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More bugs to fix
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@ -27,8 +27,8 @@
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* #include "IO_EX-IOExpander.h"
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*
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* void halSetup() {
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* // EXIOExpander::create(vpin, num_vpins, i2c_address);
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* EXIOExpander::create(800, 18, 0x90);
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* // EXIOExpander::create(vpin, num_vpins, i2c_address, digitalPinCount, analoguePinCount);
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* EXIOExpander::create(800, 18, 0x90, 12, 6);
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}
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*/
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@ -69,64 +69,56 @@ private:
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void _begin() {
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// Initialise EX-IOExander device
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uint8_t _check = I2CManager.checkAddress(_i2cAddress);
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DIAG(F("I2C status check: %d"), _check);
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if (I2CManager.exists(_i2cAddress)) {
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_activity = EXIOINIT;
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#ifdef DIAG_IO
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_display();
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#endif
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_setupDevice();
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} else {
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DIAG(F("EX-IOExpander device not found, I2C:%x"), _i2cAddress);
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DIAG(F("EX-IOExpander device not found, I2C:x%x"), _i2cAddress);
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_deviceState = DEVSTATE_FAILED;
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}
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}
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void _setupDevice() {
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// Send digital and analogue pin counts
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uint8_t _setupBuffer[3] = {EXIOINIT, _numDigitalPins, _numAnaloguePins};
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// I2CManager.write(_i2cAddress, 3, EXIOINIT, _numDigitalPins, _numAnaloguePins);
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I2CManager.write(_i2cAddress, _setupBuffer, 3, &_i2crb);
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_activity = EXIODPIN;
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}
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void _loop(unsigned long currentMicros) override {
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if (_i2crb.status == I2C_STATUS_PENDING) return;
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if (_i2crb.status == I2C_STATUS_OK) {
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switch(_activity) {
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case EXIOINIT:
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// Send digital and analogue pin counts
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_setupBuffer[0] = EXIOINIT;
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_setupBuffer[1] = _numDigitalPins;
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_setupBuffer[2] = _numAnaloguePins;
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I2CManager.write(_i2cAddress, _setupBuffer, 3, &_i2crb);
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_activity = EXIODPIN;
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break;
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case EXIODPIN:
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// Enable digital ports
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_digitalPinBytes = (_numDigitalPins + 7) / 8 + 1;
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// uint8_t _enableDigitalPins[_digitalPinBytes];
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// _enableDigitalPins[0] = EXIODPIN;
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_digitalOutBuffer[0] = EXIODPIN;
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for (uint8_t byte = 1; byte < _digitalPinBytes; byte++) {
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// _enableDigitalPins[byte] = 0;
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_digitalOutBuffer[byte] = 0;
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}
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for (uint8_t pin = 0; pin < _numDigitalPins; pin++) {
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int pinByte = pin / 8;
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// bitSet(_enableDigitalPins[pinByte + 1], pin - pinByte * 8);
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bitSet(_digitalOutBuffer[pinByte + 1], pin - pinByte * 8);
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}
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// I2CManager.write(_i2cAddress, _enableDigitalPins, _digitalPinBytes, &_i2crb);
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I2CManager.write(_i2cAddress, _digitalOutBuffer, _digitalPinBytes, &_i2crb);
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_activity = EXIOAPIN;
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break;
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case EXIOAPIN:
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// Enable analogue ports
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_analoguePinBytes = (_numAnaloguePins + 7) / 8 + 1;
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// uint8_t _enableAnaloguePins[_analoguePinBytes];
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// _enableAnaloguePins[0] = EXIOAPIN;
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_analogueOutBuffer[0] = EXIOAPIN;
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for (uint8_t byte = 1; byte < _analoguePinBytes; byte++) {
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// _enableAnaloguePins[byte] = 0;
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_analogueOutBuffer[byte] = 0;
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}
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for (uint8_t pin = 0; pin < _numAnaloguePins; pin++) {
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int pinByte = pin / 8;
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// bitSet(_enableAnaloguePins[pinByte + 1], pin - pinByte * 8);
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bitSet(_analogueOutBuffer[pinByte + 1], pin - pinByte * 8);
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}
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// I2CManager.write(_i2cAddress, _enableAnaloguePins, _analoguePinBytes, &_i2crb);
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I2CManager.write(_i2cAddress, _analogueOutBuffer, _analoguePinBytes, &_i2crb);
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_activity = EXIORDY;
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break;
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@ -146,6 +138,7 @@ private:
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uint8_t _numAnaloguePins;
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int _digitalPinBytes;
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int _analoguePinBytes;
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uint8_t _setupBuffer[3];
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uint8_t _digitalOutBuffer[EXIO_NANO_DIGITAL_PINS + 1];
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uint8_t _digitalInBufer[EXIO_NANO_DIGITAL_PINS];
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uint8_t _analogueOutBuffer[EXIO_NANO_ANALOGUE_PINS + 1];
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