// -----------------------------------------------------------------------------
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// SDS011 dust sensor
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// Based on: https://github.com/ricki-z/SDS011
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//
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// Uses SoftwareSerial library
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// Copyright (C) 2018 by Lucas Pleß <hello at lucas-pless dot com>
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// -----------------------------------------------------------------------------
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#if SENSOR_SUPPORT && SDS011_SUPPORT
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#pragma once
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#include <Arduino.h>
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#include <SoftwareSerial.h>
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#include "BaseSensor.h"
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class SDS011Sensor : public BaseSensor {
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public:
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// ---------------------------------------------------------------------
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// Public
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// ---------------------------------------------------------------------
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SDS011Sensor() {
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_count = 2;
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_sensor_id = SENSOR_SDS011_ID;
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}
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~SDS011Sensor() {
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if (_serial) delete _serial;
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}
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// ---------------------------------------------------------------------
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void setRX(unsigned char pin_rx) {
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if (_pin_rx == pin_rx) return;
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_pin_rx = pin_rx;
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_dirty = true;
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}
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void setTX(unsigned char pin_tx) {
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if (_pin_tx == pin_tx) return;
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_pin_tx = pin_tx;
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_dirty = true;
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}
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// ---------------------------------------------------------------------
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unsigned char getRX() {
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return _pin_rx;
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}
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unsigned char getTX() {
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return _pin_tx;
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}
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// ---------------------------------------------------------------------
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// Sensor API
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// ---------------------------------------------------------------------
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// Initialization method, must be idempotent
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void begin() {
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if (!_dirty) return;
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if (_serial) delete _serial;
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_serial = new SoftwareSerial(_pin_rx, _pin_tx);
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_serial->begin(9600);
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_ready = true;
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_dirty = false;
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}
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// Descriptive name of the sensor
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String description() {
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char buffer[28];
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snprintf(buffer, sizeof(buffer), "SDS011 @ SwSerial(%u,%u)", _pin_rx, _pin_tx);
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return String(buffer);
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}
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// Descriptive name of the slot # index
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String slot(unsigned char index) {
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return description();
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};
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// Address of the sensor (it could be the GPIO or I2C address)
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String address(unsigned char index) {
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char buffer[6];
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snprintf(buffer, sizeof(buffer), "%u:%u", _pin_rx, _pin_tx);
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return String(buffer);
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}
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// Type for slot # index
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unsigned char type(unsigned char index) {
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if (index == 0) return MAGNITUDE_PM2dot5;
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if (index == 1) return MAGNITUDE_PM10;
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return MAGNITUDE_NONE;
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}
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void pre() {
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_read();
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}
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// Current value for slot # index
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double value(unsigned char index) {
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if (index == 0) return _p2dot5;
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if (index == 1) return _p10;
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return 0;
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}
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protected:
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// ---------------------------------------------------------------------
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// Protected
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// ---------------------------------------------------------------------
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void _read() {
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byte buffer;
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int value;
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int len = 0;
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int pm10_serial = 0;
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int pm25_serial = 0;
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int checksum_is = 0;
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int checksum_ok = 0;
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while ((_serial->available() > 0) && (_serial->available() >= (10-len))) {
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buffer = _serial->read();
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value = int(buffer);
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switch (len) {
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case (0): if (value != 170) { len = -1; }; break;
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case (1): if (value != 192) { len = -1; }; break;
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case (2): pm25_serial = value; checksum_is = value; break;
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case (3): pm25_serial += (value << 8); checksum_is += value; break;
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case (4): pm10_serial = value; checksum_is += value; break;
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case (5): pm10_serial += (value << 8); checksum_is += value; break;
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case (6): checksum_is += value; break;
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case (7): checksum_is += value; break;
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case (8): if (value == (checksum_is % 256)) { checksum_ok = 1; } else { len = -1; }; break;
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case (9): if (value != 171) { len = -1; }; break;
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}
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len++;
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if (len == 10) {
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if(checksum_ok == 1) {
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_p10 = (float)pm10_serial/10.0;
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_p2dot5 = (float)pm25_serial/10.0;
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len = 0; checksum_ok = 0; pm10_serial = 0.0; pm25_serial = 0.0; checksum_is = 0;
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_error = SENSOR_ERROR_OK;
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} else {
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_error = SENSOR_ERROR_CRC;
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}
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}
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yield();
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}
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}
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double _p2dot5 = 0;
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double _p10 = 0;
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unsigned int _pin_rx;
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unsigned int _pin_tx;
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SoftwareSerial * _serial = NULL;
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};
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#endif // SENSOR_SUPPORT && SDS011_SUPPORT
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