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1 | #include "TFile.h" |
1 | #include "TFile.h" |
2 | #include "TH1.h" |
2 | #include "TH1.h" |
3 | #include "TH2.h" |
3 | #include "TH2.h" |
4 | #include "TFile.h" |
4 | #include "TFile.h" |
5 | #include "TGraph.h" |
5 | #include "TGraph.h" |
- | 6 | #include "TMultiGraph.h" |
|
6 | #include "TCanvas.h" |
7 | #include "TCanvas.h" |
7 | #include "TStyle.h" |
8 | #include "TStyle.h" |
8 | #include "TLegend.h" |
9 | #include "TLegend.h" |
9 | #include "TFile.h" |
10 | #include "TFile.h" |
10 | //#include "TROOT.h" |
11 | //#include "TROOT.h" |
11 | 12 | ||
12 | #include <stdio.h> |
13 | #include <stdio.h> |
13 | #include <time.h> |
14 | #include <time.h> |
14 | 15 | ||
15 | #define DATA_PATH "./data/" |
16 | #define DATA_PATH "./data/" |
16 | #define CFRAC 0.4 |
17 | #define CFRAC 0.4 |
17 | #define DWIDTH 1024 |
18 | #define DWIDTH 1024 |
18 | #define NCH 4 |
19 | #define NCH 4 |
19 | #include "drs.h" |
20 | #include "drs.h" |
20 | 21 | ||
21 | ClassImp (drs) |
22 | ClassImp (drs) |
22 | 23 | ||
23 | 24 | ||
24 | TCanvas *c_wfm; |
25 | TCanvas *c_wfm; |
25 | TFile *froot; |
26 | TFile *froot; |
26 | 27 | ||
27 | TH1F *h1_chmax[NCH]; |
28 | TH1F *h1_chmax[NCH]; |
28 | TH1F *h1_chmaxt[NCH]; |
29 | TH1F *h1_chmaxt[NCH]; |
29 | TH1F *h1_chmin[NCH]; |
30 | TH1F *h1_chmin[NCH]; |
30 | TH1F *h1_chmint[NCH]; |
31 | TH1F *h1_chmint[NCH]; |
31 | TH1F *h1_letime[NCH]; |
32 | TH1F *h1_letime[NCH]; |
32 | TH1F *h1_cftime[NCH]; |
33 | TH1F *h1_cftime[NCH]; |
33 | TH1F *h1_cftdif[NCH]; |
34 | TH1F *h1_cftdif[NCH]; |
34 | TH1F *h1_qdc[NCH]; |
35 | TH1F *h1_qdc[NCH]; |
35 | TH2F *h2_dpo[NCH]; |
36 | TH2F *h2_dpo[NCH]; |
36 | TH2F *h2_tdcadc[NCH]; |
37 | TH2F *h2_tdcadc[NCH]; |
37 | TH2F *h2_ctdcadc[NCH]; |
38 | TH2F *h2_ctdcadc[NCH]; |
38 | TH2F *h2_ctalk; |
39 | TH2F *h2_ctalk; |
39 | TH2F *h2_pos; |
40 | TH2F *h2_pos; |
40 | TH1F *h1_qsumx; |
41 | TH1F *h1_qsumx; |
41 | TH1F *h1_qsumy; |
42 | TH1F *h1_qsumy; |
42 | TGraph *gr_wfm[NCH]; |
43 | TGraph *gr_wfm[NCH]; |
43 | TLegend *leg; |
44 | TLegend *leg; |
- | 45 | TMultiGraph *wfm; |
|
44 | 46 | ||
45 | int drs::histoinit( int nch, DrsChannel* d, int trgch, double ymin, double ymax){ |
47 | int drs::histoinit( int nch, DrsChannel* d, int trgch, double ymin, double ymax){ |
46 | char histname[128]; |
48 | char histname[128]; |
47 | c_wfm= new TCanvas("c_wfm","WFM",50,50,700,700); |
49 | c_wfm= new TCanvas("c_wfm","WFM",50,50,700,700); |
48 | 50 | ||
49 | c_wfm->Divide(1,1); |
51 | c_wfm->Divide(1,1); |
50 | c_wfm->cd(1); |
52 | c_wfm->cd(1); |
51 | const double maxt= |
53 | const double maxt=200; |
52 | leg = new TLegend(0.8, 0.8, 1, 1); |
54 | leg = new TLegend(0.8, 0.8, 1, 1); |
- | 55 | wfm = new TMultiGraph(); |
|
53 | for (int i=0; i<nch; i++) { |
56 | for (int i=0; i<nch; i++) { |
54 | sprintf(histname,"chmax_%02d",i); |
57 | sprintf(histname,"chmax_%02d",i); |
55 | h1_chmax[i]=new TH1F(histname, |
58 | h1_chmax[i]=new TH1F(histname,Form("%d"),1500,d[i].ymin,d[i].ymax); |
56 | sprintf(histname,"chmaxt_%02d",i); |
59 | sprintf(histname,"chmaxt_%02d",i); |
57 | h1_chmaxt[i]=new TH1F(histname,histname,DWIDTH,-0.1,maxt); |
60 | h1_chmaxt[i]=new TH1F(histname,histname,DWIDTH,-0.1,maxt); |
58 | sprintf(histname,"chmin_%02d",i); |
61 | sprintf(histname,"chmin_%02d",i); |
59 | h1_chmin[i]=new TH1F(histname,histname,1500,ymin, |
62 | h1_chmin[i]=new TH1F(histname,histname,1500,d[i].ymin,d[i].ymax); |
60 | sprintf(histname,"chmint_%02d",i); |
63 | sprintf(histname,"chmint_%02d",i); |
61 | h1_chmint[i]=new TH1F(histname,histname,DWIDTH,-0.1,maxt); |
64 | h1_chmint[i]=new TH1F(histname,histname,DWIDTH,-0.1,maxt); |
62 | sprintf(histname,"letime_%02d",i); |
65 | sprintf(histname,"letime_%02d",i); |
63 | h1_letime[i]=new TH1F(histname,histname,500,d[i].twin[0],d[i].twin[1]); |
66 | h1_letime[i]=new TH1F(histname,histname,500,d[i].twin[0],d[i].twin[1]); |
64 | sprintf(histname,"cftime_%02d",i); |
67 | sprintf(histname,"cftime_%02d",i); |
65 | h1_cftime[i]=new TH1F(histname,histname,500,d[i].twin[0],d[i].twin[1]); |
68 | h1_cftime[i]=new TH1F(histname,histname,500,d[i].twin[0],d[i].twin[1]); |
66 | sprintf(histname,"cftdif_%02d",i); |
69 | sprintf(histname,"cftdif_%02d",i); |
67 | h1_cftdif[i]=new TH1F(histname,histname,2000,d[i].twin[0]-d[trgch].twin[0]-40,d[i].twin[1]-d[trgch].twin[0]+20); |
70 | h1_cftdif[i]=new TH1F(histname,histname,2000,d[i].twin[0]-d[trgch].twin[0]-40,d[i].twin[1]-d[trgch].twin[0]+20); |
68 | sprintf(histname,"qdc_%02d",i); |
71 | sprintf(histname,"qdc_%02d",i); |
- | 72 | float dx = 7*(d[i].ymax - d[i].ymin); |
|
- | 73 | ||
- | 74 | double ymin, ymax; |
|
- | 75 | if(d[i].edge){ |
|
- | 76 | ymin=d[i].ymin*8; |
|
- | 77 | ymax=d[i].ymax*8; |
|
- | 78 | ||
- | 79 | } |
|
- | 80 | else{ |
|
- | 81 | ymin=-d[i].ymax*8; |
|
- | 82 | ymax=-d[i].ymin*8; |
|
- | 83 | ||
- | 84 | } |
|
- | 85 | ||
69 | h1_qdc[i] |
86 | h1_qdc[i]=new TH1F(histname,histname,800, ymin , ymax); |
70 | sprintf(histname,"dpo_%02d",i); |
87 | sprintf(histname,"dpo_%02d",i); |
71 | h2_dpo[i]=new TH2F(histname,histname,DWIDTH,-0.1,maxt,1500,ymin, |
88 | h2_dpo[i]=new TH2F(histname,histname,DWIDTH,-0.1,maxt,1500,d[i].ymin,d[i].ymax); |
72 | sprintf(histname,"tdcadc_%02d",i); |
89 | sprintf(histname,"tdcadc_%02d",i); |
73 | h2_tdcadc[i]=new TH2F(histname,histname,250,ymin, |
90 | h2_tdcadc[i]=new TH2F(histname,histname,250,d[i].ymin,d[i].ymax,400,d[i].twin[0]-d[trgch].twin[0],d[i].twin[1]-d[trgch].twin[0]); |
74 | sprintf(histname,"ctdcadc_%02d",i); |
91 | sprintf(histname,"ctdcadc_%02d",i); |
75 | h2_ctdcadc[i]=new TH2F(histname,histname,250,ymin, |
92 | h2_ctdcadc[i]=new TH2F(histname,histname,250,d[i].ymin,d[i].ymax,400,d[i].twin[0]-d[trgch].twin[0],d[i].twin[1]-d[trgch].twin[0]); |
76 | gr_wfm[i]=new TGraph(DWIDTH); |
93 | gr_wfm[i]=new TGraph(DWIDTH); |
77 | gr_wfm |
94 | //gr_wfm[i]->SetMinimum(d[i].ymin); |
78 | gr_wfm |
95 | //gr_wfm[i]->SetMaximum(d[i].ymax); |
79 | gr_wfm[i]->SetLineColor(i+1); |
96 | gr_wfm[i]->SetLineColor(i+1); |
80 | gr_wfm[i]->SetMarkerColor(i+1); |
97 | gr_wfm[i]->SetMarkerColor(i+1); |
81 | sprintf(histname,"ch %d",i); |
98 | sprintf(histname,"ch %d",i); |
82 | leg->AddEntry(gr_wfm[i], histname, "l"); |
99 | leg->AddEntry(gr_wfm[i], histname, "l"); |
- | 100 | wfm->Add(gr_wfm[i]); |
|
83 |
|
101 | //if (i) gr_wfm[i]->Draw("LP"); else gr_wfm[i]->Draw("ALP"); |
84 | gr_wfm |
102 | //gr_wfm[i]->GetHistogram()->SetTitle("WaveForms"); |
85 | gr_wfm |
103 | //gr_wfm[i]->GetHistogram()->SetDirectory(0); |
86 | } |
104 | } |
- | 105 | wfm->SetMinimum(ymin); |
|
- | 106 | wfm->SetMaximum(ymax); |
|
- | 107 | wfm->Draw("ALP"); |
|
87 | 108 | ||
- | 109 | //wfm->SetTitle("WaveForms"); |
|
- | 110 | //wfm->SetDirectory(0); |
|
88 | leg->Draw(); |
111 | leg->Draw(); |
89 | h2_ctalk=new TH2F("ctalk","ctalk",250,0.,0.5,250,0.,0.5); |
112 | h2_ctalk=new TH2F("ctalk","ctalk",250,0.,0.5,250,0.,0.5); |
90 | h2_pos=new TH2F("cpos","cpos",40,-1,1,40,-1,1); |
113 | h2_pos=new TH2F("cpos","cpos",40,-1,1,40,-1,1); |
91 | h1_qsumx=new TH1F("qsumx","qsumx",100,-1,6); |
114 | h1_qsumx=new TH1F("qsumx","qsumx",100,-1,6); |
92 | h1_qsumy=new TH1F("qsumy","qsumy",100,-1,6); |
115 | h1_qsumy=new TH1F("qsumy","qsumy",100,-1,6); |
93 | return 0; |
116 | return 0; |
94 | } |
117 | } |
95 | 118 | ||
96 | drs::drs( const char *FileName, int nch, DrsChannel* d, int trgch,int first, int neve, int updfrq,double ymin, double ymax) |
119 | drs::drs( const char *FileName, int nch, DrsChannel* d, int trgch,int first, int neve, int updfrq,double ymin, double ymax) |
97 | 120 | ||
98 | { |
121 | { |
99 | int debug=0; |
122 | int debug=0; |
100 | int i,ich,iev; |
123 | int i,ich,iev; |
101 | int stat; |
124 | int stat; |
102 | int nev = first + neve; |
125 | int nev = first + neve; |
103 | // char FileName[300]="./data/n2.dat"; |
126 | // char FileName[300]="./data/n2.dat"; |
104 | FILE *fin; |
127 | FILE *fin; |
105 | 128 | ||
106 | char recid[5]="SAMO"; |
129 | char recid[5]="SAMO"; |
107 | unsigned short *srecid = (unsigned short *) &recid[0]; |
130 | unsigned short *srecid = (unsigned short *) &recid[0]; |
108 | 131 | ||
109 | struct evrec { |
132 | struct evrec { |
110 | unsigned long evn; |
133 | unsigned long evn; |
111 | unsigned short tYear,tMonth,tDay,tHour,tMin,tSec,tmSec,rc; |
134 | unsigned short tYear,tMonth,tDay,tHour,tMin,tSec,tmSec,rc; |
112 | } evrec; |
135 | } evrec; |
113 | 136 | ||
114 | float dtdata[NCH][DWIDTH]; |
137 | float dtdata[NCH][DWIDTH]; |
115 | float tcdata[NCH][DWIDTH]; |
138 | float tcdata[NCH][DWIDTH]; |
116 | float tccalib[NCH]; |
139 | float tccalib[NCH]; |
117 | float scaler[NCH]; |
140 | float scaler[NCH]; |
118 | float *t; |
141 | float *t; |
119 | float *y; |
142 | float *y; |
120 | float *ay; |
143 | float *ay; |
121 | 144 | ||
122 | short lwfm[NCH]; |
145 | short lwfm[NCH]; |
123 | int nwfm[NCH]; |
146 | int nwfm[NCH]; |
124 | int board; |
147 | int board; |
125 | int version; |
148 | int version; |
126 | 149 | ||
127 | 150 | ||
128 | unsigned short ichdat[NCH][DWIDTH]; |
151 | unsigned short ichdat[NCH][DWIDTH]; |
129 | float chdat[NCH][DWIDTH]; |
152 | float chdat[NCH][DWIDTH]; |
130 | float achdat[NCH][DWIDTH]; |
153 | float achdat[NCH][DWIDTH]; |
131 | float chmax[NCH][2]; |
154 | float chmax[NCH][2]; |
132 | float chmin[NCH][2]; |
155 | float chmin[NCH][2]; |
133 | float letime[NCH],cftime[NCH],qdc[NCH]; |
156 | float letime[NCH],cftime[NCH],qdc[NCH]; |
134 | 157 | ||
135 | 158 | ||
136 | // gROOT->Reset(); |
159 | // gROOT->Reset(); |
137 | 160 | ||
138 | gStyle->SetOptStat(1111111); |
161 | gStyle->SetOptStat(1111111); |
139 | // gStyle->SetPalette(52); |
162 | // gStyle->SetPalette(52); |
140 | 163 | ||
141 | histoinit(nch, d, trgch, ymin,ymax); |
164 | histoinit(nch, d, trgch, ymin,ymax); |
142 | char rootname[0xff]; |
165 | char rootname[0xff]; |
143 | sprintf(rootname, "%s_x%d_y%d.root", FileName, 0, 0); |
166 | sprintf(rootname, "%s_x%d_y%d.root", FileName, 0, 0); |
- | 167 | ||
144 | froot = new TFile(rootname,"RECREATE"); |
168 | froot = new TFile(rootname,"RECREATE"); |
145 | 169 | ||
146 | 170 | ||
147 | fin=fopen(FileName,"rb"); |
171 | fin=fopen(FileName,"rb"); |
148 | if (fin==NULL) { |
172 | if (fin==NULL) { |
149 | printf("Error opening file %s\n",FileName); |
173 | printf("Error opening file %s\n",FileName); |
150 | return; |
174 | return; |
151 | } |
175 | } |
152 | printf("%s, %lu\n",recid,sizeof(evrec)); |
176 | printf("%s, %lu\n",recid,sizeof(evrec)); |
153 | 177 | ||
154 | 178 | ||
155 | for (ich=0; ich<nch; ich++) { |
179 | for (ich=0; ich<nch; ich++) { |
156 | nwfm[ich]=0; |
180 | nwfm[ich]=0; |
157 | for (i=0; i<DWIDTH; i++) { |
181 | for (i=0; i<DWIDTH; i++) { |
158 | achdat[ich][i]=0; |
182 | achdat[ich][i]=0; |
159 | } |
183 | } |
160 | } |
184 | } |
161 | unsigned int trgcell = 0; |
185 | unsigned int trgcell = 0; |
162 | int event = -1; |
186 | int event = -1; |
163 | 187 | ||
164 | iev=0; |
188 | iev=0; |
165 | time_t t0,told; |
189 | time_t t0,told; |
166 | time(&t0); |
190 | time(&t0); |
167 | told=t0-1; |
191 | told=t0-1; |
168 | int posrec[9]; |
192 | int posrec[9]; |
169 | while(!feof(fin)) { |
193 | while(!feof(fin)) { |
170 | if (iev==nev) break; |
194 | if (iev==nev) break; |
171 | stat=fread(recid,1,4,fin); |
195 | stat=fread(recid,1,4,fin); |
172 | if (debug) { |
196 | if (debug) { |
173 | if (recid[1]=='#') printf("%c%c%u\n",recid[0],recid[1],srecid[1]); |
197 | if (recid[1]=='#') printf("%c%c%u\n",recid[0],recid[1],srecid[1]); |
174 | else printf("%s\n",recid ); |
198 | else printf("%s\n",recid ); |
175 | } |
199 | } |
176 | switch (recid[0]) { |
200 | switch (recid[0]) { |
177 | 201 | ||
178 | case 'P':{ // position record |
202 | case 'P':{ // position record |
179 | int len; |
203 | int len; |
180 | stat=fread(&len,1,4,fin); |
204 | stat=fread(&len,1,4,fin); |
181 | if (len>0 && len<37) { |
205 | if (len>0 && len<37) { |
182 | stat=fread(posrec,1,len,fin); |
206 | stat=fread(posrec,1,len,fin); |
183 | if (recid[3]=='R'){ |
207 | if (recid[3]=='R'){ |
184 | if (iev>=first){ |
208 | if (iev>=first){ |
185 | froot->Write(); |
209 | froot->Write(); |
186 | froot->Close(); |
210 | froot->Close(); |
187 | sprintf(rootname, "%s_x%d_y%d.root", FileName, posrec[3], posrec[4]); |
211 | sprintf(rootname, "%s_x%d_y%d.root", FileName, posrec[3], posrec[4]); |
188 | froot = new TFile(rootname,"RECREATE"); |
212 | froot = new TFile(rootname,"RECREATE"); |
189 | histoinit(nch,d, trgch, ymin,ymax); |
213 | histoinit(nch,d, trgch, ymin,ymax); |
190 | } |
214 | } |
191 | printf("Position len=%d x=%d y=%d ix=%d iy=%d\n", len, posrec[0], posrec[1], posrec[3], posrec[4]); |
215 | printf("Position len=%d x=%d y=%d ix=%d iy=%d\n", len, posrec[0], posrec[1], posrec[3], posrec[4]); |
192 | } else |
216 | } else |
193 | printf("Position record buffer length %d\n", len); |
217 | printf("Position record buffer length %d\n", len); |
194 | } else { |
218 | } else { |
195 | printf("Wrong buffer length %d\n", len); |
219 | printf("Wrong buffer length %d\n", len); |
196 | } |
220 | } |
197 | break; |
221 | break; |
198 | } |
222 | } |
199 | case 'D': // DRS |
223 | case 'D': // DRS |
200 | version = atoi(&recid[3]); |
224 | version = atoi(&recid[3]); |
201 | break; |
225 | break; |
202 | case 'T': // TIME |
226 | case 'T': // TIME |
203 | switch (recid[1]) { |
227 | switch (recid[1]) { |
204 | case 'I': |
228 | case 'I': |
205 | event=0; |
229 | event=0; |
206 | if (version ==0) version++; |
230 | if (version ==0) version++; |
207 | break; |
231 | break; |
208 | case '#': trgcell = srecid[1]; break; |
232 | case '#': trgcell = srecid[1]; break; |
209 | } |
233 | } |
210 | break; |
234 | break; |
211 | case 'B': |
235 | case 'B': |
212 | board = srecid[1]; |
236 | board = srecid[1]; |
213 | break; |
237 | break; |
214 | case 'C': |
238 | case 'C': |
215 | sscanf(recid,"C%d",&ich); |
239 | sscanf(recid,"C%d",&ich); |
216 | ich=ich-1; |
240 | ich=ich-1; |
217 | if (event) { |
241 | if (event) { |
218 | if (version>1) stat=fread(&scaler[ich],1,sizeof(float),fin); |
242 | if (version>1) stat=fread(&scaler[ich],1,sizeof(float),fin); |
219 | stat=fread(ichdat[ich],1,sizeof(ichdat[ich]),fin); |
243 | stat=fread(ichdat[ich],1,sizeof(ichdat[ich]),fin); |
220 | } else { |
244 | } else { |
221 | 245 | ||
222 | stat=fread(dtdata[ich],1,sizeof(float)*DWIDTH,fin); |
246 | stat=fread(dtdata[ich],1,sizeof(float)*DWIDTH,fin); |
223 | 247 | ||
224 | } |
248 | } |
225 | break; |
249 | break; |
226 | case 'E': |
250 | case 'E': |
227 | stat=fread(&evrec.evn,1,sizeof(evrec),fin); |
251 | stat=fread(&evrec.evn,1,sizeof(evrec),fin); |
228 | iev++; |
252 | iev++; |
229 | if (!version) { |
253 | if (!version) { |
230 | stat=fread(dtdata[0],1,sizeof(float)*DWIDTH,fin); |
254 | stat=fread(dtdata[0],1,sizeof(float)*DWIDTH,fin); |
231 | } |
255 | } |
232 | event=1; |
256 | event=1; |
233 | break; |
257 | break; |
234 | default: |
258 | default: |
235 | printf("Unknown header! %s\n", recid); |
259 | printf("Unknown header! %s\n", recid); |
236 | break; |
260 | break; |
237 | } |
261 | } |
238 | if (iev<first) continue; |
262 | if (iev<first) continue; |
239 | - | ||
240 | if (recid[0] == 'E') { |
263 | if (recid[0] == 'E') { |
241 | for ( i=0; i<nch; i++) { |
264 | for ( i=0; i<nch; i++) { |
242 | if (!lwfm[i]) continue; |
265 | if (!lwfm[i]) continue; |
243 | double pulseheight = (d[i].edge)? chmax[i][0]: chmin[i][0]; |
266 | double pulseheight = (d[i].edge)? chmax[i][0]: chmin[i][0]; |
244 | 267 | ||
245 | if ((pulseheight >d[i].vcut[0])&& |
268 | if ((pulseheight >d[i].vcut[0])&& |
246 | (pulseheight <d[i].vcut[1]) ) { |
269 | (pulseheight <d[i].vcut[1]) ) { |
247 | 270 | ||
248 | h1_cftdif[i]->Fill(cftime[i]-cftime[trgch]); |
271 | h1_cftdif[i]->Fill(cftime[i]-cftime[trgch]); |
249 | } |
272 | } |
250 | if (!d[i].edge) pulseheight = - pulseheight; |
273 | if (!d[i].edge) pulseheight = - pulseheight; |
251 | h2_tdcadc[i] ->Fill(pulseheight,letime[i]-cftime[trgch]); |
274 | h2_tdcadc[i] ->Fill(pulseheight,letime[i]-cftime[trgch]); |
252 | h2_ctdcadc[i]->Fill(pulseheight,cftime[i]-cftime[trgch]); |
275 | h2_ctdcadc[i]->Fill(pulseheight,cftime[i]-cftime[trgch]); |
253 | 276 | ||
254 | //if (i==1) printf("ph=%f %f\n", pulseheight, letime[i]-cftime[trgch]); |
277 | //if (i==1) printf("ph=%f %f\n", pulseheight, letime[i]-cftime[trgch]); |
255 | } |
278 | } |
256 | double qsumx=qdc[0]+qdc[1]; |
279 | double qsumx=qdc[0]+qdc[1]; |
257 | double qsumy=qdc[2]+qdc[3]; |
280 | double qsumy=qdc[2]+qdc[3]; |
258 | double x0=(qsumx)?(qdc[0]-qdc[1])/qsumx:-2; |
281 | double x0=(qsumx)?(qdc[0]-qdc[1])/qsumx:-2; |
259 | double x1=(qsumy)?(qdc[2]-qdc[3])/qsumy:-2; |
282 | double x1=(qsumy)?(qdc[2]-qdc[3])/qsumy:-2; |
260 | h2_pos->Fill(x0,x1); |
283 | h2_pos->Fill(x0,x1); |
261 | h1_qsumx->Fill(qsumx); |
284 | h1_qsumx->Fill(qsumx); |
262 | h1_qsumy->Fill(qsumy); |
285 | h1_qsumy->Fill(qsumy); |
263 | double ph0 = (d[0].edge)? chmax[0][0]: -chmin[0][0]; |
286 | double ph0 = (d[0].edge)? chmax[0][0]: -chmin[0][0]; |
264 | double ph1 = (d[1].edge)? chmax[1][0]: -chmin[1][0]; |
287 | double ph1 = (d[1].edge)? chmax[1][0]: -chmin[1][0]; |
265 | h2_ctalk->Fill(ph0,ph1); |
288 | h2_ctalk->Fill(ph0,ph1); |
266 | } |
289 | } |
- | 290 | ||
267 | if (event<1) continue; |
291 | if (event<1) continue; |
268 | if (recid[0]!='C') continue; |
292 | if (recid[0]!='C') continue; |
269 | if (ich>=nch) continue; |
293 | if (ich>=nch) continue; |
270 | 294 | ||
271 | lwfm[ich]=0; |
295 | lwfm[ich]=0; |
272 | qdc[ich]=d[ich].offset; |
296 | qdc[ich]=d[ich].offset; |
273 | chmax[ich][0]=-1; chmax[ich][1]=-1; |
297 | chmax[ich][0]=-1; chmax[ich][1]=-1; |
274 | chmin[ich][0]=1; chmin[ich][1]=-1; |
298 | chmin[ich][0]=1; chmin[ich][1]=-1; |
275 | letime[ich]=-1.; letime[ich]=-1.; |
299 | letime[ich]=-1.; letime[ich]=-1.; |
276 | cftime[ich]=-1.; cftime[ich]=-1.; |
300 | cftime[ich]=-1.; cftime[ich]=-1.; |
277 | 301 | ||
278 | 302 | ||
279 | lwfm[ich]=1; |
303 | lwfm[ich]=1; |
280 | nwfm[ich]+=1; |
304 | nwfm[ich]+=1; |
281 | 305 | ||
282 | 306 | ||
283 | 307 | ||
284 | t = &tcdata[ich][0]; |
308 | t = &tcdata[ich][0]; |
285 | y = &chdat[ich][0]; |
309 | y = &chdat[ich][0]; |
286 | ay = &achdat[ich][0]; |
310 | ay = &achdat[ich][0]; |
287 | 311 | ||
288 | float sum=0; |
312 | float sum=0; |
289 | for (i=0; i<DWIDTH; i++) { |
313 | for (i=0; i<DWIDTH; i++) { |
290 | sum+= dtdata[ich][(i+trgcell)%DWIDTH]; |
314 | sum+= dtdata[ich][(i+trgcell)%DWIDTH]; |
291 | if (version) t[i]=sum; |
315 | if (version) t[i]=sum; |
292 | else t[i]=dtdata[0][i]; // old format |
316 | else t[i]=dtdata[0][i]; // old format |
293 | } |
317 | } |
294 | tccalib[ich]=t[(DWIDTH-trgcell)%DWIDTH]; |
318 | tccalib[ich]=t[(DWIDTH-trgcell)%DWIDTH]; |
295 | 319 | ||
296 | for (i=0; i<DWIDTH; i++) { |
320 | for (i=0; i<DWIDTH; i++) { |
297 | if (version) t[i]-=(tccalib[ich]-tccalib[0]); // assume ich 0 is connected and always first in the data |
321 | if (version) t[i]-=(tccalib[ich]-tccalib[0]); // assume ich 0 is connected and always first in the data |
298 | y[i]=-0.5+(float)ichdat[ich][i]/0xFFFF; |
322 | y[i]=-0.5+(float)ichdat[ich][i]/0xFFFF; |
299 | if (version) y[i]+=evrec.rc/1000.; |
323 | if (version) y[i]+=evrec.rc/1000.; |
300 | h2_dpo[ich]->Fill(t[i],y[i]); |
324 | h2_dpo[ich]->Fill(t[i],y[i]); |
301 | gr_wfm[ich]->SetPoint(i,t[i],y[i]+0.05*(ich-1)); |
325 | gr_wfm[ich]->SetPoint(i,t[i],y[i]+0.05*(ich-1)); |
302 | } |
326 | } |
303 | 327 | ||
304 | 328 | ||
305 | for (i=0; i<DWIDTH; i++) { |
329 | for (i=0; i<DWIDTH; i++) { |
306 | // accumulated waveforms |
330 | // accumulated waveforms |
307 | ay[i]+=y[i]; |
331 | ay[i]+=y[i]; |
308 | 332 | ||
309 | // signal minumum |
333 | // signal minumum |
310 | if (y[i]>chmax[ich][0]) { |
334 | if (y[i]>chmax[ich][0]) { |
311 | chmax[ich][0]=y[i]; |
335 | chmax[ich][0]=y[i]; |
312 | chmax[ich][1]=t[i]; |
336 | chmax[ich][1]=t[i]; |
313 | } |
337 | } |
314 | 338 | ||
315 | // signal maximum |
339 | // signal maximum |
316 | if (y[i]<chmin[ich][0]) { |
340 | if (y[i]<chmin[ich][0]) { |
317 | chmin[ich][0]=y[i]; |
341 | chmin[ich][0]=y[i]; |
318 | chmin[ich][1]=t[i]; |
342 | chmin[ich][1]=t[i]; |
319 | } |
343 | } |
320 | float t0 = t[i]; |
344 | float t0 = t[i]; |
321 | float t0p = t[i+1]; |
345 | float t0p = t[i+1]; |
322 | float t0n = t[i-1]; |
346 | float t0n = t[i-1]; |
323 | // charge in the range |
347 | // charge in the range |
324 | if ((t0>d[ich].adcgate[0])&&(t0<d[ich].adcgate[1])) { |
348 | if ((t0>d[ich].adcgate[0])&&(t0<d[ich].adcgate[1])) { |
325 | float sign = (d[ich].edge)? 1: -1; |
349 | float sign = (d[ich].edge)? 1: -1; |
326 | qdc[ich]+=sign*y[i]*(t0p-t0n)/2.; |
350 | qdc[ich]+=sign*y[i]*(t0p-t0n)/2.; |
327 | } |
351 | } |
328 | } |
352 | } |
329 | 353 | ||
330 | for (i=1; i<DWIDTH-1; i++) { |
354 | for (i=1; i<DWIDTH-1; i++) { |
331 | float t0 = t[i]; |
355 | float t0 = t[i]; |
332 | float t0p = t[i+1]; |
356 | float t0p = t[i+1]; |
333 | float t0n = t[i-1]; |
357 | float t0n = t[i-1]; |
334 | // leading edge in the range |
358 | // leading edge in the range |
335 | if ((t0>d[ich].twin[0])&&(t0<d[ich].twin[1])) { |
359 | if ((t0>d[ich].twin[0])&&(t0<d[ich].twin[1])) { |
336 | if ( ((!d[ich].edge)&&(y[i]<d[ich].threshold) || |
360 | if ( ((!d[ich].edge)&&(y[i]<d[ich].threshold) || |
337 | ( d[ich].edge)&&(y[i]>d[ich].threshold ) ) |
361 | ( d[ich].edge)&&(y[i]>d[ich].threshold ) ) |
338 | &&(letime[ich]<0.)) { |
362 | &&(letime[ich]<0.)) { |
339 | letime[ich]=t0n+(t0-t0n)*(d[ich].threshold-y[i-1])/(y[i]-y[i-1]); |
363 | letime[ich]=t0n+(t0-t0n)*(d[ich].threshold-y[i-1])/(y[i]-y[i-1]); |
340 | } |
364 | } |
341 | // constant fraction time in the range |
365 | // constant fraction time in the range |
342 | if (cftime[ich]<0.){ |
366 | if (cftime[ich]<0.){ |
343 | // negative signals |
367 | // negative signals |
344 | if ((!d[ich].edge) && (chmin[ich][0]<d[ich].threshold)&&(y[i]<chmin[ich][0]*d[ich].cfrac )){ |
368 | if ((!d[ich].edge) && (chmin[ich][0]<d[ich].threshold)&&(y[i]<chmin[ich][0]*d[ich].cfrac )){ |
345 | cftime[ich]=t0n+(t0-t0n)*(chmin[ich][0]*d[ich].cfrac-y[i-1])/(y[i]-y[i-1]); |
369 | cftime[ich]=t0n+(t0-t0n)*(chmin[ich][0]*d[ich].cfrac-y[i-1])/(y[i]-y[i-1]); |
346 | } |
370 | } |
347 | // positive signals |
371 | // positive signals |
348 | if (( d[ich].edge) && (chmax[ich][0]>d[ich].threshold)&&(y[i]>chmax[ich][0]*d[ich].cfrac)){ |
372 | if (( d[ich].edge) && (chmax[ich][0]>d[ich].threshold)&&(y[i]>chmax[ich][0]*d[ich].cfrac)){ |
349 | cftime[ich]=t0n+(t0-t0n)*(chmax[ich][0]*d[ich].cfrac-y[i-1])/(y[i]-y[i-1]); |
373 | cftime[ich]=t0n+(t0-t0n)*(chmax[ich][0]*d[ich].cfrac-y[i-1])/(y[i]-y[i-1]); |
350 | } |
374 | } |
351 | } |
375 | } |
352 | } |
376 | } |
353 | } |
377 | } |
354 | 378 | ||
355 | if ((chmax[ich][1]>d[ich].twin[0])&&(chmax[ich][1]<d[ich].twin[1])) { |
379 | if ((chmax[ich][1]>d[ich].twin[0])&&(chmax[ich][1]<d[ich].twin[1])) { |
356 | h1_chmax[ich]->Fill(chmax[ich][0]); |
380 | h1_chmax[ich]->Fill(chmax[ich][0]); |
357 | if (chmax[ich][0]>d[ich].threshold) h1_chmaxt[ich]->Fill(chmax[ich][1]); |
381 | if (chmax[ich][0]>d[ich].threshold) h1_chmaxt[ich]->Fill(chmax[ich][1]); |
358 | } |
382 | } |
359 | if ((chmin[ich][1]>d[ich].twin[0])&&(chmin[ich][1]<d[ich].twin[1])) { |
383 | if ((chmin[ich][1]>d[ich].twin[0])&&(chmin[ich][1]<d[ich].twin[1])) { |
360 | h1_chmin[ich]->Fill(chmin[ich][0]); |
384 | h1_chmin[ich]->Fill(chmin[ich][0]); |
361 | if (chmin[ich][0]<d[ich].threshold) h1_chmint[ich]->Fill(chmin[ich][1]); |
385 | if (chmin[ich][0]<d[ich].threshold) h1_chmint[ich]->Fill(chmin[ich][1]); |
362 | } |
386 | } |
363 | h1_qdc[ich]->Fill(qdc[ich]); |
387 | h1_qdc[ich]->Fill(qdc[ich]); |
364 | h1_letime[ich]->Fill(letime[ich]); |
388 | h1_letime[ich]->Fill(letime[ich]); |
365 | h1_cftime[ich]->Fill(cftime[ich]); |
389 | h1_cftime[ich]->Fill(cftime[ich]); |
366 | time(&t0); |
390 | time(&t0); |
367 | - | ||
- | 391 | ||
368 | if ((t0!=told) || ((updfrq>0)&&(!(iev%updfrq) ) ) ) { |
392 | if ((t0!=told) || ((updfrq>0)&&(!(iev%updfrq) ) ) ) { |
369 | c_wfm->Update(); |
393 | c_wfm->Update(); |
370 | for (i=0; i<DWIDTH; i++) { |
394 | for (i=0; i<DWIDTH; i++) { |
371 | ay[i]/=nwfm[ich]; |
395 | ay[i]/=nwfm[ich]; |
372 | gr_wfm[ich]->SetPoint(i,t[i],ay[i]+0.00*(ich-1)); |
396 | gr_wfm[ich]->SetPoint(i,t[i],ay[i]+0.00*(ich-1)); |
373 | } |
397 | } |
374 | printf("processing event %d\n",iev); |
398 | printf("processing event %d\n",iev); |
375 | told=t0; |
399 | told=t0; |
376 | } |
400 | } |
377 | } |
401 | } |
378 | 402 | ||
379 | printf("number of events: %d\n",iev); |
403 | printf("number of events: %d\n",iev); |
380 | fclose(fin); |
404 | fclose(fin); |
381 | TString pdfname = Form("%s.pdf",FileName); |
405 | TString pdfname = Form("%s.pdf",FileName); |
382 | gStyle->SetOptStat( |
406 | gStyle->SetOptStat(0); |
383 | TCanvas* c_dpo= new TCanvas("c_dpo","DPO",750,50,700,700); |
407 | TCanvas* c_dpo= new TCanvas("c_dpo","DPO",750,50,700,700); |
384 | c_dpo->Divide(2,2); |
408 | c_dpo->Divide(2,2); |
385 | 409 | ||
386 | for (i=0; i<nch; i++) {c_dpo->cd(i+1)->SetLogz(1); h2_dpo[i]->DrawCopy("colz");} |
410 | for (i=0; i<nch; i++) {c_dpo->cd(i+1)->SetLogz(1); h2_dpo[i]->DrawCopy("colz");} |
387 | - | ||
388 | 411 | ||
- | 412 | gStyle->SetOptStat(1111111); |
|
389 | TCanvas* c_cftdif= new TCanvas("c_cftdif"," |
413 | TCanvas* c_cftdif= new TCanvas("c_cftdif","Constant fraction time difference",750,50,700,700); |
390 | c_cftdif->Divide(2,2); |
414 | c_cftdif->Divide(2,2); |
391 | for (i=0; i<nch; i++) {c_cftdif->cd(i+1); h1_cftdif[i]->DrawCopy();} |
415 | for (i=0; i<nch; i++) {c_cftdif->cd(i+1); h1_cftdif[i]->DrawCopy();} |
392 | 416 | ||
- | 417 | /* |
|
393 | TCanvas* c_cftcorr= new TCanvas("c_cftcorr","pulseheight vs timing",750,50,700,700); |
418 | TCanvas* c_cftcorr= new TCanvas("c_cftcorr","pulseheight vs timing",750,50,700,700); |
394 | c_cftcorr->Divide(2,2); |
419 | c_cftcorr->Divide(2,2); |
395 | for (i=0; i<nch; i++) {c_cftcorr->cd(i+1); h2_tdcadc[i]->DrawCopy("colz");} |
420 | for (i=0; i<nch; i++) {c_cftcorr->cd(i+1); h2_tdcadc[i]->DrawCopy("colz");} |
396 | 421 | */ |
|
397 | TCanvas* c_adc= new TCanvas("c_adc","adc",750,50,700,700); |
422 | TCanvas* c_adc= new TCanvas("c_adc","adc",750,50,700,700); |
398 | c_adc->Divide(2,2); |
423 | c_adc->Divide(2,2); |
399 | for (i=0; i<nch; i++) {c_adc->cd(i+1); h1_qdc[i]->DrawCopy();} |
424 | for (i=0; i<nch; i++) {c_adc->cd(i+1); h1_qdc[i]->DrawCopy();} |
400 | 425 | ||
- | 426 | /* |
|
401 | TCanvas* c_qsum= new TCanvas("c_qsum","qsum",750,50,700,700); |
427 | TCanvas* c_qsum= new TCanvas("c_qsum","qsum",750,50,700,700); |
402 | c_qsum->Divide(1,2); |
428 | c_qsum->Divide(1,2); |
403 | c_qsum->cd(1); h1_qsumx->DrawCopy(); |
429 | c_qsum->cd(1); h1_qsumx->DrawCopy(); |
404 | c_qsum->cd(2); h1_qsumy->DrawCopy(); |
430 | c_qsum->cd(2); h1_qsumy->DrawCopy(); |
405 | 431 | ||
406 | gStyle->SetOptStat(0); |
432 | gStyle->SetOptStat(0); |
407 | TCanvas* c_pos= new TCanvas("c_pos","position",750,50,700,700); |
433 | TCanvas* c_pos= new TCanvas("c_pos","position",750,50,700,700); |
408 | 434 | ||
409 | c_pos->cd(); |
435 | c_pos->cd(); |
410 | h2_pos->DrawCopy("colz"); |
436 | h2_pos->DrawCopy("colz"); |
411 | 437 | */ |
|
412 | 438 | ||
413 | c_pos |
439 | //c_pos->Print(pdfname+"(","pdf"); |
414 | c_wfm |
440 | //c_wfm->Print(pdfname,"pdf"); |
415 | c_adc->Print(pdfname,"pdf"); |
441 | c_adc->Print(pdfname+"(","pdf"); |
416 | c_qsum |
442 | //c_qsum->Print(pdfname,"pdf"); |
417 | c_dpo->Print(pdfname,"pdf"); |
443 | c_dpo->Print(pdfname,"pdf"); |
418 | c_cftdif->Print(pdfname + ")","pdf"); |
444 | c_cftdif->Print(pdfname + ")","pdf"); |
419 | 445 | ||
- | 446 | c_dpo->Write(); |
|
- | 447 | c_adc->Write(); |
|
- | 448 | c_cftdif->Write(); |
|
420 | froot->Write(); |
449 | froot->Write(); |
421 | froot->Close(); |
450 | froot->Close(); |
422 | 451 | ||
423 | for (i=0; i<nch; i++) {c_cftdif->cd(i+1); h1_cftdif[i]->DrawCopy();} |
452 | for (i=0; i<nch; i++) {c_cftdif->cd(i+1); h1_cftdif[i]->DrawCopy();} |
424 | froot->Write(); |
453 | froot->Write(); |
425 | froot->Close(); |
454 | froot->Close(); |
426 | 455 | ||
427 | return; |
456 | return; |
428 | } |
457 | } |
429 | 458 | ||
430 | 459 | ||
431 | void drsana(int nev=1000, int updfrq=20, char *FileName="./data/x1.dat", int trgch=0){ |
460 | void drsana(int nev=1000, int updfrq=20, char *FileName="./data/x1.dat", int trgch=0){ |
432 | 461 | ||
433 | // float threshold[nch][2]={{0.,-0.02},{0.,0.},{0.,0.},{0.,-0.25}}; |
462 | // float threshold[nch][2]={{0.,-0.02},{0.,0.},{0.,0.},{0.,-0.25}}; |
434 | // float twin[nch][2]={{120.,130.},{100.,150.},{100.,150.},{70.,90.}}; |
463 | // float twin[nch][2]={{120.,130.},{100.,150.},{100.,150.},{70.,90.}}; |
435 | // float adcgate[nch][2]={{12nch.,136.},{120.,140.},{120.,140.},{70.,90.}}; |
464 | // float adcgate[nch][2]={{12nch.,136.},{120.,140.},{120.,140.},{70.,90.}}; |
436 | // float threshold[4][2]={{0.,-0.05},{0.,-0.05},{0.,-0.25},{0.,-0.25}}; |
465 | // float threshold[4][2]={{0.,-0.05},{0.,-0.05},{0.,-0.25},{0.,-0.25}}; |
437 | // float twin[4][2]={{80.,100.},{80.,100.},{90.,110.},{50.,70.}}; |
466 | // float twin[4][2]={{80.,100.},{80.,100.},{90.,110.},{50.,70.}}; |
438 | // float adcgate[4][2]={{80.,110.},{80.,110.},{90.,110.},{50.,70.}}; |
467 | // float adcgate[4][2]={{80.,110.},{80.,110.},{90.,110.},{50.,70.}}; |
439 | double threshold[4][2]={{0.,-0.05},{0.,-0.05},{0.,-0.25},{0.,-0.25}}; |
468 | double threshold[4][2]={{0.,-0.05},{0.,-0.05},{0.,-0.25},{0.,-0.25}}; |
440 | float twin[4][2]={{100.,120.},{100.,120.},{110.,130.},{60.,80.}}; |
469 | float twin[4][2]={{100.,120.},{100.,120.},{110.,130.},{60.,80.}}; |
441 | float adcgate[4][2]={{105.,125.},{105.,125.},{110.,130.},{60.,80.}}; |
470 | float adcgate[4][2]={{105.,125.},{105.,125.},{110.,130.},{60.,80.}}; |
442 | double vcut[4][2]={{-0.49,-0.07},{-1,1},{-1,1},{-1,1}}; |
471 | double vcut[4][2]={{-0.49,-0.07},{-1,1},{-1,1},{-1,1}}; |
443 | int edge[4]={1,1,1,1};// 0 -- rising, 1 -- falling |
472 | int edge[4]={1,1,1,1};// 0 -- rising, 1 -- falling |
444 | float offset[4]={0.25,0.25,0.25,0.25};// |
473 | float offset[4]={0.25,0.25,0.25,0.25};// |
445 | 474 | ||
446 | DrsChannel c[2]; |
475 | DrsChannel c[2]; |
447 | 476 | ||
448 | c[0].cfrac = CFRAC; |
477 | c[0].cfrac = CFRAC; |
449 | c[0].threshold = threshold[0][0]; |
478 | c[0].threshold = threshold[0][0]; |
450 | c[0].twin[0] = twin[0][0]; |
479 | c[0].twin[0] = twin[0][0]; |
451 | c[0].twin[1] = twin[0][1]; |
480 | c[0].twin[1] = twin[0][1]; |
452 | 481 | ||
453 | c[0].adcgate[0] = adcgate[0][0]; |
482 | c[0].adcgate[0] = adcgate[0][0]; |
454 | c[0].adcgate[1] = adcgate[0][1]; |
483 | c[0].adcgate[1] = adcgate[0][1]; |
455 | 484 | ||
456 | c[0].vcut[0] = vcut[0][0]; |
485 | c[0].vcut[0] = vcut[0][0]; |
457 | c[0].vcut[1] = vcut[0][1]; |
486 | c[0].vcut[1] = vcut[0][1]; |
458 | 487 | ||
459 | c[0].edge = edge[0]; |
488 | c[0].edge = edge[0]; |
460 | c[0].edge = offset[0]; |
489 | c[0].edge = offset[0]; |
461 | 490 | ||
462 | c[1].cfrac = CFRAC; |
491 | c[1].cfrac = CFRAC; |
463 | c[1].threshold = threshold[1][0]; |
492 | c[1].threshold = threshold[1][0]; |
464 | c[1].twin[0] = twin[1][0]; |
493 | c[1].twin[0] = twin[1][0]; |
465 | c[1].twin[1] = twin[1][1]; |
494 | c[1].twin[1] = twin[1][1]; |
466 | 495 | ||
467 | c[1].adcgate[0] = adcgate[1][0]; |
496 | c[1].adcgate[0] = adcgate[1][0]; |
468 | c[1].adcgate[1] = adcgate[1][1]; |
497 | c[1].adcgate[1] = adcgate[1][1]; |
469 | 498 | ||
470 | c[1].vcut[0] = vcut[1][0]; |
499 | c[1].vcut[0] = vcut[1][0]; |
471 | c[1].vcut[1] = vcut[1][1]; |
500 | c[1].vcut[1] = vcut[1][1]; |
472 | 501 | ||
473 | c[1].edge = edge[1]; |
502 | c[1].edge = edge[1]; |
474 | c[1].offset = offset[1]; |
503 | c[1].offset = offset[1]; |
475 | drs * d = new drs(FileName, 2, c, trgch, nev, updfrq, -0.55,0.55 ); |
504 | drs * d = new drs(FileName, 2, c, trgch, 0, nev, updfrq, -0.55,0.55 ); |
- | 505 | } |
|
- | 506 | ||
- | 507 | ||
- | 508 | ||
- | 509 | void sensl(int nev=1000, int updfrq=20, char *FileName="./data/x1.dat", int trgch=3){ |
|
- | 510 | // nev = -1 all events |
|
- | 511 | double threshold[4]={-0.005,-0.05,-0.005,-0.05}; // threshold for determination of timing |
|
- | 512 | float twin[4][2]={{20,40.},{980.,1150.},{100.,160.},{100.,160.}}; // window for calculation of the timing |
|
- | 513 | float adcgate[4][2]={{20.,30.}, {980.,1150.},{112.,123.},{150.,163.}}; //integration window |
|
- | 514 | double vcut[4][2]={{-1,1},{-1,1},{-1,1},{-1,1}}; // cut on the pulseheight for filling the timing histograms |
|
- | 515 | int edge[4]={1,0,1,0};// 1 -- rising edge, 0 -- falling edge |
|
- | 516 | double offset[4]={0.25,0.25, 0.025,0.25};// qdc offset |
|
- | 517 | double ymin[4]={-0.1,-0.5,-0.01,-0.6};// ymin offset |
|
- | 518 | double ymax[4]={0.5,0.5,0.07,0.1};// ymin offset |
|
- | 519 | DrsChannel c[NCH]; |
|
- | 520 | for (int k=0;k<NCH;k++){ |
|
- | 521 | c[k].cfrac = CFRAC; |
|
- | 522 | c[k].threshold = threshold[k]; |
|
- | 523 | for (int j=0;j<2;j++){ |
|
- | 524 | c[k].twin[j] = twin[k][j]; |
|
- | 525 | c[k].adcgate[j] = adcgate[k][j]; |
|
- | 526 | c[k].vcut[j] = vcut[k][j]; |
|
- | 527 | c[k].edge = edge[k]; |
|
- | 528 | c[k].offset = offset[k]; |
|
- | 529 | c[k].ymin = ymin[k]; |
|
- | 530 | c[k].ymax = ymax[k]; |
|
- | 531 | } |
|
- | 532 | } |
|
- | 533 | drs * d = new drs(FileName, NCH, c, trgch, 0, nev, updfrq , -1,1); |
|
476 | } |
534 | } |
477 | 535 | ||
478 | 536 | ||
479 | 537 | ||
480 | void |
538 | void ana(TString FileName="./data/x1.dat"){ |
- | 539 | int nev=-1; |
|
- | 540 | int updfrq=1000; |
|
- | 541 | int trgch=0; |
|
481 | // nev = -1 all events |
542 | // nev = -1 all events |
482 | double threshold[4]={-0.005,-0. |
543 | double threshold[4]={-0.005,-0.05,-0.005,-0.05}; // threshold for determination of timing |
483 | float twin[4][2]={{ |
544 | float twin[4][2]={{20,40.},{980.,1150.},{100.,160.},{100.,160.}}; // window for calculation of the timing |
484 | float adcgate[4][2]={{ |
545 | float adcgate[4][2]={{20.,30.}, {980.,1150.},{112.,123.},{150.,163.}}; //integration window |
485 | double vcut[4][2]={{-1,1},{-1,1},{-1,1},{-1,1}}; // cut on the pulseheight for filling the timing histograms |
546 | double vcut[4][2]={{-1,1},{-1,1},{-1,1},{-1,1}}; // cut on the pulseheight for filling the timing histograms |
486 | int edge[4]={ |
547 | int edge[4]={1,0,1,0};// 1 -- rising edge, 0 -- falling edge |
487 |
|
548 | double offset[4]={0.25,0.25, 0.025,0.25};// qdc offset |
488 | - | ||
- | 549 | double ymin[4]={-0.1,-0.5,-0.01,-0.6};// ymin offset |
|
- | 550 | double ymax[4]={0.5,0.5,0.07,0.1};// ymin offset |
|
489 | DrsChannel c[NCH]; |
551 | DrsChannel c[NCH]; |
490 | for (int k=0;k<NCH;k++){ |
552 | for (int k=0;k<NCH;k++){ |
491 | c[k].cfrac = CFRAC; |
553 | c[k].cfrac = CFRAC; |
492 | c[k].threshold = threshold[k]; |
554 | c[k].threshold = threshold[k]; |
493 | for (int j=0;j<2;j++){ |
555 | for (int j=0;j<2;j++){ |
494 | c[k].twin[j] = twin[k][j]; |
556 | c[k].twin[j] = twin[k][j]; |
495 | c[k].adcgate[j] = adcgate[k][j]; |
557 | c[k].adcgate[j] = adcgate[k][j]; |
496 | c[k].vcut[j] = vcut[k][j]; |
558 | c[k].vcut[j] = vcut[k][j]; |
497 | c[k].edge = edge[k]; |
559 | c[k].edge = edge[k]; |
498 | c[k].offset = offset[k]; |
560 | c[k].offset = offset[k]; |
- | 561 | c[k].ymin = ymin[k]; |
|
- | 562 | c[k].ymax = ymax[k]; |
|
499 | } |
563 | } |
500 | } |
564 | } |
- | 565 | cout << "DRS4 " << FileName << endl; |
|
501 | drs * d = new drs(FileName |
566 | drs * d = new drs(FileName.Data(), NCH, c, trgch, 0, nev, updfrq , -0.5,0.5); |
502 | } |
567 | } |
503 | 568 |