# CLAUDE.md This file provides guidance to Claude Code (claude.ai/code) when working with code in this repository. ## Licensing RoboCo is licensed under **AGPL-3.0** (see `LICENSE`). Copyright (c) 2026 Renzo Franceschini. Do NOT reintroduce an MIT or other license reference anywhere (README, headers, package metadata) — the project is AGPL. Contributions require a signed **Contributor License Agreement** (`CLA.md`), automated via the CLA Assistant workflow (`.github/workflows/cla.yml`). The CLA preserves the option to dual-license / offer a commercial edition later; keep copyright assignment language intact. See `CONTRIBUTING.md`. ## Project Overview **RoboCo** is an AI Agentic Company - a virtual organization of 22 AI agents + 1 human CEO, designed to operate as a complete software development workforce. The system implements a structured organizational hierarchy with formal communication protocols, task management, and quality controls. ### Core Architecture ``` CEO (Renzo - Human) | +-- Intake (on-demand interviewer: chats only with the CEO to draft a task) | +-- Board (3 agents) +-- Product Owner +-- Head of Marketing +-- Auditor (silent observer, reports to CEO) | +-- Main PM (coordinates all cells) | +-- Backend Cell (5 agents: 2 Devs, 1 QA, 1 PM, 1 Documenter) +-- Frontend Cell (5 agents: 2 Devs, 1 QA, 1 PM, 1 Documenter) +-- UX/UI Cell (5 agents: 2 Devs, 1 QA, 1 PM, 1 Documenter) ``` ### Hardware Infrastructure - **Olares One (Powerhouse)**: Intel Ultra 9 + RTX 5090, runs Claude Code instances and AI inference - NOT YET ARRIVED - **UGREEN NAS (Warehouse)**: 36TB RAID6, 128GB RAM, hosts PostgreSQL, Redis - **Pi Cluster (Operations)**: Monitoring, notifications, smart home ## Development Standards ### Python (Backend) ```bash # Package manager uv # Before any commit uv run ruff format . uv run ruff check . uv run mypy roboco/ uv run pytest # Coverage target: 80% ``` ### TypeScript (Frontend) ```bash # Package manager pnpm # Before any commit pnpm format pnpm lint pnpm typecheck pnpm test # Coverage target: 80% ``` ## Technology Stack | Layer | Technology | |-------|------------| | API Framework | FastAPI | | Database | PostgreSQL + asyncpg | | Vector Store | PostgreSQL + pgvector (in-house engine) | | RAG Engine | in-house (asyncpg + pgvector, hybrid retrieval) | | Cache/Queue | Redis | | Container Runtime | Docker + Docker Compose | | Cloud LLM | Claude API (claude-opus-4-6) | | Local LLM | Ollama (glm-5:cloud for RAG/hybrid retrieval) | | Embeddings | qwen3-embedding:0.6b (1024 dim) | | Frontend | Next.js 16 + TypeScript + Tailwind + Radix UI (in `panel/`) | | Edge / Proxy | nginx (single entry point on port 3000) | ## Multi-Agent Workspace Structure Each agent gets their own git clone of a project, enabling parallel development without conflicts: ``` {ROBOCO_WORKSPACES_ROOT}/ # Default: /data/workspaces +-- {project-slug}/ +-- {team}/ +-- {agent-slug}/ +-- [git repository] ``` **Example:** ``` /data/workspaces/ +-- roboco/ +-- backend/ | +-- be-dev-1/ # be-dev-1's workspace | +-- be-dev-2/ # be-dev-2's workspace +-- frontend/ +-- fe-dev-1/ +-- fe-dev-2/ ``` Note: the Next.js control panel now lives at `roboco/panel/` inside this repo (no longer a separate `roboco-panel` project or workspace). **Key Configuration (roboco/config.py):** - `ROBOCO_WORKSPACES_ROOT`: Root directory for workspaces (default: `/data/workspaces`) - `ROBOCO_WORKSPACE_AUTO_CLONE`: Auto-clone repos on first access (default: `true`) - `ROBOCO_WORKSPACE_CLONE_TIMEOUT`: Clone timeout in seconds (default: `300`) On a Python workspace, `WorkspaceService` runs `uv sync --extra dev` (not plain `uv sync`) so the clone's `.venv` carries the full gate toolchain (ruff/mypy/xenon/pytest) — the lint/type/complexity tools live in the `dev` **extra**, which plain `uv sync` skips. Without it an agent's `make quality` fails on `ruff: command not found` and the agent can't gate its own work. ## Git Workflow ### Branch Naming Convention Branch names follow the pattern: `{type}/{team}/{task-hierarchy}` **Types:** `feature`, `bug`, `chore`, `docs`, `hotfix` **Task Hierarchy:** Uses `--` separator (not `/`) to avoid git ref conflicts. **Examples:** - Root task: `feature/backend/ABC12345` - Subtask: `feature/backend/ABC12345--DEF67890` - Sub-subtask: `feature/backend/ABC12345--DEF67890--GHI11111` ### Commit Format Commits are automatically prefixed with the task ID: ``` [{task-id[:8]}] {message} ``` **Example:** ``` [ABC12345] Add user authentication endpoint ``` ### Work Sessions When a developer claims a task, a **WorkSession** is created that tracks: - Branch name and base/target branches - All commits made during the session - Files modified - PR number/URL when created - Merge status and who merged ### Git Credentials Git authentication is managed **per-project** through encrypted GitHub PATs: - **Each project stores its own git token** - no global fallback - **Tokens are encrypted at rest** using Fernet symmetric encryption - **API never exposes tokens** - only returns `has_git_token: boolean` - **Self-service via UI** - users set/update tokens in project settings **Project fields:** | Field | Description | |-------|-------------| | `git_token_encrypted` | Fernet-encrypted GitHub PAT (DB column) | | `has_git_token` | Boolean indicator for API responses | **Token flow:** 1. User creates project in UI, enters GitHub PAT 2. Token encrypted and stored in `projects.git_token_encrypted` 3. WorkspaceService decrypts token when cloning repos 4. GitService decrypts token for PR operations (gh CLI) **HTTPS URLs require tokens** - attempting to clone without a token will raise `WorkspaceError`. ## Task Lifecycle ### Task States The complete task lifecycle is defined in `roboco/foundation/policy/lifecycle.py` (`roboco/enforcement/task_lifecycle.py` is a backwards-compat shim over it): ``` backlog -> pending -> claimed -> in_progress -> [blocked|paused] -> verifying | | v v awaiting_qa <------------------+ awaiting_documentation | (needs_revision) | | v | v awaiting_documentation --------+ awaiting_pm_review | | v v awaiting_pm_review awaiting_ceo_approval | | v v completed completed ``` **States:** | State | Description | |-------|-------------| | `backlog` | PM setup phase - dependencies or session setup needed | | `pending` | Ready for work - orchestrator can spawn agents | | `claimed` | Agent has locked the task | | `in_progress` | Active development | | `blocked` | External dependency blocking progress | | `paused` | Temporarily stopped (can resume) | | `verifying` | Self-verification by developer | | `needs_revision` | QA or CEO requested changes | | `awaiting_qa` | Submitted for QA review — PR must already exist | | `awaiting_documentation` | Documentation phase — PR already open from pre-QA; doc writes docs | | `awaiting_pm_review` | Docs complete, PM reviews + merges | | `awaiting_ceo_approval` | Major tasks escalated for CEO final approval | | `completed` | Terminal state - work done and merged | | `cancelled` | Terminal state - work cancelled | ### Role-Based Transitions All status transitions are validated through the enforcement layer. Key restrictions: | Transition | Allowed Roles | |------------|---------------| | `backlog` → `pending` (activate) | PM roles only | | `pending` → `claimed` (claim) | Role must match task type (QA for awaiting_qa, etc.) | | `claimed` → `pending` (unclaim) | Assignee or PM | | `awaiting_qa` → `awaiting_documentation` (pass) | QA only | | `awaiting_qa` → `needs_revision` (fail) | QA only | | `awaiting_documentation` → `awaiting_pm_review` | Documenter or Developer (parallel completion) | | `awaiting_pm_review` → `completed` | PM roles only | | `awaiting_pm_review` → `awaiting_ceo_approval` | PM roles only | | `awaiting_ceo_approval` → `completed/needs_revision/cancelled` | CEO only | | Any → `cancelled` | PM roles only | **Unclaim Operation**: Agents can release claimed tasks back to the pool using `unclaim()`. This transitions `claimed` → `pending` and optionally reassigns to another agent. ### Git Integration Requirements All tasks follow git workflow. PR is created BEFORE QA review (not after) so QA can review the real PR diff on GitHub and downstream PM/CEO approval chain off a PR that already exists: 1. **claimed -> in_progress**: `branch_name` is auto-set on claim (hierarchical branches) 2. **verifying -> awaiting_qa** (submit-qa): Requires `self_verified`, `commits`, `pr_number` (PR open), and at least one `progress_updates` entry 3. **awaiting_qa -> awaiting_documentation** (pass-qa): Requires `pr_number` and substantive QA notes 4. **awaiting_documentation -> awaiting_pm_review**: Requires `docs_complete=True` (PR already exists from step 2 above) 5. **awaiting_pm_review -> awaiting_ceo_approval**: Must have `pr_number` set and all subtasks in a terminal state ### CEO Approval Workflow Major tasks are escalated to CEO for final approval: 1. PM reviews and approves, escalates to `awaiting_ceo_approval` 2. CEO can: - **Approve**: Merges PR, task -> `completed` - **Request changes**: Task -> `needs_revision` - **Cancel**: Task -> `cancelled` ## Data Models ### Core Models (roboco/models/) | Model | Purpose | |-------|---------| | `Task` | Atomic unit of work with acceptance criteria | | `Project` | Git repository configuration and CI/CD commands | | `WorkSession` | Links agent work to task, tracks branch/commits/PR | | `Agent` | AI agent with role, team, capabilities | | `Session` | Communication session with messages | | `Channel` | Team communication channel | | `Message` | Extracted message from agent streams | | `Notification` | Formal notification requiring acknowledgment | | `Journal` | Agent personal log for reflections/learnings | ### Task Model Key Fields ```python # Git configuration (all tasks follow git workflow) task_type: TaskType # code, documentation, research, planning, design, administrative project_id: UUID # Project this task works on (required) branch_name: str # Branch for this task (auto-created on claim) work_session_id: UUID # Active work session # PR tracking (parallel execution in awaiting_documentation) pr_number: int # GitHub/GitLab PR number pr_url: str # Full URL to PR docs_complete: bool # Documenter has finished pr_created: bool # Developer has created PR # Commits linked to task commits: list[CommitRef] # All commits made for this task ``` ## Communication Model **Communication** = constant stream (always flowing, logged, observed) **Notifications** = formal signals (require acknowledgment, sent by PMs/Board only) ### Channel Structure - Cell channels: `#backend-cell`, `#frontend-cell`, `#uxui-cell` - Cross-cell: `#dev-all`, `#qa-all`, `#pm-all`, `#doc-all` - Management: `#main-pm-board`, `#board-private` - Special: `#announcements` (read-only except Board/Main PM), `#all-hands` The Auditor has silent read access to ALL channels. ## Key Principles 1. **Everything is a task** - All work is tracked and documented 2. **No work without a task** - Create task record first 3. **No task without acceptance criteria** - How do we know it's done? 4. **No closure without documentation** - Future agents need context 5. **Communication is constant** - Stream reasoning, log everything 6. **State is sacred** - If interrupted, state must be recoverable 7. **The Auditor sees all** - Quality monitored silently 8. **Commits linked to tasks** - Every commit references its task ID 9. **CEO approves major changes** - Escalation path for important work ## Agent Gateway Agents do not call the API or per-domain MCP tools directly. They go through two thin MCP servers (`roboco-flow`, `roboco-do`) backed by the server-side **Choreographer** in `roboco/services/gateway/`. The Choreographer composes the existing services (TaskService, JournalService, GitService, etc.) into intent-verb sequences. Tracing, claim-locking, evidence assembly, and remediation hints are all centralized there. Each agent gets a **spawn manifest** at `/app/tool-manifest.json` listing the verbs its role is allowed to call. The orchestrator builds the manifest from `roboco/services/gateway/role_config.py` and mounts it read-only into the agent container. ### Verb surface (canonical source: `lifecycle.intents_for_role`; every role also gets `i_am_idle`) | Role | Flow verbs (beyond `i_am_idle`) | |---------------|--------------------------------------------------------------------------------------------------| | developer | `give_me_work`, `i_will_work_on`, `open_pr`, `i_am_done`, `i_am_blocked`, `resume`, `unclaim` | | qa | `give_me_work`, `claim_review`, `pass_review`, `fail_review`, `i_am_blocked`, `resume`, `unclaim` | | documenter | `give_me_work`, `claim_doc_task`, `i_documented`, `i_am_blocked`, `resume`, `unclaim` | | cell_pm | `give_me_work`, `i_will_plan`, `delegate`, `complete`, `submit_up`, `triage`, `unblock`, `escalate_up`, `reassign`, `resume`, `unclaim` | | main_pm | `give_me_work`, `i_will_plan`, `delegate`, `complete`, `triage`, `triage_all`, `unblock`, `escalate_up`, `escalate_to_ceo`, `resume`, `unclaim` | | pr_reviewer | `give_me_work`, `claim_pr_review`, `post_pr_review` (read-only reviewer; inbound external/fork PRs first) | | product_owner | `triage`, `escalate_to_ceo` | | head_marketing| `triage`, `escalate_to_ceo` | | auditor | `triage` (read-only — no `say`/`dm`) | | prompter | (none beyond `i_am_idle` — not a delivery-lifecycle role; intake interviewer, human-only) | | secretary | (none beyond `i_am_idle` — human-only chief-of-staff; reads company state + runs gated CEO directives) | Content tools (do_server) — most roles: `commit`, `note`, `say`, `dm`, `evidence`. Auditor is restricted to `note` (scope=reflect) + `evidence`. The `pr_reviewer` posts its change-request on the PR itself (no agent comms). The `prompter` (intake) and `secretary` are restricted to `note` + `evidence` — human-only, no `say`/`dm`/`notify`. ### MCP servers running per agent container | Server | Purpose | |----------------------|----------------------------------------------------------------------| | `roboco-flow` | Intent verbs (give_me_work, i_am_done, claim_review, complete, ...) | | `roboco-do` | Content tools (commit, note, say, dm, evidence) | | `roboco-git-readonly`| Read-only git: status, log, diff, branches | | `roboco-optimal` | RAG: `roboco_ask_mentor`, `roboco_kb_search` | | `roboco-docs` | Project docs file management (selected roles) | Every verb returns a standardized **Envelope**: - ok: `{status, task_id, next, evidence?, context_briefing}` - error: `{error, message, remediate, missing}` The `next` field tells the agent what to call next; the `remediate` field on errors tells them exactly how to fix and retry. Agents should not guess state — trust the response. ## Services Core services in `roboco/services/`: | Service | Purpose | |---------|---------| | `TaskService` | Task CRUD and state transitions | | `WorkSessionService` | Git session management, PR lifecycle | | `WorkspaceService` | Multi-agent workspace resolution and cloning | | `ProjectService` | Project/repository management | | `MessagingService` | Channels, sessions, messages | | `NotificationService` | Formal notifications | | `JournalService` | Agent journals and entries | | `OptimalService` | RAG queries (in-house pgvector engine) | | `PermissionsService` | Role-based access control | ## Configuration Key settings in `roboco/config.py` (env prefix: `ROBOCO_`): ```bash # Database ROBOCO_DATABASE_HOST=localhost ROBOCO_DATABASE_PORT=5432 ROBOCO_DATABASE_USER=roboco ROBOCO_DATABASE_PASSWORD=roboco ROBOCO_DATABASE_NAME=roboco # Redis ROBOCO_REDIS_HOST=localhost ROBOCO_REDIS_PORT=6379 # Security (REQUIRED) # Generate with: python -c 'from cryptography.fernet import Fernet; print(Fernet.generate_key().decode())' ROBOCO_ENCRYPTION_KEY= # Workspaces ROBOCO_WORKSPACES_ROOT=/data/workspaces ROBOCO_WORKSPACE_AUTO_CLONE=true ROBOCO_WORKSPACE_CLONE_TIMEOUT=300 # RAG (in-house pgvector engine) ROBOCO_RAG_CHUNK_STRATEGY=fixed ROBOCO_RAG_CHUNK_SIZE=512 ROBOCO_RAG_USE_HYDE=true ROBOCO_RAG_USE_HYBRID_SEARCH=true # AI/LLM ROBOCO_DEFAULT_EMBEDDING_MODEL=qwen3-embedding:0.6b ROBOCO_LOCAL_LLM_MODEL=glm-5:cloud ROBOCO_LOCAL_LLM_BASE_URL=http://roboco-ollama:11434/v1 ROBOCO_OLLAMA_BASE_URL=http://roboco-ollama:11434 ``` ## Docker Deployment ### Container Architecture The system runs as Docker Compose services. All Dockerfiles live under `docker/` at the project root; every service uses `context: .` plus `dockerfile: docker/.Dockerfile`. | Service | Purpose | Healthcheck | |---------|---------|-------------| | `postgres` | PostgreSQL + pgvector | `pg_isready` | | `redis` | Cache, sessions, event bus | `redis-cli ping` | | `ollama` | Local LLM + embeddings | `ollama list` | | `ollama-init` | Pulls models on startup | One-shot | | `agent-base-image` / `agent-*-image` | Pre-built images spawned per agent | One-shot | | `orchestrator` | API + agent spawner | Depends on all above | | `panel` | Next.js control panel (internal, port 3000) | — | | `nginx` | Reverse proxy fronting panel + orchestrator | — | ### Single Entry Point `nginx` is the only externally-exposed service. It listens on `localhost:3000` and routes: - `/api/*` and `/ws/*` → `orchestrator:8000` - everything else → `panel:3000` This avoids CORS since the browser sees one origin. The Next.js code uses relative URLs (`/api`, `/ws`) and lets nginx do the dispatch. ### WebSocket streams The orchestrator exposes WebSocket endpoints under `/ws` (router in `roboco/api/websocket.py`, `ConnectionManager` + `broadcast_*` helpers): | Endpoint | Purpose | |----------|---------| | `/ws/channels/{id}`, `/ws/agents/{id}`, `/ws/sessions/{id}`, `/ws/notifications/{id}` | Per-resource live streams | | `/ws/system` | Operator/system-wide stream (no per-agent keying) — the rate-limit lifecycle (`RATE_LIMIT_HIT` / `RATE_LIMIT_LIFTED`) and live usage (`USAGE_SNAPSHOT`, pushed to the usage dashboard) | Server-side events reach these sockets through `roboco/api/websocket_bridge.py`, which subscribes to the `StreamEventBus` and forwards each event to the matching connections. To add a new live event: define an `EventType` (dotted value), publish it to the bus, add a `_handle_*` forwarder in `websocket_bridge`, and consume it on the panel via the `useWebSocket("/", …)` hook — do not stand up a parallel endpoint or client stack. ### Rate limiting & usage - **Provider rate limits** are tracked in Redis (`RateLimitStateTracker`, `roboco/services/gateway/`). On a provider 429 an agent calls `i_am_blocked(reason="rate_limited")`; the spawn gate then **queues** (never drops) further work for that provider, and a background probe-and-resume loop in the orchestrator clears the limit and revives parked agents when it lifts. - **Token usage** is captured per agent session from the Claude Code transcript via the SDK server's `/usage/sync` (hook → orchestrator finalize → `agent_spawn_sessions` → `daily_usage_rollups` → dashboard). Cost uses provider-aware pricing in `roboco/billing/pricing.py` (Anthropic priced; local/Ollama intentionally `$0`). The token sweep also publishes `USAGE_SNAPSHOT` to `/ws/system`, so the dashboard's "Token Usage & Cost" panel updates live and falls back to HTTP polling when the stream is down. ### Startup Sequence The startup order is critical due to dependencies: ``` postgres ──┐ redis ─────┼──> ollama ──> ollama-init ──> orchestrator ──> panel ──> nginx │ │ │ │ │ └── Pulls qwen3-embedding:0.6b, glm-5:cloud │ └── Healthcheck: ollama list └── Healthcheck: pg_isready, redis-cli ping ``` **Important timing notes:** 1. `ollama-init` pulls models (~30s for embedding model, ~2min for LLM) 2. Orchestrator waits for models before starting 3. FastAPI lifespan indexes documents using Ollama (~30-60s) 4. Orchestrator polls `/health` until API is ready before starting dispatcher 5. After orchestrator is up, `panel` (Next.js) builds/starts, then `nginx` ### Database migrations Schema changes ship as Alembic migrations under `alembic/versions/`. Run: ```bash docker compose exec orchestrator alembic upgrade head ``` after pulling any change that adds a new migration. ### Ollama Configuration Ollama provides two APIs: - `/v1/*` - OpenAI-compatible API (for LLM chat/completion) - `/api/*` - Native Ollama API (for embeddings, model management) The embedder uses `/api/embed` endpoint with the `qwen3-embedding:0.6b` model. **Environment variables for Docker:** ```bash ROBOCO_LOCAL_LLM_BASE_URL=http://roboco-ollama:11434/v1 # OpenAI-compat ROBOCO_OLLAMA_BASE_URL=http://roboco-ollama:11434 # Native API ``` ### Common Issues | Symptom | Cause | Fix | |---------|-------|-----| | `404 /api/embed` | Model not pulled | Check `docker logs roboco-ollama-init` | | `All connection attempts failed` | API not ready | Orchestrator starts before FastAPI lifespan completes | | Healthcheck failing | Wrong endpoint | Use `ollama list` not `curl` | ## Blueprint Reference The organizational structure, communication matrix, role descriptions, and access-control model are documented inline above and in the published `docs/` tree (per-area `README.md` files, `usage.md`, `deployment.md`).