Adding shared memory containing all variables necessary to
check device controller related variables.
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include/shared_mem_buffer.h
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289
include/shared_mem_buffer.h
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#ifndef SHARED_MEM_BUFFER_INCLUDED_H
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#define SHARED_MEM_BUFFER_INCLUDED_H
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#include <cinttypes>
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#include <atomic>
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#include <QSharedMemory>
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struct SharedMemBuffer {
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struct rs {
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char comportName[16]; // z.B. "COM48"
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char baudStr[16]; // z.B. "19200"
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int baudNr; // 0...5 oder -1
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uint8_t connect; // 0,1
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bool portIsOpen;
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} rs;
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char AutoEmissionOn; // 1: zyklisch Anfragen zum Slave senden
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struct datif {
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uint16_t sendingPeriod;
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bool sendingPer_changed;
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} datif;
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#if 0
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// controlBus.cpp
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char txt4comStateLine[32];
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char txt4HsStateLine[32];
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char txt4masterStateLine[32];
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char txt4resultStateLine[32];
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char txt4dataLine[32];
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char txt4datifReceive[32];
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char txt4diagWindow[32];
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char sndTxt4diagWindow[32];
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bool Sdata_serialTestResult[32];
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uint8_t Sdata_pProtResultOk[32];
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uint16_t Sdata_receivedDataLength[32];
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uint8_t Sdata_receivedDataBlock[64];
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// datif.cpp
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uint8_t dif_dataStep;
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uint8_t dif_scanStep;
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uint8_t RDBLKNR;
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uint8_t datif_OutCmdpara1;
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uint8_t datif_OutCmdpara2;
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uint8_t datif_OutCmdpara3;
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uint8_t datif_OutCmdpara4;
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uint16_t datif_OutCmdpara5;
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uint32_t datif_OutCmdpara6;
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uint8_t cycl_running;
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// dcBL.cpp
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uint8_t dcBL_LastBLcmd; // stored the last sent cmd in order to analys response
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uint8_t dcBL_AtbBinFile[300000];
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uint32_t dcBL_fileSize;
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uint16_t dcBL_nrOfBlocks;
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uint16_t dcBL_fileCrc;
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uint8_t dcBL_myBuf[300000]; // same content like "dcBL_AtbBinFile" but bytewise
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char BlResp[50][32];
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uint8_t dcBL_step;
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uint8_t dcBL_state;
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uint16_t dcBL_BlkCtr;
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uint16_t dcBL_cyclCtr;
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uint16_t repeatCtr;
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uint8_t Sdata_rawData[150];
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uint8_t Sdata_LengthRawData;
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// hwapi.cpp
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uint16_t hwapi_shutterTime;
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char ticketTemplate[1024];
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// sendWRcmd.cpp
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uint16_t nextAsynchsendCmd0[16];
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uint8_t nrOfCmdsInQueue;
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uint16_t nextAsynchsendCmd4[8];
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uint8_t nextCmd4para1[8];
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uint8_t nextCmd4para2[8];
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uint8_t nextCmd4para3[8];
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uint8_t nextCmd4para4[8];
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uint8_t nrOfCmds4InQueue;
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uint16_t nextAsynchsendCmd8[4];
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uint8_t nextCmd8para1[4];
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uint8_t nextCmd8para2[4];
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uint16_t nextCmd8para3[4];
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uint32_t nextCmd8para4[4];
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uint8_t nrOfCmds8InQueue;
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uint8_t sendAsynchDataBuf[160]; // no stack, only ONE buffer
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uint8_t sendAsyDatLen;
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uint8_t Sdata_mdbSendBuffer[64];
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uint8_t Sdata_mdbSendLen;
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uint8_t prnDataParameters[4];
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uint8_t prnDataBufferUser;
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char Sdata_PRN_TEXT[20][64];
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uint8_t pPrnDataBuff; // points to next PRINTER_BLOCK
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uint8_t nextFDwrCmd[16];
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uint8_t nextFDrdCmd[16];
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uint8_t nextFDblkNr[16];
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uint8_t nextFDpara1[16];
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uint8_t nextFDpara2[16];
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uint8_t nextFDpara3[16];
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uint8_t nextFDpara4[16];
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uint8_t p_nextFDcmdsInQueue;
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uint8_t longFDwrCmd[16];
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uint8_t longFDrdCmd[16];
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uint8_t longFDblkNr[16];
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uint8_t longFDlength[16];
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uint8_t longFDpara[16][64];
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uint8_t p_longFDcmdsInQueue;
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// storeInData.cpp
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bool indat_savePrnPwr;
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bool indat_saveMifPwr;
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bool indat_MdbIsOn;
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#endif
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uint8_t ndbs;
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uint8_t pari;
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uint8_t nsb;
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uint8_t br;
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#define MAXNROF_GENSTR 16
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char genStrings[MAXNROF_GENSTR][64];
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#define MAXNROF_AI 4
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uint16_t AI_val[MAXNROF_AI];
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struct DigitalInputs {
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uint8_t doorSwitch;
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uint8_t vaultSwitch;
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uint8_t lockSwitch;
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uint8_t opto;
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uint8_t aux;
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bool wakeFromPtu;
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bool wakeFromMdb;
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bool wakeFromModem;
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bool PrnReady;
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bool CoinAttach;
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bool CoinEscrowOpen;
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bool mifCardTap;
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bool contactPwrOn;
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bool mifarePwrOn;
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bool rdbk_mdbTxd;
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bool AuxPwrOn;
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bool gsmPwrOn;
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bool creditPwrOn;
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bool printerPwrOn;
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bool mdbPwrOn;
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bool rejMot_home;
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uint8_t npe_sensor;
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} din;
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struct DigitalOutputs {
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uint8_t mbdRxTst;
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uint8_t motorBits;
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uint8_t serialSwitch; // serial drv on/off, Serial mux1, Serial mux2
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uint8_t ledsAndFan;
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uint8_t laermUndRelay;
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uint8_t ptuWake;
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uint8_t auxPower;
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uint8_t coinShutter;
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uint8_t coinEscrow;
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uint8_t printerPower;
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} dout;
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struct Sdata {
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#define NROFMIFSTATEBYTES 40
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#define PRN_STATE_ARRAY_SIZE 20
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#define PRN_STATE_FONT_SIZE 20
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uint8_t MIF_STATE[NROFMIFSTATEBYTES];
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uint8_t MIF_DATA[12][64];
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uint8_t PRN_STATE[PRN_STATE_ARRAY_SIZE];
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uint8_t PRN_FONTS[PRN_STATE_FONT_SIZE];
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bool mdb_busRdy;
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bool mdb_V12on;
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bool mdb_V5on;
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uint8_t mdbNrOfRecData;
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uint8_t RecBuff[40];
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uint8_t empNrOfsettings;
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uint8_t emp_settingsBuff[66];
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uint8_t NrOfDeviceSetting;
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uint8_t DeviceSettingBuff[66];
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uint8_t NrOfMachineIDSetting;
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uint8_t NrOfMachineIDBuff[66];
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uint64_t slaveUID;
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uint8_t UIDstr[8];
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#define MAXNROF_MEASURE 4
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uint32_t measurement[MAXNROF_MEASURE];
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} Sdata;
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uint8_t mif_cardType;
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uint8_t mif_cardHolder[8];
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#define MEMDEPTH_GOTCOINS (16)
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struct T_coin {
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uint8_t valid;
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uint8_t signal;
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uint8_t error;
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uint8_t pad;
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uint16_t value;
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} gotCoin[MEMDEPTH_GOTCOINS];
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uint8_t ctr_gotCoin;
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struct store {
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uint32_t insertedAmount;
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uint16_t lastCoinType[64];
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uint16_t lastCoinValue[64];
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uint64_t wakeSrc;
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uint8_t rbDevParamLen;
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uint8_t rbDevParams[66];
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uint8_t deviceCondLen;
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uint8_t deviceCond[66];
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uint8_t machCondLen;
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uint8_t machCond[66];
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uint8_t DcBackupNrOfAccNr;
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uint16_t DcBackupAccNr[16]; // z.Z. nur 8
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uint8_t gotNrBlocksOfVaultRec;
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uint8_t vaultrecord[360];
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uint32_t amount;
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uint16_t nrOfCoins;
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} store;
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struct T_globTime {
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// Reihenfolge nicht vertauschen!!!!!
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uint8_t hour;
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uint8_t minute;
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uint8_t second;
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uint8_t Year;
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uint8_t Month;
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uint8_t DayOfMonth;
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uint8_t DayOfWeek; // 1=monday...7
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uint8_t reserve1;
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uint16_t MinutesOfToday;
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uint16_t reserve2;
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uint32_t SecondsOfToday;
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uint8_t IsLeapyear;
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uint8_t nextLeap;
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uint8_t lastLeap;
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uint8_t hoursOfWeek;
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uint16_t minOfWeek;
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uint16_t hoursOfMonth;
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uint16_t minOfMonth;
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uint16_t dayOfYear;
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uint16_t hoursOfYear;
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uint16_t reserve3;
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uint32_t minOfYear;
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uint8_t squareOutMode;
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uint8_t free1;
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uint16_t reserve4;
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uint32_t minOfMillenium;
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// bis hierher 44byts
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uint32_t free2;
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uint32_t free3;
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uint32_t free4;
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} getGlobalTime;
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static QSharedMemory *getShm(std::size_t s = 0);
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static SharedMemBuffer *getData() {
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return (SharedMemBuffer *)getShm()->data();
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}
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static SharedMemBuffer const *getDataConst() {
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return (SharedMemBuffer const *)getShm()->data();
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}
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#if 0
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static std::atomic<bool> __sharedMemLocked;
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static bool sharedMemLocked() {
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return __sharedMemLocked;
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}
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static void setSharedMemLocked() {
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__sharedMemLocked = true;
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}
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static void setSharedMemUnlocked() {
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__sharedMemLocked = false;
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}
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#endif
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};
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#endif // SHARED_MEM_BUFFER_INCLUDED_H
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src/shared_mem_buffer.cpp
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39
src/shared_mem_buffer.cpp
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#include "shared_mem_buffer.h"
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#include <QDebug>
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#include <atomic>
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#ifdef QT_POSIX_IPC
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// The POSIX backend can be explicitly selected using the -feature-ipc_posix
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// option to the Qt configure script. If it is enabled, the QT_POSIX_IPC
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// macro will be defined. -> we use SystemV shared memory
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#error "QT_POSIX_IPC defined"
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#else
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#include <sys/ipc.h> // ftok
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#endif
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// std::atomic_bool SharedMemBuffer::__sharedMemLocked{false};
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QSharedMemory *SharedMemBuffer::getShm(std::size_t size) {
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static QSharedMemory shMem;
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if (size > 0) {
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static const long nativeKey = ftok("/etc/os-release", 'H');
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static const QString fkey = std::to_string(nativeKey).c_str();
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shMem.setKey(fkey);
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if (!shMem.isAttached()) {
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if (shMem.create(size)) {
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return &shMem;
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} else {
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if (shMem.error() == QSharedMemory::AlreadyExists) {
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if (shMem.attach()) {
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return &shMem;
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}
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}
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}
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qCritical() << shMem.nativeKey() << shMem.key() << shMem.data()
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<< shMem.error() << shMem.errorString();
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return nullptr;
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}
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}
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return &shMem;
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}
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