mirror of
https://github.com/RobTillaart/Arduino.git
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184 lines
3.6 KiB
C++
184 lines
3.6 KiB
C++
//
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// FILE: PCF8591.cpp
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// AUTHOR: Rob Tillaart
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// DATE: 2020-03-12
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// VERSION: 0.1.2
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// PURPOSE: I2C PCF8591 library for Arduino
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// URL: https://github.com/RobTillaart/PCF8591
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//
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// HISTORY:
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// 0.0.1 2020-03-12 initial version
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// 0.0.2 2020-07-22 testing, refactor, documentation and examples
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// 0.1.0 2021-01-04 Arduino-CI
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// 0.1.1 2021-01-14 added WireN + improve error handling.
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// 0.1.2 2021-12-23 update library.json, readme, license, minor edits
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#include "PCF8591.h"
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PCF8591::PCF8591(const uint8_t address, TwoWire *wire)
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{
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if ((address < 0x48) || (address > 0x4F))
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{
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_error = PCF8591_ADDRESS_ERROR;
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return;
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}
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_address = address;
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_wire = wire;
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_control = 0;
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_dac = 0;
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for (uint8_t i = 0; i < 4; i++)
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{
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_adc[i] = 0;
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}
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_error = PCF8591_OK;
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}
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#if defined (ESP8266) || defined(ESP32)
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bool PCF8591::begin(uint8_t sda, uint8_t scl, uint8_t val)
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{
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_wire = &Wire;
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if ((sda < 255) && (scl < 255))
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{
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_wire->begin(sda, scl);
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} else {
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_wire->begin();
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}
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if (!isConnected()) return false;
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analogWrite(val);
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return true;
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}
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#endif
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bool PCF8591::begin(uint8_t val)
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{
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_wire->begin();
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if (!isConnected()) return false;
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analogWrite(val);
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return true;
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}
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bool PCF8591::isConnected()
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{
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_wire->beginTransmission(_address);
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_error = _wire->endTransmission(); // default == 0 == PCF8591_OK
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return( _error == PCF8591_OK);
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}
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// ADC PART
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uint8_t PCF8591::analogRead(uint8_t channel, uint8_t mode)
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{
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if (mode > 3)
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{
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_error = PCF8591_MODE_ERROR;
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return 0;
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}
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_control &= 0b01000100; // clear all except flags
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_control |= (mode << 4);
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_error = PCF8591_CHANNEL_ERROR;
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switch(mode)
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{
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case 0:
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if (channel > 3) return 0;
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_control |= channel;
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break;
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case 1:
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if (channel > 2) return 0;
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_control |= (channel << 4);
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break;
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case 2:
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if (channel > 2) return 0;
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_control |= (channel << 4);
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break;
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case 3:
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if (channel > 1) return 0;
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_control |= (channel << 4);
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break;
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default:
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return 0;
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}
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_error = PCF8591_OK;
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// NOTE: one must read two values to get an up to date value.
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// Page 8 datasheet.
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_wire->beginTransmission(_address);
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_wire->write(_control);
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_error = _wire->endTransmission(); // default == 0 == PCF8591_OK
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if (_error != 0) return PCF8591_I2C_ERROR;
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if (_wire->requestFrom(_address, (uint8_t)2) != 2)
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{
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_error = PCF8591_I2C_ERROR;
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return _adc[channel]; // known last value
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}
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_wire->read();
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_adc[channel] = _wire->read();
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return _adc[channel];
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}
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uint8_t PCF8591::analogRead4()
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{
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_control &= 0b01000100; // clear all except flags
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uint8_t channel = 0;
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_control |= channel;
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enableINCR();
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_wire->beginTransmission(_address);
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_wire->write(_control);
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_error = _wire->endTransmission(); // default == 0 == PCF8591_OK
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if (_error != 0)
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{
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_error = PCF8591_I2C_ERROR;
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disableINCR();
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return _error;
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}
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if (_wire->requestFrom(_address, (uint8_t)5) != 5)
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{
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_error = PCF8591_I2C_ERROR;
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disableINCR();
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return _error;
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}
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_wire->read();
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for (uint8_t i = 0; i < 4; i++)
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{
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_adc[i] = _wire->read();
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}
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_error = PCF8591_OK;
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disableINCR();
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return _error;
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}
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// DAC PART
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bool PCF8591::analogWrite(uint8_t value)
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{
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_wire->beginTransmission(_address);
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_wire->write(_control);
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_wire->write(value);
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_error = _wire->endTransmission();
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if (_error != 0)
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{
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_error = PCF8591_I2C_ERROR;
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return false;
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}
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_dac = value;
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return true;
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}
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int PCF8591::lastError()
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{
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int e = _error;
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_error = PCF8591_OK;
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return e;
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}
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// -- END OF FILE --
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