[1442] | 1 | #include "simtoipr.h"
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| 2 | #include "toimanager.h"
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| 3 | #include "pexceptions.h"
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| 4 | #include "ctimer.h"
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| 5 |
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| 6 | SimpleDeglitcher::SimpleDeglitcher(int wsz, double ns, int maxnpt)
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| 7 | {
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| 8 | if (wsz < 5) wsz = 5;
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| 9 | if (wsz%2 == 0) wsz++;
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| 10 | if (maxnpt > wsz) maxnpt = wsz;
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| 11 |
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| 12 | cout << "SimpleDeglitcher::SimpleDeglitcher() WSize= " << wsz
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| 13 | << " nSig=" << ns << " maxNPt=" << maxnpt << endl;
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| 14 |
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| 15 | wsize = wsz;
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| 16 | nsig = ns;
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| 17 | maxpoints = maxnpt;
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| 18 | totnscount = glnscount = glcount = 0;
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[1443] | 19 | deglitchdone = false;
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[1442] | 20 | }
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| 21 |
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| 22 | SimpleDeglitcher::~SimpleDeglitcher()
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| 23 | {
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| 24 | }
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| 25 |
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[1443] | 26 | void SimpleDeglitcher::PrintStatus(ostream & os)
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| 27 | {
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| 28 | os << "\n ------------------------------------------------------ \n"
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| 29 | << " SimpleDeglitcher::PrintStatus() - WindowSize=" << WSize()
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| 30 | << " NbSigmas=" << NbSigmas() << " MaxPoints=" << MaxPoints() << endl;
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| 31 | TOIProcessor::PrintStatus(os);
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| 32 | if (deglitchdone) os << " Deglitching performed " << endl;
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| 33 | else os << " NO deglitching done " << endl;
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| 34 | double nst = (TotalSampleCount() > 0) ? TotalSampleCount() : 1.;
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| 35 | os << " TotalSampleCount=" << TotalSampleCount() << " GlitchCount= "
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| 36 | << GlitchCount() << " GlitchSampleCount=" << GlitchSampleCount()
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| 37 | << "( " << (double)GlitchSampleCount()*100./nst << " % )" << endl;
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| 38 | os << " ------------------------------------------------------ " << endl;
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| 39 | }
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| 40 |
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[1442] | 41 | void SimpleDeglitcher::init() {
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| 42 | cout << "SimpleDeglitcher::init" << endl;
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| 43 | declareInput("in");
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| 44 | declareOutput("out");
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| 45 | declareOutput("mean");
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| 46 | declareOutput("sigma");
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[1443] | 47 | declareOutput("incopie");
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[1442] | 48 | name = "SimpleDeglitcher";
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| 49 | // upExtra = 1; A quoi ca sert ?
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| 50 | }
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| 51 |
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| 52 | void SimpleDeglitcher::run() {
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| 53 |
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| 54 | // TOIManager* mgr = TOIManager::getManager();
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| 55 | int snb = getMinIn();
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| 56 | int sne = getMaxIn();
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| 57 |
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| 58 | bool fgout = checkOutputTOIIndex(0);
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| 59 | bool fgmean = checkOutputTOIIndex(1);
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| 60 | bool fgsigma = checkOutputTOIIndex(2);
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[1443] | 61 | bool fgincopie = checkOutputTOIIndex(3);
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[1442] | 62 |
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| 63 | if (!checkInputTOIIndex(0)) {
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| 64 | cerr << " SimpleDeglitcher::run() - Input TOI (in) not connected! "
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| 65 | << endl;
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| 66 | throw ParmError("SimpleDeglitcher::run() Input TOI (in) not connected!");
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| 67 | }
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[1443] | 68 | if (!fgout && !fgmean && !fgsigma &&!fgincopie) {
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[1442] | 69 | cerr << " SimpleDeglitcher::run() - No Output TOI connected! "
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| 70 | << endl;
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| 71 | throw ParmError("SimpleDeglitcher::run() No output TOI connected!");
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| 72 | }
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| 73 |
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| 74 | if (!fgout) {
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| 75 | cout << "Warning: SimpleDeglitcher::run() - No TOI connected to out \n"
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| 76 | << " No deglitching would be performed !" << endl;
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| 77 | }
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| 78 |
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[1443] | 79 | cout << " SimpleDeglitcher::run() SNRange=" << snb << " - " << sne << endl;
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[1442] | 80 | try {
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[1443] | 81 | Timer tm("SimpleDeglitcher::run()");
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[1442] | 82 | // Le debut
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| 83 | int wsz2 = wsize/2;
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| 84 | Vector vin(wsize);
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| 85 | int k;
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| 86 | for(k=0; k<wsize; k++)
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| 87 | vin(k) = getData(0, k+snb);
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[1443] | 88 | double s = vin.Sum();
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[1442] | 89 | double mean = s/wsize;
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| 90 | double s2 = vin.SumX2();
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| 91 | double sigma = sqrt(s2/wsize-mean*mean);
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| 92 | int kgl = -1;
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| 93 | int ii,lastput;
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| 94 | bool fgglitch = false;
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| 95 | double valcur,valsub,valadd;
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[1443] | 96 | for(k=0;k<=sne-snb;k++) {
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[1442] | 97 | totnscount++;
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[1443] | 98 | // if (k%10000 == 0) cout << " DBG: K=" << k << endl;
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[1442] | 99 | // Calcul mean-sigma
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| 100 | if ((k>wsz2) && (k<sne-snb-wsz2)) {
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| 101 | valsub = vin((k+wsz2)%wsize);
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[1443] | 102 | vin((k+wsz2)%wsize) = valadd = getData(0, k+wsz2+snb);
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[1442] | 103 | s += (valadd-valsub);
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[1443] | 104 | s2 += (valadd*valadd-valsub*valsub);
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[1442] | 105 | mean = s/wsize;
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| 106 | sigma = sqrt(s2/wsize-mean*mean);
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| 107 | }
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| 108 |
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| 109 | // On gere les sorties Mean et Sigma
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| 110 | if (fgmean)
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| 111 | putData(1, k+snb, mean, 0);
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| 112 | if (fgsigma)
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| 113 | putData(2, k+snb, sigma, 0);
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| 114 |
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[1443] | 115 | valcur = vin(k%wsize);
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| 116 | if (fgincopie)
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| 117 | putData(3, k+snb, valcur, 0);
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| 118 |
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[1442] | 119 | if (!fgout) continue; // Pas de sortie out (deglitche)
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| 120 |
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[1443] | 121 |
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| 122 | // if (k<100) {
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| 123 | // cout << "DBG-A-Deglitch[" << k << "] mean="
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| 124 | // << mean << " sigma=" << sigma << " valcur="
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| 125 | // << valcur << " Kgl=" << kgl ;
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| 126 | // if (fgglitch) cout << " In Glitch" ;
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| 127 | // cout << endl;
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| 128 | // }
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[1442] | 129 |
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| 130 | if (valcur < mean+nsig*sigma) { // inferieur au seuil
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| 131 | if (fgglitch) {
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| 132 | if (k-kgl < maxpoints) { // On vient de detecter un glitch
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| 133 | glcount++;
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| 134 | for(ii=kgl; ii<k; ii++) {
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| 135 | putData(0, ii+snb, mean, 7);
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| 136 | glnscount++;
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| 137 | }
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| 138 | lastput = snb+k-1;
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| 139 | }
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| 140 | else {
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| 141 | for(ii=kgl; ii<k; ii++) {
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| 142 | putData(0, ii+snb, vin(ii%wsize), 0);
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| 143 | }
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| 144 | lastput = snb+k-1;
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| 145 | }
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| 146 | }
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| 147 | putData(0, k+snb, valcur, 0);
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| 148 | lastput = snb+k;
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| 149 | kgl = -1; fgglitch = false;
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| 150 | }
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| 151 | else { // Superieur au seuil
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| 152 | if (fgglitch) {
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| 153 | if (k-kgl+1 >= maxpoints) { // serie de points > seuil
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| 154 | for(ii=kgl; ii<=k; ii++) // -> Donc pas glitch
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| 155 | putData(0, ii+snb, vin(ii%wsize), 0);
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| 156 | lastput = snb+k;
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| 157 | fgglitch = false;
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| 158 | }
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| 159 | }
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| 160 | else {
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| 161 | if (kgl < 0) { // debut possible de glitch
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| 162 | fgglitch = true; kgl = k;
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| 163 | }
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| 164 | else { // On est toujours dans une serie > seuil
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| 165 | putData(0, k+snb, valcur, 0);
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| 166 | lastput = snb+k;
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| 167 | }
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| 168 | }
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| 169 | }
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| 170 |
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[1443] | 171 | // if (k%5000 == 0) cout << " ---DBG2: K=" << k << " glcount="
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| 172 | // << glcount << " LastPut= " << lastput << endl;
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| 173 | } // Fin de Boucle sur les num-sample
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| 174 |
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| 175 | //DBG cout << " La fin lastput=" << lastput << " SNE=" << sne;
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| 176 | //DBG for(k=lastput-snb+1; k<sne-snb; k++)
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| 177 | //DBG putData(0, k+snb, vin(k%wsize), 0);
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| 178 | // cout << " DBG3- OUT of try bloc ! " << endl;
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| 179 | cout << " SimpleDeglitcher::run() - End of processing "
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| 180 | << " TotalSampleCount=" << TotalSampleCount()
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| 181 | << " GlitchCount= " << GlitchCount() << endl;
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| 182 | if (fgout) deglitchdone = true;
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[1442] | 183 | } // Bloc try
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| 184 | catch (PException & exc) {
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| 185 | cerr << "SimpleDeglitcher: Catched Exception " << (string)typeid(exc).name()
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| 186 | << "\n .... Msg= " << exc.Msg() << endl;
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| 187 | }
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| 188 | }
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| 189 |
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| 190 |
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| 191 |
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| 192 | SimpleFilter::SimpleFilter(int wsz, FilterKind fk, double a, double s)
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| 193 | {
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| 194 | if (wsz < 3) wsz = 3;
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| 195 | if (wsz%2 == 0) wsz++;
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| 196 | cout << "SimpleFilter::SimpleFilter() wsz= " << wsz
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| 197 | << " fk=" << fk << endl;
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| 198 | wsize = wsz;
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| 199 | totnscount = 0;
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| 200 | coef = new double[wsz];
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| 201 | for(int kk=0; kk<wsz; kk++)
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| 202 | coef[kk] = 1./wsize;
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| 203 | }
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| 204 |
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| 205 | SimpleFilter::~SimpleFilter()
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| 206 | {
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| 207 | delete[] coef;
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| 208 | }
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| 209 |
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[1443] | 210 | void SimpleFilter::PrintStatus(ostream & os)
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| 211 | {
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| 212 | os << "\n ------------------------------------------------------ \n"
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| 213 | << " SimpleFilter::PrintStatus() - WindowSize=" << WSize()
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| 214 | << " FilterKind= " << Type() << endl;
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| 215 | TOIProcessor::PrintStatus(os);
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| 216 | os << " Coeff= " ;
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| 217 | for(int k=0; k<wsize; k++) os << coef[k] << " " ;
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| 218 | os << endl;
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| 219 | os << " TotalSampleCount=" << TotalSampleCount() << endl;
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| 220 | os << " ------------------------------------------------------ " << endl;
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| 221 | }
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| 222 |
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[1442] | 223 | void SimpleFilter::init() {
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| 224 | cout << "SimpleFilter::init" << endl;
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| 225 | declareInput("in");
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| 226 | declareOutput("out");
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[1443] | 227 | declareOutput("incopie");
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[1442] | 228 | name = "SimpleFilter";
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| 229 | // upExtra = 1;
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| 230 | }
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| 231 |
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| 232 | void SimpleFilter::run() {
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| 233 | // TOIManager* mgr = TOIManager::getManager();
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| 234 | int snb = getMinIn();
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| 235 | int sne = getMaxIn();
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| 236 |
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| 237 | bool fgout = checkOutputTOIIndex(0);
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[1443] | 238 | bool fgincopie = checkOutputTOIIndex(1);
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[1442] | 239 |
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| 240 | if (!checkInputTOIIndex(0)) {
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| 241 | cerr << " SimpleFilter::run() - Input TOI (in) not connected! "
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| 242 | << endl;
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| 243 | throw ParmError("SimpleFilter::run() Input TOI (in) not connected!");
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| 244 | }
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| 245 | if (!fgout) {
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| 246 | cerr << " SimpleFilter::run() - No Output TOI connected! "
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| 247 | << endl;
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| 248 | throw ParmError("SimpleFilter::run() No output TOI connected!");
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| 249 | }
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[1443] | 250 |
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| 251 | cout << " SimpleFilter::run() SNRange=" << snb << " - " << sne << endl;
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[1442] | 252 |
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| 253 |
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| 254 | try {
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[1443] | 255 | Timer tm("SimpleFilter::run()");
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[1442] | 256 | // Le debut
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| 257 | int wsz2 = wsize/2;
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| 258 | Vector vin(wsize);
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| 259 | int k;
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| 260 | for(k=0; k<wsize; k++)
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| 261 | vin(k) = getData(0, k+snb);
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| 262 | double mean = vin.Sum()/wsize;
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| 263 | for(k=0; k<wsize/2; k++) vin(k) = mean;
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[1443] | 264 | for(k=0;k<=sne-snb;k++) {
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[1442] | 265 | totnscount++;
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| 266 | // Calcul mean-sigma
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| 267 | if ((k>wsz2) && (k<sne-snb-wsz2))
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| 268 | vin((k+wsz2)%wsize) = getData(0, k+snb);
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| 269 | // if (k == sne-snb-wsz2) {
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| 270 | // }
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| 271 | double sortie = 0;
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| 272 | for(int ii=0; ii<wsize; ii++) {
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| 273 | sortie += vin((ii+k)%wsize)*coef[ii];
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| 274 | }
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| 275 | putData(0,k+snb,sortie,0);
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[1443] | 276 | if (fgincopie) putData(1,k+snb,vin(k%wsize),0);
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[1442] | 277 | } // Boucle sur les num-sample
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[1443] | 278 | cout << " SimpleFilter::run() - End of processing " << endl;
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[1442] | 279 | } // Bloc try
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| 280 |
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| 281 | catch (PException & exc) {
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| 282 | cerr << "SimpleFilter: Catched Exception " << (string)typeid(exc).name()
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| 283 | << "\n .... Msg= " << exc.Msg() << endl;
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| 284 | }
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| 285 |
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| 286 |
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| 287 | }
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