services: # ========================================================================== # PostgreSQL - Primary Database with pgvector for RAG # ========================================================================== postgres: image: pgvector/pgvector:pg16 container_name: roboco-postgres restart: unless-stopped # data-only network: agent containers (on roboco_default) cannot reach # the production DB; only the multi-homed orchestrator can. Host port # publishing (15432) is unaffected — roboco_data is a normal bridge. networks: - data environment: POSTGRES_USER: roboco POSTGRES_PASSWORD: roboco POSTGRES_DB: roboco ports: - "15432:5432" volumes: - ${ROBOCO_DATA_DIR:-./data}/postgres:/var/lib/postgresql/data healthcheck: test: ["CMD-SHELL", "pg_isready -U roboco -d roboco"] interval: 10s timeout: 5s retries: 5 # ========================================================================== # Redis - Cache, Sessions, Event Bus # ========================================================================== redis: image: redis:8-alpine container_name: roboco-redis restart: unless-stopped # data-only network — see postgres. Redis has no auth, so network # membership is its ONLY containment against agent containers. networks: - data command: redis-server --appendonly yes ports: - "16379:6379" volumes: - ${ROBOCO_DATA_DIR:-./data}/redis:/data healthcheck: test: ["CMD", "redis-cli", "ping"] interval: 10s timeout: 5s retries: 5 # ========================================================================== # MinIO - Object storage for rendered videos (NAS default-on; registry OFF) # ========================================================================== minio: image: minio/minio:latest container_name: roboco-minio restart: unless-stopped # data-only network — keeps MinIO off the agent mesh; the multi-homed # orchestrator reaches it via its data NIC. Host ports for debugging. networks: - data command: server /data --console-address ":9001" environment: MINIO_ROOT_USER: ${ROBOCO_MINIO_ACCESS_KEY:-minio} MINIO_ROOT_PASSWORD: ${ROBOCO_MINIO_SECRET_KEY:-minio123} ports: - "19000:9000" - "19001:9001" volumes: - minio-data:/data healthcheck: test: ["CMD", "mc", "ready", "local"] interval: 10s timeout: 5s retries: 5 start_period: 10s # MinIO bucket init - one-shot, mirrors the ollama-init pattern: depends on # minio healthy, creates the bucket idempotently, then exits. `|| true` # covers re-runs (bucket already exists). minio-init: image: minio/mc:latest container_name: roboco-minio-init depends_on: minio: condition: service_healthy networks: - data entrypoint: ["/bin/sh", "-c"] # Note: $$ escapes $ for docker-compose variable substitution so the # container's own env vars reach mc. command: - mc alias set local http://roboco-minio:9000 $$ROBOCO_MINIO_ACCESS_KEY $$ROBOCO_MINIO_SECRET_KEY && mc mb -p local/$$ROBOCO_MINIO_BUCKET || true environment: ROBOCO_MINIO_ACCESS_KEY: ${ROBOCO_MINIO_ACCESS_KEY:-minio} ROBOCO_MINIO_SECRET_KEY: ${ROBOCO_MINIO_SECRET_KEY:-minio123} ROBOCO_MINIO_BUCKET: ${ROBOCO_MINIO_BUCKET:-roboco-video-renders} restart: "no" # ========================================================================== # Ollama - Local LLM and Embedding Server # ========================================================================== ollama: image: ollama/ollama:latest container_name: roboco-ollama restart: unless-stopped environment: OLLAMA_API_KEY: ${OLLAMA_API_KEY} ports: - "11435:11434" volumes: - ${ROBOCO_DATA_DIR:-./data}/ollama:/root/.ollama healthcheck: # Use ollama CLI (guaranteed available) to check if server is responding test: ["CMD", "ollama", "list"] interval: 10s timeout: 5s retries: 5 start_period: 10s # Ollama model puller - pulls required models on startup # Uses streaming curl to wait for full model download ollama-init: image: curlimages/curl:latest container_name: roboco-ollama-init depends_on: ollama: condition: service_healthy restart: "no" entrypoint: ["/bin/sh", "-c"] command: - | # NO `set -e`: pulls are best-effort. Cached models persist in the ollama # volume and MUST survive a slow/unreachable ollama registry — a manifest # re-check failure there must never down a fully-cached deployment (it # used to: a degraded registry made `ollama pull` fail under set -e, which # blocked the orchestrator's service_completed_successfully gate). Success # is gated on the models being PRESENT (verify step), not on the pull. # Note: $$ escapes $ for docker-compose variable substitution. echo "=== Pulling embedding model (qwen3-embedding:0.6b) — best-effort ===" curl -sN http://ollama:11434/api/pull -d '{"name":"qwen3-embedding:0.6b"}' | while read -r line; do status=$$(echo "$$line" | grep -o '"status":"[^"]*"' | cut -d'"' -f4) [ -n "$$status" ] && echo " $$status" done || echo " (pull failed — relying on the cached model)" echo "=== Pulling LLM model (glm-5.2:cloud) — best-effort ===" curl -sN http://ollama:11434/api/pull -d '{"name":"glm-5.2:cloud"}' | while read -r line; do status=$$(echo "$$line" | grep -o '"status":"[^"]*"' | cut -d'"' -f4) [ -n "$$status" ] && echo " $$status" done || echo " (pull failed — relying on the cached model)" echo "=== Verifying models are present (the real success gate) ===" curl -sf http://ollama:11434/api/tags | grep -q "qwen3-embedding" || { echo "FATAL: qwen3-embedding missing and could not be pulled"; exit 1; } curl -sf http://ollama:11434/api/tags | grep -q "glm-5.2" || { echo "FATAL: glm-5.2 missing and could not be pulled"; exit 1; } echo "=== All models ready! ===" # ========================================================================== # Video Renderer - sidecar for the video-generation engine (renders # motion/ compositions to MP4 with HyperFrames). Mirrors the ollama sidecar # pattern: a plain HTTP service the orchestrator talks to, nothing more. # Harmless when idle — it only renders when POSTed; the video_engine_* # feature flags gate whether the orchestrator ever sends it work. No DB # access, no git, no credentials — it only ever reads what it's POSTed. # ========================================================================== video-renderer: build: context: . dockerfile: docker/video-renderer.Dockerfile image: roboco-video-renderer container_name: roboco-video-renderer restart: unless-stopped # Isolated sidecar network: headless Chrome here executes # agent-authored composition HTML/JS. Only the orchestrator (also # homed on `render`) can reach it; it can reach nothing else. networks: - render # Chrome headless rendering can crash under Docker's default 64MB # /dev/shm ("Chrome crashed"); give it real shared memory. shm_size: "1gb" mem_limit: "2g" cpus: 2 healthcheck: test: ["CMD", "node", "-e", "fetch('http://127.0.0.1:3001/health').then((r) => process.exit(r.ok ? 0 : 1)).catch(() => process.exit(1))"] interval: 10s timeout: 5s retries: 5 start_period: 10s # ========================================================================== # Agent Base Image Builder (specialized images built on-demand by orchestrator) # ========================================================================== agent-base-image: build: context: . dockerfile: docker/agent-base.Dockerfile image: roboco-agent-base container_name: roboco-agent-base-builder entrypoint: ["/bin/sh", "-c", "echo 'Agent base image built successfully'"] restart: "no" # ========================================================================== # Agent PM Image Builder (specialized image built on-demand by orchestrator) # ========================================================================== agent-pm-image: build: context: . dockerfile: docker/agent-pm.Dockerfile image: roboco-agent-pm entrypoint: ["/bin/sh", "-c", "echo 'Agent PM image built'"] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent Backend Dev Image Builder (specialized image built on-demand by orchestrator) # ========================================================================== agent-dev-be-image: build: context: . dockerfile: docker/agent-dev-be.Dockerfile image: roboco-agent-dev-be entrypoint: ["/bin/sh", "-c", "echo 'Agent Backend Dev image built'"] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent Frontend Dev Image Builder (specialized image built on-demand by orchestrator) # ========================================================================== agent-dev-fe-image: build: context: . dockerfile: docker/agent-dev-fe.Dockerfile image: roboco-agent-dev-fe entrypoint: ["/bin/sh", "-c", "echo 'Agent Frontend Dev image built'"] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent Backend QA Image Builder (specialized image built on-demand by orchestrator) # ========================================================================== agent-qa-be-image: build: context: . dockerfile: docker/agent-qa-be.Dockerfile image: roboco-agent-qa-be entrypoint: ["/bin/sh", "-c", 'echo "Agent Backend QA image built"'] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent Frontend QA Image Builder (specialized image built on-demand by orchestrator) # ========================================================================== agent-qa-fe-image: build: context: . dockerfile: docker/agent-qa-fe.Dockerfile image: roboco-agent-qa-fe entrypoint: ["/bin/sh", "-c", 'echo "Agent Frontend QA image built"'] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent UX/UI Dev Image Builder (specialized image built on-demand by orchestrator) # ========================================================================== agent-ux-image: build: context: . dockerfile: docker/agent-ux.Dockerfile image: roboco-agent-ux entrypoint: ["/bin/sh", "-c", 'echo "Agent UX/UI image built"'] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent Documenter Image Builder (specialized image built on-demand by orchestrator) # ========================================================================== agent-doc-image: build: context: . dockerfile: docker/agent-doc.Dockerfile image: roboco-agent-doc entrypoint: ["/bin/sh", "-c", 'echo "Agent Documenter image built"'] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent Intake (Prompter) Image Builder (persistent Agent-SDK driver the CEO # chats with; not a one-shot `claude -p`) # ========================================================================== agent-prompter-image: build: context: . dockerfile: docker/agent-prompter.Dockerfile image: roboco-agent-prompter entrypoint: ["/bin/sh", "-c", 'echo "Agent Intake image built"'] restart: "no" depends_on: - agent-base-image agent-secretary-image: build: context: . dockerfile: docker/agent-secretary.Dockerfile image: roboco-agent-secretary entrypoint: ["/bin/sh", "-c", 'echo "Agent Secretary image built"'] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent PR Reviewer Image Builder (read-only reviewer of inbound external PRs) # ========================================================================== agent-pr-reviewer-image: build: context: . dockerfile: docker/agent-pr-reviewer.Dockerfile image: roboco-agent-pr-reviewer entrypoint: ["/bin/sh", "-c", 'echo "Agent PR Reviewer image built"'] restart: "no" depends_on: - agent-base-image # ========================================================================== # Agent Grok Image Builder (xAI Grok Build via the official grok CLI) # ========================================================================== agent-grok-image: build: context: . dockerfile: docker/agent-grok.Dockerfile image: roboco-agent-grok entrypoint: ["/bin/sh", "-c", 'echo "Agent Grok image built"'] restart: "no" depends_on: - agent-base-image # Interactive Grok roles (intake/secretary) — panel-driven grok-CLI sessions; # built FROM roboco-agent-grok, so they depend on the Grok runtime image. agent-grok-prompter-image: build: context: . dockerfile: docker/agent-grok-prompter.Dockerfile image: roboco-agent-grok-prompter entrypoint: ["/bin/sh", "-c", 'echo "Agent Grok Prompter image built"'] restart: "no" depends_on: - agent-grok-image agent-grok-secretary-image: build: context: . dockerfile: docker/agent-grok-secretary.Dockerfile image: roboco-agent-grok-secretary entrypoint: ["/bin/sh", "-c", 'echo "Agent Grok Secretary image built"'] restart: "no" depends_on: - agent-grok-image # ========================================================================== # Orchestrator - API Server + Agent Spawner # ========================================================================== orchestrator: build: context: . dockerfile: docker/orchestrator.Dockerfile image: roboco-orchestrator container_name: roboco-orchestrator restart: unless-stopped # Multi-homed: the agent mesh (default) for spawned agents / panel / # ollama, the data network for postgres/redis, plus render to reach the # isolated video-renderer sidecar. networks: - default - data - render ports: - "8000:8000" environment: # Database (use container name, not localhost) ROBOCO_DATABASE_HOST: roboco-postgres ROBOCO_DATABASE_PORT: 5432 ROBOCO_DATABASE_USER: roboco ROBOCO_DATABASE_PASSWORD: roboco ROBOCO_DATABASE_NAME: roboco # Redis (use container name) ROBOCO_REDIS_HOST: roboco-redis ROBOCO_REDIS_PORT: 6379 # API ROBOCO_HOST: 0.0.0.0 ROBOCO_PORT: 8000 ROBOCO_ENCRYPTION_KEY: ${ROBOCO_ENCRYPTION_KEY:?ROBOCO_ENCRYPTION_KEY is required} # HMAC secret for agent auth tokens. Orchestrator signs tokens # per-agent at spawn; API middleware verifies them. Generate with: # python -c 'import secrets; print(secrets.token_hex(32))' ROBOCO_AGENT_AUTH_SECRET: ${ROBOCO_AGENT_AUTH_SECRET:?ROBOCO_AGENT_AUTH_SECRET is required} # Set to "true" to require tokens on every API call (fail-closed). # Leave unset/false during rollout so the panel + curl still work. ROBOCO_AGENT_AUTH_REQUIRED: ${ROBOCO_AGENT_AUTH_REQUIRED:-false} # Ollama (use container name) ROBOCO_LOCAL_LLM_BASE_URL: http://roboco-ollama:11434/v1 ROBOCO_LOCAL_LLM_MODEL: glm-5.2:cloud ROBOCO_DEFAULT_EMBEDDING_MODEL: qwen3-embedding:0.6b ROBOCO_OLLAMA_BASE_URL: http://roboco-ollama:11434 # Video renderer sidecar (use container name). The video engine # itself is default-off (video_engine_enabled); this just points the # client at the sidecar for when it's armed. ROBOCO_VIDEO_RENDERER_BASE_URL: http://roboco-video-renderer:3001 # MinIO object storage for rendered videos (use container name). Empty # endpoint = disabled (FileResponse fallback); armed here for the NAS # deploy, left OFF in docker-compose.registry.yml. ROBOCO_MINIO_ENDPOINT: http://roboco-minio:9000 ROBOCO_MINIO_ACCESS_KEY: ${ROBOCO_MINIO_ACCESS_KEY:-minio} ROBOCO_MINIO_SECRET_KEY: ${ROBOCO_MINIO_SECRET_KEY:-minio123} ROBOCO_MINIO_BUCKET: ${ROBOCO_MINIO_BUCKET:-roboco-video-renders} ROBOCO_MINIO_REGION: ${ROBOCO_MINIO_REGION:-us-east-1} # Host paths for spawning agent containers (required for Docker-in-Docker) # IMPORTANT: These must be ABSOLUTE paths on the host filesystem ROBOCO_HOST_PROJECT_DIR: ${ROBOCO_HOST_PROJECT_DIR:-/volume1/roboco} ROBOCO_HOST_CLAUDE_DIR: ${ROBOCO_HOST_CLAUDE_DIR:-/home/renzof/.claude} # SuperGrok auth (host ~/.grok) for Grok-CLI agents — the orchestrator # mounts /auth.json into each Grok agent. Run `grok login` on the host. ROBOCO_HOST_GROK_DIR: ${ROBOCO_HOST_GROK_DIR:-/home/renzof/.grok} ROBOCO_HOST_DATA_DIR: ${ROBOCO_HOST_DATA_DIR:-/volume1/roboco/data} # Public base URL for commit-trailer links. Default 127.0.0.1 produces # unusable links in commit message bodies; set to NAS LAN IP so # f"{api_base}/tasks/{task_id}" renders a reachable URL. ROBOCO_PUBLIC_BASE_URL: "http://192.168.50.111:8000" # Production environment selects structlog's JSONRenderer (machine- # parseable logs) over the dev ConsoleRenderer. ROBOCO_ENVIRONMENT: production # Reaper timeouts raised to 30 min so a long agent task isn't reaped # mid-work. ROBOCO_CLAIM_STALE_SECONDS is the heartbeat-staleness window # _reap_stale_claims uses (the one that was killing in-progress work). ROBOCO_CLAIM_STALE_SECONDS: "1800" ROBOCO_STALE_CLAIM_REAP_SECONDS: "1800" # External-PR review. When on, the org discovers inbound external/fork PRs # and the PR reviewer posts one change-request — READ-ONLY (it never runs # contributor code). The supersede that fetches + builds their code is # separately CEO-triggered and stays gated by require_human_confirm. # Override either via .env. (Config default is off; this enables it here.) ROBOCO_EXTERNAL_PR_ENABLED: ${ROBOCO_EXTERNAL_PR_ENABLED:-true} ROBOCO_EXTERNAL_PR_REQUIRE_HUMAN_CONFIRM: ${ROBOCO_EXTERNAL_PR_REQUIRE_HUMAN_CONFIRM:-true} # ROBOCO_EXTERNAL_PR_POLL_INTERVAL_SECONDS: "300" # ROBOCO_EXTERNAL_PR_AUTHOR_ALLOWLIST: '["corey"]' # empty = every external PR # Production self-healing ("engine 4"). RoboCo watches its OWN repo CI and, # when red, notifies the CEO and (with originate on) opens a PENDING fix # task that STOPS for the CEO's Approve-&-Start — it never self-deploys. # Both toggles default OFF (arm from Settings -> Feature Flags). Set # PROJECT_SLUG to the registered project that IS RoboCo; CI_WORKFLOW scopes # the signal to the real CI workflow (RoboCo has several workflows, so the # unscoped "latest run" would be unreliable). ROBOCO_SELF_HEAL_ENABLED: ${ROBOCO_SELF_HEAL_ENABLED:-true} ROBOCO_SELF_HEAL_ORIGINATE_ENABLED: ${ROBOCO_SELF_HEAL_ORIGINATE_ENABLED:-true} ROBOCO_SELF_HEAL_PROJECT_SLUG: ${ROBOCO_SELF_HEAL_PROJECT_SLUG:-roboco-api} ROBOCO_SELF_HEAL_CI_WORKFLOW: ${ROBOCO_SELF_HEAL_CI_WORKFLOW:-ci.yml} # Agent runtime toolchain matching: provision each agent workspace with # the TARGET project's Python (uv resolves requires-python) and block a # delivery gate when the suite can't be executed instead of passing on a # source read. Config default is OFF; enabled HERE (personal deploy) but # deliberately left OFF in docker-compose.registry.yml so the published # default stays conservative until it's verified on a live run. ROBOCO_TOOLCHAIN_MATCH_ENABLED: ${ROBOCO_TOOLCHAIN_MATCH_ENABLED:-true} # Architectural conventions standard: gate where code lives (placement, # hygiene, modularity) via each project's .roboco/conventions.yml. Config # default is OFF; enabled HERE (personal deploy), deliberately left OFF in # docker-compose.registry.yml so the published default stays conservative. ROBOCO_CONVENTIONS_ENABLED: ${ROBOCO_CONVENTIONS_ENABLED:-true} # Autonomy engines shipped in 0.12.0 / 0.13.0 — all default-OFF in config; # ARMED here for the NAS deploy (our live test bed). Each is bounded + # CEO-gated by construction and overridable via .env. Left OFF in # docker-compose.registry.yml so the published default stays conservative. # - CI-watch: opens a fix task when a watched project's default-branch CI # goes red — only for projects with the per-project ci_watch_enabled # column set; never auto-merges (rides the PR-review gate). # - Dep-update bot: weekly lockfile-diff probe -> "update dependencies" # task — only for projects with a dep_update_command set; never merges. # - Release manager: deterministic readiness sweep -> ONE release proposal # HELD for the CEO; the executor publishes only on CEO approval + green # CI (reuses SELF_HEAL_PROJECT_SLUG as the RoboCo repo). # - Org-memory loop: distils a completion lesson + auto-injects relevant # past lessons/playbooks into each claim's briefing (local model only). # - X engine: drafts release-announcement + mention-reply posts, ALL # held for per-post CEO approval in the panel; inert without stored # X credentials (Settings -> the X card) regardless of this flag. ROBOCO_CI_WATCH_ENABLED: ${ROBOCO_CI_WATCH_ENABLED:-true} ROBOCO_DEP_UPDATE_ENABLED: ${ROBOCO_DEP_UPDATE_ENABLED:-true} ROBOCO_DOCS_SYNC_ENABLED: ${ROBOCO_DOCS_SYNC_ENABLED:-true} ROBOCO_RELEASE_MANAGER_ENABLED: ${ROBOCO_RELEASE_MANAGER_ENABLED:-true} ROBOCO_ORG_MEMORY_ENABLED: ${ROBOCO_ORG_MEMORY_ENABLED:-true} ROBOCO_X_ENGINE_ENABLED: ${ROBOCO_X_ENGINE_ENABLED:-true} # - Board roadmap engine: weekly, opens ONE held exploration task for # the Product Owner, who proposes a themed cycle of roadmap items; # the CEO approves each item individually into the backlog. ROBOCO_ROADMAP_ENGINE_ENABLED: ${ROBOCO_ROADMAP_ENGINE_ENABLED:-true} # Video-generation engine: a UX/UI dev authors a bespoke HyperFrames video # per release/spotlight/on-demand trigger through the normal delivery # lifecycle; the render loop above renders it via the video-renderer # sidecar and holds the clip as a CEO-approval draft — nothing # auto-posts. Config default is OFF; ARMED here for the NAS deploy like # the rest. Left OFF in docker-compose.registry.yml so the published # default stays conservative until verified on a live run. ROBOCO_VIDEO_ENGINE_ENABLED: ${ROBOCO_VIDEO_ENGINE_ENABLED:-true} ROBOCO_VIDEO_ON_RELEASE: ${ROBOCO_VIDEO_ON_RELEASE:-true} ROBOCO_VIDEO_ON_SPOTLIGHT: ${ROBOCO_VIDEO_ON_SPOTLIGHT:-true} # Fable-mode: composes the Fable behavioral doctrine into every agent's # system prompt + installs turn-discipline/honesty/verification hooks # at spawn (both runtimes). Config default is OFF; ARMED here for the # NAS deploy (our live test bed) like the rest. Left OFF in # docker-compose.registry.yml so the published default stays # conservative until verified on a live run. ROBOCO_FABLE_MODE_ENABLED: ${ROBOCO_FABLE_MODE_ENABLED:-true} # Sandboxed per-agent test DB/Redis: orchestrator-provisioned throwaway # sibling containers per spawn, replacing the prod-creds gate-env # injection for an opted-in project (its `sandbox_services` column set). # Config default is OFF; enabled HERE (personal deploy), deliberately # left OFF in docker-compose.registry.yml so the published default # stays conservative until verified on a live run. ROBOCO_SANDBOX_DB_ENABLED: ${ROBOCO_SANDBOX_DB_ENABLED:-true} # DB network isolation is LIVE in this file (postgres/redis on the # data-only network): suppress the legacy prod-creds gate-env # injection — agents can't reach roboco-postgres anyway, and handing # out creds that dead-end in a connect timeout is worse than none. # This flag must always travel with the networks: topology above. ROBOCO_DB_NETWORK_ISOLATED: ${ROBOCO_DB_NETWORK_ISOLATED:-true} # Strategy engine (proactive strategy signals) + internal PR review — both # default-OFF in config; ARMED here for the NAS deploy like the rest. Left # OFF in docker-compose.registry.yml so the published default stays conservative. ROBOCO_STRATEGY_ENGINE_ENABLED: ${ROBOCO_STRATEGY_ENGINE_ENABLED:-true} ROBOCO_INTERNAL_PR_ENABLED: ${ROBOCO_INTERNAL_PR_ENABLED:-true} # Remaining default-OFF capabilities, ARMED here (personal deploy): web # research (inert without ROBOCO_RESEARCH_API_KEY → empty results), pitch # auto-provisioning (inert until a pitch is approved + a git token is set), # and transcript pruning (retention maintenance). All left OFF in the # registry compose. Override any via .env. ROBOCO_RESEARCH_ENABLED: ${ROBOCO_RESEARCH_ENABLED:-true} ROBOCO_PROVISIONING_ENABLED: ${ROBOCO_PROVISIONING_ENABLED:-true} ROBOCO_TRANSCRIPT_PRUNE_ENABLED: ${ROBOCO_TRANSCRIPT_PRUNE_ENABLED:-true} # Two knobs that also default ON here (like every feature), but change # FAILURE / AUTH behavior — the .env must be set up for each before a real # boot, which the operator owns: # - CLOUD_AUTH: exposes the panel behind a login. Set # ROBOCO_CLOUD_AUTH_EMAIL / _PASSWORD / _SECRET in .env (startup fails # loud without the secret) and terminate TLS (the session cookie is # secure-only); leave ROBOCO_PANEL_AGENT_TOKEN unset (it bypasses # login). To test-deploy before the creds exist, set # ROBOCO_CLOUD_AUTH_ENABLED=false in .env for that run. # - ROUTING_STRICT: fail-closed model routing — a spawn whose provider is # disabled RAISES instead of degrading. Audit model_assignments first # (a stale row pointing at a disabled provider would crash that spawn). ROBOCO_CLOUD_AUTH_ENABLED: ${ROBOCO_CLOUD_AUTH_ENABLED:-true} ROBOCO_ROUTING_STRICT: ${ROBOCO_ROUTING_STRICT:-true} # Spawn preflight (token-opt Phase 3) — refuse a non-gateway delivery role # that would respawn forever. Default-OFF in config; ARMED here (inert in # practice: every real delivery role is gateway-enabled). OFF in registry. ROBOCO_SPAWN_PREFLIGHT_ENABLED: ${ROBOCO_SPAWN_PREFLIGHT_ENABLED:-true} # fastapi-guard HTTP security layer (v0.16.0). ARMED here in PASSIVE / # log-only calibration mode: guard mounts + observes + logs what it WOULD # block, but blocks nothing until PASSIVE_MODE is flipped off after the # false-positive review. FAIL_SECURE=false so a guard-internal error never # 500s this personal deploy. Left OFF entirely in the registry compose. # enforce_https follows ROBOCO_ENVIRONMENT (dev on the NAS → not enforced). ROBOCO_GUARD_ENABLED: ${ROBOCO_GUARD_ENABLED:-true} ROBOCO_GUARD_PASSIVE_MODE: ${ROBOCO_GUARD_PASSIVE_MODE:-true} ROBOCO_GUARD_FAIL_SECURE: ${ROBOCO_GUARD_FAIL_SECURE:-false} volumes: # Docker socket - allows spawning agent containers - /var/run/docker.sock:/var/run/docker.sock # Claude Code auth - mount your ~/.claude directory - ${CLAUDE_AUTH_DIR:-/home/renzof/.claude}:/root/.claude # SuperGrok auth — mount the host ~/.grok at the SAME host path the # orchestrator passes to each Grok agent's `-v`, so its auth.json exists() # check passes here AND the agent bind resolves on the host. One canonical # var for source AND target (they must be equal in docker-in-docker). # Read-WRITE: the orchestrator auto-refreshes the ~6h token in place # (grok_auth.refresh_if_stale) so agents never mount a dead credential; # each agent's own auth.json mount stays read-only. - ${ROBOCO_HOST_GROK_DIR:-/home/renzof/.grok}:${ROBOCO_HOST_GROK_DIR:-/home/renzof/.grok} # Shared config directory for MCP configs (writable) - ${ROBOCO_DATA_DIR:-./data}/mcp-configs:/app/mcp-configs # Generated prompts directory - composed at runtime from layers - ${ROBOCO_DATA_DIR:-./data}/prompts-generated:/app/prompts-generated # Per-agent Claude settings (generated at spawn time) - ${ROBOCO_DATA_DIR:-./data}/agent-settings:/app/agent-settings # Agent workspaces (git clones) - persisted across restarts - ${ROBOCO_DATA_DIR:-./data}/workspaces:/data/workspaces # Per-agent GROK usage capture: each Grok agent writes usage.json under # /; the finalizer reads the captured tokens/cost back here. - ${ROBOCO_DATA_DIR:-./data}/grok-usage:/data/grok-usage # Persistent logs — survive `docker compose down/up`. Orchestrator and # each spawned agent write structured logs here so we can audit past # runs instead of relying on ephemeral `docker logs`. - ${ROBOCO_DATA_DIR:-./data}/logs:/data/logs # Rendered MP4s from the video engine — persisted so renders survive # container recreation (default ROBOCO_VIDEO_OUTPUT_DIR=/data/video-renders). - ${ROBOCO_DATA_DIR:-./data}/video-renders:/data/video-renders # Per-agent SessionStart briefings (pre-rendered task context) - ${ROBOCO_DATA_DIR:-./data}/briefings:/app/briefings # Per-agent spawn manifests (role-scoped tool list) — written by the # orchestrator to /app/manifests, bind-mounted into each agent container # as /app/tool-manifest.json. Without this mount the file is written to # the orchestrator's ephemeral fs, never reaches the host, and agents # fall back to all-verbs registration. - ${ROBOCO_DATA_DIR:-./data}/manifests:/app/manifests depends_on: postgres: condition: service_healthy redis: condition: service_healthy ollama: condition: service_healthy ollama-init: condition: service_completed_successfully agent-base-image: condition: service_completed_successfully # Default agents to spawn (override in .env or command line) # command: ["--spawn", "main-pm", "be-dev-1", "be-qa"] # ========================================================================== # Next.js Control Panel (Frontend) # ========================================================================== # Not exposed directly - nginx is the single entry point (port 3000). # API/WS traffic is proxied to the orchestrator, everything else to panel. panel: build: context: . dockerfile: docker/panel.Dockerfile image: roboco-panel container_name: roboco-panel restart: unless-stopped expose: - "3000" depends_on: - orchestrator # ========================================================================== # Nginx - Reverse proxy fronting panel + orchestrator # ========================================================================== # Single entry point on port 3000 so the browser hits one origin and we # don't need CORS. /api/* and /ws/* go to the orchestrator, everything # else goes to the Next.js panel. nginx: image: nginx:alpine container_name: roboco-nginx restart: unless-stopped ports: - "3000:80" environment: # Rendered into the proxy config by the nginx image's envsubst # entrypoint so the human panel authenticates in secure mode. The # filter limits substitution to ROBOCO_* vars, leaving nginx's own # $host / $remote_addr runtime variables untouched. Get the value # with `make panel-token`. ROBOCO_PANEL_AGENT_TOKEN: ${ROBOCO_PANEL_AGENT_TOKEN:-} NGINX_ENVSUBST_FILTER: "^ROBOCO_" volumes: - ./docker/nginx.conf:/etc/nginx/templates/default.conf.template:ro depends_on: - panel - orchestrator networks: default: name: roboco_default # DB isolation: postgres/redis live ONLY here; the orchestrator is the # only service homed on both. Spawned agent containers + sandbox sidecars # join roboco_default (AGENT_NETWORK) and cannot resolve or reach the # production DB/Redis. Normal bridge (not internal) so host-published # ports keep working. data: name: roboco_data # Sidecar isolation: video-renderer executes agent-authored composition # HTML/JS in headless Chrome. It lives ONLY here, reachable only by the # orchestrator (multi-homed onto this network too); it can reach nothing # else on roboco_default or roboco_data. render: name: roboco_render volumes: # Named volume for MinIO — keeps rendered-video storage out of the # ${ROBOCO_DATA_DIR} bind-mount sprawl; docker-managed durable store. minio-data: