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SiPixelTemplate.h
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1 //
2 // SiPixelTemplate.h (v10.24)
3 //
4 // Add goodness-of-fit info and spare entries to templates, version number in template header, more error checking
5 // Add correction for (Q_F-Q_L)/(Q_F+Q_L) bias
6 // Add cot(beta) reflection to reduce y-entries and more sophisticated x-interpolation
7 // Fix small index searching bug in interpolate method
8 // Change interpolation indexing to avoid complier complaining about possible un-initialized variables
9 // Replace containers with static arrays in calls to ysigma2 and xsigma2
10 // Add external threshold to calls to ysigma2 and xsigma2, fix parameter signal max for xsigma2
11 // Return to 5 pixel spanning but adjust boundaries to use only when needed
12 // Implement improved (faster) chi2min search that depends on pixel types
13 // Fill template arrays in single calls to this object
14 // Add qmin to the template
15 // Add qscale to match charge scales
16 // Small improvement to x-chisquare interpolation
17 // Enlarge SiPixelTemplateStore to accommodate larger templates and increased alpha acceptance (reduce PT threshold to ~200 MeV)
18 // Store x and y cluster sizes in fractional pixels to facilitate cluster splitting
19 // Keep interpolated central 9 template bins in private storage and expand/shift in the getter functions (faster for speed=2/3) and easier to build 3d templates
20 // Store error and bias information for the simple chi^2 min position analysis (no interpolation or Q_{FB} corrections) to use in cluster splitting
21 // To save time, the gaussian centers and sigma are not interpolated right now (they aren't currently used). They can be restored by un-commenting lines in the interpolate method.
22 // Add a new method to calculate qbin for input cotbeta and cluster charge. To be used for error estimation of merged clusters in PixelCPEGeneric.
23 // Add bias info for Barrel and FPix separately in the header
24 // Improve the charge estimation for larger cot(alpha) tracks
25 // Change interpolate method to return false boolean if track angles are outside of range
26 // Add template info and method for truncation information
27 // Change to allow template sizes to be changed at compile time
28 // Fix bug in track angle checking
29 // Accommodate Dave's new DB pushfile which overloads the old method (file input)
30 // Add CPEGeneric error information and expand qbin method to access useful info for PixelCPEGeneric
31 // Fix large cot(alpha) bug in qmin interpolation
32 // Add second qmin to allow a qbin=5 state
33 // Use interpolated chi^2 info for one-pixel clusters
34 // Separate BPix and FPix charge scales and thresholds
35 // Fix DB pushfile version number checking bug.
36 // Remove assert from qbin method
37 // Replace asserts with exceptions in CMSSW
38 // Change calling sequence to interpolate method to handle cot(beta)<0 for FPix cosmics
39 // Add getter for pixelav Lorentz width estimates to qbin method
40 // Add check on template size to interpolate and qbin methods
41 // Add qbin population information, charge distribution information
42 //
43 // V7.00 - Decouple BPix and FPix information into separate templates
44 // Add methods to facilitate improved cluster splitting
45 // Fix small charge scaling bug (affects FPix only)
46 // Change y-slice used for the x-template to be closer to the actual cotalpha-cotbeta point
47 // (there is some weak breakdown of x-y factorization in the FPix after irradiation)
48 //
49 // V8.00 - Add method to calculate a simple 2D template
50 // Reorganize the interpolate method to extract header info only once per ID
51 // V8.01 - Improve simple template normalization
52 // V8.05 - Change qbin normalization to work better after irradiation
53 // V8.10 - Add Vavilov distribution interpolation
54 // V8.11 - Renormalize the x-templates for Guofan's cluster size calculation
55 // V8.12 - Technical fix to qavg issue.
56 // V8.13 - Fix qbin and fastsim interpolaters to avoid changing class variables
57 // V8.20 - Add methods to identify the central pixels in the x- and y-templates (to help align templates with clusters in radiation damaged detectors)
58 // Rename class variables from pxxxx (private xxxx) to xxxx_ to follow standard convention.
59 // Add compiler option to store the template entries in BOOST multiarrays of structs instead of simple c arrays
60 // (allows dynamic resizing template storage and has bounds checking but costs ~10% in execution time).
61 // V8.21 - Add new qbin method to use in cluster splitting
62 // V8.23 - Replace chi-min position errors with merged cluster chi2 probability info
63 // V8.25 - Incorporate VI's speed changes into the current version
64 // V8.26 - Modify the Vavilov lookups to work better with the FPix (offset y-templates)
65 // V8.30 - Change the splitting template generation and access to improve speed and eliminate triple index boost::multiarray
66 // V8.31 - Add correction factor: measured/true charge
67 // V8.31 - Fix version number bug in db object I/O (pushfile)
68 // V8.32 - Check for illegal qmin during loading
69 // V8.33 - Fix small type conversion warnings
70 // V8.40 - Incorporate V.I. optimizations
71 // V9.00 - Expand header to include multi and single dcol thresholds, LA biases, and (variable) Qbin definitions
72 // V9.01 - Protect against negative error squared
73 // V10.00 - Update to work with Phase 1 FPix. Fix some code problems introduced by other maintainers.
74 // V10.01 - Fix initialization style as suggested by S. Krutelyov
75 // V10.10 - Add class variables and methods to correctly calculate the probabilities of single pixel clusters
76 // V10.11 - Allow subdetector ID=5 for FPix R2P2 [allows better internal labeling of templates]
77 // V10.12 - Enforce minimum signal size in pixel charge uncertainty calculation
78 // V10.13 - Update the variable size [SI_PIXEL_TEMPLATE_USE_BOOST] option so that it works with VI's enhancements
79 // V10.20 - Add directory path selection to the ascii pushfile method
80 // V10.21 - Address runtime issues in pushfile() for gcc 7.X due to using tempfile as char string + misc. cleanup [Petar]
81 // V10.22 - Move templateStore to the heap, fix variable name in pushfile() [Petar]
82 // V10.24 - Add sideload() + associated gymnastics [Petar and Oz]
83 
84 // Created by Morris Swartz on 10/27/06.
85 //
86 //
87 
88 // Build the template storage structure from several pieces
89 
90 #ifndef SiPixelTemplate_h
91 #define SiPixelTemplate_h 1
92 
93 #include "SiPixelTemplateDefs.h"
94 
95 #include <vector>
96 #include <cassert>
97 #include "boost/multi_array.hpp"
98 
99 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
102 #endif
103 
105  int runnum;
106  float alpha;
107  float cotalpha;
108  float beta;
109  float cotbeta;
110  float costrk[3];
111  float qavg;
112  float pixmax;
113  float symax;
114  float dyone;
115  float syone;
116  float sxmax;
117  float dxone;
118  float sxone;
119  float dytwo;
120  float sytwo;
121  float dxtwo;
122  float sxtwo;
123  float qmin;
124  float qmin2;
125  float yavggen[4];
126  float yrmsgen[4];
127  float xavggen[4];
128  float xrmsgen[4];
129 
130  float clsleny;
131  float clslenx;
132  float mpvvav;
133  float sigmavav;
134  float kappavav;
135  float mpvvav2;
136  float sigmavav2;
137  float kappavav2;
138  float ypar[2][5];
139  float ytemp[9][TYSIZE];
140  float xpar[2][5];
141  float xtemp[9][TXSIZE];
142  float yavg[4];
143  float yrms[4];
144  float ygx0[4];
145  float ygsig[4];
146  float yflpar[4][6];
147  float xavg[4];
148  float xrms[4];
149  float xgx0[4];
150  float xgsig[4];
151  float xflpar[4][6];
152  float chi2yavg[4];
153  float chi2ymin[4];
154  float chi2xavg[4];
155  float chi2xmin[4];
156  float chi2yavgone;
157  float chi2yminone;
158  float chi2xavgone;
159  float chi2xminone;
160  float yavgc2m[4];
161  float yrmsc2m[4];
162  float chi2yavgc2m[4];
163  float chi2yminc2m[4];
164  float xavgc2m[4];
165  float xrmsc2m[4];
166  float chi2xavgc2m[4];
167  float chi2xminc2m[4];
168  float ygx0gen[4];
169  float ygsiggen[4];
170  float xgx0gen[4];
171  float xgsiggen[4];
172  float qbfrac[3];
173  float fracyone;
174  float fracxone;
175  float fracytwo;
176  float fracxtwo;
177  float qavg_avg;
179  float spare[1];
180 };
181 
183  int ID;
184  int NTy;
185  int NTyx;
186  int NTxx;
187  int Dtype;
188  float qscale;
189  float lorywidth;
190  float lorxwidth;
191  float lorybias;
192  float lorxbias;
193  float Vbias;
194  float temperature;
195  float fluence;
196  float s50;
197  float ss50;
198  char title[80];
200  float Bfield;
201  float fbin[3];
202  float xsize;
203  float ysize;
204  float zsize;
205 };
206 
209 #ifndef SI_PIXEL_TEMPLATE_USE_BOOST
210  std::array<float, TEMP_ENTRY_SIZEY> cotbetaY;
211  std::array<float, TEMP_ENTRY_SIZEX_B> cotbetaX;
212  std::array<float, TEMP_ENTRY_SIZEX_A> cotalphaX;
217 #else
218  std::vector<float> cotbetaY;
219  std::vector<float> cotbetaX;
220  std::vector<float> cotalphaX;
221  boost::multi_array<SiPixelTemplateEntry, 1> enty;
222  boost::multi_array<SiPixelTemplateEntry, 2> entx;
224 #endif
225 };
226 
227 // ******************************************************************************************
245 // ******************************************************************************************
247 public:
248  SiPixelTemplate(const std::vector<SiPixelTemplateStore>& thePixelTemp) : thePixelTemp_(thePixelTemp) {
249  id_current_ = -1;
250  index_id_ = -1;
251  cota_current_ = 0.;
252  cotb_current_ = 0.;
253  entry_sideloaded_ = nullptr;
254  }
255 
256 // Load the private store with info from the file with the index (int) filenum from directory dir:
257 // ${dir}template_summary_zp${filenum}.out
258 #ifdef SI_PIXEL_TEMPLATE_STANDALONE
259  static bool pushfile(int filenum, std::vector<SiPixelTemplateStore>& pixelTemp, std::string dir = "");
260 
261  // For calibrations only: load precalculated values -- no interpolation.
262  void sideload(SiPixelTemplateEntry* entry,
263  int iDtype,
264  float locBx,
265  float locBz,
266  float lorwdy,
267  float lorwdx,
268  float q50,
269  float fbin[3],
270  float xsize,
271  float ysize,
272  float zsize);
273 
274 #else
275  static bool pushfile(int filenum,
276  std::vector<SiPixelTemplateStore>& pixelTemp,
277  // *&^%$#@! Different default dir -- remove once FastSim is updated.
278  std::string dir = "CalibTracker/SiPixelESProducers/data/");
279 
280  //load from DB (default in CMSSW)
281  static bool pushfile(const SiPixelTemplateDBObject& dbobject,
282  std::vector<SiPixelTemplateStore>& pixelTemp); // load the private store with info from db
283 #endif
284 
285  // initialize the rest;
286  static void postInit(std::vector<SiPixelTemplateStore>& thePixelTemp_);
287 
288  // Interpolate input alpha and beta angles to produce a working template for each individual hit.
289  bool interpolate(int id, float cotalpha, float cotbeta, float locBz, float locBx);
290 
291  // Interpolate input alpha and beta angles to produce a working template for each individual hit.
292  bool interpolate(int id, float cotalpha, float cotbeta, float locBz);
293 
294  // overload for compatibility.
295  bool interpolate(int id, float cotalpha, float cotbeta);
296 
297  // retreive interpolated templates.
298  void ytemp(int fybin, int lybin, float ytemplate[41][BYSIZE]);
299 
300  void xtemp(int fxbin, int lxbin, float xtemplate[41][BXSIZE]);
301 
302  //Method to estimate the central pixel of the interpolated y-template
303  int cytemp();
304 
305  //Method to estimate the central pixel of the interpolated x-template
306  int cxtemp();
307 
308  //Methods to build templates from two interpolated clusters (for splitting)
309  void ytemp3d_int(int nypix, int& nybins);
310 
311  void ytemp3d(int j, int k, std::vector<float>& ytemplate);
312 
313  void xtemp3d_int(int nxpix, int& nxbins);
314 
315  void xtemp3d(int j, int k, std::vector<float>& xtemplate);
316 
317  // Convert vector of projected signals into uncertainties for fitting.
318  void ysigma2(int fypix, int lypix, float sythr, float ysum[BYSIZE], float ysig2[BYSIZE]);
319 
320  void ysigma2(float qpixel, int index, float& ysig2);
321 
322  void xsigma2(int fxpix, int lxpix, float sxthr, float xsum[BXSIZE], float xsig2[BXSIZE]);
323 
324  // Interpolate qfl correction in y.
325  float yflcorr(int binq, float qfly);
326 
327  // Interpolate qfl correction in x.
328  float xflcorr(int binq, float qflx);
329 
330  int qbin(int id,
331  float cotalpha,
332  float cotbeta,
333  float locBz,
334  float locBx,
335  float qclus,
336  float& pixmx,
337  float& sigmay,
338  float& deltay,
339  float& sigmax,
340  float& deltax,
341  float& sy1,
342  float& dy1,
343  float& sy2,
344  float& dy2,
345  float& sx1,
346  float& dx1,
347  float& sx2,
348  float& dx2);
349 
350  int qbin(int id,
351  float cotalpha,
352  float cotbeta,
353  float locBz,
354  float qclus,
355  float& pixmx,
356  float& sigmay,
357  float& deltay,
358  float& sigmax,
359  float& deltax,
360  float& sy1,
361  float& dy1,
362  float& sy2,
363  float& dy2,
364  float& sx1,
365  float& dx1,
366  float& sx2,
367  float& dx2);
368 
369  // Overload to use for cluster splitting
370  int qbin(int id, float cotalpha, float cotbeta, float qclus);
371 
372  // Overload to keep legacy interface
373  int qbin(int id, float cotbeta, float qclus);
374 
375  // Method to return template errors for fastsim
376  void temperrors(int id,
377  float cotalpha,
378  float cotbeta,
379  int qBin,
380  float& sigmay,
381  float& sigmax,
382  float& sy1,
383  float& sy2,
384  float& sx1,
385  float& sx2);
386 
387  //Method to return qbin and size probabilities for fastsim
388  void qbin_dist(int id,
389  float cotalpha,
390  float cotbeta,
391  float qbin_frac[4],
392  float& ny1_frac,
393  float& ny2_frac,
394  float& nx1_frac,
395  float& nx2_frac);
396 
397  //Method to calculate simple 2D templates
398  bool simpletemplate2D(
399  float xhitp, float yhitp, std::vector<bool>& ydouble, std::vector<bool>& xdouble, float template2d[BXM2][BYM2]);
400 
401  //Method to interpolate Vavilov distribution parameters
402  void vavilov_pars(double& mpv, double& sigma, double& kappa);
403 
404  //Method to interpolate 2-cluster Vavilov distribution parameters
405  void vavilov2_pars(double& mpv, double& sigma, double& kappa);
406 
407  float qavg() { return qavg_; }
408  float pixmax() { return pixmax_; }
409  float qscale() { return qscale_; }
410  float s50() { return s50_; }
411  float ss50() { return ss50_; }
412  float symax() { return symax_; }
413  float dyone() { return dyone_; }
414  float syone() { return syone_; }
415  float dytwo() { return dytwo_; }
416  float sytwo() { return sytwo_; }
417  float sxmax() { return sxmax_; }
418  float dxone() { return dxone_; }
419  float sxone() { return sxone_; }
420  float dxtwo() { return dxtwo_; }
421  float sxtwo() { return sxtwo_; }
422  float qmin() { return qmin_; }
423  float qmin(int i) {
424 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
425  if (i < 0 || i > 1) {
426  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::qmin called with illegal index = " << i << std::endl;
427  }
428 #else
429  assert(i >= 0 && i < 2);
430 #endif
431  if (i == 0) {
432  return qmin_;
433  } else {
434  return qmin2_;
435  }
436  }
437  float clsleny() { return clsleny_; }
438  float clslenx() { return clslenx_; }
439  float yratio() { return yratio_; }
440  float yxratio() { return yxratio_; }
441  float xxratio() { return xxratio_; }
442  float yavg(int i) {
443 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
444  if (i < 0 || i > 3) {
445  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::yavg called with illegal index = " << i << std::endl;
446  }
447 #else
448  assert(i >= 0 && i < 4);
449 #endif
450  return yavg_[i];
451  }
452  float yrms(int i) {
453 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
454  if (i < 0 || i > 3) {
455  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::yrms called with illegal index = " << i << std::endl;
456  }
457 #else
458  assert(i >= 0 && i < 4);
459 #endif
460  return yrms_[i];
461  }
462  float ygx0(int i) {
463 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
464  if (i < 0 || i > 3) {
465  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::ygx0 called with illegal index = " << i << std::endl;
466  }
467 #else
468  assert(i >= 0 && i < 4);
469 #endif
470  return ygx0_[i];
471  }
472  float ygsig(int i) {
473 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
474  if (i < 0 || i > 3) {
475  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::ygsig called with illegal index = " << i << std::endl;
476  }
477 #else
478  assert(i >= 0 && i < 4);
479 #endif
480  return ygsig_[i];
481  }
482  float xavg(int i) {
483 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
484  if (i < 0 || i > 3) {
485  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::xavg called with illegal index = " << i << std::endl;
486  }
487 #else
488  assert(i >= 0 && i < 4);
489 #endif
490  return xavg_[i];
491  }
492  float xrms(int i) {
493 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
494  if (i < 0 || i > 3) {
495  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::xrms called with illegal index = " << i << std::endl;
496  }
497 #else
498  assert(i >= 0 && i < 4);
499 #endif
500  return xrms_[i];
501  }
502  float xgx0(int i) {
503 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
504  if (i < 0 || i > 3) {
505  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::xgx0 called with illegal index = " << i << std::endl;
506  }
507 #else
508  assert(i >= 0 && i < 4);
509 #endif
510  return xgx0_[i];
511  }
512  float xgsig(int i) {
513 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
514  if (i < 0 || i > 3) {
515  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::xgsig called with illegal index = " << i << std::endl;
516  }
517 #else
518  assert(i >= 0 && i < 4);
519 #endif
520  return xgsig_[i];
521  }
522  float chi2yavg(int i) {
523 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
524  if (i < 0 || i > 3) {
525  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::chi2yavg called with illegal index = " << i << std::endl;
526  }
527 #else
528  assert(i >= 0 && i < 4);
529 #endif
530  return chi2yavg_[i];
531  }
532  float chi2ymin(int i) {
533 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
534  if (i < 0 || i > 3) {
535  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::chi2ymin called with illegal index = " << i << std::endl;
536  }
537 #else
538  assert(i >= 0 && i < 4);
539 #endif
540  return chi2ymin_[i];
541  }
542  float chi2xavg(int i) {
543 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
544  if (i < 0 || i > 3) {
545  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::chi2xavg called with illegal index = " << i << std::endl;
546  }
547 #else
548  assert(i >= 0 && i < 4);
549 #endif
550  return chi2xavg_[i];
551  }
552  float chi2xmin(int i) {
553 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
554  if (i < 0 || i > 3) {
555  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::chi2xmin called with illegal index = " << i << std::endl;
556  }
557 #else
558  assert(i >= 0 && i < 4);
559 #endif
560  return chi2xmin_[i];
561  }
562  float yavgc2m(int i) {
563 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
564  if (i < 0 || i > 3) {
565  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::yavgc2m called with illegal index = " << i << std::endl;
566  }
567 #else
568  assert(i >= 0 && i < 4);
569 #endif
570  return yavgc2m_[i];
571  }
572  float yrmsc2m(int i) {
573 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
574  if (i < 0 || i > 3) {
575  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::yrmsc2m called with illegal index = " << i << std::endl;
576  }
577 #else
578  assert(i >= 0 && i < 4);
579 #endif
580  return yrmsc2m_[i];
581  }
582  float chi2yavgc2m(int i) {
583 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
584  if (i < 0 || i > 3) {
585  throw cms::Exception("DataCorrupt")
586  << "SiPixelTemplate::chi2yavgc2m called with illegal index = " << i << std::endl;
587  }
588 #else
589  assert(i >= 0 && i < 4);
590 #endif
591  return chi2yavgc2m_[i];
592  }
593  float chi2yminc2m(int i) {
594 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
595  if (i < 0 || i > 3) {
596  throw cms::Exception("DataCorrupt")
597  << "SiPixelTemplate::chi2yminc2m called with illegal index = " << i << std::endl;
598  }
599 #else
600  assert(i >= 0 && i < 4);
601 #endif
602  return chi2yminc2m_[i];
603  }
604  float xavgc2m(int i) {
605 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
606  if (i < 0 || i > 3) {
607  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::xavgc2m called with illegal index = " << i << std::endl;
608  }
609 #else
610  assert(i >= 0 && i < 4);
611 #endif
612  return xavgc2m_[i];
613  }
614  float xrmsc2m(int i) {
615 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
616  if (i < 0 || i > 3) {
617  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::xrmsc2m called with illegal index = " << i << std::endl;
618  }
619 #else
620  assert(i >= 0 && i < 4);
621 #endif
622  return xrmsc2m_[i];
623  }
624  float chi2xavgc2m(int i) {
625 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
626  if (i < 0 || i > 3) {
627  throw cms::Exception("DataCorrupt")
628  << "SiPixelTemplate::chi2xavgc2m called with illegal index = " << i << std::endl;
629  }
630 #else
631  assert(i >= 0 && i < 4);
632 #endif
633  return chi2xavgc2m_[i];
634  }
635  float chi2xminc2m(int i) {
636 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
637  if (i < 0 || i > 3) {
638  throw cms::Exception("DataCorrupt")
639  << "SiPixelTemplate::chi2xminc2m called with illegal index = " << i << std::endl;
640  }
641 #else
642  assert(i >= 0 && i < 4);
643 #endif
644  return chi2xminc2m_[i];
645  }
646  float fbin(int i) {
647 #ifndef SI_PIXEL_TEMPLATE_STANDALONE
648  if (i < 0 || i > 2) {
649  throw cms::Exception("DataCorrupt") << "SiPixelTemplate::fbin called with illegal index = " << i << std::endl;
650  }
651 #else
652  assert(i >= 0 && i < 3);
653 #endif
654  return fbin_[i];
655  }
656 
657  float chi2yavgone() { return chi2yavgone_; }
658  float chi2yminone() { return chi2yminone_; }
659  float chi2xavgone() { return chi2xavgone_; }
660  float chi2xminone() { return chi2xminone_; }
661  float lorywidth() { return lorywidth_; }
662  float lorxwidth() { return lorxwidth_; }
663  //float lorybias() {return lorywidth_;} //!< signed lorentz y-width (microns)
664  //float lorxbias() {return lorxwidth_;} //!< signed lorentz x-width (microns)
665  float lorybias() { return lorybias_; }
666  float lorxbias() { return lorxbias_; }
667  float mpvvav() { return mpvvav_; }
668  float sigmavav() { return sigmavav_; }
669  float kappavav() { return kappavav_; }
670  float mpvvav2() {
671  return mpvvav2_;
672  }
673  float sigmavav2() { return sigmavav2_; }
674  float kappavav2() { return kappavav2_; }
675  float xsize() { return xsize_; }
676  float ysize() { return ysize_; }
677  float zsize() { return zsize_; }
678  float r_qMeas_qTrue() { return r_qMeas_qTrue_; }
679  float fracyone() { return fracyone_; }
680  float fracxone() { return fracxone_; }
681  float fracytwo() { return fracytwo_; }
682  float fracxtwo() { return fracxtwo_; }
683  // float yspare(int i) {assert(i>=0 && i<5); return pyspare[i];} //!< vector of 5 spares interpolated in beta only
684  // float xspare(int i) {assert(i>=0 && i<10); return pxspare[i];} //!< vector of 10 spares interpolated in alpha and beta
685 
686 private:
687  // Keep current template interpolaion parameters
688 
690  int index_id_;
693  float abs_cotb_;
694  int dtype_;
695  bool flip_y_;
696  bool flip_x_;
697  bool success_;
698 
699  // Keep results of last interpolation to return through member functions
700 
701  float qavg_;
702  float pixmax_;
703  float qscale_;
704  float s50_;
705  float ss50_;
706  float symax_;
707  float syparmax_;
708  float dyone_;
709  float syone_;
710  float dytwo_;
711  float sytwo_;
712  float sxmax_;
713  float sxparmax_;
714  float dxone_;
715  float sxone_;
716  float dxtwo_;
717  float sxtwo_;
718  float qmin_;
719  float clsleny_;
720  float clslenx_;
721  float scalexavg_;
722  float scaleyavg_;
723  float delyavg_;
724  float delysig_;
725  float scalex_[4];
726  float scaley_[4];
727  float offsetx_[4];
728  float offsety_[4];
729 
730  float yratio_;
731  float yparl_[2][5];
732  float yparh_[2][5];
733  float xparly0_[2][5];
734  float xparhy0_[2][5];
735  float ytemp_[9][BYSIZE];
736  float yxratio_;
737  float xxratio_;
738  float xpar0_[2][5];
739  float xparl_[2][5];
740  float xparh_[2][5];
741  float xtemp_[9][BXSIZE];
742  float yavg_[4];
743  float yrms_[4];
744  float ygx0_[4];
745  float ygsig_[4];
746  float yflparl_[4][6];
747  float yflparh_[4][6];
748  float xavg_[4];
749  float xrms_[4];
750  float xgx0_[4];
751  float xgsig_[4];
752  float xflparll_[4][6];
753  float xflparlh_[4][6];
754  float xflparhl_[4][6];
755  float xflparhh_[4][6];
756  float chi2yavg_[4];
757  float chi2ymin_[4];
758  float chi2xavg_[4];
759  float chi2xmin_[4];
760  float yavgc2m_[4];
761  float yrmsc2m_[4];
762  float chi2yavgc2m_[4];
763  float chi2yminc2m_[4];
764  float xavgc2m_[4];
765  float xrmsc2m_[4];
766  float chi2xavgc2m_[4];
767  float chi2xminc2m_[4];
768  float chi2yavgone_;
769  float chi2yminone_;
770  float chi2xavgone_;
771  float chi2xminone_;
772  float qmin2_;
773  float mpvvav_;
774  float sigmavav_;
775  float kappavav_;
776  float mpvvav2_;
777  float sigmavav2_;
778  float kappavav2_;
779  float lorywidth_;
780  float lorxwidth_;
781  float lorybias_;
782  float lorxbias_;
783  float xsize_;
784  float ysize_;
785  float zsize_;
786  float qavg_avg_;
787  float nybins_;
788  float nxbins_;
790  float fbin_[3];
791  float fracyone_;
792  float fracxone_;
793  float fracytwo_;
794  float fracxtwo_;
795  boost::multi_array<float, 2> temp2dy_;
796  boost::multi_array<float, 2> temp2dx_;
797 
798  // Pointers to presently interpolated point:
799  const SiPixelTemplateEntry* enty0_; // enty[ilow]
800  const SiPixelTemplateEntry* enty1_; // enty[iylow][ilow]
801 
802  const SiPixelTemplateEntry* entx00_; // entx[iylow][ilow]
807 
808  // Pointer to the sideloaded Entry: use this one if set.
810 
811  // The actual template store is a std::vector container
812  const std::vector<SiPixelTemplateStore>& thePixelTemp_;
813 };
814 
815 #endif
float scalexavg_
average x-error scale factor
float fracxone()
The simulated fraction of single pixel x-clusters.
float yrmsc2m(int i)
1st pass chi2 min search: average y-rms of reconstruction binned in 4 charge bins ...
SiPixelTemplate(const std::vector< SiPixelTemplateStore > &thePixelTemp)
Constructor for cases in which template store already exists.
float cota_current_
current cot alpha
float offsetx_[4]
x-offset in charge bins
float qavg_avg
average cluster charge of clusters that are less than qavg (normalize 2-D simple templates) ...
float mpvvav_
most probable charge in Vavilov distribution (not actually for larger kappa)
int runnum
< Basic template entry corresponding to a single set of track angles
float xflpar[4][6]
Aqfl-parameterized x-correction in 4 charge bins.
float fbin(int i)
Return lower bound of Qbin definition.
float xavg_[4]
average x-bias of reconstruction binned in 4 charge bins
float xrms[4]
average x-rms of reconstruction binned in 4 charge bins
void vavilov2_pars(double &mpv, double &sigma, double &kappa)
float xgx0_[4]
average x0 from Gaussian fit binned in 4 charge bins
std::array< float, 100 > cotbetaY
#define BXSIZE
float fbin_[3]
The QBin definitions in Q_clus/Q_avg.
float clslenx
cluster x-length in pixels at signal height sxmax/2
float chi2xminone()
//!< minimum of x chi^2 for 1 pixel clusters
float clsleny_
y-cluster length of smaller interpolated template in pixels
float qavg
average cluster charge for this set of track angles (now includes threshold effects) ...
float pixmax_
maximum pixel charge
const SiPixelTemplateEntry * entry_sideloaded_
float chi2yavgc2m(int i)
1st pass chi2 min search: average y-chisq for merged clusters
float syone
rms for one pixel y-clusters
float chi2yavgone
average y chi^2 for 1 pixel clusters
bool interpolate(int id, float cotalpha, float cotbeta, float locBz, float locBx)
float symax()
average pixel signal for y-projection of cluster
float kappavav2()
kappa parameter for 2-cluster Vavilov distribution
float lorybias_
Lorentz y-bias.
float yavg(int i)
average y-bias of reconstruction binned in 4 charge bins
int cytemp()
Return central pixel of y template pixels above readout threshold.
float abs_cotb_
absolute value of cot beta
float dyone
mean offset/correction for one pixel y-clusters
#define BYSIZE
float scalex_[4]
x-error scale factor in charge bins
float sigmavav
"sigma" scale fctor for Vavilov distribution
float fracxtwo
fraction of double pixel sample with xsize = 1
float xparhy0_[2][5]
projected x-pixel uncertainty parameterization for larger cotbeta (central alpha) ...
float yavggen[4]
generic algorithm: average y-bias of reconstruction binned in 4 charge bins
float chi2yminc2m_[4]
1st pass chi2 min search: minimum y-chisq for merged clusters
float sxmax
average pixel signal for x-projection of cluster
void xsigma2(int fxpix, int lxpix, float sxthr, float xsum[13+4], float xsig2[13+4])
float chi2xavgc2m_[4]
1st pass chi2 min search: average x-chisq for merged clusters
float chi2yminc2m[4]
1st pass chi2 min search: minimum of y chi^2 in 4 charge bins (merged clusters)
float xavgc2m[4]
1st pass chi2 min search: average x-bias of reconstruction binned in 4 charge bins ...
#define TXSIZE
float chi2xavgone
average x chi^2 for 1 pixel clusters
const SiPixelTemplateEntry * entx00_
float fracytwo
fraction of double pixel sample with ysize = 1
float yrms[4]
average y-rms of reconstruction binned in 4 charge bins
float ss50()
1/2 of the single pixel per double column threshold in electrons
std::array< float, 80 > cotalphaX
60 y templates spanning cluster lengths from 0px to +18px
float xrmsc2m_[4]
1st pass chi2 min search: average x-rms of reconstruction binned in 4 charge bins ...
float chi2xmin(int i)
minimum y chi^2 in 4 charge bins
int NTxx
number of Template x-entries in each slice
float ss50_
1/2 of the pixel double col threshold signal in electrons
float mpvvav()
most probable charge in Vavilov distribution (not actually for larger kappa)
float mpvvav2
most probable charge in Vavilov distribution for 2 merged clusters (not actually for larger kappa) ...
float clslenx()
x-size of smaller interpolated template in pixels
float sxmax_
average pixel signal for x-projection of cluster
float ygx0gen[4]
generic algorithm: average y0 from Gaussian fit binned in 4 charge bins
float xavg[4]
average x-bias of reconstruction binned in 4 charge bins
float chi2yminone_
minimum of y chi^2 for 1 pixel clusters
float chi2ymin(int i)
minimum y chi^2 in 4 charge bins
bool simpletemplate2D(float xhitp, float yhitp, std::vector< bool > &ydouble, std::vector< bool > &xdouble, float template2d[13+2][21+2])
Make simple 2-D templates from track angles set in interpolate and hit position.
float lorybias
estimate of y-lorentz bias
float yratio()
fractional distance in y between cotbeta templates
float fluence
radiation fluence in n_eq/cm^2
float fracxone_
The simulated fraction of single pixel x-clusters.
float ss50
1/2 of the single hit dcol threshold in electrons
float dytwo
mean offset/correction for one double-pixel y-clusters
float xrms(int i)
average x-rms of reconstruction binned in 4 charge bins
float ysize
pixel size (for future use in upgraded geometry)
float dxone
mean offset/correction for one pixel x-clusters
float chi2xavgone_
average x chi^2 for 1 pixel clusters
float qmin()
minimum cluster charge for valid hit (keeps 99.9% of simulated hits)
float pixmax
maximum charge for individual pixels in cluster
float zsize()
pixel z-size or thickness (microns)
float xavgc2m(int i)
1st pass chi2 min search: average x-bias of reconstruction binned in 4 charge bins ...
float qscale
Charge scaling to match cmssw and pixelav.
float chi2xavg_[4]
average x chi^2 in 4 charge bins
float chi2yavgc2m[4]
1st pass chi2 min search: average y chi^2 in 4 charge bins (merged clusters)
float qmin
minimum cluster charge for valid hit (keeps 99.9% of simulated hits)
float chi2xavgc2m[4]
1st pass chi2 min search: average x chi^2 in 4 charge bins (merged clusters)
float ygx0_[4]
average y0 from Gaussian fit binned in 4 charge bins
float scaley_[4]
y-error scale factor in charge bins
float mpvvav2()
most probable charge in 2-cluster Vavilov distribution (not actually for larger kappa) ...
float r_qMeas_qTrue()
ratio of measured to true cluster charge
float xflcorr(int binq, float qflx)
#define TEMP_ENTRY_SIZEX_B
float sytwo()
rms for one double-pixel y-clusters
float xgsiggen[4]
generic algorithm: average sigma_x from Gaussian fit binned in 4 charge bins
float cotb_current_
current cot beta
float s50_
1/2 of the pixel single col threshold signal in electrons
assert(be >=bs)
float chi2xminc2m[4]
1st pass chi2 min search: minimum of x chi^2 in 4 charge bins (merged clusters)
int ID
< template header structure
float Bfield
Bfield in Tesla.
float cotalpha
cot(alpha) is proportional to cluster length in x and is basis of interpolation
float temperature
detector temperature in deg K
float yavgc2m_[4]
1st pass chi2 min search: average y-bias of reconstruction binned in 4 charge bins ...
const SiPixelTemplateEntry * entx02_
float chi2xminc2m_[4]
1st pass chi2 min search: minimum x-chisq for merged clusters
float chi2yminone()
//!< minimum of y chi^2 for 1 pixel clusters
float ytemp[9][21]
templates for y-reconstruction (binned over 1 central pixel)
float sxone()
rms for one pixel x-clusters
float yrmsc2m[4]
1st pass chi2 min search: average y-rms of reconstruction binned in 4 charge bins ...
float qavg_
average cluster charge for this set of track angles
float lorywidth
estimate of y-lorentz width for optimal resolution
float r_qMeas_qTrue_
ratio of measured to true cluster charges
#define BXM2
float lorxbias_
Lorentz x-bias.
float fbin[3]
The QBin definitions in Q_clus/Q_avg.
float xflparlh_[4][6]
Aqfl-parameterized x-correction in 4 charge bins for smaller cotbeta, larger cotalpha.
void ytemp(int fybin, int lybin, float ytemplate[41][21+4])
int cxtemp()
Return central pixel of x-template pixels above readout threshold.
int templ_version
Version number of the template to ensure code compatibility.
float qscale()
charge scaling factor
float xpar[2][5]
projected x-pixel uncertainty parameterization
float chi2xavgc2m(int i)
1st pass chi2 min search: average x-chisq for merged clusters
float chi2ymin_[4]
minimum of y chi^2 in 4 charge bins
float ygx0[4]
average y0 from Gaussian fit binned in 4 charge bins
float xgx0gen[4]
generic algorithm: average x0 from Gaussian fit binned in 4 charge bins
float dxone()
mean offset/correction for one pixel x-clusters
float scaleyavg_
average y-error scale factor
float sxparmax_
maximum pixel signal for parameterization of x uncertainties
float kappavav2_
kappa parameter for 2-cluster Vavilov distribution
float symax
average pixel signal for y-projection of cluster
float sigmavav_
"sigma" scale fctor for Vavilov distribution
float kappavav2
kappa parameter for Vavilov distribution for 2 merged clusters
float xgsig[4]
average sigma_x from Gaussian fit binned in 4 charge bins
float kappavav()
kappa parameter for Vavilov distribution
float cotbeta
cot(beta) is proportional to cluster length in y and is basis of interpolation
float chi2yavg(int i)
average y chi^2 in 4 charge bins
float beta
beta track angle (defined in CMS CMS IN 2004/014)
void vavilov_pars(double &mpv, double &sigma, double &kappa)
float fracytwo()
The simulated fraction of single double-size pixel y-clusters.
float lorxwidth()
signed lorentz x-width (microns)
float lorywidth()
signed lorentz y-width (microns)
float ygsig(int i)
average sigma_y from Gaussian fit binned in 4 charge bins
float yrms(int i)
average y-rms of reconstruction binned in 4 charge bins
const SiPixelTemplateEntry * enty0_
float lorywidth_
Lorentz y-width (sign corrected for fpix frame)
float clsleny()
y-size of smaller interpolated template in pixels
float fracxtwo()
The simulated fraction of single double-size pixel x-clusters.
float yflcorr(int binq, float qfly)
float xrmsc2m[4]
1st pass chi2 min search: average x-rms of reconstruction binned in 4 charge bins ...
void ytemp3d(int j, int k, std::vector< float > &ytemplate)
void temperrors(int id, float cotalpha, float cotbeta, int qBin, float &sigmay, float &sigmax, float &sy1, float &sy2, float &sx1, float &sx2)
float lorxwidth
estimate of x-lorentz width for optimal resolution
float delysig_
rms of difference between clsleny_ and cluster length [with threshold effects]
float xgx0[4]
average x0 from Gaussian fit binned in 4 charge bins
#define TEMP_ENTRY_SIZEY
float xsize()
pixel x-size (microns)
boost::multi_array< float, 2 > temp2dx_
2d-primitive for spltting 3-d template
void ysigma2(int fypix, int lypix, float sythr, float ysum[21+4], float ysig2[21+4])
char title[80]
template title
float sigmavav2_
"sigma" scale fctor for 2-cluster Vavilov distribution
#define BYM2
float sigmavav2()
"sigma" scale fctor for 2-cluster Vavilov distribution
float yparl_[2][5]
projected y-pixel uncertainty parameterization for smaller cotbeta
float xpar0_[2][5]
projected x-pixel uncertainty parameterization for central cotalpha
float ygsiggen[4]
generic algorithm: average sigma_y from Gaussian fit binned in 4 charge bins
float fracxone
fraction of sample with xsize = 1
float sxtwo()
rms for one double-pixel x-clusters
float mpvvav
most probable charge in Vavilov distribution (not actually for larger kappa)
const SiPixelTemplateEntry * entx20_
float ysize_
Pixel y-size.
float xsize_
Pixel x-size.
float dytwo()
mean offset/correction for one double-pixel y-clusters
float kappavav_
kappa parameter for Vavilov distribution
float sxtwo
rms for one double-pixel x-clusters
bool success_
true if cotalpha, cotbeta are inside of the acceptance (dynamically loaded)
float r_qMeas_qTrue
ratio of measured to true cluster charge
float syone_
rms for one pixel y-clusters
int Dtype
detector type (0=BPix, 1=FPix)
float xflparhh_[4][6]
Aqfl-parameterized x-correction in 4 charge bins for larger cotbeta, cotalpha.
float chi2yavg[4]
average y chi^2 in 4 charge bins
float alpha
alpha track angle (defined in CMS CMS IN 2004/014)
float xtemp[9][13]
templates for x-reconstruction (binned over 1 central pixel)
float chi2yminc2m(int i)
1st pass chi2 min search: minimum y-chisq for merged clusters
SiPixelTemplateHeader head
< template storage structure
float s50()
1/2 of the pixel threshold signal in electrons
float chi2xminone
minimum of x chi^2 for 1 pixel clusters
float yflparl_[4][6]
Aqfl-parameterized y-correction in 4 charge bins for smaller cotbeta.
float ypar[2][5]
projected y-pixel uncertainty parameterization
std::array< float, 80 > cotbetaX
float chi2yavgone_
average y chi^2 for 1 pixel clusters
float dyone_
mean offset/correction for one pixel y-clusters
const SiPixelTemplateEntry * enty1_
float yavgc2m(int i)
1st pass chi2 min search: average y-bias of reconstruction binned in 4 charge bins ...
bool flip_y_
flip y sign-sensitive quantities
void xtemp3d(int j, int k, std::vector< float > &xtemplate)
const std::vector< SiPixelTemplateStore > & thePixelTemp_
float sxone_
rms for one pixel x-clusters
float dxtwo_
mean offset/correction for one double-pixel x-clusters
float chi2xminc2m(int i)
1st pass chi2 min search: minimum x-chisq for merged clusters
float ygx0(int i)
average y0 from Gaussian fit binned in 4 charge bins
const SiPixelTemplateEntry * entx22_
float s50
1/2 of the multihit dcol threshold in electrons
float offsety_[4]
y-offset in charge bins
#define TYSIZE
float qscale_
charge scaling factor
float xparh_[2][5]
projected x-pixel uncertainty parameterization for larger cotalpha
float qmin(int i)
minimum cluster charge for valid hit (keeps 99.9% or 99.8% of simulated hits)
float lorybias()
signed lorentz y-width (microns)
void xtemp(int fxbin, int lxbin, float xtemplate[41][13+4])
float zsize
pixel size (for future use in upgraded geometry)
void qbin_dist(int id, float cotalpha, float cotbeta, float qbin_frac[4], float &ny1_frac, float &ny2_frac, float &nx1_frac, float &nx2_frac)
float ygsig_[4]
average sigma_y from Gaussian fit binned in 4 charge bins
float Vbias
detector bias potential in Volts
float qmin2_
tighter minimum cluster charge for valid hit (keeps 99.8% of simulated hits)
float yrms_[4]
average y-rms of reconstruction binned in 4 charge bins
float xavgc2m_[4]
1st pass chi2 min search: average x-bias of reconstruction binned in 4 charge bins ...
float xflparll_[4][6]
Aqfl-parameterized x-correction in 4 charge bins for smaller cotbeta, cotalpha.
float qbfrac[3]
fraction of sample in qbin = 0-2 (>=3 is the complement)
float syone()
rms for one pixel y-clusters
float sytwo_
rms for one double-pixel y-clusters
float xsize
pixel size (for future use in upgraded geometry)
void ytemp3d_int(int nypix, int &nybins)
float qavg_avg_
average of cluster charge less than qavg
float fracyone
fraction of sample with ysize = 1
float fracyone()
The simulated fraction of single pixel y-clusters.
float chi2yavgone()
//!< average y chi^2 for 1 pixel clusters
float qmin2
tighter minimum cluster charge for valid hit (keeps 99.8% of simulated hits)
float yxratio()
fractional distance in y between cotalpha templates slices
float chi2xminone_
minimum of x chi^2 for 1 pixel clusters
float yavg[4]
average y-bias of reconstruction binned in 4 charge bins
void xtemp3d_int(int nxpix, int &nxbins)
float qavg()
average cluster charge for this set of track angles
int dtype_
flags BPix (=0) or FPix (=1)
float xparl_[2][5]
projected x-pixel uncertainty parameterization for smaller cotalpha
float sxtwo_
rms for one double-pixel x-clusters
float sxmax()
average pixel signal for x-projection of cluster
static bool pushfile(int filenum, std::vector< SiPixelTemplateStore > &pixelTemp, std::string dir="CalibTracker/SiPixelESProducers/data/")
float clslenx_
x-cluster length of smaller interpolated template in pixels
boost::multi_array< float, 2 > temp2dy_
2d-primitive for spltting 3-d template
float chi2ymin[4]
minimum of y chi^2 in 4 charge bins
float yflparh_[4][6]
Aqfl-parameterized y-correction in 4 charge bins for larger cotbeta.
float fracyone_
The simulated fraction of single pixel y-clusters.
float yavgc2m[4]
1st pass chi2 min search: average y-bias of reconstruction binned in 4 charge bins ...
int NTy
number of Template y entries
float xparly0_[2][5]
projected x-pixel uncertainty parameterization for smaller cotbeta (central alpha) ...
float xrms_[4]
average x-rms of reconstruction binned in 4 charge bins
float fracxtwo_
The simulated fraction of single double-size pixel x-clusters.
float symax_
average pixel signal for y-projection of cluster
float dxtwo
mean offset/correction for one double-pixel x-clusters
bool flip_x_
flip x sign-sensitive quantities
float lorxbias
estimate of x-lorentz bias
float yparh_[2][5]
projected y-pixel uncertainty parameterization for larger cotbeta
float chi2xavgone()
//!< average x chi^2 for 1 pixel clusters
float lorxbias()
signed lorentz x-width (microns)
float pixmax()
maximum pixel charge
SiPixelTemplateEntry entx[80][80]
float xxratio_
fractional distance in x between cotalpha templates
float chi2yavg_[4]
average y chi^2 in 4 charge bins
float sigmavav()
"sigma" scale fctor for Vavilov distribution
float xflparhl_[4][6]
Aqfl-parameterized x-correction in 4 charge bins for larger cotbeta, smaller cotalpha.
int NTyx
number of Template y-slices of x entries
float yflpar[4][6]
Aqfl-parameterized y-correction in 4 charge bins.
float yxratio_
fractional distance in y between x-slices of cotalpha templates
float sxone
rms for one pixel x-clusters
float delyavg_
average difference between clsleny_ and cluster length [with threshold effects]
float xgx0(int i)
average x0 from Gaussian fit binned in 4 charge bins
float qmin_
minimum cluster charge for valid hit (keeps 99.9% of simulated hits)
float dxone_
mean offset/correction for one pixel x-clusters
float chi2xmin[4]
minimum of x chi^2 in 4 charge bins
float lorxwidth_
Lorentz x-width.
float chi2xavg(int i)
averaage x chi^2 in 4 charge bins
float yavg_[4]
average y-bias of reconstruction binned in 4 charge bins
int index_id_
current index
float chi2yminone
minimum of y chi^2 for 1 pixel clusters
SiPixelTemplateEntry enty[100]
60 Barrel x templates spanning cluster lengths from -6px (-1.125Rad) to +6px (+1.125Rad) in each of 6...
int qbin(int id, float cotalpha, float cotbeta, float locBz, float locBx, float qclus, float &pixmx, float &sigmay, float &deltay, float &sigmax, float &deltax, float &sy1, float &dy1, float &sy2, float &dy2, float &sx1, float &dx1, float &sx2, float &dx2)
float xgsig(int i)
average sigma_x from Gaussian fit binned in 4 charge bins
const SiPixelTemplateEntry * entx21_
float costrk[3]
direction cosines of tracks used to generate this entry
static void postInit(std::vector< SiPixelTemplateStore > &thePixelTemp_)
float mpvvav2_
most probable charge in 2-cluster Vavilov distribution (not actually for larger kappa) ...
float syparmax_
maximum pixel signal for parameterization of y uncertainties
float ygsig[4]
average sigma_y from Gaussian fit binned in 4 charge bins
float nxbins_
number of bins in each dimension of the x-splitting template
float yrmsc2m_[4]
1st pass chi2 min search: average y-rms of reconstruction binned in 4 charge bins ...
float fracytwo_
The simulated fraction of single double-size pixel y-clusters.
float sigmavav2
"sigma" scale fctor for Vavilov distribution for 2 merged clusters
float sytwo
rms for one double-pixel y-clusters
float dyone()
mean offset/correction for one pixel y-clusters
float xavg(int i)
average x-bias of reconstruction binned in 4 charge bins
float xrmsgen[4]
generic algorithm: average x-rms of reconstruction binned in 4 charge bins
float dytwo_
mean offset/correction for one double-pixel y-clusters
float dxtwo()
mean offset/correction for one double-pixel x-clusters
int id_current_
current id
float ysize()
pixel y-size (microns)
float zsize_
Pixel z-size (thickness)
#define TEMP_ENTRY_SIZEX_A
float chi2xavg[4]
average x chi^2 in 4 charge bins
float xrmsc2m(int i)
1st pass chi2 min search: average x-rms of reconstruction binned in 4 charge bins ...
float ytemp_[9][21+4]
templates for y-reconstruction (binned over 5 central pixels)
float yratio_
fractional distance in y between cotbeta templates
float chi2yavgc2m_[4]
1st pass chi2 min search: average y-chisq for merged clusters
float xxratio()
fractional distance in x between cotalpha templates
float kappavav
kappa parameter for Vavilov distribution
float xavggen[4]
generic algorithm: average x-bias of reconstruction binned in 4 charge bins
float yrmsgen[4]
generic algorithm: average y-rms of reconstruction binned in 4 charge bins
float nybins_
number of bins in each dimension of the y-splitting template
float chi2xmin_[4]
minimum of x chi^2 in 4 charge bins
float clsleny
cluster y-length in pixels at signal height symax/2
float xgsig_[4]
sigma from Gaussian fit binned in 4 charge bins
float xtemp_[9][13+4]
templates for x-reconstruction (binned over 5 central pixels)