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5959a8655c
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5959a8655c | ||
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3462beeeac |
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@ -193,9 +193,12 @@ uint8_t I2CManagerClass::read(I2CAddress address, uint8_t readBuffer[], uint8_t
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// while (Wire.available() && nBytes < readSize)
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while (nBytes < readSize)
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if (Wire.available()) {
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uint8_t temp=nBytes;
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readBuffer[nBytes++] = Wire.read();
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DIAG(F("nBytes=%d, readBuffer[nBytes]=%d"), temp, readBuffer[temp]);
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// uint8_t temp=nBytes;
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char readByte=Wire.read();
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DIAG(F("nBytes=%d, readByte=%d"),nBytes,readByte);
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// readBuffer[nBytes++] = Wire.read();
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readBuffer[nBytes++]=readByte;
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// DIAG(F("nBytes=%d, readBuffer[nBytes]=%d"), temp, readBuffer[temp]);
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} else {
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delay(1);
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}
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@ -236,7 +239,7 @@ void I2CManagerClass::queueRequest(I2CRB *req) {
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DIAG(F("NOOOOOOOOOOO"));
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return;
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}
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req->dump();
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// req->dump();
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switch (req->operation & OPERATION_MASK) {
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case OPERATION_READ:
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read(req->i2cAddress, req->readBuffer, req->readLen, NULL, 0, req);
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@ -105,8 +105,8 @@ private:
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if (_digitalPinBytes < digitalBytesNeeded) {
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// Not enough space, free any existing buffer and allocate a new one
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if (_digitalPinBytes > 0) free(_digitalInputStates);
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_digitalInputStates = (byte*) calloc(_digitalPinBytes, 1);
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_digitalPinBytes = digitalBytesNeeded;
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_digitalInputStates = (byte*) calloc(_digitalPinBytes, 1);
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}
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}
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@ -260,9 +260,9 @@ private:
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} else if (currentMicros - _lastAnalogueRead > _analogueRefresh && _numAnaloguePins>0) { // Delay for analogue read refresh
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// Issue new read for analogue input states
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_readCommandBuffer[0] = EXIORDAN;
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// DIAG(F("EXIORDAN address=%x, aBuffer=%d, bytes=%d"),_I2CAddress,_analogueInputBuffer,_numAnaloguePins*2);
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// I2CManager.read(_I2CAddress, _analogueInputBuffer,
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// _numAnaloguePins * 2, _readCommandBuffer, 1, &_i2crb);
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DIAG(F("EXIORDAN address=%x, aBuffer=%d, bytes=%d"),_I2CAddress,_analogueInputBuffer,_numAnaloguePins*2);
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I2CManager.read(_I2CAddress, _analogueInputBuffer,
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_numAnaloguePins * 2, _readCommandBuffer, 1, &_i2crb);
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_lastAnalogueRead = currentMicros;
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_readState = RDS_ANALOGUE;
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}
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