mirror of
https://github.com/esphome/esphome.git
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331 lines
7.8 KiB
Protocol Buffer
331 lines
7.8 KiB
Protocol Buffer
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syntax = "proto3";
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// The Home Assistant protocol is structured as a simple
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// TCP socket with short binary messages encoded in the protocol buffers format
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// First, a message in this protocol has a specific format:
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// * VarInt denoting the size of the message object. (type is not part of this)
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// * VarInt denoting the type of message.
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// * The message object encoded as a ProtoBuf message
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// The connection is established in 4 steps:
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// * First, the client connects to the server and sends a "Hello Request" identifying itself
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// * The server responds with a "Hello Response" and selects the protocol version
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// * After receiving this message, the client attempts to authenticate itself using
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// the password and a "Connect Request"
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// * The server responds with a "Connect Response" and notifies of invalid password.
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// If anything in this initial process fails, the connection must immediately closed
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// by both sides and _no_ disconnection message is to be sent.
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// Message sent at the beginning of each connection
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// Can only be sent by the client and only at the beginning of the connection
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message HelloRequest {
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// Description of client (like User Agent)
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// For example "Home Assistant"
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// Not strictly necessary to send but nice for debugging
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// purposes.
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string client_info = 1;
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}
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// Confirmation of successful connection request.
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// Can only be sent by the server and only at the beginning of the connection
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message HelloResponse {
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// The version of the API to use. The _client_ (for example Home Assistant) needs to check
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// for compatibility and if necessary adopt to an older API.
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// Major is for breaking changes in the base protocol - a mismatch will lead to immediate disconnect_client_
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// Minor is for breaking changes in individual messages - a mismatch will lead to a warning message
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uint32 api_version_major = 1;
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uint32 api_version_minor = 2;
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// A string identifying the server (ESP); like client info this may be empty
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// and only exists for debugging/logging purposes.
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// For example "ESPHome v1.10.0 on ESP8266"
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string server_info = 3;
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}
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// Message sent at the beginning of each connection to authenticate the client
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// Can only be sent by the client and only at the beginning of the connection
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message ConnectRequest {
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// The password to log in with
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string password = 1;
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}
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// Confirmation of successful connection. After this the connection is available for all traffic.
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// Can only be sent by the server and only at the beginning of the connection
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message ConnectResponse {
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bool invalid_password = 1;
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}
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// Request to close the connection.
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// Can be sent by both the client and server
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message DisconnectRequest {
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// Do not close the connection before the acknowledgement arrives
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}
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message DisconnectResponse {
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// Empty - Both parties are required to close the connection after this
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// message has been received.
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}
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message PingRequest {
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// Empty
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}
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message PingResponse {
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// Empty
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}
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message DeviceInfoRequest {
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// Empty
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}
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message DeviceInfoResponse {
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bool uses_password = 1;
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// The name of the node, given by "App.set_name()"
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string name = 2;
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// The mac address of the device. For example "AC:BC:32:89:0E:A9"
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string mac_address = 3;
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// A string describing the ESPHome version. For example "1.10.0"
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string esphome_core_version = 4;
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// A string describing the date of compilation, this is generated by the compiler
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// and therefore may not be in the same format all the time.
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// If the user isn't using esphomeyaml, this will also not be set.
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string compilation_time = 5;
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// The model of the board. For example NodeMCU
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string model = 6;
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bool has_deep_sleep = 7;
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}
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message ListEntitiesRequest {
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// Empty
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}
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message ListEntitiesBinarySensorResponse {
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string object_id = 1;
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fixed32 key = 2;
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string name = 3;
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string unique_id = 4;
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string device_class = 5;
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bool is_status_binary_sensor = 6;
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}
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message ListEntitiesCoverResponse {
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string object_id = 1;
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fixed32 key = 2;
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string name = 3;
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string unique_id = 4;
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bool is_optimistic = 5;
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}
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message ListEntitiesFanResponse {
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string object_id = 1;
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fixed32 key = 2;
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string name = 3;
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string unique_id = 4;
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bool supports_oscillation = 5;
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bool supports_speed = 6;
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}
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message ListEntitiesLightResponse {
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string object_id = 1;
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fixed32 key = 2;
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string name = 3;
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string unique_id = 4;
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bool supports_brightness = 5;
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bool supports_rgb = 6;
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bool supports_white_value = 7;
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bool supports_color_temperature = 8;
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float min_mireds = 9;
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float max_mireds = 10;
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repeated string effects = 11;
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}
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message ListEntitiesSensorResponse {
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string object_id = 1;
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fixed32 key = 2;
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string name = 3;
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string unique_id = 4;
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string icon = 5;
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string unit_of_measurement = 6;
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int32 accuracy_decimals = 7;
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}
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message ListEntitiesSwitchResponse {
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string object_id = 1;
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fixed32 key = 2;
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string name = 3;
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string unique_id = 4;
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string icon = 5;
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bool optimistic = 6;
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}
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message ListEntitiesTextSensorResponse {
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string object_id = 1;
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fixed32 key = 2;
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string name = 3;
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string unique_id = 4;
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string icon = 5;
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}
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message ListEntitiesDoneResponse {
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// Empty
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}
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message SubscribeStatesRequest {
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// Empty
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}
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message BinarySensorStateResponse {
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fixed32 key = 1;
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bool state = 2;
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}
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message CoverStateResponse {
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fixed32 key = 1;
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enum CoverState {
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OPEN = 0;
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CLOSED = 1;
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}
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CoverState state = 2;
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}
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enum FanSpeed {
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LOW = 0;
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MEDIUM = 1;
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HIGH = 2;
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}
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message FanStateResponse {
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fixed32 key = 1;
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bool state = 2;
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bool oscillating = 3;
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FanSpeed speed = 4;
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}
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message LightStateResponse {
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fixed32 key = 1;
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bool state = 2;
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float brightness = 3;
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float red = 4;
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float green = 5;
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float blue = 6;
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float white = 7;
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float color_temperature = 8;
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string effect = 9;
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}
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message SensorStateResponse {
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fixed32 key = 1;
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float state = 2;
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}
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message SwitchStateResponse {
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fixed32 key = 1;
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bool state = 2;
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}
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message TextSensorStateResponse {
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fixed32 key = 1;
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string state = 2;
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}
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message CoverCommandRequest {
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fixed32 key = 1;
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enum CoverCommand {
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OPEN = 0;
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CLOSE = 1;
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STOP = 2;
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}
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bool has_state = 2;
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CoverCommand command = 3;
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}
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message FanCommandRequest {
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fixed32 key = 1;
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bool has_state = 2;
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bool state = 3;
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bool has_speed = 4;
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FanSpeed speed = 5;
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bool has_oscillating = 6;
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bool oscillating = 7;
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}
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message LightCommandRequest {
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fixed32 key = 1;
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bool has_state = 2;
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bool state = 3;
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bool has_brightness = 4;
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float brightness = 5;
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bool has_rgb = 6;
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float red = 7;
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float green = 8;
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float blue = 9;
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bool has_white = 10;
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float white = 11;
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bool has_color_temperature = 12;
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float color_temperature = 13;
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bool has_transition_length = 14;
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uint32 transition_length = 15;
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bool has_flash_length = 16;
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uint32 flash_length = 17;
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bool has_effect = 18;
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string effect = 19;
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}
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message SwitchCommandRequest {
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fixed32 key = 1;
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bool state = 2;
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}
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enum LogLevel {
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NONE = 0;
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ERROR = 1;
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WARN = 2;
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INFO = 3;
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DEBUG = 4;
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VERBOSE = 5;
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VERY_VERBOSE = 6;
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}
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message SubscribeLogsRequest {
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LogLevel level = 1;
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bool dump_config = 2;
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}
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message SubscribeLogsResponse {
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LogLevel level = 1;
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string tag = 2;
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string message = 3;
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bool send_failed = 4;
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}
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message SubscribeServiceCallsRequest {
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}
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message ServiceCallResponse {
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string service = 1;
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map<string, string> data = 2;
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map<string, string> data_template = 3;
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map<string, string> variables = 4;
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}
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// 1. Client sends SubscribeHomeAssistantStatesRequest
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// 2. Server responds with zero or more SubscribeHomeAssistantStateResponse (async)
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// 3. Client sends HomeAssistantStateResponse for state changes.
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message SubscribeHomeAssistantStatesRequest {
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}
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message SubscribeHomeAssistantStateResponse {
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string entity_id = 1;
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}
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message HomeAssistantStateResponse {
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string entity_id = 1;
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string state = 2;
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}
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message GetTimeRequest {
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}
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message GetTimeResponse {
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fixed32 epoch_seconds = 1;
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}
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