# Introduction
Previously the auth jwt stragegy would lod the whole user entity in the
auth user context
On an exception it would completely get logged on the pods
## Security layer
- 0/ Updating the type system ( devxp only though )
- 1/ The jwt auth stragegy only load a specific sub set of the user
entity
- 2/ Sanitizing at the exception log level directly in case of a user
context
- 3/ Sanitizing at the console driver
The last two sanitization could sound a bit redundant though they're
still good fallback to keep in case new path occurs in the cb
## Description
- Add `isHeadless` field to `FrontComponent` entity so front components
can run without rendering UI in the command menu
- Introduce headless front component mounting logic:
`HeadlessFrontComponentMountRoot` at the application root,
`useMountHeadlessFrontComponent`, and `useUnmountHeadlessFrontComponent`
hooks to mount/unmount headless components
- Expand the SDK with new action components (`Action`, `ActionLink`,
`ActionOpenSidePanelPage`) and host communication functions
(`openSidePanelPage`, `unmountFrontComponent`)
- Move `CommandMenuPages` type to twenty-shared so the SDK can reference
it for side panel navigation
## Video QA
https://github.com/user-attachments/assets/4f9e3bb1-fcd1-42be-b3f4-a97e80c2add2
Create the necessary tooling to listen to metadata events and plug it to
the front components. Now we have a hot reload like experience when we
edit a component in an app.
## Backend
- Split `EventWithQueryIds` into `ObjectRecordEventWithQueryIds` and
`MetadataEventWithQueryIds`
- Publish metadata event batches to active SSE streams in
`MetadataEventsToDbListener`
## Frontend
- Create a metadata event dispatching pipeline: SSE metadata events are
grouped by metadata name, transformed into
`MetadataOperationBrowserEventDetail` objects, and dispatched as browser
`CustomEvents`
- Add `useListenToMetadataOperationBrowserEvent` hook for consuming
metadata operation events filtered by metadata name and operation type
- Rename `useListenToObjectRecordEventsForQuery` to
`useListenToEventsForQuery`, now accepting both
`RecordGqlOperationSignature` and `MetadataGqlOperationSignature`
- Implement `useOnFrontComponentUpdated` which subscribes to front
component metadata events and updates the Apollo cache when the
component is modified
- Add `builtComponentChecksum` to the front component query and appends
it to the component URL for browser cache invalidation
# 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
## 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"
/>
## 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 },
});
```
# 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 )
# 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`
https://github.com/user-attachments/assets/c4e63edb-6e98-44bc-841f-ee110ae712d4
How it works
- `manifest.json` files are now committed when apps are published to our
repo
- to display available apps, from the server, we read into our github
repo, using a pod-scoped cache
- feature flagged
- app installation will be behind permission gate MARKETPLACE_APPS
Limitations and what is yet to develop
- content and settings tabs
- installed apps tab
- app installation
- test and potentially fix reading from .manifest.json once [Reshape
manifest
structure](https://github.com/twentyhq/core-team-issues/issues/2183) is
done. additional work is expected on assets notably. (couldnt properly
do it here as manifest.json will only be committed after this pr)
- we only read in community/ folder for now - we may want tochange that
- the cache is rather artisanal for now and scoped by pod - we may want
to change that
# Introduction
In this PR we catch all the runner errors coming from a single workspace
migration action execution.
**1. `WorkspaceMigrationActionExecutionException`** (low-level,
action-specific)
- Thrown from action handlers, utils, and helper functions
- Contains specific error codes: `FIELD_METADATA_NOT_FOUND`,
`OBJECT_METADATA_NOT_FOUND`, `ENUM_OPERATION_FAILED`, `NOT_SUPPORTED`,
etc.
- Simple structure: `message`, `code`, `userFriendlyMessage`
- No action context - just describes what went wrong
**2. `WorkspaceMigrationRunnerException`** (high-level, runner-scoped)
- Only two codes: `INTERNAL_SERVER_ERROR` and `EXECUTION_FAILED`
- `EXECUTION_FAILED` **requires** `action` + `errors` (contains the
action context)
- `INTERNAL_SERVER_ERROR` **requires** `message` (no action context)
## Refactor
- Removed the `relatedFlatEntityMapsKeys` from the `WorkspaceMigration`
type as they're directly inferred from passed actions
- Swallowing actions rollbacks errors in order to iterate over all of
them
## Testing
Created a very straigthforward install application from workspace
migration endpoint in order to start testing the introduced
`WorkspaceMigrationActionExecutionException`
Introduced a feature flag that stop the access to the endpoint if not
enabled
Whole taken direction are totally subjective and highly prone to
mutations ( endpoint location, naming and input schema see
`ts-expect-error` comment )
cc @martmull
## Response error
```ts
{
"eventId": "evt_a1b2c3d4-5678-90ab-cdef-1234567890ab",
"extensions": {
"action": {
"metadataName": "fieldMetadata",
"type": "delete",
"universalIdentifier": "20202020-6110-4547-9fd0-2525257a2c3f"
},
"code": "APPLICATION_INSTALLATION_FAILED",
"errors": {
"metadata": {
"code": "ENTITY_NOT_FOUND",
"message": "Could not find flat entity with universal identifier 20202020-6110-4547-9fd0-2525257a2c3f"
},
"workspaceSchema": {
"code": "ENTITY_NOT_FOUND",
"message": "Could not find flat entity in maps"
}
},
"exceptionEventId": "exc_f9e8d7c6-5432-10ba-fedc-ba0987654321",
"userFriendlyMessage": "Migration execution failed."
},
"message": "Migration action 'delete' for 'fieldMetadata' failed",
"name": "GraphQLError"
}
```
# Introduction
As we've been identifying both standard and custom entities for all the
metadata that had standard
We now still need to identify all custom entities enforcing them to have
an `applicationId` and `universalIdentifier`
In this PR we've removed the `SyncableEntityRequired` in favor requiring
props directly in the `SyncableEntity`
Which means that all metadata in db will now expect non nullable
applicationId and universalIdentifier across the whole application
Will add some type cleanup later in
https://github.com/twentyhq/twenty/pull/17277
As part of the extensibility effort, we are introducing a new engine
entity called "Front Component". This represents a dynamic react
component that will be rendered in CommandMenu actions or in PageLayout
widgets
This PR introduce the entity and all the necessary boilerplate to make
it syncable and cachable in the engine