2016-12-17 15:03:32 -05:00
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//
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// FILE: DHT2pin.cpp
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// AUTHOR: Rob Tillaart
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2023-01-29 14:16:17 -05:00
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// VERSION: 0.2.0
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// PURPOSE: Experimental DHT _temperature & _humidiy Sensor library for Arduino
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2020-11-27 05:10:47 -05:00
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// URL: https://github.com/RobTillaart/DHT2pin
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// http://arduino.cc/playground/Main/DHTLib
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2022-11-01 15:26:33 -04:00
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2016-12-17 15:03:32 -05:00
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#include "DHT2pin.h"
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2022-11-01 15:26:33 -04:00
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2016-12-17 15:03:32 -05:00
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/////////////////////////////////////////////////////
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//
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2022-11-01 15:26:33 -04:00
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// PUBLIC
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2016-12-17 15:03:32 -05:00
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//
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2023-01-29 14:16:17 -05:00
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DHT2pin::DHT2pin(uint8_t rpin, uint8_t wpin)
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{
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_rpin = rpin;
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_wpin = wpin;
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_temperature = 0;
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_humidity = 0;
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};
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void DHT2pin::begin()
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{
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pinMode(_rpin, INPUT);
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pinMode(_wpin, OUTPUT);
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}
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2016-12-17 15:03:32 -05:00
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2022-11-01 15:26:33 -04:00
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// return values:
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// DHTLIB_OK
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// DHTLIB_ERROR_CHECKSUM
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// DHTLIB_ERROR_TIMEOUT
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2016-12-17 15:03:32 -05:00
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int DHT2pin::read11()
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{
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// READ VALUES
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int rv = _readSensor(DHTLIB_DHT11_WAKEUP);
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if (rv != DHTLIB_OK)
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{
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_humidity = DHTLIB_INVALID_VALUE;
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_temperature = DHTLIB_INVALID_VALUE;
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return rv;
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}
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// CONVERT AND STORE
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_humidity = _bits[0]; // _bits[1] == 0;
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_temperature = _bits[2]; // _bits[3] == 0;
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// TEST CHECKSUM
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// _bits[1] && _bits[3] both 0
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uint8_t sum = _bits[0] + _bits[2];
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if (_bits[4] != sum) return DHTLIB_ERROR_CHECKSUM;
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return DHTLIB_OK;
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2016-12-17 15:03:32 -05:00
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}
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2022-11-01 15:26:33 -04:00
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// return values:
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// DHTLIB_OK
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// DHTLIB_ERROR_CHECKSUM
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// DHTLIB_ERROR_TIMEOUT
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2016-12-17 15:03:32 -05:00
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int DHT2pin::read()
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{
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// READ VALUES
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int rv = _readSensor(DHTLIB_DHT_WAKEUP);
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if (rv != DHTLIB_OK)
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{
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_humidity = DHTLIB_INVALID_VALUE;
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_temperature = DHTLIB_INVALID_VALUE;
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return rv; // propagate error value
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}
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// CONVERT AND STORE
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_humidity = word(_bits[0], _bits[1]) * 0.1;
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_temperature = word(_bits[2] & 0x7F, _bits[3]) * 0.1;
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if (_bits[2] & 0x80) // negative _temperature
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{
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_temperature = -_temperature;
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}
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// TEST CHECKSUM
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uint8_t sum = _bits[0] + _bits[1] + _bits[2] + _bits[3];
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if (_bits[4] != sum)
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{
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return DHTLIB_ERROR_CHECKSUM;
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}
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return DHTLIB_OK;
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}
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2016-12-17 15:03:32 -05:00
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2023-01-29 14:16:17 -05:00
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float DHT2pin::temperature()
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{
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return _temperature;
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}
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float DHT2pin::humidity()
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{
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return _humidity;
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2016-12-17 15:03:32 -05:00
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}
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2023-01-29 14:16:17 -05:00
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2016-12-17 15:03:32 -05:00
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/////////////////////////////////////////////////////
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//
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2022-11-01 15:26:33 -04:00
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// PRIVATE
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2016-12-17 15:03:32 -05:00
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//
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2022-11-01 15:26:33 -04:00
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// return values:
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// DHTLIB_OK
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// DHTLIB_ERROR_TIMEOUT
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2016-12-17 15:03:32 -05:00
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int DHT2pin::_readSensor(uint8_t wakeupDelay)
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{
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// INIT BUFFERVAR TO RECEIVE DATA
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uint8_t mask = 128;
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uint8_t idx = 0;
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// EMPTY BUFFER
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for (uint8_t i = 0; i < 5; i++) _bits[i] = 0;
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// REQUEST SAMPLE
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digitalWrite(_wpin, LOW);
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delay(wakeupDelay);
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digitalWrite(_wpin, HIGH);
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delayMicroseconds(40);
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// GET ACKNOWLEDGE or TIMEOUT
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uint16_t loopCnt = DHTLIB_TIMEOUT;
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while(digitalRead(_rpin) == LOW)
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{
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if (--loopCnt == 0) return DHTLIB_ERROR_TIMEOUT;
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}
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loopCnt = DHTLIB_TIMEOUT;
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while(digitalRead(_rpin) == HIGH)
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{
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if (--loopCnt == 0) return DHTLIB_ERROR_TIMEOUT;
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}
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// READ THE OUTPUT - 40 _bits => 5 BYTES
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for (uint8_t i = 40; i != 0; i--)
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{
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loopCnt = DHTLIB_TIMEOUT;
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while(digitalRead(_rpin) == LOW)
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{
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if (--loopCnt == 0) return DHTLIB_ERROR_TIMEOUT;
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}
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uint32_t t = micros();
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loopCnt = DHTLIB_TIMEOUT;
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while(digitalRead(_rpin) == HIGH)
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{
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if (--loopCnt == 0) return DHTLIB_ERROR_TIMEOUT;
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2016-12-17 15:03:32 -05:00
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}
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2023-01-29 14:16:17 -05:00
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if ((micros() - t) > 40)
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{
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_bits[idx] |= mask;
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}
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mask >>= 1;
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if (mask == 0) // next byte?
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{
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mask = 128;
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idx++;
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}
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}
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digitalWrite(_wpin, HIGH);
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2016-12-17 15:03:32 -05:00
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2023-01-29 14:16:17 -05:00
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return DHTLIB_OK;
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2016-12-17 15:03:32 -05:00
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}
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2022-11-01 15:26:33 -04:00
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// -- END OF FILE --
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