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MatterTemperatureSensor.cpp
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// Copyright 2024 Espressif Systems (Shanghai) PTE LTD
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
#include <sdkconfig.h>
#ifdef CONFIG_ESP_MATTER_ENABLE_DATA_MODEL
#include <Matter.h>
#include <MatterEndpoints/MatterTemperatureSensor.h>
using namespace esp_matter;
using namespace esp_matter::endpoint;
using namespace chip::app::Clusters;
bool MatterTemperatureSensor::attributeChangeCB(uint16_t endpoint_id, uint32_t cluster_id, uint32_t attribute_id, esp_matter_attr_val_t *val) {
bool ret = true;
if (!started) {
log_e("Matter Temperature Sensor device has not begun.");
return false;
}
log_d("Temperature Sensor Attr update callback: endpoint: %u, cluster: %u, attribute: %u, val: %u", endpoint_id, cluster_id, attribute_id, val->val.u32);
return ret;
}
MatterTemperatureSensor::MatterTemperatureSensor() {}
MatterTemperatureSensor::~MatterTemperatureSensor() {
end();
}
bool MatterTemperatureSensor::begin(int16_t _rawTemperature) {
ArduinoMatter::_init();
temperature_sensor::config_t temperature_sensor_config;
temperature_sensor_config.temperature_measurement.measured_value = _rawTemperature;
temperature_sensor_config.temperature_measurement.min_measured_value = nullptr;
temperature_sensor_config.temperature_measurement.max_measured_value = nullptr;
// endpoint handles can be used to add/modify clusters
endpoint_t *endpoint = temperature_sensor::create(node::get(), &temperature_sensor_config, ENDPOINT_FLAG_NONE, (void *)this);
if (endpoint == nullptr) {
log_e("Failed to create Temperature Sensor endpoint");
return false;
}
rawTemperature = _rawTemperature;
setEndPointId(endpoint::get_id(endpoint));
log_i("Temperature Sensor created with endpoint_id %d", getEndPointId());
started = true;
return true;
}
void MatterTemperatureSensor::end() {
started = false;
}
bool MatterTemperatureSensor::setRawTemperature(int16_t _rawTemperature) {
if (!started) {
log_e("Matter Temperature Sensor device has not begun.");
return false;
}
// avoid processing the a "no-change"
if (rawTemperature == _rawTemperature) {
return true;
}
esp_matter_attr_val_t temperatureVal = esp_matter_invalid(NULL);
if (!getAttributeVal(TemperatureMeasurement::Id, TemperatureMeasurement::Attributes::MeasuredValue::Id, &temperatureVal)) {
log_e("Failed to get Temperature Sensor Attribute.");
return false;
}
if (temperatureVal.val.i16 != _rawTemperature) {
temperatureVal.val.i16 = _rawTemperature;
bool ret;
ret = updateAttributeVal(TemperatureMeasurement::Id, TemperatureMeasurement::Attributes::MeasuredValue::Id, &temperatureVal);
if (!ret) {
log_e("Failed to update Fan Speed Percent Attribute.");
return false;
}
rawTemperature = _rawTemperature;
}
log_v("Temperature Sensor set to %.02f Celcius Degrees", (float)_rawTemperature / 100.00);
return true;
}
#endif /* CONFIG_ESP_MATTER_ENABLE_DATA_MODEL */