| 1 | #include "fadtoraw.h"
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| 2 |
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| 3 | #define NUM_OF_CHANNELS_PER_CHIP 9
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| 4 | #define NUM_OF_DRS_PER_FAD 4
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| 5 | #define CPC NUM_OF_CHANNELS_PER_CHIP
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| 6 | #define DPF NUM_OF_DRS_PER_FAD
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| 7 | #define MAX_NUM_OF_FADS 50
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| 8 |
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| 9 | // converts FAD -> .RAW
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| 10 | int fadtoraw(char *inputfilename, timeval starttime, timeval endtime, int runnum){
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| 11 |
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| 12 |
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| 13 | FILE *faddatafile;
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| 14 | FILE* RAWfile;
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| 15 | char rawfilename[PATH_MAX];
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| 16 |
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| 17 | EventHeader RawEventHeader;
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| 18 | RunHeader RawRunHeader;
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| 19 | RawRunHeader.NChips = DPF;
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| 20 | RawRunHeader.NBoards = 1; //fix
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| 21 | BoardStructure rawBoard[RawRunHeader.NBoards];
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| 22 | EVNT FadEvent;
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| 23 | unsigned short board_ids[MAX_NUM_OF_FADS];
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| 24 | short convert; // buffer to convert adc data
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| 25 | float temperature=0;
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| 26 |
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| 27 | // open input data file which is fad-formatted
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| 28 | if ((faddatafile = fopen (inputfilename, "r")) == NULL)
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| 29 | {
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| 30 | printf ("Error: Inputfile %s not found\n", inputfilename);
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| 31 | return -1;
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| 32 | }
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| 33 | // Open outputfile, which will be RAW formatted
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| 34 | char dummy[PATH_MAX];
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| 35 | strncpy(dummy,inputfilename,strlen(inputfilename)-4);
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| 36 | sprintf(rawfilename, "%s.raw", dummy);
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| 37 | if ((RAWfile = fopen (rawfilename, "w")) == NULL)
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| 38 | {
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| 39 | printf ("Error: Could not open outputfile %s\n", rawfilename);
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| 40 | return -1;
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| 41 | }
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| 42 |
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| 43 | //RAW file starts with a Runheader, but not all information is known at this
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| 44 | // point, so an empty header is written, and filled after the inputfile was processed.
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| 45 | write_RAWheader (rawBoard, RawRunHeader, RAWfile);
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| 46 |
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| 47 | // reading FAD input file. counting number of events in file.
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| 48 | // Write FAD-Data to FAD-struct
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| 49 | int Number_of_Events_in_File =0;
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| 50 | for (int evnt_cnt = 0;; evnt_cnt++)
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| 51 | {
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| 52 |
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| 53 | // reading package header
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| 54 | // try to read START PACKAGE FLAG = 0xFB01 ... if reading fails, EOF found.
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| 55 | if (fread (&FadEvent.evnt_header.start_package_flag, sizeof (FadEvent.evnt_header.start_package_flag), 1, faddatafile) != 1)
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| 56 | {
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| 57 | // end of file reached
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| 58 | Number_of_Events_in_File = evnt_cnt;
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| 59 | std::cout << evnt_cnt << " events counted.\n";
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| 60 | break;
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| 61 | }
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| 62 |
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| 63 |
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| 64 |
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| 65 | if(ntohs (FadEvent.evnt_header.start_package_flag) != 0xFB01){
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| 66 | printf ("Error: Wrong start package flag in event %d\n", evnt_cnt);
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| 67 | exit (1);
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| 68 | }
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| 69 | fread (&FadEvent.evnt_header.package_length, sizeof (FadEvent.evnt_header.package_length), 1, faddatafile);
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| 70 | fread (&FadEvent.evnt_header.version_no, sizeof (FadEvent.evnt_header.version_no), 1, faddatafile);
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| 71 | fread (&FadEvent.evnt_header.trigger_id, sizeof (FadEvent.evnt_header.trigger_id), 1, faddatafile);
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| 72 | fread (&FadEvent.evnt_header.trigger_type, sizeof (FadEvent.evnt_header.trigger_type), 1, faddatafile);
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| 73 | fread (&FadEvent.evnt_header.trigger_crc, sizeof (FadEvent.evnt_header.trigger_crc), 1, faddatafile);
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| 74 | fread (&FadEvent.evnt_header.local_trigger_id, sizeof (FadEvent.evnt_header.local_trigger_id), 1, faddatafile);
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| 75 | fread (&FadEvent.evnt_header.local_trigger_type, sizeof (FadEvent.evnt_header.local_trigger_type), 1, faddatafile);
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| 76 | fread (&FadEvent.evnt_header.local_trigger_crc, sizeof (FadEvent.evnt_header.local_trigger_crc), 1, faddatafile);
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| 77 | fread (&FadEvent.evnt_header.board_id, sizeof (FadEvent.evnt_header.board_id), 1, faddatafile);
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| 78 |
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| 79 |
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| 80 | RawEventHeader.EventNumber = ntohl(FadEvent.evnt_header.local_trigger_id);
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| 81 | RawEventHeader.TriggerType = ntohs(FadEvent.evnt_header.local_trigger_type);
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| 82 | RawEventHeader.Second = starttime.tv_sec; // Event time stamp (result of gettimeofday())
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| 83 | RawEventHeader.Microsecond = starttime.tv_usec;
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| 84 | RawEventHeader.TriggerType = FadEvent.evnt_header.local_trigger_type;
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| 85 |
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| 86 | // read out temperatures and sum them up
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| 87 |
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| 88 | // i need some dummy variables here
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| 89 | long SumOfRois =0;
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| 90 | int ThisRoi=0;
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| 91 | int start_cell_dummy =0;
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| 92 |
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| 93 | for (int i = 0; i < DPF; i++)
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| 94 | {
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| 95 | fread (&FadEvent.evnt_header.drs_temperature[i], sizeof (FadEvent.evnt_header.drs_temperature[i]), 1, faddatafile);
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| 96 |
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| 97 | // if MSB = sign bit is set.
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| 98 | if ((ntohs (FadEvent.evnt_header.drs_temperature[i]) & 0x8000) == 0) // temp is positive
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| 99 | {
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| 100 | temperature += float(ntohs (FadEvent.evnt_header.drs_temperature[i]) >> 3)/16;
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| 101 | }
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| 102 | else // temp is negative
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| 103 | {
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| 104 | temperature += float(0xE000 | (ntohs (FadEvent.evnt_header.drs_temperature[i])) >> 3)/16;
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| 105 | }
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| 106 | }
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| 107 |
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| 108 | // DAC Values, only if version > 0x0101
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| 109 | if (ntohs (FadEvent.evnt_header.version_no) > 0x0101)
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| 110 | {
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| 111 | for (int i = 0; i < 8; i++)
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| 112 | {
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| 113 | fread (&FadEvent.evnt_header.dac[i], sizeof (FadEvent.evnt_header.dac[i]), 1, faddatafile);
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| 114 | }
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| 115 | }
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| 116 |
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| 117 |
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| 118 | SumOfRois = 0;
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| 119 | ThisRoi = 0;
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| 120 | for (int i = 0; i < (DPF * CPC); i++) // for loop over DPFxCPC channels .. i.e. 36 channels in our case.
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| 121 | {
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| 122 | // read channel header
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| 123 | // ID
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| 124 | fread (&FadEvent.channel[i].channel_id, sizeof (FadEvent.channel[i].channel_id), 1, faddatafile);
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| 125 | // start cell
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| 126 | fread (&FadEvent.channel[i].channel_start_cell, sizeof (FadEvent.channel[i].channel_start_cell), 1, faddatafile);
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| 127 | // region of interest
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| 128 | fread (&FadEvent.channel[i].channel_roi, sizeof (FadEvent.channel[i].channel_roi), 1, faddatafile);
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| 129 | ThisRoi = ntohs(FadEvent.channel[i].channel_roi);
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| 130 |
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| 131 | SumOfRois += ThisRoi;
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| 132 |
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| 133 | // allocate memory and read channel data
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| 134 | FadEvent.channel[i].channel_adc_data = (unsigned short*) calloc (ThisRoi, sizeof (unsigned short));
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| 135 | fread (FadEvent.channel[i].channel_adc_data, sizeof (unsigned short), ThisRoi, faddatafile);
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| 136 |
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| 137 | }
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| 138 |
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| 139 | // now I know everything about this Event and can write the run header.
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| 140 | // write RAW Event Header
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| 141 | RawEventHeader.EventSize = SumOfRois * sizeof(short) + DPF * sizeof(int) * RawRunHeader.NBoards; // THE TRIGGER CELLS ARE PART OF THE EVENT SIZE (+16)!!!!!!!
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| 142 |
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| 143 | fwrite(&RawEventHeader.EventNumber, (size_t) sizeof(RawEventHeader.EventNumber), 1, RAWfile);
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| 144 | fwrite(&RawEventHeader.Second, (size_t) sizeof(RawEventHeader.Second), 1, RAWfile);
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| 145 | fwrite(&RawEventHeader.Microsecond, (size_t) sizeof(RawEventHeader.Microsecond), 1, RAWfile);
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| 146 | fwrite(&RawEventHeader.TriggerType, (size_t) sizeof(RawEventHeader.TriggerType), 1, RAWfile);
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| 147 | fwrite(&RawEventHeader.EventSize, (size_t) sizeof(RawEventHeader.EventSize), 1, RAWfile);
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| 148 |
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| 149 | // write trigger cells
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| 150 | // these triger cells are the so called channel_start cells ...I read out of the fad
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| 151 | // input data file.
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| 152 | // I read out the channels in this order: 00 10 20 30 01 11 21 31 .. 28 38.
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| 153 | // so the four trigger cell I need are stored in the first
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| 154 | // four channels of each event.
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| 155 |
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| 156 |
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| 157 | for(unsigned int l=0; l < RawRunHeader.NBoards*RawRunHeader.NChips; l++){
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| 158 | start_cell_dummy = int(ntohs(FadEvent.channel[l].channel_start_cell));
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| 159 | fwrite(&start_cell_dummy, sizeof(int), 1, RAWfile);
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| 160 | }
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| 161 |
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| 162 | // okay now i can write the 36 channels into the data file.
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| 163 | // but they were stored in a different manner ... so we have
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| 164 | // to do this carefully
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| 165 | //
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| 166 | // oh and in addition. the data is not yet in a nice PC readable format.
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| 167 | // its still in 12bit signed twis complement + out-of-range-bit with leading zeroes.
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| 168 | // we have to transform it into nice signed shorts.
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| 169 |
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| 170 |
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| 171 | // for loop over DPFxCPC channels .. i.e. 36 channels in our case.
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| 172 | for (int chip =0 ; chip < DPF ; ++chip) {
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| 173 | for (int ch = 0; ch < CPC; ++ch) {
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| 174 |
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| 175 | // we want to walk like this: 0 4 8 12 .. 32 1 5 9 .. 33 2 6 10 ... 34 3 7 11 ... 35
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| 176 |
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| 177 | for (int b =0 ; b < ntohs(FadEvent.channel[chip+DPF*ch].channel_roi) ; b++) {
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| 178 | convert = ntohs(FadEvent.channel[chip+DPF*ch].channel_adc_data[b]);
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| 179 | //if(convert == 0x1FFF) convert = 0x7FFF; //set value for overflow
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| 180 | //else if(convert == 0x1000)convert = 0x8000; //set value for underflow
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| 181 | (convert <<= 4) >>= 4; //delete the sign-bit by shifting left and shift back
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| 182 | fwrite (&convert , sizeof(unsigned short) , 1 , RAWfile);
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| 183 | }
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| 184 | }
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| 185 | }
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| 186 |
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| 187 |
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| 188 | for (int i = 0; i < (DPF * CPC); i++) // for loop over DPFxCPC channels .. i.e. 36 channels in our case.
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| 189 | {
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| 190 | // free memory of channel data
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| 191 | free (FadEvent.channel[i].channel_adc_data);
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| 192 | }
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| 193 |
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| 194 | // CRC, only if version > 0x0100
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| 195 | if (ntohs (FadEvent.evnt_header.version_no) > 0x0100)
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| 196 | {
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| 197 | fread (&FadEvent.package_crc, sizeof (FadEvent.package_crc), 1, faddatafile);
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| 198 | }
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| 199 |
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| 200 | // end package flag
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| 201 | fread (&FadEvent.end_package_flag, sizeof (FadEvent.end_package_flag), 1, faddatafile);
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| 202 | if(ntohs (FadEvent.end_package_flag) != 0x04FE){
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| 203 | printf ("Error: Wrong end package flag (%#x) in event %d\n", ntohs (FadEvent.end_package_flag), evnt_cnt);
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| 204 | return -1;
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| 205 | }
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| 206 |
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| 207 |
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| 208 |
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| 209 |
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| 210 | }
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| 211 |
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| 212 | //FAD Data to RAW-struct
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| 213 | //RunHeader
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| 214 | RawRunHeader.MagicNum = 0xe0e0;
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| 215 | RawRunHeader.DataFormat = 1;
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| 216 | RawRunHeader.RunHeaderSize = sizeof(RawRunHeader);
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| 217 | RawRunHeader.EventHeaderSize = sizeof(RawEventHeader);
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| 218 | RawRunHeader.BoardStructureSize = sizeof(BoardStructure);
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| 219 | RawRunHeader.SoftwareRevision = 0xFFFF;
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| 220 | RawRunHeader.Identification = 0xFFFF;
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| 221 | RawRunHeader.Type = 0; // Run type: 0=data, 1=pedestal, 3=test
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| 222 | RawRunHeader.Events = Number_of_Events_in_File;
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| 223 |
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| 224 | RawRunHeader.RunNumber = runnum;
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| 225 | RawRunHeader.FileNumber = 0;
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| 226 | memset (RawRunHeader.Description, 0x00, sizeof (RawRunHeader.Description));
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| 227 | sprintf(RawRunHeader.Description,"FAD BOARD TEST");
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| 228 |
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| 229 | RawRunHeader.NChips = DPF; // Number of DRS chips per board
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| 230 | RawRunHeader.NChannels = CPC; // Number of channels per chip
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| 231 | RawRunHeader.Samples = 1024; // Number of samples _only for test_
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| 232 | RawRunHeader.Offset= 0; // ??? Offset from trigger
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| 233 | RawRunHeader.NBytes = 2; // Bytes per sample
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| 234 | RawRunHeader.StartSecond = starttime.tv_sec; // Opening and closing time of the file
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| 235 | RawRunHeader.StartMicrosecond = starttime.tv_usec;
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| 236 | RawRunHeader.EndSecond = endtime.tv_sec;
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| 237 | RawRunHeader.EndMicrosecond = endtime.tv_usec;
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| 238 |
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| 239 |
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| 240 | for (unsigned int i=0; i < RawRunHeader.NBoards; i++) {
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| 241 | rawBoard[i].SerialNo = board_ids[i]; // Board serial number
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| 242 | rawBoard[i].NomFreq = 2; // Nominal sampling frequency [GHz]
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| 243 | rawBoard[i].BoardTemp = temperature/(4*RawRunHeader.Events); // Board temperature [deg C]
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| 244 | rawBoard[i].ScaleFactor = 1/2.048; // Factor for conversion to mV
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| 245 | }
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| 246 |
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| 247 |
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| 248 | // now all necessary information
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| 249 | // to write RAW file header is known.
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| 250 | // jump back to the beginning and
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| 251 | rewind(RAWfile);
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| 252 | // write the Raw header
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| 253 | write_RAWheader (rawBoard, RawRunHeader, RAWfile);
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| 254 |
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| 255 | if(RawRunHeader.Events > 0){
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| 256 | printf("Could not find any events.");
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| 257 | return -1;
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| 258 | }
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| 259 |
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| 260 | fclose(RAWfile);
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| 261 | fclose(faddatafile);
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| 262 |
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| 263 | return 0;
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| 264 | }
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| 265 |
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| 266 |
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| 267 |
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| 268 | int write_RAWheader (BoardStructure *rawBoard, RunHeader& RawRunHeader, FILE *RAWfile) {
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| 269 |
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| 270 | // write header of rawfile
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| 271 | fwrite (&RawRunHeader.MagicNum, (size_t) sizeof(RawRunHeader.MagicNum), 1, RAWfile);
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| 272 | fwrite (&RawRunHeader.DataFormat, (size_t) sizeof(RawRunHeader.DataFormat), 1, RAWfile);
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| 273 | fwrite (&RawRunHeader.RunHeaderSize, (size_t) sizeof(RawRunHeader.RunHeaderSize), 1, RAWfile);
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| 274 | fwrite (&RawRunHeader.EventHeaderSize, (size_t) sizeof(RawRunHeader.EventHeaderSize), 1, RAWfile);
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| 275 | fwrite (&RawRunHeader.BoardStructureSize, (size_t) sizeof(RawRunHeader.BoardStructureSize), 1, RAWfile);
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| 276 | fwrite (&RawRunHeader.SoftwareRevision, (size_t) sizeof(RawRunHeader.SoftwareRevision), 1, RAWfile);
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| 277 | fwrite (&RawRunHeader.Identification, (size_t) sizeof(RawRunHeader.Identification), 1, RAWfile);
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| 278 | fwrite (&RawRunHeader.Type, (size_t) sizeof(RawRunHeader.Type), 1, RAWfile);
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| 279 | fwrite (&RawRunHeader.RunNumber, (size_t) sizeof(RawRunHeader.RunNumber), 1, RAWfile);
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| 280 | fwrite (&RawRunHeader.FileNumber, (size_t) sizeof(RawRunHeader.FileNumber), 1, RAWfile);
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| 281 | fwrite (&RawRunHeader.Description, (size_t) sizeof(RawRunHeader.Description), 1, RAWfile);
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| 282 | fwrite (&RawRunHeader.NBoards, (size_t) sizeof(RawRunHeader.NBoards), 1, RAWfile);
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| 283 | fwrite (&RawRunHeader.NChips, (size_t) sizeof(RawRunHeader.NChips), 1, RAWfile);
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| 284 | fwrite (&RawRunHeader.NChannels, (size_t) sizeof(RawRunHeader.NChannels), 1, RAWfile);
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| 285 | fwrite (&RawRunHeader.Samples, (size_t) sizeof(RawRunHeader.Samples), 1, RAWfile);
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| 286 | fwrite (&RawRunHeader.Offset, (size_t) sizeof(RawRunHeader.Offset), 1, RAWfile);
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| 287 | fwrite (&RawRunHeader.Events, (size_t) sizeof(RawRunHeader.Events), 1, RAWfile);
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| 288 | fwrite (&RawRunHeader.NBytes, (size_t) sizeof(RawRunHeader.NBytes), 1, RAWfile);
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| 289 | fwrite (&RawRunHeader.StartSecond, (size_t) sizeof(RawRunHeader.StartSecond), 1, RAWfile);
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| 290 | fwrite (&RawRunHeader.StartMicrosecond, (size_t) sizeof(RawRunHeader.StartMicrosecond), 1, RAWfile);
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| 291 | fwrite (&RawRunHeader.EndSecond, (size_t) sizeof(RawRunHeader.EndSecond), 1, RAWfile);
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| 292 | fwrite (&RawRunHeader.EndMicrosecond, (size_t) sizeof(RawRunHeader.EndMicrosecond), 1, RAWfile);
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| 293 | // write boardstructure to RAW file
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| 294 | for (unsigned int i=0; i < RawRunHeader.NBoards; i++) {
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| 295 | fwrite (&rawBoard[i].SerialNo, (size_t) sizeof(rawBoard[i].SerialNo), 1, RAWfile);
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| 296 | fwrite (&rawBoard[i].NomFreq, (size_t) sizeof(rawBoard[i].NomFreq), 1, RAWfile);
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| 297 | fwrite (&rawBoard[i].BoardTemp, (size_t) sizeof(rawBoard[i].BoardTemp), 1, RAWfile);
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| 298 | fwrite (&rawBoard[i].ScaleFactor, (size_t) sizeof(rawBoard[i].ScaleFactor), 1, RAWfile);
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| 299 | }
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| 300 |
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| 301 | return 0;
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| 302 | }
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