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synced 2024-12-19 16:07:47 +01:00
Fix SGP30 incorrect baseline reading/writing (#936)
* Split the SGP30 baseline into 2 values - According to the SGP30 datasheet, each eCO2 and TVOC baseline is a 2-byte value (MSB first) - The current implementation ignores the MSB of each of the value - Update the schema to allow 2 different baseline values (optional, but both need to be specified for the baseline to apply) * Make both eCO2 and TVOC required if the optional baseline is defined * Make dump_config() looks better
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@ -12,6 +12,8 @@ SGP30Component = sgp30_ns.class_('SGP30Component', cg.PollingComponent, i2c.I2CD
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CONF_ECO2 = 'eco2'
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CONF_TVOC = 'tvoc'
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CONF_BASELINE = 'baseline'
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CONF_ECO2_BASELINE = 'eco2_baseline'
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CONF_TVOC_BASELINE = 'tvoc_baseline'
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CONF_UPTIME = 'uptime'
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CONF_COMPENSATION = 'compensation'
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CONF_HUMIDITY_SOURCE = 'humidity_source'
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@ -22,7 +24,10 @@ CONFIG_SCHEMA = cv.Schema({
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cv.Required(CONF_ECO2): sensor.sensor_schema(UNIT_PARTS_PER_MILLION,
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ICON_PERIODIC_TABLE_CO2, 0),
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cv.Required(CONF_TVOC): sensor.sensor_schema(UNIT_PARTS_PER_BILLION, ICON_RADIATOR, 0),
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cv.Optional(CONF_BASELINE): cv.hex_uint16_t,
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cv.Optional(CONF_BASELINE): cv.Schema({
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cv.Required(CONF_ECO2_BASELINE): cv.hex_uint16_t,
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cv.Required(CONF_TVOC_BASELINE): cv.hex_uint16_t,
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}),
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cv.Optional(CONF_COMPENSATION): cv.Schema({
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cv.Required(CONF_HUMIDITY_SOURCE): cv.use_id(sensor.Sensor),
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cv.Required(CONF_TEMPERATURE_SOURCE): cv.use_id(sensor.Sensor)
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@ -44,7 +49,9 @@ def to_code(config):
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cg.add(var.set_tvoc_sensor(sens))
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if CONF_BASELINE in config:
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cg.add(var.set_baseline(config[CONF_BASELINE]))
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baseline_config = config[CONF_BASELINE]
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cg.add(var.set_eco2_baseline(baseline_config[CONF_ECO2_BASELINE]))
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cg.add(var.set_tvoc_baseline(baseline_config[CONF_TVOC_BASELINE]))
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if CONF_COMPENSATION in config:
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compensation_config = config[CONF_COMPENSATION]
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@ -74,9 +74,9 @@ void SGP30Component::setup() {
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}
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// Sensor baseline reliability timer
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if (this->baseline_ > 0) {
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if (this->eco2_baseline_ > 0 && this->tvoc_baseline_ > 0) {
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this->required_warm_up_time_ = IAQ_BASELINE_WARM_UP_SECONDS_WITH_BASELINE_PROVIDED;
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this->write_iaq_baseline_(this->baseline_);
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this->write_iaq_baseline_(this->eco2_baseline_, this->tvoc_baseline_);
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} else {
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this->required_warm_up_time_ = IAQ_BASELINE_WARM_UP_SECONDS_WITHOUT_BASELINE;
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}
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@ -106,10 +106,10 @@ void SGP30Component::read_iaq_baseline_() {
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return;
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}
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uint8_t eco2baseline = (raw_data[0]);
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uint8_t tvocbaseline = (raw_data[1]);
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uint16_t eco2baseline = (raw_data[0]);
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uint16_t tvocbaseline = (raw_data[1]);
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ESP_LOGI(TAG, "Current eCO2 & TVOC baseline: 0x%04X", uint16_t((eco2baseline << 8) | (tvocbaseline & 0xFF)));
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ESP_LOGI(TAG, "Current eCO2 baseline: 0x%04X, TVOC baseline: 0x%04X", eco2baseline, tvocbaseline);
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this->status_clear_warning();
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});
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} else {
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@ -159,18 +159,19 @@ void SGP30Component::send_env_data_() {
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}
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}
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void SGP30Component::write_iaq_baseline_(uint16_t baseline) {
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uint8_t e_c_o2_baseline = baseline >> 8;
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uint8_t tvoc_baseline = baseline & 0xFF;
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uint8_t data[4];
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void SGP30Component::write_iaq_baseline_(uint16_t eco2_baseline, uint16_t tvoc_baseline) {
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uint8_t data[7];
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data[0] = SGP30_CMD_SET_IAQ_BASELINE & 0xFF;
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data[1] = e_c_o2_baseline;
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data[2] = tvoc_baseline;
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data[3] = sht_crc_(e_c_o2_baseline, tvoc_baseline);
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if (!this->write_bytes(SGP30_CMD_SET_IAQ_BASELINE >> 8, data, 4)) {
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ESP_LOGE(TAG, "Error applying baseline: 0x%04X", baseline);
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data[1] = eco2_baseline >> 8;
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data[2] = eco2_baseline & 0xFF;
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data[3] = sht_crc_(data[1], data[2]);
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data[4] = tvoc_baseline >> 8;
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data[5] = tvoc_baseline & 0xFF;
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data[6] = sht_crc_(data[4], data[5]);
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if (!this->write_bytes(SGP30_CMD_SET_IAQ_BASELINE >> 8, data, 7)) {
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ESP_LOGE(TAG, "Error applying eCO2 baseline: 0x%04X, TVOC baseline: 0x%04X", eco2_baseline, tvoc_baseline);
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} else
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ESP_LOGI(TAG, "Initial baseline 0x%04X applied successfully!", baseline);
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ESP_LOGI(TAG, "Initial eCO2 and TVOC baselines applied successfully!");
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}
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void SGP30Component::dump_config() {
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@ -196,8 +197,13 @@ void SGP30Component::dump_config() {
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}
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} else {
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ESP_LOGCONFIG(TAG, " Serial number: %llu", this->serial_number_);
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ESP_LOGCONFIG(TAG, " Baseline: 0x%04X%s", this->baseline_,
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((this->baseline_ != 0x0000) ? " (enabled)" : " (disabled)"));
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if (this->eco2_baseline_ != 0x0000 && this->tvoc_baseline_ != 0x0000) {
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ESP_LOGCONFIG(TAG, " Baseline:");
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ESP_LOGCONFIG(TAG, " eCO2 Baseline: 0x%04X", this->eco2_baseline_);
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ESP_LOGCONFIG(TAG, " TVOC Baseline: 0x%04X", this->tvoc_baseline_);
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} else {
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ESP_LOGCONFIG(TAG, " Baseline: No baseline configured");
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}
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ESP_LOGCONFIG(TAG, " Warm up time: %lds", this->required_warm_up_time_);
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}
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LOG_UPDATE_INTERVAL(this);
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@ -13,7 +13,8 @@ class SGP30Component : public PollingComponent, public i2c::I2CDevice {
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public:
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void set_eco2_sensor(sensor::Sensor *eco2) { eco2_sensor_ = eco2; }
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void set_tvoc_sensor(sensor::Sensor *tvoc) { tvoc_sensor_ = tvoc; }
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void set_baseline(uint16_t baseline) { baseline_ = baseline; }
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void set_eco2_baseline(uint16_t eco2_baseline) { eco2_baseline_ = eco2_baseline; }
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void set_tvoc_baseline(uint16_t tvoc_baseline) { tvoc_baseline_ = tvoc_baseline; }
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void set_humidity_sensor(sensor::Sensor *humidity) { humidity_sensor_ = humidity; }
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void set_temperature_sensor(sensor::Sensor *temperature) { temperature_sensor_ = temperature; }
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@ -28,7 +29,7 @@ class SGP30Component : public PollingComponent, public i2c::I2CDevice {
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void send_env_data_();
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void read_iaq_baseline_();
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bool is_sensor_baseline_reliable_();
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void write_iaq_baseline_(uint16_t baseline);
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void write_iaq_baseline_(uint16_t eco2_baseline, uint16_t tvoc_baseline);
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uint8_t sht_crc_(uint8_t data1, uint8_t data2);
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uint64_t serial_number_;
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uint16_t featureset_;
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@ -44,7 +45,8 @@ class SGP30Component : public PollingComponent, public i2c::I2CDevice {
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sensor::Sensor *eco2_sensor_{nullptr};
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sensor::Sensor *tvoc_sensor_{nullptr};
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uint16_t baseline_{0x0000};
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uint16_t eco2_baseline_{0x0000};
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uint16_t tvoc_baseline_{0x0000};
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/// Input sensor for humidity and temperature compensation.
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sensor::Sensor *humidity_sensor_{nullptr};
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sensor::Sensor *temperature_sensor_{nullptr};
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