1 /**************************************************************************
2 * Copyright(c) 1998-1999, ALICE Experiment at CERN, All rights reserved. *
4 * Author: The ALICE Off-line Project. *
5 * Contributors are mentioned in the code where appropriate. *
7 * Permission to use, copy, modify and distribute this software and its *
8 * documentation strictly for non-commercial purposes is hereby granted *
9 * without fee, provided that the above copyright notice appears in all *
10 * copies and that both the copyright notice and this permission notice *
11 * appear in the supporting documentation. The authors make no claims *
12 * about the suitability of this software for any purpose. It is *
13 * provided "as is" without express or implied warranty. *
14 **************************************************************************/
17 ///////////////////////////////////////////////////////////////////////////////
19 // Class to make a internal alignemnt of TPC chambers //
21 // Different linear tranformation investigated
22 // 12 parameters - arbitrary transformation
23 // 9 parameters - scaling fixed to 1
26 //// Only the 12 parameter version works so far...
31 #include "TLinearFitter.h"
32 #include "AliTPCcalibAlign.h"
33 #include "AliExternalTrackParam.h"
34 #include "AliTPCTracklet.h"
36 #include "TTreeStream.h"
42 ClassImp(AliTPCcalibAlign)
44 AliTPCcalibAlign::AliTPCcalibAlign()
45 : fDphiHistArray(72*72),
46 fDthetaHistArray(72*72),
49 fFitterArray12(72*72),
56 for (Int_t i=0;i<72*72;++i) {
61 AliTPCcalibAlign::AliTPCcalibAlign(const Text_t *name, const Text_t *title)
63 fDphiHistArray(72*72),
64 fDthetaHistArray(72*72),
67 fFitterArray12(72*72),
76 for (Int_t i=0;i<72*72;++i) {
81 AliTPCcalibAlign::~AliTPCcalibAlign() {
87 void AliTPCcalibAlign::Process(AliTPCseed *seed) {
89 AliTPCTracklet::CreateTracklets(seed,AliTPCTracklet::kKalman,
91 // TObjArray trackletsL=
92 // AliTPCTracklet::CreateTracklets(seed,AliTPCTracklet::kLinear,
94 // TObjArray trackletsQ=
95 // AliTPCTracklet::CreateTracklets(seed,AliTPCTracklet::kQuadratic,
97 // TObjArray trackletsR=
98 // AliTPCTracklet::CreateTracklets(seed,AliTPCTracklet::kRiemann,
100 tracklets.SetOwner();
101 // trackletsL.SetOwner();
102 // trackletsQ.SetOwner();
103 // trackletsR.SetOwner();
104 if (tracklets.GetEntries()==2) {
105 AliTPCTracklet *t1=static_cast<AliTPCTracklet*>(tracklets[0]);
106 AliTPCTracklet *t2=static_cast<AliTPCTracklet*>(tracklets[1]);
107 if (t1->GetSector()>t2->GetSector()) {
108 AliTPCTracklet* tmp=t1;
112 AliExternalTrackParam *common1=0,*common2=0;
113 if (AliTPCTracklet::PropagateToMeanX(*t1,*t2,common1,common2))
114 ProcessTracklets(*common1,*common2,t1->GetSector(),t2->GetSector());
121 void AliTPCcalibAlign::ProcessTracklets(const AliExternalTrackParam &tp1,
122 const AliExternalTrackParam &tp2,
126 TTreeSRedirector *cstream = GetDebugStreamer();
128 AliExternalTrackParam *p1 = &((AliExternalTrackParam&)tp1);
129 AliExternalTrackParam *p2 = &((AliExternalTrackParam&)tp2);
130 (*cstream)<<"Tracklet"<<
139 if (s2-s1==36) {//only inner-outer
140 if (!fDphiHistArray[s1*72+s2]) {
143 name<<"hist_phi_"<<s1<<"_"<<s2;
144 title<<"Phi Missalignment for sectors "<<s1<<" and "<<s2;
145 fDphiHistArray[s1*72+s2]=new TH1D(name.str().c_str(),title.str().c_str(),1024,-0.01,0.01); // +/- 10 mrad
146 ((TH1D*)fDphiHistArray[s1*72+s2])->SetDirectory(0);
148 if (!fDthetaHistArray[s1*72+s2]) {
151 name<<"hist_theta_"<<s1<<"_"<<s2;
152 title<<"Theta Missalignment for sectors "<<s1<<" and "<<s2;
153 fDthetaHistArray[s1*72+s2]=new TH1D(name.str().c_str(),title.str().c_str(),1024,-0.01,0.01); // +/- 10 mrad
154 ((TH1D*)fDthetaHistArray[s1*72+s2])->SetDirectory(0);
156 if (!fDyHistArray[s1*72+s2]) {
159 name<<"hist_y_"<<s1<<"_"<<s2;
160 title<<"Y Missalignment for sectors "<<s1<<" and "<<s2;
161 fDyHistArray[s1*72+s2]=new TH1D(name.str().c_str(),title.str().c_str(),1024,-0.3,0.3); // +/- 3 mm
162 ((TH1D*)fDyHistArray[s1*72+s2])->SetDirectory(0);
164 if (!fDzHistArray[s1*72+s2]) {
167 name<<"hist_z_"<<s1<<"_"<<s2;
168 title<<"Z Missalignment for sectors "<<s1<<" and "<<s2;
169 fDzHistArray[s1*72+s2]=new TH1D(name.str().c_str(),title.str().c_str(),1024,-0.3,0.3); // +/- 3 mm
170 ((TH1D*)fDzHistArray[s1*72+s2])->SetDirectory(0);
172 static_cast<TH1D*>(fDphiHistArray[s1*72+s2])
173 ->Fill(TMath::ASin(tp1.GetSnp())
174 -TMath::ASin(tp2.GetSnp()));
175 static_cast<TH1D*>(fDthetaHistArray[s1*72+s2])
176 ->Fill(TMath::ATan(tp1.GetTgl())
177 -TMath::ATan(tp2.GetTgl()));
178 static_cast<TH1D*>(fDyHistArray[s1*72+s2])
181 static_cast<TH1D*>(fDzHistArray[s1*72+s2])
190 // Process function to fill fitters
192 Double_t t1[5],t2[5];
193 Double_t &x1=t1[0], &y1=t1[1], &z1=t1[2], &dydx1=t1[3], &dzdx1=t1[4];
194 Double_t /*&x2=t2[0],*/ &y2=t2[1], &z2=t2[2], &dydx2=t2[3]/*, &dzdx2=t2[4]*/;
198 Double_t snp1=tp1.GetSnp();
199 dydx1=snp1/TMath::Sqrt(1.-snp1*snp1);
200 Double_t tgl1=tp1.GetTgl();
201 // dz/dx = 1/(cos(theta)*cos(phi))
202 dzdx1=1./TMath::Sqrt((1.+tgl1*tgl1)*(1.-snp1*snp1));
206 Double_t snp2=tp2.GetSnp();
207 dydx2=snp2/TMath::Sqrt(1.-snp2*snp2);
208 Double_t tgl2=tp2.GetTgl();
209 dzdx1=1./TMath::Sqrt((1.+tgl2*tgl2)*(1.-snp2*snp2));
211 Process12(t1,t2,GetOrMakeFitter12(s1,s2));
212 Process9(t1,t2,GetOrMakeFitter12(s1,s2));
213 Process6(t1,t2,GetOrMakeFitter12(s1,s2));
217 void AliTPCcalibAlign::Process12(Double_t *t1,
219 TLinearFitter *fitter) {
220 // x2 = a00*x1 + a01*y1 + a02*z1 + a03
221 // y2 = a10*x1 + a11*y1 + a12*z1 + a13
222 // z2 = a20*x1 + a21*y1 + a22*z1 + a23
223 // dydx2 = (a10 + a11*dydx1 + a12*dzdx1)/(a00 + a01*dydx1 + a02*dzdx1)
224 // dzdx2 = (a20 + a21*dydx1 + a22*dzdx1)/(a00 + a01*dydx1 + a02*dzdx1)
226 // a00 a01 a02 a03 p[0] p[1] p[2] p[9]
227 // a10 a11 a12 a13 ==> p[3] p[4] p[5] p[10]
228 // a20 a21 a22 a23 p[6] p[7] p[8] p[11]
229 Double_t &x1=t1[0], &y1=t1[1], &z1=t1[2], &dydx1=t1[3], &dzdx1=t1[4];
230 Double_t /*&x2=t2[0],*/ &y2=t2[1], &z2=t2[2], &dydx2=t2[3], &dzdx2=t2[4];
241 // x2 = a00*x1 + a01*y1 + a02*z1 + a03
242 // y2 = a10*x1 + a11*y1 + a12*z1 + a13
243 // y2' = a10*x1 + a11*y1 + a12*z1 + a13 + (a01*y1 + a02*z1 + a03)*dydx2
244 for (Int_t i=0; i<12;i++) p[i]=0.;
249 p[0+1] = y1*dydx2; // a01
250 p[0+2] = z1*dydx2; // a02
251 p[9+0] = dydx2; // a03
253 fitter->AddPoint(p,value,sy);
255 // x2 = a00*x1 + a01*y1 + a02*z1 + a03
256 // z2 = a20*x1 + a21*y1 + a22*z1 + a23
257 // z2' = a20*x1 + a21*y1 + a22*z1 + a23 + (a01*y1 + a02*z1 + a03)*dzdx2;
258 for (Int_t i=0; i<12;i++) p[i]=0.;
263 p[0+1] = y1*dzdx2; // a01
264 p[0+2] = z1*dzdx2; // a02
265 p[9+0] = dzdx2; // a03
267 fitter->AddPoint(p,value,sz);
269 // dydx2 = (a10 + a11*dydx1 + a12*dzdx1)/( a00 + a01*dydx1 + a02*dzdx1)
270 // (a10 + a11*dydx1 + a12*dzdx1) - (a00 + a01*dydx1 + a02*dzdx1)*dydx2 = 0
271 for (Int_t i=0; i<12;i++) p[i]=0.;
273 p[3+1] = dydx1; // a11
274 p[3+2] = dzdx1; // a12
275 p[0+0] = -dydx2; // a00
276 p[0+1] = -dydx1*dydx2; // a01
277 p[0+2] = -dzdx1*dydx2; // a02
279 fitter->AddPoint(p,value,sdydx);
281 // dzdx2 = (a20 + a21*dydx1 + a22*dzdx1)/( a00 + a01*dydx1 + a02*dzdx1)
282 // (a20 + a21*dydx1 + a22*dzdx1) - (a00 + a01*dydx1 + a02*dzdx1)*dzdx2 = 0
283 for (Int_t i=0; i<12;i++) p[i]=0.;
285 p[6+1] = dydx1; // a21
286 p[6+2] = dzdx1; // a22
287 p[0+0] = -dzdx2; // a00
288 p[0+1] = -dydx1*dzdx2; // a01
289 p[0+2] = -dzdx1*dzdx2; // a02
291 fitter->AddPoint(p,value,sdzdx);
294 void AliTPCcalibAlign::Process9(Double_t *t1,
296 TLinearFitter *fitter) {
297 // x2 = a00*x1 + a01*y1 + a02*z1 + a03
298 // y2 = a10*x1 + a11*y1 + a12*z1 + a13
299 // z2 = a20*x1 + a21*y1 + a22*z1 + a23
300 // dydx2 = (a10 + a11*dydx1 + a12*dzdx1)/(a00 + a01*dydx1 + a02*dzdx1)
301 // dzdx2 = (a20 + a21*dydx1 + a22*dzdx1)/(a00 + a01*dydx1 + a02*dzdx1)
303 // a00 a01 a02 a03 p[0] p[1] p[2] p[9]
304 // a10 a11 a12 a13 ==> p[3] p[4] p[5] p[10]
305 // a20 a21 a22 a23 p[6] p[7] p[8] p[11]
306 Double_t &x1=t1[0], &y1=t1[1], &z1=t1[2], &dydx1=t1[3], &dzdx1=t1[4];
307 Double_t /*&x2=t2[0],*/ &y2=t2[1], &z2=t2[2], &dydx2=t2[3], &dzdx2=t2[4];
318 // x2 = a00*x1 + a01*y1 + a02*z1 + a03
319 // y2 = a10*x1 + a11*y1 + a12*z1 + a13
320 // y2' = a10*x1 + a11*y1 + a12*z1 + a13 + (a01*y1 + a03)*dydx2
321 for (Int_t i=0; i<12;i++) p[i]=0.;
330 fitter->AddPoint(p,value,sy);
332 // x2 = a00*x1 + a01*y1 + a02*z1 + a03
333 // z2 = a20*x1 + a21*y1 + a22*z1 + a23
334 // z2' = a20*x1 + a21*y1 + a22*z1 + a23 + (a01*y1 + a03)*dzdx2;
335 for (Int_t i=0; i<12;i++) p[i]=0.;
344 fitter->AddPoint(p,value,sz);
346 // dydx2 = (a10 + a11*dydx1 + a12*dzdx1)/( a00 + a01*dydx1 + a02*dzdx1)
347 // (a10 + a11*dydx1 + a12*dzdx1) - (a00 + a01*dydx1 + a02*dzdx1)*dydx2 = 0
348 for (Int_t i=0; i<12;i++) p[i]=0.;
353 p[0+1] = -dydx1*dydx2;
354 p[0+2] = -dzdx1*dydx2;
356 fitter->AddPoint(p,value,sdydx);
358 // dzdx2 = (a20 + a21*dydx1 + a22*dzdx1)/( a00 + a01*dydx1 + a02*dzdx1)
359 // (a20 + a21*dydx1 + a22*dzdx1) - (a00 + a01*dydx1 + a02*dzdx1)*dzdx2 = 0
360 for (Int_t i=0; i<12;i++) p[i]=0.;
365 p[0+1] = -dydx1*dzdx2;
366 p[0+2] = -dzdx1*dzdx2;
368 fitter->AddPoint(p,value,sdzdx);
371 void AliTPCcalibAlign::Process6(Double_t *t1,
373 TLinearFitter *fitter) {
374 // x2 = 1 *x1 +-a01*y1 + 0 +a03
375 // y2 = a01*x1 + 1 *y1 + 0 +a13
376 // z2 = a20*x1 + a21*y1 + 1 *z1 +a23
377 // dydx2 = (a10 + a11*dydx1 + a12*dzdx1)/(a00 + a01*dydx1 + a02*dzdx1)
378 // dzdx2 = (a20 + a21*dydx1 + a22*dzdx1)/(a00 + a01*dydx1 + a02*dzdx1)
380 // 1 -a01 0 a03 x -p[0] x p[3]
381 // a10 1 0 a13 ==> p[0] x x p[4]
382 // a20 a21 1 a23 p[1] p[2] x p[5]
383 Double_t &x1=t1[0], &y1=t1[1], &z1=t1[2], &dydx1=t1[3], &dzdx1=t1[4];
384 Double_t /*&x2=t2[0],*/ &y2=t2[1], &z2=t2[2], &dydx2=t2[3], &dzdx2=t2[4];
395 // x2 = 1 *x1 +-a01*y1 + 0 +a03
396 // y2 = a01*x1 + 1 *y1 + 0 +a13
397 // y2' = a10*x1 + a11*y1 + a12*z1 + a13 + (a01*y1 + a02*z1 + a03)*dydx2
398 for (Int_t i=0; i<12;i++) p[i]=0.;
407 fitter->AddPoint(p,value,sy);
409 // x2 = 1 *x1 +-a01*y1 + 0 + a03
410 // z2 = a20*x1 + a21*y1 + 1 *z1 + a23
411 // z2' = a20*x1 + a21*y1 + a22*z1 + a23 + (a01*y1 + a02*z1 +a03)*dzdx2;
412 for (Int_t i=0; i<12;i++) p[i]=0.;
421 fitter->AddPoint(p,value,sz);
423 // dydx2 = (a10 + a11*dydx1 + a12*dzdx1)/( a00 + a01*dydx1 + a02*dzdx1)
424 // (a10 + a11*dydx1 + a12*dzdx1) - (a00 + a01*dydx1 + a02*dzdx1)*dydx2 = 0
425 for (Int_t i=0; i<12;i++) p[i]=0.;
430 p[0+1] = -dydx1*dydx2;
431 p[0+2] = -dzdx1*dydx2;
433 fitter->AddPoint(p,value,sdydx);
435 // dzdx2 = (a20 + a21*dydx1 + a22*dzdx1)/( a00 + a01*dydx1 + a02*dzdx1)
436 // (a20 + a21*dydx1 + a22*dzdx1) - (a00 + a01*dydx1 + a02*dzdx1)*dzdx2 = 0
437 for (Int_t i=0; i<12;i++) p[i]=0.;
442 p[0+1] = -dydx1*dzdx2;
443 p[0+2] = -dzdx1*dzdx2;
445 fitter->AddPoint(p,value,sdzdx);
448 void AliTPCcalibAlign::Eval() {
450 for (Int_t s1=0;s1<72;++s1)
451 for (Int_t s2=0;s2<72;++s2)
452 if ((f=GetFitter12(s1,s2))&&fPoints[72*s1+s2]>12) {
453 // cerr<<s1<<","<<s2<<": "<<fPoints[72*s1+s2]<<endl;
455 cerr<<"Evaluation failed for "<<s1<<","<<s2<<endl;
462 chi212 = align->GetChisquare()/(4.*entries);
466 align->GetParameters(par);
467 align->GetCovarianceMatrix(mat);
471 for (Int_t i=0; i<12;i++){
472 palign12(i)= par(i+1);
473 for (Int_t j=0; j<12;j++){
474 pcovar12(i,j) = mat(i+1,j+1);
475 pcovar12(i,j) *= chi212;
479 for (Int_t i=0; i<12;i++){
480 psigma12(i) = TMath::Sqrt(pcovar12(i,i));
481 palignR12(i) = palign12(i)/TMath::Sqrt(pcovar12(i,i));
482 for (Int_t j=0; j<12;j++){
483 pcovarN12(i,j) = pcovar12(i,j)/TMath::Sqrt(pcovar12(i,i)*pcovar12(j,j));
489 Bool_t AliTPCcalibAlign::GetTransformation12(Int_t s1,Int_t s2,TMatrixD &a) {
490 if (!GetFitter12(s1,s2))
495 GetFitter12(s1,s2)->GetParameters(p);
518 Bool_t AliTPCcalibAlign::GetTransformation9(Int_t s1,Int_t s2,TMatrixD &a) {
519 if (!GetFitter9(s1,s2))
523 GetFitter9(s1,s2)->GetParameters(p);
545 Bool_t AliTPCcalibAlign::GetTransformation6(Int_t s1,Int_t s2,TMatrixD &a) {
546 if (!GetFitter6(s1,s2))
551 GetFitter6(s1,s2)->GetParameters(p);