5 {
6
7 Int_t runno, evtfrom, evtto;
8 Double_t runmean, rungain, runresol;
9
10 TFile fdedx("DedxConst_test.root","recreate");
11 TTree* runbyrun = new TTree("runcalib", "runcalib");
12 runbyrun ->
Branch(
"runno", &runno,
"runno/I");
13 runbyrun ->
Branch(
"runmean", &runmean,
"runmean/D");
14 runbyrun ->
Branch(
"rungain", &rungain,
"rungain/D");
15 runbyrun ->
Branch(
"runresol", &runresol,
"runresol/D");
16 runbyrun ->
Branch(
"evtfrom", &evtfrom,
"evtfrom/I");
17 runbyrun ->
Branch(
"evtto", &evtto,
"evtto/I");
18
19
21 TTree *tree_rung = (TTree*)fconst0.Get("runcalib");
28
29 long NRUN = tree_rung -> GetEntries();
30 cout<<"Run Number == "<<NRUN<<endl;
31 for(long runid =0; runid<NRUN; runid++){
32 tree_rung->GetEntry(runid);
33 runbyrun ->Fill();
34 }
35
36 TTree *tree_resg = (TTree*)fconst0.Get("resolcalib");
37 Double_t resolpar[1];
40
41 TTree *tree_gaing = (TTree*)fconst0.Get("gaincalib");
42 Double_t gainpar[1];
45
46 fconst0.Close();
47 cout<<"runbyrun const OK!!!"<<endl;
48
49
51 Double_t gwire[6796];
52 TTree *tree_wireg = (TTree*)fconst1.Get("wiregcalib");
55 fconst1.Close();
56 cout<<"wiregcalib const OK!!!"<<endl;
57
58
60 Double_t ggs0[43], ggs1[43], ggs2[43], ggs3[43];
61 TTree *tree_ggs = (TTree*)fconst2.Get("ggscalib");
66 tree_ggs->GetEntry(0);
67 fconst2.Close();
68 cout<<"ggscalib const OK!!!"<<endl;
69
70
72 Double_t ddg0[43], ddg1[43], ddg2[43], ddg3[43];
73 TTree *tree_ddg = (TTree*)fconst3.Get("ddgcalib");
79 fconst3.Close();
80 cout<<"ddgcalib const OK!!!"<<endl;
81
82
84 Double_t entra0[43], entra1[43], entra2[43], entra3[43];
85 TTree *tree_entra = (TTree*)fconst4.Get("entracalib");
90
91
92
93
94 tree_entra->GetEntry(0);
95 fconst4.Close();
96
97
98
100 int entry[1]; double denangle[100];
101 TTree *tree_entra1 = (TTree*)fconst4_1.Get("entracalib");
104 tree_entra1 ->GetEntry(0);
105 fconst4_1.Close();
106 cout<<"entrance angle const OK!!!"<<endl;
107
108
110 Double_t zdep0[43], zdep1[43], zdep2[43], zdep3[43];
111 TTree *tree_zdep = (TTree*)fconst5.Get("zdepcalib");
116 tree_zdep->GetEntry(0);
117 fconst5.Close();
118 cout<<"zdepcalib const OK!!!"<<endl;
119
120
122 Double_t glayer[43];
123 TTree *tree_layerg = (TTree*)fconst6.Get("layergcalib");
125 tree_layerg->GetEntry(0);
126 fconst6.Close();
127 cout<<"layergcalib const OK!!!"<<endl;
128
129
130
131
133 TTree *tree_costheta = (TTree*)fconst7.Get("ggscalib");
134 double gcostheta[80];
135 tree_costheta ->SetBranchAddress("costheta",gcostheta);
136 tree_costheta->GetEntry(0);
137 fconst7.Close();
138 cout<<"costhetacalib const OK!!!"<<endl;
139
140
142 TTree *tree_t0=(TTree*)fconst8.Get("gaincalib");
143
144 double gt0[35];
145 double gdedx[35];
146 tree_t0->SetBranchAddress("t0",gt0);
147 tree_t0->SetBranchAddress("dedx",gdedx);
148 for(int i=0; i<tree_t0->GetEntries(); i++)
149 {
150 tree_t0->GetEntry(i);
151
152
153 }
154 fconst8.Close();
155 cout<<"t0calib const OK!!!"<<endl;
156
157
158
159 TFile fconst9("docaeangle.root");
161 double Iner_gain[
n], Iner_chi[
n], Iner_hits[
n];
162 double Out_gain[
n], Out_chi[
n], Out_hits[
n];
163 double Id_doca[
n], Ip_eangle[
n];
164
165 TTree *tree_docasin = (TTree*)fconst9.Get("ddgcalib");
175 fconst9.Close();
176
177 cout<<"ddgcalib const OK!!!"<<endl;
178
180
181
182 int hadronNo;
183 double ghadron[5];
184 TTree *tree_hadron = (TTree*)fconst10.Get("ggscalib");
187 tree_hadron->GetEntry(0);
188 fconst10.Close();
189 cout<<"hadron const OK!!!"<<endl;
190
191
192 fdedx.cd();
193 TTree* gain = new TTree("gaincalib", "gaincalib");
194 gain ->
Branch(
"gain", gainpar,
"gain[1]/D");
195 gain ->
Branch(
"t0", gt0,
"t0[35]/D");
196 gain ->
Branch(
"dedx", gdedx,
"dedx[35]/D");
197
198 TTree* resol = new TTree("resolcalib", "resolcalib");
199 resol ->
Branch(
"resol", resolpar,
"resol[1]/D");
200
201 TTree* wireg = new TTree("wiregcalib", "wiregcalib");
202 wireg ->
Branch(
"wireg", gwire,
"wireg[6796]/D");
203 wireg-> SetBasketSize("wireg",2000000);
204
205 TTree* ggs = new TTree("ggscalib", "ggscalib");
206 ggs ->
Branch(
"ggs0", ggs0,
"ggs[43]/D");
207 ggs ->
Branch(
"ggs1", ggs1,
"ggs[43]/D");
208 ggs ->
Branch(
"ggs2", ggs2,
"ggs[43]/D");
209 ggs ->
Branch(
"ggs3", ggs3,
"ggs[43]/D");
210 ggs ->
Branch(
"costheta", gcostheta,
"costheta[80]/D");
211 ggs ->
Branch(
"hadron",ghadron,
"hadron[5]/D");
212 ggs ->
Branch(
"hadronNo",&hadronNo,
"hadronNo/I");
213
214 TTree* ddg = new TTree("ddgcalib", "ddgcalib");
215 ddg ->
Branch(
"ddg0", ddg0,
"ddg[43]/D");
216 ddg ->
Branch(
"ddg1", ddg1,
"ddg[43]/D");
217 ddg ->
Branch(
"ddg2", ddg2,
"ddg[43]/D");
218 ddg ->
Branch(
"ddg3", ddg3,
"ddg[43]/D");
219 ddg ->
Branch(
"Iner_gain", Iner_gain,
"Iner_gain[1600]/D");
220 ddg ->
Branch(
"Out_gain", Out_gain,
"Out_gain[1600]/D");
221 ddg ->
Branch(
"Iner_chi", Iner_chi,
"Iner_chi[1600]/D");
222 ddg ->
Branch(
"Out_chi", Out_chi,
"Out_chi[1600]/D");
223 ddg ->
Branch(
"Iner_hits", Iner_hits,
"Iner_hits[1600]/D");
224 ddg ->
Branch(
"Out_hits", Out_hits,
"Out_hits[1600]/D");
225 ddg ->
Branch(
"Id_doca", Id_doca,
"Id_doca[1600]/D");
226 ddg ->
Branch(
"Ip_eangle", Ip_eangle,
"Ip_eangle[1600]/D");
227
228 TTree* entra = new TTree("entracalib", "entracalib");
229 entra ->
Branch(
"entra0", entra0,
"entra[43]/D");
230 entra ->
Branch(
"entra1", entra1,
"entra[43]/D");
231 entra ->
Branch(
"entra2", entra2,
"entra[43]/D");
232 entra ->
Branch(
"entra3", entra3,
"entra[43]/D");
233 entra ->
Branch(
"1denangle_entry", entry,
"1denangle_entry[1]/I");
234 entra ->
Branch(
"1denangle", denangle,
"1denangle[100]/D");
235
236 TTree* zdep = new TTree("zdepcalib", "zdepcalib");
237 zdep ->
Branch(
"zdep0", zdep0,
"zdep[43]/D");
238 zdep ->
Branch(
"zdep1", zdep1,
"zdep[43]/D");
239 zdep ->
Branch(
"zdep2", zdep2,
"zdep[43]/D");
240 zdep ->
Branch(
"zdep3", zdep3,
"zdep[43]/D");
241
242 TTree* layerg = new TTree("layergcalib", "layergcalib");
243 layerg ->
Branch(
"layerg", glayer,
"layerg[43]/D");
244
245
246 gain->Fill();
247 resol->Fill();
254
255
256
257
258
259
260
261
262
263
264 fdedx.Write();
265 fdedx.Close();
266 cout<<"All const OK!!!"<<endl;
267}
curve Branch("CurveSize",&CurveSize,"CurveSize/I")
data SetBranchAddress("time",&time)