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https://github.com/DCC-EX/CommandStation-EX.git
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POM Read
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68809fa8d5
commit
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19
DCC.cpp
19
DCC.cpp
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@ -389,6 +389,25 @@ void DCC::writeCVByteMain(int cab, int cv, byte bValue) {
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DCCWaveform::mainTrack.schedulePacket(b, nB, 4);
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}
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//
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// readCVByteMain: Read a byte with PoM on main.
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// This requires Railcom active
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//
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void DCC::readCVByteMain(int cab, int cv, ACK_CALLBACK callback) {
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byte b[5];
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byte nB = 0;
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if (cab > HIGHEST_SHORT_ADDR)
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b[nB++] = highByte(cab) | 0xC0; // convert train number into a two-byte address
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b[nB++] = lowByte(cab);
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b[nB++] = cv1(READ_BYTE_MAIN, cv); // any CV>1023 will become modulus(1024) due to bit-mask of 0x03
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b[nB++] = cv2(cv);
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b[nB++] = 0;
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DCCWaveform::mainTrack.schedulePacket(b, nB, 4);
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Railcom::anticipate(cab,cv,callback);
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}
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//
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// writeCVBitMain: Write a bit of a byte with PoM on main. This writes
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// the 5 byte sized packet to implement this DCC function
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3
DCC.h
3
DCC.h
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@ -64,6 +64,8 @@ public:
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static uint8_t getThrottleFrequency(int cab);
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static bool getThrottleDirection(int cab);
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static void writeCVByteMain(int cab, int cv, byte bValue);
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static void readCVByteMain(int cab, int cv, ACK_CALLBACK callback);
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static void writeCVBitMain(int cab, int cv, byte bNum, bool bValue);
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static void setFunction(int cab, byte fByte, byte eByte);
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static bool setFn(int cab, int16_t functionNumber, bool on);
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@ -128,6 +130,7 @@ private:
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// NMRA codes #
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static const byte SET_SPEED = 0x3f;
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static const byte WRITE_BYTE_MAIN = 0xEC;
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static const byte READ_BYTE_MAIN = 0xE4;
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static const byte WRITE_BIT_MAIN = 0xE8;
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static const byte WRITE_BYTE = 0x7C;
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static const byte VERIFY_BYTE = 0x74;
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@ -481,6 +481,14 @@ void DCCEXParser::parseOne(Print *stream, byte *com, RingStream * ringStream)
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DCC::writeCVByteMain(p[0], p[1], p[2]);
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return;
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case 'r': // READ CV on MAIN <r CAB CV> Requires Railcom
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if (params != 2)
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break;
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if (!DCCWaveform::isRailcom()) break;
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if (!stashCallback(stream, p, ringStream)) break;
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DCC::readCVByteMain(p[0], p[1],callback_r);
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return;
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case 'b': // WRITE CV BIT ON MAIN <b CAB CV BIT VALUE>
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if (params != 4)
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break;
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@ -1417,6 +1425,12 @@ void DCCEXParser::callback_R(int16_t result)
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commitAsyncReplyStream();
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}
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void DCCEXParser::callback_r(int16_t result)
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{
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StringFormatter::send(getAsyncReplyStream(), F("<r MAIN %d %d %d >\n"), stashP[0], stashP[1], result);
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commitAsyncReplyStream();
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}
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void DCCEXParser::callback_Rloco(int16_t result) {
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const FSH * detail;
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if (result<=0) {
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@ -68,7 +68,8 @@ struct DCCEXParser
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static void callback_W(int16_t result);
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static void callback_W4(int16_t result);
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static void callback_B(int16_t result);
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static void callback_R(int16_t result);
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static void callback_R(int16_t result); // prog
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static void callback_r(int16_t result); // main
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static void callback_Rloco(int16_t result);
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static void callback_Wloco(int16_t result);
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static void callback_Wconsist(int16_t result);
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28
Railcom.cpp
28
Railcom.cpp
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@ -145,6 +145,10 @@ Railcom::Railcom(uint16_t blockvpin) {
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lastChannel1Loco=0;
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vpin=blockvpin;
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}
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uint16_t Railcom::expectLoco=0;
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uint16_t Railcom::expectCV=0;
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uint16_t Railcom::expectWait=0;
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ACK_CALLBACK Railcom::expectCallback=0;
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// Process is called by a raw data collector.
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@ -170,6 +174,30 @@ void Railcom::process(uint8_t * inbound, uint8_t length) {
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}
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}
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if (expectCV && DCCWaveform::getRailcomLastLocoAddress()==expectLoco) {
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if (length>=4) {
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auto v2=GETHIGHFLASH(decode,inbound[2]);
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auto v3=GETHIGHFLASH(decode,inbound[3]);
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uint16_t packet=(v2<<6) | (v3 & 0x3f);
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// packet is 12 bits TTTTDDDDDDDD
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byte type=(packet>>8) & 0x0F;
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byte data= packet & 0xFF;
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if (type==RMOB_POM) {
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DIAG(F("POM READ loco=%d cv(%d)=%d/0x%x"), expectLoco, expectCV,data,data);
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expectCallback(data);
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expectCV=0;
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}
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}
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if (expectCV) { // still waiting
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expectWait--;
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if (expectWait==0) {
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DIAG(F("POM READ loco=%d cv(%d) FAIL"), expectLoco, expectCV);
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expectCallback(-1);
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expectCV=0;
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}
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}
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}
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auto v1=GETHIGHFLASH(decode,inbound[0]);
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auto v2=(length>1) ? GETHIGHFLASH(decode,inbound[1]):INV;
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10
Railcom.h
10
Railcom.h
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@ -22,6 +22,8 @@
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#define Railcom_h
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#include "Arduino.h"
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typedef void (*ACK_CALLBACK)(int16_t result);
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class Railcom {
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public:
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Railcom(uint16_t vpin);
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@ -31,8 +33,16 @@ class Railcom {
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>0: loco id
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*/
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void process(uint8_t * inbound,uint8_t length);
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static void anticipate(uint16_t loco, uint16_t cv, ACK_CALLBACK callback) {
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expectLoco=loco;
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expectCV=cv;
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expectWait=10; // channel3 packets
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expectCallback=callback;
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};
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private:
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static uint16_t expectCV,expectLoco,expectWait;
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static ACK_CALLBACK expectCallback;
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void noData();
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uint16_t vpin;
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uint8_t holdoverHigh,holdoverLow;
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