# GREE Controller Self-hosted controller for GREE-compatible air conditioners with a local Web UI, thermostat zones, schedules, Home Assistant integration, history, notifications and a documented HTTP/WebSocket API. **Current release: 0.8.21** > [Full API reference](docs/API.md) — authentication, every endpoint, request bodies, response models, WebSocket events and examples. ## What it does - Discovers and binds GREE Wi-Fi units on the LAN, including mixed protocol generations. - Provides direct technical device control and a separate thermostat layer built around zones. - Supports cooling/heating profiles: Comfort, Sleep, Away and custom quick targets. - Coordinates house, group and per-zone control without silently fighting physical/manual overrides. - Supports schedules, automations, night mode and temporary Quick Thermostat sessions. - Can use GREE sensors, Home Assistant room sensors or a weighted combination. - Stores recent history in SQLite and can archive/query long-term history in InfluxDB 1.x or 2.x. - Exposes native Home Assistant entities through the bundled custom integration. - Includes PWA-capable responsive UI, Polish/English localization and live diagnostics. - Can run in Simulation mode without physical air conditioners. A large warning is shown whenever simulation is enabled. ## UI overview The interface is intentionally split by responsibility: | Area | Purpose | | --- | --- | | Dashboard | Whole-house summary and Quick Thermostat controls. | | Devices | Discovery, binding and direct/technical GREE device control. | | Zones | Thermostat configuration, profiles, sensors and control ownership. | | Groups | Climate group membership and group power/mode/preset/custom-temperature control. | | Schedules | Weekly thermostat schedules and ready-made templates. | | Automations | Time/temperature triggered device or group actions. | | History | Overview, zones, devices and HA sensors with precise chart tooltips and zoom. | | Simulation | Simulated units for safe testing. | | Night mode | Quiet/Sleep/fan limits during an overnight window. | | Home Assistant | Sensor connection, aliases and restricted integration tokens. | | Settings → Application | Simulation, notifications, metrics/logs, InfluxDB, debug and backup. | | Settings → GREE | Controller identity, polling/discovery, GREE commands and live GREE traffic. | | Events | Operational event log and diagnostics. | The top bar uses the same compact language and theme controls on desktop and mobile. The live debug overlay can be filtered to **All**, **Requests** or **GREE** frames. ## Quick start for development Requirements are installed automatically on supported Debian/Ubuntu environments unless `--no-install` is used. ```bash cp .env.example .env ./scripts/dev.sh ``` Useful development commands: ```bash ./scripts/dev.sh --check # format, tests, build and HTTP smoke test ./scripts/dev.sh --release # optimized local build ./scripts/dev.sh --reset # recreate the local SQLite database ./scripts/smoke.sh # API smoke test against an isolated simulated instance ``` The default panel is available at `http://127.0.0.1:8787` when the process is bound locally. ## LXC / systemd installation The production scripts target Debian/Ubuntu systemd hosts and LXC containers. ### First installation ```bash sudo ./scripts/install.sh ``` Optional flags: ```bash sudo ./scripts/install.sh --skip-tests sudo ./scripts/install.sh --no-start ``` Installed layout: | Path | Purpose | | --- | --- | | `/opt/gree-controller/gree-controller` | Release binary. | | `/etc/gree-controller.env` | Environment configuration; mode `0600`. | | `/var/lib/gree-controller/gree-controller.db` | SQLite database. | | `/etc/systemd/system/gree-controller.service` | systemd unit. | | `/var/backups/gree-controller/` | Update backups used for rollback. | ### Update Run from the extracted source tree of the new release: ```bash sudo ./scripts/update.sh ``` The updater builds/tests first, stops the old service, backs up the binary/unit/environment/database, installs the release, checks `/api/health` and rolls back automatically if startup fails. ### Service helper ```bash ./scripts/service.sh status ./scripts/service.sh health ./scripts/service.sh logs sudo ./scripts/service.sh restart ``` `./scripts/install-lxc.sh` remains as a compatibility alias to `install.sh`. ## Configuration Copy `.env.example` for the full supported example. Command-line arguments exist for the core `Config` options, while most day-to-day runtime settings are also editable in the Web UI and persisted in SQLite. Environment values explicitly supplied for supported runtime overrides win over the persisted value after restart. ### Core variables | Variable | Default | Description | | --- | --- | --- | | `GREE_CONTROLLER_BIND` | `0.0.0.0:8787` | HTTP/WebSocket listen address. | | `GREE_CONTROLLER_DATABASE` | `./data/gree-controller.db` | SQLite database path. | | `GREE_CONTROLLER_APP_TOKEN` | empty | Optional administrator API/Web UI token. Empty means trusted-LAN mode. | | `GREE_CONTROLLER_BASE_PATH` | empty | Optional reverse-proxy prefix such as `/gree`. | | `GREE_CONTROLLER_ID` | `gree-controller` | GREE client/controller identifier. | | `GREE_CONTROLLER_SIMULATE` | `false` | Initial Simulation mode. | | `GREE_CONTROLLER_AUTO_SEED` | `false` | Seed simulated sample data when applicable. | | `GREE_CONTROLLER_POLL_INTERVAL_SECONDS` | `15` | Device polling interval. | | `GREE_CONTROLLER_ZONE_INTERVAL_SECONDS` | `5` | Thermostat control interval. | | `GREE_CONTROLLER_DISCOVERY_TIMEOUT_MS` | `3000` | Discovery timeout. | | `GREE_CONTROLLER_DISCOVERY_BROADCAST` | `255.255.255.255:7000` | GREE discovery target. | | `GREE_CONTROLLER_GREE_INTERFACE` | auto | Optional interface name or local IP used for GREE UDP traffic. | Additional environment variables cover history retention, debug, night mode, Home Assistant and InfluxDB. See [`.env.example`](.env.example). ## Connecting physical GREE units 1. Place the controller host on a network that can reach the air-conditioner Wi-Fi modules by UDP. 2. Open **Devices** and start discovery. 3. Auto protocol mode is recommended; the controller accepts both supported GREE encryption generations. 4. Newly discovered devices are bound automatically when possible. Manual bind is also available. 5. Create a thermostat zone for each unit you want the thermostat engine to own. Discovery uses UDP broadcast, so routed/VLAN networks must explicitly permit or relay the required traffic. ### Multi-NIC / dedicated GREE interface For a host with separate management and GREE networks, set for example: ```bash GREE_CONTROLLER_GREE_INTERFACE=eth1 ``` or a local address: ```bash GREE_CONTROLLER_GREE_INTERFACE=192.168.50.2 ``` The controller will use that interface for GREE UDP traffic while keeping the HTTP UI on `GREE_CONTROLLER_BIND`. Diagnostics: ```bash sudo ./scripts/configure-gree-network.sh ./scripts/network-debug.sh ``` The hardened systemd unit allows `AF_NETLINK`, which is required for interface discovery on multi-NIC Linux/LXC systems. ## Thermostat model ### Devices vs zones A **Device** is the physical GREE unit. Device commands are direct/technical commands. A **Zone** is the thermostat owner for a device. It decides demand from room temperature, setpoint, hysteresis, schedules, group/house gates, manual ownership and safety lockouts. This distinction is important: direct device control intentionally behaves differently from thermostat control. ### Control ownership The zone state exposes who currently owns control (`control_owner`, `control_source`, timestamps and reason). Physical remote/direct device actions can create a manual-device takeover so normal schedules do not immediately overwrite the user. Explicit zone thermostat control hands ownership back to the thermostat engine when appropriate. Whole-house master OFF remains authoritative and powers managed devices down. ### Profiles and schedules Each zone stores separate cooling and heating temperatures for: - Comfort - Sleep - Away - Custom/manual target Schedules select profiles or a custom target for selected ISO weekdays (`1=Monday`, `7=Sunday`). Overnight windows are supported. Overlapping enabled schedules for the same zone are rejected. Quick preset/setpoint overrides normally hand control back at the next schedule boundary. Temporary Quick Thermostat adds explicit start/finish rules such as duration, exact time, temperature reached/stable or next schedule boundary. ## Home Assistant There are two independent Home Assistant directions. ### 1. Home Assistant as a temperature source Configure **Home Assistant / Sensors** in the Web UI or use: ```text HA_URL= HA_TOKEN= HA_ENTITY_ID= HA_OUTDOOR_ENTITY_ID= HA_SENSOR_STALE_AFTER_SECONDS=300 HA_ALLOW_INVALID_TLS=false ``` Per zone, `sensor_source` can be: - `device` — GREE indoor sensor, - `home_assistant` — configured HA room sensor, - `combined` — weighted GREE + HA value. Stale/unavailable external data falls back to the GREE sensor when possible. The optional outdoor sensor is only an assist signal; it never replaces room temperature. ### 2. GREE Controller entities inside Home Assistant Bundled integration directory: ```text home-assistant/custom_components/gree_controller/ ``` Copy `gree_controller` to Home Assistant's `custom_components` directory, restart Home Assistant and add **GREE Controller** from Integrations. Create a restricted token in **Home Assistant / Sensors → Access tokens**. The token secret is displayed only once and the database stores only its SHA-256 hash. The integration uses a restricted `/api/integrations/home-assistant/*` surface rather than administrator endpoints. The integration exposes physical device climate controls, thermostat zone climate entities, whole-house controls, groups and optional unit capabilities. Prefer zone thermostat entities for normal comfort control; physical device entities are direct/manual controls. For entity-ID migration tooling: ```bash python3 scripts/generate_ha_migration.py --help ``` The generated mapping example is under `home-assistant/generated/`. ## History and InfluxDB SQLite is the local hot store. History compaction reduces older local sample density while preserving the resolutions needed by charts. Retention is configurable from the UI or environment. Optional InfluxDB writes samples in parallel and can serve the older part of long history queries: - InfluxDB 1.x: URL, database, optional username/password. - InfluxDB 2.x: URL, organization, bucket and token. If an Influx query fails, the API returns available SQLite data and can include a `storage_warning` rather than discarding the whole history response. See [`GET /api/history`](docs/API.md#history-and-readings) for scopes and bucket behavior. ## Notifications Optional notifications support: - Pushover - Slack webhook - Discord webhook Modes can report problems only or problems plus important state changes. Individual categories include sensor freshness/errors, communication failures, target timeout, automation/control errors and other warnings. Cooldown and failure thresholds are configurable. ## Debugging Enable **Settings → Application → On-screen debug**. The overlay has three filters: - **All** — request diagnostics, application events and GREE frames, - **Requests** — HTTP method/path/status/duration, - **GREE** — sanitized protocol frames when GREE frame logging is enabled. Binding/encryption keys are not intentionally exposed in GREE debug frames. For Linux/network issues also use: ```bash ./scripts/network-debug.sh ./scripts/service.sh logs ``` ## Backup and restore **Settings → Application → Configuration backup** exports settings, devices, zones, groups, schedules and automations. The export intentionally does **not** contain metric history, event history or generated API-token records. It **does contain** GREE binding keys and configured integration secrets, so store it like a credential file. Import replaces application configuration while preserving local metric/event history and generated access-token records. Runtime ownership/timers are sanitized and live device state is re-polled before automatic control resumes. ## Reverse proxy and sub-path deployment For a root deployment, proxy HTTP and WebSocket traffic to the controller normally. For a sub-path, configure: ```bash GREE_CONTROLLER_BASE_PATH=/gree ``` Then serve the application under `/gree/`. The proxy must preserve WebSocket upgrade headers. A typical nginx location is: ```nginx location /gree/ { proxy_pass http://127.0.0.1:8787/gree/; proxy_http_version 1.1; proxy_set_header Upgrade $http_upgrade; proxy_set_header Connection "upgrade"; proxy_set_header Host $host; } ``` If your proxy strips the prefix, keep its upstream/base-path handling consistent. Do not publish the controller directly to an untrusted network without authentication and TLS at the proxy/VPN layer. ## Security The default empty `GREE_CONTROLLER_APP_TOKEN` is intended for a trusted LAN only. Set a long random token when the interface is reachable by other networks. Implemented safeguards include: - optional bearer administrator authentication, - separate restricted generated tokens for Home Assistant, - hashed generated-token storage, - secrets omitted from normal settings responses, - restrictive security headers and no permissive CORS, - API responses marked `no-store`, - hardened systemd service, - safe device power-off behavior when thermostat ownership is removed, - startup synchronization before the thermostat engine begins issuing commands. For remote access, prefer a VPN or authenticated TLS reverse proxy. Treat configuration exports and `/etc/gree-controller.env` as secrets. ## Localization Language packs are JSON files under `lang/`. The build validates/embeds them and generates the public language catalog. To add a language: 1. Copy `lang/en.json` to `lang/.json`. 2. Update `meta.code`, names and locale. 3. Keep the same translation keys as the reference pack. 4. Rebuild the Rust binary. Runtime assets are available at `/lang/index.json` and `/lang/.json`. ## API The HTTP API is the same backend used by the Web UI. It includes devices, zones, groups, house control, schedules, automations, history, control plan, events, settings, backup/restore, debug, tokens and integration tests. Start here: **[docs/API.md — complete API reference](docs/API.md)** Public health check: ```bash curl http://127.0.0.1:8787/api/health ``` Authenticated example when an app token is configured: ```bash curl -H 'Authorization: Bearer YOUR_TOKEN' \ http://127.0.0.1:8787/api/system/info ``` ## Project layout ```text src/ Rust backend, GREE protocol and thermostat engine web/ Embedded Web UI / PWA web/js/ Frontend JS source modules bundled by build.rs lang/ Runtime language packs home-assistant/ Home Assistant custom integration and migration output scripts/ Development, install, update, service and diagnostics systemd/ Production service unit docs/API.md Complete API documentation .env.example Environment reference ``` The application is intentionally self-contained: static assets and language packs are embedded into the binary at build time; SQLite is the default data store; no external frontend build chain is required. `build.rs` concatenates the ordered files from `web/js/` into one generated application bundle and exposes it under a content-hashed URL. ## Validation before release Recommended full check on a host with Rust installed: ```bash ./scripts/dev.sh --check ``` This runs formatting checks, Rust tests, a build and an isolated simulated API smoke test. ## License See [LICENSE](LICENSE).