# Introduction
In this PR we start returning a workspace migration post sync so it can
committed and provided within the tarball
## Universal aggregators utils
Created two utils
### deleteUniversalFlatEntityForeignKeyAggregators
Used when building a universal create action, a newly created actions
should not contain any aggregated foreign key so they won't be codegen
in the workspace migration but also they are overriden at uninversal to
flat transpilation anw
### resetUniversalFlatEntityForeignKeyAggregators
Used before validating a new flat entity creation, some validator will
consume the fk aggregator in order to validate integrity, but of
optimstically provided it can result to errors. To avoid caller
responsability we override them here
## create-field-action refactor
Refactored the universal and flat field create action to be following
the base actions in order to ease typing
Also it was tailored to handle unlimited amount of flat field metadata
in the same actions whereas in the reality we were always only sending
at max 2 ( for relation fields )
Note: relation field has to be provided at the same as if not optimistic
would fail to retrieve circular universal identifiers
## ObjectManifest
Now always expect a `labelIdentifierFieldMetadataUniversalIdentifier`
## Integration test
Created an integration test that creates an app, sync a first manifest
and a second implying update workspace migration action generation
## Context
Creating a new object should now also create its record page layout,
tabs and widgets, including fields widget with its associated views/view
fields.
Custom objects record page layout fields widgets don't have section per
default
Note: I had to enable some widget creation through the custom API but we
should now implement proper validation (which should be minimal since
there is usually only the configuration type in the configuration
(except for FIELDS widget which contains a viewId)
Next step: Create view field should also create a viewField for the
FIELDS_WIDGET view (we should also add in the FIELDS widget
configuration a newFieldDefaults which will contain default visibility
and position to apply to the new view field)
The feature is still gated behind an env variable (this was necessary
for workspace creation, not so much here in this case but I prefer to
keep the same path for consistence)
Bumps
[@types/bytes](https://github.com/DefinitelyTyped/DefinitelyTyped/tree/HEAD/types/bytes)
from 3.1.4 to 3.1.5.
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Co-authored-by: Abdullah <125115953+mabdullahabaid@users.noreply.github.com>
## PR description
This PR:
- Creates a TypeScript-based extractor that discovers all exported
twenty-ui components by scanning barrel files, extracting
props/slots/events via ts-morph type analysis, and generating the remote
DOM bindings automatically.
- Adds a new ESLint rule which enforces all *Props types in twenty-ui
components to be exported, which is required for the extractor to
discover component prop types. Existing twenty-ui components are updated
to comply with this rule.
- Extends the remote DOM generation to support slots, per-component
events, forwardRef wrappers, and richer property types (array, object,
function)
## Edge cases to fix in another PR
- Icons cannot be rendered inside buttons
- IconButtons throw an error when mounted
- MenuItems are not displayed correctly
- MenuItemNavigate throws on click
## Video Demo
https://github.com/user-attachments/assets/c2ed67cf-6a15-4896-9fec-e83fac0e862b
## Reduce type leakage between GraphQL schemas
### Why
Twenty runs two separate GraphQL schemas: **core** and **metadata**.
NestJS's `@nestjs/graphql` uses a global `TypeMetadataStorage` that
accumulates all decorated types across all modules. When each schema is
built, every registered type leaks into both schemas regardless of which
module it belongs to.
This means the core schema's generated TypeScript
(`generated/graphql.ts`) contained ~2,700 lines of types that only
belong to the metadata schema (and vice versa). This creates confusion
about type ownership, inflates generated code, and makes it harder to
reason about which API surface each schema actually exposes.
### How
**1. Patch `@nestjs/graphql` to support schema-scoped type resolution**
- **(Already done)** Added a `resolverSchemaScope` option to
`GqlModuleOptions`, allowing each schema to declare a scope (e.g.
`'metadata'`)
- `ResolversExplorerService` now filters resolvers by a
`RESOLVER_SCHEMA_SCOPE` metadata key, so each schema only sees its own
resolvers
- `GraphQLSchemaFactory` now performs a **reachability walk**
(`computeReachableTypes`) starting from scoped resolver return types and
arguments, only including types that are transitively referenced —
handling unions, interfaces, and prototype chains
- Type definition storage and orphaned reference registry are cleared
between schema builds to prevent cross-contamination
**2. Register `ClientConfig` as orphaned type in metadata schema**
Since `ClientConfig` is needed in the metadata schema but not directly
returned by a resolver, it's explicitly declared via
`buildSchemaOptions.orphanedTypes`.
**3. Regenerate frontend types and fix imports**
- `generated/graphql.ts` shrank by ~2,700 lines (types moved to where
they belong)
- `generated-metadata/graphql.ts` gained types like `ClientConfig` that
were previously missing
- ~500 frontend files updated to import from the correct generated file
## 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>
## Add application-scoped GraphQL schema generation
When an application token is used to authenticate, the `/graphql` schema
is now dynamically filtered to only include entities belonging to that
application (plus the Twenty Standard Application). This enables
third-party applications and the SDK to introspect a schema that is
relevant to their scope, rather than seeing the full workspace schema
with all custom objects.
### Changes
- **New `generateApplicationToken` mutation** on the `/metadata`
endpoint, allowing callers to exchange an API key for an
application-scoped JWT token
- **Schema filtering by application** in `WorkspaceSchemaFactory` — when
`request.application` is present (from an application token), flat
entity maps are filtered by `[appId, standardAppId]` before schema
generation
- **Per-app caching** — both the Yoga in-memory cache and Redis cache
now include the `appId` in their keys to avoid serving wrong schemas
- **Consolidated `getSubFlatEntityMapsByApplicationIdsOrThrow`** —
unified the single-ID and multi-ID filtering utilities into one
- **Integration tests** covering token generation (admin + API key auth)
and schema introspection filtering (standard app token excludes custom
objects)
Schema generated on seeds with applicationToken (see that pets is
missing)
<img width="782" height="994" alt="image"
src="https://github.com/user-attachments/assets/82510031-0965-435d-bc26-77c9f5d74e1f"
/>
Co-authored-by: Copilot Autofix powered by AI <223894421+github-code-quality[bot]@users.noreply.github.com>
Co-authored-by: Devessier <baptiste@devessier.fr>
- Migration command
- Check IS_FILES_FIELD_MIGRATED:false
- Check or create avatarFile field
- Fetch all people with avatarUrl
- Move (Copy/move) file in storage
- Create core.file record
- Update person record
- bonus : attachment migration : fullPath > file (same logic)
- BE logic
- Add avatarFile field on person
- FE logic
- Adapt logic to upload on/display avatarFile data
The whole imageIdentifier logic will be done later
## Fix resolver schema leaking between `/metadata` and `/graphql`
endpoints
### Summary
- Patch `@nestjs/graphql` to support a `resolverSchemaScope` option that
filters resolvers at both schema generation and runtime, preventing
cross-endpoint leaking
- Introduce `@CoreResolver()` and `@MetadataResolver()` decorators to
explicitly scope each resolver to its endpoint
- Move most resolvers (auth, billing, workspace, user, etc.) to the
metadata schema where the frontend expects them; only workflow and
timeline calendar/messaging resolvers remain on `/graphql`
- Fix frontend `SSEQuerySubscribeEffect` to use the default (metadata)
Apollo client instead of the core client
### Problem
NestJS GraphQL's module-based resolver discovery traverses transitive
imports, causing resolvers from `/metadata` modules to leak into the
`/graphql` schema and vice versa. This made the schemas unpredictable
and tightly coupled to module import order.
### Approach
- Added `resolverSchemaScope` to `GqlModuleOptions` via a patch on
`@nestjs/graphql`, filtering in both `filterResolvers()` (runtime
binding) and `getAllCtors()` (schema generation)
- Each resolver is explicitly decorated with `@CoreResolver()` or
`@MetadataResolver()`
- Organized decorator, constant, and type files under `graphql-config/`
following project conventions
Core GQL Schema: (see: no more fields!)
<img width="827" height="894" alt="image"
src="https://github.com/user-attachments/assets/668f3f0f-485e-43f0-92be-4345aeccacb6"
/>
Metadata GQL Schema (see no more getTimelineCalendarEventsFromCompany)
<img width="827" height="894" alt="image"
src="https://github.com/user-attachments/assets/443913db-e5fe-4161-b0e7-4a971cc80a71"
/>
Fix after resolveEntityRelationUniversalIdentifiers introduction
```
FlatEntityMapsException [Error]: Could not find rowLevelPermissionPredicateGroup for given rowLevelPermissionPredicateGroupId
at resolveEntityRelationUniversalIdentifiers
```
- Creating util for RLS flat entity creation to be aligned with other
entities
- Progressively update the flat entity maps as each new group is built,
following the same optimistic pattern used by
computeUniversalFlatEntityMapsFromTo in the validate build and run. The
updated maps are now passed to computePredicateOperations so predicates
can also resolve references to the newly created groups.
- Adding more coverage
Co-authored-by: Charles Bochet <charlesBochet@users.noreply.github.com>
# 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>
When syncing an app with relation multiple times, it would fail because
the relation fields could not be identified due to universalIdentifier
being overwritten at field cretion
## Context
Ability to serve frontend component
See:
```typescript
curl -i 'http://localhost:3000/rest/front-components/35063b3f-bc4c-4358-8966-7762677802a3' \
--header 'Authorization: Bearer eyJhb...'
HTTP/1.1 200 OK
X-Powered-By: Express
Access-Control-Allow-Origin: *
Content-Type: application/javascript
Date: Mon, 09 Feb 2026 10:28:17 GMT
Connection: keep-alive
Keep-Alive: timeout=5
Transfer-Encoding: chunked
// react-globals:react/jsx-runtime
var jsx = globalThis.jsx;
var jsxs = globalThis.jsxs;
var Fragment = globalThis.React.Fragment;
// src/front-components/test.tsx
var RemoteComponents = globalThis.RemoteComponents;
var Component = () => {
return /* @__PURE__ */ jsxs(RemoteComponents.HtmlDiv, { style: { padding: "20px", fontFamily: "sans-serif" }, children: [
/* @__PURE__ */ jsx(RemoteComponents.HtmlH1, { children: "My new component!" }),
/* @__PURE__ */ jsx(RemoteComponents.HtmlP, { children: "This is your front component: test" })
] });
};
var test_default = globalThis.jsx(Component, {});
export {
test_default as default
};
//# sourceMappingURL=test.mjs.map
```
readFile_v2 returns a Node.js Stream object (Readable). Here we are
using stream pipeline which connects the readable stream (file) to the
writable stream (HTTP response) which efficiently streams the file
content directly to the HTTP response without loading the entire file
into memory. (in chunks, handling backpressure and closing the
connection when the file is fully sent)
# 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 },
});
```
- Add FILES field on attachment
- Adapt Attachment logic in front to use new resolver/controller
- Update files-field logic to infer applicationId from fieldMetadataId +
ask for fieldMetadataId in upload resolver
- Design update
To do in next PR :
- Adapt activity files logic
# Refactor workflow–logic function interaction
## Why
Workflow code steps and standalone logic functions shared the same build
layer and DB layer, which blurred two use cases: code steps belong to a
workflow version; standalone functions are deployable units. That made
workflow code steps harder to own and evolve.
## Goal
Treat code steps as **workflow-owned**: build and run them in workflow
context, and expose workflow-scoped APIs so the editor can load, test,
and save code step source without going through the generic
logic-function layer.
## Remove logic function layer
Package.json and yarn.lock are now on the application entity, so the
logic function layer is no longer used except as a legacy source for the
1.17 backfill. This PR removes all layer usage outside of that migration
and keeps only the entity for backfill.
### Summary
- **Kept:** `LogicFunctionLayerEntity` and its table, only used by the
1.17 backfill command to read legacy layer data and backfill application
package files.
- **Removed:** All other layer logic: CRUD, cache, resolvers, services,
DTOs, and frontend types. Logic functions now depend only on the
application for package/dependency context.
### Why Dependencies instead of Source for package files
Package.json and yarn.lock are the application’s dependency set and are
stored under the application in **FileFolder.Dependencies**. The build
service and drivers now read them only from Dependencies; nothing is
written to Source for these files.
This PR migrates `noteTarget` and `taskTarget` to morph relations behind
separate feature flags, following the Attachment/TimelineActivity
pattern.
It introduces the `IS_NOTE_TARGET_MIGRATED` and
`IS_TASK_TARGET_MIGRATED` flags, updates standard field metadata and
indexes to use morph relations, and adds two **1.17 workspace
migrations** that:
- rename `noteTarget.*Id` / `taskTarget.*Id` columns to `target*Id`
- convert the corresponding field metadata to `MORPH_RELATION` with a
shared `morphId`
On the frontend, note/task target read and write paths switch to
`target*Id` when the respective flag is enabled. Deleted targets are
filtered on reload to prevent reappearing relations.
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.
# 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`
Removes the versioning system for logic functions (`latestVersion`,
`publishedVersions`) and simplifies the file storage structure.
### Changes
- Remove `publishOneLogicFunctionOrFail` and publishing logic from
workflow status updates
- Add `createLogicFunctionFromExistingLogicFunction` to duplicate logic
functions when creating draft workflow versions
- Update `createDraftStep` to create a new logic function copy instead
of referencing the same one
- Migrate file storage to v2 endpoints with
`applicationUniversalIdentifier`
- Unify path structure: source files at `source/workflow/{id}/`, built
files at `built-logic-function/workflow/{id}/`
- Store full paths in `sourceHandlerPath` and `builtHandlerPath` entity
fields
## Summary
- Remove `latestVersion` and `publishedVersions` columns from
`LogicFunction` entity
- Remove version parameter from logic function execution, build, and
source code retrieval
- Update all related services, DTOs, utilities, and tests
- Add database migration to drop the version columns
# 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
## Summary
Migrates trigger entities (`CronTriggerEntity`,
`DatabaseEventTriggerEntity`, `RouteTriggerEntity`) into
`ServerlessFunctionEntity` by storing trigger settings as JSONB columns
directly on the serverless function. This simplifies the architecture
since these relationships were effectively one-to-one.
## Changes
### Schema Changes
- Added three new nullable JSONB columns to `ServerlessFunctionEntity`:
- `cronTriggerSettings` - stores cron pattern
- `databaseEventTriggerSettings` - stores event name and updated fields
filter
- `httpRouteTriggerSettings` - stores path, HTTP method, auth
requirements, and forwarded headers
### Core Logic Updates
- `CronTriggerCronJob` - now queries `ServerlessFunctionEntity` directly
instead of `CronTriggerEntity`
- `CallDatabaseEventTriggerJobsJob` - now queries
`ServerlessFunctionEntity` directly
- `RouteTriggerService` - now queries `ServerlessFunctionEntity`
directly
- `ApplicationSyncService` - extracts trigger settings from manifest and
writes to serverless function
This PR fixes a bug that arises in `formatResult` following up the
recent refactor for DATE_TIME :
https://github.com/twentyhq/twenty/pull/17407
In the case of workflows, we pass a plain object to `formatResult` :
```ts
{
before: null,
after: '2026-01-27T10:59:15.525Z'
}
```
So a case has been added to handle this.
@Weiko are we ok with this more restrictive else-if part in this util ?
We could also just put a `continue` for unknown shapes.
# Introduction
In this PR we're introducing mainly two branded type signatures for both
`JsonbProperty` entities properties and `SerializedRelation` (jsonb
serialized property storing another entity id).
Allowing to dynamically map over them later in order to build universal
`jsonb` `serialized` relations.
## `JsonbProperty`
A branded wrapper type that marks entity properties stored as PostgreSQL
JSONB columns. It adds a phantom brand `__JsonbPropertyBrand__` to
object types while leaving primitives unchanged. The branded key is
optional and typed as never, also omitted when transpiled to
`UniversalFlat`
**Should be used at entities lvl only:**
```typescript
@Column({ type: 'jsonb', nullable: false })
gridPosition: JsonbProperty<GridPosition>;
@Column({ nullable: false, type: 'jsonb', default: [] })
publishedVersions: JsonbProperty<string[]>;
```
## `SerializedRelation`
A branded string type that marks foreign key IDs stored inside JSONB
objects. These are entity references serialized within a JSONB column
rather than being a regular database foreign key.
**Usage in jsonb property generic***
```ts
type FieldMetadataRelationSettings = {
relationType: RelationType;
onDelete?: RelationOnDeleteAction;
joinColumnName?: string | null;
junctionTargetFieldId?: SerializedRelation;
};
```
## `FormatJsonbSerializedRelation<T>`
A transformation type that processes JSONB properties for universal
entity mapping. It:
1. Detects properties with the `JsonbProperty` brand
2. Finds `SerializedRelation` properties
3. Renames them from `*Id` to `*UniversalIdentifier`
4. Removes the brand from the output type ( optional though )
```typescript
// Input: JsonbProperty<{ targetFieldMetadataId: SerializedRelation }>
// Output: { targetFieldMetadataUniversalIdentifier: SerializedRelation }
```
## Result
An example of the dynamic type mapping, through a type-test example
```ts
type SettingsTestCase = UniversalFlatFieldMetadata<
| FieldMetadataType.RELATION
| FieldMetadataType.NUMBER
| FieldMetadataType.TEXT
>['settings']
type SettingsExpectedResult =
| {
relationType: RelationType;
onDelete?: RelationOnDeleteAction | undefined;
joinColumnName?: string | null | undefined;
junctionTargetFieldUniversalIdentifier?: SerializedRelation | undefined;
}
| {
dataType?: NumberDataType | undefined;
decimals?: number | undefined;
type?: FieldNumberVariant | undefined;
}
| {
displayedMaxRows?: number | undefined;
}
| null;
type Assertions = [
Expect<Equal<SettingsTestCase, SettingsExpectedResult>>,
]
```
## Remarks
- Removed duplicated twenty-server and twenty-shared typed
- Removed class validator instances for default value that were not used
at runtime, we will refactor that to add validation across all entities
following a same pattern
Closes [1744](https://github.com/twentyhq/core-team-issues/issues/1744).
This PR migrates attachments to morph relations behind a feature flag,
following the TimelineActivity pattern. it introduces the
`IS_ATTACHMENT_MIGRATED` flag, updates standard field metadata and
indexes to use morph relations, adds a workspace migration that renames
`attachment.*Id` columns to `target*Id` and converts the corresponding
field metadata to `MORPH_RELATION` with a shared `morphId`. On the
frontend, attachment read/write paths now switch to `target*Id` when the
flag is enabled.
It also fixes optimistic filtering for morph join columns. The metadata
API deduplicates morph fields, so attachments now expose a single target
field of type `MORPH_RELATION` plus a `morphRelations` array listing
each target object. Because only one `settings.joinColumnName` is
returned (e.g. `targetRocketId`), filters like `targetCompanyId` don’t
map to any field and the optimistic cache code throws.
`doesMorphRelationJoinColumnMatch` resolves this by computing all valid
join column names from `morphRelations` using
`computeMorphRelationFieldName` and comparing them to the filter key.
That makes filters like `targetCompanyId` resolvable even with a single
target field, so attachment uploads and list matching no longer crash.
<img width="477" height="474" alt="image"
src="https://github.com/user-attachments/assets/50e19418-3438-4d1e-9f1f-1bc1a03174a9"
/>
<br />
<br />
Today the metadata API returns one morph field called `target` and a
list of possible targets (`morphRelations`), but it does not tell us the
join column for each target. That’s why the Frontend had to compute join
column names.
If we want to fix this at the API level, there are two options:
- Add join column names to each target in `morphRelations` (e.g. company
→ `targetCompanyId`). This is additive and low‑risk.
- Return each target as its own field (`targetCompany`, `targetPerson`,
etc.) instead of a single target. This is a larger change because it
changes the shape of metadata and would require more UI updates.
<!-- CURSOR_SUMMARY -->
---
> [!NOTE]
> Introduces morph relations for attachments behind
`IS_ATTACHMENT_MIGRATED`, aligning server schema/metadata and frontend
behavior.
>
> - Adds `IS_ATTACHMENT_MIGRATED` flag (frontend/server) and
seeds/defaults; updates generated GraphQL enums
> - New workspace upgrade `1.17` command migrates data: renames
`attachment.*Id` → `target*Id` and converts related fields to
`MORPH_RELATION` with shared `morphId`
> - Updates standard field metadata and indexes to `target*` (attachment
+ related objects), dev seeds, snapshots, and workspace entity types
> - Frontend: switches attachment read/write filters via
`getActivityTargetObjectFieldIdName` using the feature flag; updates
hooks/components (`useAttachments`, `useUploadAttachmentFile`, editors);
expands `Attachment` type
> - Fixes optimistic cache filtering to recognize morph join columns in
`isRecordMatchingFilter` by computing valid join-column keys from
`morphRelations`
>
> <sup>Written by [Cursor
Bugbot](https://cursor.com/dashboard?tab=bugbot) for commit
f208fa23b1135af114f484f6d65041a816d6e718. This will update automatically
on new commits. Configure
[here](https://cursor.com/dashboard?tab=bugbot).</sup>
<!-- /CURSOR_SUMMARY -->
---------
Co-authored-by: Félix Malfait <felix@twenty.com>
## Summary
- Adds SSRF (Server-Side Request Forgery) protection to webhook requests
by using the same secure axios adapter already used by HTTP workflow
actions
- Prevents webhooks from making requests to private/internal IP
addresses (10.x, 192.168.x, 172.16-31.x, 169.254.x, localhost)
- Adds specific error logging when a webhook fails due to SSRF
protection
## Context
The HTTP workflow tool (`HTTP_REQUEST` action) already had SSRF
protection via `HTTP_TOOL_SAFE_MODE_ENABLED`, but webhooks were using
`HttpService` directly without this protection. This inconsistency meant
users could potentially configure webhooks to probe internal
infrastructure.
### What's protected now:
| Feature | Before | After |
|---------|--------|-------|
| HTTP Workflow Action | Protected (secure adapter) | Protected (secure
adapter) |
| Webhooks | **Unprotected** | Protected (secure adapter) |
### The secure adapter validates:
1. Protocol must be `http:` or `https:`
2. DNS resolution of hostname
3. Resolved IP must not be in private ranges
## Test plan
- [ ] Configure a webhook with an external URL (e.g.,
`https://webhook.site`) - should work
- [ ] Configure a webhook with `http://localhost:3000` - should fail
with SSRF error in audit log
- [ ] Configure a webhook with `http://10.0.0.1/test` - should fail with
SSRF error in audit log
- [ ] Configure a webhook with a domain that resolves to a private IP -
should fail