662 lines
21 KiB
C++
662 lines
21 KiB
C++
#pragma once
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#include <vector>
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#include "LinBusProtocol.h"
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#include "esphome/core/automation.h"
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#ifdef USE_TIME
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#include "esphome/components/time/real_time_clock.h"
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#endif // USE_TIME
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namespace esphome {
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namespace truma_inetbox {
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#define LIN_PID_TRUMA_INET_BOX 0x18
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#define LIN_SID_RESPONSE 0x40
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#define LIN_SID_READ_STATE_BUFFER 0xBA
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#define LIN_SID_FIll_STATE_BUFFFER 0xBB
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// Response to init are the following frames:
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// - 2 * STATUS_FRAME_DEVICES
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// - STATUS_FRAME_HEATER
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// - STATUS_FRAME_TIMER
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// - STAUTS_FRAME_CONFIG
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// - STATUS_FRAME_CLOCK
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#define STATUS_FRAME_RESPONSE_INIT_REQUEST 0x0A
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#define STATUS_FRAME_DEVICES 0x0B
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#define STATUS_FRAME_RESPONSE_ACK 0x0D
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#define STATUS_FRAME_CLOCK_RESPONSE (STATUS_FRAME_CLOCK - 1)
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#define STATUS_FRAME_CLOCK 0x15
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// TODO: Documentation and testing of config response.
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#define STAUTS_FRAME_CONFIG_RESPONSE (STAUTS_FRAME_CONFIG - 1)
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#define STAUTS_FRAME_CONFIG 0x17
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#define STATUS_FRAME_HEATER_RESPONSE (STATUS_FRAME_HEATER - 1)
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#define STATUS_FRAME_HEATER 0x33
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#define STATUS_FRAME_AIRCON_RESPONSE (STATUS_FRAME_AIRCON - 1)
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#define STATUS_FRAME_AIRCON 0x35
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#define STATUS_FRAME_AIRCON_2_RESPONSE (STATUS_FRAME_AIRCON_2 - 1)
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#define STATUS_FRAME_AIRCON_2 0x37
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#define STATUS_FRAME_TIMER_RESPONSE (STATUS_FRAME_TIMER - 1)
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#define STATUS_FRAME_TIMER 0x3D
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#define STATUS_FRAME_AIRCON_INIT_RESPONSE (STATUS_FRAME_AIRCON_INIT - 1)
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#define STATUS_FRAME_AIRCON_INIT 0x3F
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#define STATUS_FRAME_AIRCON_INIT_2_RESPONSE (STATUS_FRAME_AIRCON_INIT_2 - 1)
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#define STATUS_FRAME_AIRCON_INIT_2 0x41
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enum class HeatingMode : u_int16_t {
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HEATING_MODE_OFF = 0x0,
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// COMBI
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HEATING_MODE_ECO = 0x1,
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// Vario Heat
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HEATING_MODE_VARIO_HEAT_NIGHT = 0x2,
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// Vario Heat
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HEATING_MODE_VARIO_HEAT_AUTO = 0x3,
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// COMBI
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HEATING_MODE_HIGH = 0xA,
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// COMBI, Vario Heat
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HEATING_MODE_BOOST = 0xB,
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// Feedback Invalid message only with following `heating_mode`. Others are ignored no feedback.
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// 00FF
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// 01FE
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// 02FD
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// ....
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// FD02
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// FE01
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// FF00
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};
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enum class ElectricPowerLevel : u_int16_t {
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ELECTRIC_POWER_LEVEL_0 = 0,
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ELECTRIC_POWER_LEVEL_900 = 900,
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ELECTRIC_POWER_LEVEL_1800 = 1800,
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};
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enum class TargetTemp : u_int16_t {
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TARGET_TEMP_OFF = 0x0,
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// 40C
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TARGET_TEMP_WATER_ECO = (40 + 273) * 10,
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// 60C
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TARGET_TEMP_WATER_HIGH = (60 + 273) * 10,
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// 200C
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TARGET_TEMP_WATER_BOOST = (200 + 273) * 10,
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TARGET_TEMP_ROOM_MIN = (5 + 273) * 10,
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TARGET_TEMP_ROOM_05C = (5 + 273) * 10,
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TARGET_TEMP_ROOM_06C = (6 + 273) * 10,
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TARGET_TEMP_ROOM_07C = (7 + 273) * 10,
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TARGET_TEMP_ROOM_08C = (8 + 273) * 10,
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TARGET_TEMP_ROOM_09C = (9 + 273) * 10,
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TARGET_TEMP_ROOM_10C = (10 + 273) * 10,
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TARGET_TEMP_ROOM_11C = (11 + 273) * 10,
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TARGET_TEMP_ROOM_12C = (12 + 273) * 10,
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TARGET_TEMP_ROOM_13C = (13 + 273) * 10,
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TARGET_TEMP_ROOM_14C = (14 + 273) * 10,
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TARGET_TEMP_ROOM_15C = (15 + 273) * 10,
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TARGET_TEMP_ROOM_16C = (16 + 273) * 10,
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TARGET_TEMP_ROOM_17C = (17 + 273) * 10,
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TARGET_TEMP_ROOM_18C = (18 + 273) * 10,
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TARGET_TEMP_ROOM_19C = (19 + 273) * 10,
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TARGET_TEMP_ROOM_20C = (20 + 273) * 10,
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TARGET_TEMP_ROOM_21C = (21 + 273) * 10,
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TARGET_TEMP_ROOM_22C = (22 + 273) * 10,
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TARGET_TEMP_ROOM_23C = (23 + 273) * 10,
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TARGET_TEMP_ROOM_24C = (24 + 273) * 10,
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TARGET_TEMP_ROOM_25C = (25 + 273) * 10,
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TARGET_TEMP_ROOM_26C = (26 + 273) * 10,
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TARGET_TEMP_ROOM_27C = (27 + 273) * 10,
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TARGET_TEMP_ROOM_28C = (28 + 273) * 10,
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TARGET_TEMP_ROOM_29C = (29 + 273) * 10,
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TARGET_TEMP_ROOM_30C = (30 + 273) * 10,
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TARGET_TEMP_ROOM_MAX = (30 + 273) * 10,
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};
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enum class EnergyMix : u_int8_t {
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ENERGY_MIX_NONE = 0b00,
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ENERGY_MIX_GAS = 0b01,
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ENERGY_MIX_ELECTRICITY = 0b10,
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ENERGY_MIX_MIX = 0b11,
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};
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enum class OperatingStatus : u_int8_t {
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OPERATING_STATUS_UNSET = 0x0,
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OPERATING_STATUS_OFF = 0x0,
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OPERATING_STATUS_WARNING = 0x1,
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OPERATING_STATUS_START_OR_COOL_DOWN = 0x4,
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// ? Gas Heating mode ?
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OPERATING_STATUS_ON_5 = 0x5,
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OPERATING_STATUS_ON_6 = 0x6,
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OPERATING_STATUS_ON_7 = 0x7,
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OPERATING_STATUS_ON_8 = 0x8,
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OPERATING_STATUS_ON_9 = 0x9,
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};
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enum class OperatingUnits : u_int8_t {
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OPERATING_UNITS_CELSIUS = 0x0,
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OPERATING_UNITS_FAHRENHEIT = 0x1,
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};
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enum class Language : u_int8_t {
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LANGUAGE_GERMAN = 0x0,
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LANGUAGE_ENGLISH = 0x1,
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LANGUAGE_FRENCH = 0x2,
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LANGUAGE_ITALY = 0x3,
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};
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enum class ResponseAckResult : u_int8_t {
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RESPONSE_ACK_RESULT_OKAY = 0x0,
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RESPONSE_ACK_RESULT_ERROR_INVALID_MSG = 0x2,
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// The response status frame `message_type` is unknown.
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RESPONSE_ACK_RESULT_ERROR_INVALID_ID = 0x3,
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};
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enum class TempOffset : u_int8_t {
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TEMP_OFFSET_0_0C = (u_int8_t) ((-0.0f + 17) * 10),
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TEMP_OFFSET_0_5C = (u_int8_t) ((-0.5f + 17) * 10),
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TEMP_OFFSET_1_0C = (u_int8_t) ((-1.0f + 17) * 10),
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TEMP_OFFSET_1_5C = (u_int8_t) ((-1.5f + 17) * 10),
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TEMP_OFFSET_2_0C = (u_int8_t) ((-2.0f + 17) * 10),
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TEMP_OFFSET_2_5C = (u_int8_t) ((-2.5f + 17) * 10),
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TEMP_OFFSET_3_0C = (u_int8_t) ((-3.0f + 17) * 10),
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TEMP_OFFSET_3_5C = (u_int8_t) ((-3.5f + 17) * 10),
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TEMP_OFFSET_4_0C = (u_int8_t) ((-4.0f + 17) * 10),
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TEMP_OFFSET_4_5C = (u_int8_t) ((-4.5f + 17) * 10),
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TEMP_OFFSET_5_0C = (u_int8_t) ((-5.0f + 17) * 10),
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};
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enum class ClockMode : u_int8_t {
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CLOCK_MODE_24H = 0x0,
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CLOCK_MODE_12H = 0x1,
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};
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enum class TimerActive : u_int8_t {
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TIMER_ACTIVE_ON = 0x1,
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TIMER_ACTIVE_OFF = 0x0,
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};
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enum class ClockSource : u_int8_t {
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// Set by user
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CLOCK_SOURCE_MANUAL = 0x1,
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// Set by message
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CLOCK_SOURCE_PROG = 0x2,
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};
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struct StatusFrameHeader { // NOLINT(altera-struct-pack-align)
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// sid
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u_int8_t service_identifier;
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u_int8_t header[10];
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u_int8_t header_2;
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u_int8_t header_3;
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// after checksum
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u_int8_t message_length;
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u_int8_t message_type;
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u_int8_t command_counter;
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u_int8_t checksum;
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} __attribute__((packed));
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// Length 20 (0x14)
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struct StatusFrameHeater { // NOLINT(altera-struct-pack-align)
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TargetTemp target_temp_room;
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// Room
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HeatingMode heating_mode;
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ElectricPowerLevel el_power_level_a;
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TargetTemp target_temp_water;
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ElectricPowerLevel el_power_level_b;
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EnergyMix energy_mix_a;
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// Ignored by response
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EnergyMix energy_mix_b;
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u_int16_t current_temp_water;
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u_int16_t current_temp_room;
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OperatingStatus operating_status;
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u_int16_t error_code;
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u_int8_t heater_unknown_2;
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} __attribute__((packed));
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// Length 12 (0x0C)
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struct StatusFrameHeaterResponse { // NOLINT(altera-struct-pack-align)
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TargetTemp target_temp_room;
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// Room
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HeatingMode heating_mode;
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ElectricPowerLevel el_power_level_a;
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TargetTemp target_temp_water;
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ElectricPowerLevel el_power_level_b;
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EnergyMix energy_mix_a;
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// Ignored?
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EnergyMix energy_mix_b;
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} __attribute__((packed));
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// Length 24 (0x18)
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struct StatusFrameTimer { // NOLINT(altera-struct-pack-align)
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TargetTemp timer_target_temp_room;
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HeatingMode timer_heating_mode;
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ElectricPowerLevel timer_el_power_level_a;
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TargetTemp timer_target_temp_water;
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ElectricPowerLevel timer_el_power_level_b;
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EnergyMix timer_energy_mix_a;
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EnergyMix timer_energy_mix_b;
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// used by timer response message
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u_int8_t unused[5];
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u_int8_t timer_unknown_3;
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u_int8_t timer_unknown_4;
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TimerActive timer_active;
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u_int8_t timer_start_minutes;
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u_int8_t timer_start_hours;
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u_int8_t timer_stop_minutes;
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u_int8_t timer_stop_hours;
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} __attribute__((packed));
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// Length 13 (0x0D)
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struct StatusFrameTimerResponse { // NOLINT(altera-struct-pack-align)
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TargetTemp timer_target_temp_room;
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HeatingMode timer_heating_mode;
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ElectricPowerLevel timer_el_power_level_a;
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TargetTemp timer_target_temp_water;
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ElectricPowerLevel timer_el_power_level_b;
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EnergyMix timer_energy_mix_a;
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EnergyMix timer_energy_mix_b;
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// set by response message to active timer
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TimerActive timer_resp_active;
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// set by response message to active timer
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u_int8_t timer_resp_start_minutes;
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// set by response message to active timer
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u_int8_t timer_resp_start_hours;
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// set by response message to active timer
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u_int8_t timer_resp_stop_minutes;
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// set by response message to active timer
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u_int8_t timer_resp_stop_hours;
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} __attribute__((packed));
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// Length 2 (0x02)
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struct StatusFrameResponseAck { // NOLINT(altera-struct-pack-align)
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ResponseAckResult error_code;
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u_int8_t unknown;
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} __attribute__((packed));
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// Length 10 (0x0A)
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struct StatusFrameClock { // NOLINT(altera-struct-pack-align)
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u_int8_t clock_hour;
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u_int8_t clock_minute;
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u_int8_t clock_second;
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// MUST be 0x1, 0x2, 0x3..? (lower than 0x9)
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u_int8_t display_1;
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// MUST be 0x1
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u_int8_t display_2;
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u_int8_t display_3;
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ClockMode clock_mode;
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ClockSource clock_source;
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u_int8_t display_4;
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u_int8_t display_5;
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} __attribute__((packed));
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// Length 10 (0x0A)
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struct StatusFrameConfig { // NOLINT(altera-struct-pack-align)
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// 0x01 .. 0x0A
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u_int8_t display_brightness;
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Language language;
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u_int8_t unknown_2; // 0xB4
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u_int8_t unknown_3; // 0x0A
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TempOffset temp_offset;
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u_int8_t unknown_5; // 0x0A
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OperatingUnits temp_units;
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u_int8_t unknown_6;
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u_int8_t unknown_7;
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u_int8_t unknown_8;
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} __attribute__((packed));
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enum class TRUMA_DEVICE : u_int8_t {
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UNKNOWN = 0x00,
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// Saphir Compact AC
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AIRCON_DEVICE = 0x01,
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// Combi 4
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HEATER_COMBI4 = 0x02,
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// Vario Heat Comfort (non E)
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HEATER_VARIO = 0x03,
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// CP Plus for Combi
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CPPLUS_COMBI = 0x04,
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// CP Plus for Vario Heat
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CPPLUS_VARIO = 0x05,
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// Combi 6 D
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HEATER_COMBI6D = 0x06,
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};
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// Length 12 (0x0C)
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struct StatusFrameDevice { // NOLINT(altera-struct-pack-align)
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u_int8_t device_count;
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u_int8_t device_id;
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// 0x01 - Maybe active or found
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u_int8_t unknown_0;
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// 0x00
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u_int8_t unknown_1;
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u_int16_t hardware_revision_major;
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u_int8_t hardware_revision_minor;
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// `software_revision[0].software_revision[1].software_revision[2]`
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// software_revision[0] -> TRUMA_DEVICE
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u_int8_t software_revision[3];
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// 0xAD, 0x0B on CPplus with Combi4 or 0x66 on CPplus with Vario Heat Comfort ohne E
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// 0x00 on Combi4, Vario Heat
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u_int8_t unknown_2;
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// 0x10, 0x12 on CPplus
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// 0x00 on Combi4, Vario Heat
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u_int8_t unknown_3;
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} __attribute__((packed));
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// Length 18 (0x12)
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// TODO
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struct StatusFrameAircon { // NOLINT(altera-struct-pack-align)
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// Mode? 00 - OFF, 04 - AC Ventilation, 05 - AC Cooling
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u_int8_t unknown_01;
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// 0x00
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u_int8_t unknown_02;
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// 0x71
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u_int8_t unknown_03;
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// 0x01
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u_int8_t unknown_04;
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TargetTemp target_temp_room;
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// 0x00
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u_int8_t unknown_07;
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// 0x00
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u_int8_t unknown_08;
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// No idea why two current_temp
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TargetTemp current_temp_aircon;
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// 0x00
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u_int8_t unknown_11;
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// 0x00
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u_int8_t unknown_12;
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// 0x00
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u_int8_t unknown_13;
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// 0x00
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u_int8_t unknown_14;
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// 0x00
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u_int8_t unknown_15;
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// 0x00
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u_int8_t unknown_16;
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TargetTemp current_temp_room;
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} __attribute__((packed));
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// TODO
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struct StatusFrameAirconResponse { // NOLINT(altera-struct-pack-align)
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// Mode? 00 - OFF, 04 - AC Ventilation, 05 - AC Cooling
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u_int8_t unknown_01;
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// 0x00
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u_int8_t unknown_02;
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// 0x71
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u_int8_t unknown_03;
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// 0x01
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u_int8_t unknown_04;
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TargetTemp target_temp_room;
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// 0x00
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u_int8_t unknown_07;
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// 0x00
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u_int8_t unknown_08;
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// No idea why two current_temp
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TargetTemp current_temp_aircon;
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// 0x00
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u_int8_t unknown_11;
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// 0x00
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u_int8_t unknown_12;
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// 0x00
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u_int8_t unknown_13;
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// 0x00
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u_int8_t unknown_14;
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// 0x00
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u_int8_t unknown_15;
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// 0x00
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u_int8_t unknown_16;
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TargetTemp current_temp_room;
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} __attribute__((packed));
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// Length 18 (0x12)
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// TODO
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struct StatusFrameAircon2 { // NOLINT(altera-struct-pack-align)
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u_int8_t unknown_01; // 0x01
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u_int8_t unknown_02; // 0x00
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u_int8_t unknown_03; // 0x01
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u_int8_t unknown_04; // 0x00
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u_int8_t unknown_05; // 0x00
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u_int8_t unknown_06; // 0x00
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u_int8_t unknown_07; // 0x00
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u_int8_t unknown_08; // 0x00
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u_int8_t unknown_09; // 0x00
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u_int8_t unknown_10; // 0x00
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u_int8_t unknown_11; // 0x00
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u_int8_t unknown_12; // 0x00
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u_int8_t unknown_13; // 0x00
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u_int8_t unknown_14; // 0x00
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TargetTemp current_temp;
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TargetTemp target_temp;
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} __attribute__((packed));
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// Length 22 (0x16)
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// TODO
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struct StatusFrameAirconInit { // NOLINT(altera-struct-pack-align)
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u_int8_t unknown_01; // 0x00
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u_int8_t unknown_02; // 0x00
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u_int8_t unknown_03; // 0x71
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u_int8_t unknown_04; // 0x01
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u_int8_t unknown_05; // 0x00
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u_int8_t unknown_06; // 0x00
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u_int8_t unknown_07; // 0x00
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u_int8_t unknown_08; // 0x00
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u_int8_t unknown_09; // 0x00
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u_int8_t unknown_10; // 0x00
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u_int8_t unknown_11; // 0x00
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|
u_int8_t unknown_12; // 0x00
|
|
u_int8_t unknown_13; // 0x00
|
|
u_int8_t unknown_14; // 0x00
|
|
u_int8_t unknown_15; // 0x00
|
|
u_int8_t unknown_16; // 0x00
|
|
u_int8_t unknown_17; // 0x00
|
|
u_int8_t unknown_18; // 0x00
|
|
u_int8_t unknown_19; // 0x00
|
|
u_int8_t unknown_20; // 0x00
|
|
u_int8_t unknown_21; // 0x00
|
|
u_int8_t unknown_22; // 0x00
|
|
} __attribute__((packed));
|
|
|
|
// Length 20 (0x14)
|
|
// TODO
|
|
struct StatusFrameAirconInit2 { // NOLINT(altera-struct-pack-align)
|
|
u_int8_t unknown_01; // 0x01
|
|
u_int8_t unknown_02; // 0x00
|
|
u_int8_t unknown_03; // 0x01
|
|
u_int8_t unknown_04; // 0x00
|
|
u_int8_t unknown_05; // 0x00
|
|
u_int8_t unknown_06; // 0x00
|
|
u_int8_t unknown_07; // 0x00
|
|
u_int8_t unknown_08; // 0x00
|
|
u_int8_t unknown_09; // 0x00
|
|
u_int8_t unknown_10; // 0x00
|
|
u_int8_t unknown_11; // 0x00
|
|
u_int8_t unknown_12; // 0x00
|
|
u_int8_t unknown_13; // 0x00
|
|
u_int8_t unknown_14; // 0x00
|
|
u_int8_t unknown_15; // 0x00
|
|
u_int8_t unknown_16; // 0x00
|
|
u_int8_t unknown_17; // 0x00
|
|
u_int8_t unknown_18; // 0x00
|
|
u_int8_t unknown_19; // 0x00
|
|
u_int8_t unknown_20; // 0x00
|
|
} __attribute__((packed));
|
|
|
|
union StatusFrame { // NOLINT(altera-struct-pack-align)
|
|
u_int8_t raw[41];
|
|
struct inner { // NOLINT(altera-struct-pack-align)
|
|
StatusFrameHeader genericHeader;
|
|
union { // NOLINT(altera-struct-pack-align)
|
|
StatusFrameHeater heater;
|
|
StatusFrameHeaterResponse heaterResponse;
|
|
StatusFrameTimer timer;
|
|
StatusFrameTimerResponse timerResponse;
|
|
StatusFrameResponseAck responseAck;
|
|
StatusFrameClock clock;
|
|
StatusFrameConfig config;
|
|
StatusFrameDevice device;
|
|
StatusFrameAircon aircon;
|
|
StatusFrameAirconResponse airconResponse;
|
|
StatusFrameAirconInit airconInit;
|
|
StatusFrameAircon2 aircon2;
|
|
StatusFrameAirconInit2 airconInit2;
|
|
} __attribute__((packed));
|
|
} inner;
|
|
} __attribute__((packed));
|
|
|
|
struct StatusFrameListener {
|
|
std::function<void(const StatusFrameHeater *)> on_heater_change = nullptr;
|
|
std::function<void(const StatusFrameTimer *)> on_timer_change = nullptr;
|
|
std::function<void(const StatusFrameClock *)> on_clock_change = nullptr;
|
|
std::function<void(const StatusFrameConfig *)> on_config_change = nullptr;
|
|
};
|
|
|
|
class TrumaiNetBoxApp : public LinBusProtocol {
|
|
public:
|
|
TrumaiNetBoxApp(u_int8_t expected_listener_count);
|
|
|
|
void update() override;
|
|
|
|
const std::array<u_int8_t, 4> lin_identifier() override;
|
|
void lin_heartbeat() override;
|
|
void lin_reset_device() override;
|
|
|
|
bool get_status_heater_valid() { return this->status_heater_valid_; }
|
|
const StatusFrameHeater *get_status_heater() { return &this->status_heater_; }
|
|
void register_listener(const std::function<void(const StatusFrameHeater *)> &func);
|
|
|
|
bool get_status_timer_valid() { return this->status_timer_valid_; }
|
|
const StatusFrameTimer *get_status_timer() { return &this->status_timer_; }
|
|
void register_listener(const std::function<void(const StatusFrameTimer *)> &func);
|
|
|
|
bool get_status_clock_valid() { return this->status_clock_valid_; }
|
|
const StatusFrameClock *get_status_clock() { return &this->status_clock_; }
|
|
void register_listener(const std::function<void(const StatusFrameClock *)> &func);
|
|
|
|
bool get_status_config_valid() { return this->status_config_valid_; }
|
|
const StatusFrameConfig *get_status_config() { return &this->status_config_; }
|
|
void register_listener(const std::function<void(const StatusFrameConfig *)> &func);
|
|
|
|
bool truma_heater_can_update() { return this->status_heater_valid_; }
|
|
StatusFrameHeaterResponse *update_heater_prepare();
|
|
void update_heater_submit() { this->update_status_heater_unsubmitted_ = true; }
|
|
|
|
bool truma_aircon_can_update() { return this->status_aircon_valid_; }
|
|
StatusFrameAirconResponse *update_aircon_prepare();
|
|
void update_aircon_submit() { this->update_status_aircon_unsubmitted_ = true; }
|
|
|
|
bool truma_timer_can_update() { return this->status_timer_valid_; }
|
|
StatusFrameTimerResponse *update_timer_prepare();
|
|
void update_timer_submit() { this->update_status_timer_unsubmitted_ = true; }
|
|
|
|
int64_t get_last_cp_plus_request() { return this->device_registered_; }
|
|
|
|
// Automation
|
|
void add_on_heater_message_callback(std::function<void(const StatusFrameHeater *)> callback) {
|
|
this->state_heater_callback_.add(std::move(callback));
|
|
}
|
|
bool action_heater_room(u_int8_t temperature, HeatingMode mode = HeatingMode::HEATING_MODE_OFF);
|
|
bool action_heater_water(u_int8_t temperature);
|
|
bool action_heater_water(TargetTemp temperature);
|
|
bool action_heater_electric_power_level(u_int16_t value);
|
|
bool action_heater_energy_mix(EnergyMix energy_mix,
|
|
ElectricPowerLevel el_power_level = ElectricPowerLevel::ELECTRIC_POWER_LEVEL_0);
|
|
bool action_timer_disable();
|
|
bool action_timer_activate(u_int16_t start, u_int16_t stop, u_int8_t room_temperature,
|
|
HeatingMode mode = HeatingMode::HEATING_MODE_OFF, u_int8_t water_temperature = 0,
|
|
EnergyMix energy_mix = EnergyMix::ENERGY_MIX_NONE,
|
|
ElectricPowerLevel el_power_level = ElectricPowerLevel::ELECTRIC_POWER_LEVEL_0);
|
|
|
|
#ifdef USE_TIME
|
|
void set_time(time::RealTimeClock *time) { time_ = time; }
|
|
bool truma_clock_can_update() { return this->status_clock_valid_; }
|
|
void update_clock_submit() { this->update_status_clock_unsubmitted_ = true; }
|
|
bool action_write_time();
|
|
#endif // USE_TIME
|
|
|
|
protected:
|
|
// Truma CP Plus needs init (reset). This device is not registered.
|
|
uint32_t device_registered_ = 0;
|
|
uint32_t init_requested_ = 0;
|
|
uint32_t init_recieved_ = 0;
|
|
u_int8_t message_counter = 1;
|
|
|
|
// Truma heater conected to CP Plus.
|
|
TRUMA_DEVICE heater_device_ = TRUMA_DEVICE::HEATER_COMBI4;
|
|
TRUMA_DEVICE aircon_device_ = TRUMA_DEVICE::UNKNOWN;
|
|
|
|
std::vector<StatusFrameListener> listeners_heater_;
|
|
CallbackManager<void(const StatusFrameHeater *)> state_heater_callback_{};
|
|
|
|
bool status_heater_valid_ = false;
|
|
// Value has changed notify listeners.
|
|
bool status_heater_updated_ = false;
|
|
StatusFrameHeater status_heater_;
|
|
|
|
bool status_aircon_valid_ = false;
|
|
// Value has changed notify listeners.
|
|
bool status_aircon_updated_ = false;
|
|
StatusFrameAircon status_aircon_;
|
|
|
|
bool status_timer_valid_ = false;
|
|
// Value has changed notify listeners.
|
|
bool status_timer_updated_ = false;
|
|
StatusFrameTimer status_timer_;
|
|
|
|
bool status_clock_valid_ = false;
|
|
// Value has changed notify listeners.
|
|
bool status_clock_updated_ = false;
|
|
StatusFrameClock status_clock_;
|
|
|
|
bool status_config_valid_ = false;
|
|
// Value has changed notify listeners.
|
|
bool status_config_updated_ = false;
|
|
StatusFrameConfig status_config_;
|
|
|
|
// last time CP plus was informed I got an update msg.
|
|
uint32_t update_time_ = 0;
|
|
// Prepared means `update_status_heater_` was copied from `status_heater_`.
|
|
bool update_status_heater_prepared_ = false;
|
|
// Prepared means an update is already awating fetch from CP plus.
|
|
bool update_status_heater_unsubmitted_ = false;
|
|
// I have submitted my update request to CP plus, but I have not recieved an update with new heater values from CP
|
|
// plus.
|
|
bool update_status_heater_stale_ = false;
|
|
StatusFrameHeaterResponse update_status_heater_;
|
|
|
|
bool update_status_aircon_prepared_ = false;
|
|
bool update_status_aircon_unsubmitted_ = false;
|
|
bool update_status_aircon_stale_ = false;
|
|
StatusFrameAirconResponse update_status_aircon_;
|
|
|
|
// Prepared means `update_status_timer_` was copied from `status_timer_`.
|
|
bool update_status_timer_prepared_ = false;
|
|
// Prepared means an update is already awating fetch from CP plus.
|
|
bool update_status_timer_unsubmitted_ = false;
|
|
// I have submitted my update request to CP plus, but I have not recieved an update with new timer values from CP
|
|
// plus.
|
|
bool update_status_timer_stale_ = false;
|
|
StatusFrameTimerResponse update_status_timer_;
|
|
|
|
#ifdef USE_TIME
|
|
time::RealTimeClock *time_ = nullptr;
|
|
|
|
// The behaviour of `update_status_clock_unsubmitted_` is special.
|
|
// Just an update is marked. The actual package is prepared when CP Plus asks for the data in the
|
|
// `lin_multiframe_recieved` method.
|
|
bool update_status_clock_unsubmitted_ = false;
|
|
|
|
// Mark if the initial clock sync was done.
|
|
bool update_status_clock_done = false;
|
|
#else
|
|
const bool update_status_clock_unsubmitted_ = false;
|
|
#endif // USE_TIME
|
|
|
|
bool answer_lin_order_(const u_int8_t pid) override;
|
|
|
|
bool lin_read_field_by_identifier_(u_int8_t identifier, std::array<u_int8_t, 5> *response) override;
|
|
const u_int8_t *lin_multiframe_recieved(const u_int8_t *message, const u_int8_t message_len,
|
|
u_int8_t *return_len) override;
|
|
|
|
bool has_update_to_submit_();
|
|
};
|
|
|
|
} // namespace truma_inetbox
|
|
} // namespace esphome
|