22b49a502c5e91e5893e627d6aef2b1e443be497
111 Commits
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22b49a502c |
chore(server): remove unused flat-field-metadata per-object mocks (#22581)
## Context The `flat-field-metadata/__mocks__/` directory contained 11 large per-object `as const` mock catalogs (`OPPORTUNITY_FLAT_FIELDS_MOCK`, `PERSON_FLAT_FIELDS_MOCK`, `PET_FLAT_FIELDS_MOCK`, ...) plus a `getRelationTargetFlatFieldMetadataMock` helper. An audit of the whole server package (searching both the constant names and any import of the directory) showed almost none of them are consumed anymore — tests have moved to building exactly the fields they need with the `getFlatFieldMetadataMock` factory. Usage found: - `getFlatFieldMetadataMock` (factory): ~25 spec files + 2 core-modules mocks — **kept** - `COMPANY_FLAT_FIELDS_MOCK`: 1 spec (`object-record-event-publisher.spec.ts`), which only used the `name` field - The other 10 `*_FLAT_FIELDS_MOCK` catalogs and `getRelationTargetFlatFieldMetadataMock`: **zero consumers** ## Changes - Delete the 11 unused `*-flat-fields.mock.ts` catalogs and `get-morph-or-relation-target-flat-field-metadata-mock.ts` (~4,900 lines). Only `get-flat-field-metadata.mock.ts` remains. - In `object-record-event-publisher.spec.ts`, build the company `name` field inline with `getFlatFieldMetadataMock` (wired to `COMPANY_FLAT_OBJECT_MOCK.id`/`workspaceId`) and replace the three `COMPANY_FLAT_FIELDS_MOCK.name.type` references with `FieldMetadataType.TEXT`. The sibling `flat-object-metadata/__mocks__/` catalogs are untouched — several of those are still consumed by the morph/relation specs. ## Verification - `object-record-event-publisher.spec.ts`: 27/27 passing - `npx nx lint:diff-with-main twenty-server`: green - `npx nx typecheck twenty-server`: green https://claude.ai/code/session_01XcGEtwdXQo9uJibGRPexuG --- _Generated by [Claude Code](https://claude.ai/code/session_01XcGEtwdXQo9uJibGRPexuG)_ <!-- This is an auto-generated description by cubic. --> <a href="https://cubic.dev/pr/twentyhq/twenty/pull/22581?utm_source=github" target="_blank" rel="noopener noreferrer" data-no-image-dialog="true"><picture><source media="(prefers-color-scheme: dark)" srcset="https://www.cubic.dev/buttons/review-in-cubic-dark.svg"><source media="(prefers-color-scheme: light)" srcset="https://www.cubic.dev/buttons/review-in-cubic-light.svg"><img alt="Review in cubic" src="https://www.cubic.dev/buttons/review-in-cubic-dark.svg"></picture></a> <!-- End of auto-generated description by cubic. --> |
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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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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> |
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2e7441380f |
refactor(server): unify metadata override-blob computation (step 1 of override unification) (#22404)
## Context
Twenty currently has **two override mechanisms** for metadata:
- `standardOverrides` (a bespoke JSONB column on `objectMetadata` /
`fieldMetadata`) — i18n-aware, typed DTO with a per-locale
`translations` map, resolved via
`resolve-object/field-metadata-standard-override.util.ts`.
- `OverridableEntity.overrides` (base class: `view`, `view-field`,
`view-field-group`, `command-menu-item`, `page-layout-tab`,
`page-layout-widget`) — a flat, i18n-free `{...entity, ...overrides}`
spread, registry-driven via `isOverridable`.
"One concept, two code paths → drift & confusion; reconciliation has to
special-case." This PR is **step 1** of collapsing them.
## What this PR does (small, behavior-preserving)
The add / remove / null-collapse **override-blob write logic was
triplicated** across:
- `sanitizeOverridableEntityInput` (`overrides`)
- `sanitizeRawUpdateObjectInput` (object `standardOverrides`)
- `sanitizeRawUpdateFieldInput` (field `standardOverrides`)
This extracts it into a single `computeMetadataOverridesBlob` helper
that all three now call. This is genuine **cross-mechanism convergence
of the write path** — the first concrete reduction of the "two code
paths".
- Behavior-preserving: same diff semantics. The object/field paths used
strict `===` on their string standard-override props; `isEqual` subsumes
that for strings, and the overridable path already used `isEqual`.
- Type-casts are contained **inside** the one helper; the three call
sites stay clean and type-preserving.
- 4 files: 1 new util + 3 refactors.
## ⚠️ Draft — verification status
I could **not** run `typecheck` / `lint` / tests locally: the sandbox
this was authored in cannot complete `yarn install` (network aborts
mid-install, no `node_modules`). The change is small and reasoned, but
**please let CI validate it** — that's why this is a draft. If CI flags
a type/lint nit in the contained casts, it's isolated to
`compute-metadata-overrides-blob.util.ts`.
Per request: no code comments were added; the design/tradeoff discussion
lives here.
## The full unification plan (this PR is step 1)
The remaining steps are deliberately **not** in this PR because they
need a live DB (migration) and the front-end codegen pipeline to verify
— neither is available in the authoring sandbox. Documented here for
review before we proceed:
| Step | Change | Why staged |
|------|--------|-----------|
| **(this PR)** | Unify the write-path blob logic | Safe,
behavior-preserving, no DB/FE |
| Read path | One i18n-aware `resolveEffectiveEntity` (superset of the
flat spread + the two i18n resolvers) | The i18n resolvers are entangled
with typed translation-key narrowing; merging cleanly needs the
storage/i18n generalization below |
| Registry | Make object/field presentation props registry-driven
(`facet` + `translatable`), like the overridable set already is |
Depends on the facet annotation |
| Storage | Object/field extend `OverridableEntity`; `standardOverrides`
→ `overrides` (translations preserved); **one data migration** | Needs
DB verification; changes schema |
| GraphQL + FE | Remove the `standardOverrides` field, expose
`overrides`; regen `twenty-front` / client-SDK types; update the
Settings → Data-Model rename UI | Needs codegen; see tradeoff below |
## Key tradeoffs / decisions to confirm
1. **GraphQL break on `standardOverrides` — accepted.** Per product
call, external usage is negligible, so the later step will **remove**
the field outright (no deprecated alias). The one real consumer is the
Settings → Data-Model rename-label UI, updated in the same step. This
drops the most complex part of the original plan (a virtual-alias
resolver + deprecation window).
2. **`isActive` default.** `OverridableEntity` defaults `isActive` to
`true`; object/field default it to `false`. The storage step must
**explicitly override the default** and assert in the migration that no
existing row's `isActive` changes.
3. **Overrides stay anonymous single-slot blobs** (no per-app
attribution / multi-contributor 3-way merge). That limitation is
unchanged here and is only worth revisiting if a concrete use case needs
owner-tagged layering (real schema work, sized separately).
4. **Parity harness is the safety net for the storage step.** Because
the read-path/storage merge touches the hot object/field resolve path
and i18n precedence, that PR should land a golden-corpus parity gate
(all locales, `isStandardApp`, empty/partial/full overrides) proving the
unified resolver reproduces today's output byte-for-byte, before any
switch.
## Not included (per request)
- No service tests added.
- No code comments added (rationale/tradeoffs are here, in the PR).
## Test plan
- CI: `typecheck` + `lint` + the existing
`sanitize-overridable-entity-input.util.spec.ts` (which exercises the
shared logic through `sanitizeOverridableEntityInput`).
- The object/field write paths have no dedicated unit spec; they're
covered by the metadata integration suites
(`successful-update-one-standard-object/field-metadata`).
https://claude.ai/code/session_01E1pGBDLC3gEBs1w45G2W5Z
---
_Generated by [Claude
Code](https://claude.ai/code/session_01E1pGBDLC3gEBs1w45G2W5Z)_
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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 <!-- This is an auto-generated description by cubic. --> <a href="https://cubic.dev/pr/twentyhq/twenty/pull/22287?utm_source=github" target="_blank" rel="noopener noreferrer" data-no-image-dialog="true"><picture><source media="(prefers-color-scheme: dark)" srcset="https://www.cubic.dev/buttons/review-in-cubic-dark.svg"><source media="(prefers-color-scheme: light)" srcset="https://www.cubic.dev/buttons/review-in-cubic-light.svg"><img alt="Review in cubic" src="https://www.cubic.dev/buttons/review-in-cubic-dark.svg"></picture></a> <!-- End of auto-generated description by cubic. --> |
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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. <!-- This is an auto-generated description by cubic. --> <a href="https://cubic.dev/pr/twentyhq/twenty/pull/21972?utm_source=github" target="_blank" rel="noopener noreferrer" data-no-image-dialog="true"><picture><source media="(prefers-color-scheme: dark)" srcset="https://www.cubic.dev/buttons/review-in-cubic-dark.svg"><source media="(prefers-color-scheme: light)" srcset="https://www.cubic.dev/buttons/review-in-cubic-light.svg"><img alt="Review in cubic" src="https://www.cubic.dev/buttons/review-in-cubic-dark.svg"></picture></a> <!-- End of auto-generated description by cubic. --> |
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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> |
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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 |
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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. <!-- This is an auto-generated description by cubic. --> <a href="https://cubic.dev/pr/twentyhq/twenty/pull/21673?utm_source=github" target="_blank" rel="noopener noreferrer" data-no-image-dialog="true"><picture><source media="(prefers-color-scheme: dark)" srcset="https://www.cubic.dev/buttons/review-in-cubic-dark.svg"><source media="(prefers-color-scheme: light)" srcset="https://www.cubic.dev/buttons/review-in-cubic-light.svg"><img alt="Review in cubic" src="https://www.cubic.dev/buttons/review-in-cubic-dark.svg"></picture></a> <!-- End of auto-generated description by cubic. --> |
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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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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
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f4ead89956 |
refactor(twenty-orm): migrate 23 grandfathered entities to WorkspaceScopedRepository (#20987)
## Summary Follow-up to #20953. Migrates 23 of the 30 entities that were left in `WORKSPACE_SCOPED_EXEMPTIONS` last time, so the lint rule's workspaceId-enforcement default now covers most of the core/metadata schema. ### Migrated (23 entities, 88 files, 22 commits) | Family | Entities | |---|---| | Trivial caches | `NavigationMenuItem`, `Skill`, `DataSource`, `Webhook`, `CommandMenuItem`, `IndexMetadata` | | Views | `View`, `ViewField`, `ViewFieldGroup`, `ViewFilter`, `ViewFilterGroup`, `ViewGroup`, `ViewSort` | | Layouts | `PageLayout`, `PageLayoutTab`, `PageLayoutWidget` | | Roles & permissions | `Role`, `RoleTarget`, `PermissionFlag`, `ObjectPermission`, `FieldPermission`, `RowLevelPermissionPredicate`, `RowLevelPermissionPredicateGroup` | For each entity: swap `@InjectRepository(X)` → `@InjectWorkspaceScopedRepository(X)` (and the field type → `WorkspaceScopedRepository<X>`); rewrite every call site to pass `workspaceId` as the first arg (stripped from `where`/criteria — the wrapper throws if you include it now); register `provideWorkspaceScopedRepository(X)` in every owning NestJS module; update affected spec providers to `getWorkspaceScopedRepositoryToken(X)`. ### Rule update - `ApplicationRegistrationVariableEntity` was misclassified — moved to `STRUCTURAL_EXEMPTIONS` (no `workspaceId` column; it's keyed on `applicationRegistrationId` at the instance level). - 22 of the 23 migrated entities removed from `WORKSPACE_SCOPED_EXEMPTIONS` entirely (zero remaining raw `@InjectRepository` sites). - `RoleTargetEntity` also removed; one call site in `user-workspace.service.ts` keeps a raw injection with an `eslint-disable` + reason because `softRemove(...)` is not on the wrapper API yet (the migration would require threading `workspaceId` through `deleteUserWorkspace`'s three callers). ### Still exempted (7 entities, follow-up PRs) | Entity | Why deferred | |---|---| | `ApplicationEntity` | ~50 sites with several cross-workspace lookups by id (auth, OAuth, file-storage, cleanup) | | `CalendarChannelEntity` / `MessageChannelEntity` | Use `.increment(...)` (not on wrapper) and `repository.manager.transaction(...)` — wrapper needs to grow `.increment` + the transaction sites need `withManager` or dual-inject | | `FieldMetadataEntity` / `ObjectMetadataEntity` | The metadata services `extends TypeOrmQueryService<X>` and `super(rawRepo)` — requires dual-inject or reworking the inheritance | | `KeyValuePairEntity` | Allows `workspaceId: IsNull()` for instance-level config; wrapper rejects null | | `UpgradeMigrationEntity` | Same — instance-level + cross-workspace ledger | ## Test plan - [x] `npx nx typecheck twenty-server` — clean - [x] `npx nx lint twenty-server` — clean (0/0) - [x] All 10 affected unit specs pass (115 tests) — api-key, agent-role, permissions, workspace-roles-permissions-cache, view-filter-group, workflow-version-step-operations, two-factor-authentication (service + resolver), user-workspace, file - [ ] Server integration tests in CI |
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084fa8eaba |
fix(server): auto-index target<X>Id join columns on polymorphic standard objects (#20820)
Closes #20726 ## The bug `timelineActivity` (and the three other polymorphic standard objects — `attachment`, `noteTarget`, `taskTarget`) store relations as N nullable `target<X>Id` columns, one per related object. Each one is a join key queried as `WHERE target<X>Id IN (...) AND deletedAt IS NULL`. For **built-in** related objects (Person, Company, Opportunity, …), each `target<X>Id` column gets a BTREE index, declared statically in `compute-{timelineActivity,attachment,noteTarget,taskTarget}-standard-flat-index-metadata.util.ts`. For **custom** related objects, the same `target<CustomObject>Id` column was added — **without an index**. On a `timelineActivity` table at issue-reporter scale (~21.9M rows, 7.1 GB), this turned record loads into 20–40s sequential scans and produced `QueryFailedError: Query read timeout` for end users. ## Diagnosis The morph/relation field generator (`generateMorphOrRelationFlatFieldMetadataPair`) already creates a BTREE index for the field that owns the join column and returns it alongside the field metadata pair. The two user-driven entry points (`fromRelationCreateFieldInput…`, `fromMorphRelationCreateFieldInput…`) correctly destructure and propagate that index. But the **custom-object creation path** — `buildDefaultRelationFlatFieldMetadatasForCustomObject`, called when a user creates a new custom object — destructured only `{ flatFieldMetadatas }` and threw away `indexMetadatas`. So every `target<CustomObject>Id` column added to the four polymorphic standard objects has been shipping unindexed since custom morph relations went in. ## The fix Three commits. ### 1. `fix(server): index target<CustomObject>Id columns on standard polymorphic objects` 13 lines across 2 files. - `build-default-relation-flat-field-metadatas-for-custom-object.util.ts` — also destructure `indexMetadatas` from the pair generator and accumulate them into the returned record (new field `standardTargetFlatIndexMetadatas`). - `from-create-object-input-to-flat-object-metadata-and-flat-field-metadatas-to-create.util.ts` — append the accumulated indexes to `flatIndexMetadataToCreate`. The migration pipeline at `object-metadata.service.ts:559–562` already passes `flatIndexMetadataToCreate` to the migration runner, so no further wiring is needed. From now on, creating a custom object also creates the four BTREE indexes — one per polymorphic standard object's new `target<CustomObject>Id` column — atomically with the rest of the migration. ### 2. `feat(server): backfill workspace command for relation join column indexes` For existing workspaces whose custom objects were created before the forward-fix. `upgrade:2-8:backfill-relation-join-column-indexes` is a `@RegisteredWorkspaceCommand('2.8.0', 1798100000000)` matching the pattern from `2-7-workspace-command-…-drop-connected-account-standard-object.command.ts`. Per workspace: 1. Load `flatObjectMetadataMaps`, `flatFieldMetadataMaps`, `flatIndexMaps` from the workspace cache. 2. Resolve the four polymorphic standard object IDs by `nameSingular` against `DEFAULT_RELATIONS_OBJECTS_STANDARD_IDS`. 3. Collect every field ID that's already covered by any existing index. 4. Filter `flatFieldMetadataMaps` to MORPH_RELATION fields on those four objects whose `settings.relationType === MANY_TO_ONE` (i.e. owns a join column) and whose ID isn't in the indexed set. 5. Generate a BTREE `UniversalFlatIndexMetadata` for each via `generateIndexForFlatFieldMetadata` (same helper the forward-fix uses). 6. Create the indexes in the workspace schema with **CONCURRENTLY** (see commit 3). 7. Submit the metadata through `WorkspaceMigrationValidateBuildAndRunService` so it lands in `indexMetadata` and the cache — same pipeline as a normal metadata change. The pipeline's own `CREATE INDEX IF NOT EXISTS` no-ops because the index already exists. Properties: - **Idempotent.** Re-running is a no-op once indexes exist. - **Scoped.** Only the four polymorphic standard objects, only their MANY_TO_ONE morph relation fields, only those with no covering index. - **Same code path as the forward-fix.** The backfill produces exactly the indexes the forward-fix would have created at custom-object creation time. - **`--dry-run` supported** via the base `ActiveOrSuspendedWorkspaceCommandRunner`. ### 3. `feat(server): create index CONCURRENTLY in relation join column backfill` Adds an opt-in `concurrently` flag to `WorkspaceSchemaIndexManagerService.createIndex` (threaded through `createIndexInWorkspaceSchema`). When `true`, emits `CREATE INDEX CONCURRENTLY IF NOT EXISTS …`. Defaults to `false` — every existing caller keeps the current transactional `CREATE INDEX` behavior. The backfill command opts in. It creates a QueryRunner **without** `startTransaction()`, issues the CONCURRENTLY indexes one-by-one (each waits for the previous to finish), then submits the metadata through the normal migration pipeline whose own `CREATE INDEX IF NOT EXISTS` is now a no-op. Why not flip the default for the helper: - `CREATE INDEX CONCURRENTLY` cannot run inside a transaction — Postgres errors out. The migration pipeline calls `createIndex` from inside a transactional schema migration. - CONCURRENTLY doesn't roll back with the transaction. If the surrounding migration fails, the index remains and you end up with metadata/schema drift. - Failed CONCURRENTLY builds leave an INVALID index behind that needs manual `DROP`. - UNIQUE indexes have different failure semantics under CONCURRENTLY (deferred, not immediate). So CONCURRENTLY is opt-in, used only where it's the right tool (post-hoc backfills on populated tables). ## Decisions / tradeoffs - **Single-column BTREE vs partial `WHERE deletedAt IS NULL` vs composite.** Twenty's queries always include `deletedAt IS NULL`. A partial index would be slightly better than a plain BTREE (smaller, no wasted seeks on soft-deleted rows). This PR ships single-column to match the existing built-in target index pattern, which already covers >95% of the available speedup (the 20s→4ms drop the reporter saw comes from having any index — composite/partial is a second-order effect). Switching all relation indexes to partial is a separate, broader change. - **CONCURRENTLY operator caveat.** If a CONCURRENTLY build is interrupted (kill, connection drop, OOM), Postgres leaves the index as INVALID. We deliberately don't probe `pg_index` for invalid leftovers on every create — catalog-table queries can be slow at multi-tenant scale and the failure mode is rare. Recovery is manual: `DROP INDEX <name>` and re-run the backfill. - **Forward-fix is not gated** behind a feature flag. The change is metadata-pipeline-internal; before, custom-object creation silently produced a degraded state. After, it produces the correct state. No new public API, no behavioural change for end users besides the indexes existing. ## Risk - Forward-fix: changes only the metadata produced during custom-object creation. New objects get four extra `FlatIndexMetadata` rows and four extra `CREATE INDEX` statements during their creation migration. Tables are empty at that point so the index builds in microseconds. - Helper change: API-compatible, default behavior unchanged. The new `concurrently` parameter is optional. - Backfill: read-only state probe → CONCURRENTLY index creation (no write blocking) → metadata insert via the normal migration pipeline. Idempotent. Reverting is `DROP INDEX`. ## Test plan - [ ] Verify forward-fix: create a custom object, confirm four new BTREE indexes appear on `timelineActivity`, `attachment`, `noteTarget`, `taskTarget` for the new `target<CustomObject>Id` columns, and that `flatIndexMaps` has matching entries. - [ ] Verify backfill on a workspace that had custom objects created before the fix: run `--dry-run` first, confirm the expected indexes are listed; then run for real, confirm the indexes appear in pg (and as `indisvalid = true` in `pg_index`) and in `flatIndexMaps`. Re-run; confirm no-op. - [ ] Verify backfill on a clean workspace: should log "no missing indexes" and exit. - [ ] Verify CONCURRENTLY behavior under load: run backfill against a workspace with active writes on `timelineActivity`; confirm inserts/updates keep working during index build (no `ShareLock` waits in `pg_stat_activity`). - [ ] On the affected reporter-scale workspace, confirm `EXPLAIN ANALYZE` switches from sequential scan to index scan and timeline activity timeouts go away. |
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10876138d2 |
refactor: stop reading joinColumnName from relation field settings (#20304)
## Summary `joinColumnName` on relation field settings is always derivable from the field name (and the target object name for morph relations). This PR stops reading it from settings anywhere in production code; the stored value is no longer used. The settings field is **not** removed from data yet — a follow-up can drop it once we are confident nothing depends on the stored value. ## Helpers The helpers are split by layer because frontend and backend hold morph relations differently: the frontend has a base name plus a `morphRelations[]` array, the backend has one row per target with the name already morph-resolved. | Helper | Layer | When to use | |---|---|---| | `computeRelationGqlFieldJoinColumnName` | Shared / frontend (`gqlField`) | Non-morph relation on the frontend. | | `computeMorphRelationGqlFieldName` | Shared / frontend (`gqlField`) | Need the per-target morph gqlField name (e.g. `targetCompany`). | | `computeMorphRelationGqlFieldJoinColumnName` | Shared / frontend (`gqlField`) | Per-target morph join column on the frontend. Prefer over the non-morph helper for any morph field — it forces the per-target inputs. | | `computeMorphOrRelationFieldJoinColumnName` | Backend (`FlatFieldMetadata.name`) | Any backend read or write — the flat name is already morph-resolved, so one helper covers both cases. | | `computeMorphRelationFlatFieldName` | Backend (`FlatFieldMetadata.name`) | **Mutation paths only** (create / update / object rename). Reads consume the stored `field.name` and never call this. | ## Test plan - [x] Typecheck and lint (front, server, shared) - [x] Existing unit tests pass - [ ] CI green |
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bf5cc68f25 |
Rename standard and custom apps (#19631)
as title no migration for existing apps, changes only apply on new workspaces |
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b284c8323c |
Remove Favorite and FavoriteFolder from workspace schema (#19536)
## Summary - Removes all workspace schema definitions for `Favorite` and `FavoriteFolder` entities, which have been fully migrated to `NavigationMenuItems` - Deletes 26 standalone files including workspace entities, NestJS modules, services, listeners, jobs, standard application builders (field metadata, views, view fields, view field groups, indexes, page layouts), mocks, and integration tests - Cleans up ~40 modified files: removes `favorites` relation from 10 workspace entities and their field metadata utils, removes entries from all builder maps, shared constants (`STANDARD_OBJECTS`, `CoreObjectNameSingular`, `DEFAULT_RELATIONS_OBJECTS_STANDARD_IDS`), SDK default relations, AI tool filtering, and standard object icons |
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2d6c8be7df |
[Apps] Fix - app-synced object should be searchable (#19206)
## Summary - **Make app-synced objects searchable**: `isSearchable` was hardcoded to `false` and the `searchVector` field was missing the `GENERATED ALWAYS AS (...)` expression, causing all records to have a `NULL` search vector and be excluded from search results. Fixed by defaulting `isSearchable` to `true` (configurable via the object manifest), computing the `asExpression` from the label identifier field, and allowing the update-field-action-handler to handle the `null` → defined `asExpression` transition. - **Make `isSearchable` updatable on an object**: The property had `toCompare: false` in the entity properties configuration, so updates via the API were silently ignored and never persisted. Fixed by setting `toCompare: true`. |
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c1e4756f9c |
Add is active to overridable entities and deactivation logic for page layouts (#19200)
- Replace soft-deletion (deletedAt) with isActive boolean for overridable entities (tabs, widgets, viewFieldGroups, viewFields). Standard entities are deactivated (isActive: false) when removed from update payloads, while custom entities are hard-deleted. - When a viewFieldGroup is deactivated/deleted, its viewFields are reassigned to the next section by position (or null if none remain). - Add isActive: true filters to viewFieldGroup and viewField API queries so deactivated entities are excluded from responses. Next: - fields-widget-upsert.service.ts should be refactored a bit - Add restore logic |
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e8cb086b64 |
chore: remove completed migration feature flags and upgrade commands <= 1.18 (#19074)
## Summary - Remove 3 completed migration feature flags: `IS_ATTACHMENT_MIGRATED`, `IS_NOTE_TARGET_MIGRATED`, `IS_TASK_TARGET_MIGRATED` — these were already enabled by default for all new workspaces via `DEFAULT_FEATURE_FLAGS` - Delete all upgrade command directories for versions <= 1.18 (`1-16/`, `1-17/`, `1-18/`) along with their module registrations, removing ~6,600 lines of dead migration code - Simplify frontend utility functions (`getActivityTargetObjectFieldIdName`, `getActivityTargetsFilter`, `getActivityTargetFieldNameForObject`, `generateActivityTargetMorphFieldKeys`, `findActivitiesOperationSignatureFactory`) by removing the `isMorphRelation` parameter and always using the morph relation path - Remove feature flag checks from 7 frontend hooks/components that were gating attachment and activity target behavior behind the removed flags - Simplify `buildDefaultRelationFlatFieldMetadatasForCustomObject` server util to always treat attachment, noteTarget, and taskTarget as morph relations without checking feature flags |
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5efe69f8d3 |
Migrate field permission to syncable entity (#18751)
Co-authored-by: Copilot Autofix powered by AI <223894421+github-code-quality[bot]@users.noreply.github.com> Co-authored-by: Charles Bochet <charles@twenty.com> |
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5f0d6553f6 |
Add object type filter dropdown to side panel record searches (#18912)
## Summary - Adds an object type filter dropdown to the side panel, allowing users to scope record search results to a specific object type (e.g. People, Companies, Opportunities) - The filter appears as a funnel icon next to the search input in both the global search (SearchRecords page) and the "Pick a record" sidebar flow - Replaces the AI sparkles button on the search records page with the filter icon - Uses colored icons matching the navigation menu style (NavigationMenuItemStyleIcon + getStandardObjectIconColor) ## Test plan - [ ] Open the side panel, type something to enter SearchRecords mode, verify the filter icon appears - [ ] Click the filter icon, verify the dropdown opens with "Object" header, search input, "All Objects" and individual object types with colored icons - [ ] Select an object type, verify only records of that type appear in search results - [ ] Select "All Objects", verify all record types appear again - [ ] Verify the filter icon turns blue when a filter is active - [ ] In layout customization mode, add a new sidebar item > Record, verify the filter dropdown also works there - [ ] Close and reopen the side panel, verify the filter resets to "All Objects" - [ ] Verify the AI sparkles button no longer appears on the command menu root page - [ ] Verify the AI edit icon still appears on Ask AI pages Made with [Cursor](https://cursor.com) |
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6d4d1a97bc |
Migrate object permission to syncable entity (#18609)
Closes [#2223](https://github.com/twentyhq/core-team-issues/issues/2223) |
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a121d00ddd |
feat: add color property to ObjectMetadata for object icon customization (#18672)
## Summary - Adds a `color` column to `ObjectMetadataEntity` with full GraphQL support so object icon colors are persisted at the metadata level - Adds a `type` column to `NavigationMenuItemEntity` (enum: `OBJECT`, `VIEW`, `FOLDER`, `LINK`, `RECORD`) replacing field-based type inference - Updates frontend to read object colors from `objectMetadata.color` (falling back to standard defaults) in the sidebar nav, record index header, and record show breadcrumb - Simplifies `NavigationMenuItemIcon` color resolution via `getEffectiveNavigationMenuItemColor` util ## Color rules | Item type | Color source | Editable in sidebar? | |-----------|-------------|---------------------| | **Object** | `objectMetadata.color` | Yes — persisted to `objectMetadata.color` on Save | | **Folder** | `navigationMenuItem.color` | Yes | | **Link** | Fixed default (`DEFAULT_NAVIGATION_MENU_ITEM_COLOR_LINK`) | No | | **View** | `objectMetadata.color` (from the parent object) | No | | **Record** | None | No | - **Object** items represent the whole object (e.g. "Companies") and point to the INDEX view. Changing their color updates `objectMetadata.color` via `useSaveObjectMetadataColorsFromDraft`. - **View** items represent specific non-INDEX views. Their color comes from the parent object's metadata (read-only). - Only **folders** store their color on `navigationMenuItem.color` — enforced by `hasNavigationMenuItemOwnColor` util. - `getEffectiveNavigationMenuItemColor` returns `objectColor` for both OBJECT and VIEW items, folder's own color for folders, and the fixed default for links. ## NavigationMenuItemType enum - Shared enum created in `twenty-shared` with values: `OBJECT`, `VIEW`, `FOLDER`, `LINK`, `RECORD` - Registered as a GraphQL enum on the backend - Replaces string literals across entity, DTOs, input, converters, and frontend hooks - Migration backfills existing rows: INDEX views → `OBJECT`, non-INDEX views → `VIEW`, based on join with the view table ## Design decisions - **OBJECT vs VIEW distinction**: Items pointing to INDEX views are typed as `OBJECT` (represent the whole object, color editable). Items pointing to non-INDEX views are typed as `VIEW` (specific view, color read-only from parent object). - **Dual color storage**: `navigationMenuItem.color` is preserved for folders only. Objects use `objectMetadata.color` as their source of truth. - **Type discriminator**: The `type` column replaces field-based inference (checking `viewId`, `link`, `targetRecordId` presence) with an explicit enum, simplifying `isNavigationMenuItemLink` / `isNavigationMenuItemFolder` to simple `item.type ===` checks. - **No settings page color picker**: Object color editing is done from the sidebar edit panel, not the data model settings page. ## Test plan - [ ] Verify objects display their default standard colors in the sidebar - [ ] Verify object color editing works in the sidebar edit panel (persists to objectMetadata.color) - [ ] Verify folder color editing works in the sidebar edit panel - [ ] Verify views, links, and records do NOT show a color picker in the sidebar edit panel - [ ] Run `npx nx typecheck twenty-front` and `npx nx typecheck twenty-server` - [ ] Verify the database migrations add `color` to `objectMetadata` and `type` to `navigationMenuItem` Made with [Cursor](https://cursor.com) |
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c4e55d08ff |
fix: allow identical singular and plural labels for objects (#18678)
## Summary Closes #18673 Some languages (e.g., German "Unternehmen") and even English words (sheep, deer, aircraft, series) have identical singular and plural forms. Twenty previously blocked saving when labels matched, making it impossible to correctly name objects in these cases. - **Labels** are purely display strings — removed the equality validation from both the frontend Zod schema and backend validator - **API names** (nameSingular/namePlural) must stay different since they generate distinct GraphQL resolvers (`findOne` vs `findMany`, `createOne` vs `createMany`, etc.) and REST endpoints — this validation is preserved - Added a shared `computeMetadataNamesFromLabels` util in `twenty-shared` that auto-appends `'s'` to the plural API name when both labels produce the same camelCase name (e.g., "Unternehmen" → `unternehmen` / `unternehmens`) - Both the frontend form and backend sync-check use the same shared util — single source of truth, no duplicated logic **No retroactive impact**: since the old code prevented identical labels from ever being saved, no existing workspace has `labelSingular === labelPlural`. ## Test plan - [x] New unit tests for `computeMetadataNamesFromLabels` (7 tests: standard labels, Sheep, Unternehmen, Aircraft, empty labels, different labels, applyCustomSuffix) - [x] Updated frontend schema validation tests (identical labels with different names now passes; identical names still fails) - [x] Updated backend integration test cases (removed identical-label failing cases) - [ ] Manual: create a new object with identical singular/plural labels (e.g. "Sheep" / "Sheep") — should save successfully with API names `sheep` / `sheeps` - [ ] Manual: verify existing objects with different labels still work unchanged Made with [Cursor](https://cursor.com) |
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48172d60fd |
View field override (#18572)
## Context This PR introduces overrides for view fields which will be useful for page layout FIELDS widgets fields position/groups/visibility override + restore logic. |
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120096346a |
Add define post isntall logic function (#18248)
As title |
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f080b952eb |
Add manifest integration tests (#18203)
- add integration test on sync manifest endpoint - fix invalid standard uuid + migration command |
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af0af0a237 |
Fix cross app installation (#18151)
# Introduction - Fixing app dependencyFlatEntityMaps load ( to load current app + dependent app ) - Fix empty flat entity maps and undefined optimistic override - Refactor the optimistic rendering to be mutation oriented at orchestrator level |
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88424611ec |
Refactor and standardize isSystem field and object (#17992)
# Introduction ## Centralize system field definitions - Extract a single `PARTIAL_SYSTEM_FLAT_FIELD_METADATAS` constant as the source of truth for all 8 system fields (`id`, `createdAt`, `updatedAt`, `deletedAt`, `createdBy`, `updatedBy`, `position`, `searchVector`), eliminating duplication across custom object and standard app field builders - Refactor `buildDefaultFlatFieldMetadatasForCustomObject` to use the shared constant via a new `buildObjectSystemFlatFieldMetadatas` helper ## Mark system fields as `isSystem: true` - Fields `id`, `createdAt`, `updatedAt`, `deletedAt`, `createdBy`, `updatedBy`, `position`, `searchVector` are now properly flagged as system fields across all standard objects and custom object creation - Standard app field builders for all ~30 standard objects updated to set `isSystem: true` on `createdAt`, `updatedAt`, `deletedAt`, `createdBy`, `updatedBy` - System-only standard objects (blocklist, calendar channels, message threads, etc.) now also include `createdBy`, `updatedBy`, `position`, `searchVector` field definitions that were previously missing ## Validate system fields on object creation - New transversal validation (`crossEntityTransversalValidation`) runs after all atomic entity validations in the build orchestrator, ensuring all 8 system fields are present with correct `type` and `isSystem: true` when an object is created - New `buildUniversalFlatObjectFieldByNameAndJoinColumnMaps` utility to resolve field names to universal identifiers for a given object - New exception codes: `MISSING_SYSTEM_FIELD` and `INVALID_SYSTEM_FIELD` on `ObjectMetadataExceptionCode` ## Protect system fields and objects from mutation - Field validators now block update/delete of `isSystem` fields by non-system callers (`FIELD_MUTATION_NOT_ALLOWED`) - Object validators now block update/delete of `isSystem` objects by non-system callers - `POSITION` and `TS_VECTOR` field type validators replaced: instead of rejecting creation outright, they now validate that the field is named correctly (`position` / `searchVector`) and has `isSystem: true` ## Distinguish `isSystemBuild` from `isCallerTwentyStandardApp` - New `isCallerTwentyStandardApp` utility checks whether the caller's `applicationUniversalIdentifier` matches the twenty standard app - Name-sync logic (`isFlatFieldMetadataNameSyncedWithLabel`, `areFlatObjectMetadataNamesSyncedWithLabels`) refactored to use `isCallerTwentyStandardApp` for custom suffix decisions, keeping `isSystemBuild` for mutation permission checks - `WorkspaceMigrationBuilderOptions` type updated to include `applicationUniversalIdentifier` ## Adapt frontend filtering - New `HIDDEN_SYSTEM_FIELD_NAMES` constant (`id`, `position`, `searchVector`) and `isHiddenSystemField` utility to only hide truly internal fields while keeping user-facing system fields (`createdAt`, `updatedAt`, `deletedAt`, `createdBy`, `updatedBy`) visible in the UI - ~20 frontend files updated to replace `!field.isSystem` checks with `!isHiddenSystemField(field)` across record index, settings, data model, charts, workflows, spreadsheet import, aggregations, and role permissions ## Add 1.19 upgrade commands - **`backfill-system-fields-is-system`**: Raw SQL command to set `isSystem = true` on existing workspace fields matching system field names, and fix `position` field type from `NUMBER` to `POSITION` for `favorite`/`favoriteFolder` objects. Includes proper cache invalidation. - **`add-missing-system-fields-to-standard-objects`**: Codegen'd workspace migration to create missing `position`, `searchVector`, `createdBy`, `updatedBy` fields on standard objects that didn't previously have them. Runs via `WorkspaceMigrationRunnerService` in a single transaction with idempotency check. **Known limitation**: assumes all standard objects exist and are valid in the target workspace. ## Add `universalIdentifier` for system fields in standard object constants - `standard-object.constant.ts` updated to include `universalIdentifier` for `createdBy`, `updatedBy`, `position`, and `searchVector` across all standard objects - `fieldManifestType.ts` updated to support the new field manifest shape ## System relation Completely removed and backfilled all `isSystem` relation to be false false As we won't require an object to have any relation system fields ## Add integration tests - New test suite `failing-sync-application-object-system-fields` covering: missing system fields, wrong field types (`id` as TEXT, `createdAt` as TEXT, `position` as TEXT), system field deletion attempts, and system field update attempts - New test utilities: `buildDefaultObjectManifest` (builds an object manifest with all 8 system fields) and `setupApplicationForSync` (centralizes application setup) - Existing successful sync test updated to verify system fields are created with correct properties ## Next step Make the builder scope the compared entity to be the currently built app + nor twenty standard app |
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5544b5dcfe |
Fix and refactor all metadata relation (#17978)
# Introduction The initial motivation was that in the workspace migration create action some universal foreign key aggregators weren't correctly deleted before returned due to constant missconfiguration <img width="2300" height="972" alt="image" src="https://github.com/user-attachments/assets/9401eb02-2bb2-4e69-9c5f-9a354ff61079" /> It also meant that under the hood some optimistic behavior wasn't correctly rendered for some aggregators ## Solution Refactored the `ALL_METADATA_RELATIONS` as follows: This way we can infer the FK and transpile it to a universalFK, also the aggregators are one to one instead of one versus all available Making the only manual configuration to be defined the `foreignKey` and `inverseOneToManyProperty` ``` ┌──────────────────────────────────────┐ ┌─────────────────────────────────────────────┐ │ ALL_MANY_TO_ONE_METADATA_FOREIGN_KEY│ │ ALL_ONE_TO_MANY_METADATA_RELATIONS │ │──────────────────────────────────────│ │─────────────────────────────────────────────│ │ Derived from: Entity types │ │ Derived from: Entity types │ │ │ │ │ │ Provides: │ │ Provides: │ │ • foreignKey │ │ • metadataName │ │ │ │ • flatEntityForeignKeyAggregator │ │ Standalone low-level primitive │ │ • universalFlatEntityForeignKeyAggregator │ └──────────────┬───────────────────────┘ └──────────────┬──────────────────────────────┘ │ │ │ foreignKey type + │ inverseOneToManyProperty │ universalForeignKey derivation │ keys (type constraint) │ │ ▼ ▼ ┌───────────────────────────────────────────────────────────────┐ │ ALL_MANY_TO_ONE_METADATA_RELATIONS │ │───────────────────────────────────────────────────────────────│ │ Derived from: │ │ • Entity types (metadataName, isNullable) │ │ • ALL_MANY_TO_ONE_METADATA_FOREIGN_KEY (FK → universalFK) │ │ • ALL_ONE_TO_MANY_METADATA_RELATIONS (inverse keys) │ │ │ │ Provides: │ │ • metadataName │ │ • foreignKey (replicated from FK constant) │ │ • inverseOneToManyProperty │ │ • isNullable │ │ • universalForeignKey │ └──────────────────────────┬────────────────────────────────────┘ │ ┌──────────────────┼──────────────────┐ │ │ │ ▼ ▼ ▼ ┌───────────────────┐ ┌────────────────┐ ┌──────────────────────┐ │ Type consumers │ │ Atomic utils │ │ Optimistic utils │ │───────────────────│ │────────────────│ │──────────────────────│ │ • JoinColumn │ │ • resolve-* │ │ • add/delete flat │ │ • RelatedNames │ │ • get-* │ │ entity maps │ │ • UniversalFlat │ │ │ │ • add/delete │ │ EntityFrom │ │ │ │ universal flat │ │ │ │ │ │ entity maps │ └───────────────────┘ └────────────────┘ │ │ │ (bridge via │ │ inverseOneToMany │ │ Property → │ │ ONE_TO_MANY for │ │ aggregator lookup) │ └──────────────────────┘ ``` ### Previously ``` ┌─────────────────────────────────────────────────────────────────────┐ │ ALL_METADATA_RELATIONS │ │─────────────────────────────────────────────────────────────────────│ │ Derived from: Entity types │ │ │ │ Structure: { [metadataName]: { manyToOne: {...}, oneToMany: {...},│ │ serializedRelations?: {...} } } │ │ │ │ manyToOne provides: │ │ • metadataName │ │ • foreignKey │ │ • flatEntityForeignKeyAggregator (nullable, often wrong/null) │ │ • isNullable │ │ │ │ oneToMany provides: │ │ • metadataName │ │ │ │ Monolithic single source of truth │ └──────────────────────────┬──────────────────────────────────────────┘ │ │ manyToOne entries transformed via │ ToUniversalMetadataManyToOneRelationConfiguration │ ▼ ┌─────────────────────────────────────────────────────────────────────┐ │ ALL_UNIVERSAL_METADATA_RELATIONS │ │─────────────────────────────────────────────────────────────────────│ │ Derived from: ALL_METADATA_RELATIONS (type-level transform) │ │ │ │ Structure: { [metadataName]: { manyToOne: {...}, oneToMany: {...} │ │ } } │ │ │ │ manyToOne provides: │ │ • metadataName │ │ • foreignKey │ │ • universalForeignKey (derived: FK → replace Id → UniversalId) │ │ • universalFlatEntityForeignKeyAggregator (derived from │ │ flatEntityForeignKeyAggregator → replace Ids → UniversalIds) │ │ • isNullable │ │ │ │ oneToMany: passthrough from ALL_METADATA_RELATIONS │ │ │ │ Duplicated monolith with universal key transforms │ └──────────────────────────┬──────────────────────────────────────────┘ │ ┌──────────────────┼──────────────────────┐ │ │ │ ▼ ▼ ▼ ┌───────────────┐ ┌────────────────────┐ ┌──────────────────────┐ │ Type consumers│ │ Atomic utils │ │ Optimistic utils │ │───────────────│ │────────────────────│ │──────────────────────│ │ • JoinColumn │ │ • resolve-entity- │ │ • add/delete flat │ │ • RelatedNames│ │ relation-univ-id │ │ entity maps │ │ • Universal │ │ (ALL_METADATA_ │ │ (ALL_METADATA_ │ │ FlatEntity │ │ RELATIONS │ │ RELATIONS │ │ From │ │ .manyToOne) │ │ .manyToOne) │ │ │ │ │ │ │ │ Mixed usage │ │ • resolve-univ- │ │ • add/delete univ │ │ of both │ │ relation-ids │ │ flat entity maps │ │ constants │ │ (ALL_UNIVERSAL_ │ │ (ALL_UNIVERSAL_ │ │ │ │ METADATA_REL │ │ METADATA_REL │ │ │ │ .manyToOne) │ │ .manyToOne) │ │ │ │ │ │ │ │ │ │ • resolve-univ- │ │ universalFlatEntity │ │ │ │ update-rel-ids │ │ ForeignKeyAggregator │ │ │ │ (ALL_UNIVERSAL_ │ │ read directly from │ │ │ │ METADATA_REL │ │ the constant │ │ │ │ .manyToOne) │ │ │ │ │ │ │ │ │ │ │ │ • regex hack: │ │ │ │ │ │ foreignKey │ │ │ │ │ │ .replace(/Id$/, │ │ │ │ │ │ 'UniversalId') │ │ │ └───────────────┘ └────────────────────┘ └──────────────────────┘ ``` |
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6aca1dd013 |
Introducing view field group syncable entity (#17867)
## Context Introduces a new viewFieldGroup entity that allows grouping view fields into sections (e.g. "General", "Additional", "Other") within a view. The page layout fields widget needs a way to organize fields into sections. Today, views have no concept of field grouping. This PR introduces the viewFieldGroup entity which sits between a view and its viewFields, enabling section-based organization. <img width="401" height="724" alt="Layout - V2 (customize visibility)" src="https://github.com/user-attachments/assets/6376e2ab-44db-42bf-9d2c-758f56f6b548" /> --------- Co-authored-by: Charles Bochet <charles@twenty.com> |
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d9dab75052 |
Do not throw on corrupted labelFieldMetadataIdentifier (#17859)
# Introduction As we don't enforce any FK on object labelIdentifierFieldMetadataId we have some that are either null or pointing to non-existing field metadata resulting in exception thrown at cache computation lvl Commenting the exception throw until we've closed https://github.com/twentyhq/core-team-issues/issues/2172 closes https://github.com/twentyhq/core-team-issues/issues/2221 |
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8c951d3623 |
Migrate Views-xxx Index Field Object Skill to be fully universal ( all actions and metadata runner and builder ) + all metadata update actions runner (#17687)
# What this PR does Overall naming `universal` versus `flat` is not always the most updated and so on Will make a big cleaning tour after I've finished the whole migration Migrating all `view` and ( filter fields etc ) `field` `object` `index` to the universal pattern on all `services`, `builder` and `runner` levels ## Universal and flat optimistic tooling `addUniversalFlatEntityToUniversalFlatEntityAndRelatedEntityMapsThroughMutationOrThrow` and its delete counterpart maintain the consistency of `UniversalFlatEntityMaps` when an entity is created or removed. Beyond inserting/removing the entity from its own maps, they walk through `ALL_UNIVERSAL_METADATA_RELATIONS` to update the **aggregator arrays** on related parent entities — the add appends the new entity's `universalIdentifier` to the parent's aggregator (e.g. a new viewField's identifier gets appended to its parent view's `viewFieldUniversalIdentifiers`), and the delete filters it out. This keeps the maps in sync so that diff computations and relation lookups remain accurate throughout the migration building process. ## ALL_UNIVERSAL_METADATA_RELATIONS `ALL_UNIVERSAL_METADATA_RELATIONS` is the universal counterpart of `ALL_METADATA_RELATIONS`. It maps each metadata entity to its many-to-one and one-to-many relations using universal foreign keys (`*UniversalIdentifier`) instead of database IDs (`*Id`). This allows migration actions to reference related entities in a workspace-agnostic way. Relations that are workspace-specific (e.g. `workspace`, `dataSource`, `userWorkspace`) are set to `null` and skipped during resolution. ## `workspaceMigrationCreateIdEnrichment` Reserved to API metadata ( will be able to validate at app installation lvl ) - Workspace migration `create` actions now carry an optional `id` (and `fieldIdByUniversalIdentifier` for object/field actions) so that caller-provided IDs flow through the entire build-validate-run pipeline. - New `enrichCreateWorkspaceMigrationActionsWithIds` utility resolves `universalIdentifier → id` mappings after the builder runs and injects them into the migration actions before the runner persists entities. - Runner action handlers use the provided IDs instead of generating new UUIDs, enabling deterministic entity creation for synchronization workflows. ## `resolveUniversalUpdateRelationIdentifiersToIds` `resolveUniversalUpdateRelationIdentifiersToIds` converts universal identifiers (workspace-agnostic, stable keys) in a migration update payload into concrete database UUIDs, so the update can be applied to a specific workspace. It iterates over the many-to-one relations defined in `ALL_UNIVERSAL_METADATA_RELATIONS` for the given entity type, replaces each `*UniversalIdentifier` property with its corresponding `*Id` by looking up the target entity in `allFlatEntityMaps`, and throws if a non-null identifier can't be resolved. Used by all `update` action handlers in `transpileUniversalActionToFlatAction`, avoiding duplicated resolution logic across handlers. ## What this PR does not - Migrating twenty-standard declaration to universal - Migrating all the inputs transpilers to universal - Migrating all metadata to be fully universal ( we still need to de-scope the type of all of them and refactor their validator very close ) --------- Co-authored-by: Charles Bochet <charles@twenty.com> |
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3dc5b162c7 |
Spread in parent and requires FlatEntity.__universal (#17753)
# Introduction Requiring the spreaded `__universal` record that aggregates all the universal identifier ( relations fk and aggregators ) of an entity to its root It's blockin for https://github.com/twentyhq/twenty/pull/17687 to be finalized because if we don't we would have to migrated all related entities at once in order for them to always have the universal properties ## `resolveEntityRelationUniversalIdentifiers` Introduced `resolveEntityRelationUniversalIdentifiers` a centralized utility that resolves foreign key IDs to universal identifiers using ALL_METADATA_RELATIONS metadata. It provides strict typing for both input (foreign keys) and output (universal identifiers), with nullability dynamically inferred from entity relation types. Strictly and dynamically typed for both output and input To do so added a new type and const/runtime grain to ALL_METADATA_RELATIONS `isNullable`to many-to-one entries, derived from the entity relation property types. And fixed incorrectly typed typeorm entities ### Usage ```ts const { availabilityObjectMetadataUniversalIdentifier, frontComponentUniversalIdentifier, } = resolveEntityRelationUniversalIdentifiers({ metadataName: 'commandMenuItem', foreignKeyValues: { availabilityObjectMetadataId: createCommandMenuItemInput.availabilityObjectMetadataId, frontComponentId: createCommandMenuItemInput.frontComponentId, }, flatEntityMaps: { flatObjectMetadataMaps, flatFrontComponentMaps }, }); ``` |
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476bdf764c |
Refactor flat entity maps to be universal oriented (#17665)
# Introduction
In preparation of the workspace agnostic builder, we're migrating
`FlatEntityMaps` to be universal identifier oriented and based
As in the builder context there're won't be any ids at all
Please also note that the FlatEntity is a UniversalFlatEntity superset
From
```ts
import { type SyncableFlatEntity } from 'src/engine/metadata-modules/flat-entity/types/flat-entity-from.type';
export type FlatEntityMaps<T extends SyncableFlatEntity> = {
byId: Partial<Record<string, T>>;
idByUniversalIdentifier: Partial<Record<string, string>>;
universalIdentifiersByApplicationId: Partial<Record<string, string[]>>;
};
```
To
```ts
export type FlatEntityMaps<
T extends SyncableFlatEntity | UniversalSyncableFlatEntity,
> = {
byUniversalIdentifier: Partial<Record<string, T>>;
universalIdentifierById: Partial<Record<string, string>>;
universalIdentifiersByApplicationId: Partial<Record<string, string[]>>; // this might make more sense to be migrated to universalIdentifiersByApplicationUniversalIdentifier but it's the main topic of this PR
};
```
## Low level maps tools
Had to refactor find | create | delete | replace | find-many | get-sub
tools ( through mutations and or throw equivalent )
|
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7b48efb5d6 |
Fix creation of objects with acronym names (e.g. "O&J") (#17633)
Fixes https://github.com/twentyhq/twenty/issues/17544 **Problem** When users create custom objects with short acronym names like "O&J", the system generates an object name oJ. When creating relation fields, the morph field name was built using string concatenation: const morphFieldName = `target${capitalize("oJ")}`; // → "targetOJ" This produced "targetOJ", which failed validation because the camelCase check performed in `validateFlatFieldMetadataName` (camelCase(name) === name) returns "targetOj" for "targetOJ". The issue comes from consecutive camelCase() operations. **Solution** Actually, the `camelCase(name) === name` check is questionnable. What we want to check is that a name is in camelCase format, not that it corresponds to the camelCase version of a given string, while that's we are doing here. lodash does not provide camelCase validator, only camelCase convertor, so we used it as a way to validate the format of the name. We may feel like `camelCase(name) === name` checks whether a name is camel-cased, but in addition to that it is also checking for a camel case "idempotency" we don't necessarily have and do not need: for instance if an object's name is "iOS" (which could be inferred from a label "I O S"), it won't pass the check: camelCase("iOS") is "ios" and "ios" !== "iOS". The existing check with `STARTS_WITH_LOWER_CASE_AND_CONTAINS_ONLY_CAPS_AND_LOWER_LETTERS_AND_NUMBER_STRING_REGEX` acts as a camel case validator, so we don't need that camelCase() check. |
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75921e79bf |
[FIXES_MAIN] Remove objectMetadata standardId (#17632)
# Introduction In this PR we're deprecating the object metadata standard id and replacing it to the universalIdentifier usage As we've totally removed its insertion for both new field and object in https://github.com/twentyhq/twenty/pull/17572 ## Note - Removed upgrade commands before `1.17` |
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bd9688421f |
ObjectMetadata and FieldMetadata agnostic workspace migration runner (#17572)
# Introduction
Important note: This PR officially deprecates the `standardId`, about to
drop col and entity property after this has been merged
Important note2: Haven't updated the optimistic tool to also update the
universal identifier aggregators only the ids one, they should not be
consumed in the runner context -> need to improve typing or either the
optimistic tooling
In this PR we're introducing all the devxp allowing future metadata
incremental universal migration -> this has an impact on all existing
metadata actions handler ( explaining its size )
This PR also introduce workspace agnostic create update actions runner
for both field and object metadata in order to battle test the described
above devxp
Noting that these two metadata are the most complex to handle
Notes:
- A workspace migration is now highly bind to a
`applicationUniversalIdentifier`. Though we don't strictly validate
application scope for the moment
## Next
Migrate both object and field builder to universal comparison
## Universal Actions vs Flat Actions Architecture
### Concept
The migration system uses a two-phase action model:
1. **Universal Actions** - Actions defined using `universalIdentifier`
(stable, portable identifiers like `standardId` + `applicationId`)
2. **Flat Actions** - Actions defined using database `entityId` (UUIDs
specific to a workspace)
### Why This Separation?
- **Universal actions are portable**: They can be serialized, stored,
and replayed across different workspaces
- **Flat actions are executable**: They contain the actual database IDs
needed to perform operations
- **Decoupling**: The builder produces universal actions; the runner
transpiles them to flat actions at execution time
### Transpiler Pattern
Each action handler must implement
`transpileUniversalActionToFlatAction()`:
```typescript
@Injectable()
export class CreateFieldActionHandlerService extends WorkspaceMigrationRunnerActionHandler(
'create',
'fieldMetadata',
) {
override async transpileUniversalActionToFlatAction(
context: WorkspaceMigrationActionRunnerArgs<UniversalCreateFieldAction>,
): Promise<FlatCreateFieldAction> {
// Resolve universal identifiers to database IDs
const flatObjectMetadata = findFlatEntityByUniversalIdentifierOrThrow({
flatEntityMaps: allFlatEntityMaps.flatObjectMetadataMaps,
universalIdentifier: action.objectMetadataUniversalIdentifier,
});
return {
type: action.type,
metadataName: action.metadataName,
objectMetadataId: flatObjectMetadata.id, // Resolved ID
flatFieldMetadatas: /* ... transpiled entities ... */,
};
}
}
```
### Action Handler Base Class
`BaseWorkspaceMigrationRunnerActionHandlerService<TActionType,
TMetadataName>` provides:
- **`transpileUniversalActionToFlatAction()`** - Abstract method each
handler must implement
- **`transpileUniversalDeleteActionToFlatDeleteAction()`** - Shared
helper for delete actions
## FlatEntityMaps custom properties
Introduced a `TWithCustomMapsProperties` generic parameter to control
whether custom indexing structures are included:
- **`false` (default)**: Returns `FlatEntityMaps<MetadataFlatEntity<T>>`
- used in builder/runner contexts
- **`true`**: Returns the full maps type with custom properties (e.g.,
`byUserWorkspaceIdAndFolderId`) - used in cache contexts
## Create Field Actions Refactor
Refactored create-field actions to support relation field pairs
bundling.
**Problem:** Relation fields (e.g., `Attachment.targetTask` ↔
`Task.attachments`) couldn't resolve each other's IDs during
transpilation because they were in separate actions with independent
`fieldIdByUniversalIdentifier` maps.
**Solution:**
- Removed `objectMetadataUniversalIdentifier` from
`UniversalCreateFieldAction` and `objectMetadataId` from
`FlatCreateFieldAction` - each field now carries its own
- Runner groups fields by object internally and processes each table
separately
- Split aggregator into two focused utilities:
- `aggregateNonRelationFieldsIntoObjectActions` - merges non-relation
fields into object actions
- `aggregateRelationFieldPairs` - bundles relation pairs with shared
`fieldIdByUniversalIdentifier`
|
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fbbd8fe967 |
[REQUIRES_CACHE_FLUSH_FOR_FIELD_AND_OBJECT]FlatFieldMetadata and FlatObjectMetadata required universal (#17557)
# Introduction
In this PR we're migrating both the `field` and `object` metadata to be
using the new `FlatEntityFromV2` that requires all the
`UniversalFlatEntityExtraProperties` to be spread at the flat entity
root.
This means that we have to update all of their flat declaration
This type swap allows to isole a specific entity migration into his own
type scope and avoid to have everything handled at once
```ts
/**
* Currently under migration but aims to replace FlatEntity afterwards
*/
export type FlatEntityFromV2<
TEntity,
TMetadataName extends AllMetadataName | undefined = undefined,
TInnerFlatEntity extends { __universal?: unknown } = FlatEntityFrom<
TEntity,
TMetadataName
>,
> = Omit<TInnerFlatEntity, '__universal'> & TInnerFlatEntity['__universal'];
```
## Impact
Both object and field:
- Create input transpilation utils
- from entity to flat tools
- mocks
## Note
Removed from the universal extra properties the jsonb properties that do
not contain a serialized
## Next
Next step is to incrementally make the builder and runner expect
`UniversalFlatEntity` for both of these metadata
This way we will be able to fully migrate an entity e2e typesafely
|
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fe9d6f34ff |
[REQUIRES_FULL_CACHE_FLUSH_WHEN_RELEASED] Refactor FlatEntity to be UniversalFlatEntity superset (#17452)
# Introduction
In this PR we're refactoring the `FlatEntity` type to become a superset
of the `UniversalFlatEntity`.
Right now we're storing all the extra properties in `__universal`
property, at some point it might just be sibling to other entity and we
might rely on the `propertiesToCompare` constants and TypeScript
allowing passing a superset type into a smaller subset type
## FromTo utils
The entity to flat entity method now computes the universal information,
standardized a typing and pattern to do
## Example
Also strictly type
```ts
"bbb019ea-6205-498c-aea5-67bc53bce8a9": {
"workspaceId": "20202020-1c25-4d02-bf25-6aeccf7ea419",
"universalIdentifier": "20202020-d111-4d11-8d11-da5ab0a11002",
"applicationId": "d01b010d-b984-465b-b40b-370e954e5188",
"id": "bbb019ea-6205-498c-aea5-67bc53bce8a9",
"pageLayoutTabId": "791a512f-169f-4209-b731-aa86716668c6",
"title": "Deals by Company",
"type": "GRAPH",
"objectMetadataId": "9e14efea-df5b-4c0e-aba9-cfe455f32397",
"gridPosition": { "row": 0, "column": 6, "rowSpan": 6, "columnSpan": 6 },
"configuration": {
"color": "orange",
"orderBy": "FIELD_ASC",
"timezone": "UTC",
"displayLegend": true,
"displayDataLabel": false,
"showCenterMetric": true,
"configurationType": "PIE_CHART",
"firstDayOfTheWeek": 0,
"aggregateOperation": "COUNT",
"groupBySubFieldName": "name",
"groupByFieldMetadataId": "6673ff18-63d2-47a1-8f85-2b9b09ca27a5",
"aggregateFieldMetadataId": "8d64ee41-5dd4-4de6-945a-7c0c18399715"
},
"createdAt": "2026-01-28T14:08:52.140Z",
"updatedAt": "2026-01-28T14:08:52.140Z",
"deletedAt": null,
"__universal": {
"universalIdentifier": "20202020-d111-4d11-8d11-da5ab0a11002",
"applicationUniversalIdentifier": "20202020-64aa-4b6f-b003-9c74b97cee20",
"pageLayoutTabUniversalIdentifier": "20202020-d011-4d11-8d11-da5ab0a01001",
"objectMetadataUniversalIdentifier": "20202020-9549-49dd-b2b2-883999db8938",
"gridPosition": {
"row": 0,
"column": 6,
"rowSpan": 6,
"columnSpan": 6
},
"configuration": {
"color": "orange",
"orderBy": "FIELD_ASC",
"timezone": "UTC",
"displayLegend": true,
"displayDataLabel": false,
"showCenterMetric": true,
"configurationType": "PIE_CHART",
"firstDayOfTheWeek": 0,
"aggregateOperation": "COUNT",
"groupBySubFieldName": "name",
"aggregateFieldMetadataUniversalIdentifier": "20202020-d01a-4131-8a31-f123456789ab",
"groupByFieldMetadataUniversalIdentifier": "20202020-cbac-457e-b565-adece5fc815f"
}
}
},
```
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d0bc9a94c0 |
[OBJECT_CACHE_FLUSH_REQUIRED_WHEN_RELEASED] Remove FlatObjectMetadata custom fieldMetadataIds fk aggregator property (#17438)
# Introduction Currently refactoring `flatEntity` typing, encountering some tsc errors due to this fk aggregator custom override It shall now follow generic pattern leading to be named `fieldIds` Needs to flush object cache when released |
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4c93ab5259 |
Introduce UniversalFlatEntityFrom (#17367)
# Introduction
Creating a `UniversalFlatEntityFrom` that strips out all the relation
and foreignKey properties in order to replace them with
`UniversalIdentifier` suffix
This data type will be major for the workspace migration workspace
agnostic refactor
## Chore
- renamed `flat-entity.type` to `flat-entity-from.type.ts` ( more
accurate to exported module )
- create static test type over the field metadata entity on quite
complex utils as both coverage and documentation
## Example
Here's an example of a `UniversalFlatEntityFrom<FieldMetadataEntity>`
```ts
const universalFlatFieldMetadata: UniversalFlatFieldMetadata<FieldMetadataType.RELATION> = {
// Base properties (from FieldMetadataEntity, excluding relations and applicationId)
universalIdentifier: '550e8400-e29b-41d4-a716-446655440001',
applicationUniversalIdentifier: '5800681c-088e-4e2b-9fc3-bcf6e8ec2051',
type: FieldMetadataType.RELATION,
name: 'firstName',
label: 'First Name',
defaultValue: null,
description: 'The first name of the person',
icon: 'IconUser',
standardOverrides: null,
options: null,
settings: {
relationType: RelationType.ONE_TO_MANY,
},
isCustom: false,
isActive: true,
isSystem: false,
isUIReadOnly: false,
isNullable: true,
isUnique: false,
isLabelSyncedWithName: true,
morphId: null,
// Date properties cast to string
createdAt: '2024-01-15T10:30:00.000Z',
updatedAt: '2024-01-15T10:30:00.000Z',
// ManyToOne relation universal identifiers (from FieldMetadataEntity relations)
relationTargetFieldMetadataUniversalIdentifier:
'550e8400-e29b-41d4-a716-446655440012',
relationTargetObjectMetadataUniversalIdentifier:
'550e8400-e29b-41d4-a716-446655440013',
// Join column universal identifiers (foreignKey -> universalIdentifier)
objectMetadataUniversalIdentifier: '550e8400-e29b-41d4-a716-446655440010',
// OneToMany relation universal identifiers (array of related entity identifiers)
viewFieldUniversalIdentifiers: [
'550e8400-e29b-41d4-a716-446655440020',
'550e8400-e29b-41d4-a716-446655440021',
],
viewFilterUniversalIdentifiers: ['550e8400-e29b-41d4-a716-446655440030'],
kanbanAggregateOperationViewUniversalIdentifiers: [],
calendarViewUniversalIdentifiers: [],
mainGroupByFieldMetadataViewUniversalIdentifiers: [],
};
```
## Settings
Will hop on the settings typing next. Might not be dynamic but
declarative though
|
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6aa43b68f7 |
Identification cleanup (#17301)
# Introduction following https://github.com/twentyhq/twenty/pull/17279 As we've finally identified all the syncable metadata entities, which means they're expected to have non nullable applicationId and universalIdentifier at pg_level we can remove previous retro comp universalIdentifier fallbacking and update the dto too ~~This needs IdentifyRemainingEntitiesMetadataCommand and MakeRemainingEntitiesUniversalIdentifierAndApplicationIdNotNullableMigrationCommand to be run~~ ```ts [Nest] 197 - 01/21/2026, 3:08:35 PM LOG [MakeRemainingEntitiesUniversalIdentifierAndApplicationIdNotNullableMigrationCommand] Successfully run MakeRemainingEntitiesUniversalIdentifierAndApplicationIdNotNullableMigrationCommand ``` |
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3ed67b825e |
feat: implement generic many-to-many junction relation support (#16820)
## Overview
This PR implements **generic many-to-many relation support** through
junction tables (also known as associative entities or join tables).
This replaces the need for hardcoded taskTarget/noteTarget logic and
provides a flexible foundation for modeling complex entity
relationships.
## Architecture
### Data Model
Many-to-many relationships are implemented using a **junction object
pattern**:
```
┌─────────┐ ┌──────────────────┐ ┌─────────┐
│ Pet │──────>│ PetRocket │<──────│ Rocket │
│ │ 1:N │ (junction) │ N:1 │ │
│ rockets ├───────┤ pet : Pet ├───────┤ │
└─────────┘ │ rocket : Rocket │ └─────────┘
└──────────────────┘
```
The junction object (PetRocket) has:
- A `MANY_TO_ONE` relation to **Pet** (the source)
- A `MANY_TO_ONE` relation to **Rocket** (the target)
The source object (Pet) has a `ONE_TO_MANY` relation pointing to the
junction, with **field settings** that specify which target field to
follow.
### Field Settings Schema
Junction configuration is stored in `FieldMetadataRelationSettings`:
```typescript
{
relationType: "ONE_TO_MANY",
// Points to the target field on the junction object
junctionTargetFieldId?: string; // For regular relations
junctionTargetMorphId?: string; // For polymorphic relations
}
```
**Two configuration modes:**
1. **`junctionTargetFieldId`** - References a specific `RELATION` field
on the junction
2. **`junctionTargetMorphId`** - References a `morphId` group for
polymorphic targets (e.g., link to Person OR Company)
### GraphQL Query Generation
When a junction relation is detected, the GraphQL fields are generated
to fetch the nested target:
```graphql
query GetPetWithRockets {
pet(id: "...") {
rockets { # ONE_TO_MANY to junction
id
rocket { # Target field on junction
id
name
__typename
}
}
}
}
```
For polymorphic junction targets:
```graphql
caretakerPerson { id, name }
caretakerCompany { id, name }
```
## Frontend Architecture
### Display Flow
1. **Detection**: `hasJunctionConfig()` checks if field has junction
settings
2. **Config Resolution**: `getJunctionConfig()` resolves junction object
metadata and target fields
3. **Record Extraction**: `extractTargetRecordsFromJunction()` extracts
target records from junction records
4. **Rendering**: Target records displayed as chips (not junction
records)
### Edit Flow
1. **Picker Opening**: Initializes the multi-record picker with:
- Searchable object types (derived from junction target fields)
- Pre-selected items (extracted from existing junction records)
2. **Selection Handling**: Manages create/delete of junction records:
- **Select**: Creates new junction record with source + target IDs
- **Deselect**: Finds and deletes the junction record
- **Optimistic Updates**: Manually updates Recoil store before API call
### Key Trade-offs
| Decision | Trade-off |
|----------|-----------|
| Junction records managed manually | More control over optimistic
updates, but requires manual cache management |
| Settings stored per-field | Flexible (same junction can power
different views), but requires UI to configure |
| Polymorphic via morphId groups | Supports N target types, but adds
query complexity |
| Feature flag gated | Safe rollout, but requires flag management |
## Backend Changes
- **Validation**: Junction target field must exist and be a valid
`MANY_TO_ONE` relation
- **Settings**: Extended `FieldMetadataRelationSettings` type with
junction fields
- **Dev Seeder**: Added sample junction objects (PetRocket,
EmploymentHistory, PetCareAgreement) for testing
## How to Test
1. Enable the `IS_JUNCTION_RELATIONS_ENABLED` feature flag
2. Create objects with junction pattern (Pet → PetRocket → Rocket)
3. Configure the junction target in field settings (advanced mode)
4. Verify:
- Display shows target objects (Rockets), not junction records
(PetRockets)
- Picker allows selecting/deselecting targets
- Changes persist correctly
https://github.com/user-attachments/assets/d04f057a-228c-4de8-af48-76bb2d72cac1
---------
Co-authored-by: Charles Bochet <charles@twenty.com>
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f894f6b1c4 |
Fix universalIdentifier ignored when creating object (#17158)
As title |
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df108ea040 |
Identify standard objects (#17091)
# Introduction Followup https://github.com/twentyhq/twenty/pull/16981 1/ Migration, applicationId and universalIdentifier are required on entity ( save point migration + upgrade command fallback pattern ) 2/ Backfill using previous standard ids |
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942d2fef83 |
Remove sync-metadata and IS_WORKSPACE_CREATION_V2_ENABLED feature flag (#16997)
# Introduction Followup of https://github.com/twentyhq/twenty/pull/17001#pullrequestreview-3638508738 close https://github.com/twentyhq/core-team-issues/issues/1910 We've completely decom the `sync-metadata` in production. We're now then removing its implementation in favor of the v2. ## TODO: - [x] Remove sync-metadata implem and commands - [x] Remove workspace decorators - [x] Type each deprecated field to deprecated on their workspaceEntity - [x] Remove the `workspace-sync-metadata` folder entirely - [x] remove workspace migration - [x] workspace migration removal migration - [x] remove the `v2` references from workspace manager file names - [x] remove the `v2` references from workspace manager modules - [ ] Double check impact on translation file path updates ## Note - Removed the gate logic - Remains some service v2 naming, serverless needs to be migrated on v2 fully - Removed workspaceMigration service app health consumption, making it always returning up ( no more down ) cc @FelixMalfait ( quite obsolete health check now, will require complete refactor once we introduce inter app dependency etc ) |
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0c6f4021bf |
Fix - Update searchVector when labelIdentifier is updated (#16940)
Fixes https://github.com/twentyhq/twenty/issues/16891 In next PR, validation rules will be added in migration logic |
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a6415db775 |
Refactor workspace migration and validation error types and centralize runner optimistic rendering (#16920)
# Introduction In this PR we're: - Refactoring the workspace migration action type introducing grain over metadata and operation type ( for example operation `create` and metadata `field` ) - Thanks to above point we can now factorize the runner optimistic rendering out of each runner actions-handler file using the existing into the generic one ( -3200 lines of code here ) - Still thanks to action type refactor we're able to dynamically compose the response error type only send data when there's here. No more static counter and static summary error message. This way we won't have to re run snapshot every time we add a new entity to the engine ( huge snapshot diff here ) ## Noticeable points: - We introduce an index update action to avoid any complex typing for not having one or a tuple of actions instead. Now the drop and insert logic is directly inferred from the update action handler instead of being two action ( delete index and create index ) ## TODO - [x] Define base actions types - [x] Migrate all actions to action type and metadata name pattern ( base actions ) - [x] Refactor flat entity validation type to embed metadata name - [x] Refactor optimistic rendering within runner - [x] Refactor legacy cache invalidation switch - [x] Refactor response error format ( dynamic counter again + no empty entries ) - [x] Try factorizing and removing redundant nor unused type declaration in metadata actions type intermediary files - [x] Adapt front to new response error format ## Remarks - ~~Should create an issue for generic replace flat entity in related flat entity maps~~ overkill - Should create an issue for oneToMany foreignKey being nullable not always cascade delete optimistic rendering edge case to either docs or fix it in delete flat entity and related entity ( re-code the pg cascading behavior ) - We could also factorize the builder to only implement validators and not the intermediary file |
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42c9ae1ebc |
Centralize metadata relations constant + simplification (#16901)
# Introduction As we introduced a new grain on relation extraction thanks to low level `SyncableEntity` and `WorkspaceRelatedEntity` we're able to strictly typesafe extract metadata entity The new constant centralizes both many to one and one to many constants metadata entity constants in a more strictly typesafe way. Remains only the flatEntityForeignKey aggregator which has to be chosen manually across all available targeted flat entity ids properties |