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chorus-develop

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Chorus Development workflow — claim tasks, report work, manage sessions, and run parallel task execution with Kiro subagents.

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Chorus Develop Skill

This skill covers the Development stage of the AI-DLC workflow: claiming Tasks, writing code, reporting progress, submitting for verification, and managing sessions for subagent observability.


Overview

Developer Agents take Tasks created by PM Agents (via /chorus-proposal) and turn them into working code. Each task follows:

claim --> in_progress --> report work --> self-check AC --> submit for verify --> Admin /chorus-review

For multi-agent parallel execution, the chorus main agent spawns Kiro subagents (up to 4 concurrent) with full session-based observability.


Tools

Task Lifecycle:

ToolPurpose
chorus_claim_taskClaim an open task (open -> assigned)
chorus_release_taskRelease a claimed task (assigned -> open)
chorus_update_taskUpdate task status (in_progress / to_verify)
chorus_submit_for_verifySubmit task for admin verification with summary

Work Reporting:

ToolPurpose
chorus_report_workReport progress or completion (writes comment + records activity, with optional status update)

Acceptance Criteria:

ToolPurpose
chorus_report_criteria_self_checkReport self-check results (passed/failed + optional evidence) on structured acceptance criteria

Session (subagents only — main agent skips these):

ToolPurpose
chorus_session_checkin_taskCheckin to a task before starting work
chorus_session_checkout_taskCheckout from a task when work is done

Subagents: always pass sessionUuid to chorus_update_task and chorus_report_work for attribution. Main agent: call these tools without sessionUuid — no session needed.

Shared tools (checkin, query, comment, search, notifications): see the chorus steering doc.


Workflow

Step 1: Check In

chorus_checkin()

Review your persona, current assignments, and pending work counts. (On the chorus main agent, the agentSpawn hook has already run checkin into your startup context.)

Step 1.5: Get Your Session (Subagents Only)

Skip if you are the main agent.

If you are a subagent picking up a task, create/attach a session for observability. When the main agent spawns you it passes your sessionUuid in the prompt — keep it for all task operations. If you were spawned without one, create a session for yourself and use its uuid.

Step 2: Find Work

chorus_get_available_tasks({ projectUuid: "<project-uuid>" })

Or check existing assignments:

chorus_get_my_assignments()

Step 3: Claim a Task

chorus_get_task({ taskUuid: "<task-uuid>" })  # Review first
chorus_claim_task({ taskUuid: "<task-uuid>" })

Check: description, acceptance criteria, priority, story points, related proposal/documents.

Step 4: Gather Context

Each task and proposal includes a commentCount field — use it to decide which entities have discussions worth reading.

  1. Read the task and identify dependencies:

    chorus_get_task({ taskUuid: "<task-uuid>" })
    

    Pay attention to dependsOn (upstream tasks) and commentCount.

  2. Read task comments (contains previous work reports, progress, feedback):

    chorus_get_comments({ targetType: "task", targetUuid: "<task-uuid>" })
    
  3. Review upstream dependency tasks — your work likely builds on theirs:

    chorus_get_task({ taskUuid: "<dependency-task-uuid>" })
    chorus_get_comments({ targetType: "task", targetUuid: "<dependency-task-uuid>" })
    

    Look for: files created, API contracts, interfaces, trade-offs.

  4. Read the originating proposal for design intent:

    chorus_get_proposal({ proposalUuid: "<proposal-uuid>", section: "documents" })
    

    (chorus_get_proposal defaults to section: "basic" — just metadata + a draft index. Pass section: "documents" for the design docs, or section: "full" for docs + task drafts.)

  5. Read project documents (PRD, tech design, ADR):

    chorus_get_documents({ projectUuid: "<project-uuid>" })
    

Document update flow (OpenSpec mode): if the originating proposal description contains a line OpenSpec change slug: <slug>, the project's PRD / tech_design / spec Documents are mirrors of files under openspec/changes/<slug>/. To update such a Document (e.g. clarify an AC, fix a spec scenario before resubmitting), load the /chorus-openspec-aware skill and follow §3.8: edit the local .md file first, then mirror through the chorus-api.sh wrapper with json_encode_file and chorus_check_response.

⛔ Do not call chorus_pm_update_document directly from the MCP harness with a hand-typed content field in OpenSpec mode. The local file is the source of truth; agent-typed content drifts and burns tokens (/chorus-openspec-aware §2 Rule 1).

When the LAST task of an OpenSpec idea is verified, run the archive flow (/chorus-openspec-aware §3.9) — openspec archive <slug> --yes, then mirror each emitted openspec/specs/<capability>/spec.md back via §3.8.

In the no-OpenSpec fallback (no slug line, or no openspec CLI), edit the Document content directly via the existing MCP tool with no wrapper, no local file step.

Step 5: Start Working

Subagent: checkin to the task first:

chorus_session_checkin_task({ sessionUuid: "<session-uuid>", taskUuid: "<task-uuid>" })

Then mark as in-progress:

# Subagent:
chorus_update_task({ taskUuid: "<task-uuid>", status: "in_progress", sessionUuid: "<session-uuid>" })

# Main agent:
chorus_update_task({ taskUuid: "<task-uuid>", status: "in_progress" })

Dependency enforcement: If this task has unresolved dependencies (dependsOn tasks not in done or closed), the call will be rejected with detailed blocker info. Use chorus_get_unblocked_tasks to find tasks you can start now.

Step 6: Report Progress

Report periodically with chorus_report_work. Include:

  • What was completed
  • Files created or modified
  • Git commits and PRs
  • Current status / remaining work
  • Blockers or questions
chorus_report_work({
  taskUuid: "<task-uuid>",
  report: "Progress:\n- Created src/services/auth.service.ts\n- Commit: abc1234\n- Remaining: unit tests",
  sessionUuid: "<session-uuid>"
})

Report with status update when complete:

chorus_report_work({
  taskUuid: "<task-uuid>",
  report: "All implementation complete:\n- Files: ...\n- PR: https://github.com/org/repo/pull/42\n- All tests passing",
  status: "to_verify",
  sessionUuid: "<session-uuid>"
})

Step 7: Self-Check Acceptance Criteria

Before submitting, check structured acceptance criteria:

task = chorus_get_task({ taskUuid: "<task-uuid>" })

# If task.acceptanceCriteriaItems is non-empty:
chorus_report_criteria_self_check({
  taskUuid: "<task-uuid>",
  criteria: [
    { uuid: "<criterion-uuid>", devStatus: "passed", devEvidence: "Unit tests cover this" },
    { uuid: "<criterion-uuid>", devStatus: "passed", devEvidence: "Verified manually" }
  ]
})

For required criteria, keep working until you can self-check as passed. Only use failed for optional criteria that are out of scope.

Step 8: Submit for Verification

Subagents — checkout first:

chorus_session_checkout_task({ sessionUuid: "<session-uuid>", taskUuid: "<task-uuid>" })

Then submit:

chorus_submit_for_verify({
  taskUuid: "<task-uuid>",
  summary: "Implemented auth feature:\n- Added login/logout endpoints\n- JWT middleware\n- 95% test coverage\n- All AC self-checked (3/3 passed)"
})

to_verify does NOT unblock downstream tasks — only done (after admin verification) does.

Review Subagent: After chorus_submit_for_verify, the chorus main agent's postToolUse hook injects a nudge instructing you to spawn the chorus-task-reviewer — an independent, read-only review subagent (tools: ["read", "@chorus"]). You MUST spawn it yourself (it is NOT auto-launched). Run it in the foreground — wait for the VERDICT before proceeding. The reviewer posts a VERDICT comment on the task.

After the reviewer completes, read its VERDICT:

chorus_get_comments({ targetType: "task", targetUuid: "<task-uuid>" })

Find the most recent comment containing VERDICT: and act on it:

  • VERDICT: PASS — All AC verified, no issues. Proceed to admin verification.
  • VERDICT: PASS WITH NOTES — All AC verified, minor notes. Proceed to admin verification (notes are non-blocking).
  • VERDICT: FAIL — BLOCKERs found. Do NOT verify. Fix the BLOCKERs listed in the reviewer's comment, then resubmit.

If no new VERDICT: comment appears after the reviewer returns, it exhausted its turn budget before posting. Respawn it ONCE with a concise-budget hint in the prompt: "Stay within turn budget. Skip deep verification. Fetch task/proposal/comments, demand the developer's run evidence, and post your VERDICT comment within the first 12 turns." If the second attempt still produces no VERDICT, review manually using the checklist and proceed.

Final code-review gateway (after the Idea's LAST task is verified): when the task you just verified is the last task of its idea-rooted proposal, the feature is about to ship — the postToolUse hook injects a reminder to spawn the chorus-code-reviewer subagent. Spawn it yourself in the foreground, passing the ideaUuid + round number; it reviews the Idea's aggregate code change across all its tasks (cross-task integration, architecture, security, regression, feature-level coverage) and posts one VERDICT comment on the idea. PASS / PASS WITH NOTES → ship; FAIL → fix via /chorus-quick-dev (chorus_create_tasks with proposalUuid set to the current approved proposal so the fix tasks attach to it — do NOT reopen the verified tasks), then re-run the gateway. Advisory/behavioral, like the other reviewers. Run it before any idea-completion report.

Step 9: Handle Review Feedback

If the reviewer returns FAIL, or the task is reopened after verification:

All acceptance criteria are reset to pending when a task is reopened.

  1. Check feedback:
    chorus_get_task({ taskUuid: "<task-uuid>" })
    chorus_get_comments({ targetType: "task", targetUuid: "<task-uuid>" })
    
  2. Fix every BLOCKER listed in the reviewer's FAIL comment.
  3. Checkin again, fix issues, report fixes, resubmit.

Step 10: Task Complete

Once Admin verifies (status: done), move to the next available task (back to Step 2).

Step 11: Idea Completion Report (advisory)

If the task you just self-verified was the LAST one of its Idea (every Task across every approved Proposal is now done/closed) and you have document:write, offer to call chorus_create_report (ask the user first with a clear interactive question). The content parameter's description carries the section template. Skip on decline.


Session (Subagents Only)

The chorus main agent's lifecycle hooks automate the main agent's own session (checkin on agentSpawn, heartbeat/checkout on stop). A subagent that picks up a task does three things manually:

  1. chorus_session_checkin_task({ sessionUuid, taskUuid }) — before starting work
  2. chorus_session_checkout_task({ sessionUuid, taskUuid }) — when done
  3. Pass sessionUuid to chorus_update_task and chorus_report_work for attribution

Main agent: no session needed — call tools without sessionUuid.


Kiro Subagents Integration (parallel execution)

When you (the chorus main agent) want to run multiple tasks in parallel, spawn Kiro subagents — up to 4 concurrent. Chorus provides full work observability across them.

Two-Layer Architecture

LayerSystemPurpose
OrchestrationKiro subagentsSpawning subagents, task dispatch
Work TrackingChorusTask lifecycle, session observability, activity stream

Orchestrator (main agent) Workflow

# 1. Check in and plan
chorus_checkin()
chorus_list_tasks({ projectUuid: "<project-uuid>" })

# 2. Spawn a subagent per ready task (up to 4 concurrent). You have `subagent`
#    in your tools, so you can dispatch by name/description. Give each subagent:
#      - its Chorus task UUID + the project UUID
#      - a fresh sessionUuid to pass to its task operations (for attribution)
#      - the instruction to follow the /chorus-develop workflow

What the orchestrator prompt for each subagent needs:

  • Task UUID(s) + Project UUID
  • A sessionUuid for that subagent to use on chorus_update_task / chorus_report_work
  • The instruction: follow /chorus-develop (claim -> in_progress -> develop -> report -> self-check AC -> checkout -> submit_for_verify)

Subagent Workflow

# 1. Checkin to task
chorus_session_checkin_task({ sessionUuid: "<my-session-uuid>", taskUuid: "<my-task-uuid>" })

# 2. Move to in_progress
chorus_update_task({ taskUuid: "<my-task-uuid>", status: "in_progress", sessionUuid: "<my-session-uuid>" })

# 3. Do work... code, test, commit...

# 4. Report progress
chorus_report_work({ taskUuid: "<my-task-uuid>", report: "...", sessionUuid: "<my-session-uuid>" })

# 5. Checkout and submit
chorus_session_checkout_task({ sessionUuid: "<my-session-uuid>", taskUuid: "<my-task-uuid>" })
chorus_submit_for_verify({ taskUuid: "<my-task-uuid>", summary: "..." })

# 6. Report back to the orchestrator (Kiro subagents return a summary to the spawner)

Handling Task Dependencies (DAG)

Server-side enforcement: chorus_update_task(status: "in_progress") rejects if any dependsOn task is not done or closed.

Wave-based execution (recommended):

  1. chorus_get_unblocked_tasks — find ready tasks
  2. Spawn subagents for Wave 1 (max 4 concurrent)
  3. Wait for to_verify, then verify each task (chorus_admin_verify_task → done)
  4. chorus_get_unblocked_tasks — find newly unblocked tasks (Wave 2)
  5. Repeat until all tasks done

Critical: to_verify does NOT resolve dependencies — only done or closed does. The orchestrator must verify tasks between waves.

MCP Access for Subagents

The chorus MCP server is pulled in via includeMcpJson: true on the chorus main agent. A dispatched subagent needs the @chorus server in its own tool scope too (either it is a chorus* agent that includes the server, or you pass the MCP config it needs). Ensure CHORUS_URL + CHORUS_API_KEY are exported in the environment Kiro was launched from.

Troubleshooting

ProblemSolution
Subagent can't access Chorus MCP toolsVerify the subagent's tools include @chorus, the API key has developer role, and CHORUS_URL/CHORUS_API_KEY are exported
UI doesn't show active workersSubagent forgot chorus_session_checkin_task. Check: chorus_get_session
Session disappears from SettingsNo activity for 1h (default lists hide stale sessions). The session row still exists — reachable via MCP chorus_list_sessions / chorus_get_session. Send a heartbeat (or any session-touching tool) to make it visible again
Task stuck in wrong statusUse chorus_update_task to reset, or reopen via admin

Work Report Best Practices

Good report (enables session continuity):

Implemented password reset flow:

Files created/modified:
- src/services/auth.service.ts (new)
- src/app/api/auth/reset/route.ts (new)
- tests/auth/reset.test.ts (new)

Git:
- Commit: a1b2c3d "feat: password reset flow"
- PR: https://github.com/org/repo/pull/15

Implementation details:
- POST /api/auth/reset-request: sends email with token
- Token expires after 1 hour, single-use
- Rate limiting: 3 requests/hour/email
- 12 new tests, all passing

Acceptance criteria:
- [x] User can request reset via email
- [x] Reset link expires after 1 hour
- [x] Rate limiting prevents abuse

Bad report: Done.


Tips

  • Read task comments first — they contain previous work reports for session continuity
  • Check upstream dependencies — read dependsOn tasks and their comments for interfaces/APIs
  • Read the originating proposal — understand design rationale and task DAG
  • Use commentCount — skip fetching comments on entities with count 0
  • Report progress frequently — include file paths, commits, and PRs
  • Write detailed submit summaries — Admin needs them to verify
  • If blocked, add a comment and consider releasing the task
  • One task at a time (per subagent): finish or release before claiming another
  • Use meaningful subagent names — they become Chorus session names

When to Release a Task

Release if:

  • You can't complete it (missing knowledge, blocked)
  • A higher-priority task needs attention
  • You won't finish in a reasonable timeframe
chorus_release_task({ taskUuid: "<task-uuid>" })
chorus_add_comment({ targetType: "task", targetUuid: "<task-uuid>", content: "Releasing: reason..." })

Next

  • After submitting for verification, an Admin reviews using /chorus-review
  • Human "Start Development" wake: a start_development wake (the human clicked Start Development on the idea-detail panel) means: claim and execute ALL remaining tasks of the idea's approved proposal in dependency order — loop this workflow until no claimable task remains, leaving to_verify and other-session tasks untouched.
  • Human "Yolo" wake: a yolo_requested wake (the human clicked Yolo on the idea-detail panel) means: drive the WHOLE idea to done via the /chorus-yolo skill (the full-auto AI-DLC pipeline), not just the execute stage — read the idea's current state and resume from whatever phase it is in. Unlike start_development it is stage-adaptive, and it must never merge or push a PR without explicit human approval.
  • For platform overview and shared tools, see the chorus steering doc.