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https://github.com/slsdetectorgroup/slsDetectorPackage.git
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Common mode added, working for gotthard double modules
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98
slsDetectorCalibration/single_photon_hit_double.h
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98
slsDetectorCalibration/single_photon_hit_double.h
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#ifndef SINGLE_PHOTON_HIT_H
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#define SINGLE_PHOTON_HIT_H
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#include <stdio.h>
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#include <stdint.h>
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typedef double double32_t;
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typedef float float32_t;
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typedef int int32_t;
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#ifndef DEF_QUAD
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#define DEF_QUAD
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enum quadrant {
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TOP_LEFT=0,
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TOP_RIGHT=1,
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BOTTOM_LEFT=2,
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BOTTOM_RIGHT=3,
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UNDEFINED_QUADRANT=-1
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};
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#endif
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class single_photon_hit_double {
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/** @short Structure for a single photon hit */
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public:
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/** constructor, instantiates the data array -- all class elements are public!
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\param nx cluster size in x direction
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\param ny cluster size in y direction (defaults to 1 for 1D detectors)
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*/
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single_photon_hit_double(int nx=3, int ny=3): dx(nx), dy(ny) {
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data=new double[dx*dy];
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};
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~single_photon_hit_double(){delete [] data;}; /**< destructor, deletes the data array */
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/** binary write to file of all elements of the structure, except size of the cluster
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\param myFile file descriptor
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*/
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size_t write(FILE *myFile) {
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//fwrite((void*)this, 1, 3*sizeof(int)+4*sizeof(double)+sizeof(quad), myFile);
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if (fwrite((void*)this, 1, sizeof(int)+2*sizeof(int), myFile))
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return fwrite((void*)data, 1, dx*dy*sizeof(double), myFile);
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return 0;
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};
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/**
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binary read from file of all elements of the structure, except size of the cluster. The structure is then filled with those args
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\param myFile file descriptor
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*/
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size_t read(FILE *myFile) {
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//fread((void*)this, 1, 3*sizeof(int)+4*sizeof(double)+sizeof(quad), myFile);
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if (fread((void*)this, 1, sizeof(int)+2*sizeof(int), myFile))
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return fread((void*)data, 1, dx*dy*sizeof(double), myFile);
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return 0;
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};
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/**
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assign the value to the element of the cluster matrix, with relative coordinates where the center of the cluster is (0,0)
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\param v value to be set
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\param ix coordinate x within the cluster (center is (0,0))
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\param iy coordinate y within the cluster (center is (0,0))
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*/
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void set_data(double v, int ix, int iy=0){data[(iy+dy/2)*dx+ix+dx/2]=v;};
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void set_cluster_size(int nx, int ny) {
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if (nx>0) dx=nx; if (ny>0) dy=ny; delete [] data; data=new double[dx*dy];
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};
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void get_cluster_size(int &nx, int &ny) {nx=dx; ny=dy;};
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void get_pixel(int &x1, int &y1) {x1=x; y1=y;};
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/**
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gets the value to the element of the cluster matrix, with relative coordinates where the center of the cluster is (0,0)
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\param ix coordinate x within the cluster (center is (0,0))
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\param iy coordinate y within the cluster (center is (0,0))
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\returns value of the cluster element
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*/
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double get_data(int ix, int iy=0){return data[(iy+dy/2)*dx+ix+dx/2];};
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double *get_cluster() {return data;};
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int iframe; /**< frame number */
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int x; /**< x-coordinate of the center of hit */
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int y; /**< x-coordinate of the center of hit */
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double rms; /**< noise of central pixel l -- at some point it can be removed*/
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double ped; /**< pedestal of the central pixel -- at some point it can be removed*/
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double tot; /**< sum of the 3x3 cluster */
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quadrant quad; /**< quadrant where the photon is located */
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double quadTot; /**< sum of the maximum 2x2cluster */
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int dx; /**< size of data cluster in x */
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int dy; /**< size of data cluster in y */
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double *data; /**< pointer to data */
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};
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#endif
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