ctkVTKHistogram.cpp 12 KB

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  1. /*=========================================================================
  2. Library: CTK
  3. Copyright (c) Kitware Inc.
  4. Licensed under the Apache License, Version 2.0 (the "License");
  5. you may not use this file except in compliance with the License.
  6. You may obtain a copy of the License at
  7. http://www.apache.org/licenses/LICENSE-2.0.txt
  8. Unless required by applicable law or agreed to in writing, software
  9. distributed under the License is distributed on an "AS IS" BASIS,
  10. WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  11. See the License for the specific language governing permissions and
  12. limitations under the License.
  13. =========================================================================*/
  14. /// Qt includes
  15. #include <QColor>
  16. #include <QDebug>
  17. /// CTK includes
  18. #include "ctkVTKHistogram.h"
  19. #include "ctkLogger.h"
  20. /// VTK includes
  21. #include <vtkDataArray.h>
  22. #include <vtkIntArray.h>
  23. #include <vtkMath.h>
  24. #include <vtkSmartPointer.h>
  25. /// STL include
  26. #include <limits>
  27. //--------------------------------------------------------------------------
  28. static ctkLogger logger("org.commontk.libs.visualization.core.ctkVTKHistogram");
  29. //--------------------------------------------------------------------------
  30. //-----------------------------------------------------------------------------
  31. class ctkVTKHistogramPrivate
  32. {
  33. public:
  34. ctkVTKHistogramPrivate();
  35. vtkSmartPointer<vtkDataArray> DataArray;
  36. vtkSmartPointer<vtkIntArray> Bins;
  37. int UserNumberOfBins;
  38. int Component;
  39. mutable double Range[2];
  40. int MinBin;
  41. int MaxBin;
  42. int computeNumberOfBins()const;
  43. };
  44. //-----------------------------------------------------------------------------
  45. ctkVTKHistogramPrivate::ctkVTKHistogramPrivate()
  46. {
  47. this->Bins = vtkSmartPointer<vtkIntArray>::New();
  48. this->UserNumberOfBins = -1;
  49. this->Component = 0;
  50. this->Range[0] = this->Range[1] = 0.;
  51. this->MinBin = 0;
  52. this->MaxBin = 0;
  53. }
  54. //-----------------------------------------------------------------------------
  55. int ctkVTKHistogramPrivate::computeNumberOfBins()const
  56. {
  57. if (this->DataArray.GetPointer() == 0)
  58. {
  59. return -1;
  60. }
  61. if (this->UserNumberOfBins > 0)
  62. {
  63. return this->UserNumberOfBins;
  64. }
  65. return static_cast<int>(this->Range[1] - this->Range[0]) + 1;
  66. }
  67. //-----------------------------------------------------------------------------
  68. ctkVTKHistogram::ctkVTKHistogram(QObject* parentObject)
  69. :ctkHistogram(parentObject)
  70. , d_ptr(new ctkVTKHistogramPrivate)
  71. {
  72. }
  73. //-----------------------------------------------------------------------------
  74. ctkVTKHistogram::ctkVTKHistogram(vtkDataArray* dataArray,
  75. QObject* parentObject)
  76. :ctkHistogram(parentObject)
  77. , d_ptr(new ctkVTKHistogramPrivate)
  78. {
  79. this->setDataArray(dataArray);
  80. }
  81. //-----------------------------------------------------------------------------
  82. ctkVTKHistogram::~ctkVTKHistogram()
  83. {
  84. }
  85. //-----------------------------------------------------------------------------
  86. int ctkVTKHistogram::count()const
  87. {
  88. Q_D(const ctkVTKHistogram);
  89. return d->Bins->GetNumberOfTuples();
  90. }
  91. //-----------------------------------------------------------------------------
  92. void ctkVTKHistogram::setRange(qreal minRange, qreal maxRange)
  93. {
  94. Q_D(const ctkVTKHistogram);
  95. if (d->DataArray.GetPointer() == 0)
  96. {
  97. //Q_ASSERT(d->DataArray.GetPointer());
  98. logger.warn("no data array. range will be reset when setting array.");
  99. minRange = 1.; // set incorrect values
  100. maxRange = 0.;
  101. return;
  102. }
  103. if (minRange >= maxRange)
  104. {
  105. //Q_ASSERT(d->DataArray.GetPointer());
  106. logger.warn("minRange >= maxRange");
  107. qreal pivot = minRange;
  108. minRange = maxRange;
  109. maxRange = pivot;
  110. }
  111. int numberOfBinsBefore = d->computeNumberOfBins();
  112. d->Range[0] = minRange;
  113. d->Range[1] = maxRange;
  114. if (d->computeNumberOfBins() != numberOfBinsBefore)
  115. {
  116. this->build();
  117. }
  118. }
  119. //-----------------------------------------------------------------------------
  120. void ctkVTKHistogram::range(qreal& minRange, qreal& maxRange)const
  121. {
  122. Q_D(const ctkVTKHistogram);
  123. if (d->DataArray.GetPointer() == 0)
  124. {
  125. //Q_ASSERT(d->DataArray.GetPointer());
  126. logger.warn("no dataArray");
  127. minRange = 1.; // set incorrect values
  128. maxRange = 0.;
  129. return;
  130. }
  131. minRange = d->Range[0];
  132. maxRange = d->Range[1];
  133. }
  134. //-----------------------------------------------------------------------------
  135. void ctkVTKHistogram::resetRange()
  136. {
  137. Q_D(ctkVTKHistogram);
  138. if (d->DataArray.GetPointer() == 0)
  139. {
  140. //Q_ASSERT(d->DataArray.GetPointer());
  141. logger.warn("no dataArray");
  142. d->Range[0] = 1.; // set incorrect values
  143. d->Range[1] = 0.;
  144. return;
  145. }
  146. if (d->DataArray->GetDataType() == VTK_CHAR ||
  147. d->DataArray->GetDataType() == VTK_SIGNED_CHAR ||
  148. d->DataArray->GetDataType() == VTK_UNSIGNED_CHAR)
  149. {
  150. d->Range[0] = d->DataArray->GetDataTypeMin();
  151. d->Range[1] = d->DataArray->GetDataTypeMax();
  152. }
  153. else
  154. {
  155. d->DataArray->GetRange(d->Range, d->Component);
  156. if (d->DataArray->GetDataType() == VTK_FLOAT ||
  157. d->DataArray->GetDataType() == VTK_DOUBLE)
  158. {
  159. d->Range[1] += 0.01;
  160. }
  161. //else
  162. // {
  163. // this->Range[1] += 1;
  164. // }
  165. }
  166. }
  167. //-----------------------------------------------------------------------------
  168. QVariant ctkVTKHistogram::minValue()const
  169. {
  170. //Q_D(const ctkVTKHistogram);
  171. return 0;//d->MinBin;
  172. }
  173. //-----------------------------------------------------------------------------
  174. QVariant ctkVTKHistogram::maxValue()const
  175. {
  176. Q_D(const ctkVTKHistogram);
  177. return d->MaxBin;
  178. }
  179. //-----------------------------------------------------------------------------
  180. ctkControlPoint* ctkVTKHistogram::controlPoint(int index)const
  181. {
  182. Q_D(const ctkVTKHistogram);
  183. ctkHistogramBar* cp = new ctkHistogramBar();
  184. cp->P.X = this->indexToPos(index);
  185. cp->P.Value = d->Bins->GetValue(index);
  186. return cp;
  187. }
  188. //-----------------------------------------------------------------------------
  189. QVariant ctkVTKHistogram::value(qreal pos)const
  190. {
  191. QSharedPointer<ctkControlPoint> point(this->controlPoint(this->posToIndex(pos)));
  192. return point->value();
  193. }
  194. //-----------------------------------------------------------------------------
  195. qreal ctkVTKHistogram::indexToPos(int index)const
  196. {
  197. qreal posRange[2];
  198. this->range(posRange[0], posRange[1]);
  199. return posRange[0] + index * ((posRange[1] - posRange[0]) / (this->count() - 1));
  200. }
  201. //-----------------------------------------------------------------------------
  202. int ctkVTKHistogram::posToIndex(qreal pos)const
  203. {
  204. qreal posRange[2];
  205. this->range(posRange[0], posRange[1]);
  206. return (pos - posRange[0]) / ((posRange[1] - posRange[0]) / (this->count() - 1));
  207. }
  208. //-----------------------------------------------------------------------------
  209. void ctkVTKHistogram::setDataArray(vtkDataArray* newDataArray)
  210. {
  211. Q_D(ctkVTKHistogram);
  212. if (newDataArray == d->DataArray)
  213. {
  214. return;
  215. }
  216. d->DataArray = newDataArray;
  217. this->resetRange();
  218. this->qvtkReconnect(d->DataArray,vtkCommand::ModifiedEvent,
  219. this, SIGNAL(changed()));
  220. emit changed();
  221. }
  222. //-----------------------------------------------------------------------------
  223. vtkDataArray* ctkVTKHistogram::dataArray()const
  224. {
  225. Q_D(const ctkVTKHistogram);
  226. return d->DataArray;
  227. }
  228. //-----------------------------------------------------------------------------
  229. void ctkVTKHistogram::setComponent(int component)
  230. {
  231. Q_D(ctkVTKHistogram);
  232. d->Component = component;
  233. // need rebuild
  234. }
  235. //-----------------------------------------------------------------------------
  236. int ctkVTKHistogram::component()const
  237. {
  238. Q_D(const ctkVTKHistogram);
  239. return d->Component;
  240. }
  241. //-----------------------------------------------------------------------------
  242. int ctkVTKHistogram::numberOfBins()const
  243. {
  244. Q_D(const ctkVTKHistogram);
  245. return d->UserNumberOfBins;
  246. }
  247. //-----------------------------------------------------------------------------
  248. void ctkVTKHistogram::setNumberOfBins(int number)
  249. {
  250. Q_D(ctkVTKHistogram);
  251. d->UserNumberOfBins = number;
  252. }
  253. //-----------------------------------------------------------------------------
  254. template <class T>
  255. void populateBins(vtkIntArray* bins, const ctkVTKHistogram* histogram)
  256. {
  257. vtkDataArray* scalars = histogram->dataArray();
  258. int* binsPtr = bins->WritePointer(0, bins->GetNumberOfTuples());
  259. // reset bins to 0
  260. memset(binsPtr, 0, bins->GetNumberOfComponents()*bins->GetNumberOfTuples()*sizeof(int));
  261. const vtkIdType componentNumber = scalars->GetNumberOfComponents();
  262. const vtkIdType tupleNumber = scalars->GetNumberOfTuples();
  263. int component = histogram->component();
  264. double range[2];
  265. histogram->range(range[0], range[1]);
  266. T offset = static_cast<T>(range[0]);
  267. T* ptr = static_cast<T*>(scalars->WriteVoidPointer(0, tupleNumber));
  268. T* endPtr = ptr + tupleNumber * componentNumber;
  269. ptr += component;
  270. for (; ptr < endPtr; ptr += componentNumber)
  271. {
  272. Q_ASSERT( (static_cast<long long>(*ptr) - offset) ==
  273. (static_cast<int>(*ptr) - offset));
  274. binsPtr[static_cast<int>(*ptr - offset)]++;
  275. }
  276. }
  277. //-----------------------------------------------------------------------------
  278. template <class T>
  279. void populateIrregularBins(vtkIntArray* bins, const ctkVTKHistogram* histogram)
  280. {
  281. vtkDataArray* scalars = histogram->dataArray();
  282. int* binsPtr = bins->WritePointer(0, bins->GetNumberOfComponents()*bins->GetNumberOfTuples());
  283. // reset bins to 0
  284. memset(binsPtr, 0, bins->GetNumberOfTuples() * sizeof(int));
  285. const vtkIdType componentNumber = scalars->GetNumberOfComponents();
  286. const vtkIdType tupleNumber = scalars->GetNumberOfTuples();
  287. int component = histogram->component();
  288. double range[2];
  289. histogram->range(range[0], range[1]);
  290. double offset = range[0];
  291. double binWidth = 1.;
  292. if (range[1] != range[0])
  293. {
  294. binWidth = static_cast<double>(bins->GetNumberOfTuples()) / (range[1] - range[0]);
  295. }
  296. T* ptr = static_cast<T*>(scalars->WriteVoidPointer(0, tupleNumber));
  297. T* endPtr = ptr + tupleNumber * componentNumber;
  298. ptr += component;
  299. for (; ptr < endPtr; ptr += componentNumber)
  300. {
  301. if ((std::numeric_limits<T>::has_quiet_NaN &&
  302. vtkMath::IsNan(*ptr)) || vtkMath::IsInf(*ptr))
  303. {
  304. continue;
  305. }
  306. binsPtr[vtkMath::Floor((static_cast<double>(*ptr) - offset) * binWidth)]++;
  307. }
  308. }
  309. //-----------------------------------------------------------------------------
  310. void ctkVTKHistogram::build()
  311. {
  312. Q_D(ctkVTKHistogram);
  313. if (d->DataArray.GetPointer() == 0)
  314. {
  315. d->MinBin = 0;
  316. d->MaxBin = 0;
  317. d->Bins->SetNumberOfTuples(0);
  318. return;
  319. }
  320. const int binCount = d->computeNumberOfBins();
  321. d->Bins->SetNumberOfComponents(1);
  322. d->Bins->SetNumberOfTuples(binCount);
  323. if (binCount <= 0)
  324. {
  325. d->MinBin = 0;
  326. d->MaxBin = 0;
  327. return;
  328. }
  329. // What is the type of the array, discrete or reals
  330. if (static_cast<double>(binCount) != (d->Range[1] - d->Range[0] + 1))
  331. {
  332. switch(d->DataArray->GetDataType())
  333. {
  334. vtkTemplateMacro(populateIrregularBins<VTK_TT>(d->Bins, this));
  335. }
  336. }
  337. else
  338. {
  339. switch(d->DataArray->GetDataType())
  340. {
  341. vtkTemplateMacro(populateBins<VTK_TT>(d->Bins, this));
  342. }
  343. }
  344. // update Min/Max values
  345. int* binPtr = d->Bins->GetPointer(0);
  346. int* endPtr = d->Bins->GetPointer(binCount-1);
  347. d->MinBin = *endPtr;
  348. d->MaxBin = *endPtr;
  349. for (;binPtr < endPtr; ++binPtr)
  350. {
  351. d->MinBin = qMin(*binPtr, d->MinBin);
  352. d->MaxBin = qMax(*binPtr, d->MaxBin);
  353. }
  354. emit changed();
  355. }
  356. //-----------------------------------------------------------------------------
  357. void ctkVTKHistogram::removeControlPoint( qreal pos )
  358. {
  359. Q_UNUSED(pos);
  360. // TO BE IMPLEMENTED
  361. }