ClassFlowCNNGeneral.cpp 19 KB

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  1. #include "ClassFlowCNNGeneral.h"
  2. #include <math.h>
  3. #include <iomanip>
  4. #include <sys/types.h>
  5. #include <sstream> // std::stringstream
  6. #include "CTfLiteClass.h"
  7. #include "ClassLogFile.h"
  8. static const char* TAG = "flow_analog";
  9. bool debugdetailgeneral = false;
  10. ClassFlowCNNGeneral::ClassFlowCNNGeneral(ClassFlowAlignment *_flowalign, t_CNNType _cnntype) : ClassFlowImage(NULL, TAG)
  11. {
  12. string cnnmodelfile = "";
  13. modelxsize = 1;
  14. modelysize = 1;
  15. ListFlowControll = NULL;
  16. previousElement = NULL;
  17. SaveAllFiles = false;
  18. disabled = false;
  19. extendedResolution = false;
  20. isLogImageSelect = false;
  21. CNNType = AutoDetect;
  22. CNNType = _cnntype;
  23. flowpostalignment = _flowalign;
  24. }
  25. int ClassFlowCNNGeneral::AnzahlROIs(int _analog = 0)
  26. {
  27. int zw = GENERAL[_analog]->ROI.size();
  28. if (extendedResolution && (CNNType != Digital)) zw++; // da letzte Ziffer inkl Nachhkomma, es sei denn, das Nachkomma gibt es nicht (Digital)
  29. return zw;
  30. }
  31. string ClassFlowCNNGeneral::getReadout(int _analog = 0)
  32. {
  33. string result = "";
  34. if (GENERAL[_analog]->ROI.size() == 0)
  35. return result;
  36. if (CNNType == Analogue)
  37. {
  38. float zahl = GENERAL[_analog]->ROI[GENERAL[_analog]->ROI.size() - 1]->result;
  39. int ergebnis_nachkomma = ((int) floor(zahl * 10)) % 10;
  40. int prev = -1;
  41. prev = ZeigerEval(GENERAL[_analog]->ROI[GENERAL[_analog]->ROI.size() - 1]->result, prev);
  42. result = std::to_string(prev);
  43. if (extendedResolution && (CNNType != Digital))
  44. result = result + std::to_string(ergebnis_nachkomma);
  45. for (int i = GENERAL[_analog]->ROI.size() - 2; i >= 0; --i)
  46. {
  47. prev = ZeigerEval(GENERAL[_analog]->ROI[i]->result, prev);
  48. result = std::to_string(prev) + result;
  49. }
  50. }
  51. if (CNNType == Digital)
  52. {
  53. for (int i = 0; i < GENERAL[_analog]->ROI.size(); ++i)
  54. {
  55. if (GENERAL[_analog]->ROI[i]->resultklasse == 10)
  56. result = result + "N";
  57. else
  58. result = result + std::to_string(GENERAL[_analog]->ROI[i]->resultklasse);
  59. }
  60. }
  61. if (CNNType == DigitalHyprid)
  62. {
  63. int ergebnis_nachkomma = -1;
  64. int prev = -1;
  65. float zahl = GENERAL[_analog]->ROI[GENERAL[_analog]->ROI.size() - 1]->result;
  66. if (zahl >= 0) // NaN?
  67. {
  68. ergebnis_nachkomma = ((int) floor(zahl * 10)) % 10;
  69. prev = ZeigerEval(GENERAL[_analog]->ROI[GENERAL[_analog]->ROI.size() - 1]->result, prev);
  70. result = std::to_string(prev);
  71. if (extendedResolution && (CNNType != Digital))
  72. result = result + std::to_string(ergebnis_nachkomma);
  73. }
  74. else
  75. {
  76. result = "N";
  77. if (extendedResolution && (CNNType != Digital))
  78. result = "NN";
  79. }
  80. for (int i = GENERAL[_analog]->ROI.size() - 2; i >= 0; --i)
  81. {
  82. if (GENERAL[_analog]->ROI[i]->result >= 0)
  83. {
  84. prev = ZeigerEval(GENERAL[_analog]->ROI[i]->result, prev);
  85. result = std::to_string(prev) + result;
  86. }
  87. else
  88. {
  89. prev = -1;
  90. result = "N" + result;
  91. }
  92. }
  93. }
  94. return result;
  95. }
  96. int ClassFlowCNNGeneral::ZeigerEval(float zahl, int ziffer_vorgaenger)
  97. {
  98. int ergebnis_nachkomma = ((int) floor(zahl * 10)) % 10;
  99. int ergebnis_vorkomma = ((int) floor(zahl)) % 10;
  100. int ergebnis, ergebnis_rating;
  101. if (ziffer_vorgaenger == -1)
  102. return ergebnis_vorkomma % 10;
  103. ergebnis_rating = ergebnis_nachkomma - ziffer_vorgaenger;
  104. if (ergebnis_nachkomma >= 5)
  105. ergebnis_rating-=5;
  106. else
  107. ergebnis_rating+=5;
  108. ergebnis = (int) round(zahl);
  109. if (ergebnis_rating < 0)
  110. ergebnis-=1;
  111. if (ergebnis == -1)
  112. ergebnis+=10;
  113. ergebnis = ergebnis % 10;
  114. return ergebnis;
  115. }
  116. bool ClassFlowCNNGeneral::ReadParameter(FILE* pfile, string& aktparamgraph)
  117. {
  118. std::vector<string> zerlegt;
  119. aktparamgraph = trim(aktparamgraph);
  120. if (aktparamgraph.size() == 0)
  121. if (!this->GetNextParagraph(pfile, aktparamgraph))
  122. return false;
  123. if ((toUpper(aktparamgraph) != "[ANALOG]") && (toUpper(aktparamgraph) != ";[ANALOG]")
  124. && (toUpper(aktparamgraph) != "[DIGIT]") && (toUpper(aktparamgraph) != ";[DIGIT]")
  125. && (toUpper(aktparamgraph) != "[DIGITS]") && (toUpper(aktparamgraph) != ";[DIGITS]")
  126. ) // Paragraph passt nicht
  127. return false;
  128. /*
  129. if ((aktparamgraph.compare("[Analog]") != 0) && (aktparamgraph.compare(";[Analog]") != 0)
  130. && (aktparamgraph.compare("[Digit]") != 0) && (aktparamgraph.compare(";[Digit]"))) // Paragraph passt nicht
  131. return false;
  132. */
  133. if (aktparamgraph[0] == ';')
  134. {
  135. disabled = true;
  136. while (getNextLine(pfile, &aktparamgraph) && !isNewParagraph(aktparamgraph));
  137. printf("[Analog/Digit] is disabled !!!\n");
  138. return true;
  139. }
  140. while (this->getNextLine(pfile, &aktparamgraph) && !this->isNewParagraph(aktparamgraph))
  141. {
  142. zerlegt = this->ZerlegeZeile(aktparamgraph);
  143. if ((zerlegt[0] == "LogImageLocation") && (zerlegt.size() > 1))
  144. {
  145. this->LogImageLocation = "/sdcard" + zerlegt[1];
  146. this->isLogImage = true;
  147. }
  148. if ((zerlegt[0] == "LogImageSelect") && (zerlegt.size() > 1))
  149. {
  150. LogImageSelect = zerlegt[1];
  151. isLogImageSelect = true;
  152. }
  153. if ((toUpper(zerlegt[0]) == "LOGFILERETENTIONINDAYS") && (zerlegt.size() > 1))
  154. {
  155. this->logfileRetentionInDays = std::stoi(zerlegt[1]);
  156. }
  157. if ((toUpper(zerlegt[0]) == "MODELTYPE") && (zerlegt.size() > 1))
  158. {
  159. if (toUpper(zerlegt[1]) == "DIGITHYPRID")
  160. CNNType = DigitalHyprid;
  161. }
  162. if ((zerlegt[0] == "Model") && (zerlegt.size() > 1))
  163. {
  164. this->cnnmodelfile = zerlegt[1];
  165. }
  166. if ((zerlegt[0] == "ModelInputSize") && (zerlegt.size() > 2))
  167. {
  168. this->modelxsize = std::stoi(zerlegt[1]);
  169. this->modelysize = std::stoi(zerlegt[2]);
  170. }
  171. if (zerlegt.size() >= 5)
  172. {
  173. general* _analog = GetGENERAL(zerlegt[0], true);
  174. roi* neuroi = _analog->ROI[_analog->ROI.size()-1];
  175. neuroi->posx = std::stoi(zerlegt[1]);
  176. neuroi->posy = std::stoi(zerlegt[2]);
  177. neuroi->deltax = std::stoi(zerlegt[3]);
  178. neuroi->deltay = std::stoi(zerlegt[4]);
  179. neuroi->result = -1;
  180. neuroi->image = NULL;
  181. neuroi->image_org = NULL;
  182. }
  183. if ((toUpper(zerlegt[0]) == "SAVEALLFILES") && (zerlegt.size() > 1))
  184. {
  185. if (toUpper(zerlegt[1]) == "TRUE")
  186. SaveAllFiles = true;
  187. }
  188. if ((toUpper(zerlegt[0]) == "EXTENDEDRESOLUTION") && (zerlegt.size() > 1))
  189. {
  190. if (toUpper(zerlegt[1]) == "TRUE")
  191. extendedResolution = true;
  192. }
  193. }
  194. for (int _ana = 0; _ana < GENERAL.size(); ++_ana)
  195. for (int i = 0; i < GENERAL[_ana]->ROI.size(); ++i)
  196. {
  197. GENERAL[_ana]->ROI[i]->image = new CImageBasis(modelxsize, modelysize, 3);
  198. GENERAL[_ana]->ROI[i]->image_org = new CImageBasis(GENERAL[_ana]->ROI[i]->deltax, GENERAL[_ana]->ROI[i]->deltay, 3);
  199. }
  200. return true;
  201. }
  202. general* ClassFlowCNNGeneral::FindGENERAL(string _name_number)
  203. {
  204. for (int i = 0; i < GENERAL.size(); ++i)
  205. if (GENERAL[i]->name == _name_number)
  206. return GENERAL[i];
  207. return NULL;
  208. }
  209. general* ClassFlowCNNGeneral::GetGENERAL(string _name, bool _create = true)
  210. {
  211. string _analog, _roi;
  212. int _pospunkt = _name.find_first_of(".");
  213. if (_pospunkt > -1)
  214. {
  215. _analog = _name.substr(0, _pospunkt);
  216. _roi = _name.substr(_pospunkt+1, _name.length() - _pospunkt - 1);
  217. }
  218. else
  219. {
  220. _analog = "default";
  221. _roi = _name;
  222. }
  223. general *_ret = NULL;
  224. for (int i = 0; i < GENERAL.size(); ++i)
  225. if (GENERAL[i]->name == _analog)
  226. _ret = GENERAL[i];
  227. if (!_create) // nicht gefunden und soll auch nicht erzeugt werden
  228. return _ret;
  229. if (_ret == NULL)
  230. {
  231. _ret = new general;
  232. _ret->name = _analog;
  233. GENERAL.push_back(_ret);
  234. }
  235. roi* neuroi = new roi;
  236. neuroi->name = _roi;
  237. _ret->ROI.push_back(neuroi);
  238. printf("GetGENERAL - GENERAL %s - roi %s\n", _analog.c_str(), _roi.c_str());
  239. return _ret;
  240. }
  241. string ClassFlowCNNGeneral::getHTMLSingleStep(string host)
  242. {
  243. string result, zw;
  244. std::vector<HTMLInfo*> htmlinfo;
  245. result = "<p>Found ROIs: </p> <p><img src=\"" + host + "/img_tmp/alg_roi.jpg\"></p>\n";
  246. result = result + "Analog Pointers: <p> ";
  247. htmlinfo = GetHTMLInfo();
  248. for (int i = 0; i < htmlinfo.size(); ++i)
  249. {
  250. std::stringstream stream;
  251. stream << std::fixed << std::setprecision(1) << htmlinfo[i]->val;
  252. zw = stream.str();
  253. result = result + "<img src=\"" + host + "/img_tmp/" + htmlinfo[i]->filename + "\"> " + zw;
  254. delete htmlinfo[i];
  255. }
  256. htmlinfo.clear();
  257. return result;
  258. }
  259. bool ClassFlowCNNGeneral::doFlow(string time)
  260. {
  261. if (disabled)
  262. return true;
  263. if (!doAlignAndCut(time)){
  264. return false;
  265. };
  266. if (debugdetailgeneral) LogFile.WriteToFile("ClassFlowCNNGeneral::doFlow nach Alignment");
  267. doNeuralNetwork(time);
  268. RemoveOldLogs();
  269. return true;
  270. }
  271. bool ClassFlowCNNGeneral::doAlignAndCut(string time)
  272. {
  273. if (disabled)
  274. return true;
  275. CAlignAndCutImage *caic = flowpostalignment->GetAlignAndCutImage();
  276. for (int _ana = 0; _ana < GENERAL.size(); ++_ana)
  277. for (int i = 0; i < GENERAL[_ana]->ROI.size(); ++i)
  278. {
  279. printf("General %d - Align&Cut\n", i);
  280. caic->CutAndSave(GENERAL[_ana]->ROI[i]->posx, GENERAL[_ana]->ROI[i]->posy, GENERAL[_ana]->ROI[i]->deltax, GENERAL[_ana]->ROI[i]->deltay, GENERAL[_ana]->ROI[i]->image_org);
  281. if (SaveAllFiles)
  282. {
  283. if (GENERAL[_ana]->name == "default")
  284. GENERAL[_ana]->ROI[i]->image_org->SaveToFile(FormatFileName("/sdcard/img_tmp/" + GENERAL[_ana]->ROI[i]->name + ".jpg"));
  285. else
  286. GENERAL[_ana]->ROI[i]->image_org->SaveToFile(FormatFileName("/sdcard/img_tmp/" + GENERAL[_ana]->name + "_" + GENERAL[_ana]->ROI[i]->name + ".jpg"));
  287. }
  288. GENERAL[_ana]->ROI[i]->image_org->Resize(modelxsize, modelysize, GENERAL[_ana]->ROI[i]->image);
  289. if (SaveAllFiles)
  290. {
  291. if (GENERAL[_ana]->name == "default")
  292. GENERAL[_ana]->ROI[i]->image->SaveToFile(FormatFileName("/sdcard/img_tmp/" + GENERAL[_ana]->ROI[i]->name + ".bmp"));
  293. else
  294. GENERAL[_ana]->ROI[i]->image->SaveToFile(FormatFileName("/sdcard/img_tmp/" + GENERAL[_ana]->name + "_" + GENERAL[_ana]->ROI[i]->name + ".bmp"));
  295. }
  296. }
  297. return true;
  298. }
  299. void ClassFlowCNNGeneral::DrawROI(CImageBasis *_zw)
  300. {
  301. if (CNNType == Analogue)
  302. {
  303. int r = 0;
  304. int g = 255;
  305. int b = 0;
  306. for (int _ana = 0; _ana < GENERAL.size(); ++_ana)
  307. for (int i = 0; i < GENERAL[_ana]->ROI.size(); ++i)
  308. {
  309. _zw->drawRect(GENERAL[_ana]->ROI[i]->posx, GENERAL[_ana]->ROI[i]->posy, GENERAL[_ana]->ROI[i]->deltax, GENERAL[_ana]->ROI[i]->deltay, r, g, b, 1);
  310. _zw->drawCircle((int) (GENERAL[_ana]->ROI[i]->posx + GENERAL[_ana]->ROI[i]->deltax/2), (int) (GENERAL[_ana]->ROI[i]->posy + GENERAL[_ana]->ROI[i]->deltay/2), (int) (GENERAL[_ana]->ROI[i]->deltax/2), r, g, b, 2);
  311. _zw->drawLine((int) (GENERAL[_ana]->ROI[i]->posx + GENERAL[_ana]->ROI[i]->deltax/2), (int) GENERAL[_ana]->ROI[i]->posy, (int) (GENERAL[_ana]->ROI[i]->posx + GENERAL[_ana]->ROI[i]->deltax/2), (int) (GENERAL[_ana]->ROI[i]->posy + GENERAL[_ana]->ROI[i]->deltay), r, g, b, 2);
  312. _zw->drawLine((int) GENERAL[_ana]->ROI[i]->posx, (int) (GENERAL[_ana]->ROI[i]->posy + GENERAL[_ana]->ROI[i]->deltay/2), (int) GENERAL[_ana]->ROI[i]->posx + GENERAL[_ana]->ROI[i]->deltax, (int) (GENERAL[_ana]->ROI[i]->posy + GENERAL[_ana]->ROI[i]->deltay/2), r, g, b, 2);
  313. }
  314. }
  315. else
  316. {
  317. for (int _dig = 0; _dig < GENERAL.size(); ++_dig)
  318. for (int i = 0; i < GENERAL[_dig]->ROI.size(); ++i)
  319. _zw->drawRect(GENERAL[_dig]->ROI[i]->posx, GENERAL[_dig]->ROI[i]->posy, GENERAL[_dig]->ROI[i]->deltax, GENERAL[_dig]->ROI[i]->deltay, 0, 0, (255 - _dig*100), 2);
  320. }
  321. }
  322. bool ClassFlowCNNGeneral::doNeuralNetwork(string time)
  323. {
  324. if (disabled)
  325. return true;
  326. string logPath = CreateLogFolder(time);
  327. CTfLiteClass *tflite = new CTfLiteClass;
  328. string zwcnn = "/sdcard" + cnnmodelfile;
  329. zwcnn = FormatFileName(zwcnn);
  330. printf(zwcnn.c_str());printf("\n");
  331. if (!tflite->LoadModel(zwcnn)) {
  332. printf("Can't read model file /sdcard%s\n", cnnmodelfile.c_str());
  333. delete tflite;
  334. return false;
  335. }
  336. tflite->MakeAllocate();
  337. if (CNNType == AutoDetect)
  338. {
  339. int _anzoutputdimensions = tflite->GetAnzOutPut();
  340. switch (_anzoutputdimensions)
  341. {
  342. case 2:
  343. CNNType = Analogue;
  344. printf("TFlite-Type set to Analogue\n");
  345. break;
  346. case 11:
  347. CNNType = Digital;
  348. printf("TFlite-Type set to Digital\n");
  349. break;
  350. case 22:
  351. CNNType = DigitalHyprid;
  352. printf("TFlite-Type set to DigitalHyprid\n");
  353. break;
  354. default:
  355. printf("ERROR ERROR ERROR - tflite passt nicht zur Firmware - ERROR ERROR ERROR\n");
  356. }
  357. }
  358. for (int _ana = 0; _ana < GENERAL.size(); ++_ana)
  359. {
  360. for (int i = 0; i < GENERAL[_ana]->ROI.size(); ++i)
  361. {
  362. printf("General %d - TfLite\n", i);
  363. switch (CNNType) {
  364. case Analogue:
  365. {
  366. float f1, f2;
  367. f1 = 0; f2 = 0;
  368. tflite->LoadInputImageBasis(GENERAL[_ana]->ROI[i]->image);
  369. tflite->Invoke();
  370. if (debugdetailgeneral) LogFile.WriteToFile("Nach Invoke");
  371. f1 = tflite->GetOutputValue(0);
  372. f2 = tflite->GetOutputValue(1);
  373. float result = fmod(atan2(f1, f2) / (M_PI * 2) + 2, 1);
  374. GENERAL[_ana]->ROI[i]->result = result * 10;
  375. printf("Result General(Analog)%i: %f\n", i, GENERAL[_ana]->ROI[i]->result);
  376. if (isLogImage)
  377. LogImage(logPath, GENERAL[_ana]->ROI[i]->name, &GENERAL[_ana]->ROI[i]->result, NULL, time, GENERAL[_ana]->ROI[i]->image_org);
  378. } break;
  379. case Digital:
  380. {
  381. GENERAL[_ana]->ROI[i]->resultklasse = 0;
  382. GENERAL[_ana]->ROI[i]->resultklasse = tflite->GetClassFromImageBasis(GENERAL[_ana]->ROI[i]->image);
  383. printf("Result General(Digit)%i: %d\n", i, GENERAL[_ana]->ROI[i]->resultklasse);
  384. if (isLogImage)
  385. {
  386. if (isLogImageSelect)
  387. {
  388. if (LogImageSelect.find(GENERAL[_ana]->ROI[i]->name) != std::string::npos)
  389. LogImage(logPath, GENERAL[_ana]->ROI[i]->name, NULL, &GENERAL[_ana]->ROI[i]->resultklasse, time, GENERAL[_ana]->ROI[i]->image_org);
  390. }
  391. else
  392. {
  393. LogImage(logPath, GENERAL[_ana]->ROI[i]->name, NULL, &GENERAL[_ana]->ROI[i]->resultklasse, time, GENERAL[_ana]->ROI[i]->image_org);
  394. }
  395. }
  396. } break;
  397. case DigitalHyprid:
  398. {
  399. int _num, _nachkomma;
  400. tflite->LoadInputImageBasis(GENERAL[_ana]->ROI[i]->image);
  401. tflite->Invoke();
  402. if (debugdetailgeneral) LogFile.WriteToFile("Nach Invoke");
  403. _num = tflite->GetOutClassification(0, 10);
  404. _nachkomma = tflite->GetOutClassification(11, 22);
  405. if ((_num == 10) || (_nachkomma == 10)) // NaN detektiert
  406. GENERAL[_ana]->ROI[i]->result = -1;
  407. else
  408. GENERAL[_ana]->ROI[i]->result = fmod(_num + (_nachkomma-5)/10 + 10, 10);
  409. printf("Result General(DigitalHyprid)%i: %f\n", i, GENERAL[_ana]->ROI[i]->result);
  410. if (isLogImage)
  411. LogImage(logPath, GENERAL[_ana]->ROI[i]->name, &GENERAL[_ana]->ROI[i]->result, NULL, time, GENERAL[_ana]->ROI[i]->image_org);
  412. } break;
  413. default:
  414. break;
  415. }
  416. }
  417. }
  418. delete tflite;
  419. return true;
  420. }
  421. bool ClassFlowCNNGeneral::isExtendedResolution(int _number)
  422. {
  423. if (extendedResolution && !(CNNType == Digital))
  424. return true;
  425. return false;
  426. }
  427. std::vector<HTMLInfo*> ClassFlowCNNGeneral::GetHTMLInfo()
  428. {
  429. std::vector<HTMLInfo*> result;
  430. for (int _ana = 0; _ana < GENERAL.size(); ++_ana)
  431. for (int i = 0; i < GENERAL[_ana]->ROI.size(); ++i)
  432. {
  433. if (GENERAL[_ana]->name == "default")
  434. GENERAL[_ana]->ROI[i]->image->SaveToFile(FormatFileName("/sdcard/img_tmp/" + GENERAL[_ana]->ROI[i]->name + ".bmp"));
  435. else
  436. GENERAL[_ana]->ROI[i]->image->SaveToFile(FormatFileName("/sdcard/img_tmp/" + GENERAL[_ana]->name + "_" + GENERAL[_ana]->ROI[i]->name + ".bmp"));
  437. HTMLInfo *zw = new HTMLInfo;
  438. if (GENERAL[_ana]->name == "default")
  439. {
  440. zw->filename = GENERAL[_ana]->ROI[i]->name + ".bmp";
  441. zw->filename_org = GENERAL[_ana]->ROI[i]->name + ".jpg";
  442. }
  443. else
  444. {
  445. zw->filename = GENERAL[_ana]->name + "_" + GENERAL[_ana]->ROI[i]->name + ".bmp";
  446. zw->filename_org = GENERAL[_ana]->name + "_" + GENERAL[_ana]->ROI[i]->name + ".jpg";
  447. }
  448. zw->val = GENERAL[_ana]->ROI[i]->result;
  449. zw->image = GENERAL[_ana]->ROI[i]->image;
  450. zw->image_org = GENERAL[_ana]->ROI[i]->image_org;
  451. result.push_back(zw);
  452. }
  453. return result;
  454. }
  455. int ClassFlowCNNGeneral::getAnzahlGENERAL()
  456. {
  457. return GENERAL.size();
  458. }
  459. string ClassFlowCNNGeneral::getNameGENERAL(int _analog)
  460. {
  461. if (_analog < GENERAL.size())
  462. return GENERAL[_analog]->name;
  463. return "GENERAL DOES NOT EXIST";
  464. }
  465. general* ClassFlowCNNGeneral::GetGENERAL(int _analog)
  466. {
  467. if (_analog < GENERAL.size())
  468. return GENERAL[_analog];
  469. return NULL;
  470. }
  471. void ClassFlowCNNGeneral::UpdateNameNumbers(std::vector<std::string> *_name_numbers)
  472. {
  473. for (int _dig = 0; _dig < GENERAL.size(); _dig++)
  474. {
  475. std::string _name = GENERAL[_dig]->name;
  476. bool found = false;
  477. for (int i = 0; i < (*_name_numbers).size(); ++i)
  478. {
  479. if ((*_name_numbers)[i] == _name)
  480. found = true;
  481. }
  482. if (!found)
  483. (*_name_numbers).push_back(_name);
  484. }
  485. }