFeatured` backfill)
complete before any 2.20 command runs, the rename carries over the
values that backfill set.
- The entity uses `@WasRenamedInUpgrade` so the upgrade-aware layer
queries the old column name until the rename step runs during an
upgrade.

## Testing

- `nx typecheck` and `nx lint:diff-with-main` pass for twenty-server and
twenty-front.
- Ran `database:reset` on a fresh dev DB: the 2.19 `isFeatured` backfill
runs first, then the 2.20 rename; the column ends up as `isVetted` (and
`isFeatured` no longer exists), values preserved.
- Booted the server: the `@WasRenamedInUpgrade` decorator validates
against the upgrade sequence, and GraphQL introspection confirms all
four types expose `isVetted` and none expose `isFeatured`.
- Ran the three `graphql:generate` configs and the SDK metadata client
generator so the committed generated files match the generator output
(field ordering included).

## Notes

- The `api-breaking-changes` check flags the removal of the `isFeatured`
GraphQL field — that is expected and inherent to this rename.
- Translation catalogs (`locales/`) are intentionally not touched here
since they are managed via Crowdin; new English strings render via
Lingui's default-message fallback until translated.
2026-07-08 16:41:58 +00:00
Paul Rastoin 163c96c2e5 Validate range version app dev sync (#22625)
# Introduction
Also now validating the workspace version when running a sync manifest

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2026-07-08 16:37:42 +00:00
martmull b733a79821 feat(server): support server-scoped files via nullable workspaceId on file table (#22587)
Part of the app settings architecture cleanup
(twentyhq/core-team-issues#2456) — PR 1 of the server-level documents
plan, reworked after the revert of #22560 (#22579). Same capability,
different shape: **no new entity** — server-level documents live in the
existing `file` table with a nullable `workspaceId`.

## Problem

All file storage is workspace-scoped (`FileEntity.workspaceId NOT NULL`,
`{workspaceId}/{app}/…` storage keys). Server-level data like
application-registration manifests and tarballs for ownerless catalog
registrations has no first-class home, forcing raw-driver bypasses
(`DefaultAiCatalogService`, prototype #22556).

## Changes (core storage layer only — no HTTP serving, no GraphQL
exposure)

**`FileEntity` gains server scope** (mirrors `KeyValuePairEntity`, which
already supports both instance-level and per-workspace rows):
- `workspaceId` uuid becomes **nullable** — NULL means server-scoped;
the entity no longer extends `WorkspaceRelatedEntity` and declares its
columns directly
- `applicationRegistrationId` nullable FK (`onDelete: CASCADE`) —
registration-owned documents follow their registration
- ownership checks: `workspaceId IS NOT NULL OR
applicationRegistrationId IS NOT NULL` and `workspaceId IS NULL OR
applicationRegistrationId IS NULL` — every row has exactly one owner
- `IDX_FILE_APPLICATION_REGISTRATION_ID_PATH_UNIQUE` UNIQUE
(`applicationRegistrationId`, `path`) — mirrors the workspace
unique-constraint pattern; workspace rows are exempt via their NULL
`applicationRegistrationId`

**New `ServerFileStorageService`** (`file-storage/services/`, exported
from the global `FileStorageModule`; `FileStorageService` moved
alongside it):
- storage keys
`server/{fileFolder}/{applicationRegistrationId}/{resourcePath}` — the
registration segment is injected by the service itself, so paths cannot
collide across registrations; scope-validation util mirroring
`validateStoragePathIsWithinWorkspaceOrThrow`; new `ServerFileFolder`
enum in twenty-shared
- `writeServerFile` (upsert on (`applicationRegistrationId`, `path`) +
driver write; throws on failure), `readServerFile`/`readServerFileById`
(missing row or bytes surfaces `FILE_NOT_FOUND`),
`checkServerFileExists`, `deleteServerFile`/`deleteByServerFileId`
(bytes best-effort, row authoritative),
`deleteByApplicationRegistrationId`
- rows are accessed through a plain repository pinned to `workspaceId:
IsNull()` on every query; workspace-file code paths still go through
`WorkspaceScopedRepository`, which never sees NULL rows

**Null-safety ripples** (workspaceId is now `string | null`):
- `WorkspaceScopedEntity` bound widened to `workspaceId: string | null`
(the wrapper always filters with a concrete id)
- `list-and-delete-orphaned-workspace-entities` now skips `workspaceId
IS NULL` rows — previously `NOT EXISTS` would have flagged server rows
as orphans and deleted them
- `PendingFileCleanupService` sweeps only `workspaceId IS NOT NULL`
rows; `application-package-fetcher` pins its tarball lookup to workspace
rows (tarball migration to server scope is a follow-up PR)

**Migration**: `allow-server-scoped-file` ships as a **2-20 fast
instance command** (2.20.0 is current since #22639; re-slotted from 2-19
per review). Command runs are tracked by name, so instances that already
executed the 2-20 `standardOverrides` drop command still pick this one
up. Its realistic timestamp sorts before that drop command's fabricated
`1825000000000`, which the
`ci:allow-upgrade-command-timestamp-exception` label covers.

## Next PRs in the plan

- PR 2: HTTP serving + token type for server files
- PR 3: application-registration manifests stored as versioned server
files (rework of draft #22556)
- PR 4 (optional): registration tarballs migrate to server scope

## Verification

- New spec `server-file-storage.service.spec.ts` (traversal table,
upsert conflict semantics, row-before-bytes reads, best-effort byte
deletion, registration cascade) + scope-validation util spec; affected
suites all green
- Typecheck (server + shared), `lint:diff-with-main`, full `oxfmt
--check src/` on both packages clean
- Fresh `database:reset` on the re-slotted branch: the 2-20 command
executes, generator then reports **no schema drift**; both ownership
checks and the composite unique verified live (dual-owner insert and
duplicate registration+path both rejected)
2026-07-08 11:56:24 +02:00
Paul Rastoin 628ab153a8 App installation workspace version check engines constraint (#22613)
## What

Makes the app-installation version gate **workspace-scoped**. App
installation now validates a manifest's `engines.twenty` requirement
against the version the **target workspace has actually finished
upgrading to**, instead of the instance/server's inferred version.

## Why

The server binary and a given workspace's migration state can diverge.
In a multi-workspace deployment the instance can already report version
`X` while an individual workspace still hasn't completed its
workspace-scoped upgrade commands for `X` (it's mid-upgrade or a
migration failed). Gating on the instance version let an app that
requires `X` install into a workspace whose schema/metadata is
effectively still at `X-1`, which can break the app. The requirement
should be checked against what the *workspace* has completed, not what
the server reports.

## How

- **`UpgradeStatusService.getWorkspaceCompletedVersion(workspaceId)`**
(new): resolves the last fully-completed upgrade version for a workspace
by reading its upgrade cursor and walking the upgrade sequence:
- Returns the cursor's version when the cursor sits on the **last step
of its version segment** and its status is `completed`.
- Otherwise walks backwards to the previous fully-completed version
segment.
- Returns `null` when the cursor is missing, not found in the sequence,
or otherwise uninterpretable.
- **`ApplicationVersionValidationService`**:
- Adds `validateWorkspaceCompatibility({ requiredServerVersion,
workspaceId })`.
- Extracts the shared semver logic into a private
`validateVersionAgainstRange({ version, requiredVersionRange, scope })`
and makes error messages scope-aware (workspace vs. instance).
`validateServerCompatibility` is preserved and now delegates to it.
  - New failure reason `INVALID_WORKSPACE_VERSION`.
- **`ApplicationInstallService`** now calls
`validateWorkspaceCompatibility` with the `workspaceId` instead of
`validateServerCompatibility`.
- **Exception plumbing**: new
`ApplicationExceptionCode.INVALID_WORKSPACE_VERSION`, surfaced as a
`UserInputError` (`BAD_USER_INPUT`) with a user-friendly message ("This
workspace's upgrade state could not be determined…"). The
tarball/registration path maps it onto the existing
`INVALID_SERVER_VERSION` registration code.

## Notes

- **Publishing (app registration) is intentionally not
workspace-gated.** The tarball/registration path
(`ApplicationTarballService`) still uses the instance-level
`validateServerCompatibility` check, not the new workspace-scoped one.
Publishing an app is not tied to any particular workspace's upgrade
state, so there is no workspace version to check at that point — the
workspace-completed-version gate only applies when installing an app
into a specific workspace.

## Testing

- Unit tests for `ApplicationVersionValidationService`
(`validateServerCompatibility` + new `validateWorkspaceCompatibility`)
covering: no requirement, invalid semver range, satisfied/unsatisfied
ranges, and the uninterpretable-cursor case.
- Unit tests for `UpgradeStatusService.getWorkspaceCompletedVersion`
against a three-segment mock upgrade sequence (multi-command version,
instance-only version, workspace-terminated version).
- New integration suite
`failing-app-installation-workspace-version.integration-spec.ts` (+
snapshots) exercising the real install flow: rejects installation when
the workspace hasn't completed the required version, and when the
workspace's upgrade cursor can't be interpreted. Adds a
`create-app-tarball.util.ts` test helper.
2026-07-07 10:05:06 +00:00
Paul Rastoin 5dc9d7ab36 fix(server): make all view children reparentable across a workspace migration sync (#22600)
## Summary

Uniformizes the workspace migration engine so **every** view child
entity — `viewField`, `viewFieldGroup`, `viewGroup`, `viewFilter`,
`viewSort`, `viewFilterGroup` — can be reparented from one view to
another within a single manifest sync, including when the previous
parent view is deleted in the same sync.

### Context

When an app manifest deletes a view and reparents its children onto
another view in the same sync (e.g. replacing a custom `FIELDS_WIDGET`
view with a standard one), the sync failed with a builder validation
error `View field to update parent view not found`. Root causes:

1. `viewField`, `viewFieldGroup` and `viewGroup` had `viewId.toCompare:
false`, so the diff never detected the parent-view change and never
emitted a reparent update (the already-reparentable siblings
`viewFilter`/`viewSort`/`viewFilterGroup` had `toCompare: true`).
2. `validateFlatViewFieldGroupUpdate` resolved the *old* parent view (it
ignored the update patch), inconsistent with the other view-child
validators.
3. Once the builder no longer errors, the runner would fail silently:
`view.delete` ran **before** the child reparent updates, and `viewId` is
`onDelete: CASCADE`, so the old view's deletion cascade-deleted the
children before they could be reparented (silent data loss, since
`repository.update` on a missing row is a no-op).

### Changes

-
**`all-entity-properties-configuration-by-metadata-name.constant.ts`**:
set `viewId.toCompare: true` for `viewField`, `viewFieldGroup`,
`viewGroup`. Because `viewId` maps to `universalProperty:
'viewUniversalIdentifier'`, the diff compares **only**
`viewUniversalIdentifier` (never the raw FK). Snapshot updated
accordingly.
- **`flat-view-field-group-validator.service.ts`**: merge
`flatEntityUpdate` and resolve the **new** parent view, matching the
`viewField`/`viewGroup`/`viewSort` validators.
- **`compute-ordered-migration-actions.util.ts`**: move `view.delete` to
run **after** all view-child create/update actions so a child can be
reparented off a view that is being deleted in the same sync. Child
`delete → create → update` order is preserved (needed for `viewField`'s
partial-unique `(fieldMetadataId, viewId)`).
- **New integration test**
`successful-manifest-reparent-view-children.integration-spec.ts`
covering reparenting of every view child (a) between two persisting
views and (b) when the source view is deleted in the same sync.

## Test plan

- [x] `nx typecheck twenty-server`
- [x] oxlint + oxfmt on changed files
- [x] Unit snapshot regenerated:
`all-universal-flat-entity-properties-to-compare-and-stringify.constant.spec`
- [x] New integration test passes (both scenarios)
- [x] Verified the delete-source scenario **fails** on the old action
ordering (children cascade-deleted, `Received length: 0`) and **passes**
after the reorder — confirming it's a genuine regression guard

Made with [Cursor](https://cursor.com)

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2026-07-07 10:52:34 +02:00
Paul Rastoin 6c40c7b91a Deterministic system field universal identifier (#22565)
# Introduction

Close twentyhq/core-team-issues#2641

Auto-provisioned field metadata used to get its `universalIdentifier`
from three unrelated sources: random `v4()` on the server when creating
custom objects, hardcoded values in `STANDARD_OBJECTS`, and an ad-hoc
`v5` derivation in the SDK manifest build. This PR unifies all of them
behind the shared `getFieldUniversalIdentifier` derivation:

```
universalIdentifier = f(applicationUniversalIdentifier, objectUniversalIdentifier, fieldName)
```

## Ownership model

The rollout is built on an explicit split of who owns a field's
universal identifier:

- **The 8 system fields** (`id`, `createdAt`, `updatedAt`, `deletedAt`,
`createdBy`, `updatedBy`, `position`, `searchVector`) are
**server-owned**. Their universal identifiers are always the
deterministic derivation, on **every** application (standard,
workspace-custom, installed). Clients cannot provide custom values: a
temporary check in `validateObjectMetadataSystemFieldsIntegrity` rejects
any non-derived system field identifier at migration build time. This
check stands in until system fields are generated exclusively server
side by the metadata side-effect engine and stripped from client inputs
— at which point it becomes structurally impossible to send one.
- **`name` is a default field, not a system field**: it is
auto-provisioned when absent (server side for custom objects, SDK side
for application objects) but authors can define their own. It is only
derived where it is guaranteed to be auto-provisioned. In particular,
standard objects keep their **historical hardcoded** `name` identifiers:
the standard app authors its `name` fields like any installed app would,
and moving those identifiers would break every installed application
referencing them (e.g. views on `opportunity.name`).
- **User-created and author-provided fields** keep random / explicit
identifiers, untouched.

## Server

- `validateObjectMetadataSystemFieldsIntegrity` now validates, on top of
the existing type/`isSystem` checks, that each system field's
`universalIdentifier` equals the deterministic derivation. Runs for
every object creation going through the migration orchestrator: app
sync, custom object creation, standard provisioning
- `build-default-flat-field-metadatas-for-custom-object.util.ts` derives
the system field identifiers (and the auto-provisioned `name`) with
`getFieldUniversalIdentifier` instead of `v4()`
-
`build-default-relation-flat-field-metadatas-for-custom-object.util.ts`
derives both the forward and the reverse default relation field
identifiers deterministically
- `generateMorphOrRelationFlatFieldMetadataPair` accepts optional
`sourceFieldUniversalIdentifier` / `targetFieldUniversalIdentifier` so
callers can inject deterministic values; user-created relations still
default to `v4()`

## twenty-shared

- `STANDARD_OBJECTS` system field identifiers (the 8) are now computed
at module load via `buildStandardObjectSystemFields`; `name` and every
other identifier keep their hardcoded values
- New snapshot test pinning **every** universal identifier of
`STANDARD_OBJECTS`: any identifier change now requires an explicit
snapshot update and should ship with a coordinated backfill

## SDK (breaking, pre-GA)

- `generateDefaultFieldUniversalIdentifier` delegates to
`getFieldUniversalIdentifier` and now requires
`applicationUniversalIdentifier`
- Reverse default relation field identifiers are derived from the
field's real coordinates (standard object UID + actual field name, e.g.
`targetRocket` on `attachment`) instead of the legacy custom-object UID
+ synthetic `${fieldName}Inverse` hash input. Field *names* are
unchanged
- The manifest build threads the application universal identifier
through default field injection (two-pass over object configs)
- `twenty dev:add` now resolves the application universal identifier
upfront and refuses to scaffold anything until `defineApplication`
declares one — no more `fill-later` placeholder for the app UID in
generated files

## Upgrade

A 2.19 **workspace command** backfills existing
`fieldMetadata.universalIdentifier` rows to the deterministic
derivation. Coverage follows the ownership model:

- **The 8 system fields**: taken over for **every application**,
whatever value they currently hold. This is both safe and required now
that sync rejects non-derived values — leaving a row unconverged would
make its application unsyncable
- **`name`**: workspace-custom app → always taken over
(server-generated, no author to clobber); installed applications → only
rows still carrying the legacy SDK derivation are recomputed,
author-provided identifiers are never touched; standard app → never
touched (hardcoded in `STANDARD_OBJECTS`)
- **Default relation fields**: workspace-custom app → forward fields on
custom objects and reverse fields on the standard relation objects;
installed applications → legacy-derivation probe only

All identifiers of a workspace are updated inside a single transaction,
then the command flushes the field-metadata-related workspace caches and
bumps the metadata version.

Stored `applicationRegistration.manifest` snapshots are intentionally
**not** rewritten: installs and upgrades always sync from the
`manifest.json` inside the resolved package (npm/tarball), the stored
column is only used for display/marketplace purposes.

## Breaking behavior for old packages (fail closed)

Packages built with an older SDK carry legacy system field identifiers
in their tarball `manifest.json`. Installing or upgrading such a package
now fails with an explicit `INVALID_SYSTEM_FIELD` validation error
("universal identifier is not deterministic") instead of silently
mismatching against the backfilled rows and triggering a destructive
delete+create. The remediation is to rebuild the package with the new
SDK; the backfill has already converged the installed rows, so the
rebuilt manifest syncs cleanly.

## Test plan

- [x] `twenty-sdk` unit tests (526 tests) and typecheck
- [x] `twenty-shared` unit tests (1635 tests) including the
`STANDARD_OBJECTS` snapshot; `name` identifiers verified byte-for-byte
identical to `main`
- [x] Lint and typecheck clean on all touched packages
- [x] Integration: create a custom object and verify system + default
relation field identifiers match the deterministic derivation
(`create-one-object-metadata-deterministic-field-universal-identifiers`,
13 assertions passing)
- [x] Integration: `failing-sync-application-object-system-fields`
extended with a non-derived system field identifier case; all
identifiers in the spec pinned deterministically so snapshots embedding
expected/actual values are stable across runs (verified with a double
run)
- [x] Integration: all application sync suites pass with the derived
system field identifiers now required by the
`buildDefaultObjectManifest` test helper (9 suites, 20 tests)
- [x] Full test-database reset: standard app provisioning and seeded
workspaces pass the new validation
- [x] SDK manifest build verified on the postcard example app: all
auto-generated default field identifiers match the derivation
- [ ] Run
`upgrade:2-19:backfill-deterministic-field-universal-identifiers`
(dry-run then real) on a seeded workspace and verify identifier
convergence with a rebuilt app manifest
2026-07-06 13:34:33 +00:00
Paul Rastoin 43730d7748 Centralized side effects devxp basis (#22295)
# Introduction

This PR introduces a centralized, strictly-typed **metadata side-effect
engine** that unifies how system metadata side effects are derived and
applied across both metadata entry points — the **metadata GraphQL API**
and the **application sync / manifest** flow — and migrates the first
side effect end-to-end: **a unique scalar field owns its backing
single-field `UNIQUE` index** (full create / update / delete lifecycle).

## New conventions

- **Engine-owned companions**: metadata flagged `isSystemSideEffect:
true` is owned by the engine. Its deletion is never inferred from
absence in a manifest — it results from PG-level cascade or from a
delete side effect (a side effect always has a cause, its parent
metadata).
- **Reserved deterministic identifiers**: apps cannot declare metadata
reusing an engine-owned deterministic `universalIdentifier`. Doing so
fails validation with `RESERVED_SYSTEM_UNIVERSAL_IDENTIFIER` (until an
explicit override API exists).
- **Record-native operation matrix**: the operation matrix is keyed by
`universalIdentifier` (`AllFlatEntityOperationRecordByMetadataName`)
instead of arrays, making parent resolution and deduplication O(1).
Array-based API callers are transpiled to records at the
validate-build-and-run boundary.
- Twenty-sdk user-facing experience with system fields will only be
related to overrides.

# What this PR does

## 1. Side-effect engine (foundation)

- `MetadataSideEffectEngineService.expandWithSideEffects(...)` takes the
intention-carrying record matrix and returns it expanded with derived
side effects, or a structured failure.
- Handlers are registered via a typed **decorator + registry** pattern
(`MetadataSideEffectHandler({ operation, metadataName, name, description
})`), with runtime duplicate-name detection. Multiple handlers per
(operation, metadataName) are supported.
- Handler contract mirrors the validator pattern:
- receives the trigger flat entity, the live record matrix, and
**strictly-typed related flat entity maps**
(`MetadataFlatEntityAndRelatedFlatEntityMapsForSideEffect<P>`, derived
from declared companion metadata names — no loose
`Partial<AllFlatEntityMaps>` context)
- returns `MetadataSideEffectResult`: `success` (operations record) |
`noop` | `fail` (structured failure)
- **Non-recursion is structural**: triggers are read from the original
caller input, never from the expanded matrix, so a side effect can never
trigger another side effect.
- **Deduplication + collision detection**: side effects are deduped by
`universalIdentifier` per operation; a caller-declared entity colliding
with an engine-owned deterministic identifier is recorded as a
collision.
- **Unified failure channel**: handler failures and reserved-identifier
collisions are merged into the same `OrchestratorFailureReport` contract
as builder validation errors, and the run short-circuits (fail-closed,
nothing is applied).

## 2. First migrated side effect — unique field → backing unique index

Three handlers own the complete lifecycle of the deterministic
single-field `UNIQUE` index backing a unique scalar field:

- **create**: unique scalar field → generate the deterministic backing
index (`fieldUniqueBackingIndexOnCreate`)
- **update**: `isUnique` flips and renames of still-unique fields (the
index name — and therefore its deterministic identifier — derives from
the field name, so a rename drops the stale index and recreates the
deterministic one) (`fieldUniqueBackingIndexOnUpdate`)
- **delete**: cascade-delete the backing index
(`fieldUniqueBackingIndexOnDelete`)

Supporting rules:
- The primary key `id` field never spawns a backing index (uniqueness
comes from the PK constraint) — explicit `isPrimaryKeyFlatFieldMetadata`
guard.
- Parent object resolution is **optimistic-first**: an object created or
updated in the same batch wins over the workspace cache (so e.g.
renaming an object while flipping a field to unique builds the index
from the post-rename object), resolved in O(1) via the record matrix.
- A missing parent object is reported as a structured side-effect
failure, never silently skipped.

## 3. Path convergence — manifest and API share one flow

- The manifest sync now derives a from→to **record matrix** from the
cache and feeds `validateBuildAndRunWorkspaceMigrationFromRecord`, the
same flow the API uses — both paths converge on the engine.
- Manifest-side unique-index generation and API transpiler
system-unique-index handling were removed (declared/composite/relation
indexes stay untouched).
- New `WorkspaceMigrationFlatEntityMapsService` mutualizes
flat-entity-maps computation between the side-effect engine and the
builder: cache keys are derived from the caller metadata names (+
validation- and side-effect-related closures) instead of hardcoded
loads.
- App-scoping and pruning are folded into one shared primitive
(`getSubAllFlatEntityMapsByApplicationIdsOrThrow`): slicing dependency
maps to the involved applications always prunes dangling one-to-many
aggregators — callers can no longer forget it.
- **Behavior change**: an app extending another app's view with a view
field now syncs successfully (cross-app view-field extension), covered
by a dedicated integration test.

## 4. Backfill upgrade command (2.19)

`upgrade:2-19:backfill-system-unique-index-universal-identifier`
rewrites legacy system unique-index `universalIdentifier`s to their
deterministic value so the engine can own pre-existing indexes. The
backfill is **driven from `isUnique: true` fields** (mirroring the
engine ownership predicate — excludes PK / morph / relation fields) and
resolves each field's backing index in O(1).

# Bugs fixed along the way

- `database:reset` seeding failed with
`INDEX_FIELD_INVALID_DEFAULT_VALUE`: the engine derived a backing
`UNIQUE` index for the default `id` primary key. Fixed with the explicit
primary-key guard.
- `isUnique` updates on system-flagged standard fields (e.g.
auto-created `name`) did not trigger the backing-index side effect.
- Manifest sync crashed with "Could not find flat entity with universal
identifier ..." when app-scoped slices left dangling aggregator
references — fixed by centralizing pruning in the shared slice primitive
2026-07-03 18:13:20 +02:00
Etienne 1270054d35 feat(ai): dashboard & view building (#22411)
## Why

Building a dashboard through AI chat used to cost ~9 sequential LLM
round-trips
(~160K input tokens for a single request): the agent had to resolve
object/field UUIDs and assemble views through many granular tool calls,
each
step replaying the full cached context.

## What changed

### 1. Reference objects & fields by name (fewer round-trips)
The agent no longer needs to resolve UUIDs before acting.
- `get_object_metadata`: filter by `objectName` (singular/plural) and a
new
`includeFields` flag returning each object's fields (`{id, name, type,
label}`)
  inline — object + field IDs in one call.
- `get_field_metadata`: accepts `objectName` as an alternative to
  `objectMetadataId`.
- All three dashboard write tools (`create_complete_dashboard`,
`add_dashboard_widget`, `update_dashboard_widget`): accept `objectName`
and
`*FieldName` variants (`aggregateFieldName`,
`primaryAxisGroupByFieldName`,
`secondaryAxisGroupByFieldName`, `groupByFieldName`, ratio `fieldName`),
resolved to UUIDs server-side by `resolveWidgetFieldNamesToIds`. UUID
variants
  still win when both are given.

### 2. `upsert_complete_view` — one atomic call to build/reconfigure a
view
- New `upsert_complete_view` tool + `ViewService.upsertCompleteView`:
create or
  update a view together with its fields, filters, and sorts.
- Children are **declarative**: a provided array replaces all existing
entries of
that kind, `[]` clears them, omitting leaves them untouched. Fields are
  referenced by name or UUID; no child-row IDs needed.
- Runs as a **single workspace migration** (`view` + `viewField` +
`viewFilter` +
`viewSort` in one `validateBuildAndRunWorkspaceMigration` matrice)
instead of
chained per-entity service calls. New
`buildCompleteViewChildrenFlatOperations`
  util assembles the child create/delete operations.
- Granular tools (`create_view_filter`, `update_view_sort`, …) are
retained for
  surgical single-entry edits.

### 3. Chart filters on dashboard widgets (end-to-end)
- Added `chartFilterSchema` (`recordFilters` + optional
`recordFilterGroups` for
AND/OR logic) to the four chart configs, with field-by-name or -UUID
references
  and documented operands/value formats.
- **Relative dates supported** — e.g. `PAST_7_DAY`, `THIS_1_MONTH`,
`NEXT_3_WEEK`,
plus open-ended `IS_IN_PAST` / `IS_IN_FUTURE` / `IS_TODAY`. Filters
route
through the same read pipeline (`computeRecordGqlOperationFilter`) as
view
  filters, so they resolve and apply correctly.
- `resolveChartFilterFieldNamesToIds` resolves filter `fieldName` → id
against the
  widget object.

### 4. Re-enable AI-assisted dashboards
- Removed the "coming soon" gating (`isActive: false` on the dashboard
skill and
the "not available yet" copy in the MCP server + chat prompts) and
registered
  `DashboardToolProvider`.
- Rewrote the dashboard skill prompt: confirmation gate (present a plan,
wait for
confirmation), completion guard (once confirmed, emit the create tool
in-turn —
no "now let me…" preambles), default-and-proceed (pick sensible defaults
for
missing fields instead of stalling), and an intent gate so informational
  dashboard questions are answered directly without loading skills.

### 5. Frontend: clearer advanced-filter labels
- `useRecordFilterField` now derives the filter label from field
metadata and
appends the relation target field (e.g. `Company → Name`), so
relation/target
filters — including those set by the AI — display correctly instead of
showing
  a stale/blank stored label.

## Fixes
- **`get_object_metadata({ objectName })` crash.**
`ObjectMetadataService.findManyWithinWorkspace`
  spread an array-form (`OR`) `where` into a plain object, producing
`{ "0": {...}, "1": {...}, workspaceId }` → `Property "0" was not found
in
"ObjectMetadataEntity"`. Now injects `workspaceId` into each OR clause,
so name
  lookups work.
- **Invalid SELECT/MULTI_SELECT filter options silently produced broken
charts/views.**
Chart-configuration validation and the migration-layer
`FlatViewFilterValidator`
now reject filters that reference options that don't exist, with a clear
  `Allowed values: …` message at creation time (shared
  `getInvalidSelectFilterOptionValues` util + tests).
- **Non-atomic view assembly.** The previous multi-call view build could
leave a
half-built view on failure; `upsert_complete_view` now runs as a single
transaction (one validation pass, one cache recompute, rollback on
error).
- **Blank RECORD_TABLE widgets from UNLISTED views.** Guidance + the
upsert
ownership check steer widget-backing views to `WORKSPACE` visibility; an
  UNLISTED view created without an owner renders a blank widget.
- **Extra discovery round-trip removed.** Deleted the skill→tool bundle
mechanism
(`SKILL_TOOL_BUNDLES`, `getBundledToolNamesForSkills`, and the
`load_skills`
  schema-loading path) that forced a second `learn_tools` call.
- **Type-safety of widget resolution.** Reworked the widget resolver to
build a
properly typed `WidgetWithMetadataIds` (dedicated input/output types)
instead of
  returning an untyped, cast-heavy object.

## Notes
- Backend changes are in `twenty-server`; one small `twenty-front`
change to the
  advanced-filter label hook. No entity/schema changes, so no migration.
- Tests added: `getInvalidSelectFilterOptionValues`,
`resolveWidgetFieldNamesToIds`
(incl. filter/relative-date resolution), `update_dashboard_widget`, and
expanded
  view-tools factory specs.
- Design decisions: dedicated composite tool over code-interpreter
orchestration
(atomicity + validation + consistency with `create_complete_dashboard` /
  `create_complete_workflow`); name-or-UUID but no child-row IDs on
`upsert_complete_view`; name→id resolution kept as stateless utils, not
services.

## Test plan
- [ ] `npx nx run twenty-server:typecheck`
- [ ] `npx nx lint:diff-with-main twenty-server` and `twenty-front`
- [ ] `npx nx test twenty-server` (view tools factory,
`getInvalidSelectFilterOptionValues`,
      `resolveWidgetFieldNamesToIds`, `update_dashboard_widget`)
- [ ] AI chat: "Create a dashboard with a chart of deal value by
pipeline stage
      and a table of the top 10 open opportunities" → plans, waits for
      confirmation, then builds with fewer round-trips
- [ ] AI chat: add a chart widget filtered by a relative date (e.g.
deals created
      in `PAST_7_DAY`) and confirm the chart is actually filtered
- [ ] Filter on a non-existent SELECT option is rejected with a clear
error

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2026-07-03 14:15:27 +00:00
martmull 0992d0b748 feat(server): promote registration display fields to first-class columns (#22513)
Part of the application settings architecture work:
https://github.com/twentyhq/core-team-issues/issues/2456 — follow-up to
#22453, delivering the promised removal of the temporary manifest load.

Display data (description, author, category, websiteUrl,
aboutDescription, termsUrl, emailSupport, issueReportUrl, screenshots)
only existed inside the `manifest` jsonb, forcing hot paths to load it.
This PR:

- Promotes those 9 fields to first-class columns on
`applicationRegistration`, populated at every ingestion point
(`updateFromManifest`, both `upsertFromCatalog` branches) — fast command
creates the columns at deploy, slow command backfills them from the
manifest.
- `findManyListedCatalogCards()` (marketplace list) now selects only
scalar columns — the manifest jsonb is no longer loaded there.
- `findPublicByClientId()` (OAuth consent page) now selects `id, name,
logo, websiteUrl, oAuthScopes` — no manifest.
- The narrow select used by
`findMany`/`findAll`/`findOneById`/`findOneByIdGlobal` includes the new
columns.
- GraphQL surface unchanged (no new fields); the marketplace detail
endpoint still reads the manifest and is slimmed in the next PR.

Verified: migration applied via the real runner (both commands recorded
completed), backfill SQL exercised against live rows (full + minimal
manifests), migration generator reports no pending schema changes,
typecheck, lint, unit suites (application-registration + marketplace
15/15).

🤖 Generated with [Claude Code](https://claude.com/claude-code)

https://claude.ai/code/session_011sST4rPLU1Koi2oVGi84ei

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2026-07-03 14:47:24 +02:00
Abdul Rahman 9a7c0f25a5 fix(server): resolve foreign key violation blocking application uninstall (#22502)
Fixes [sonarly issue #54192](https://sonarly.com/issue/54192)

## Problem

Uninstalling an application fails with a DB error when its
`packageJsonFileId` / `yarnLockFileId` columns are populated:

    update or delete on table "file" violates foreign key constraint
    "FK_3818380258798f9ffa9963b6dc4" on table "application"

Storage was also wiped before the failing DB delete, leaving the app
half-uninstalled.

## Root cause

`application` and `file` reference each other through `ON DELETE
RESTRICT` FKs (`application.packageJsonFileId/yarnLockFileId → file.id`
and `file.applicationId → application.id`), so no deletion order works
on its own. The deferrable-FK migration doesn't help: in Postgres,
`RESTRICT` fires immediately even on `DEFERRABLE INITIALLY DEFERRED`
constraints (only `NO ACTION` honors deferral). Uninstall deleted file
rows first, in autocommit statements.

## Fix

`ApplicationService.delete()` now runs in a single transaction:

1. Clear `packageJsonFileId` / `yarnLockFileId` (breaks the FK cycle)
2. Delete the app's `file` rows
3. Delete the `application` row

Storage cleanup moved after commit and made non-fatal, so a failure can
no longer leave partial state. `deleteApplicationFiles` is split into
`deleteApplicationFileRows` (DB, transactional) and
`deleteApplicationFilesFromStorage` (blobs). The test cleanup util had
the same file-first ordering bug and is fixed the same way.


## Questions / Follow-ups

- **Should the FK cycle be resolved at the schema level?** Both legs
could be switched to `ON DELETE NO ACTION DEFERRABLE INITIALLY
DEFERRED`, which appears to be what the deferrable-FK migration intended
— deferral would then actually apply to deletes, making transactional
deletion order-independent. Happy to open a separate PR if there's
interest.

- **Should the marketplace install path set the package file FKs?** It
stores `package.json` in the `file` table but never populates
`application.packageJsonFileId` / `yarnLockFileId` — today only
workspace creation and `application:rebuild-default-deps` set them.
Marketplace packages also don't ship a `yarn.lock`, so this needs a
product decision.

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2026-07-03 15:45:48 +05:30
Paul Rastoin 47689e676b feat(server): improve traceability of flat-entity map mutation errors (#22396)
## Context

cc @rashad 

Twenty applies metadata changes optimistically to in-memory *flat entity
maps* before persisting them. The utils that mutate these maps throw
`FlatEntityMapsException` on invariant violations, which surface in
Sentry (e.g. during `InstallApplication`) as a **hardcoded, generic
message with no identifying data**:

```
GraphQLError: addUniversalFlatEntityToUniversalFlatEntityMapsThroughMutationOrThrow: flat entity to add already exists
```

There was no way to know *which* entity collided — making triage
impossible.

## What this does (two layers)

**Layer 1 — leaf utils emit identifiers**
- `FlatEntityMapsException` gains an optional structured `context`
(`universalIdentifier` / `id` / `applicationId` / `metadataName` /
`relatedMetadataName` / `operation`), read by the Sentry driver's
existing `'context' in exception` → `setExtra` channel.
- All **9 leaf throw sites** append their in-scope identifiers to the
message **and** populate `context`.

**Propagation — context survives the re-wraps**
- On the install path the collision throws in the (unwrapped)
`compute()` step, so the raw exception + context reaches app-sync
intact.
- For the run/build-phase paths, the migration runner and
build-orchestrator re-wraps copy only `.message`; they now also
**forward `context`** so structured data survives there too.

**Layer 2 — human installation error**
- `synchronizeFromManifest` catches flat-entity failures, resolves the
offending `universalIdentifier` to a manifest **object/field label**,
and rethrows `ApplicationException(APPLICATION_INSTALLATION_FAILED)`
with a safe, human `userFriendlyMessage`.
- The leaf `userFriendlyMessage` stays `STANDARD_ERROR_MESSAGE` — the
detailed message never leaks to end users.
- `APPLICATION_INSTALLATION_FAILED` surfaces with the dedicated
`ErrorCode.APPLICATION_INSTALLATION_FAILED` GraphQL code (mirroring the
workspace-migration runner formatter), not `INTERNAL_SERVER_ERROR`.

### Result — client-facing GraphQL error envelope
```json
{
  "extensions": {
    "code": "APPLICATION_INSTALLATION_FAILED",
    "subCode": "APPLICATION_INSTALLATION_FAILED",
    "userFriendlyMessage": "We couldn't install \"Test Application\". Its Invoice could not be applied to your workspace."
  },
  "message": "Installing application 'Test Application' failed [object: Invoice]: addUniversalFlatEntityToUniversalFlatEntityMapsThroughMutationOrThrow: flat entity to add already exists (universalIdentifier: ...)",
  "name": "GraphQLError"
}
```

## Where the identifier shows up (not just Sentry)

The offending `universalIdentifier` reaches every consumer, not only
Sentry:
- **Sentry (server):** structured `context` extras + the enriched
message (fingerprinted by `code`, so no issue fragmentation).
- **GraphQL response `message`:** un-masked (no `useMaskedErrors`; the
error-handler hook passes `BaseGraphQLError` through as-is), so it
travels over the wire.
- **App-author SDK/CLI terminal:** `twenty-sdk` captures
`errors[0].message`; for this error `formatManifestValidationErrors`
returns `null` (no `extensions.errors`/`summary`), so the orchestrator
falls back to printing the full message, e.g.:
  ```
✗ Sync failed with error: Installing application 'X' failed [object:
Invoice]: … already exists (universalIdentifier: b1b2c3d4-…)
ℹ Hint: a metadata conflict was detected. Preview the plan with `yarn
twenty dev --once --dry-run`; …
  ```
The `already exists` / `universalidentifier` substrings also trigger
`getSyncErrorRecoveryHint`, so the author gets an actionable next step.
- **End-user (CRM UI):** only the safe rendered `userFriendlyMessage`
(no UUIDs).

## Design note
`userFriendlyMessage` behaviour of the leaf exceptions is intentionally
unchanged (guardrail). Layer 2 resolves labels for **objects and
fields** (the bulk of metadata); other manifest entity kinds fall back
to an app-name-only human message to avoid brittle manifest-walking —
easy to extend. A future first-class option would be structured
`extensions` (like `METADATA_VALIDATION_FAILED`) + a dedicated SDK
formatter; deferred since the message path already surfaces the detail
in the terminal.

## Tests
- **Unit:** existing through-mutation + runner-exception specs still
pass (they assert on exception **code**, not message). Added a spec for
the enrichment util.
- **Response-format snapshot (verified, green):**
`application-exception-filter.spec.ts` runs the exception filter and
snapshots the exact client-facing GraphQL error envelope shown above.
- **Integration:**
`failing-sync-application-flat-entity-map-conflict.integration-spec.ts`
syncs a manifest whose two objects share a `universalIdentifier`
(collision during manifest map build, before validation) and snapshots
the GraphQL error response via
`expectOneNotInternalServerErrorSnapshot`.
- ⚠️ The integration `.snap` was authored from the identical
deterministic path (verified by the filter unit snapshot) because the
integration suite couldn't be executed in the authoring sandbox. Please
regenerate/confirm with `nx test:integration:with-db-reset` (or `-u`) in
a seeded env.

## Status
Draft — opening for review.
2026-07-02 12:39:48 +00:00
Félix Malfait 5a4ebca226 refactor(server): unify the two metadata override mechanisms into one (#22417)
## Unify the two metadata override mechanisms into one

Twenty had **two** override mechanisms:

- **`standardOverrides`** — a bespoke JSONB column on
`objectMetadata`/`fieldMetadata` with typed DTOs and a per-locale
`translations` map, resolved by two i18n-aware resolvers.
- **`OverridableEntity.overrides`** — a flat, registry-driven JSONB blob
on view / view-field / view-field-group / command-menu-item /
page-layout-tab / page-layout-widget, resolved by a plain spread.

This PR collapses them into **one** concept: a single `overrides` blob,
one registry-driven overridable set, one i18n-aware read path, and one
write path (`computeMetadataOverridesBlob`, extracted in #22404).

Object/field **stay on `SyncableEntity`** (not reparented to
`OverridableEntity`) so their `isActive` default stays **FALSE** — this
sidesteps the `isActive` default conflict entirely.

### GraphQL breaking change (accepted)

The `standardOverrides` field is **removed** with no deprecation alias —
`overrides` (a `JSON` scalar) is exposed instead on `Object` and
`Field`. Product confirmed negligible external usage; the front-end has
no hand-written consumer (only generated types), which are regenerated
here.

### Commit structure (reviewable commit-by-commit)

1. **Unified resolver + parity harness** —
`resolveEffectiveEntityProperty` is a strict superset of the three
legacy resolvers; a corpus parity spec compares it against a *frozen
reference* of the old logic across every locale, `isStandardApp` branch
and override shape.
2. **Registry-driven** — object/field presentation props tagged
`isOverridable` + `translatable`; the overridable/translatable sets are
derived from the registry (a test asserts they equal the legacy
hardcoded lists).
3. **Rename + swap + delete** — `standardOverrides` → `overrides` across
entities, DTOs, flat/universal types, producers, the ~12
resolve/write/create/sync call sites, mocks and specs; the reconciler's
two compare entries collapse to one; the three legacy resolvers, both
DTOs and the hardcoded constants/types are deleted.
4. **Migration (zero-downtime, two-phase)** — split across two releases
so a rolling deploy never drops a column a previous-release pod still
`SELECT`s:
   - **2.19 fast** — add the `overrides` column (schema only).
- **2.19 slow** — backfill `overrides` from `standardOverrides` in
`runDataMigration` (kept out of the schema transaction so the bulk write
doesn't hold the ACCESS EXCLUSIVE lock; skipped on fresh installs, which
have no data to copy).
- **2.20 fast** — drop the legacy `standardOverrides` column (gated by
`TWENTY_NEXT_VERSIONS`, so it stays dormant until the instance reaches
2.20).
5. **Front/client-SDK regen** — regenerated metadata GraphQL types.
6. **Integration specs + i18n** — updated the standard object/field
update integration specs + snapshots, and the reworded validator message
catalog entry.

### Rolling-deploy safety

`standardOverrides` is retained through 2.19 and only dropped in 2.20,
mirroring the codebase's deferred-drop convention
(`isUIReadOnly`/`isCustom`). During the 2.19 rollout both columns exist,
so old and new pods coexist without "column does not exist" errors. The
backfill lives in a slow `runDataMigration` (per the
`no-data-mutation-in-fast-instance-command` rule) so it doesn't stall
reads.

### `isActive` guard

The migration never reads or writes `isActive`; the backfill asserts the
active-row count is unchanged and aborts otherwise. Verified on a real
DB: apply + revert preserves the blob **and** the nested `translations`
map, with `isActive` counts identical before/after.

### Verification (local)

- `nx typecheck twenty-server` + `nx typecheck twenty-front` — green
- `nx lint:diff-with-main twenty-server` (oxlint `--type-aware` + oxfmt)
— green
- `nx test twenty-server` — green (unit + parity + registry + migration
tests)
- `nx run twenty-server:test:integration:with-db-reset` — green
- `database:reset` applies the 2.19 phases and leaves **both** columns
present (2.20 drop stays dormant); backfill + revert round-trip verified
on a real DB
- Metadata integration suites (standard object/field update, application
sync) pass end-to-end against the two-column schema
- Metadata GraphQL types regenerated against a booted server; zero
`standardOverrides` references remain in application code (only the
migration commands + the legacy schema baseline)

---------

Co-authored-by: prastoin <paul@twenty.com>
2026-07-02 12:01:15 +02:00
martmull 7b682bced9 feat(shared): require defaultValue on non-nullable field manifests (#22419)
## Context

Follow-up to #22362, which made `isNullable` manifest changes actually
apply (including a nullable → non-nullable backfill). This models the
`isNullable` / `defaultValue` relationship directly in the
`FieldManifest` type.

## Rule

- A **non-nullable** field (`isNullable: false`) must declare a
`defaultValue`, so the column always has a value to fall back on (e.g.
for the backfill on the nullable → non-nullable transition).
- A **nullable** or **unspecified** field may omit `defaultValue`.

## Changes

- Split `RegularFieldManifest` into a base shape plus a discriminated
nullability union. The union keeps `isNullable` free once a
`defaultValue` is supplied, so helpers that always provide one can still
pass a dynamic `boolean` `isNullable`.
- `defaultValue` keeps its rich per-type `FieldMetadataDefaultValue<T>`
(POSITION → number, ACTOR → composite) rather than a bare `string`.
- `RelationFieldManifest` is rebased on the shared base and keeps
`isNullable` / `defaultValue` optional, since relation join columns are
always nullable by design.
- Narrowed `buildEstimateFieldManifest` in the manifest-update
integration test to satisfy the stricter type.

## Verification

Environment couldn't install the monorepo deps (registry connections
aborting), so `nx typecheck` wasn't run here. Validated the union
structure with standalone `tsc` synthetic tests mirroring every
construction pattern in the codebase:

-  nullable/no-default, no-`isNullable`, non-nullable with
string/number/composite defaults, dynamic-boolean-with-default, and the
`DistributiveOmit` path into `ObjectFieldManifest`
-  non-nullable **without** a default is correctly rejected with a
clear "defaultValue is missing but required" error

Recommend a full `nx typecheck twenty-shared twenty-sdk twenty-server`
in CI to confirm against full project resolution.

https://claude.ai/code/session_01VnbrgBB3kNGP876qaKPYDL

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2026-07-02 08:03:52 +00:00
Weiko fab0358df5 Handle field isNullable update (#22362)
## Context

Setting isNullable on a field via the app SDK manifest was silently
ignored when re-syncing an existing field. The first sync that creates a
field honored isNullable correctly, but any later manifest change to
isNullable had no effect, neither on the field metadata nor on the
underlying Postgres column.

Two compounding gaps caused this:

The diff never detected the change. isNullable was configured with
toCompare: false, so compareTwoFlatEntity excluded it from the diff and
no update action was ever generated.
There was no DDL to apply it. Even if detected, the update field action
handler only altered name, options, defaultValue, and settings. The
column manager had no way to alter a column's NOT NULL constraint.

## Fix

- Set isNullable.toCompare: true so manifest changes are detected and
persisted to the field metadata (via the existing executeForMetadata
path).
- Add WorkspaceSchemaColumnManagerService.alterColumnNullable(): emits
SET NOT NULL / DROP NOT NULL, with an optional pre-serialized backfill
(UPDATE … WHERE col IS NULL) applied only on the nullable → non-nullable
transition.
- Add handleFieldNullableUpdate() to the update field action handler,
dispatched after the defaultValue block so the default is in place
before NOT NULL is enforced.
It is composite-aware (mirrors the per-sub-column parentIsNullable ||
!property.isRequired rule used at column creation) and skips
relation/morph join columns and TS_VECTOR, which are always nullable by
design.

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2026-07-01 13:31:22 +02:00
Paul Rastoin fe644a0630 fix(server): recreate searchVector GIN index on rebuild (#22349)
## Summary

Fixes a pre-existing regression where rebuilding a `TS_VECTOR`
(`searchVector`) generated column drops its GIN index without recreating
it, leaving search correct but **unindexed** (sequential scan).

Changing a generated column's expression requires `DROP COLUMN` + `ADD
COLUMN` (Postgres can't `ALTER` a generated expression). The
`searchVector`'s GIN index is a separate index-metadata entity built on
that column, so the `DROP COLUMN` cascade-drops the physical index — and
the rebuild branch never re-issued `CREATE INDEX`. This existed on
`main` (triggered by `asExpression`/`generatedType` settings changes)
and was inherited by the `rebuildSearchVector` refactor in #22287.

This is the first, self-contained part of
https://github.com/twentyhq/core-team-issues/issues/2620. The 2.18
recompute/backfill workspace command is intentionally left for a
follow-up PR.

## What changed

### Runner loads the maps a rebuild needs
`workspace-migration-runner.service.ts` — `fieldMetadata` declares
neither `searchFieldMetadata` nor `index` as a related metadata name, so
a `fieldMetadata`-only rebuild action had neither
`flatSearchFieldMetadataMaps` (needed by the expression derivation) nor
`flatIndexMaps` (needed to recreate the index) in context. The runner
now detects `update` actions carrying `rebuildSearchVector === true` and
loads those two maps — **only** when a rebuild is present, so ordinary
field operations are unaffected.

### Handler recreates the index after re-adding the column
`update-field-action-handler.service.ts` — in the rebuild branch, after
`addColumns`, recreate the field's single GIN index:

```ts
const [searchVectorFlatIndexMetadata] = findFieldRelatedIndexes({
  flatFieldMetadata: optimisticFlatFieldMetadata,
  flatObjectMetadata,
  flatIndexMaps,
});

if (isDefined(searchVectorFlatIndexMetadata)) {
  await createIndexInWorkspaceSchema({ flatIndexMetadata: searchVectorFlatIndexMetadata, ... });
}
```

- **Narrow lookup, not a workspace-wide scan.** The flat field has no
index back-reference (`fieldMetadata.indexFieldMetadatas` is `null` in
`ALL_ONE_TO_MANY_METADATA_RELATIONS`). The *object* does aggregate its
indexes (`indexMetadataIds`), so we reuse the existing
`findFieldRelatedIndexes` helper — already used by
`handle-index-changes-during-field-update.util.ts` and the morph-rename
path — which resolves only this object's indexes and filters to the one
on the field.
- A `TS_VECTOR` field has exactly one index (the standard
`searchVectorGinIndex`), so we retrieve that single index rather than
iterating. `createIndex` emits `CREATE INDEX IF NOT EXISTS`
(idempotent).

This makes the rebuild self-contained (column + index move together) and
fixes every rebuild path: rename, label-identifier change, and
`searchFieldMetadata` changes.

### Regression test
Extends
`update-one-field-metadata-search-vector-side-effect.integration-spec.ts`
to query `pg_indexes` before and after the rename and assert the GIN
index on the `searchVector` column persists (not just that search still
returns the record). Fails without the fix, passes with it.

## Test plan
- [x] `npx nx lint:diff-with-main twenty-server` — 0 warnings, 0 errors
- [x] `npx nx typecheck twenty-server` — clean for changed files
- [ ] Integration: extended rename-rebuild spec (GIN index present
post-rebuild)

Part of https://github.com/twentyhq/core-team-issues/issues/2620
2026-06-30 14:00:45 +02:00
Paul Rastoin b0d7516951 Deprecate asExpression from field metadata search_vector (#22287)
## Summary

Fully deprecates the cached `asExpression` / `generatedType` settings on
`TS_VECTOR` (searchVector) fields. Previously the generated-column
expression was stored in `FieldMetadataSettings` and kept in sync via
imperative recompute side-effects. It is now **derived at DDL time**
from the `searchFieldMetadata` rows that describe which fields feed the
search vector, making `searchFieldMetadata` the single source of truth
and removing a whole class of cache-drift bugs.

This is delivered across the milestones tracked in #2587 and coordinates
with the frontend migration (#1428).

## Why

- The searchVector expression lived in two places (stored
`settings.asExpression` + the actual generated column), kept consistent
by bespoke side-effects (`recompute-search-vector-on-field-rename`,
label-identifier recompute, etc.).
- The frontend reconstructed the searchable-fields list by
**regex-parsing** the stored `asExpression`.
- Both are brittle. Deriving the expression from `searchFieldMetadata`
rows at build/run time removes the cache and the parsing.

## What changed

### Server - data model & derivation
- Introduce the `tsVectorFieldMetadata` relation on
`searchFieldMetadata` (`tsVectorFieldMetadataId` / universal identifier)
linking each searchable-field row to its target `TS_VECTOR` field.
- New runtime derivation
`deriveSearchVectorAsExpressionForTsVectorField`
(`flat-search-field-metadata/utils/...`) used by the create-object and
update-field handlers to generate the column expression from
`searchFieldMetadata` rows.
- Remove `asExpression` / `generatedType` from stored settings:
`FieldMetadataSettings.TS_VECTOR` is now `null`; the column builder
(`generate-column-definitions.util.ts`) hardcodes `generatedType:
'STORED'` and requires the derived expression.
- Delete the imperative recompute side-effects and the
`compute-search-vector-universal-settings-from-object-manifest` path;
drop the `settings` block from all 28 standard
`compute-*-standard-flat-field-metadata` utils.

### Server - migration runner
- New `rebuildSearchVector` marker on `update-field` actions: the
orchestrator synthesizes targeted column rebuilds
(`compute-search-vector-rebuild-target-universal-identifiers.util.ts` +
the deprioritize aggregator) only when a searchFieldMetadata change or
indexed-field rename actually requires it - instead of rebuilding on
every settings touch.
- Deferrable FKs + in-flight ID resolution so a `searchFieldMetadata`
row and its `TS_VECTOR` field can be created in the same transaction
(deterministic UUIDs).

### Frontend (contract change, #1428)
- New `SearchFieldMetadataDTO` + dataloader exposing
`searchFieldMetadataList` on object metadata.
- `SettingsObjectSearchSection` now reads
`objectMetadataItem.searchFieldMetadatas` instead of parsing
`asExpression`; new `SearchFieldMetadataItem` type, fragment, and
mapping updates.

### Upgrade commands (2.18)
-
`2-18-instance-command-fast-...-add-ts-vector-field-metadata-id-to-search-field-metadata`
-
`2-18-instance-command-fast-...-make-search-field-metadata-fks-deferrable`
-
`2-18-instance-command-slow-...-backfill-ts-vector-field-metadata-id-on-search-field-metadata`

(These were relocated from 2.16 to 2.18 and re-timestamped into an
ordered block - add column -> make FK deferrable -> backfill data -
since 2.16/2.17 are released.)

### Tests
- Updated search-vector side-effect integration specs to assert behavior
(search works) rather than the now-removed `asExpression`; removed the
obsolete expression-validation specs; refreshed the application-sync
snapshot (`universalSettings: null`).

## Upgrade / compatibility notes
- Existing workspaces keep their stored `settings` until a later
cleanup; nothing reads it anymore. The new derivation drives all DDL
going forward.
- Schema changes are gated behind the 2.18 instance commands above.

## Known follow-up (separate PR)
https://github.com/twentyhq/core-team-issues/issues/2620
- The column rebuild (`DROP`/`ADD` of the `searchVector` STORED column)
cascade-drops its GIN index and does not recreate it - a pre-existing
regression on `main` inherited here. A follow-up PR will fix the rebuild
handler to recreate the GIN index and add a 2.18 workspace command to
recompute every search vector + strip the deprecated settings.
(Planned.)

## Test plan
- [ ] `npx nx typecheck twenty-server` / `twenty-front`
- [ ] `npx nx lint:diff-with-main twenty-server` / `twenty-front`
- [ ] Server integration: create/update/delete field, rename indexed
field, update object - search returns expected records
- [ ] Run the 2.18 instance commands on a seeded DB; verify
`tsVectorFieldMetadataId` backfilled and FKs deferrable
- [ ] Frontend: object Search settings tab lists the correct searchable
fields (no `asExpression` parsing)

close https://github.com/twentyhq/core-team-issues/issues/2587

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2026-06-30 09:16:01 +00:00
Parship Chowdhury 1076866820 fix(server): preserve anyFieldFilterValue in view manifest sync (#22004)
### Summary
- Fixes #19978 
- `shouldHideEmptyGroups` was already wired up in the type and
converter; this PR only closes the remaining gap for
`anyFieldFilterValue`.

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---------

Signed-off-by: Parship Chowdhury <parshipchowdhury@gmail.com>
Co-authored-by: Charles Bochet <charles@twenty.com>
2026-06-25 18:11:35 +02:00
martmull 29e0327063 fix(server): allow moving menu items into a folder created in the same sync (#22130)
## Context

Fixes
[core-team-issues#2593](https://github.com/twentyhq/core-team-issues/issues/2593).

When reorganizing navigation menu items by moving existing items into a
**newly created folder** within a single deploy, the sync failed with
`Parent navigation menu item not found`, forcing a two-step deploy
(create the folder first, then move the items into it).

## Root cause

Migration entities are validated in the fixed order **delete → update →
create** (`workspace-entity-migration-builder.service.ts`). When items
are moved into a new folder in one sync, the items are *updated* (adding
`folderUniversalIdentifier`) while the folder is *created* — but the
update phase runs before the create phase, so the folder isn't yet in
the optimistic maps.

The **creation** validator already handles "parent doesn't exist yet" by
also checking `remainingFlatEntityMapsToValidate`. The **update**
validator couldn't: `FlatEntityUpdateValidationArgs` explicitly omitted
that field, so it only looked at the optimistic maps and threw.

## Changes

- `universal-flat-entity-update-validation-args.type.ts` — stop omitting
`remainingFlatEntityMapsToValidate` from the update args.
- `workspace-entity-migration-builder.service.ts` — pass
`createdFlatEntityMaps` (entities being created in the same migration)
into update validation.
- `flat-navigation-menu-item-validator.service.ts` — resolve the parent
folder against both the optimistic maps and the to-be-created entities,
mirroring the creation validator.
- Integration test — sync an item, then in a second sync create a folder
and move the item into it, asserting it succeeds in a single deploy.

The change is generic and type-safe: all other update validators receive
the new field and simply ignore it. `createdFlatEntityMaps` is
`MetadataUniversalFlatEntityMaps<T>`, matching the field's type.

## Test plan

- [x] Added integration test `should move existing menu items into a
folder created in the same sync`
- [ ] CI green

https://claude.ai/code/session_017pmBkho9Fh6Vjv8WA4m9YE

---
_Generated by [Claude
Code](https://claude.ai/code/session_017pmBkho9Fh6Vjv8WA4m9YE)_

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2026-06-25 12:04:18 +02:00
Abhinav A P cf91b87892 fix(server): skip defaultValue null check for relation/morph fields on update (#21875)
## Description

Updating any metadata property (e.g. `description`, `label`) of an
existing **non-nullable RELATION** field fails with:

```
INVALID_FIELD_INPUT: Default value cannot be null for non-nullable fields
```

A relation field has no literal `defaultValue` (it's always `null`), so
the update-path validator rejects every required relation. **Creating**
the same field is fine — only **updates** fail.

This also blocks any incremental app re-sync (`yarn twenty dev --once`)
whose diff touches a required relation field.

## Fix

Added a guard in
`FlatFieldMetadataValidatorService.validateFlatFieldMetadataUpdate()`
using the already-imported `isMorphOrRelationUniversalFlatFieldMetadata`
utility to skip the `defaultValue === null` check for relation/morph
field types:

```diff
 if (
+  !isMorphOrRelationUniversalFlatFieldMetadata(
+    flatFieldMetadataToValidate,
+  ) &&
   flatFieldMetadataToValidate.isNullable === false &&
   flatFieldMetadataToValidate.defaultValue === null
 ) {
```

### Why this works:
- Relation fields represent foreign key relationships, not columns with
literal defaults
- The same guard is already used at line 144 in the same method for
relation-specific validation
- The create path (`validateFlatFieldMetadataCreation`) never had this
check, which is why creation always worked
- No new imports needed — `isMorphOrRelationUniversalFlatFieldMetadata`
is already imported on line 14

## Verification
- `npx nx build twenty-server`  compiles successfully

Fixes #21751

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---------

Co-authored-by: Charles Bochet <charles@twenty.com>
Co-authored-by: prastoin <paul@twenty.com>
2026-06-25 10:05:31 +02:00
Paul Rastoin d2387430a1 Factorize from entity to flat entity utils (#21972)
## What

Factorizes the two responsibilities that were copy‑pasted across every
`from-<entity>-entity-to-flat-<entity>` util into two reusable tools.

### `fromEntityToScalarEntity`
Projects a TypeORM entity into its scalar flat shape using an
**allow‑list** driven by
`ALL_ENTITY_PROPERTIES_CONFIGURATION_BY_METADATA_NAME` (plus the base
columns `id`/`workspaceId`/`applicationId`/`universalIdentifier`). Only
registered scalar columns are forwarded, `Date`s are serialized to ISO
strings, and absent values are normalized to `null`. Replaces the
previous deny‑list (`removePropertiesFromRecord`) approach, so
unregistered/deprecated columns can no longer silently leak into the
flat entity.

### `resolveManyToOneRelationIdsToUniversalIdentifiers`
Resolves an entity's many‑to‑one foreign keys to their universal
identifiers, driven by `ALL_MANY_TO_ONE_METADATA_RELATIONS`. Handles the
always‑present `application`, nullable relations, and throws a
`FlatEntityMapsException` when a referenced id is missing from its
identifier map. Mirrors `resolveUniversalRelationIdentifiersToIds` in
the opposite direction.

Each `from-<entity>` util now reduces to: scalar spread + relation
spread (+ explicit one‑to‑many id/universalIdentifier arrays where
applicable).

### Note
The allow‑list drops `isUIReadOnly` (a `WasRemovedInUpgrade` column not
in the config) from `fieldMetadata`, which is the only
integration‑snapshot change.

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2026-06-24 10:20:09 +00:00
Paul Rastoin e9d5d71cd3 Wire up search field metadata (#21964)
## Part 1 - Exact scope of the current PR (#21964)

close https://github.com/twentyhq/core-team-issues/issues/2586

This PR introduces `searchFieldMetadata` as a first-class flat metadata
entity and migrates the existing search surface onto it, with **no
change to which records are searchable** (ISO with `main`).

In scope (what the PR does):
- New flat entity `searchFieldMetadata` (universalIdentifier,
applicationId, **`position`**, maps, conversions), registered in the
central flat-entity constants and the migration build orchestrator.
- `searchVector.asExpression` is **derived server-side** from
`searchFieldMetadata` rows (validated by `isSafeTsVectorExpression`);
never trusted from client input.
- **Derivation order is deterministic, driven by each row's `position`**
([compute-search-vector-as-expression-from-search-field-metadatas.util.ts](packages/twenty-server/src/engine/metadata-modules/flat-search-field-metadata/utils/compute-search-vector-as-expression-from-search-field-metadatas.util.ts)),
replacing the previous non-deterministic `(createdAt, id)` sort. That
sort collapsed to random UUIDs for standard fields (same `createdAt`),
so any rename/relabel rewrote the `STORED` generated column to a
logically-identical-but-textually-different expression and produced a
permanent per-workspace diff vs the standard definition. Ordering now
equals provisioning order; ties break on `universalIdentifier`.
- Provisioning at object creation mirrors the existing surface exactly
**and seeds `position`**:
- custom objects -> the `name` field only, at `position: 0`
([build-default-search-field-metadatas-for-custom-object.util.ts](packages/twenty-server/src/engine/metadata-modules/object-metadata/utils/build-default-search-field-metadatas-for-custom-object.util.ts))
- standard objects -> their curated `SEARCH_FIELDS_FOR_*` sets,
`position` = the curated index
- Backfill (instance + workspace commands in `2-16`) provisions rows for
existing workspaces with the same surface **and the same positions**
(standard from the curated standard maps, custom `name` = `0`), scoped
to the workspace's own custom application
([build-search-field-metadata-backfill-operations.util.ts](packages/twenty-server/src/database/commands/upgrade-version-command/2-16/utils/build-search-field-metadata-backfill-operations.util.ts)).
The `position` column is added in the same `2-16` fast instance command
as `universalIdentifier`/`applicationId`.
- Field rename of an already-indexed field recomputes `asExpression`
(positions preserved, so order is stable)
([recompute-search-vector-on-field-rename.util.ts](packages/twenty-server/src/engine/metadata-modules/flat-field-metadata/utils/recompute-search-vector-on-field-rename.util.ts)).
- Field delete drops the matching row(s) and recomputes; remaining rows
keep their relative order (no renumber)
([from-delete-field-input-to-flat-field-metadatas-to-delete.util.ts](packages/twenty-server/src/engine/metadata-modules/flat-field-metadata/utils/from-delete-field-input-to-flat-field-metadatas-to-delete.util.ts)).
- Object relabel is **additive** and ISO/regression-fix only: it indexes
the new label identifier **appended last (`position = max(existing) +
1`)** without dropping `name`
([recompute-search-vector-on-label-identifier-update.util.ts](packages/twenty-server/src/engine/metadata-modules/flat-object-metadata/utils/recompute-search-vector-on-label-identifier-update.util.ts)).
This is a deliberate, temporary bridge.

Explicitly OUT of scope (deferred):
- No API to edit `searchFieldMetadata` (no user-facing search-field
configuration, including `position` — it is internal and only written by
provisioning/backfill/recompute).
- No auto-indexing of arbitrary searchable fields. Creating a custom
TEXT/EMAILS/etc. field does NOT add it to search (the
`computeSearchFieldMetadataCreationForFields` behavior was removed in
`e6820ad`).
- No field-type-transition handling (field type is immutable - not in
`FLAT_FIELD_METADATA_EDITABLE_PROPERTIES`, so that path was dead code).
- No `position` validation (uniqueness/range) and no multi-vector /
per-field `weight` config — deferred to the configurable-search
follow-up (#1428).

Net: `searchFieldMetadata` becomes the source of truth for the *same*
surface as `main`. The only intentional divergences from `main` are
"relabel preserves `name`" (additive) and the deterministic
`position`-ordered `asExpression` (a correctness/perf fix that is
byte-identical to provisioning order, so it does not change the
searchable surface).

---------

Co-authored-by: Félix Malfait <felix@twenty.com>
2026-06-23 16:27:13 +02:00
Paul Rastoin a5aac3c21e Logic function handler name hardened validation (#21956)
# Introduction
Introduce centralized handlerName validation for the logic function
handlerName inside the flat logic function validator

Even if not safe by definition, avoid string interpolation inside the
local driver executor when retrieving the handler name from the parent
module

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2026-06-23 00:55:42 +02:00
Paul Rastoin 0b8368cd6c Refactor search vector field (#21947)
# Introduction
Refactoring the search vector field validation

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2026-06-22 13:44:52 +02:00
Félix Malfait a682c8fa62 feat(sdk): declare row-level permission predicates in the role manifest (#21919)
## Why

Apps can declare object and field permissions on a role via
`defineRole`, but **not row-level security**. The RLS engine and the
metadata-sync machinery already support predicates fully — they're
first-class universal flat entities, the `FlatRole` already carries
`rowLevelPermissionPredicateUniversalIdentifiers`, and the
workspace-migration layer has builders/validators/handlers for them. The
only gap was the **manifest layer**: `RoleManifest` had no field for
predicates, so the sync converter always left them empty.

As a result, the only way to ship RLS with an app was a post-install
script that pushed predicates through the
`upsertRowLevelPermissionPredicates` mutation. That mutation assigns
predicates to the workspace's **generic custom application**, not the
app that owns the role — so a single role's definition ends up split
across two applications and drifts on every upgrade (you have to
remember to re-run the script). The Partner app does exactly this today
via `configure-partner-rls.ts`.

## What

Adds `rowLevelPermissionPredicates` and
`rowLevelPermissionPredicateGroups` to `RoleManifest` / `RoleConfig`,
mirroring how `objectPermissions` / `fieldPermissions` already flow
end-to-end:

- **twenty-shared** — predicate + predicate-group manifest types on
`RoleManifest` (referencing objects/fields by `universalIdentifier`,
operand/logical-operator from the existing GraphQL enums).
- **twenty-sdk** — `defineRole` accepts and validates them; the build
derives deterministic predicate `universalIdentifier`s (groups keep an
explicit one so predicates can reference them).
- **twenty-server** — two converters turn manifest predicates/groups
into universal flat entities during application-manifest sync, so they
are created/updated/deleted together with the role and **owned by the
app that ships it**.

### Bug fix found along the way

The migration build order ran the `rowLevelPermissionPredicate(Group)`
builders **before** the `role` builder, so a predicate declared
alongside a brand-new role failed validation with `ROLE_NOT_FOUND`. They
now run **after** the role builder, exactly like object/field
permissions.

## Partner app (second commit)

Converts `partner.role.ts` to declare its five predicates inline and
**deletes `configure-partner-rls.ts`** + the `rls:configure` scripts —
the workaround this PR is meant to retire. The predicates are
byte-for-byte the same semantics as the script produced.

> Live-deployment note: the existing script-created predicates are owned
by the *custom* application, so the Partner app sync won't touch them.
Clear them once (e.g. an empty upsert on the Partner role) around deploy
to avoid duplicates. Kept as a **separate commit** so it can be split
out if reviewers prefer.

## Testing

- **Integration (full app):** new
`successful-manifest-sync-row-level-permission-predicate.integration-spec.ts`
— installs an app whose role declares a predicate and asserts the
predicate row is created (and **owned by the app**, not the custom app),
updated in place on re-sync, removed when dropped from the manifest, and
removed on uninstall. Ran locally against a seeded test DB .
- Re-ran the existing cross-app permission + view-field manifest suites
to confirm the build-order change doesn't regress
object/field-permission sync (13/13 ).
- **Unit (utils only):** `defineRole` validation and
`fromRoleConfigToRoleManifest` deterministic-id derivation.
- Docs: new "Row-level security" section in `apps/config/roles.mdx`.

## Scope notes / possible follow-ups

- Surfacing RLS in the app-install permission summary UI was
intentionally left out (predicates *restrict* rather than grant, and
typically live on a non-default role) — easy follow-up if wanted.
- The `upsertRowLevelPermissionPredicates` mutation still homes
out-of-band predicates on the custom app for app-owned roles; making
that consistent (or rejecting it, like field permissions already do) is
a sensible follow-up.

https://claude.ai/code/session_01MipAis9z9okd4oCm9HCKEf

---
_Generated by [Claude
Code](https://claude.ai/code/session_01MipAis9z9okd4oCm9HCKEf)_

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2026-06-21 22:09:19 +02:00
Charles Bochet 334e962ab5 fix: cannot create record from table view — empty morph to-many relation returns null (#21846)
## Problem

Creating a record from the table view (reproduced on **People**) crashes
the client even though the `createOne…` mutation succeeds server-side,
so the record never appears:

```
Cannot read properties of null (reading 'map')
  getRecordConnectionFromRecords → getRecordNodeFromRecord → optimistic cache effect → createOneRecord
```

## Root cause

An empty **morph** to-many relation comes back as `null`, while every
other to-many relation comes back as `{ edges: [] }`. The frontend then
runs `null.map` while building the optimistic cache node; the error
escapes the mutation `update`, the rollback evicts the record, and it
never lands in the table.

## Fix

**Server** — plain to-many relations are hydrated to `[]` and formatted
to `{ edges: [] }` by `ObjectRecordsToGraphqlConnectionHelper`; an empty
morph to-many was left undefined and the field was skipped (→ `null`).
Default an unset to-many value to `[]` so it goes through the **same
connection path as plain to-many relations**.

**Frontend** — defensive guard in `getRecordNodeFromRecord`: a to-many
relation whose value isn't an array is skipped instead of crashing,
mirroring the existing guard in `extractTargetRecordsFromRelation`.
Needed regardless, since cached data / SSE / older servers still send
`null`.

## Tests

- Unit: `getRecordNodeFromRecord` skips a null to-many (reproduces the
exact crash without the guard).
- Integration: an empty morph `ONE_TO_MANY` read returns `{ edges: []
}`, not null.
2026-06-21 18:05:04 +02:00
Weiko 9f30915f6f fix(metadata): remove deprecated isCustom from Objects and Fields (#21799)
## Context

Follow-up to #21228, which deprecated `isCustom` on object/field
metadata but kept it exposed because the frontend still relied on it.
This removes it from the GraphQL API and the frontend entirely.

## Implementation

### Server
- Remove `isCustom` `@Field` from the `Object`, `Field`, and
`MinimalObjectMetadata` GraphQL types
- Remove the `isCustom` `@ResolveField` resolvers and the
`isCustomLoader` dataloader (+ payload/interface)
- Remove `isCustom` as an internal `@HideField()` on the Object/Field
DTOs used by the i18n standard-override gate > Use an explicit
isStandard instead (which is the correct gating)

### Frontend
- Add `getIsMetadataItemCustom` helper + `useGetIsMetadataItemCustom`
hook: an item is custom when `applicationId ===
currentWorkspace.workspaceCustomApplication.id`
- Migrate all consumers off `objectMetadataItem.isCustom` /
`fieldMetadataItem.isCustom`; `isRecordFieldReadOnly` now takes a
precomputed `isFieldCustom`
- Drop `isCustom` from the metadata fragment/mutations/minimal query, FE
types, zod schemas, and mock generators; regenerate GraphQL types

## Notes
- Breaking change on the (already-deprecated) `Object.isCustom` /
`Field.isCustom` GraphQL fields and the `isCustom` filter
- FE semantic is "belongs to the workspace custom app" (third-party-app
objects/fields are treated as non-custom)
- `isCustom` on IndexMetadata / View / Skill / Agent is a separate
column and is untouched
- Breaking changes on REST metadata API
2026-06-19 01:19:49 +02:00
Paul Rastoin 60b559a659 Provide custom workspace id while seeding (#21721)
# Introduction
Currently working on e2e test ci that will iterate over dedicated twenty
instance.
In order to allow multi concurrent tests to be performed we need to
isolate testing context
Allowing to provide custom workspaceId allow easy isolation and post
test cleanup on aws related account

close https://github.com/twentyhq/core-team-issues/issues/2556

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2026-06-17 14:29:27 +00:00
Weiko 3ee93b5ec9 feat(server): add isSystemSideEffect & merge createOneObject/createOneField side-effect migrations (#21673)
## Context

When an object is created via the metadata API, `createOneObject`
creates its side-effect entities (INDEX view + viewFields, indexes,
navigation menu item, "go to" command menu item, record-page fields
view, page layout/tabs/widgets) across **three separate
`validateBuildAndRunWorkspaceMigration` calls**, purely because the
protection behavior (mutations → overrides, delete → deactivate, reset →
reactivate) was keyed on *"owned by the standard app"*, forcing the side
effects into batches with different application owners. This
misrepresents ownership and breaks atomicity.

This PR separates two orthogonal concepts:

- **Ownership** (`applicationId`), the true owner: the caller's
application (the workspace custom app today, 3rd-party apps later).
- **Protection** (`isSystemSideEffect`), the row was generated by the
system, so user mutations route to overrides, deletion becomes
deactivation, and reset restores defaults.

Once side effects are re-owned to the caller, the old `applicationId ===
standardApp` check can no longer tell an original side-effect row from a
user-added one so a dedicated `isSystemSideEffect` flag carries the
protection instead.

This is **PR 1 of 2** (forward-only). It makes newly created objects and
fields correct; existing workspaces are handled by a follow-up backfill
(see *Out of scope*).

## What this PR does

- **`isSystemSideEffect` column** on the 8 affected entities (`view`,
`viewField`, `indexMetadata`, `commandMenuItem`, `pageLayout`,
`pageLayoutTab`, `pageLayoutWidget`, `fieldMetadata`), with
`@WasIntroducedInUpgrade` + an entry in the flat-entity property
configuration (`toCompare: true`, read-only).
- **Single atomic migration in `createOneObject`**: the three
`validateBuildAndRunWorkspaceMigration` calls are merged into one, owned
by the caller (`resolvedOwnerFlatApplication`) and the record-page
view/fields, page layout, and navigation command item are re-owned to
the caller and flagged `isSystemSideEffect: true`.
`buildNavigationFlatCommandMenuItem` is parameterized with
`applicationUniversalIdentifier` (no longer hardcoded to the standard
app).
- **Field-creation side effects** (`createManyFields`/`createOneField`
already run as a single caller-owned migration, so no re-ownership/merge
was needed): the auto-created viewField is flagged `isSystemSideEffect:
true`, and a new field now also propagates to the object's **INDEX/table
view** (added there as a **hidden** column, `isVisible: false`) in
addition to
the record-page FIELDS widget. The INDEX view is targeted directly by
`key = INDEX` (it is not a page-layout widget), de-duplicated per
`(viewId, fieldMetadataUniversalIdentifier)` to respect the per-view
unique index.
The unique-field index is likewise flagged the inverse relation field
stays unflagged (`isSystem: false`).
- **Protection predicate** extended: `isCallerOverridingEntity` and the
removal/reset split strategies now treat `isSystemSideEffect` rows as
protected even when caller-owned (route to
overrides / deactivate / reset) and the page-layout-reset guards allow
resetting flagged entities.
- **Standard compute maps** set the flag consistently so a re-sync
produces no diff (standard-object side effects stay `false`; per-object
nav command items and custom-object base fields are `true`).
- **Read-only GraphQL exposure** of `isSystemSideEffect` on the view /
view-field / page-layout / tab / widget / command-menu-item DTOs (not
exposed on create/update inputs). => Todo: needs to take this new flag
into account. This is fine for now because isSystem remains on
object/field.
- **Fast instance command** (`2-14`) adding the 8 columns (`NOT NULL
DEFAULT false`).

## Scope decisions

- **`pageLayout` is not an `OverridableEntity`**, its own row has
nothing user-overridable (all customization lives on tabs/widgets). It's
dual-purpose (`RECORD_PAGE` side-effect vs. user `DASHBOARD`), so it
gets `isSystemSideEffect` for protection only, no `overrides` jsonb.
- **`navigationMenuItem` is out of scope.**: Those are side effects only
for the metadata API and not marked as "system" (they can be
deleted/updated etc...)
- **`viewFieldGroup` is not a side effect**, it's only created via the
explicit view-field-group API, never by object/field creation, so it
gets no flag.

## Out of scope (follow-ups)

**PR 2** — slow per-workspace backfill (re-own + flag existing side
effects, recreate missing ones) and deterministic v5 identifiers for
base fields / pageLayout / tab.


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2026-06-17 15:56:27 +02:00
neo773 d8d5991977 fix(messaging): honor IMAP/SMTP encryption setting instead of inferring it from the port (#21562)
This pull request makes the IMAP and SMTP encryption setting actually
honor what the user selects.

As per spec there's 3 modes: SSL/TLS (implicit TLS from the start),
STARTTLS (it will attempt TLS but if the server doesn't support it, it
gracefully falls back to plaintext), NONE (plaintext)

Current implementation had a boolean flag for this, this replaces it
with the 3 modes

Upgrade command to migrate all existing accounts, to not risk breaking
anyone's existing account in production we map each account to the mode
that matches its current behavior, so nothing changes on the wire

/closes #21300

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---------

Co-authored-by: Charles Bochet <charles@twenty.com>
2026-06-16 18:09:04 +02:00
Charles Bochet 7c0136b97b feat(deps): migrate frontend to React 19 (#21531)
## What

Migrates the frontend stack from **React 18.3 → 19.2**. The website,
sdk, companion and emails packages were already on React 19; this brings
the remaining holdouts (`twenty-front`, `twenty-ui`,
`twenty-ui-deprecated`, `twenty-front-component-renderer`) and
`twenty-server`'s email rendering onto 19, and pins a single React
version repo-wide.

## Why

React 18.x is now the legacy line. Staying current keeps us on the
patched/maintained branch and unblocks downstream library majors
(react-router 7, mantine 9, etc.) that require React 19 peers.

## Dependency bumps (required by React 19 peers / removed APIs)

| Package | From | To | Reason |
|---|---|---|---|
| react / react-dom | 18.3.1 | 19.2.3 | core |
| @hello-pangea/dnd | 16 | 18 | peer `^18 \|\| ^19` |
| react-datepicker | 6 | 9 | v<7 used removed `findDOMNode`; drops
`@types/react-datepicker` |
| react-data-grid | beta.13 | beta.59 | peer `^19.2`; new render API |
| graphiql (+ @graphiql/react, plugin-explorer) | 3 / 0.23 / 1 | 5 /
0.37 / 5.1 | peer `^18 \|\| ^19` |
| react-helmet-async | 1.3 | **@dr.pogodin/react-helmet** 3.2 | upstream
caps peer at `^18`; drop-in React 19 fork |

A `resolutions` pin enforces a single React (19.2.3) + `@types/react`
(19.2.14) across the monorepo to avoid duplicate copies / type-identity
splits. Versions are the aged lockfile patches (clears the
`npmMinimalAgeGate`).

## Code changes

- **Global `JSX` shim** (`react-jsx-global.d.ts` per package): React 19
moved the `JSX` namespace under `React.JSX`; several deps' published
types (notably `@linaria/react`'s `styled.d.ts`, which types every
`styled.x` via `keyof JSX.IntrinsicElements`) still reference the global
namespace. Without the shim, every styled component degrades to `any`
props.
- **Ref nullability**: `useRef<T>(null)` now returns `RefObject<T |
null>`; widened consumer prop/hook ref types accordingly (incl. the
shared `useListenClickOutside`).
- **react-datepicker v9**: `onChange`/`onSelect` accept `Date | null`,
`calendarStartDay` typing, `ReactDatePickerProps`→`DatePickerProps`,
relaxed the dynamic `selectsMultiple` discriminated union.
- **react-data-grid beta.59**: `formatter`→`renderCell`,
`editor`→`renderEditCell`, `headerRenderer`→`renderHeaderCell`,
`components`→`renderers`, `onRowClick`→`onCellClick`, object-shaped
`useRowSelection`, Set-based selection.
- **dnd style cast**: `@radix-ui/react-popper` augments `CSSProperties`
with a `--radix-*` index signature that dnd's closed `DraggingStyle`
doesn't satisfy → cast at the spread.

## Status / testing

-  `typecheck` green: twenty-front, twenty-ui, twenty-ui-deprecated,
twenty-front-component-renderer, twenty-server
-  build / lint / unit tests / storybook+argos / runtime smoke-test in
progress

Draft until local + CI verification completes. Notable behavior to QA
manually: spreadsheet import (data-grid), date pickers, drag-and-drop
boards/lists, GraphQL playground, page titles/favicon.

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2026-06-14 15:42:22 +02:00
Alexandre Ribeiro fefb6cdb94 feat(page-layout): add number format option to aggregate chart widget (#21521)
## Context
Closes #21522
Large values in the dashboard **Number** widget are always abbreviated
(e.g. `1300090` → `1.3m`) with no way to display the full number.
Following a discussion with the core team who were interested in this
feature
(https://discordapp.com/channels/1130383047699738754/1509604545381142649)
, this adds a **Format** option in the **Style** section of the Number
(aggregate chart) widget, letting users choose between **Short**
(abbreviated, current behavior) and **Full** (complete number with
thousand separators).

Only the displayed value of the Number widget is affected — axes, labels
and tooltips of other chart types are intentionally left untouched.

## What's inside

**Server**
- New `ChartNumberFormat` GraphQL enum (`SHORT` / `FULL`), following the
`AxisNameDisplay` pattern
- The existing — and previously unused — `format` field on
`AggregateChartConfigurationDTO` is now typed with this enum and
validated with `@IsEnum`
- The dashboard AI tool schema (`widget.schema.ts`) accepts the new
`format` option
- Regenerated GraphQL types and the `twenty-client-sdk` metadata client
to reflect the enum

**Front**
- New **Format** setting in the Style section of the Number widget
settings, with a Short/Full selection dropdown (same pattern as the Axis
name setting)
- `transformAggregateRawValueIntoAggregateDisplayValue` takes an
optional `numberFormat`:
- `FULL` → full number via `formatNumber` (currency values keep up to 2
decimals)
  - `SHORT` → abbreviated via `formatToShortNumber`
- not set → behavior unchanged (currency short, number full), so
existing widgets and the record table/board footers render exactly as
before

## Screenshots

| Full UI Look | 

<img width="1917" height="955" alt="Twenty_Showcas_FullShort"
src="https://github.com/user-attachments/assets/05d05779-395d-4e1a-8ff0-964f6fbef182"
/>

| Menu UI Look |
<img width="291" height="308" alt="Screenshot_2"
src="https://github.com/user-attachments/assets/82b5a1de-32fe-46ec-a9b8-add11ab4c6cd"
/>
 

## Tests

- Extended `transformAggregateRawValueIntoAggregateDisplayValue` unit
tests with SHORT/FULL cases for currency and number fields
- Updated the page-layout-widget creation/update integration tests and
snapshots to use `ChartNumberFormat.SHORT`


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---------

Co-authored-by: Charles Bochet <charles@twenty.com>
2026-06-13 23:32:41 +02:00
neo773 5d892bdfd0 [WIP] Feat/marketing emails (#21173)
Marketing/campaign emails on top of the emailing-domain (SES) feature:
send a broadcast to a hand-picked list, with per-customer-domain
unsubscribe links and opt-out-only **unsubscribe topics**.

## Model

Standard objects (workspace schema, flat-metadata):
- `messageCampaign` — a campaign send (subject, body template, from
address, status, list, optional unsubscribe topic).
- `messageList` + `messageListMember` — the hand-picked audience (person
↔ list join). A campaign's recipients are its list's members; everyone
is sendable unless suppressed.

Core entities (`core` schema, workspace-scoped — readable by the public
unsubscribe flow without a workspace context):
- `unsubscribeTopic` — an opt-out-only category (name, description,
visibility). There is no opt-in subscription state.
- `messageSuppression` — the single consent store: a row with
`unsubscribeTopicId` NULL is a global block; a row with an
`unsubscribeTopicId` and reason `UNSUBSCRIBE` is a per-topic opt-out.
Two partial unique indexes dedupe global vs per-topic rows (Postgres
treats NULLs as distinct).
- `emailingDomain` — the workspace's SES sending domain,
auto-provisioned when an email channel is added (and cleaned up when its
last channel is removed), with verification status + DNS records.

Campaign messages reuse the existing `message` / `messageThread` /
`messageParticipant` model — one outbound `message` per recipient with a
`deliveryStatus` state machine.

## Sending

- `sendMessageCampaign` resolves the audience **under the caller's
permissions**, creates the campaign, and enqueues a single fan-out job
(the request never materializes per-recipient rows or jobs).
- The fan-out job materializes one QUEUED message per recipient
(deterministic ids → idempotent re-runs, reconciles crash-orphaned rows)
and fans out per-recipient send jobs carrying **only ids**.
- Each send job renders per-recipient `{{variable}}` merge fields and
sends via `EmailingDomainSenderService`, which applies suppression
(global + per-topic) and the unsubscribe footer/headers. Suppressed
recipients are recorded `SKIPPED`.
- The campaign finalizes `SENT`, or `SENT_WITH_ERRORS` if any recipient
terminally failed.
- `previewMessageCampaignAudience` returns a pre-send breakdown (total /
without-email / duplicate / globally-unsubscribed / topic-unsubscribed /
sendable), shown as a hint under the composer pickers.

## Unsubscribe

- Encrypted (AES-256-GCM) token carrying workspaceId, address, optional
`unsubscribeTopicId`, `issuedAt`, and a `preview` flag.
- One-click POST (RFC 8058) + `mailto:` — topic-scoped when the token
carries a topic, global otherwise.
- Preferences page: a checkbox per visible topic (checked = still
receiving); submitting creates per-topic opt-outs for unchecked topics
and lifts re-checked ones (UNSUBSCRIBE only — never
`BOUNCE`/`COMPLAINT`, never a global block).
- A **Preview** action in settings opens the live page via a
preview-claim token; opt-out POSTs are no-ops for preview tokens, so
previewing never mutates state.
- SES webhooks: inbound unsubscribe + outbound bounce/complaint →
suppression (race-safe against at-least-once delivery, with reason
escalation that never downgrades).
- Per-customer unsubscribe hostname (Cloudflare DNS); sends are gated on
it being active, except in LOG/demo mode.

## Architecture

Campaign orchestration, suppression, the sender, the unsubscribe
controller, and the SES webhook handlers live in `src/modules/emailing`
+ `src/modules/messaging-webhooks` (the workspace-feature layer).
`core-modules/emailing-domain` keeps the SES driver, domain
provisioning, the `unsubscribeTopic` / `messageSuppression` core
entities, and the unsubscribe token/hostname plumbing. Domain creation
is validated (`CreateEmailingDomainInput` — domain-format regex,
lowercased) before any value reaches SES or the unsubscribe hostname.

## Frontend

- Campaign composer side panel (from / list / unsubscribe topic /
subject / body) with a live audience-preview hint.
- Email settings: email channels each showing their auto-provisioned
sending domain in a single section (status + DNS records + a "Check
verification" action), plus an **Unsubscribe Topics** section to
create/manage topics and preview the recipient page. A demo-mode banner
is shown when the LOG driver is active.

---------

Co-authored-by: Félix Malfait <felix@twenty.com>
Co-authored-by: Félix Malfait <felix.malfait@gmail.com>
2026-06-13 18:37:39 +02:00
Weiko f63f053444 CommandMenuItem overridable entity (#21486)
## Context
Second PR of the overridable-entities track (after #21436 for views):
command menu items become overridable so that edits on non-owned items
are stored as overrides instead of mutating the row, and
deletion/deactivation becomes reversible.

 ## What this does

- `CommandMenuItemEntity` now extends
`OverridableEntity<CommandMenuItemOverrides>` (adds `isActive` +
`overrides`). All editable properties are overridable for now (to
discuss).
- **Update**: mutations on a command item not owned by the caller
(standard items) are written into `overrides`; reads merge them in the
DTO. The command palette edit mode (pin,
reorder, shortLabel) now preserves standard values, "Reset label to
default" gains true post-save semantics.
- **Delete**: protected items are deactivated (`isActive = false`)
instead of deleted; custom items still hard-delete.
- **Object deactivate/enable toggle**: now flips `isActive` on the
command item (merged into the main migration call) instead of
delete/recreate; a create-if-missing fallback covers legacy deactivated
objects.
- **Front**: inactive command items are filtered out of the palette
selector.


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---------

Co-authored-by: Charles Bochet <charles@twenty.com>
2026-06-13 14:21:27 +02:00
Félix Malfait 1efa3567ef Rename isUIReadOnly to isUIEditable, add isUICreatable, expose both to app developers (#21504)
<!-- CURSOR_AGENT_PR_BODY_BEGIN -->
# UI capability flags: `isUIEditable` + `isUICreatable`

## Per-verb capability model

This PR replaces the negative `isUIReadOnly` metadata flag with
positive, per-verb capability flags (à la Salesforce
`createable`/`updateable`):

- **`isUIEditable: boolean`, default `true`** — rename of `isUIReadOnly`
with inverted polarity, on **both** `objectMetadata` and
`fieldMetadata`. It is one concept ("can the user edit this through the
generic UI?") at two altitudes, so it carries one name at both levels.
- **`isUICreatable: boolean`, default `true`** — new, **object-level
only** (fields have no create verb). When `false`, no generic UI
affordance to create a record of this object appears anywhere (table "+"
buttons, board column add, calendar add, relation-section "Add new",
record picker "Add new", command-menu create action and its keyboard
shortcut).

Both flags are **UI-affordance flags only**: the server does not block
create/edit mutations based on them, so the system, API, and workflows
continue to mutate these records freely. They are orthogonal statements
about the object's nature with no implication rule in the data model.
Because today's inline creation UX creates a blank record the user must
then edit, the frontend create predicate currently requires both
`isUICreatable` and effective editability.

There is no CREATE permission in `ObjectPermissions`; the frontend keeps
gating creation on `canUpdateObjectRecords` as a proxy, ANDed with the
new flags.

## Unified create predicate

All generic creation entry points now flow through one predicate,
`canCreateRecordsForObjectMetadataItem` (`isUICreatable` && not
`isSystem` && not effectively read-only, where effective read-only
covers `isUIEditable`, `isRemote`, and the `canUpdateObjectRecords`
proxy via `isObjectMetadataReadOnly`). This deletes the previously
hardcoded suppression lists:

- `isRecordTableCreateDisabled.ts` and its hardcoded
`WorkflowRun`/`WorkflowVersion` list — deleted; those objects (plus
`workspaceMember`) now declare `isUICreatable: false` in the standard
application instead.
- The hardcoded `workspaceMember` guard inside
`useAddNewRecordAndOpenSidePanel.ts` — deleted.
- The `CREATE_NEW_RECORD` command menu item's availability expression
now checks `objectMetadataItem.isUICreatable`, `isUIEditable`,
`isSystem`, and `isRemote`; a workspace upgrade command re-syncs the
expression in existing workspaces.

Component-local conditions (soft-delete filter active, layout
customization mode) stay in their components.

## GraphQL compatibility and removal plan

The schema delta versus main is **purely additive plus deprecations —
zero breaking changes**:

- `isUIReadOnly` remains on both the ObjectMetadata and FieldMetadata
GraphQL output types for **one release** as a deprecated field computed
as `!isUIEditable` (`deprecationReason: 'Use isUIEditable'`). The Twenty
frontend no longer queries it.
- `isUIReadOnly` also remains on the **input side** for one release
(`CreateFieldInput`, `UpdateFieldInput`, `FieldFilter`, `ObjectFilter`),
keeping the schema shape identical to main for those members. On create
it acts as a legacy alias mapped to `!isUIReadOnly` (`isUIEditable` wins
when both are provided); on update it is ignored, exactly as on main (it
was never an editable property). Filtering on the deprecated member
keeps working until the column is dropped at upgrade time; after that it
is a deprecated no-op surface kept only for schema compatibility.

**Removal plan for next release: drop `isUIReadOnly` from the output
DTOs (and resolvers' `@ResolveField`s), from the input/filter types,
from the create-input mapping, and the `@WasRemovedInUpgrade`-retained
entity columns and decorators.**

## ⚠️ Webhook / database-event payload shape change

The `database-event-payload` type in `twenty-shared` got a clean rename
(no alias): metadata snapshots in webhook and database-event payloads
now carry `isUIEditable` (and `isUICreatable` at object level) **instead
of** `isUIReadOnly`, with inverted polarity. Consumers of these payloads
that read `isUIReadOnly` must switch to `isUIEditable`.

## New manifest properties (app-developer DX)

Application developers can now set these flags in their app manifests
(purely additive — existing manifests and older `twenty-sdk` versions
are unaffected, defaults apply when omitted):

- `objects[].isUICreatable?: boolean` (default `true`)
- `objects[].isUIEditable?: boolean` (default `true`)
- `fields[].isUIEditable?: boolean` (default `true`)

The manifest converters previously hardcoded `isUIReadOnly: false`; they
now read the manifest values with `?? true` defaults. The types are
re-exported through `twenty-sdk` from `twenty-shared`.

## Migration & backfill

- One fast instance command: adds `isUIEditable` (NOT NULL default
`true`) on `core."objectMetadata"` and `core."fieldMetadata"`, backfills
`isUIEditable = false` exactly where `isUIReadOnly = true`, drops
`isUIReadOnly`, and adds `isUICreatable` (default `true`) on
`objectMetadata`. The `down` is the exact inverse. Uses `ADD/DROP COLUMN
IF (NOT) EXISTS`, matching the 2-12 drop-`isCustom` precedent. Verified
up and down in separate transactions against a dev database with exact
backfill counts.
- **Cross-version upgrade safety (multi-version self-hosted jumps):**
the upgrade sequence interleaves per version (instance → workspace
commands), so pre-2.13 workspace commands run **before** the 2.13 rename
when an old instance jumps several versions. Following the `isCustom`
precedent: `isUIEditable`/`isUICreatable` are marked
`@WasIntroducedInUpgrade` and `isUIReadOnly` stays on both entities as
`@WasRemovedInUpgrade`, so the upgrade-aware entity metadata adapter
hides the not-yet-existing columns (and keeps the legacy column live) at
pre-2.13 cursors. **No committed upgrade command outside the 2-13
directory is modified**: the old 1-21/2-8/2-9 commands keep their
original `isUIReadOnly: true` inputs, which still compile (entity
property retained, deprecated create-input alias mapped) and still
produce the correct legacy column writes pre-rename.
- A 2-13 workspace command (`sync-standard-ui-capability-flags`)
re-syncs `isUICreatable` **and** `isUIEditable` on standard objects and
`isUIEditable` on standard fields from the standard-application
definitions. This backfills `isUICreatable: false` on
`workflowRun`/`workflowVersion`/`workspaceMember` and heals fields
created mid-cross-upgrade by pre-2.13 commands (whose hidden
`isUIEditable` value cannot reach the insert). Both 2-13 sync commands
pass `isSystemBuild: true` — the flat metadata validator otherwise
rejects direct updates to system objects (verified against a
deliberately drifted dev database; the run is idempotent).
- A second 2-13 workspace command re-syncs the create-record command
availability expression.

## Testing

- Unit tests for `canCreateRecordsForObjectMetadataItem`
(flag/permission/system combinations) and for the manifest converters
(flags set / omitted → defaults).
- Full `upgrade --dry-run` boots the sequence (107 steps) and validates
the upgrade-aware decorator references; both 2-13 sync commands verified
end to end against real drift and re-run idempotently.
- Schema verified by live introspection after the input-alias restore:
all four input/filter members match main, output deprecations intact;
frontend metadata types and `twenty-client-sdk` schema regenerated from
the running server.
- Read-only-related and touched jest suites pass on both packages;
typecheck and lint pass on `twenty-server` and `twenty-front`.
<!-- CURSOR_AGENT_PR_BODY_END -->

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---------

Co-authored-by: Cursor Agent <cursoragent@cursor.com>
2026-06-13 07:10:22 +02:00
Weiko 9c66975520 isCustom deprecation for Objects and Fields (#21228)
## Context

`isCustom` was a legacy denormalized boolean on `ObjectMetadataEntity`
and `FieldMetadataEntity`.
Now that every metadata row carries `applicationId` (via
`SyncableEntity`), "is this custom" is fully derivable, and the stored
boolean was a redundant second source of truth that could drift.

The real meaning of `isCustom` is **"the owning application is not the
twenty-standard application"** — i.e. `!belongsToTwentyStandardApp`.
Note this is *not* "belongs to the workspace custom app" as I initially
thought: third-party-application
objects/fields are custom too. 
The standard application has a globally stable `universalIdentifier`, so
the value derives with no per-workspace lookup.

## Changed
## `isCustom` checks — before → after

`isCustom` is no longer a stored column. The table below lists every
site that branched on it and how it resolves now. The unifying rule:
`isCustom ≡
!isTwentyStandardApplicationUniversalIdentifier(applicationUniversalIdentifier)`.

### Server — behavioural checks

| Location | Purpose | Before | Now |
|---|---|---|---|
| `utils/compute-object-target-table.util.ts` | Physical table name `_`
prefix | `computeTableName(nameSingular, objectMetadata.isCustom)` |
derives from `applicationUniversalIdentifier` (single source for all
table-name callers) |
| `twenty-orm/factories/entity-schema.factory.ts` +
`…/entity-schema-metadata.type.ts` | ORM table name (hot path) |
`object.isCustom` | `object.applicationId !== standardApplicationId`
(computed in `buildEntitySchemaMetadataMaps`) |
|
`twenty-orm/repository/workspace-{delete,soft-delete,update}-query-builder.ts`
| Table name for mutations | `computeTableName(nameSingular,
objectMetadata.isCustom)` | `computeObjectTargetTable(objectMetadata)` |
| `index-metadata/utils/generate-deterministic-index-name-v2.ts` | Index
name hash (must stay bit-identical) | `flatObjectMetadata.isCustom` |
derives from `applicationUniversalIdentifier` |
| `object-metadata/object-record-count.service.ts` | Table name for
record count | `computeTableName(nameSingular, isCustom)` |
`computeObjectTargetTable(flatObjectMetadata)` |
|
`workspace-manager/dev-seeder/data/services/dev-seeder-data.service.ts`
| Match seed config by table name | `computeTableName(item.nameSingular,
item.isCustom)` | `computeObjectTargetTable(item)` |
| `commands/workspace-export/workspace-export.service.ts` +
`…/utils/generate-workspace-schema-ddl.util.ts` | Export table name (raw
entity) | `objectMetadata.isCustom` |
`!isTwentyStandard…(objectMetadata.application?.universalIdentifier)` |
|
`flat-field-metadata/services/flat-field-metadata-type-validator.service.ts`
| Block users creating reserved field types |
`args.flatEntityToValidate.isCustom` |
`!args.flatEntityToValidate.isSystem` |
| `api/common/.../common-create-many-query-runner.service.ts` | Don't
let client overwrite system `createdBy` |
`createdByFieldMetadata.isCustom === false` |
`createdByFieldMetadata.isSystem === true` |
|
`field-metadata/utils/resolve-field-metadata-standard-override.util.ts`
| Skip i18n/overrides for custom fields | `if (fieldMetadata.isCustom)
return raw` | **removed** — falls through on
`isDefined(standardOverrides)` |
|
`object-metadata/utils/resolve-object-metadata-standard-override.util.ts`
| Skip i18n/overrides for custom objects | `if (objectMetadata.isCustom)
return raw` | **removed** — same fall-through |
|
`command-menu-item/utils/build-navigation-interpolation-context.util.ts`
| Override context for nav labels | passed `isCustom` into resolver |
dropped (resolver no longer needs it) |
| `api/common/.../data-arg-processor.service.ts` | `isCustom` for
record-position table name | `flatObjectMetadata.isCustom` | derives
from `applicationUniversalIdentifier` |
| `metadata-modules/minimal-metadata/minimal-metadata.service.ts` |
Minimal DTO + override context | `flatObjectMetadata.isCustom` | derives
from `applicationUniversalIdentifier` |
|
`commands/upgrade-version-command/1-23/…backfill-record-page-layouts.command.ts`
| Filter to custom objects | `objectMetadata.isCustom` |
`!isTwentyStandard…(applicationUniversalIdentifier)` |

### Server — DTO / API population

| Location | Before | Now |
|---|---|---|
|
`flat-object-metadata/utils/from-flat-object-metadata-to-object-metadata-dto.util.ts`
| passthrough `isCustom` | derives from `applicationUniversalIdentifier`
|
|
`flat-field-metadata/utils/from-flat-field-metadata-to-field-metadata-dto.util.ts`
| passthrough `isCustom` | derives from `applicationUniversalIdentifier`
|
|
`object-metadata/utils/from-object-metadata-entity-to-object-metadata-dto.util.ts`
(REST) | `entity.isCustom` | `entity.applicationId !==
standardApplicationId` |
|
`field-metadata/utils/from-field-metadata-entity-to-field-metadata-dto.util.ts`
(REST) | `entity.isCustom` | `entity.applicationId !==
standardApplicationId` |
| `dataloaders/dataloader.service.ts` | passed
`flatFieldMetadata.isCustom` into override resolver | dropped (resolver
no longer needs it) |

> REST controllers (`object-metadata.controller.ts`,
`field-metadata.controller.ts`) resolve `standardApplicationId` once per
request from the cached `flatApplicationMaps`.

### Frontend

| Location | Purpose | Before | Now |
|---|---|---|---|
| `settings/.../SettingsObjectFieldDisabledActionDropdown.tsx` | Whether
an inactive field is deletable | `isDeletable = isCustomField` |
`isDeletable = isCustomField && !isSystemField` |

### Unchanged (out of scope)

`isCustom` on `IndexMetadata` / `View` / `Skill` / `Agent` and their
guards still read the persisted column.

Breaking change is on the isCustom filter on field and object APIs, this
is never used in the FE and unlikely used by external consumers
2026-06-09 13:57:19 +00:00
Charles Bochet fcaf2b4d9b chore(twenty-server): temporary instrumentation for app-install 504 (#21365)
## Why

App installs on cloud intermittently fail with a 504, surfacing in
Sentry as `Migration action 'update' for 'logicFunction' failed` +
`Failed to rollback transaction: Query runner already released`. This is
**temporary instrumentation** to pin down where the time goes — to be
reverted once the bottleneck is fixed. Everything is greppable via
`[install-perf]` and marked `// TODO(install-perf)`.

## What the local repro already told us

I instrumented the manifest-sync/migration path and ran a local harness
(new skipped spec) installing **1 / 8 / 30 logic functions**, for both
create and the checksum-bump **update** (the incident path):

| stage (N=30, update) | ms |
|---|---|
| flat-maps recompute | ~1 |
| build migration | ~11 |
| transaction (all actions + commit) | ~79 |
| post-commit cache invalidate | ~6 |
| **full sync** | **~135** |

Nothing approached 1s, let alone 10s; no slow queries logged. So the
migration/cache code is **not** the algorithmic cause. Given the
in-transaction `UPDATE ... WHERE id=?` is intrinsically fast, a >10s in
prod almost certainly means it was **blocked on a lock**, and the 10s
node-pg `query_timeout` (`core.datasource.ts`) then killed the
connection → the observed errors + 504. Local can't reproduce prod lock
contention / table sizes, hence this instrumentation.

## What this adds (all `TODO`-marked)

- **hrtime per-stage timing** — flat-maps recompute, build vs run,
per-action (`>50ms`), transaction summary, post-commit cache
invalidation. Uses `process.hrtime` because the integration harness
enables fake timers (so `Date.now()` is useless there).
- **`maxQueryExecutionTime`** slow-query logging on the core datasource
(logs the offending SQL).
- **Scoped `SET LOCAL lock_timeout = '8s'`** on the migration
transaction (below the 10s `query_timeout`) → a blocked action fails
fast with a clear *"canceling statement due to lock timeout"* instead of
the opaque connection kill.
- **Best-effort `pg_stat_activity` snapshot on failure** (on a fresh
pooled connection) to identify the blocking session, plus a **guarded
rollback** so a released connection stops masking the real error.
- **Skipped local perf harness**
(`logic-function-install-performance.integration-spec.ts`) — run
manually with `nx test:integration:with-db-reset -- --testPathPattern
"logic-function-install-performance"`.

## How we'll use it

Deploy, reproduce the failing install, and read the `[install-perf]`
logs: the per-action timing names the action, the `lock_timeout` message
+ `pg_stat_activity` snapshot name the **blocking** query/PID. Then
revert this PR and fix the actual contention.

Typecheck (`nx typecheck twenty-server`) is clean.
2026-06-09 15:57:25 +02:00
martmull 77d1e8ced6 feat(app-dev): sync error hints, flatEntity labels, dev-mode summary UI, and docs (#21252)
Split out of #21240 — all remaining app-dev improvements. Stacked on
#21251 (review/merge that first).

- Actionable recovery hints on failed syncs; unified diff renderer;
`--dry-run` guard.
- Return `flatEntity` on update/delete sync actions and unify the diff
label.
- Summarize the dev-mode entity list unless `--verbose`.
- Docs: syncing & recovery guide + dry-run + open-an-issue prompt.
- Live execution mode for synced logic functions; clearer manifest
warnings.

<img width="1018" height="700" alt="image"
src="https://github.com/user-attachments/assets/5e9ce19e-0f1d-4f99-8524-4e118bde932b"
/>
2026-06-08 15:43:28 +00:00
neo773 186d5b8faa revert #21177 (#21284) 2026-06-06 14:49:55 +02:00
martmull 6c65d26ced feat(app-dev): add dry-run preview to dev sync (#21251)
Split out of #21240. Stacked on #21250 (review/merge that first).

`yarn twenty dev --once --dry-run` computes the migration plan and
prints the diff **without applying anything** (no migration, no
app-record update, no SDK generation). Also renders the diff on a normal
`dev --once` sync.

<img width="646" height="179" alt="image"
src="https://github.com/user-attachments/assets/59f3ddcd-2a5b-4b8a-b21a-c659abe16af0"
/>
2026-06-05 17:49:02 +00:00
neo773 bfb83e93b2 fix(metadata): resolve junction targets order-independently during mgration (#21193)
A junction relation points at a target field on the join object that
another action may create later (two junctions into the same join
reference each other). The builder validator now also looks up the
target in the to be created set, and the runner mints every field id up
front so the target resolves regardless of action order, the same way
relation pairs are already handled.

---------

Co-authored-by: Félix Malfait <felix@twenty.com>
2026-06-05 17:32:25 +00:00
martmull 128d2d394d feat: allow apps to add view fields to existing views (defineViewField) (#21160)
## Summary

Lets a Twenty application add **view fields (columns) to an existing
view it does not own** — including standard views like the People index
view — without redeclaring/owning that view. This mirrors the existing,
working pattern by which an app adds a custom field to a standard object
via `defineField` + `objectUniversalIdentifier`.

The asymmetry being removed was purely in the manifest schema:
`ViewFieldManifest` only existed *nested* inside
`ViewManifest.fields[]`, so adding a view field forced declaring a
`ViewManifest` — which the sync treats as a view the app creates and
owns, and rejects when the UID is a standard view's. Validation,
persistence, the FK aggregator machinery, and uninstall cleanup were
already generic and cross-app-safe, so no engine changes were needed.

### Changes
- **twenty-shared:** new top-level `StandaloneViewFieldManifest`
(`ViewFieldManifest & { viewUniversalIdentifier }`),
`Manifest.viewFields`, and a `SyncableEntity.ViewField` member.
- **twenty-sdk:** `defineViewField` (validates `universalIdentifier` +
`viewUniversalIdentifier` + `fieldMetadataUniversalIdentifier`), CLI
manifest assembly of a top-level `viewFields` list, and `dev:add
viewField` scaffolding.
- **twenty-server:** one top-level loop over `manifest.viewFields` that
reuses the existing `fromViewFieldManifestToUniversalFlatViewField`
converter (already parameterized by `viewUniversalIdentifier`). No
validator/persistence/aggregator changes.

### Notes for maintainers
- Confirm the `Manifest.viewFields` optionality convention — implemented
as a **required** array to mirror `fields`/`views`.
- Two different apps adding a column for the same field to the same view
conflicts on the existing unique `(fieldMetadataId, viewId)` partial
index; the existing `flat-view-field-validator` duplicate check surfaces
this as a structured validation error.
- `dev:add viewField` scaffolding is included (was optional in the
plan).

## Test Plan
- [x] `twenty-shared` typecheck
- [x] `twenty-sdk` 364 unit tests + `buildManifest` assembly test
(rich-app fixture) + typecheck + prettier
- [x] `twenty-server` typecheck + `lint:diff-with-main`
- [x] **Server integration suite**
`successful-manifest-update-view-field.integration-spec.ts` (4/4):
- standalone view field attaches to the standard `allPeople` view
without recreating it (sync succeeds, no
`INVALID_VIEW_DATA`/`ENTITY_ALREADY_EXISTS`)
- uninstall removes the contributed column while the standard view + its
columns remain intact
  - duplicate `(view, field)` rejected with `METADATA_VALIDATION_FAILED`
  - unknown target view rejected
- [x] Sibling `successful-manifest-update-field.integration-spec.ts`
still green (no harness regression)

🤖 Generated with [Claude Code](https://claude.com/claude-code)
2026-06-05 08:06:30 +00:00
Paul Rastoin 0877ba2ffd Fix getApplicationSubAllFlatEntityMaps to prune unrelated appIds universal identifier aggregators (#21234)
# Introduction
Atm when computing the `fromAllFlatEntityMaps` we're retrieving all the
applicationIds related metadata entities to build a flat entity maps
scoped to them ( atm always the applicationId + twenty-standard
application id ) only inter app dependency we manage for the moment

A flat entity contains universal identifier aggregator to its related
entities

The issue was that the `getApplicationSubAllFlatEntityMaps` wasn't
pruning the aggregator by app

Now added a new process phase after the initial one that will check that
all the aggregators contains universal identifiers that has been
retrieve from the appId + appId standard intersection

## TDD test
Created a very human readable ( that's a joke ) test
2026-06-04 16:53:25 +00:00
Raphaël Bosi 41d5d80a65 Migrate Company and Person standard fields in preparation for the enrichment app (#21171)
# Migrate Company and Person standard fields in preparation for the
enrichment app

## Why

Our standard `Person`/`Company` objects accumulated fields that aren't
generic to every
business, while missing a more universal revenue field that essentially
every CRM ships.
This PR makes the **Standard application** hold a tighter, more
universal set of fields,
and sets the stage for a follow-up PR that introduces a **People Data
Labs enrichment app**
to populate them.

## What changes

### Standard fields

**Demoted (Standard → Workspace Custom application)** — not generic
enough to ship as standard:

| Object  | Field                          | Type     |
| ------- | ------------------------------ | -------- |
| Company | annualRecurringRevenue (ARR)   | CURRENCY |
| Company | employees                      | NUMBER   |
| Company | idealCustomerProfile (ICP)     | BOOLEAN  |
| Company | xLink (X/Twitter)              | LINKS    |
| Person  | xLink (X/Twitter)              | LINKS    |
| Person  | city                           | TEXT     |

**Added (new generic Standard field)** — present in
Salesforce/HubSpot/Zoho, PDL-populatable:

| Object | Field | Type |
| ------- | ------------- |
-------------------------------------------------------- |
| Company | annualRevenue | CURRENCY (generic total revenue; replaces
the niche ARR) |

### Behavior by workspace

* **New workspaces:** demoted fields are gone; `annualRevenue` is
**active**.
* **Existing workspaces:** demoted fields are **preserved as active
custom fields, data intact**;
`annualRevenue` is created **inactive (opt-in)** with its column ready,
so a later activation
  is a metadata-only toggle.

### Upgrade commands (v2.9)

Three idempotent, per-workspace commands, run in timestamp order:

1. **`upgrade:2-9:move-demoted-standard-fields-to-custom-application`**
(1799000040000) —
re-owns the 6 demoted fields to the workspace custom application
(`isCustom = true`,
new `applicationId` + fresh `universalIdentifier`), keeping their data
and active state.
2. **`upgrade:2-9:rename-conflicting-custom-fields`** (1799000045000) —
if a workspace already
has a *custom* field named `annualRevenue`, renames it to
`annualRevenueCustom`
(data preserved via column rename) so the standard field can be added.
Skips non-custom matches.
3. **`upgrade:2-9:add-inactive-generic-standard-fields`**
(1799000050000) — creates
`Company.annualRevenue` on existing workspaces as inactive, guarded to
skip workspaces
   missing the target object or where the name is still taken.

**Failure model:** the workspace iterator isolates failures per
workspace (one workspace failing
never affects others); within a workspace the runner records per-command
status and resumes on the
next run, and every command is idempotent, so partial runs self-heal.

### Supporting changes

* **Field-option color palette:** widened the `TagColor` union
(`twenty-shared` `FieldMetadataOptions`
+ the field-metadata `options.input` DTO) from 10 colors to the full
theme palette, benefiting any
  future SELECT/MULTI_SELECT field.
* **Dev seeder:**
* The default "Annual Recurring Revenue" dashboard widget now points at
the generic
    `annualRevenue` field (renamed to "Annual Revenue").
* Removed the "Companies by Size (Stacked by City)" widget (relied on
the demoted `employees`).
* `employees` is dropped from company data seeds and re-added as a
**custom** field seed, so dev
workspaces still get an `employees` column matching the demoted
behavior.

### Cleanup

Front-end record types (`Company.ts`/`Person.ts`), the
`getDisplayNameFromParticipant` test mock,
metadata integration specs, the Zapier `crud_record` test, and the
regenerated
`get-standard-object-metadata-related-entity-ids` snapshot.

## ⚠️ Breaking change (intentional)

Removes standard fields `Company.annualRecurringRevenue`,
`Company.employees`,
`Company.idealCustomerProfile`, `Company.xLink`, `Person.xLink`, and
`Person.city` from the core
GraphQL schema (replaced by `Company.annualRevenue`).

This is why the breaking-changes check reports a large number of
removals — `graphql-inspector`
flags any removed object field plus its derived
aggregate/order-by/filter/update types.

**Mitigation:** the
`upgrade:2-9:move-demoted-standard-fields-to-custom-application` command
re-owns these fields as custom fields per workspace, preserving their
name and data, so existing
tenants keep working. New workspaces won't have them.
2026-06-04 15:54:04 +00:00
Paul Rastoin 3d49642d12 [AUDIT] Run knip over twenty-server (#21159)
# Introduction
Run [knip](https://knip.dev/) over twenty-server
Used config:
```json
{
  "$schema": "https://unpkg.com/knip@5/schema.json",
  "workspaces": {
    "packages/twenty-server": {
      "entry": [
        "src/main.ts",
        "src/command/command.ts",
        "src/queue-worker/queue-worker.ts",
        "src/database/scripts/setup-db.ts",
        "src/database/scripts/truncate-db.ts",
        "src/database/clickHouse/migrations/run-migrations.ts",
        "src/database/clickHouse/seeds/run-seeds.ts",
        "src/instrument.ts",
        "lingui.config.ts",
        "test/integration/graphql/codegen/index.ts",
        "test/integration/utils/setup-test.ts",
        "test/integration/utils/teardown-test.ts",
        "scripts/**/*.ts",
        "**/*.spec.ts",
        "**/*.integration-spec.ts"
      ],
      "project": ["src/**/*.ts", "test/**/*.ts", "scripts/**/*.ts"],
      "ignore": [
        "src/database/typeorm/**/migrations/**",
        "src/database/typeorm/**/*.entity.ts",
        "**/*.workspace-entity.ts",
        "**/logic-function-resource/constants/seed-project/**"
      ],
      "ignoreDependencies": ["@types/psl", "@types/aws-lambda"],
      "ignoreBinaries": ["nest", "lingui", "typeorm"]
    }
  }
}
```
2026-06-04 10:05:22 +00:00
Weiko cc76b7bc50 Fix fields widget new field visibility (#21111)
Fixes https://github.com/twentyhq/twenty/issues/21043

## Context
Newly created fields were never added to FIELDS widgets, regardless of
the "Set fields created in the future as visible" toggle. The widget's
newFieldDefaultVisibility was null on widgets that never explicitly set
it (it was never populated at creation), so the backend skipped them and
no view field was created.

## Implementation
Keep newFieldDefaultVisibility nullable with false (not visible) as the
behavior when not provided.
The FE now reflects that properly and shows "un-toggled" when it's null
(iso with BE behavior).

The fix also ensures the value is explicitly set to true wherever it
should be:
- Set newFieldDefaultVisibility: true at every FIELDS widget creation
path (backend default record-page layout, frontend
createDefaultFieldsWidget + useTemporaryFieldsConfiguration);
- Added a 2-9 workspace upgrade command that backfills true onto
existing standard FIELDS widgets where the value is null.
2026-06-03 15:29:57 +00:00
Paul Rastoin 164a5b1e8d Refactor email composer (#21177)
# Introduction
Gate what connected account can be ingested in case of ai mcp user
workspace agnostic funnel to only the workspace shared connected account

Added a quick win intregration tests on seeded connected accounts ( that
wasn't covered but already protected fix impacts only the mcp )

Refactored the API slightly too

## Notice
This mean there's a breaking change in the product behavior
Whereas before a non user workspace related mcp interaction would might
have fallback on any private user connected account it will now only
search for workspace visible listed ones
2026-06-03 15:15:51 +00:00
Charles Bochet 58907b733c feat(logic-function): add LIVE / PREBUILT execution modes (#20873)
## Summary

### Why

1. Sending the code to the lambda (~1Mb usually) is heavy on network and
results to a constant traffic of ~30Mb/s on AWS which results into TB of
network data every month
2. eval(1MB of code) is not that fast, it's heavy on memory and CPU on
lambda side

### High level

Adds two execution modes for logic functions, gated behind the new
`IS_LOGIC_FUNCTION_PREBUILT_MODE_ENABLED` workspace feature flag (off
everywhere by default):

- **LIVE** (current behavior, preserved bit-for-bit): the compiled
bundle is read from object storage and shipped in every Lambda invoke
payload. Used for fast iteration in the workflow editor / Settings test
runs.
- **PREBUILT** (new): the bundle is installed onto the per-function
Lambda alongside the unified executor, and invocations carry only `{
params, env, handlerName }` — saving JSON payload egress and warm-start
`import()` cost on every call.

### Key design choices

- **Unified Lambda handler** (`constants/executor/index.mjs`) dispatches
at runtime: `event.code` present ? LIVE (write to `/tmp`, dynamic
import) : `import('./prebuilt-logic-function.mjs')`. Both code paths
always coexist on the deployment package, so the same Lambda can serve
either mode without redeploying.
- **Install runs inside the `validateBuildAndRun` migration pipeline**,
not at execute time. `Create/UpdateLogicFunctionActionHandlerService`
calls `driver.installPrebuiltBundle` when `executionMode` flips
LIVE?PREBUILT or `checksum` changes while PREBUILT, gated on
`isBuildUpToDate=true` and a fresh checksum.
- **Strict execute, no reconciliation**:
`LogicFunctionExecutorService.execute` resolves `effectiveExecutionMode`
(caller override > feature flag > entity column). For PREBUILT it asks
the driver `getInstalledBundleChecksum` (Lambda `twenty:bundle-checksum`
tag for AWS, sidecar file locally) and throws
`LOGIC_FUNCTION_PREBUILT_BUNDLE_NOT_INSTALLED` on mismatch.
- **Feature flag gates every side effect**: with the flag off the
executor forces LIVE, the action-handler install hooks bail before AWS,
and workflow activation does not flip the mode. Rollback is just turning
the flag off.

### Lifecycle

- New workflow CODE step ? `LIVE`, no install.
- Workflow activated ? build + activation flips `executionMode=PREBUILT`
? action-handler installs the bundle + sets the Lambda tag.
- Draft from active version ? duplicated logic function reset to `LIVE`.
- App install ? manifest converter sets `PREBUILT`, create-action
handler installs.
- Test runs (`executeOneFromSource`, workflow editor) pass
`executionMode=LIVE` explicitly.

### Observability

`[lambda-timing]` log lines now include `effectiveExecutionMode` and
`payloadBytes`; the action handler logs `install_duration_ms` for each
install.

## Test plan

- [x] `npx nx typecheck twenty-server` ? passes
- [x] `npx oxlint --type-aware` on all changed files ? 0 warnings, 0
errors
- [x] `npx nx test twenty-server` ? 588 suites / 5009 tests pass (no
regressions vs main)
- [x] New unit suite `flat-logic-function-validator.service.spec.ts` ?
9/9
- [x] Existing
`workflow-version-step-operations.workspace-service.spec.ts` ? 8/8
(verified the new token-based DI avoids a circular-import regression)
- [x] Snapshot for
`ALL_UNIVERSAL_FLAT_ENTITY_PROPERTIES_TO_COMPARE_AND_STRINGIFY` updated
to include `executionMode`
- [x] Integration suite `logic-function-execution.integration-spec.ts`
extended to assert `executionMode=LIVE` on newly-created functions and
continues to exercise the LIVE happy path
- [ ] Manual staging rollout: flip
`IS_LOGIC_FUNCTION_PREBUILT_MODE_ENABLED` per workspace, observe
`[lambda-timing]` `payloadBytes` drop + `install_duration_ms`, then ramp
in prod.
2026-06-02 11:14:39 +00:00
nitin 13f09d8946 [Dashboards] Remove gauge chart types and code (#20410)
Follow-up cleanup to #20172.
2026-05-29 11:08:50 +02:00
nitin 863f3f29a2 Fix page layout widget tab moves (#20915)
Fixes widget moves between page layout tabs by making pageLayoutTabId
part of the flat-entity diff, so the save mutation no longer silently
drops the new tab assignment.

https://discord.com/channels/1130383047699738754/1508737039128985680
2026-05-27 15:29:12 +00:00