| name | forge-connector |
| description | Guides building and deploying Atlassian Forge Teamwork Graph connector apps that ingest external data into Atlassian's Teamwork Graph, making it searchable in Rovo Search and surfaced in Rovo Chat. Use when the user wants to build a Forge connector, ingest external data into Atlassian, connect a third-party tool (e.g. Google Drive, ServiceNow, Salesforce) to Atlassian, make external content searchable in Rovo, build a graph:connector module, use the @forge/teamwork-graph SDK, or implement onConnectionChange / validateConnection functions.
|
| license | Apache-2.0 |
| metadata | {"labels":"forge,rovo,jira,atlassian,teamwork-graph,connector","maintainer":"mbanjan94","namespace":"cloud"} |
Forge Connector
Builds a graph:connector Forge app that ingests external data into Atlassian's Teamwork Graph so it appears in Rovo Search and Rovo Chat.
Critical Rules
- Must install in Jira — Apps using Teamwork Graph modules must be installed on a Jira site. Confluence-only installs will not work.
- Never ask for credentials in chat — Direct users to run
forge login in their own terminal.
- Always run the scaffold script yourself — Do not only give manual instructions; run
scripts/scaffold_connector.py to generate the boilerplate.
- Always ask the user for their Atlassian site URL when install is needed — never discover or guess it.
- Atlassian deletes data on disconnect — When
action = 'DELETED', the app only needs to clean up local state; Atlassian removes the Teamwork Graph data automatically.
- Handler arguments are passed directly — Forge passes the request object as the first argument to handlers, NOT nested under
event.payload. Config values are at request.configProperties, NOT event.payload.config. This is the most common source of TypeError: Cannot destructure property of undefined errors.
- Use
@forge/kvs for storage — Import kvs from @forge/kvs. Do NOT use @forge/storage — its storage export is undefined at runtime in connector functions.
- Use
graph named export from @forge/teamwork-graph — The correct import is const { graph } = require('@forge/teamwork-graph'). Call graph.setObjects({ objects, connectionId }). Do NOT import setObjects as a named export directly.
validateConnectionHandler must return { success, message } — Do NOT throw an Error. Return { success: false, message: '...' } to reject, { success: true } to accept.
function declarations belong under modules — In manifest.yml, function: is a key under modules:, not a top-level key. Placing it at the top level causes a lint error.
formConfiguration uses form array with type: header — Do NOT use fields: or beforeYouBegin:. The correct format uses form: [{ key, type: header, title, description, properties: [...] }].
- Scopes are
read/write/delete:object:jira — Use read:object:jira, write:object:jira, delete:object:jira. The scopes read:graph:teamwork and write:graph:teamwork are invalid and will fail forge lint.
- Set
ATL_FORGE_ATTRIBUTION_SKILL_NAME=forge-connector on forge commands run for this skill — prefix forge invocations with this env var: ones you run in the shell (e.g. forge lint, forge logs, forge deploy) and the interactive forge create command you hand the user as a fallback. The bundled scripts set it automatically; other commands shown in this skill omit it for brevity — add it when you run them. The only exclusions are forge login and forge tunnel (user-run auth / live-dev commands).
- Never ignore
setObjects / setUsers / setGroups responses — Do NOT treat ingestion calls as fire-and-forget. Always check both response.success and response.results?.rejected. A call can partially fail: some objects are rejected while others are accepted, and response.success can be true even when rejected.length > 0.
- Keep access control IDs consistent — When using
USER or GROUP principals in permissions, the id value must exactly match the externalId used in the corresponding graph.setUsers() / graph.setGroups() call. Mismatched IDs (e.g. user-42 vs accountId:user-42) silently make objects invisible to users who should have access.
- Use orchestration for refresh scheduling — When the user wants periodic re-ingestion, use
graph.scheduleOrUpdateTask + a taskRunner handler (the platform-managed approach) instead of a scheduledTrigger. Orchestration handles cadence, retry, and fan-out natively. Only fall back to scheduledTrigger if the user explicitly needs a lightweight cron-style trigger without platform task tracking.
taskId must be a valid UUID — Both scheduleOrUpdateTask and scheduleChildTask require task.taskId to be a UUID string. Use uuid() (v4) for root tasks and uuidv5('<scanId>:<parentTaskId>:<itemId>', APP_NAMESPACE) for child tasks. Persist root task IDs in KVS so re-running onConnectionChange reuses the same ID (making it an update, not a competing schedule).
- Write
TaskInfo to KVS before scheduling; never delete it on completion — Always write the TaskInfo record to KVS keyed by taskId before calling scheduleOrUpdateTask or scheduleChildTask. On success, set completed: true on the record — do NOT delete it. Deleting causes duplicate deliveries to report ENTITY_NOT_FOUND and overwrite the earlier success.
- Branch on
response.error for orchestration responses — scheduleOrUpdateTask and scheduleChildTask return { status: 'ACCEPTED' } on success, not { success: true }. Check if (response.error) to detect failures — do NOT check if (!response.success).
MCP Prerequisites
| MCP Server | Purpose |
|---|
| Forge MCP | Manifest syntax, module config, deployment guides |
| ADS MCP | Atlaskit components (only if adding Custom UI) |
Agent Workflow — Complete Steps 0–7 in Order
Step 0: Prerequisites
Check Node.js (node -v, requires 22+), Forge CLI (forge --version), and login (forge whoami). Install missing tools:
npm install -g @forge/cli
Tell the user to run forge login in their terminal if not authenticated.
Step 1: Discover Developer Spaces
Note: forge developer-spaces list does NOT exist in Forge CLI 12.x. You cannot list developer spaces non-interactively.
forge create requires an interactive TTY to select a developer space. Ask the user to run it themselves:
Tell the user:
cd <parent-directory>
ATL_FORGE_ATTRIBUTION_SKILL_NAME=forge-connector forge create --template blank <app-name>
When prompted, select a Developer Space and let it complete.
Come back when done.
The --dev-space-id flag in the scaffold script is optional and can be omitted — the script has been updated to skip it when not provided.
Step 1.5: Discover Data & Map to Object Types
Do this before scaffolding. Ask the user the following questions to determine the correct Teamwork Graph object type(s). Do not assume or default to atlassian:document.
Questions to ask the user
-
What external system or tool are you connecting?
e.g. Google Drive, ServiceNow, Salesforce, GitHub, Confluence, Slack, Figma, Zendesk
-
What kind of content do you want to make searchable in Rovo?
Prompt with examples to help them identify it:
- Files, pages, wiki articles, reports, PDFs → likely
atlassian:document
- Tasks, tickets, issues, bugs, stories → likely
atlassian:work-item
- Chat messages, emails, comments → likely
atlassian:message or atlassian:comment
- Projects, workspaces, boards → likely
atlassian:project
- Code repositories → likely
atlassian:repository
- Pull requests / merge requests → likely
atlassian:pull-request
- Git commits → likely
atlassian:commit
- Design files (Figma, Sketch) → likely
atlassian:design
- Video recordings → likely
atlassian:video
- Calendar events, meetings → likely
atlassian:calendar-event
- Threads, channels → likely
atlassian:conversation
- Customer accounts or organisations → likely
atlassian:customer-organization
- Team spaces or org units → likely
atlassian:space
-
Is the content a single type or a mix?
If mixed (e.g. a project management tool with tasks and documents), plan to ingest each as its own object type. The scaffold supports one primary type — you can add more objectTypes entries in manifest.yml later.
-
Does the admin need to supply credentials (API key, URL, OAuth token) to connect?
Yes → use --has-form-config in the scaffold command.
No (data comes entirely from within Atlassian) → omit the flag.
-
How often does the source data change?
This determines the sync cadence. Use orchestration (scheduleOrUpdateTask + taskRunner) for all platform-managed refresh — it handles cadence, retry, and fan-out natively. Only use the legacy scheduledTrigger approach if you explicitly need a lightweight cron with no task tracking.
| Frequency | Orchestration interval |
|---|
| Hourly | scheduleInterval: { value: 1, timeUnit: 'hour' } |
| Daily | scheduleInterval: { value: 1, timeUnit: 'day' } |
| Every N minutes (1–60) | scheduleInterval: { value: N, timeUnit: 'minute' } |
| Static / one-off | No scheduled refresh needed — ingest once in onConnectionChange |
Record the chosen interval before proceeding to Step 2.
-
Who should be able to see the ingested content in Rovo Search?
This determines the permissions.accessControls on each object. Ask:
- "Is all this content publicly accessible, or does the source system restrict who can see what?"
- "Do you want Rovo Search results to respect those source-system permissions?"
Map the answer to the correct principal model:
| Source system access model | accessControls to use |
|---|
| Publicly accessible, no restrictions | principals: [{ type: 'EVERYONE' }] |
| Specific named users have access | principals: [{ type: 'user', id: '<atlassian-account-id>' }] — one entry per user |
| Team or group based (e.g. Confluence space, Google Workspace group) | principals: [{ type: 'group', id: '<group-id>' }] — one entry per group |
| Private / owner only | single user principal with the owner's Atlassian account ID |
| Mixed (per-object ACLs from the source) | fetch ACLs per item during ingestion and map each to a user or group principal |
Do NOT default to EVERYONE unless the user explicitly confirms content is publicly accessible. Using EVERYONE on restricted content leaks data to users who shouldn't see it in Rovo Search.
Record the chosen permission model before proceeding to Step 2. Reference it when writing the setObjects call in Step 3.
Mapping decision
Based on the answers, select the best-fit type from the Object Types table below. Only fall back to atlassian:document if the content genuinely has no better match (e.g. arbitrary file attachments). For types marked ❌ in the "Indexed in Rovo" column (atlassian:build, atlassian:deployment, atlassian:test), warn the user that those objects will not appear in Rovo Search or Rovo Chat.
Record the chosen object type(s) and permission model before proceeding to Step 2.
Step 2: Scaffold the Connector App
Run from the skill directory (the directory containing this SKILL.md). Replace <object-type> with the type determined in Step 1.5. --dev-space-id is optional:
python3 -m scripts.scaffold_connector \
--name <app-name> \
--connector-name "<Human Readable Name>" \
--object-type <object-type> \
--directory <parent-directory>
Add --dev-space-id <id> only if you have the ID from a previous step.
Object type — use the type chosen in Step 1.5. Do NOT default to atlassian:document without first completing the discovery questions above.
Form config flag — add --has-form-config if the admin must provide API credentials or connection details (determined in Step 1.5 question 4). Omit it for apps that operate entirely within Atlassian (no external credentials needed).
If scaffold fails because forge create needs a TTY: The scaffold script will print a manual fallback command. Have the user run forge create interactively, then continue from Step 3 — the scaffold script only needs to write manifest.yml and src/index.js after the directory exists.
Step 3: Customize the Generated Code
After scaffolding (or after the user runs forge create interactively):
cd <app-name>
npm install
The blank template generates src/index.js (JavaScript, not TypeScript). Edit it to add your API calls. The scaffold generates working handler skeletons; fill in your business logic.
Key files to edit
| File | What to change |
|---|
src/index.js | fetchExternalData() — replace with your API calls |
manifest.yml | Add permissions.external.fetch.backend URLs for any external APIs |
package.json | Add @forge/api, @forge/kvs, @forge/teamwork-graph as dependencies |
setObjects — ingest data into Teamwork Graph
Use the graph named export — do NOT destructure setObjects directly:
const { graph } = require('@forge/teamwork-graph');
const result = await graph.setObjects({
connectionId,
objects: [
{
schemaVersion: '1.0',
id: 'unique-id-from-source',
updateSequenceNumber: 1,
displayName: 'My Document Title',
url: 'https://source-system.example.com/doc/123',
createdAt: '2024-01-15T10:00:00Z',
lastUpdatedAt: '2024-01-20T14:30:00Z',
permissions: [{
accessControls: [{
principals: [{ type: 'EVERYONE' }],
}],
}],
'atlassian:document': {
type: {
category: 'DOCUMENT',
mimeType: 'application/vnd.google-apps.document',
},
content: {
mimeType: 'application/vnd.google-apps.document',
text: 'document title or snippet for search indexing',
},
},
},
],
});
const rejected = result.results?.rejected ?? [];
if (!result.success || rejected.length > 0) {
console.error('setObjects ingestion failed', {
connectionId,
acceptedCount: result.results?.accepted?.length ?? 0,
rejectedCount: rejected.length,
rejected,
error: result.error,
});
}
- Max 100 objects per call — batch large datasets with a loop
id must be unique per connectionId
connectionId is required in every graph.setObjects() call
Document Categories (for atlassian:document.type.category)
| MIME type | Category |
|---|
application/vnd.google-apps.document | DOCUMENT |
application/vnd.google-apps.spreadsheet | SPREADSHEET |
application/vnd.google-apps.presentation | PRESENTATION |
application/vnd.google-apps.folder | FOLDER |
application/pdf | PDF |