mirror of https://github.com/lumapu/ahoy.git
22 changed files with 392 additions and 875 deletions
@ -0,0 +1,102 @@ |
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//-----------------------------------------------------------------------------
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// 2023 Ahoy, https://github.com/lumpapu/ahoy
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// Creative Commons - http://creativecommons.org/licenses/by-nc-sa/4.0/deed
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//-----------------------------------------------------------------------------
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#ifndef __RADIO_H__ |
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#define __RADIO_H__ |
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#define TX_REQ_INFO 0x15 |
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#define TX_REQ_DEVCONTROL 0x51 |
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#define ALL_FRAMES 0x80 |
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#define SINGLE_FRAME 0x81 |
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#include "../utils/dbg.h" |
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#include "../utils/crc.h" |
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// forward declaration of class
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template <class REC_TYP=float> |
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class Inverter; |
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// abstract radio interface
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class Radio { |
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public: |
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virtual void sendControlPacket(Inverter<> *iv, uint8_t cmd, uint16_t *data, bool isRetransmit, bool isNoMI = true, bool is4chMI = false) = 0; |
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virtual bool switchFrequency(Inverter<> *iv, uint32_t fromkHz, uint32_t tokHz) { return true; } |
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void handleIntr(void) { |
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mIrqRcvd = true; |
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} |
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void enableDebug() { |
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mSerialDebug = true; |
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} |
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void sendCmdPacket(Inverter<> *iv, uint8_t mid, uint8_t pid, bool isRetransmit, bool appendCrc16=true) { |
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initPacket(getIvId(iv), mid, pid); |
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sendPacket(iv, 10, isRetransmit, appendCrc16); |
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} |
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void prepareDevInformCmd(Inverter<> *iv, uint8_t cmd, uint32_t ts, uint16_t alarmMesId, bool isRetransmit, uint8_t reqfld=TX_REQ_INFO) { // might not be necessary to add additional arg.
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if(mSerialDebug) { |
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DPRINT(DBG_DEBUG, F("prepareDevInformCmd 0x")); |
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DPRINTLN(DBG_DEBUG,String(cmd, HEX)); |
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} |
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initPacket(getIvId(iv), reqfld, ALL_FRAMES); |
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mTxBuf[10] = cmd; |
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CP_U32_LittleEndian(&mTxBuf[12], ts); |
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if (cmd == AlarmData ) { //cmd == RealTimeRunData_Debug ||
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mTxBuf[18] = (alarmMesId >> 8) & 0xff; |
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mTxBuf[19] = (alarmMesId ) & 0xff; |
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} |
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sendPacket(iv, 24, isRetransmit); |
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} |
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protected: |
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virtual void sendPacket(Inverter<> *iv, uint8_t len, bool isRetransmit, bool appendCrc16=true) = 0; |
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virtual uint64_t getIvId(Inverter<> *iv) = 0; |
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void initPacket(uint64_t ivId, uint8_t mid, uint8_t pid) { |
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mTxBuf[0] = mid; |
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CP_U32_BigEndian(&mTxBuf[1], ivId >> 8); |
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CP_U32_LittleEndian(&mTxBuf[5], mDtuSn); |
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mTxBuf[9] = pid; |
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memset(&mTxBuf[10], 0x00, (MAX_RF_PAYLOAD_SIZE-10)); |
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} |
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void updateCrcs(uint8_t len, bool appendCrc16=true) { |
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// append crc's
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if (appendCrc16 && (len > 10)) { |
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// crc control data
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uint16_t crc = ah::crc16(&mTxBuf[10], len - 10); |
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mTxBuf[len++] = (crc >> 8) & 0xff; |
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mTxBuf[len++] = (crc ) & 0xff; |
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} |
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// crc over all
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mTxBuf[len] = ah::crc8(mTxBuf, len); |
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len++; |
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} |
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void generateDtuSn(void) { |
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uint32_t chipID = 0; |
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#ifdef ESP32 |
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uint64_t MAC = ESP.getEfuseMac(); |
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chipID = ((MAC >> 8) & 0xFF0000) | ((MAC >> 24) & 0xFF00) | ((MAC >> 40) & 0xFF); |
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#else |
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chipID = ESP.getChipId(); |
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#endif |
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mDtuSn = 0x80000000; // the first digit is an 8 for DTU production year 2022, the rest is filled with the ESP chipID in decimal
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for(int i = 0; i < 7; i++) { |
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mDtuSn |= (chipID % 10) << (i * 4); |
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chipID /= 10; |
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} |
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} |
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uint32_t mDtuSn; |
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volatile bool mIrqRcvd; |
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bool mSerialDebug; |
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uint8_t mTxBuf[MAX_RF_PAYLOAD_SIZE]; |
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}; |
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#endif /*__RADIO_H__*/ |
@ -1,415 +0,0 @@ |
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//-----------------------------------------------------------------------------
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// 2023 Ahoy, https://ahoydtu.de
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// Creative Commons - https://creativecommons.org/licenses/by-nc-sa/4.0/deed
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//-----------------------------------------------------------------------------
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#ifndef __HMS_PAYLOAD_H__ |
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#define __HMS_PAYLOAD_H__ |
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#include "../utils/dbg.h" |
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#include "../utils/crc.h" |
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#include "../config/config.h" |
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#include <Arduino.h> |
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#define HMS_TIMEOUT_SEC 30 // 30s * 1000
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typedef struct { |
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uint8_t txCmd; |
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uint8_t txId; |
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//uint8_t invId;
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uint32_t ts; |
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uint8_t data[MAX_PAYLOAD_ENTRIES][MAX_RF_PAYLOAD_SIZE]; |
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int8_t rssi[MAX_PAYLOAD_ENTRIES]; |
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uint8_t len[MAX_PAYLOAD_ENTRIES]; |
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bool complete; |
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uint8_t maxPackId; |
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bool lastFound; |
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uint8_t retransmits; |
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bool requested; |
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bool gotFragment; |
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} hmsPayload_t; |
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typedef std::function<void(uint8_t, Inverter<> *)> payloadListenerType; |
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typedef std::function<void(Inverter<> *)> alarmListenerType; |
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template<class HMSYSTEM, class RADIO> |
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class HmsPayload { |
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public: |
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HmsPayload() {} |
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void setup(IApp *app, HMSYSTEM *sys, RADIO *radio, statistics_t *stat, uint8_t maxRetransmits, uint32_t *timestamp) { |
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mApp = app; |
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mSys = sys; |
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mRadio = radio; |
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mStat = stat; |
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mMaxRetrans = maxRetransmits; |
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mTimestamp = timestamp; |
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for(uint8_t i = 0; i < MAX_NUM_INVERTERS; i++) { |
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reset(i); |
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mIvCmd56Cnt[i] = 0; |
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} |
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mSerialDebug = false; |
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mHighPrioIv = NULL; |
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mCbAlarm = NULL; |
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mCbPayload = NULL; |
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//mLastRx = 0;
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} |
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void enableSerialDebug(bool enable) { |
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mSerialDebug = enable; |
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} |
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void addPayloadListener(payloadListenerType cb) { |
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mCbPayload = cb; |
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} |
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void addAlarmListener(alarmListenerType cb) { |
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mCbAlarm = cb; |
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} |
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void loop() { |
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if(NULL != mHighPrioIv) { |
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ivSend(mHighPrioIv, true); |
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mHighPrioIv = NULL; |
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} |
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} |
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void ivSendHighPrio(Inverter<> *iv) { |
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mHighPrioIv = iv; |
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} |
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void ivSend(Inverter<> *iv, bool highPrio = false) { |
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if ((IV_HMS != iv->ivGen) && (IV_HMT != iv->ivGen)) // only process HMS inverters
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return; |
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if(!highPrio) { |
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if (mPayload[iv->id].requested) { |
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if (!mPayload[iv->id].complete) |
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process(false); // no retransmit
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if (!mPayload[iv->id].complete) { |
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if (MAX_PAYLOAD_ENTRIES == mPayload[iv->id].maxPackId) |
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mStat->rxFailNoAnser++; // got nothing
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else |
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mStat->rxFail++; // got fragments but not complete response
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iv->setQueuedCmdFinished(); // command failed
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if (mSerialDebug) |
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DPRINTLN(DBG_INFO, F("enqueued cmd failed/timeout")); |
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/*if (mSerialDebug) {
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DPRINT(DBG_INFO, F("(#")); |
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DBGPRINT(String(iv->id)); |
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DBGPRINT(F(") no Payload received! (retransmits: ")); |
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DBGPRINT(String(mPayload[iv->id].retransmits)); |
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DBGPRINTLN(F(")")); |
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}*/ |
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} |
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} |
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} |
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reset(iv->id); |
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mPayload[iv->id].requested = true; |
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yield(); |
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if (mSerialDebug) { |
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DPRINT_IVID(DBG_INFO, iv->id); |
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DBGPRINT(F("Requesting Inv SN ")); |
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DBGPRINTLN(String(iv->config->serial.u64, HEX)); |
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} |
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record_t<> *rec = iv->getRecordStruct(RealTimeRunData_Debug); |
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if (iv->getDevControlRequest()) { |
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if (mSerialDebug) { |
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DPRINT_IVID(DBG_INFO, iv->id); |
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DBGPRINT(F("Devcontrol request 0x")); |
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DBGPRINT(String(iv->devControlCmd, HEX)); |
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DBGPRINT(F(" power limit ")); |
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DBGPRINTLN(String(iv->powerLimit[0])); |
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} |
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iv->powerLimitAck = false; |
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mRadio->sendControlPacket(&iv->radioId.u64, iv->devControlCmd, iv->powerLimit, false); |
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mPayload[iv->id].txCmd = iv->devControlCmd; |
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//iv->clearCmdQueue();
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//iv->enqueCommand<InfoCommand>(SystemConfigPara); // read back power limit
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} else if(((rec->ts + HMS_TIMEOUT_SEC) < *mTimestamp) && (mIvCmd56Cnt[iv->id] < 3)) { |
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mRadio->switchFrequency(&iv->radioId.u64, HOY_BOOT_FREQ_KHZ, WORK_FREQ_KHZ); |
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mIvCmd56Cnt[iv->id]++; |
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} else { |
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if(++mIvCmd56Cnt[iv->id] == 10) |
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mIvCmd56Cnt[iv->id] = 0; |
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uint8_t cmd = iv->getQueuedCmd(); |
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DPRINT_IVID(DBG_INFO, iv->id); |
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DBGPRINT(F("prepareDevInformCmd 0x")); |
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DBGHEXLN(cmd); |
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mRadio->prepareDevInformCmd(&iv->radioId.u64, cmd, mPayload[iv->id].ts, iv->alarmLastId, false); |
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mPayload[iv->id].txCmd = cmd; |
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} |
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} |
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void add(Inverter<> *iv, hmsPacket_t *p) { |
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if (p->data[1] == (TX_REQ_INFO + ALL_FRAMES)) { // response from get information command
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mPayload[iv->id].txId = p->data[1]; |
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DPRINTLN(DBG_DEBUG, F("Response from info request received")); |
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uint8_t *pid = &p->data[10]; |
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if (*pid == 0x00) { |
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DPRINT(DBG_DEBUG, F("fragment number zero received and ignored")); |
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} else { |
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DPRINTLN(DBG_DEBUG, "PID: 0x" + String(*pid, HEX)); |
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if ((*pid & 0x7F) < MAX_PAYLOAD_ENTRIES) { |
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memcpy(mPayload[iv->id].data[(*pid & 0x7F) - 1], &p->data[11], p->data[0] - 11); |
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mPayload[iv->id].len[(*pid & 0x7F) - 1] = p->data[0] -11; |
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mPayload[iv->id].gotFragment = true; |
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mPayload[iv->id].rssi[(*pid & 0x7F) - 1] = p->rssi; |
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} |
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if ((*pid & ALL_FRAMES) == ALL_FRAMES) { |
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// Last packet
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if (((*pid & 0x7f) > mPayload[iv->id].maxPackId) || (MAX_PAYLOAD_ENTRIES == mPayload[iv->id].maxPackId)) { |
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mPayload[iv->id].maxPackId = (*pid & 0x7f); |
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if (*pid > 0x81) |
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mPayload[iv->id].lastFound = true; |
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} |
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} |
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} |
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} else if (p->data[1] == (TX_REQ_DEVCONTROL + ALL_FRAMES)) { // response from dev control command
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DPRINTLN(DBG_DEBUG, F("Response from devcontrol request received")); |
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mPayload[iv->id].txId = p->data[1]; |
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iv->clearDevControlRequest(); |
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if ((p->data[13] == ActivePowerContr) && (p->data[14] == 0x00)) { |
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bool ok = true; |
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if((p->data[11] == 0x00) && (p->data[12] == 0x00)) { |
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mApp->setMqttPowerLimitAck(iv); |
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iv->powerLimitAck = true; |
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} else |
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ok = false; |
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DPRINT_IVID(DBG_INFO, iv->id); |
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DBGPRINT(F(" has ")); |
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if(!ok) DBGPRINT(F("not ")); |
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DBGPRINT(F("accepted power limit set point ")); |
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DBGPRINT(String(iv->powerLimit[0])); |
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DBGPRINT(F(" with PowerLimitControl ")); |
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DBGPRINTLN(String(iv->powerLimit[1])); |
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iv->clearCmdQueue(); |
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iv->enqueCommand<InfoCommand>(SystemConfigPara); // read back power limit
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if(mHighPrioIv == NULL) // do it immediately if possible
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mHighPrioIv = iv; |
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} |
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iv->devControlCmd = Init; |
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} |
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} |
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void process(bool retransmit) { |
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for (uint8_t id = 0; id < mSys->getNumInverters(); id++) { |
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Inverter<> *iv = mSys->getInverterByPos(id); |
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if (NULL == iv) |
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continue; // skip to next inverter
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if ((IV_HMS != iv->ivGen) && (IV_HMT != iv->ivGen)) // only process HMS inverters
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continue; // skip to next inverter
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if ((mPayload[iv->id].txId != (TX_REQ_INFO + ALL_FRAMES)) && (0 != mPayload[iv->id].txId)) { |
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// no processing needed if txId is not 0x95
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mPayload[iv->id].complete = true; |
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continue; // skip to next inverter
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} |
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if (!mPayload[iv->id].complete) { |
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bool crcPass, pyldComplete; |
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crcPass = build(iv->id, &pyldComplete); |
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if (!crcPass && !pyldComplete) { // payload not complete
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if ((mPayload[iv->id].requested) && (retransmit)) { |
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if (mPayload[iv->id].retransmits < mMaxRetrans) { |
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mPayload[iv->id].retransmits++; |
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if (iv->devControlCmd == Restart || iv->devControlCmd == CleanState_LockAndAlarm) { |
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// This is required to prevent retransmissions without answer.
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DPRINTLN(DBG_INFO, F("Prevent retransmit on Restart / CleanState_LockAndAlarm...")); |
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mPayload[iv->id].retransmits = mMaxRetrans; |
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} else if(iv->devControlCmd == ActivePowerContr) { |
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DPRINTLN(DBG_INFO, F("retransmit power limit")); |
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mRadio->sendControlPacket(&iv->radioId.u64, iv->devControlCmd, iv->powerLimit, true); |
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} else { |
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if(false == mPayload[iv->id].gotFragment) { |
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//DPRINTLN(DBG_WARN, F("nothing received: Request Complete Retransmit"));
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//mPayload[iv->id].txCmd = iv->getQueuedCmd();
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//DPRINTLN(DBG_INFO, F("(#") + String(iv->id) + F(") prepareDevInformCmd 0x") + String(mPayload[iv->id].txCmd, HEX));
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//mRadio->prepareDevInformCmd(iv->radioId.u64, mPayload[iv->id].txCmd, mPayload[iv->id].ts, iv->alarmLastId, true);
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DPRINT_IVID(DBG_INFO, iv->id); |
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DBGPRINTLN(F("nothing received")); |
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mPayload[iv->id].retransmits = mMaxRetrans; |
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} else { |
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for (uint8_t i = 0; i < (mPayload[iv->id].maxPackId - 1); i++) { |
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if (mPayload[iv->id].len[i] == 0) { |
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DPRINT(DBG_WARN, F("Frame ")); |
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DBGPRINT(String(i + 1)); |
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DBGPRINTLN(F(" missing: Request Retransmit")); |
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//mRadio->sendCmdPacket(iv->radioId.u64, TX_REQ_INFO, (SINGLE_FRAME + i), true);
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break; // only request retransmit one frame per loop
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} |
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yield(); |
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} |
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} |
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} |
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} |
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} |
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} /*else if(!crcPass && pyldComplete) { // crc error on complete Payload
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if (mPayload[iv->id].retransmits < mMaxRetrans) { |
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mPayload[iv->id].retransmits++; |
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DPRINTLN(DBG_WARN, F("CRC Error: Request Complete Retransmit")); |
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mPayload[iv->id].txCmd = iv->getQueuedCmd(); |
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DPRINT(DBG_INFO, F("(#")); |
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DBGPRINT(String(iv->id)); |
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DBGPRINT(F(") prepareDevInformCmd 0x")); |
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DBGPRINTLN(String(mPayload[iv->id].txCmd, HEX)); |
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mRadio->prepareDevInformCmd(iv->radioId.u64, mPayload[iv->id].txCmd, mPayload[iv->id].ts, iv->alarmLastId, true); |
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} |
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}*/ else { // payload complete
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DPRINT(DBG_INFO, F("procPyld: cmd: 0x")); |
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DBGPRINTLN(String(mPayload[iv->id].txCmd, HEX)); |
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//DPRINT(DBG_DEBUG, F("procPyld: txid: 0x"));
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//DBGPRINTLN(String(mPayload[iv->id].txId, HEX));
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DPRINTLN(DBG_DEBUG, F("procPyld: max: ") + String(mPayload[iv->id].maxPackId)); |
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record_t<> *rec = iv->getRecordStruct(mPayload[iv->id].txCmd); // choose the parser
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mPayload[iv->id].complete = true; |
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uint8_t payload[150]; |
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uint8_t payloadLen = 0; |
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memset(payload, 0, 150); |
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int8_t rssi = -127; |
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for (uint8_t i = 0; i < (mPayload[iv->id].maxPackId); i++) { |
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if((mPayload[iv->id].len[i] + payloadLen) > 150) { |
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DPRINTLN(DBG_ERROR, F("payload buffer to small!")); |
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break; |
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} |
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memcpy(&payload[payloadLen], mPayload[iv->id].data[i], (mPayload[iv->id].len[i])); |
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payloadLen += (mPayload[iv->id].len[i]); |
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// get worst RSSI
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if(mPayload[iv->id].rssi[i] > rssi) |
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rssi = mPayload[iv->id].rssi[i]; |
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yield(); |
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} |
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payloadLen -= 2; |
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if (mSerialDebug) { |
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DPRINT_IVID(DBG_INFO, iv->id); |
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DBGPRINT(F("Payload (")); |
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DBGPRINT(String(payloadLen)); |
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DBGPRINT(F("): ")); |
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ah::dumpBuf(payload, payloadLen); |
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} |
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if (NULL == rec) { |
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DPRINTLN(DBG_ERROR, F("record is NULL!")); |
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} else if ((rec->pyldLen == payloadLen) || (0 == rec->pyldLen)) { |
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if (mPayload[iv->id].txId == (TX_REQ_INFO + ALL_FRAMES)) |
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mStat->rxSuccess++; |
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rec->ts = mPayload[iv->id].ts; |
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for (uint8_t i = 0; i < rec->length; i++) { |
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iv->addValue(i, payload, rec); |
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yield(); |
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} |
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iv->rssi = rssi; |
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iv->doCalculations(); |
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notify(mPayload[iv->id].txCmd, iv); |
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if(AlarmData == mPayload[iv->id].txCmd) { |
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uint8_t i = 0; |
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uint32_t start, end; |
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while(1) { |
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if(0 == iv->parseAlarmLog(i++, payload, payloadLen)) |
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break; |
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if (NULL != mCbAlarm) |
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(mCbAlarm)(iv); |
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yield(); |
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} |
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} |
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} else { |
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DPRINT(DBG_ERROR, F("plausibility check failed, expected ")); |
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DBGPRINT(String(rec->pyldLen)); |
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DBGPRINTLN(F(" bytes")); |
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mStat->rxFail++; |
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} |
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iv->setQueuedCmdFinished(); |
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} |
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} |
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yield(); |
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} |
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} |
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private: |
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void notify(uint8_t val, Inverter<> *iv) { |
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if(NULL != mCbPayload) |
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(mCbPayload)(val, iv); |
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} |
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bool build(uint8_t id, bool *complete) { |
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DPRINTLN(DBG_VERBOSE, F("build")); |
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uint16_t crc = 0xffff, crcRcv = 0x0000; |
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if (mPayload[id].maxPackId > MAX_PAYLOAD_ENTRIES) |
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mPayload[id].maxPackId = MAX_PAYLOAD_ENTRIES; |
|||
|
|||
// check if all fragments are there
|
|||
*complete = true; |
|||
for (uint8_t i = 0; i < mPayload[id].maxPackId; i++) { |
|||
if(mPayload[id].len[i] == 0) |
|||
*complete = false; |
|||
} |
|||
if(!*complete) |
|||
return false; |
|||
|
|||
for (uint8_t i = 0; i < mPayload[id].maxPackId; i++) { |
|||
if (mPayload[id].len[i] > 0) { |
|||
if (i == (mPayload[id].maxPackId - 1)) { |
|||
crc = ah::crc16(mPayload[id].data[i], mPayload[id].len[i] - 1, crc); |
|||
crcRcv = (mPayload[id].data[i][mPayload[id].len[i] - 2] << 8) | (mPayload[id].data[i][mPayload[id].len[i] - 1]); |
|||
} else |
|||
crc = ah::crc16(mPayload[id].data[i], mPayload[id].len[i], crc); |
|||
} |
|||
yield(); |
|||
} |
|||
|
|||
return (crc == crcRcv) ? true : false; |
|||
} |
|||
|
|||
void reset(uint8_t id) { |
|||
//DPRINT(DBG_INFO, "resetPayload: id: ");
|
|||
//DBGPRINTLN(String(id));
|
|||
memset(&mPayload[id], 0, sizeof(hmsPayload_t)); |
|||
mPayload[id].txCmd = 0; |
|||
mPayload[id].gotFragment = false; |
|||
//mPayload[id].retransmits = 0;
|
|||
mPayload[id].maxPackId = MAX_PAYLOAD_ENTRIES; |
|||
mPayload[id].lastFound = false; |
|||
mPayload[id].complete = false; |
|||
mPayload[id].requested = false; |
|||
mPayload[id].ts = *mTimestamp; |
|||
} |
|||
|
|||
IApp *mApp; |
|||
HMSYSTEM *mSys; |
|||
RADIO *mRadio; |
|||
statistics_t *mStat; |
|||
uint8_t mMaxRetrans; |
|||
uint32_t *mTimestamp; |
|||
//uint32_t mLastRx;
|
|||
hmsPayload_t mPayload[MAX_NUM_INVERTERS]; |
|||
uint8_t mIvCmd56Cnt[MAX_NUM_INVERTERS]; |
|||
bool mSerialDebug; |
|||
Inverter<> *mHighPrioIv; |
|||
|
|||
alarmListenerType mCbAlarm; |
|||
payloadListenerType mCbPayload; |
|||
}; |
|||
|
|||
#endif /*__HMS_PAYLOAD_H__*/ |
Loading…
Reference in new issue