Merge remote-tracking branch 'origin/dev' into nrf52_core

This commit is contained in:
Tomasz Duda 2024-08-13 07:16:01 +02:00
commit 04e3acbb14
23 changed files with 294 additions and 8 deletions

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@ -454,6 +454,7 @@ esphome/components/wl_134/* @hobbypunk90
esphome/components/x9c/* @EtienneMD esphome/components/x9c/* @EtienneMD
esphome/components/xgzp68xx/* @gcormier esphome/components/xgzp68xx/* @gcormier
esphome/components/xiaomi_hhccjcy10/* @fariouche esphome/components/xiaomi_hhccjcy10/* @fariouche
esphome/components/xiaomi_lywsd02mmc/* @juanluss31
esphome/components/xiaomi_lywsd03mmc/* @ahpohl esphome/components/xiaomi_lywsd03mmc/* @ahpohl
esphome/components/xiaomi_mhoc303/* @drug123 esphome/components/xiaomi_mhoc303/* @drug123
esphome/components/xiaomi_mhoc401/* @vevsvevs esphome/components/xiaomi_mhoc401/* @vevsvevs

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@ -686,6 +686,7 @@ message SubscribeHomeAssistantStateResponse {
option (source) = SOURCE_SERVER; option (source) = SOURCE_SERVER;
string entity_id = 1; string entity_id = 1;
string attribute = 2; string attribute = 2;
bool once = 3;
} }
message HomeAssistantStateResponse { message HomeAssistantStateResponse {

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@ -1335,6 +1335,9 @@ void APIConnection::update_command(const UpdateCommandRequest &msg) {
case enums::UPDATE_COMMAND_CHECK: case enums::UPDATE_COMMAND_CHECK:
update->check(); update->check();
break; break;
case enums::UPDATE_COMMAND_NONE:
ESP_LOGE(TAG, "UPDATE_COMMAND_NONE not handled. Check client is sending the correct command");
break;
default: default:
ESP_LOGW(TAG, "Unknown update command: %" PRIu32, msg.command); ESP_LOGW(TAG, "Unknown update command: %" PRIu32, msg.command);
break; break;

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@ -3109,6 +3109,16 @@ void SubscribeHomeAssistantStatesRequest::dump_to(std::string &out) const {
out.append("SubscribeHomeAssistantStatesRequest {}"); out.append("SubscribeHomeAssistantStatesRequest {}");
} }
#endif #endif
bool SubscribeHomeAssistantStateResponse::decode_varint(uint32_t field_id, ProtoVarInt value) {
switch (field_id) {
case 3: {
this->once = value.as_bool();
return true;
}
default:
return false;
}
}
bool SubscribeHomeAssistantStateResponse::decode_length(uint32_t field_id, ProtoLengthDelimited value) { bool SubscribeHomeAssistantStateResponse::decode_length(uint32_t field_id, ProtoLengthDelimited value) {
switch (field_id) { switch (field_id) {
case 1: { case 1: {
@ -3126,6 +3136,7 @@ bool SubscribeHomeAssistantStateResponse::decode_length(uint32_t field_id, Proto
void SubscribeHomeAssistantStateResponse::encode(ProtoWriteBuffer buffer) const { void SubscribeHomeAssistantStateResponse::encode(ProtoWriteBuffer buffer) const {
buffer.encode_string(1, this->entity_id); buffer.encode_string(1, this->entity_id);
buffer.encode_string(2, this->attribute); buffer.encode_string(2, this->attribute);
buffer.encode_bool(3, this->once);
} }
#ifdef HAS_PROTO_MESSAGE_DUMP #ifdef HAS_PROTO_MESSAGE_DUMP
void SubscribeHomeAssistantStateResponse::dump_to(std::string &out) const { void SubscribeHomeAssistantStateResponse::dump_to(std::string &out) const {
@ -3138,6 +3149,10 @@ void SubscribeHomeAssistantStateResponse::dump_to(std::string &out) const {
out.append(" attribute: "); out.append(" attribute: ");
out.append("'").append(this->attribute).append("'"); out.append("'").append(this->attribute).append("'");
out.append("\n"); out.append("\n");
out.append(" once: ");
out.append(YESNO(this->once));
out.append("\n");
out.append("}"); out.append("}");
} }
#endif #endif

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@ -836,6 +836,7 @@ class SubscribeHomeAssistantStateResponse : public ProtoMessage {
public: public:
std::string entity_id{}; std::string entity_id{};
std::string attribute{}; std::string attribute{};
bool once{false};
void encode(ProtoWriteBuffer buffer) const override; void encode(ProtoWriteBuffer buffer) const override;
#ifdef HAS_PROTO_MESSAGE_DUMP #ifdef HAS_PROTO_MESSAGE_DUMP
void dump_to(std::string &out) const override; void dump_to(std::string &out) const override;
@ -843,6 +844,7 @@ class SubscribeHomeAssistantStateResponse : public ProtoMessage {
protected: protected:
bool decode_length(uint32_t field_id, ProtoLengthDelimited value) override; bool decode_length(uint32_t field_id, ProtoLengthDelimited value) override;
bool decode_varint(uint32_t field_id, ProtoVarInt value) override;
}; };
class HomeAssistantStateResponse : public ProtoMessage { class HomeAssistantStateResponse : public ProtoMessage {
public: public:

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@ -359,8 +359,18 @@ void APIServer::subscribe_home_assistant_state(std::string entity_id, optional<s
.entity_id = std::move(entity_id), .entity_id = std::move(entity_id),
.attribute = std::move(attribute), .attribute = std::move(attribute),
.callback = std::move(f), .callback = std::move(f),
.once = false,
}); });
} }
void APIServer::get_home_assistant_state(std::string entity_id, optional<std::string> attribute,
std::function<void(std::string)> f) {
this->state_subs_.push_back(HomeAssistantStateSubscription{
.entity_id = std::move(entity_id),
.attribute = std::move(attribute),
.callback = std::move(f),
.once = true,
});
};
const std::vector<APIServer::HomeAssistantStateSubscription> &APIServer::get_state_subs() const { const std::vector<APIServer::HomeAssistantStateSubscription> &APIServer::get_state_subs() const {
return this->state_subs_; return this->state_subs_;
} }

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@ -112,10 +112,13 @@ class APIServer : public Component, public Controller {
std::string entity_id; std::string entity_id;
optional<std::string> attribute; optional<std::string> attribute;
std::function<void(std::string)> callback; std::function<void(std::string)> callback;
bool once;
}; };
void subscribe_home_assistant_state(std::string entity_id, optional<std::string> attribute, void subscribe_home_assistant_state(std::string entity_id, optional<std::string> attribute,
std::function<void(std::string)> f); std::function<void(std::string)> f);
void get_home_assistant_state(std::string entity_id, optional<std::string> attribute,
std::function<void(std::string)> f);
const std::vector<HomeAssistantStateSubscription> &get_state_subs() const; const std::vector<HomeAssistantStateSubscription> &get_state_subs() const;
const std::vector<UserServiceDescriptor *> &get_user_services() const { return this->user_services_; } const std::vector<UserServiceDescriptor *> &get_user_services() const { return this->user_services_; }

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@ -36,7 +36,7 @@ enum GrowCommand {
LOAD = 0x07, LOAD = 0x07,
UPLOAD = 0x08, UPLOAD = 0x08,
DELETE = 0x0C, DELETE = 0x0C,
DELETE_ALL = 0x0D, // EMPTY DELETE_ALL = 0x0D, // aka EMPTY
READ_SYS_PARAM = 0x0F, READ_SYS_PARAM = 0x0F,
SET_PASSWORD = 0x12, SET_PASSWORD = 0x12,
VERIFY_PASSWORD = 0x13, VERIFY_PASSWORD = 0x13,

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@ -80,8 +80,8 @@ class HaierClimateBase : public esphome::Component,
const char *phase_to_string_(ProtocolPhases phase); const char *phase_to_string_(ProtocolPhases phase);
virtual void set_handlers() = 0; virtual void set_handlers() = 0;
virtual void process_phase(std::chrono::steady_clock::time_point now) = 0; virtual void process_phase(std::chrono::steady_clock::time_point now) = 0;
virtual haier_protocol::HaierMessage get_control_message_() = 0; virtual haier_protocol::HaierMessage get_control_message() = 0; // NOLINT(readability-identifier-naming)
virtual haier_protocol::HaierMessage get_power_message_(bool state) = 0; virtual haier_protocol::HaierMessage get_power_message(bool state) = 0; // NOLINT(readability-identifier-naming)
virtual void initialization(){}; virtual void initialization(){};
virtual bool prepare_pending_action(); virtual bool prepare_pending_action();
virtual void process_protocol_reset(); virtual void process_protocol_reset();

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@ -49,8 +49,8 @@ bool parse_xiaomi_value(uint16_t value_type, const uint8_t *data, uint8_t value_
const uint16_t conductivity = encode_uint16(data[1], data[0]); const uint16_t conductivity = encode_uint16(data[1], data[0]);
result.conductivity = conductivity; result.conductivity = conductivity;
} }
// battery, 1 byte, 8-bit unsigned integer, 1 % // battery / MiaoMiaoce battery, 1 byte, 8-bit unsigned integer, 1 %
else if ((value_type == 0x100A) && (value_length == 1)) { else if ((value_type == 0x100A || value_type == 0x4803) && (value_length == 1)) {
result.battery_level = data[0]; result.battery_level = data[0];
} }
// temperature + humidity, 4 bytes, 16-bit signed integer (LE) each, 0.1 °C, 0.1 % // temperature + humidity, 4 bytes, 16-bit signed integer (LE) each, 0.1 °C, 0.1 %
@ -80,6 +80,17 @@ bool parse_xiaomi_value(uint16_t value_type, const uint8_t *data, uint8_t value_
result.has_motion = !idle_time; result.has_motion = !idle_time;
} else if ((value_type == 0x1018) && (value_length == 1)) { } else if ((value_type == 0x1018) && (value_length == 1)) {
result.is_light = data[0]; result.is_light = data[0];
}
// MiaoMiaoce temperature, 4 bytes, float, 0.1 °C
else if ((value_type == 0x4C01) && (value_length == 4)) {
const uint32_t int_number = encode_uint32(data[3], data[2], data[1], data[0]);
float temperature;
std::memcpy(&temperature, &int_number, sizeof(temperature));
result.temperature = temperature;
}
// MiaoMiaoce humidity, 1 byte, 8-bit unsigned integer, 1 %
else if ((value_type == 0x4C02) && (value_length == 1)) {
result.humidity = data[0];
} else { } else {
return false; return false;
} }
@ -111,7 +122,8 @@ bool parse_xiaomi_message(const std::vector<uint8_t> &message, XiaomiParseResult
} }
while (payload_length > 3) { while (payload_length > 3) {
if (payload[payload_offset + 1] != 0x10 && payload[payload_offset + 1] != 0x00) { if (payload[payload_offset + 1] != 0x10 && payload[payload_offset + 1] != 0x00 &&
payload[payload_offset + 1] != 0x4C && payload[payload_offset + 1] != 0x48) {
ESP_LOGVV(TAG, "parse_xiaomi_message(): fixed byte not found, stop parsing residual data."); ESP_LOGVV(TAG, "parse_xiaomi_message(): fixed byte not found, stop parsing residual data.");
break; break;
} }
@ -190,6 +202,11 @@ optional<XiaomiParseResult> parse_xiaomi_header(const esp32_ble_tracker::Service
} else if (device_uuid == 0x045b) { // rectangular body, e-ink display } else if (device_uuid == 0x045b) { // rectangular body, e-ink display
result.type = XiaomiParseResult::TYPE_LYWSD02; result.type = XiaomiParseResult::TYPE_LYWSD02;
result.name = "LYWSD02"; result.name = "LYWSD02";
} else if (device_uuid == 0x2542) { // rectangular body, e-ink display — with bindkeys
result.type = XiaomiParseResult::TYPE_LYWSD02MMC;
result.name = "LYWSD02MMC";
if (raw.size() == 19)
result.raw_offset -= 6;
} else if (device_uuid == 0x040a) { // Mosquito Repellent Smart Version } else if (device_uuid == 0x040a) { // Mosquito Repellent Smart Version
result.type = XiaomiParseResult::TYPE_WX08ZM; result.type = XiaomiParseResult::TYPE_WX08ZM;
result.name = "WX08ZM"; result.name = "WX08ZM";

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@ -17,6 +17,7 @@ struct XiaomiParseResult {
TYPE_HHCCPOT002, TYPE_HHCCPOT002,
TYPE_LYWSDCGQ, TYPE_LYWSDCGQ,
TYPE_LYWSD02, TYPE_LYWSD02,
TYPE_LYWSD02MMC,
TYPE_CGG1, TYPE_CGG1,
TYPE_LYWSD03MMC, TYPE_LYWSD03MMC,
TYPE_CGD1, TYPE_CGD1,

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@ -0,0 +1,77 @@
import esphome.codegen as cg
import esphome.config_validation as cv
from esphome.components import sensor, esp32_ble_tracker
from esphome.const import (
CONF_BATTERY_LEVEL,
CONF_HUMIDITY,
CONF_MAC_ADDRESS,
CONF_TEMPERATURE,
DEVICE_CLASS_TEMPERATURE,
ENTITY_CATEGORY_DIAGNOSTIC,
STATE_CLASS_MEASUREMENT,
UNIT_CELSIUS,
UNIT_PERCENT,
DEVICE_CLASS_HUMIDITY,
DEVICE_CLASS_BATTERY,
CONF_ID,
CONF_BINDKEY,
)
AUTO_LOAD = ["xiaomi_ble"]
CODEOWNERS = ["@juanluss31"]
DEPENDENCIES = ["esp32_ble_tracker"]
xiaomi_lywsd02mmc_ns = cg.esphome_ns.namespace("xiaomi_lywsd02mmc")
XiaomiLYWSD02MMC = xiaomi_lywsd02mmc_ns.class_(
"XiaomiLYWSD02MMC", esp32_ble_tracker.ESPBTDeviceListener, cg.Component
)
CONFIG_SCHEMA = (
cv.Schema(
{
cv.GenerateID(): cv.declare_id(XiaomiLYWSD02MMC),
cv.Required(CONF_MAC_ADDRESS): cv.mac_address,
cv.Required(CONF_BINDKEY): cv.bind_key,
cv.Optional(CONF_TEMPERATURE): sensor.sensor_schema(
unit_of_measurement=UNIT_CELSIUS,
accuracy_decimals=1,
device_class=DEVICE_CLASS_TEMPERATURE,
state_class=STATE_CLASS_MEASUREMENT,
),
cv.Optional(CONF_HUMIDITY): sensor.sensor_schema(
unit_of_measurement=UNIT_PERCENT,
accuracy_decimals=0,
device_class=DEVICE_CLASS_HUMIDITY,
state_class=STATE_CLASS_MEASUREMENT,
),
cv.Optional(CONF_BATTERY_LEVEL): sensor.sensor_schema(
unit_of_measurement=UNIT_PERCENT,
accuracy_decimals=0,
device_class=DEVICE_CLASS_BATTERY,
state_class=STATE_CLASS_MEASUREMENT,
entity_category=ENTITY_CATEGORY_DIAGNOSTIC,
),
}
)
.extend(esp32_ble_tracker.ESP_BLE_DEVICE_SCHEMA)
.extend(cv.COMPONENT_SCHEMA)
)
async def to_code(config):
var = cg.new_Pvariable(config[CONF_ID])
await cg.register_component(var, config)
await esp32_ble_tracker.register_ble_device(var, config)
cg.add(var.set_address(config[CONF_MAC_ADDRESS].as_hex))
cg.add(var.set_bindkey(config[CONF_BINDKEY]))
if temperature_config := config.get(CONF_TEMPERATURE):
sens = await sensor.new_sensor(temperature_config)
cg.add(var.set_temperature(sens))
if humidity_config := config.get(CONF_HUMIDITY):
sens = await sensor.new_sensor(humidity_config)
cg.add(var.set_humidity(sens))
if battery_level_config := config.get(CONF_BATTERY_LEVEL):
sens = await sensor.new_sensor(battery_level_config)
cg.add(var.set_battery_level(sens))

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@ -0,0 +1,73 @@
#include "xiaomi_lywsd02mmc.h"
#include "esphome/core/log.h"
#ifdef USE_ESP32
namespace esphome {
namespace xiaomi_lywsd02mmc {
static const char *const TAG = "xiaomi_lywsd02mmc";
void XiaomiLYWSD02MMC::dump_config() {
ESP_LOGCONFIG(TAG, "Xiaomi LYWSD02MMC");
ESP_LOGCONFIG(TAG, " Bindkey: %s", format_hex_pretty(this->bindkey_, 16).c_str());
LOG_SENSOR(" ", "Temperature", this->temperature_);
LOG_SENSOR(" ", "Humidity", this->humidity_);
LOG_SENSOR(" ", "Battery Level", this->battery_level_);
}
bool XiaomiLYWSD02MMC::parse_device(const esp32_ble_tracker::ESPBTDevice &device) {
if (device.address_uint64() != this->address_) {
ESP_LOGVV(TAG, "parse_device(): unknown MAC address.");
return false;
}
ESP_LOGVV(TAG, "parse_device(): MAC address %s found.", device.address_str().c_str());
bool success = false;
for (auto &service_data : device.get_service_datas()) {
auto res = xiaomi_ble::parse_xiaomi_header(service_data);
if (!res.has_value()) {
continue;
}
if (res->is_duplicate) {
continue;
}
if (res->has_encryption &&
(!(xiaomi_ble::decrypt_xiaomi_payload(const_cast<std::vector<uint8_t> &>(service_data.data), this->bindkey_,
this->address_)))) {
continue;
}
if (!(xiaomi_ble::parse_xiaomi_message(service_data.data, *res))) {
continue;
}
if (!(xiaomi_ble::report_xiaomi_results(res, device.address_str()))) {
continue;
}
if (res->temperature.has_value() && this->temperature_ != nullptr)
this->temperature_->publish_state(*res->temperature);
if (res->humidity.has_value() && this->humidity_ != nullptr)
this->humidity_->publish_state(*res->humidity);
if (res->battery_level.has_value() && this->battery_level_ != nullptr)
this->battery_level_->publish_state(*res->battery_level);
success = true;
}
return success;
}
void XiaomiLYWSD02MMC::set_bindkey(const std::string &bindkey) {
memset(this->bindkey_, 0, 16);
if (bindkey.size() != 32) {
return;
}
char temp[3] = {0};
for (int i = 0; i < 16; i++) {
strncpy(temp, &(bindkey.c_str()[i * 2]), 2);
this->bindkey_[i] = std::strtoul(temp, nullptr, 16);
}
}
} // namespace xiaomi_lywsd02mmc
} // namespace esphome
#endif

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@ -0,0 +1,37 @@
#pragma once
#include "esphome/core/component.h"
#include "esphome/components/sensor/sensor.h"
#include "esphome/components/esp32_ble_tracker/esp32_ble_tracker.h"
#include "esphome/components/xiaomi_ble/xiaomi_ble.h"
#ifdef USE_ESP32
namespace esphome {
namespace xiaomi_lywsd02mmc {
class XiaomiLYWSD02MMC : public Component, public esp32_ble_tracker::ESPBTDeviceListener {
public:
void set_address(uint64_t address) { this->address_ = address; }
void set_bindkey(const std::string &bindkey);
bool parse_device(const esp32_ble_tracker::ESPBTDevice &device) override;
void dump_config() override;
float get_setup_priority() const override { return setup_priority::DATA; }
void set_temperature(sensor::Sensor *temperature) { this->temperature_ = temperature; }
void set_humidity(sensor::Sensor *humidity) { this->humidity_ = humidity; }
void set_battery_level(sensor::Sensor *battery_level) { this->battery_level_ = battery_level; }
protected:
uint64_t address_;
uint8_t bindkey_[16];
sensor::Sensor *temperature_{nullptr};
sensor::Sensor *humidity_{nullptr};
sensor::Sensor *battery_level_{nullptr};
};
} // namespace xiaomi_lywsd02mmc
} // namespace esphome
#endif

28
script/setup.bat Normal file
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@ -0,0 +1,28 @@
@echo off
if defined DEVCONTAINER goto :install
if defined VIRTUAL_ENV goto :install
if defined ESPHOME_NO_VENV goto :install
echo Starting the Virtual Environment
python -m venv venv
call venv/Scripts/activate
echo Running the Virtual Environment
:install
echo Installing required packages...
python.exe -m pip install --upgrade pip
pip3 install -r requirements.txt -r requirements_optional.txt -r requirements_test.txt -r requirements_dev.txt
pip3 install setuptools wheel
pip3 install -e ".[dev,test,displays]" --config-settings editable_mode=compat
pre-commit install
python script/platformio_install_deps.py platformio.ini --libraries --tools --platforms
echo .
echo .
echo Virtual environment created. Run 'venv/Scripts/activate' to use it.

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@ -1,4 +1,5 @@
<<: !include common.yaml packages:
device_base: !include common.yaml
web_server: web_server:
port: 8080 port: 8080

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@ -1,4 +1,5 @@
<<: !include common.yaml packages:
device_base: !include common.yaml
web_server: web_server:
port: 8080 port: 8080

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@ -0,0 +1,12 @@
esp32_ble_tracker:
sensor:
- platform: xiaomi_lywsd02mmc
mac_address: A4:C1:38:54:5E:18
bindkey: 2529d8e0d23150a588675cc54ad48400
temperature:
name: Xiaomi LYWSD02MMC Temperature
humidity:
name: Xiaomi LYWSD02MMC Humidity
battery_level:
name: Xiaomi LYWSD02MMC Battery Level

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@ -0,0 +1 @@
<<: !include common.yaml

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@ -0,0 +1 @@
<<: !include common.yaml

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@ -0,0 +1 @@
<<: !include common.yaml

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@ -0,0 +1 @@
<<: !include common.yaml