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@ -75,7 +75,8 @@ void TwoWire::begin(void) {
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PINSEL_CFG_Type PinCfg;
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PINSEL_CFG_Type PinCfg;
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PinCfg.OpenDrain = 0;
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PinCfg.OpenDrain = 0;
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PinCfg.Pinmode = 0;
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PinCfg.Pinmode = 0;
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#if ((USEDI2CDEV_M == 0))
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#if USEDI2CDEV_M == 0
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PinCfg.Funcnum = 1;
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PinCfg.Funcnum = 1;
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PinCfg.Pinnum = 27;
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PinCfg.Pinnum = 27;
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PinCfg.Portnum = 0;
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PinCfg.Portnum = 0;
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@ -83,7 +84,8 @@ void TwoWire::begin(void) {
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PinCfg.Pinnum = 28;
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PinCfg.Pinnum = 28;
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PINSEL_ConfigPin(&PinCfg); // SCL0 / D58 AUX-1
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PINSEL_ConfigPin(&PinCfg); // SCL0 / D58 AUX-1
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#endif
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#endif
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#if ((USEDI2CDEV_M == 1))
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#if USEDI2CDEV_M == 1
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PinCfg.Funcnum = 3;
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PinCfg.Funcnum = 3;
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PinCfg.Pinnum = 0;
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PinCfg.Pinnum = 0;
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PinCfg.Portnum = 0;
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PinCfg.Portnum = 0;
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@ -91,7 +93,8 @@ void TwoWire::begin(void) {
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PinCfg.Pinnum = 1;
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PinCfg.Pinnum = 1;
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PINSEL_ConfigPin(&PinCfg); // SCL1 / D21 SCL
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PINSEL_ConfigPin(&PinCfg); // SCL1 / D21 SCL
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#endif
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#endif
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#if ((USEDI2CDEV_M == 2))
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#if USEDI2CDEV_M == 2
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PinCfg.Funcnum = 2;
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PinCfg.Funcnum = 2;
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PinCfg.Pinnum = 10;
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PinCfg.Pinnum = 10;
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PinCfg.Portnum = 0;
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PinCfg.Portnum = 0;
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@ -109,9 +112,8 @@ void TwoWire::begin(void) {
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uint8_t TwoWire::requestFrom(uint8_t address, uint8_t quantity) {
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uint8_t TwoWire::requestFrom(uint8_t address, uint8_t quantity) {
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// clamp to buffer length
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// clamp to buffer length
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if(quantity > BUFFER_LENGTH){
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if (quantity > BUFFER_LENGTH)
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quantity = BUFFER_LENGTH;
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quantity = BUFFER_LENGTH;
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}
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// perform blocking read into buffer
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// perform blocking read into buffer
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I2C_M_SETUP_Type transferMCfg;
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I2C_M_SETUP_Type transferMCfg;
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@ -166,23 +168,17 @@ uint8_t TwoWire::endTransmission(void) {
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// indicate that we are done transmitting
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// indicate that we are done transmitting
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transmitting = 0;
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transmitting = 0;
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if (status == SUCCESS)
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return status == SUCCESS ? 0 : 4;
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return 0; // success
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else
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return 4; // other error
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}
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}
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// must be called after beginTransmission(address)
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// must be called after beginTransmission(address)
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size_t TwoWire::write(uint8_t data) {
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size_t TwoWire::write(uint8_t data) {
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if (transmitting) {
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if (transmitting) {
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// don't bother if buffer is full
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// don't bother if buffer is full
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if (txBufferLength >= BUFFER_LENGTH) {
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if (txBufferLength >= BUFFER_LENGTH) return 0;
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return 0;
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}
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// put byte in tx buffer
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// put byte in tx buffer
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txBuffer[txBufferIndex] = data;
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txBuffer[txBufferIndex++] = data;
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++txBufferIndex;
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// update amount in buffer
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// update amount in buffer
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txBufferLength = txBufferIndex;
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txBufferLength = txBufferIndex;
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@ -195,40 +191,25 @@ size_t TwoWire::write(uint8_t data) {
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size_t TwoWire::write(const uint8_t *data, size_t quantity) {
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size_t TwoWire::write(const uint8_t *data, size_t quantity) {
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size_t sent = 0;
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size_t sent = 0;
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if (transmitting)
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if (transmitting)
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for(sent = 0; sent < quantity; ++sent)
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for (sent = 0; sent < quantity; ++sent)
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if (!write(data[sent]))
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if (!write(data[sent])) break;
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break;
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return sent;
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return sent;
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}
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}
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// must be called after requestFrom(address, numBytes)
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// Must be called after requestFrom(address, numBytes)
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int TwoWire::available(void) {
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int TwoWire::available(void) {
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return rxBufferLength - rxBufferIndex;
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return rxBufferLength - rxBufferIndex;
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}
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}
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// must be called after requestFrom(address, numBytes)
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// Must be called after requestFrom(address, numBytes)
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int TwoWire::read(void) {
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int TwoWire::read(void) {
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int value = -1;
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return rxBufferIndex < rxBufferLength ? rxBuffer[rxBufferIndex++] : -1;
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// get each successive byte on each call
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if(rxBufferIndex < rxBufferLength) {
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value = rxBuffer[rxBufferIndex];
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++rxBufferIndex;
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}
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return value;
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}
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}
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// must be called after requestFrom(address, numBytes)
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// Must be called after requestFrom(address, numBytes)
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int TwoWire::peek(void) {
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int TwoWire::peek(void) {
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int value = -1;
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return rxBufferIndex < rxBufferLength ? rxBuffer[rxBufferIndex] : -1;
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if(rxBufferIndex < rxBufferLength){
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value = rxBuffer[rxBufferIndex];
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}
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return value;
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}
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}
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// Preinstantiate Objects //////////////////////////////////////////////////////
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// Preinstantiate Objects //////////////////////////////////////////////////////
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