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https://github.com/DCC-EX/CommandStation-EX.git
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cleaner IO_I2CRailcom
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0341d803cc
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@ -59,7 +59,7 @@
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class I2CRailcom : public IODevice {
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class I2CRailcom : public IODevice {
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private:
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private:
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// SC16IS752 defines
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// SC16IS752 defines
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uint8_t _UART_CH=0x00;
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uint8_t _UART_CH=0x00; // channel 0 or 1 flips each loop if npins>1
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byte _inbuf[65];
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byte _inbuf[65];
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byte _outbuf[2];
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byte _outbuf[2];
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Railcom _channelMonitors[2];
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Railcom _channelMonitors[2];
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@ -107,39 +107,26 @@ public:
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// return if in cutout or cutout very soon.
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// return if in cutout or cutout very soon.
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if (!DCCWaveform::isRailcomSampleWindow()) return;
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if (!DCCWaveform::isRailcomSampleWindow()) return;
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// flip channels each loop
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// IF we have 2 channels, flip channels each loop
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_UART_CH=0;
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if (_nPins>1) _UART_CH=_UART_CH?0:1;
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if (_nPins>1) _UART_CH=_UART_CH?0:1;
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// Read incoming raw Railcom data, and process accordingly
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// Read incoming raw Railcom data, and process accordingly
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auto inlength = UART_ReadRegister(REG_RXLV);
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auto inlength = UART_ReadRegister(REG_RXLV);
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if (inlength==0){
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if (inlength==0) return;
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return;
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} else {
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#ifdef DIAG_I2CRailcom
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#ifdef DIAG_I2CRailcom
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DIAG(F("Railcom: %s/%d RX Fifo length: %d"),_I2CAddress.toString(), _UART_CH, inlength);
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DIAG(F("Railcom: %s/%d RX Fifo length: %d"),_I2CAddress.toString(), _UART_CH, inlength);
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#endif
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#endif
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_outbuf[0]=(byte)(REG_RHR << 3 | _UART_CH << 1);
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I2CManager.read(_I2CAddress, _inbuf, inlength, _outbuf, 1);
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#ifdef DIAG_I2CRailcom_data
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DIAG(F("Railcom %s/%d RX FIFO Data"), _I2CAddress.toString(), _UART_CH);
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for (int i = 0; i < inlength; i++){
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DIAG(F("[0x%x]: 0x%x"), i, _inbuf[i]);
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}
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auto locoid=_channelMonitors[_UART_CH].getChannel1Loco(_inbuf);
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DIAG(F("Railcom Channel1=%d"), locoid);
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#endif
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// Read data buffer from UART
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}
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// Ask UART for the data
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_outbuf[0]=(byte)(REG_RHR << 3 | _UART_CH << 1);
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_outbuf[0]=(byte)(REG_RHR << 3 | _UART_CH << 1);
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I2CManager.read(_I2CAddress, _inbuf, inlength, _outbuf, 1);
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I2CManager.read(_I2CAddress, _inbuf, inlength, _outbuf, 1);
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// HK: Reset FIFO at end of read cycle
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UART_WriteRegister(REG_FCR, 0x07,false);
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#ifdef DIAG_I2CRailcom_data
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#ifdef DIAG_I2CRailcom_data
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// Dump data buffer
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DIAG(F("Railcom %s/%d RX FIFO Data"), _I2CAddress.toString(), _UART_CH);
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DIAG(F("Railcom %s/%d RX FIFO Data"), _I2CAddress.toString(), _UART_CH);
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for (int i = 0; i < inlength; i++){
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for (int i = 0; i < inlength; i++){
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DIAG(F("[0x%x]: 0x%x"), i, _inbuf[i]);
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DIAG(F("[0x%x]: 0x%x"), i, _inbuf[i]);
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@ -148,7 +135,9 @@ public:
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// Ask Railcom to interpret the channel1 loco
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// Ask Railcom to interpret the channel1 loco
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auto locoid=_channelMonitors[_UART_CH].getChannel1Loco(_inbuf);
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auto locoid=_channelMonitors[_UART_CH].getChannel1Loco(_inbuf);
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DIAG(F("Railcom Channel1=%d"), locoid);
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#ifdef DIAG_I2CRailcom
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DIAG(F("Railcom Channel1=%d"), locoid);
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#endif
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if (locoid<0) return; // -1 indicates Railcom needs another packet
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if (locoid<0) return; // -1 indicates Railcom needs another packet
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// determine if loco in this block has changed
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// determine if loco in this block has changed
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@ -161,8 +150,6 @@ public:
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// new loco, if any, is entering block
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// new loco, if any, is entering block
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_locoInBlock[_UART_CH]=locoid;
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_locoInBlock[_UART_CH]=locoid;
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if (locoid) RMFT3::blockEvent(_firstVpin+_UART_CH,locoid,true);
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if (locoid) RMFT3::blockEvent(_firstVpin+_UART_CH,locoid,true);
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UART_WriteRegister(REG_FCR, 0x07,false); // HK: Reset FIFO at end of read cycle
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}
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}
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