add DataReaderScript.cpp, updtae ClassData.h
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715c2277b0
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122
ClassData.h
122
ClassData.h
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@ -14,7 +14,7 @@
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#include "CAENDigitizerType.h"
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#include "macro.h"
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#define MaxNData 10000 /// 10k events per channels
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#define MaxNData 10000 /// store 100k events per channels
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class Data{
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@ -30,7 +30,6 @@ class Data{
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double TriggerRate[MaxNChannels]; /// Hz
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double NonPileUpRate[MaxNChannels]; /// Hz
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short calIndexes[MaxNChannels][2]; /// the index for trigger rate calculation
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unsigned long TotNumEvents[MaxNChannels];
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unsigned short NumEventsDecoded[MaxNChannels]; /// reset at every decode
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unsigned short NumNonPileUpDecoded[MaxNChannels]; /// reset at every decode
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@ -47,8 +46,8 @@ class Data{
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std::vector<short> Waveform1[MaxNChannels][MaxNData];
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std::vector<short> Waveform2[MaxNChannels][MaxNData];
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std::vector<bool> DigiWaveform1[MaxNChannels][MaxNData];
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std::vector<bool> DigiWaveform2[MaxNChannels][MaxNData];
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std::vector<bool> DigiWaveform1[MaxNChannels][MaxNData];
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std::vector<bool> DigiWaveform2[MaxNChannels][MaxNData];
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public:
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Data();
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@ -57,7 +56,9 @@ class Data{
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void Allocate80MBMemory();
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void AllocateMemory(uint32_t size);
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void SetSaveWaveToMemory(bool OnOff) { this->SaveWaveToMemory = OnOff; }
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void SetSaveWaveToMemory(bool OnOff) { // store the waveform in memory
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this->SaveWaveToMemory = OnOff;
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}
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void ClearData();
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void ClearTriggerRate();
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@ -65,9 +66,8 @@ class Data{
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void CopyBuffer( const char * buffer, const unsigned int size);
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void PrintBuffer() const; //Incorrect
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void DecodeBuffer(bool fastDecode, int verbose = 0); /// fastDecode will not save waveform
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void DecodeBuffer(char * buffer, unsigned int size, bool fastDecode, int verbose = 0); // for outside data
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void DecodeBuffer(char * &buffer, unsigned int size, bool fastDecode, int verbose = 0); // for outside data
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void PrintStat() const;
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@ -99,7 +99,8 @@ class Data{
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std::string outFileName;
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unsigned int outFileSize; // should be max at 2 GB
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short calIndexes[MaxNChannels][2]; /// the index for trigger rate calculation
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unsigned int ReadBuffer(unsigned int nWord, int verbose = 0);
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int DecodePHADualChannelBlock(unsigned int ChannelMask, bool fastDecode, int verbose);
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@ -159,21 +160,24 @@ inline void Data::ClearData(){
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nByte = 0;
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AllocatedSize = 0;
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IsNotRollOverFakeAgg = false;
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for( int i = 0 ; i < MaxNChannels; i++){
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NumEvents[i] = 0;
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for( int ch = 0 ; ch < MaxNChannels; ch++){
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NumEvents[ch] = 0;
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for( int j = 0; j < MaxNData; j++){
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Timestamp[i][j] = 0;
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fineTime[i][j] = 0;
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Energy[i][j] = 0;
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Energy2[i][j] = 0;
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Waveform1[i][j].clear();
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Waveform2[i][j].clear();
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DigiWaveform1[i][j].clear();
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DigiWaveform2[i][j].clear();
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Timestamp[ch][j] = 0;
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fineTime[ch][j] = 0;
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Energy[ch][j] = 0;
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Energy2[ch][j] = 0;
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Waveform1[ch][j].clear();
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Waveform2[ch][j].clear();
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DigiWaveform1[ch][j].clear();
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DigiWaveform2[ch][j].clear();
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}
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calIndexes[i][0] = -1;
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calIndexes[i][1] = -1;
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NumEventsDecoded[ch] = 0;
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NumNonPileUpDecoded[ch] = 0;
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calIndexes[ch][0] = -1;
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calIndexes[ch][1] = -1;
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}
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tempWaveform1.clear();
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@ -193,6 +197,8 @@ inline void Data::CopyBuffer(const char * buffer, const unsigned int size){
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std::memcpy(this->buffer, buffer, size);
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}
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//^###############################################
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//^############################################### Save fsu file
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inline void Data::OpenSaveFile(std::string fileNamePrefix){
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outFilePrefix = fileNamePrefix;
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@ -222,7 +228,6 @@ inline void Data::SaveData(){
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outFileSize = ftell(outFile);
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}
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inline void Data::CloseSaveFile(){
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if( outFile != NULL ){
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fclose(outFile);
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@ -231,6 +236,8 @@ inline void Data::CloseSaveFile(){
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}
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}
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//^#######################################################
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//^####################################################### Print
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inline void Data::PrintStat() const{
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if( !IsNotRollOverFakeAgg ) {
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@ -245,13 +252,6 @@ inline void Data::PrintStat() const{
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printf("---+--------+-----------+-----------+----------\n");
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}
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inline void Data::PrintBuffer() const{
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unsigned int length = sizeof(buffer);
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for( unsigned int i = 0; i < length; i++){
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printf("%3d | 0x%08x \n", i, buffer[i]);
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}
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}
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inline void Data::PrintAllData() const{
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printf("============================= Print Data\n");
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for( int ch = 0; ch < MaxNChannels ; ch++){
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@ -263,7 +263,8 @@ inline void Data::PrintAllData() const{
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}
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}
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//####################################################### Decode
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//^#######################################################
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//^####################################################### Decode
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inline unsigned int Data::ReadBuffer(unsigned int nWord, int verbose){
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if( buffer == NULL ) return 0;
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@ -273,7 +274,7 @@ inline unsigned int Data::ReadBuffer(unsigned int nWord, int verbose){
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return word;
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}
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inline void Data::DecodeBuffer(char * buffer, unsigned int size, bool fastDecode, int verbose){
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inline void Data::DecodeBuffer(char * &buffer, unsigned int size, bool fastDecode, int verbose){
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this->buffer = buffer;
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this->nByte = size;
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DecodeBuffer(fastDecode, verbose);
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@ -289,8 +290,6 @@ inline void Data::DecodeBuffer(bool fastDecode, int verbose){
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if( nByte == 0 ) return;
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nw = 0;
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//TODO === wen very fast rate, can ClearTriggerRate, but is it nesscary?
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//ClearTriggerRate();
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do{
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if( verbose >= 1 ) printf("Data::DecodeBuffer ######################################### Board Agg.\n");
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@ -321,6 +320,11 @@ inline void Data::DecodeBuffer(bool fastDecode, int verbose){
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nw = nw + 1;
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unsigned int bdAggTimeTag = ReadBuffer(nw, verbose);
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if( verbose >= 2 ) printf("Agg Counter : %u \n", bdAggTimeTag);
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for( int ch = 0; ch < MaxNChannels; ch ++) {
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NumEventsDecoded[ch] = 0;
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NumNonPileUpDecoded[ch] = 0;
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}
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for( int chMask = 0; chMask < MaxNChannels/2 ; chMask ++ ){
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if( ((ChannelMask >> chMask) & 0x1 ) == 0 ) continue;
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@ -356,33 +360,35 @@ inline void Data::DecodeBuffer(bool fastDecode, int verbose){
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}
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//TODO ====== when NumEventsDecoded is too small, the trigger rate is not reliable?
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//TODO ===== for very high rate, use a simpler code.
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// unsigned long long dTime = Timestamp[ch][NumEvents[ch]-1] - Timestamp[ch][NumEvents[ch] - NumEventsDecoded[ch]];
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// double sec = dTime * ch2ns / 1e9;
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// if( sec != 0 && NumEventsDecoded[ch] > 1 ){
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// TriggerRate[ch] = NumEventsDecoded[ch]/sec;
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// NonPileUpRate[ch] = NumNonPileUpDecoded[ch]/sec;
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// }
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if( NumEventsDecoded[ch] > 4 ){
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if( calIndexes[ch][0] == -1 ) calIndexes[ch][0] = 0;
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if( calIndexes[ch][0] > -1 && calIndexes[ch][1] == -1 ) calIndexes[ch][1] = NumEvents[ch]-1;
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printf("%d %d| %d %d \n", NumEvents[ch], NumEventsDecoded[ch], NumEvents[ch] - NumEventsDecoded[ch], NumEvents[ch]-1);
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short nEvent = calIndexes[ch][1] - calIndexes[ch][0];
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//printf("ch %2d ----- %d %d | %d \n", ch, calIndexes[ch][0], calIndexes[ch][1], nEvent);
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if( calIndexes[ch][0] > -1 && calIndexes[ch][1] > -1 && nEvent > 10 ){
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unsigned long long dTime = Timestamp[ch][calIndexes[ch][1]] - Timestamp[ch][calIndexes[ch][0]];
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double sec = dTime * ch2ns / 1e9;
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unsigned long long dTime = Timestamp[ch][NumEvents[ch]-1] - Timestamp[ch][NumEvents[ch] - NumEventsDecoded[ch]];
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double sec = dTime * ch2ns / 1e9;
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TriggerRate[ch] = NumEventsDecoded[ch]/sec;
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NonPileUpRate[ch] = NumNonPileUpDecoded[ch]/sec;
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}else{ // look in to the data in the memory, not just this agg.
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if( calIndexes[ch][0] == -1 ) calIndexes[ch][0] = 0;
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if( calIndexes[ch][0] > -1 && calIndexes[ch][1] == -1 ) calIndexes[ch][1] = NumEvents[ch]-1;
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short nEvent = calIndexes[ch][1] - calIndexes[ch][0];
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//printf("ch %2d ----- %d %d | %d \n", ch, calIndexes[ch][0], calIndexes[ch][1], nEvent);
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//printf(" %10llu %10llu, %f = %f sec, rate = %f \n", Timestamp[ch][calIndexes[ch][0]], Timestamp[ch][calIndexes[ch][1]], ch2ns, sec, nEvent / sec);
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if( calIndexes[ch][0] > -1 && calIndexes[ch][1] > -1 && nEvent > 10 ){
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unsigned long long dTime = Timestamp[ch][calIndexes[ch][1]] - Timestamp[ch][calIndexes[ch][0]];
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double sec = dTime * ch2ns / 1e9;
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//printf(" %10llu %10llu, %f = %f sec, rate = %f \n", Timestamp[ch][calIndexes[ch][0]], Timestamp[ch][calIndexes[ch][1]], ch2ns, sec, nEvent / sec);
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if( sec > 0.1 ){ /// at least 100 msec
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TriggerRate[ch] = nEvent / sec;
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short pileUpCount = 0;
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for( int i = calIndexes[ch][0] ; i <= calIndexes[ch][1]; i++ ) {
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if( PileUp[ch][i] ) pileUpCount ++;
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if( PileUp[ch][i] ) pileUpCount ++;
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}
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NonPileUpRate[ch] = (nEvent - pileUpCount)/sec;
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@ -390,15 +396,16 @@ inline void Data::DecodeBuffer(bool fastDecode, int verbose){
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calIndexes[ch][0] = calIndexes[ch][1];
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calIndexes[ch][1] = -1;
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}
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}else{
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calIndexes[ch][1] = -1;
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}else{
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calIndexes[ch][1] = -1;
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}
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}
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}
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}
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//*=================================================
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inline int Data::DecodePHADualChannelBlock(unsigned int ChannelMask, bool fastDecode, int verbose){
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nw = nw + 1;
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@ -591,7 +598,7 @@ inline int Data::DecodePHADualChannelBlock(unsigned int ChannelMask, bool fastDe
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printf("PileUp or RollOver : %d\n", pileUpOrRollOver);
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printf("PileUp : %d , extra : 0x%03x, energy : %d \n", pileUp, extra, energy);
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printf(" lost event : %d \n", ((extra >> 0) & 0x1) );
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printf(" roll-over : %d (is fake event)\n", ((extra >> 1) & 0x1) );
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printf(" roll-over : %d (is fake event ?)\n", ((extra >> 1) & 0x1) );
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printf(" fake-event : %d \n", ((extra >> 3) & 0x1) );
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printf(" input sat. : %d \n", ((extra >> 4) & 0x1) );
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printf(" lost trg : %d \n", ((extra >> 5) & 0x1) );
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@ -617,9 +624,9 @@ inline int Data::DecodePHADualChannelBlock(unsigned int ChannelMask, bool fastDe
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}
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}
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if( NumEvents[channel] >= MaxNData ) ClearData();
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if( NumEvents[channel] >= MaxNData ) ClearData(); // if any channel has more data then MaxNData, clear all stored data
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if( verbose >= 1 ) printf("%4d | ch : %2d, PileUp : %d , energy : %5d, rollOver: %d, timestamp : %10llu, triggerAt : %d, nSample : %d, %f sec\n",
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if( verbose >= 1 ) printf("evt %4d | ch : %2d, PileUp : %d , energy : %5d, rollOver: %d, timestamp : %10llu, triggerAt : %d, nSample : %d, %f sec\n",
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NumEvents[channel], channel, pileUp, energy, rollOver, timeStamp, triggerAtSample, nSample , timeStamp * 4. / 1e9);
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}
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@ -631,6 +638,7 @@ inline int Data::DecodePHADualChannelBlock(unsigned int ChannelMask, bool fastDe
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return nw;
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}
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//*=================================================
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inline int Data::DecodePSDDualChannelBlock(unsigned int ChannelMask, bool fastDecode, int verbose){
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nw = nw + 1;
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58
DataReaderScript.cpp
Normal file
58
DataReaderScript.cpp
Normal file
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@ -0,0 +1,58 @@
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#include "ClassData.h"
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void DataReaderScript(){
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Data * data = new Data();
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data->DPPType = V1730_DPP_PHA_CODE;
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data->ch2ns = 4.0;
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std::string fileName = "data/temp_324_PHA_000.fsu";
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FILE * haha = fopen(fileName.c_str(), "r");
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fseek(haha, 0L, SEEK_END);
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const long inFileSize = ftell(haha);
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printf("%s | file size : %ld Byte = %.2f MB\n", fileName.c_str() , inFileSize, inFileSize/1024./1024.);
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fseek(haha, 0, SEEK_SET);
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char * buffer = nullptr;
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int countBdAgg = 0;
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do{
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long fPos1 = ftell(haha);
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unsigned int word[1]; /// 4 bytes
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size_t dump = fread(word, 4, 1, haha);
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fseek(haha, -4, SEEK_CUR);
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short header = ((word[0] >> 28 ) & 0xF);
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if( header != 0xA ) break;
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unsigned int aggSize = (word[0] & 0x0FFFFFFF) * 4; ///byte
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buffer = new char[aggSize];
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dump = fread(buffer, aggSize, 1, haha);
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long fPos2 = ftell(haha);
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printf("Board Agg. has %d word = %d bytes | %ld - %ld\n", aggSize/4, aggSize, fPos1, fPos2);
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countBdAgg ++;
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printf("==================== %d Agg\n", countBdAgg);
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data->DecodeBuffer(buffer, aggSize, false, 0); // data own the buffer
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data->ClearBuffer(); // this will clear the buffer.
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if( !data->IsNotRollOverFakeAgg ) continue;
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//if( countBdAgg % 100 == 0)
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data->PrintStat();
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//data->ClearData();
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}while(!feof(haha) && ftell(haha) < inFileSize);
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//data->PrintAllData();
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fclose(haha);
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delete data;
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}
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25
test.cpp
25
test.cpp
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@ -37,27 +37,26 @@ int main(int argc, char* argv[]){
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const float ch2ns = dig[0]->GetCh2ns();
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// Data * data = dig[0]->GetData();
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Data * data = dig[0]->GetData();
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// dig[0]->StartACQ();
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dig[0]->StartACQ();
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// for( int i = 0; i < 50; i ++ ){
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// usleep(100*1000);
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// dig[0]->ReadData();
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// data->DecodeBuffer(false);
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// data->PrintStat();
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for( int i = 0; i < 50; i ++ ){
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usleep(100*1000);
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dig[0]->ReadData();
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data->DecodeBuffer(false, 3);
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data->PrintStat();
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// int index = data->NumEventsDecoded[0];
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// printf("-------------- %ld \n", data->Waveform1[0][index].size());
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int index = data->NumEventsDecoded[0];
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printf("-------------- %ld \n", data->Waveform1[0][index].size());
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// }
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}
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// dig[0]->StopACQ();
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dig[0]->StopACQ();
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//data->PrintAllData();
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data->PrintAllData();
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@ -20,7 +20,7 @@ void PrintChannelSettingFromDigitizer(int handle, int ch, float ch2ns){
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printf("================================================\e[0m\n");
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///DPP algorithm Control
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uint32_t * value = new uint32_t[16];
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CAEN_DGTZ_ReadRegister(handle, Register::DPP::DPPAlgorithmControl + (ch << 8), value);
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CAEN_DGTZ_ReadRegister(handle, DPP::DPPAlgorithmControl + (ch << 8), value);
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printf(" 32 28 24 20 16 12 8 4 0\n");
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printf(" | | | | | | | | |\n");
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cout <<" DPP algorithm Control : 0b" << bitset<32>(value[0]);
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@ -34,7 +34,7 @@ void PrintChannelSettingFromDigitizer(int handle, int ch, float ch2ns){
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int pileUp = int(value[0] >> 27) & 0x1;
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///DPP algorithm Control 2
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CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::DPPAlgorithmControl2_G + (ch << 8), value);
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CAEN_DGTZ_ReadRegister(handle, DPP::PHA::DPPAlgorithmControl2_G + (ch << 8), value);
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cout <<" DPP algorithm Control 2: 0b" << bitset<32>(value[0]) ;
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printf(" = 0x%x\n", value[0]);
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@ -51,47 +51,47 @@ void PrintChannelSettingFromDigitizer(int handle, int ch, float ch2ns){
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printf(" ch2ns : %.0f ns\n", ch2ns);
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printf("==========----- input \n");
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CAEN_DGTZ_ReadRegister(handle, Register::DPP::RecordLength_G + (ch << 8), value); printf("%24s %5d samples = %5.0f ns \n", "Record Length", ((value[0] * 8) & MaxRecordLength), ((value[0] * 8) & MaxRecordLength) * ch2ns); ///Record length
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CAEN_DGTZ_ReadRegister(handle, Register::DPP::PreTrigger + (ch << 8), value); printf("%24s %5d samples = %5.0f ns \n", "Pre-tigger", value[0] * 4, value[0] * 4 * ch2ns); ///Pre-trigger
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||||
CAEN_DGTZ_ReadRegister(handle, DPP::RecordLength_G + (ch << 8), value); printf("%24s %5d samples = %5.0f ns \n", "Record Length", ((value[0] * 8) & MaxRecordLength), ((value[0] * 8) & MaxRecordLength) * ch2ns); ///Record length
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PreTrigger + (ch << 8), value); printf("%24s %5d samples = %5.0f ns \n", "Pre-tigger", value[0] * 4, value[0] * 4 * ch2ns); ///Pre-trigger
|
||||
printf("%24s %5.0f samples, DPP-[20:22]\n", "baseline mean", pow(4, 1 + baseline)); ///Ns baseline
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::ChannelDCOffset + (ch << 8), value); printf("%24s %.2f %% \n", "DC offset", 100.0 - value[0] * 100./ 0xFFFF); ///DC offset
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::InputDynamicRange + (ch << 8), value); printf("%24s %.1f Vpp \n", "input Dynamic", value[0] == 0 ? 2 : 0.5); ///InputDynamic
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::ChannelDCOffset + (ch << 8), value); printf("%24s %.2f %% \n", "DC offset", 100.0 - value[0] * 100./ 0xFFFF); ///DC offset
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::InputDynamicRange + (ch << 8), value); printf("%24s %.1f Vpp \n", "input Dynamic", value[0] == 0 ? 2 : 0.5); ///InputDynamic
|
||||
printf("%24s %s, DPP-[16]\n", "polarity", polarity == 0 ? "Positive" : "negative"); ///Polarity
|
||||
|
||||
printf("==========----- discriminator \n");
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::TriggerThreshold + (ch << 8), value); printf("%24s %4d LSB\n", "Threshold", value[0]); ///Threshold
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::TriggerHoldOffWidth + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "trigger hold off", value[0], value[0] * 4 * ch2ns); ///Trigger Hold off
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::RCCR2SmoothingFactor + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Fast Dis. smoothing", (value[0] & 0x1f) * 2, (value[0] & 0x1f) * 2 * ch2ns ); ///Fast Discriminator smoothing
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::ShapedTriggerWidth + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Fast Dis. output width", value[0], value[0] * 4 * ch2ns); ///Fast Dis. output width
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::InputRiseTime + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Input rise time ", value[0], value[0] * 4 * ch2ns); ///Input rise time
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::TriggerThreshold + (ch << 8), value); printf("%24s %4d LSB\n", "Threshold", value[0]); ///Threshold
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::TriggerHoldOffWidth + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "trigger hold off", value[0], value[0] * 4 * ch2ns); ///Trigger Hold off
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::RCCR2SmoothingFactor + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Fast Dis. smoothing", (value[0] & 0x1f) * 2, (value[0] & 0x1f) * 2 * ch2ns ); ///Fast Discriminator smoothing
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::ShapedTriggerWidth + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Fast Dis. output width", value[0], value[0] * 4 * ch2ns); ///Fast Dis. output width
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::InputRiseTime + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Input rise time ", value[0], value[0] * 4 * ch2ns); ///Input rise time
|
||||
|
||||
printf("==========----- Trapezoid \n");
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::TrapezoidRiseTime + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Trap. rise time", value[0], value[0] * 4 * ch2ns); ///Trap. rise time, 2 for 1 ch to 2ns
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::TrapezoidRiseTime + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Trap. rise time", value[0], value[0] * 4 * ch2ns); ///Trap. rise time, 2 for 1 ch to 2ns
|
||||
int riseTime = value[0] * 4 * ch2ns;
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::TrapezoidFlatTop + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Trap. flat time", value[0], value[0] * 4 * ch2ns); ///Trap. flat time
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::TrapezoidFlatTop + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Trap. flat time", value[0], value[0] * 4 * ch2ns); ///Trap. flat time
|
||||
int flatTopTime = value[0] * 4 * ch2ns;
|
||||
double shift = log(riseTime * flatTopTime ) / log(2) - 2;
|
||||
printf("%24s %4d bit =? %.1f = Ceil( Log(rise [ns] x decay [ns])/Log(2) ), DPP-[0:5]\n", "Trap. Rescaling", trapRescaling, shift ); ///Trap. Rescaling Factor
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::DecayTime + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Decay time", value[0], value[0] * 4 * ch2ns); ///Trap. pole zero
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::PeakingTime + (ch << 8), value); printf("%24s %4d samples, %5.0f ns = %.2f %% of FlatTop\n", "Peaking time", value[0], value[0] * 4 * ch2ns, value[0] * 400. * ch2ns / flatTopTime ); ///Peaking time
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::PeakHoldOff + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Peak hole off", value[0], value[0] * 4 *ch2ns ); ///Peak hold off
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::DecayTime + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Decay time", value[0], value[0] * 4 * ch2ns); ///Trap. pole zero
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::PeakingTime + (ch << 8), value); printf("%24s %4d samples, %5.0f ns = %.2f %% of FlatTop\n", "Peaking time", value[0], value[0] * 4 * ch2ns, value[0] * 400. * ch2ns / flatTopTime ); ///Peaking time
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::PeakHoldOff + (ch << 8), value); printf("%24s %4d samples, %5.0f ns \n", "Peak hole off", value[0], value[0] * 4 *ch2ns ); ///Peak hold off
|
||||
printf("%24s %4.0f samples, DPP-[12:13]\n", "Peak mean", pow(4, NsPeak)); ///Ns peak
|
||||
|
||||
printf("==========----- Other \n");
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::FineGain + (ch << 8), value); printf("%24s %d = 0x%x\n", "Energy fine gain", value[0], value[0]); ///Energy fine gain
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::ChannelADCTemperature_R + (ch << 8), value); printf("%24s %d C\n", "Temperature", value[0]); ///Temperature
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::RiseTimeValidationWindow + (ch << 8), value); printf("%24s %.0f ns \n", "RiseTime Vaild Win.", value[0] * ch2ns);
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::PHA::ChannelStopAcquisition + (ch << 8), value); printf("%24s %d = %s \n", "Stop Acq bit", value[0] & 1 , (value[0] & 1 ) == 0 ? "Run" : "Stop");
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::ChannelStatus_R + (ch << 8), value); printf("%24s 0x%x \n", "Status bit", (value[0] & 0xff) );
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::AMCFirmwareRevision_R + (ch << 8), value); printf("%24s 0x%x \n", "AMC firmware rev.", value[0] );
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::VetoWidth + (ch << 8), value); printf("%24s 0x%x \n", "VetoWidth bit", value[0] );
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::FineGain + (ch << 8), value); printf("%24s %d = 0x%x\n", "Energy fine gain", value[0], value[0]); ///Energy fine gain
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::ChannelADCTemperature_R + (ch << 8), value); printf("%24s %d C\n", "Temperature", value[0]); ///Temperature
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::RiseTimeValidationWindow + (ch << 8), value); printf("%24s %.0f ns \n", "RiseTime Vaild Win.", value[0] * ch2ns);
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::PHA::ChannelStopAcquisition + (ch << 8), value); printf("%24s %d = %s \n", "Stop Acq bit", value[0] & 1 , (value[0] & 1 ) == 0 ? "Run" : "Stop");
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::ChannelStatus_R + (ch << 8), value); printf("%24s 0x%x \n", "Status bit", (value[0] & 0xff) );
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::AMCFirmwareRevision_R + (ch << 8), value); printf("%24s 0x%x \n", "AMC firmware rev.", value[0] );
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::VetoWidth + (ch << 8), value); printf("%24s 0x%x \n", "VetoWidth bit", value[0] );
|
||||
printf("%24s %d = %s\n", "RollOverFlag, DPP-[26]", rollOver, rollOver ? "enable" : "disable" );
|
||||
printf("%24s %d = %s\n", "Pile-upFlag, DPP-[27]", pileUp, pileUp ? "enable" : "disable" );
|
||||
printf("%24s %d, %s \n", "Extra2 opt, DPP2-[8:10]", extras2WordOption, extra2WordOptStr.c_str());
|
||||
printf("========= events storage and transfer\n");
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::NumberEventsPerAggregate_G + (ch << 8), value); printf("%24s %d \n", "Event Aggregate", value[0] & 0x3FF);
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::AggregateOrganization, value); printf("%24s %d \n", "Buffer Division", ((value[0] & 0x007) < 2 ? 0 : (int)pow(2, value[0] & 7)));
|
||||
CAEN_DGTZ_ReadRegister(handle, Register::DPP::MaxAggregatePerBlockTransfer , value); printf("%24s %d \n", "Num of Agg. / ReadData", value[0] & 0x1FF);
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::NumberEventsPerAggregate_G + (ch << 8), value); printf("%24s %d \n", "Event Aggregate", value[0] & 0x3FF);
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::AggregateOrganization, value); printf("%24s %d \n", "Buffer Division", ((value[0] & 0x007) < 2 ? 0 : (int)pow(2, value[0] & 7)));
|
||||
CAEN_DGTZ_ReadRegister(handle, DPP::MaxAggregatePerBlockTransfer , value); printf("%24s %d \n", "Num of Agg. / ReadData", value[0] & 0x1FF);
|
||||
|
||||
printf("========================================= end of ch-%d\n", ch);
|
||||
|
||||
|
@ -103,7 +103,7 @@ void PrintBoardConfiguration(int handle){
|
|||
printf("================ Setting for Board \n");
|
||||
printf("================================================\e[0m\n");
|
||||
uint32_t * value = new uint32_t[1];
|
||||
CAEN_DGTZ_ReadRegister(handle, (uint32_t) Register::BoardConfiguration, value);
|
||||
CAEN_DGTZ_ReadRegister(handle, (uint32_t) BoardConfiguration, value);
|
||||
printf(" 32 28 24 20 16 12 8 4 0\n");
|
||||
printf(" | | | | | | | | |\n");
|
||||
cout <<" Board Configuration : 0b" << bitset<32>(value[0]) << endl;
|
||||
|
@ -199,12 +199,12 @@ int main(int argc, char* argv[]){
|
|||
///ret |= CAEN_DGTZ_SetDPPAcquisitionMode(handle, CAEN_DGTZ_DPP_ACQ_MODE_Mixed, CAEN_DGTZ_DPP_SAVE_PARAM_EnergyAndTime); /// Board Configure can do that
|
||||
|
||||
/// Set the number of samples for each waveform
|
||||
ret = CAEN_DGTZ_WriteRegister(handle, Register::DPP::RecordLength_G + 0x7000, 625);
|
||||
ret = CAEN_DGTZ_WriteRegister(handle, DPP::RecordLength_G + 0x7000, 625);
|
||||
if( ret != 0 ) { printf("==== set Record Length.\n"); return 0;}
|
||||
|
||||
|
||||
//ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::BoardConfiguration, 0x4F8115); // with wave
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::BoardConfiguration, 0x4E8115); // with-out wave
|
||||
//ret |= CAEN_DGTZ_WriteRegister(handle, DPP::BoardConfiguration, 0x4F8115); // with wave
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::BoardConfiguration, 0x4E8115); // with-out wave
|
||||
|
||||
|
||||
/// Set the digitizer acquisition mode (CAEN_DGTZ_SW_CONTROLLED or CAEN_DGTZ_S_IN_CONTROLLED)
|
||||
|
@ -261,29 +261,29 @@ int main(int argc, char* argv[]){
|
|||
///}
|
||||
///ret = CAEN_DGTZ_SetDPPParameters(handle, channelMask, &DPPParams);
|
||||
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::DecayTime + 0x7000 , 5000 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::TrapezoidFlatTop + 0x7000 , 62 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::TrapezoidRiseTime + 0x7000 , 6 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::PeakingTime + 0x7000 , 6 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::RCCR2SmoothingFactor + 0x7000 , 4 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::InputRiseTime + 0x7000 , 6 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::TriggerThreshold + 0x7000 , 64 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::PeakHoldOff + 0x7000 , 0x3E );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::TriggerHoldOffWidth + 0x7000 , 0x3E );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PHA::RiseTimeValidationWindow + 0x7000 , 0x0 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::DecayTime + 0x7000 , 5000 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::TrapezoidFlatTop + 0x7000 , 62 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::TrapezoidRiseTime + 0x7000 , 6 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::PeakingTime + 0x7000 , 6 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::RCCR2SmoothingFactor + 0x7000 , 4 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::InputRiseTime + 0x7000 , 6 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::TriggerThreshold + 0x7000 , 64 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::PeakHoldOff + 0x7000 , 0x3E );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::TriggerHoldOffWidth + 0x7000 , 0x3E );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PHA::RiseTimeValidationWindow + 0x7000 , 0x0 );
|
||||
|
||||
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::ChannelDCOffset + 0x7000 , 0xEEEE );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::PreTrigger + 0x7000 , 124 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::InputDynamicRange + 0x7000 , 0x0 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::ChannelDCOffset + 0x7000 , 0xEEEE );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::PreTrigger + 0x7000 , 124 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::InputDynamicRange + 0x7000 , 0x0 );
|
||||
|
||||
|
||||
//ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::BoardConfiguration , 0x10E0114 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::NumberEventsPerAggregate_G + 0x7000, 5);
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::AggregateOrganization, 0);
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::MaxAggregatePerBlockTransfer, 40);
|
||||
//ret |= CAEN_DGTZ_WriteRegister(handle, DPP::BoardConfiguration , 0x10E0114 );
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::NumberEventsPerAggregate_G + 0x7000, 5);
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::AggregateOrganization, 0);
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::MaxAggregatePerBlockTransfer, 40);
|
||||
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, Register::DPP::DPPAlgorithmControl + 0x7000, 0xe30200f);
|
||||
ret |= CAEN_DGTZ_WriteRegister(handle, DPP::DPPAlgorithmControl + 0x7000, 0xe30200f);
|
||||
|
||||
|
||||
if( ret != 0 ) { printf("==== set channels error.\n"); return 0;}
|
||||
|
|
Loading…
Reference in New Issue
Block a user