name: drivervault # Production DriverVault stack, with SeaweedFS split into its four roles — # pulls prebuilt images from the registry instead of building from source. # Self-contained: one file, no overlays. Everything an operator needs to set # lives in .env. # # 1. cp .env.prod.seaweedfs.split.example .env (then edit it) # 2. docker compose -f docker-compose.prod.seaweedfs.split.yml pull # 3. docker compose -f docker-compose.prod.seaweedfs.split.yml up -d # # This is docker-compose.prod.seaweedfs.yml with the storage layer taken apart. # `weed server -s3` runs master, volume, filer and gateway as goroutines in one # process; here each is its own container, plus the SeaweedFS admin UI. What # that buys: # # • the admin UI (weed admin) — a cluster view, and Object Store → Users, # where S3 identities are created and revoked without touching a file; # • per-role restart, upgrade and Prometheus metrics; # • room to add a second volume server later, on this host or another. # # What it costs: five containers instead of one, five healthchecks to keep the # boot order honest, and one more port worth binding carefully. If none of the # above is wanted, use docker-compose.prod.seaweedfs.yml — the S3 behaviour is # identical. # # The on-disk layout is deliberately the same as the single-process file's: # master, volume and filer share one /data mount, exactly as `weed server -dir` # lays it out (master raft state, volume .dat/.idx, the filer's filerldb2/ — no # filename overlap). So the two files are interchangeable on the same SEAWEED_DATA, # with no migration either way. A *second* volume server would need its own. # # Only the S3 gateway and the admin UI publish a host port. Master, volume and # filer are reachable over the compose network, through the admin UI, or with # `docker compose exec` — the volume server in particular serves file content by # id with no authentication at all, so it has no business on a public interface. # # Before turning this on for a stack that already has uploads: PocketBase does # NOT copy existing files into the bucket. See README.md. # # Traffic flow (browser): Web App BFF --/api--> API Server --> PocketBase. # # On first boot: # • PocketBase upserts the superuser from PB_ADMIN_* (create-if-missing). # • the API Server creates any missing collections, reconciles existing ones, # and creates the DriverVault super-admin from DRIVERVAULT_SUPERADMIN_*. # Both steps are idempotent, so restarts and upgrades are safe. services: # --- SeaweedFS: master ----------------------------------------------------- # Keeps the volume/topology metadata and hands out file ids. -ip is the name # the other roles are told to reach it by, so it must be the service name and # not the container IP the process would otherwise detect. seaweedfs-master: image: "${SEAWEED_IMAGE:-chrislusf/seaweedfs:4.45}" container_name: drivervault-seaweedfs-master restart: unless-stopped command: > master -ip=seaweedfs-master -ip.bind=0.0.0.0 -mdir=/data -volumeSizeLimitMB=1024 -metricsPort=9324 volumes: # Named volume by default; set SEAWEED_DATA to a host path in .env for a # bind mount, exactly as PB_DATA works. Back it up alongside PB_DATA — # from here on the attachments live here, not in the database volume. - "${SEAWEED_DATA:-seaweed_data}:/data" # No published port: the master UI is one of the pages the admin UI serves. healthcheck: test: ["CMD-SHELL", "wget -qO- http://127.0.0.1:9333/cluster/status || exit 1"] interval: 10s timeout: 3s retries: 12 start_period: 15s # --- SeaweedFS: volume server --------------------------------------------- # Where the bytes actually land. -max=0 lets it size itself from free disk # rather than the default cap of 8 volumes. seaweedfs-volume: image: "${SEAWEED_IMAGE:-chrislusf/seaweedfs:4.45}" container_name: drivervault-seaweedfs-volume restart: unless-stopped command: > volume -master=seaweedfs-master:9333 -ip=seaweedfs-volume -ip.bind=0.0.0.0 -port=8080 -dir=/data -max=0 -metricsPort=9325 depends_on: seaweedfs-master: condition: service_healthy volumes: - "${SEAWEED_DATA:-seaweed_data}:/data" # No published port, and this one is not an oversight: 8080 serves file # content by file id with NO authentication — the S3 credentials do not # apply to it. Publishing it would publish every attachment in the stack. healthcheck: test: ["CMD-SHELL", "wget -qO- http://127.0.0.1:8080/healthz || exit 1"] interval: 10s timeout: 3s retries: 12 start_period: 15s # --- SeaweedFS: filer ------------------------------------------------------ # Gives the flat volume store a directory tree — buckets, object keys — and # holds the S3 identities the admin UI writes. -defaultStoreDir is where its # embedded leveldb goes; without it that would be the container's working # directory, and the identities would not survive a recreate. seaweedfs-filer: image: "${SEAWEED_IMAGE:-chrislusf/seaweedfs:4.45}" container_name: drivervault-seaweedfs-filer restart: unless-stopped command: > filer -master=seaweedfs-master:9333 -ip=seaweedfs-filer -ip.bind=0.0.0.0 -port=8888 -defaultStoreDir=/data -metricsPort=9326 depends_on: seaweedfs-volume: condition: service_healthy volumes: - "${SEAWEED_DATA:-seaweed_data}:/data" # No published port. The filer's gRPC side (8888 + 10000) carries the IAM # service that mints S3 credentials; keep both ends of it on the compose # network. healthcheck: test: ["CMD-SHELL", "wget -qO- http://127.0.0.1:8888/healthz || exit 1"] interval: 10s timeout: 3s retries: 12 start_period: 15s # --- SeaweedFS: bucket and identity seed ---------------------------------- # Runs once and exits, before the gateway starts. Two jobs: # # 1. create the bucket — PocketBase never issues a CreateBucket of its own; # 2. write PocketBase's S3 identity into the filer's IAM store. # # (2) is why this stack does not set AWS_ACCESS_KEY_ID on the gateway, the way # docker-compose.prod.seaweedfs.yml does. Those env vars are the *lowest* # priority credential source in SeaweedFS: they are read only while the filer's # store is empty, so the first identity added in the admin UI would silently # displace them and lock PocketBase out. Seeding the store the admin UI itself # writes leaves one source of truth, and the key PocketBase uses appears under # Object Store → Users like any other. # # Both commands update in place, so every later boot re-applies the values from # .env and changes nothing else — which is also how a rotated PB_S3_SECRET # reaches the gateway. # # The closing grep is the gate: an empty IAM store means the gateway would come # up in its allow-anyone default, so this fails loudly instead and the gateway # below never starts. No `|| true` here, deliberately. seaweedfs-init: image: "${SEAWEED_IMAGE:-chrislusf/seaweedfs:4.45}" container_name: drivervault-seaweedfs-init restart: "no" depends_on: seaweedfs-filer: condition: service_healthy environment: # Passed as env and expanded by the shell inside the container, so the # secret stays out of the container's argv. PB_S3_BUCKET: "${PB_S3_BUCKET:-drivervault}" PB_S3_ACCESS_KEY: "${PB_S3_ACCESS_KEY:?set PB_S3_ACCESS_KEY in .env}" PB_S3_SECRET: "${PB_S3_SECRET:?set PB_S3_SECRET in .env}" entrypoint: ["/bin/sh", "-c"] command: - | set -e printf '%s\n' \ "s3.bucket.create -name $$PB_S3_BUCKET" \ "s3.configure -user drivervault -access_key $$PB_S3_ACCESS_KEY -secret_key $$PB_S3_SECRET -actions Admin -apply" \ | weed shell -master=seaweedfs-master:9333 -filer=seaweedfs-filer:8888 echo "s3.configure" \ | weed shell -master=seaweedfs-master:9333 -filer=seaweedfs-filer:8888 \ | grep -q "$$PB_S3_ACCESS_KEY" # --- SeaweedFS: S3 gateway ------------------------------------------------- # The endpoint PocketBase talks to. No -config file: with only -filer given, # credentials come from the filer's IAM store, which is what lets the admin UI # add and revoke identities without a restart. A config file would take # priority over that store and make the admin UI's users inert. seaweedfs-s3: image: "${SEAWEED_IMAGE:-chrislusf/seaweedfs:4.45}" container_name: drivervault-seaweedfs-s3 restart: unless-stopped command: > s3 -filer=seaweedfs-filer:8888 -ip.bind=0.0.0.0 -port=8333 -metricsPort=9327 depends_on: seaweedfs-filer: condition: service_healthy # Never serve before an identity exists — see seaweedfs-init above. seaweedfs-init: condition: service_completed_successfully ports: # Loopback only: the stack reaches the gateway over the compose network, # so this is here for `aws s3 ls --endpoint-url http://127.0.0.1:8333` and # nothing else. Set SEAWEED_S3_BIND=0.0.0.0 to expose it, and mean it. - "${SEAWEED_S3_BIND:-127.0.0.1}:${SEAWEED_S3_PORT:-8333}:8333" healthcheck: test: ["CMD-SHELL", "wget -qO- http://127.0.0.1:8333/healthz || exit 1"] interval: 10s timeout: 3s retries: 12 start_period: 15s # --- SeaweedFS: admin UI --------------------------------------------------- # Cluster topology, volumes, buckets, maintenance tasks, and Object Store → # Users, where S3 access keys are minted and revoked. It finds the filer # through the master, so -master is all it needs. # # Bound to loopback by default, like the PocketBase and API panels: on a remote # host that means unreachable, so set SEAWEED_ADMIN_BIND=0.0.0.0 the same way # PB_BIND and API_BIND get set — and put it behind the same reverse proxy. # # An unauthenticated panel that can mint credentials for the bucket *is* the # bucket, so the password is required rather than defaulted — weed leaves auth # off entirely when it is empty. It is read from WEED_ADMIN_* rather than a # flag, which keeps it off the process command line. -dataDir persists the # session key and the maintenance-task settings. seaweedfs-admin: image: "${SEAWEED_IMAGE:-chrislusf/seaweedfs:4.45}" container_name: drivervault-seaweedfs-admin restart: unless-stopped command: > admin -port=23646 -master=seaweedfs-master:9333 -dataDir=/data -metricsPort=9328 depends_on: seaweedfs-master: condition: service_healthy environment: WEED_ADMIN_USER: "${SEAWEED_ADMIN_USER:-admin}" WEED_ADMIN_PASSWORD: "${SEAWEED_ADMIN_PASSWORD:?set SEAWEED_ADMIN_PASSWORD in .env}" # Optional view-only login. weed ignores it unless the admin password # above is set, which it is. WEED_ADMIN_READONLY_USER: "${SEAWEED_ADMIN_READONLY_USER:-}" WEED_ADMIN_READONLY_PASSWORD: "${SEAWEED_ADMIN_READONLY_PASSWORD:-}" volumes: # Its own small volume: session key and maintenance state, no object data. - "${SEAWEED_ADMIN_DATA:-seaweed_admin}:/data" ports: - "${SEAWEED_ADMIN_BIND:-127.0.0.1}:${SEAWEED_ADMIN_PORT:-23646}:23646" healthcheck: test: ["CMD-SHELL", "wget -qO- http://127.0.0.1:23646/health || exit 1"] interval: 10s timeout: 3s retries: 12 start_period: 15s pocketbase: image: "${PB_IMAGE:-10.2.1.10:5500/admin/drivervault-pocketbase:latest}" container_name: drivervault-pocketbase restart: unless-stopped depends_on: # PocketBase is the process that reads and writes the objects, so the # gateway has to be serving before it is asked to store anything. seaweedfs-s3: condition: service_healthy environment: # The superuser is created/updated on boot (the API Server authenticates # with it). This is the only place the first superuser can be created — the # REST API cannot bootstrap it. PB_ADMIN_EMAIL: "${PB_ADMIN_EMAIL:?set PB_ADMIN_EMAIL in .env}" PB_ADMIN_PASSWORD: "${PB_ADMIN_PASSWORD:?set PB_ADMIN_PASSWORD in .env}" volumes: # Named volume by default; set PB_DATA to a host path in .env for a bind mount. - "${PB_DATA:-pb_data}:/pb/pb_data" ports: # Bound to localhost by default — the admin UI (/_/) is reachable only on # the host. Set PB_BIND=0.0.0.0 in .env to expose it on the network. - "${PB_BIND:-127.0.0.1}:${PB_PORT:-8070}:8070" healthcheck: test: ["CMD-SHELL", "wget -qO- http://127.0.0.1:8070/api/health || exit 1"] interval: 10s timeout: 3s retries: 12 start_period: 10s api-server: image: "${API_IMAGE:-10.2.1.10:5500/admin/drivervault-api-server:latest}" container_name: drivervault-api restart: unless-stopped depends_on: pocketbase: condition: service_healthy # The bucket must exist before the bootstrap points PocketBase at it. seaweedfs-init: condition: service_completed_successfully environment: API_ADDR: ":8080" # Reach PocketBase by its service name on the internal network. Override # POCKETBASE_URL in .env to point the API Server at a database outside # this stack — that is also how you make a retarget done from the panel # permanent, since the panel's change lasts only for the container's life. POCKETBASE_URL: "${POCKETBASE_URL:-http://pocketbase:8070}" POCKETBASE_ADMIN_EMAIL: "${PB_ADMIN_EMAIL}" POCKETBASE_ADMIN_PASSWORD: "${PB_ADMIN_PASSWORD}" # Probed by the panel status page. This is a server-to-server call inside # the compose network, so the default is the service name — plain # localhost:8090 would resolve to this container itself. Override # WEBAPP_URL in .env to make a change from the panel's Web App screen # permanent; the panel alone only holds it for the container's life. WEBAPP_URL: "${WEBAPP_URL:-http://web-app:8090}" CORS_ALLOW_ORIGINS: "${CORS_ALLOW_ORIGINS:-http://localhost:8090}" AUTH_USERS_COLLECTION: "${AUTH_USERS_COLLECTION:-users}" # Schema + super-admin bootstrap (idempotent). Leave this ON: a release can # add collections or fields the server needs, and a stack that skips the # bootstrap never gets them. The API Server self-heals exactly one thing — # app_settings, the collection holding the plugin settings, which it # creates on demand because it cannot serve the plugin panel without it. # Every other schema change still depends on this flag. Turn it off only # for a database you know already matches the release. PB_BOOTSTRAP: "${PB_BOOTSTRAP:-true}" DRIVERVAULT_SUPERADMIN_EMAIL: "${DRIVERVAULT_SUPERADMIN_EMAIL:-}" DRIVERVAULT_SUPERADMIN_PASSWORD: "${DRIVERVAULT_SUPERADMIN_PASSWORD:-}" DRIVERVAULT_SUPERADMIN_NAME: "${DRIVERVAULT_SUPERADMIN_NAME:-Administrator}" # OCPP charger control (Anker Solix). Chargers are rejected unless they # reach the server over TLS. Behind a TLS-terminating reverse proxy, set # OCPP_PUBLIC_URL to the public wss:// base and API_BIND so the proxy can # reach this port; only drop OCPP_REQUIRE_TLS on a trusted network. OCPP_REQUIRE_TLS: "${OCPP_REQUIRE_TLS:-true}" OCPP_PUBLIC_URL: "${OCPP_PUBLIC_URL:-}" # Diagnostic: set ANKER_MQTT_FRAME_LOG=1 in .env to log every frame the # charger publishes over Anker's broker, decoded ones and unreadable ones # alike, with their bytes. It is how a frame nobody has named gets named — # do something in the Anker app while a control read holds the connection # open, and read the frames back out of the log. Off by default: with it on # a charger under a live trigger writes a line every few seconds. ANKER_MQTT_FRAME_LOG: "${ANKER_MQTT_FRAME_LOG:-}" # --- File storage -------------------------------------------------- # Read by the API Server's bootstrap, which writes them into PocketBase's # settings on every boot, idempotently. Only record files move — scans, # receipts, invoices, part photos. The database and PocketBase's own # backups stay on PB_DATA. PB_S3_ENABLED: "true" PB_S3_BUCKET: "${PB_S3_BUCKET:-drivervault}" # The gateway's service name: a server-to-server call inside the compose # network. PB_S3_ENDPOINT: "http://seaweedfs-s3:8333" # SeaweedFS ignores the region; PocketBase insists on having one. PB_S3_REGION: "${PB_S3_REGION:-us-east-1}" PB_S3_ACCESS_KEY: "${PB_S3_ACCESS_KEY}" PB_S3_SECRET: "${PB_S3_SECRET}" # Path style, because a self-hosted gateway has no per-bucket DNS. PB_S3_FORCE_PATH_STYLE: "true" ports: # Localhost-only by default (the Web App reaches it over the internal # network). Set API_BIND=0.0.0.0 to expose the API panel — and the # /ocpp/{serial} endpoint chargers dial into — on the network. - "${API_BIND:-127.0.0.1}:${API_PORT:-8080}:8080" # No volume: the API Server keeps no state on disk — every setting it owns, # plugin settings included, lives in PocketBase under PB_DATA. healthcheck: # Declared here rather than relying only on the image's HEALTHCHECK, so the # depends_on gate below still works against an older pulled image. test: ["CMD-SHELL", "wget -qO- http://127.0.0.1:8080/healthz || exit 1"] interval: 10s timeout: 3s retries: 12 start_period: 20s web-app: image: "${WEB_IMAGE:-10.2.1.10:5500/admin/drivervault-web-app:latest}" container_name: drivervault-web restart: unless-stopped depends_on: # The image now ships a HEALTHCHECK, so wait for the API Server to be # serving rather than merely started. api-server: condition: service_healthy environment: # The BFF reverse-proxies /api/* — and /ocpp/*, the address chargers are # told to dial — to the API Server over the internal network. API_BASE: "http://api-server:8080" # Believe an inbound X-Forwarded-Proto. The API Server reads it to decide a # charger arrived over TLS, so leave this off unless a TLS-terminating # proxy in front of the stack is the only way in: otherwise a charger could # claim wss over a plaintext connection. Set it to true when TLS ends at # that proxy and OCPP_PUBLIC_URL names a wss:// base through it. TRUST_FORWARDED_PROTO: "${TRUST_FORWARDED_PROTO:-false}" ports: # The public front door. Bound on all interfaces so browsers can reach it. - "${WEB_PORT:-8090}:8090" healthcheck: test: ["CMD-SHELL", "wget -qO- http://127.0.0.1:8090/healthz || exit 1"] interval: 10s timeout: 3s retries: 12 start_period: 10s volumes: pb_data: # Shared by master, volume and filer — the same layout `weed server -dir` # writes, so this file and docker-compose.prod.seaweedfs.yml can swap places # on it. seaweed_data: # The admin UI's own session key and maintenance-task state. Small, and no # part of the object store. seaweed_admin: