plaqueinterface.cpp 14 KB

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  1. #include "PlaqueInterface.h"
  2. #include "PlaqueBase.h"
  3. #include "scale.h"
  4. #include "../Container/ExtendedImage.h"
  5. #include "../Container/Video.h"
  6. #include "../IO/DicomIO.h"
  7. #include "../Mouchard/Mouchard.h"
  8. #include <cmath>
  9. const CScale *g_pCurrentScale;
  10. #define SQR( x ) (( x ) * ( x ))
  11. PlaqueInterface::PlaqueInterface():Singleton< PlaqueInterface >()
  12. {
  13. }
  14. bool PlaqueInterface::initialize( std::string fileName, double pixelSizeX, double pixelSizeY )
  15. {
  16. bool status = false;
  17. if ( Mouchard::getInstance().IsDLLValid() )
  18. {
  19. m_image.Destroy();
  20. double m_pixelSizeX = pixelSizeX;
  21. double m_pixelSizeY = pixelSizeY;
  22. if ( DicomIO::getInstance().read( fileName, m_image ) )
  23. {
  24. if ( ( pixelSizeX < 0.0 ) && ( pixelSizeY < 0.0 ) )
  25. {
  26. m_pixelSizeX = m_image.GetResolutionX();
  27. m_pixelSizeY = m_image.GetResolutionY();
  28. }
  29. status = true;
  30. }
  31. else
  32. {
  33. status = false;
  34. }
  35. if ( status && ( m_pixelSizeX > 0.0 ) && ( m_pixelSizeY > 0.0 ) )
  36. {
  37. double pixelSize = m_pixelSizeX < m_pixelSizeY ? m_pixelSizeX : m_pixelSizeY;
  38. g_pCurrentScale = new CScale("DLL scale", pixelSize, pixelSize);
  39. }
  40. }
  41. return status;
  42. }
  43. bool PlaqueInterface::initialize( const char* buffer, int width, int height, int bpp, bool upsideDown, double pixelSizeX, double pixelSizeY )
  44. {
  45. if ( Mouchard::getInstance().IsDLLValid() && buffer &&
  46. ( pixelSizeX > 0.0 ) && ( pixelSizeY > 0.0 ) &&
  47. ( ( bpp == 8 ) || ( bpp == 24 ) || ( bpp == 32 ) ) )
  48. {
  49. bool padding = false;
  50. const unsigned long destWidth = 3 * width;
  51. const long nextRow = upsideDown ? -2 * width * bpp / 8 : 0;
  52. register const char* p = buffer + ( upsideDown ? ( height - 1 ) * width * bpp / 8 : 0 );
  53. const int gap = padding ? ( 4 - destWidth & 0x3 ) & 0x3 : 0;
  54. //const unsigned long count = ( destWidth + gap ) * height;
  55. m_image.Destroy();
  56. if ( m_image.Create( width, height, 24 ) )
  57. {
  58. if ( bpp == 8 )
  59. {
  60. register char* q = (char*)m_image.GetBits();
  61. register int x;
  62. register int y;
  63. register char value;
  64. for ( y = height; y--; p += nextRow, q += gap )
  65. {
  66. x = width;
  67. while ( x-- )
  68. {
  69. value = *p++;
  70. *q++ = value;
  71. *q++ = value;
  72. *q++ = value;
  73. }
  74. }
  75. }
  76. else if ( bpp == 24 )
  77. {
  78. register char* q = (char*)m_image.GetBits();
  79. register int x;
  80. register int y;
  81. for ( y = height; y--; p += nextRow, q += gap )
  82. {
  83. x = destWidth;
  84. while ( x-- )
  85. {
  86. *q++ = *p++;
  87. }
  88. }
  89. }
  90. else if ( bpp == 32 )
  91. {
  92. register char* q = (char*)m_image.GetBits();
  93. register int x;
  94. register int y;
  95. for ( y = height; y--; p += nextRow, q += gap )
  96. {
  97. x = width;
  98. while ( x-- )
  99. {
  100. // Pour Version Alchemy Flex :
  101. /*
  102. *q++ = *( p + 1 );
  103. *q++ = *( p + 2 );
  104. *q++ = *( p + 3 );
  105. p += 4;
  106. */
  107. *q++ = *( p + 0 );
  108. *q++ = *( p + 1 );
  109. *q++ = *( p + 2 );
  110. p += 4;
  111. }
  112. }
  113. }
  114. double pixelSize = ( pixelSizeX < pixelSizeY ) ? pixelSizeX : pixelSizeY;
  115. g_pCurrentScale = new CScale("DLL scale", pixelSize, pixelSize);
  116. return true;
  117. }
  118. }
  119. return false;
  120. }
  121. int PlaqueInterface::computePlaque( int x, int y, int nbPts, unsigned char *points, CPlaqueResult* result, int seuil1, int seuil2 )
  122. {
  123. int retour;
  124. int i;
  125. retour =2;
  126. if ( !m_image.IsNull() && result )
  127. {
  128. retour = 12;
  129. CPlaqueBase cplaque;
  130. retour = cplaque.calculPlaque(&m_image, x, y, nbPts, points, seuil1, seuil2);
  131. retour = 3;
  132. // Remplissage des valeurs dans result
  133. result->result->code_retour = retour;
  134. result->result->code_debug1 = cplaque.m_debug1;
  135. result->result->code_debug2 = cplaque.m_debug2;
  136. result->result->code_debug3 = cplaque.m_debug3;
  137. result->result->code_debug4 = cplaque.m_debug4;
  138. result->result->code_debug5 = cplaque.m_debug5;
  139. result->result->m_type = cplaque.m_type;
  140. result->result->m_Etape = cplaque.m_Etape;
  141. result->result->plaque_max_thickness = cplaque.Max();
  142. result->result->plaque_mean_thickness = cplaque.Mean();
  143. result->result->plaque_area = cplaque.Surface();
  144. result->result->plaque_mean_density = cplaque.Density();
  145. result->result->numberOfMeasures = cplaque.m_nMesures;
  146. result->result->m_nPtLongeantPlaque = cplaque.m_nPtLongeantPlaque;
  147. // result->result->m_nPtList = cplaque.m_nPtList;
  148. result->result->m_ptInferieur.x = cplaque.m_ptInferieur.x;
  149. result->result->m_ptInferieur.y = cplaque.m_ptInferieur.y;
  150. // result->result->m_dataImg = cplaque.m_wimg.data;
  151. // Transfert de l'image résultats de l'analyse
  152. unsigned char *dadd, *dadd2, *amax;
  153. result->result->m_nbpix = cplaque.m_wimg.nbpix;
  154. result->result->m_dataImg = new unsigned char[cplaque.m_wimg.nbpix];
  155. dadd = (unsigned char *) cplaque.m_wimg.data;
  156. amax = dadd + cplaque.m_wimg.nbpix;
  157. dadd2 = result->result->m_dataImg;
  158. while (dadd < amax)
  159. {
  160. *dadd2 = *dadd;
  161. dadd++;
  162. dadd2++;
  163. }
  164. if ( result->result->m_tPtLongeantPlaque )
  165. {
  166. delete[] result->result->m_tPtLongeantPlaque;
  167. }
  168. result->result->m_tPtLongeantPlaque = new plaque::Point[ cplaque.m_nPtLongeantPlaque ];
  169. result->result->m_nPtLongeantPlaque = cplaque.m_nPtLongeantPlaque;
  170. for ( i = 0; i < cplaque.m_nPtLongeantPlaque; i++ )
  171. {
  172. result->result->m_tPtLongeantPlaque[ i ].x = cplaque.m_tPtLongeantPlaque[ i ].x;
  173. result->result->m_tPtLongeantPlaque[ i ].y = cplaque.m_tPtLongeantPlaque[ i ].y;
  174. }
  175. if ( result->result->m_tbPtsTrouvesFin )
  176. {
  177. delete[] result->result->m_tbPtsTrouvesFin;
  178. }
  179. result->result->m_tbPtsTrouvesFin = new plaque::Point[ cplaque.m_nVecteursTrouves ];
  180. result->result->m_nVecteursTrouves = cplaque.m_nVecteursTrouves;
  181. for ( i = 0; i < cplaque.m_nVecteursTrouves; i++ )
  182. {
  183. result->result->m_tbPtsTrouvesFin[ i ].x = cplaque.m_tbPtsTrouvesFin[ i ].x;
  184. result->result->m_tbPtsTrouvesFin[ i ].y = cplaque.m_tbPtsTrouvesFin[ i ].y;
  185. }
  186. // Point *m_ptList;
  187. return retour;
  188. }
  189. else
  190. {
  191. result->result->code_retour = -1;
  192. }
  193. return retour;
  194. }
  195. float PlaqueInterface::getDistanceToFirstPoint( int x, int y, int x0, int y0 )
  196. {
  197. if ( g_pCurrentScale && !m_image.IsNull() )
  198. {
  199. Point pt( x, y );
  200. Point pt0( x0, y0 );
  201. return (float)g_pCurrentScale->Distance( pt, pt0 );
  202. }
  203. return 0.0f;
  204. }
  205. int PlaqueInterface::fonctionDebug( CPlaqueResult* result )
  206. {
  207. int retour;
  208. int i;
  209. if ( !m_image.IsNull() && result )
  210. {
  211. CPlaqueBase cplaque;
  212. retour = cplaque.TestFantome(&m_image, result);
  213. // Remplissage des valeurs dans result
  214. result->result->code_retour = retour;
  215. result->result->code_debug1 = cplaque.m_debug1;
  216. result->result->code_debug2 = cplaque.m_debug2;
  217. result->result->code_debug3 = cplaque.m_debug3;
  218. result->result->code_debug4 = cplaque.m_debug4;
  219. result->result->code_debug5 = cplaque.m_debug5;
  220. result->result->m_type = cplaque.m_type;
  221. result->result->m_Etape = cplaque.m_Etape;
  222. result->result->plaque_max_thickness = cplaque.Max();
  223. result->result->plaque_mean_thickness = cplaque.Mean();
  224. result->result->plaque_area = cplaque.Surface();
  225. result->result->plaque_mean_density = cplaque.Density();
  226. result->result->numberOfMeasures = cplaque.m_nMesures;
  227. result->result->m_nPtLongeantPlaque = cplaque.m_nPtLongeantPlaque;
  228. // result->result->m_nPtList = cplaque.m_nPtList;
  229. result->result->m_ptInferieur.x = cplaque.m_ptInferieur.x;
  230. result->result->m_ptInferieur.y = cplaque.m_ptInferieur.y;
  231. if ( result->result->m_tPtLongeantPlaque )
  232. {
  233. delete[] result->result->m_tPtLongeantPlaque;
  234. }
  235. result->result->m_tPtLongeantPlaque = new plaque::Point[ cplaque.m_nPtLongeantPlaque ];
  236. result->result->m_nPtLongeantPlaque = cplaque.m_nPtLongeantPlaque;
  237. for ( i = 0; i < cplaque.m_nPtLongeantPlaque; i++ )
  238. {
  239. result->result->m_tPtLongeantPlaque[ i ].x = cplaque.m_tPtLongeantPlaque[ i ].x;
  240. result->result->m_tPtLongeantPlaque[ i ].y = cplaque.m_tPtLongeantPlaque[ i ].y;
  241. }
  242. //-----------
  243. if ( result->result->m_tbPtsTrouvesFin )
  244. {
  245. delete[] result->result->m_tbPtsTrouvesFin;
  246. }
  247. result->result->m_tbPtsTrouvesFin = new plaque::Point[ cplaque.m_nVecteursTrouves ];
  248. result->result->m_nVecteursTrouves = cplaque.m_nVecteursTrouves;
  249. for ( i = 0; i < cplaque.m_nVecteursTrouves; i++ )
  250. {
  251. result->result->m_tbPtsTrouvesFin[ i ].x = cplaque.m_tbPtsTrouvesFin[ i ].x;
  252. result->result->m_tbPtsTrouvesFin[ i ].y = cplaque.m_tbPtsTrouvesFin[ i ].y;
  253. }
  254. // Point *m_ptList;
  255. }
  256. else
  257. {
  258. result->result->code_retour = -1;
  259. }
  260. return retour;
  261. }
  262. int PlaqueInterface::CalculerPlaqueManuelle(int nbPts, unsigned char *points, CPlaqueResult* result )
  263. {
  264. int retour;
  265. if ( !m_image.IsNull() && result )
  266. {
  267. CPlaqueBase cplaque;
  268. retour = cplaque.calculPlaque2(&m_image, nbPts, points);
  269. // Remplissage des valeurs dans result
  270. result->result->code_retour = retour;
  271. result->result->code_debug1 = cplaque.m_debug1;
  272. result->result->code_debug2 = cplaque.m_debug2;
  273. result->result->code_debug3 = cplaque.m_debug3;
  274. result->result->code_debug4 = cplaque.m_debug4;
  275. result->result->code_debug5 = cplaque.m_debug5;
  276. result->result->m_type = cplaque.m_type;
  277. result->result->m_Etape = cplaque.m_Etape;
  278. result->result->plaque_max_thickness = cplaque.Max();
  279. result->result->plaque_mean_thickness = cplaque.Mean();
  280. result->result->plaque_area = cplaque.Surface();
  281. result->result->plaque_mean_density = cplaque.Density();
  282. result->result->numberOfMeasures = cplaque.m_nMesures;
  283. result->result->m_nPtLongeantPlaque = cplaque.m_nPtLongeantPlaque;
  284. // result->result->m_nPtList = cplaque.m_nPtList;
  285. // result->result->m_ptInferieur.x = cplaque.m_ptInferieur.x;
  286. // result->result->m_ptInferieur.y = cplaque.m_ptInferieur.y;
  287. /*
  288. if ( result->result->m_tPtLongeantPlaque )
  289. {
  290. delete[] result->result->m_tPtLongeantPlaque;
  291. }
  292. result->result->m_tPtLongeantPlaque = new plaque::Point[ cplaque.m_nPtLongeantPlaque ];
  293. result->result->m_nPtLongeantPlaque = cplaque.m_nPtLongeantPlaque;
  294. for ( i = 0; i < cplaque.m_nPtLongeantPlaque; i++ )
  295. {
  296. result->result->m_tPtLongeantPlaque[ i ].x = cplaque.m_tPtLongeantPlaque[ i ].x;
  297. result->result->m_tPtLongeantPlaque[ i ].y = cplaque.m_tPtLongeantPlaque[ i ].y;
  298. }
  299. //-----------
  300. if ( result->result->m_tbPtsTrouvesFin )
  301. {
  302. delete[] result->result->m_tbPtsTrouvesFin;
  303. }
  304. result->result->m_tbPtsTrouvesFin = new plaque::Point[ cplaque.m_nVecteursTrouves ];
  305. result->result->m_nVecteursTrouves = cplaque.m_nVecteursTrouves;
  306. for ( i = 0; i < cplaque.m_nVecteursTrouves; i++ )
  307. {
  308. result->result->m_tbPtsTrouvesFin[ i ].x = cplaque.m_tbPtsTrouvesFin[ i ].x;
  309. result->result->m_tbPtsTrouvesFin[ i ].y = cplaque.m_tbPtsTrouvesFin[ i ].y;
  310. }
  311. */
  312. // Point *m_ptList;
  313. }
  314. else
  315. {
  316. result->result->code_retour = -1;
  317. }
  318. return retour;
  319. }
  320. int PlaqueInterface::OnLButtonUp( int x, int y, CPlaqueResult* result )
  321. {
  322. int retour;
  323. int i;
  324. if ( !m_image.IsNull() && result )
  325. {
  326. CPlaqueBase cplaque;
  327. retour = cplaque.OnLButtonUp(&m_image, x, y);
  328. // Remplissage des valeurs dans result
  329. result->result->code_retour = retour;
  330. result->result->code_debug1 = cplaque.m_debug1;
  331. result->result->code_debug2 = cplaque.m_debug2;
  332. result->result->code_debug3 = cplaque.m_debug3;
  333. result->result->code_debug4 = cplaque.m_debug4;
  334. result->result->code_debug5 = cplaque.m_debug5;
  335. result->result->m_type = cplaque.m_type;
  336. result->result->m_Etape = cplaque.m_Etape;
  337. result->result->plaque_max_thickness = cplaque.Max();
  338. result->result->plaque_mean_thickness = cplaque.Mean();
  339. result->result->plaque_area = cplaque.Surface();
  340. result->result->plaque_mean_density = cplaque.Density();
  341. result->result->numberOfMeasures = cplaque.m_nMesures;
  342. result->result->m_nPtLongeantPlaque = cplaque.m_nPtLongeantPlaque;
  343. // result->result->m_nPtList = cplaque.m_nPtList;
  344. result->result->m_ptInferieur.x = cplaque.m_ptInferieur.x;
  345. result->result->m_ptInferieur.y = cplaque.m_ptInferieur.y;
  346. for ( i = 0; i < cplaque.m_nPtLongeantPlaque; i++ )
  347. {
  348. // result->result->m_tPtLongeantPlaque[ i ].x = cplaque.m_tPtLongeantPlaque[ i ].x;
  349. // result->result->m_tPtLongeantPlaque[ i ].y = cplaque.m_tPtLongeantPlaque[ i ].y;
  350. }
  351. // Point *m_ptList;
  352. return 1;
  353. }
  354. else
  355. {
  356. result->result->code_retour = -1;
  357. }
  358. return 0;
  359. }
  360. int PlaqueInterface::getImageWidth()
  361. {
  362. return m_image.GetWidth();
  363. }
  364. int PlaqueInterface::getImageHeight()
  365. {
  366. return m_image.GetHeight();
  367. }
  368. int PlaqueInterface::getImageBitsPerPixel()
  369. {
  370. return m_image.GetBPP();
  371. }
  372. char* PlaqueInterface::getPixelArray()
  373. {
  374. return (char*) m_image.GetBits();
  375. }