322 lines
11 KiB
C++
322 lines
11 KiB
C++
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/*!
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* @file Adafruit_AM2320.cpp
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*
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* @mainpage Adafruit AM2320 Temperature & Humidity Unified Sensor driver
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*
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* @section intro_sec Introduction
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*
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* This is the documentation for Adafruit's AM2320 driver for the
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* Arduino platform. It is designed specifically to work with the
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* Adafruit AM2320 breakout: https://www.adafruit.com/products/xxxx
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*
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* These sensors use I2C to communicate, 2 pins (SCL+SDA) are required
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* to interface with the breakout.
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*
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* Adafruit invests time and resources providing this open source code,
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* please support Adafruit and open-source hardware by purchasing
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* products from Adafruit!
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*
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* @section dependencies Dependencies
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*
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* This library depends on <a href="https://github.com/adafruit/Adafruit_Sensor">
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* Adafruit_Sensor</a> being present on your system. Please make sure you have
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* installed the latest version before using this library.
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*
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* @section author Author
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*
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* Written by Limor Fried for Adafruit Industries.
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*
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* @section license License
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*
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* Permission is hereby granted, free of charge, to any person obtaining a copy
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* of this software and associated documentation files (the "Software"), to deal
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* in the Software without restriction, including without limitation the rights
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* to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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* copies of the Software, and to permit persons to whom the Software is
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* furnished to do so, subject to the following conditions:
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*
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* The above copyright notice and this permission notice shall be included in all
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* copies or substantial portions of the Software.
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*
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* THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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* IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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* FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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* AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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* LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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* OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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* SOFTWARE.
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*
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*/
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#include "Adafruit_AM2320.h"
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/**************************************************************************/
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/*!
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@brief Instantiates a new AM2320 class
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@param theI2C Optional pointer to a TwoWire object that should be used for I2C communication. Defaults to &Wire.
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@param tempSensorId the id that should be used for the temperature sensor. Defaults to -1
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@param humiditySensorId the id that should be used for the humidity sensor. Defaults to -1
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*/
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/**************************************************************************/
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Adafruit_AM2320::Adafruit_AM2320(TwoWire *theI2C, int32_t tempSensorId, int32_t humiditySensorId):
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_temp(this, tempSensorId),
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_humidity(this, humiditySensorId),
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_i2c(theI2C)
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{}
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/**************************************************************************/
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/*!
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@brief Setups the hardware
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@return true
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*/
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/**************************************************************************/
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bool Adafruit_AM2320::begin() {
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_i2caddr = 0x5C; // fixed addr
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_i2c->begin();
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return true;
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}
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/**************************************************************************/
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/*!
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@brief read the temperature from the device
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@return the temperature reading as a floating point value
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*/
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/**************************************************************************/
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float Adafruit_AM2320::readTemperature() {
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uint16_t t = readRegister16(AM2320_REG_TEMP_H);
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float ft;
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if (t == 0xFFFF) return NAN;
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// check sign bit - the temperature MSB is signed , bit 0-15 are magnitude
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if(t & 0x8000){
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ft = -(int16_t)(t&0x7fff);
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}
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else {
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ft = (int16_t)t;
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}
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return ft / 10.0;
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}
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/**************************************************************************/
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/*!
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@brief read the humidity from the device
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@return the humidity reading as a floating point value
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*/
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/**************************************************************************/
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float Adafruit_AM2320::readHumidity() {
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uint16_t h = readRegister16(AM2320_REG_HUM_H);
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if (h == 0xFFFF) return NAN;
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float fh = h;
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return fh / 10.0;
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}
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/**************************************************************************/
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/*!
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@brief read 2 bytes from a hardware register
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@param reg the register to read
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@return the read value as a 2 byte unsigned integer
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*/
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/**************************************************************************/
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uint16_t Adafruit_AM2320::readRegister16(uint8_t reg) {
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// wake up
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Wire.beginTransmission(_i2caddr);
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Wire.write(0x00);
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Wire.endTransmission();
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delay(10); // wait 10 ms
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// send a command to read register
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Wire.beginTransmission(_i2caddr);
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Wire.write(AM2320_CMD_READREG);
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Wire.write(reg);
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Wire.write(2); // 2 bytes
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Wire.endTransmission();
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delay(2); // wait 2 ms
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// 2 bytes preamble, 2 bytes data, 2 bytes CRC
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Wire.requestFrom(_i2caddr, (uint8_t)6);
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if (Wire.available() != 6)
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return 0xFFFF;
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uint8_t buffer[6];
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for (int i=0; i<6; i++) {
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buffer[i] = Wire.read();
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//Serial.print("byte #"); Serial.print(i); Serial.print(" = 0x"); Serial.println(buffer[i], HEX);
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}
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if (buffer[0] != 0x03) return 0xFFFF; // must be 0x03 modbus reply
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if (buffer[1] != 2) return 0xFFFF; // must be 2 bytes reply
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uint16_t the_crc = buffer[5];
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the_crc <<= 8;
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the_crc |= buffer[4];
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uint16_t calc_crc = crc16(buffer, 4); // preamble + data
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//Serial.print("CRC: 0x"); Serial.println(calc_crc, HEX);
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if (the_crc != calc_crc)
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return 0xFFFF;
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// All good!
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uint16_t ret = buffer[2];
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ret <<= 8;
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ret |= buffer[3];
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return ret;
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}
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/**************************************************************************/
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/*!
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@brief perfor a CRC check to verify data
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@param buffer the pointer to the data to check
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@param nbytes the number of bytes to calculate the CRC over
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@return the calculated CRC
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*/
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/**************************************************************************/
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uint16_t Adafruit_AM2320::crc16(uint8_t *buffer, uint8_t nbytes) {
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uint16_t crc = 0xffff;
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for (int i=0; i<nbytes; i++) {
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uint8_t b = buffer[i];
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crc ^= b;
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for (int x=0; x<8; x++) {
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if (crc & 0x0001) {
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crc >>= 1;
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crc ^= 0xA001;
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} else {
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crc >>= 1;
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}
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}
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}
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return crc;
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}
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/**************************************************************************/
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/*!
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@brief set the name of the sensor
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@param sensor a pointer to the sensor
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*/
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/**************************************************************************/
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void Adafruit_AM2320::setName(sensor_t* sensor) {
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strncpy(sensor->name, "AM2320", sizeof(sensor->name) - 1);
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}
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/**************************************************************************/
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/*!
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@brief set minimum delay to a fixed value of 2 seconds
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@param sensor a pointer to the sensor
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*/
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/**************************************************************************/
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void Adafruit_AM2320::setMinDelay(sensor_t* sensor) {
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sensor->min_delay = 2000000L; // 2 seconds (in microseconds)
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}
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/**************************************************************************/
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/*!
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@brief create a temperature sensor instance
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@param parent the pointer to the parent sensor
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@param id the id value for the sensor
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*/
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/**************************************************************************/
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Adafruit_AM2320::Temperature::Temperature(Adafruit_AM2320* parent, int32_t id):
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_parent(parent),
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_id(id)
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{}
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/**************************************************************************/
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/*!
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@brief read the temperature from the device and populate a sensor_event_t with the value
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@param event a pointer to the event to populate
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@return true
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*/
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/**************************************************************************/
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bool Adafruit_AM2320::Temperature::getEvent(sensors_event_t* event) {
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// Clear event definition.
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memset(event, 0, sizeof(sensors_event_t));
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// Populate sensor reading values.
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event->version = sizeof(sensors_event_t);
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event->sensor_id = _id;
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event->type = SENSOR_TYPE_AMBIENT_TEMPERATURE;
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event->timestamp = millis();
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event->temperature = _parent->readTemperature();
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return true;
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}
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/**************************************************************************/
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/*!
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@brief populate a sensor_t with data for this sensor
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@param sensor a pointer to the sensor_t to populate
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*/
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/**************************************************************************/
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void Adafruit_AM2320::Temperature::getSensor(sensor_t* sensor) {
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// Clear sensor definition.
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memset(sensor, 0, sizeof(sensor_t));
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// Set sensor name.
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_parent->setName(sensor);
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// Set version and ID
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sensor->version = AM2320_SENSOR_VERSION;
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sensor->sensor_id = _id;
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// Set type and characteristics.
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sensor->type = SENSOR_TYPE_AMBIENT_TEMPERATURE;
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_parent->setMinDelay(sensor);
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// This isn't documented, of course
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sensor->max_value = 80.0F;
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sensor->min_value = -20.0F;
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sensor->resolution = 2.0F;
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}
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/**************************************************************************/
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/*!
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@brief create a humidity sensor instance
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@param parent the pointer to the parent sensor
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@param id the id value for the sensor
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*/
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/**************************************************************************/
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Adafruit_AM2320::Humidity::Humidity(Adafruit_AM2320* parent, int32_t id):
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_parent(parent),
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_id(id)
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{}
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/**************************************************************************/
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/*!
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@brief read the humidity from the device and populate a sensor_event_t with the value
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@param event a pointer to the event to populate
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@return true
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*/
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/**************************************************************************/
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bool Adafruit_AM2320::Humidity::getEvent(sensors_event_t* event) {
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// Clear event definition.
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memset(event, 0, sizeof(sensors_event_t));
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// Populate sensor reading values.
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event->version = sizeof(sensors_event_t);
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event->sensor_id = _id;
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event->type = SENSOR_TYPE_RELATIVE_HUMIDITY;
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event->timestamp = millis();
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event->relative_humidity = _parent->readHumidity();
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return true;
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}
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/**************************************************************************/
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/*!
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@brief populate a sensor_t with data for this sensor
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@param sensor a pointer to the sensor_t to populate
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*/
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/**************************************************************************/
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void Adafruit_AM2320::Humidity::getSensor(sensor_t* sensor) {
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// Clear sensor definition.
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memset(sensor, 0, sizeof(sensor_t));
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// Set sensor name.
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_parent->setName(sensor);
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// Set version and ID
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sensor->version = AM2320_SENSOR_VERSION;
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sensor->sensor_id = _id;
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// Set type and characteristics.
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sensor->type = SENSOR_TYPE_RELATIVE_HUMIDITY;
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_parent->setMinDelay(sensor);
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// This isn't documented, of course
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sensor->max_value = 100.0F;
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sensor->min_value = 0.0F;
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sensor->resolution = 1.0F;
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}
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