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SPS30 : fix i2c read size (#2866)
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parent
c84efe64d3
commit
14f6ae75ea
2 changed files with 17 additions and 10 deletions
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@ -32,14 +32,11 @@ void SPS30Component::setup() {
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return;
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return;
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}
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}
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uint16_t raw_firmware_version[4];
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if (!this->read_data_(&raw_firmware_version_, 1)) {
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if (!this->read_data_(raw_firmware_version, 4)) {
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this->error_code_ = FIRMWARE_VERSION_READ_FAILED;
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this->error_code_ = FIRMWARE_VERSION_READ_FAILED;
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this->mark_failed();
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this->mark_failed();
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return;
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return;
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}
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}
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ESP_LOGD(TAG, " Firmware version v%0d.%02d", (raw_firmware_version[0] >> 8),
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uint16_t(raw_firmware_version[0] & 0xFF));
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/// Serial number identification
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/// Serial number identification
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if (!this->write_command_(SPS30_CMD_GET_SERIAL_NUMBER)) {
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if (!this->write_command_(SPS30_CMD_GET_SERIAL_NUMBER)) {
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this->error_code_ = SERIAL_NUMBER_REQUEST_FAILED;
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this->error_code_ = SERIAL_NUMBER_REQUEST_FAILED;
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@ -59,6 +56,8 @@ void SPS30Component::setup() {
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this->serial_number_[i * 2 + 1] = uint16_t(uint16_t(raw_serial_number[i] & 0xFF));
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this->serial_number_[i * 2 + 1] = uint16_t(uint16_t(raw_serial_number[i] & 0xFF));
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}
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}
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ESP_LOGD(TAG, " Serial Number: '%s'", this->serial_number_);
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ESP_LOGD(TAG, " Serial Number: '%s'", this->serial_number_);
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this->status_clear_warning();
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this->skipped_data_read_cycles_ = 0;
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this->start_continuous_measurement_();
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this->start_continuous_measurement_();
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});
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});
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}
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}
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@ -93,10 +92,17 @@ void SPS30Component::dump_config() {
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}
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}
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LOG_UPDATE_INTERVAL(this);
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LOG_UPDATE_INTERVAL(this);
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ESP_LOGCONFIG(TAG, " Serial Number: '%s'", this->serial_number_);
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ESP_LOGCONFIG(TAG, " Serial Number: '%s'", this->serial_number_);
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LOG_SENSOR(" ", "PM1.0", this->pm_1_0_sensor_);
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ESP_LOGCONFIG(TAG, " Firmware version v%0d.%0d", (raw_firmware_version_ >> 8),
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LOG_SENSOR(" ", "PM2.5", this->pm_2_5_sensor_);
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uint16_t(raw_firmware_version_ & 0xFF));
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LOG_SENSOR(" ", "PM4", this->pm_4_0_sensor_);
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LOG_SENSOR(" ", "PM1.0 Weight Concentration", this->pm_1_0_sensor_);
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LOG_SENSOR(" ", "PM10", this->pm_10_0_sensor_);
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LOG_SENSOR(" ", "PM2.5 Weight Concentration", this->pm_2_5_sensor_);
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LOG_SENSOR(" ", "PM4 Weight Concentration", this->pm_4_0_sensor_);
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LOG_SENSOR(" ", "PM10 Weight Concentration", this->pm_10_0_sensor_);
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LOG_SENSOR(" ", "PM1.0 Number Concentration", this->pmc_1_0_sensor_);
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LOG_SENSOR(" ", "PM2.5 Number Concentration", this->pmc_2_5_sensor_);
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LOG_SENSOR(" ", "PM4 Number Concentration", this->pmc_4_0_sensor_);
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LOG_SENSOR(" ", "PM10 Number Concentration", this->pmc_10_0_sensor_);
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LOG_SENSOR(" ", "PM typical size", this->pm_size_sensor_);
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}
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}
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void SPS30Component::update() {
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void SPS30Component::update() {
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@ -123,8 +129,8 @@ void SPS30Component::update() {
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return;
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return;
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}
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}
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uint16_t raw_read_status[1];
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uint16_t raw_read_status;
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if (!this->read_data_(raw_read_status, 1) || raw_read_status[0] == 0x00) {
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if (!this->read_data_(&raw_read_status, 1) || raw_read_status == 0x00) {
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ESP_LOGD(TAG, "Sensor measurement not ready yet.");
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ESP_LOGD(TAG, "Sensor measurement not ready yet.");
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this->skipped_data_read_cycles_++;
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this->skipped_data_read_cycles_++;
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/// The following logic is required to address the cases when a sensor is quickly replaced before it's marked
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/// The following logic is required to address the cases when a sensor is quickly replaced before it's marked
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@ -33,6 +33,7 @@ class SPS30Component : public PollingComponent, public i2c::I2CDevice {
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bool read_data_(uint16_t *data, uint8_t len);
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bool read_data_(uint16_t *data, uint8_t len);
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uint8_t sht_crc_(uint8_t data1, uint8_t data2);
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uint8_t sht_crc_(uint8_t data1, uint8_t data2);
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char serial_number_[17] = {0}; /// Terminating NULL character
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char serial_number_[17] = {0}; /// Terminating NULL character
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uint16_t raw_firmware_version_;
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bool start_continuous_measurement_();
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bool start_continuous_measurement_();
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uint8_t skipped_data_read_cycles_ = 0;
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uint8_t skipped_data_read_cycles_ = 0;
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