mirror of
https://github.com/slsdetectorgroup/slsDetectorPackage.git
synced 2025-04-21 19:30:03 +02:00

git-svn-id: file:///afs/psi.ch/project/sls_det_software/svn/slsDetectorCalibration@6 113b152e-814d-439b-b186-022a431db7b5
268 lines
5.4 KiB
C++
268 lines
5.4 KiB
C++
#ifndef MOENCH02MODULEDATA_H
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#define MOENCH02MODULEDATA_H
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#include "slsDetectorData.h"
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#include "RunningStat.h"
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#include "MovingStat.h"
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#include <iostream>
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#include <fstream>
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using namespace std;
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class moench02ModuleData : public slsDetectorData {
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public:
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enum eventType {
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PEDESTAL,
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NEIGHBOUR,
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PHOTON,
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PHOTON_MAX,
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NEGATIVE_PEDESTAL,
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};
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/**
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Constructor (no error checking if datasize and offsets are compatible!)
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\param npx number of pixels in the x direction
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\param npy number of pixels in the y direction
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\param ds size of the dataset
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\param dMap array of size nx*ny storing the pointers to the data in the dataset (as offset)
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\param dMask Array of size nx*ny storing the polarity of the data in the dataset (should be 0 if no inversion is required, 0xffffffff is inversion is required)
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*/
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moench02ModuleData(int nbg=1000): slsDetectorData(160, 160, 1286*40), nSigma(5), buff(NULL), oldbuff(NULL), pedSub(1) {
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int headerOff=0;
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int footerOff=1284;
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int dataOff=4;
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int ix, iy, ir, ic, i, isc, ip;
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int **dMask;
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int **dMap;
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for (ir=0; ir<160; ir++) {
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for (ic=0; ic<160; ic++) {
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stat[ir][ic].Clear();
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stat[ir][ic].SetN(nbg);
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}
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}
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dMask=new int*[160];
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for(i = 0; i < 160; i++) {
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dMask[i] = new int[160];
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}
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dMap=new int*[160];
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for(i = 0; i < 160; i++) {
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dMap[i] = new int[160];
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}
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for (isc=0; isc<4; isc++) {
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for (ip=0; ip<10; ip++) {
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for (ir=0; ir<16; ir++) {
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for (ic=0; ic<40; ic++) {
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ix=isc*40+ic;
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iy=ip*16+ir;
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dMap[iy][ix]=1280*(isc*10+ip)+2*ir*40+2*ic;
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// cout << ix << " " << iy << " " << dMap[ix][iy] << endl;
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}
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}
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}
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}
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for (ix=0; ix<120; ix++) {
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for (iy=0; iy<160; iy++)
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dMask[iy][ix]=0x3fff;
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}
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for (ix=120; ix<160; ix++) {
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for (iy=0; iy<160; iy++)
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dMask[iy][ix]=0x0;
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}
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setDataMap(dMap);
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setDataMask(dMask);
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};
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~moench02ModuleData() {if (buff) delete [] buff; if (oldbuff) delete [] oldbuff; };
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int getFrameNumber(char *buff){
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return ((*(int*)buff)&(0xffffff00))>>8;;
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};
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int getPacketNumber(char *buff){
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return (*(int*)buff)&0xff;
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};
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char *readNextFrame(ifstream &filebin) {
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if (oldbuff)
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delete [] oldbuff;
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oldbuff=buff;
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char *data=new char[1280*40];
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char p[1286];
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int fn, fnum=-1, np=0, pnum=-1;
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if (filebin.is_open()) {
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while (filebin.read(p,4)) { //read header
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pnum=getPacketNumber(p);
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fn=getFrameNumber(p);
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if (pnum<0 || pnum>39) {
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cout << "Bad packet number " << pnum << " frame "<< fn << endl;
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continue;
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}
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if (pnum==0)
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pnum=40;
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if (pnum==1) {
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fnum=fn;
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if (np>0)
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cout << "*Incomplete frame number " << fnum << endl;
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np=0;
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} else if (fn!=fnum) {
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if (fnum!=-1)
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cout << " **Incomplete frame number " << fnum << " pnum " << pnum << " " << getFrameNumber(p) << endl;
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np=0;
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}
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filebin.read(data+1280*(pnum-1),1280); //readdata
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np++;
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filebin.read(p,2); //readfooter
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if (np==40)
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if (pnum==40)
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break;
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else
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cout << "Too many packets for this frame! "<< fnum << " " << pnum << endl;
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}
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}
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if (np<40) {
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if (np>0)
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cout << "Too few packets for this frame! "<< fnum << " " << pnum << endl;
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delete [] data;
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buff=NULL;
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}
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buff=data;
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return data;
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};
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void addToPedestal(double val, int ix, int iy){stat[iy][ix].Calc(val);};
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double getPedestal(int ix, int iy){return stat[iy][ix].Mean();};
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double getPedestalRMS(int ix, int iy){return stat[iy][ix].StandardDeviation();};
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double setNSigma(double n){if (n>0) nSigma=n; return nSigma;}
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char *getBuff(){return buff;}
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char *getOldBuff(){return oldbuff;}
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int setPedestalSubstraction(int i=-1){if (i==0) pedSub=0; if (i==1) pedSub=1; return pedSub;};
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double getChannelShort(int ix, int iy, double hc=0, double tc=0) {
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double val=slsDetectorData::getChannelShort(buff,ix,iy);
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if (ix>0 && hc!=0)
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val-=hc*slsDetectorData::getChannelShort(buff,ix-1,iy);
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if (oldbuff && tc!=0)
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val+=tc*slsDetectorData::getChannelShort(oldbuff,ix,iy);
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return val;
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};
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eventType getEventType(int ix, int iy, double hcorr=0, double tcorr=0, int sign=1) {
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/* PEDESTAL, */
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/* NEIGHBOUR, */
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/* PHOTON, */
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/* PHOTON_MAX, */
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/* NEGATIVE_PEDESTAL */
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eventType ret=PEDESTAL;
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double tot=0, v, max=0, sig;
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sig=getPedestalRMS(ix,iy);
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for (int ir=-1; ir<2; ir++) {
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for (int ic=-1; ic<2; ic ++) {
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if ((iy+ir)>=0 && (iy+ir)<160 && (ix+ic)>=0 && (ix+ic)<160) {
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v=getChannelShort(ix+ic, iy+ir, hcorr, tcorr);
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if (pedSub)
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v=sign*(v-getPedestal(ix+ic,iy+ir));
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cluster[ic+1][ir+1]=v;
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tot+=v;
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if (v>max) {
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max=v;
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}
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if (ir==0 && ic==0) {
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if (v>nSigma*getPedestalRMS(ix,iy)) {
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ret=PHOTON;
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} else if (v<-nSigma*getPedestalRMS(ix,iy))
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ret=NEGATIVE_PEDESTAL;
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}
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}
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}
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}
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if (ret!=PHOTON && tot>3*nSigma*sig)
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ret=NEIGHBOUR;
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else if (ret==PHOTON) {
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if (cluster[1][1]>=max)
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ret=PHOTON_MAX;
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}
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return ret;
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};
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double getClusterElement(int ic, int ir){return cluster[ic+1][ir+1];};
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double *getCluster(){return &cluster[0][0];};
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private:
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MovingStat stat[160][160];
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double nSigma;
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double cluster[3][3];
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char *buff;
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char *oldbuff;
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int pedSub;
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};
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#endif
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