ToolDialog.cpp 11 KB

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  1. #include "ToolDialog.h"
  2. #include <QImage>
  3. #include <QFileInfo>
  4. #include <QFileDialog>
  5. #include <QElapsedTimer>
  6. #include <QGridLayout>
  7. ToolDialogImpl::ToolDialogImpl(QWidget *parent, DllTool* pDllTool)
  8. : DllToolDialog(parent)
  9. {
  10. ui.setupUi(this);
  11. this->setWindowFlags(Qt::Dialog | Qt::WindowMaximizeButtonHint | Qt::WindowCloseButtonHint /*| Qt::WindowStaysOnTopHint*/);
  12. connect(this, SIGNAL(sigUpdateUI()), this, SLOT(on_UpdateUI()));
  13. // 显示控件初始化
  14. hwndUnit = new HWndUnit(this);
  15. Util::ShowUnitInWidget(ui.Image_widget, hwndUnit);
  16. hwndUnit->getHWndCtrl()->useROIController(&roiController);
  17. //connect(&roiController, SIGNAL(ROIChange(const ViewMessage)), this, SLOT(on_ROIChange(const ViewMessage)));
  18. // ROIRect1* roi = new ROIRect1();
  19. // roi->setTitle("搜索区域");
  20. // roiController.setROISign(ROIOperation::Negative);
  21. // roiController.setROIShape(roi);
  22. // roiController.mouseDownAction(500, 500);
  23. m_pCls = nullptr;
  24. }
  25. ToolDialogImpl::~ToolDialogImpl()
  26. {
  27. if (m_pCls != nullptr)
  28. {
  29. DestroyClsObj(m_pCls);
  30. }
  31. }
  32. cv::Mat HImageToMat(const HalconCpp::HImage& hImg)
  33. {
  34. cv::Mat mat;
  35. int channels = hImg.CountChannels()[0].I();
  36. HalconCpp::HImage hImage = hImg.ConvertImageType("byte");
  37. Hlong hW = 0, hH = 0; HString cType;
  38. if (channels == 1) {
  39. void* r = hImage.GetImagePointer1(&cType, &hW, &hH);
  40. mat.create(int(hH), int(hW), CV_8UC1);
  41. memcpy(mat.data, static_cast<unsigned char*>(r), int(hW * hH));
  42. }
  43. else if (channels == 3) {
  44. void* r = NULL, * g = NULL, * b = NULL;
  45. hImage.GetImagePointer3(&r, &g, &b, &cType, &hW, &hH);
  46. mat.create(int(hH), int(hW), CV_8UC3);
  47. std::vector<cv::Mat> vec(3);
  48. vec[0].create(int(hH), int(hW), CV_8UC1);
  49. vec[1].create(int(hH), int(hW), CV_8UC1);
  50. vec[2].create(int(hH), int(hW), CV_8UC1);
  51. memcpy(vec[2].data, static_cast<unsigned char*>(r), int(hW * hH));
  52. memcpy(vec[1].data, static_cast<unsigned char*>(g), int(hW * hH));
  53. memcpy(vec[0].data, static_cast<unsigned char*>(b), int(hW * hH));
  54. cv::merge(vec, mat);
  55. }
  56. return mat;
  57. }
  58. HalconCpp::HImage MatToHImage(cv::Mat& cv_img)
  59. {
  60. HalconCpp::HObject H_img;
  61. if (cv_img.channels() == 1)
  62. {
  63. int height = cv_img.rows, width = cv_img.cols;
  64. int size = height * width;
  65. uchar* temp = new uchar[size];
  66. memcpy(temp, cv_img.data, size);
  67. HalconCpp::GenImage1(&H_img, "byte", width, height, (Hlong)(temp));
  68. delete[] temp;
  69. }
  70. else if (cv_img.channels() == 3)
  71. {
  72. int height = cv_img.rows, width = cv_img.cols;
  73. int size = height * width;
  74. uchar* B = new uchar[size];
  75. uchar* G = new uchar[size];
  76. uchar* R = new uchar[size];
  77. for (int i = 0; i < height; i++)
  78. {
  79. uchar* p = cv_img.ptr<uchar>(i);
  80. for (int j = 0; j < width; j++)
  81. {
  82. B[i * width + j] = p[3 * j];
  83. G[i * width + j] = p[3 * j + 1];
  84. R[i * width + j] = p[3 * j + 2];
  85. }
  86. }
  87. HalconCpp::GenImage3(&H_img, "byte", width, height, (Hlong)(R), (Hlong)(G), (Hlong)(B));
  88. delete[] R;
  89. delete[] G;
  90. delete[] B;
  91. }
  92. return H_img;
  93. }
  94. HalconCpp::HImage Mat2HImage(cv::Mat arg)
  95. {
  96. cv::Mat argMat;
  97. HalconCpp::HImage dstImg;
  98. argMat = arg.clone();
  99. void* p = nullptr;
  100. Hlong wd = argMat.cols;
  101. Hlong ht = argMat.rows;
  102. int cvType = argMat.type();
  103. int countChannels = argMat.channels();
  104. HalconCpp::HString hType;
  105. if (!argMat.isContinuous()) {
  106. return HalconCpp::HImage();
  107. }
  108. if (cvType == CV_8UC3) {
  109. hType = "byte";
  110. std::vector< cv::Mat> channels;
  111. cv::split(argMat, channels);
  112. uchar* pr, * pg, * pb;
  113. pr = channels.at(2).ptr<uchar>(0);
  114. pg = channels.at(1).ptr<uchar>(0);
  115. pb = channels.at(0).ptr<uchar>(0);
  116. dstImg.GenImage3(hType, wd, ht, pr, pg, pb);
  117. }
  118. else if (cvType == CV_8UC1) {
  119. hType = "byte";
  120. void* p = argMat.ptr<uchar>(0);
  121. dstImg.GenImage1(hType, wd, ht, p);
  122. }
  123. else if (cvType == CV_32FC1) {
  124. hType = "real";
  125. void* p = argMat.ptr<float>(0);
  126. dstImg.GenImage1(hType, wd, ht, p);
  127. }
  128. else if (cvType == CV_16U) {
  129. hType = "uint2";
  130. void* p = argMat.ptr<float>(0);
  131. dstImg.GenImage1(hType, wd, ht, p);
  132. }
  133. return dstImg;
  134. }
  135. cv::Mat HImage2Mat(HalconCpp::HImage arg)
  136. {
  137. HalconCpp::HImage argImg;
  138. argImg = arg.Clone();
  139. void* p = nullptr;
  140. Hlong wd, ht;
  141. HalconCpp::HString hType;
  142. int channels = argImg.CountChannels();
  143. p = argImg.GetImagePointer1(&hType, &wd, &ht);
  144. QString type = hType.Text();
  145. if (channels == 3 && type == "byte")
  146. {
  147. cv::Mat newImage;
  148. Hlong temp_wd, temp_ht;
  149. HalconCpp::HString temp_type;
  150. std::vector<cv::Mat> channels_BGR;
  151. auto&& r = argImg.AccessChannel(1);
  152. auto&& g = argImg.AccessChannel(2);
  153. auto&& b = argImg.AccessChannel(3);
  154. void* pCvr = r.GetImagePointer1(&temp_type, &temp_wd, &temp_ht);
  155. void* pCvg = g.GetImagePointer1(&temp_type, &temp_wd, &temp_ht);
  156. void* pCvb = b.GetImagePointer1(&temp_type, &temp_wd, &temp_ht);
  157. channels_BGR.push_back(cv::Mat(ht, wd, CV_8UC1, pCvb));
  158. channels_BGR.push_back(cv::Mat(ht, wd, CV_8UC1, pCvg));
  159. channels_BGR.push_back(cv::Mat(ht, wd, CV_8UC1, pCvr));
  160. cv::merge(channels_BGR, newImage);
  161. return newImage;
  162. }
  163. else if (type == "byte") {
  164. return cv::Mat(ht, wd, CV_8UC1, p);
  165. }
  166. else if (type == "real") {
  167. return cv::Mat(ht, wd, CV_32FC1, p);
  168. }
  169. else if (type == "uint2") {
  170. return cv::Mat(ht, wd, CV_16U, p);
  171. }
  172. else {
  173. return cv::Mat();
  174. }
  175. }
  176. // 伪彩
  177. cv::Mat gray2pseudocolor(const cv::Mat& scaledGray)
  178. {
  179. cv::Mat outputPseudocolor(scaledGray.size(), CV_8UC3);
  180. unsigned char grayValue;
  181. for (int y = 0; y < scaledGray.rows; y++)
  182. for (int x = 0; x < scaledGray.cols; x++)
  183. {
  184. //获取灰度值
  185. grayValue = scaledGray.at<uchar>(y, x);
  186. cv::Vec3b& pixel = outputPseudocolor.at<cv::Vec3b>(y, x);
  187. //给mat的RGB三通道赋值 orange 255 127 0
  188. pixel[0] = abs(255 - grayValue);
  189. pixel[1] = abs(127 - grayValue);
  190. pixel[2] = abs(0 - grayValue);
  191. }
  192. return outputPseudocolor;
  193. }
  194. Mat convertTo3Channels(const Mat& binImg)
  195. {
  196. Mat three_channel = Mat::zeros(binImg.rows, binImg.cols, CV_8UC3);
  197. std::vector<Mat> channels;
  198. for (int i = 0; i < 3; i++)
  199. {
  200. channels.push_back(binImg);
  201. }
  202. merge(channels, three_channel);
  203. return three_channel;
  204. }
  205. VPEnum::RETURN_VALUE ToolDialogImpl::Execute()
  206. {
  207. try
  208. {
  209. cv::Mat BaseImg = HImageToMat(m_Image);
  210. cv::Mat imgMat = BaseImg;
  211. int ch = BaseImg.channels();
  212. if ( ch== 1 )
  213. {
  214. imgMat = convertTo3Channels(BaseImg);
  215. }
  216. int x = imgMat.step;
  217. int y = imgMat.channels();
  218. if (m_pCls != nullptr && m_pCls->getStatus() == ClsStatus::Cls_Success)
  219. {
  220. int resultClass = -1; //图片类别
  221. float prob = 0;
  222. resultClass = m_pCls->Evaluate(imgMat); //类别id
  223. prob = m_pCls->getProbability(); //可能性
  224. HTuple Msg = HTuple();
  225. Msg[0] = "Class Index: " + (HTuple)(int)resultClass;
  226. Msg[1] = "Class Score: " + (HTuple)prob;
  227. hwndUnit->ShowImage(m_Image);
  228. hwndUnit->ShowMsg(Msg);
  229. hwndUnit->Refresh();
  230. }
  231. }
  232. catch (...)
  233. {
  234. qWarning() << "Execute() Error";
  235. }
  236. emit sigUpdateUI();
  237. return VPEnum::RETURN_VALUE::Success;
  238. }
  239. void ToolDialogImpl::on_ROIChange(const ViewMessage& sign)
  240. {
  241. switch (sign)
  242. {
  243. case ViewMessage::MovingROI:
  244. {
  245. ROI* roi = roiController.getActiveROI();
  246. hv_roiDate = roi->getROIData();
  247. try
  248. {
  249. GenRectangle1(&m_objROI, hv_roiDate[0], hv_roiDate[1], hv_roiDate[2], hv_roiDate[3]);
  250. }
  251. catch (...)
  252. {
  253. }
  254. }
  255. case ViewMessage::UpdateROI:
  256. case ViewMessage::CreatedROI:
  257. {
  258. roiController.defineModelROI();
  259. ROI* roi = roiController.getActiveROI();
  260. hv_roiDate = roi->getROIData();
  261. try
  262. {
  263. GenRectangle1(&m_objROI, hv_roiDate[0], hv_roiDate[1], hv_roiDate[2], hv_roiDate[3]);
  264. }
  265. catch (...)
  266. {
  267. }
  268. }
  269. break;
  270. default:
  271. break;
  272. }
  273. }
  274. /// <summary>
  275. ///
  276. /// </summary>
  277. /// <param name="bRun"></param>
  278. void ToolDialogImpl::Running(bool bRun)
  279. {
  280. }
  281. /// <summary>
  282. ///
  283. /// </summary>
  284. /// <param name="ar"></param>
  285. /// <param name="bIsOut"></param>
  286. /// <returns></returns>
  287. bool ToolDialogImpl::Serialized(QDataStream& ar, bool bIsOut)
  288. {
  289. int paranum;//参数数量
  290. if (bIsOut)//保存参数流程
  291. {
  292. paranum = 3;
  293. ar << paranum;//先保存参数数量
  294. ar << (int)1 << hv_roiDate;
  295. ar << (int)2 << roiController;
  296. ar << (int)3 << m_objROI;
  297. }
  298. else//加载参数流程,参数加载顺序一定要跟保存顺序一致
  299. {
  300. int nSize1 = 0;
  301. int para;
  302. ar >> paranum;//读取参数数量
  303. for (int i = 0; i < paranum; i++)
  304. {
  305. ar >> para;
  306. switch (para)
  307. {
  308. case 1: ar >> hv_roiDate; break;
  309. case 2: ar >> roiController; break;
  310. case 3: ar >> m_objROI; break;
  311. default:
  312. {
  313. qWarning() << "Serialized(In) Error" ;
  314. return false;
  315. }
  316. break;
  317. }
  318. }
  319. }
  320. return true;
  321. }
  322. void ToolDialogImpl::on_UpdateUI()
  323. {
  324. }
  325. /// <summary>
  326. /// 确定
  327. /// </summary>
  328. void ToolDialogImpl::on_btnOK_clicked()
  329. {
  330. this->hide();
  331. }
  332. /// <summary>
  333. /// 取消按钮
  334. /// </summary>
  335. void ToolDialogImpl::on_btnCancel_clicked()
  336. {
  337. // 将本工具的恢复到打开工具之前的状态
  338. RecoverData();
  339. }
  340. /// <summary>
  341. /// 测试按钮
  342. /// </summary>
  343. void ToolDialogImpl::on_btnExecute_clicked()
  344. {
  345. QElapsedTimer toolTimer;
  346. toolTimer.start();
  347. // 发送事件
  348. ToolEvent* pToolEvent = new ToolEvent(m_strPouName, m_strInstanceName, TOOL_EVENT_TYPE::TOOL_TRIGGER);
  349. QCoreApplication::sendEvent(m_pEventTarget, pToolEvent);
  350. // 统计返回值
  351. VPEnum::RETURN_VALUE ret = pToolEvent->ret;
  352. double nExecTime = toolTimer.elapsed();
  353. QString str;
  354. str = QString("耗时: %1 ms").arg(nExecTime, 0, 'G', 5);
  355. ui.label_time->setText(str);
  356. str = QString("状态: %1 ").arg(QMetaEnum::fromType<VPEnum::RETURN_VALUE>().key((short)ret));
  357. ui.label_state->setText(str);
  358. delete pToolEvent;
  359. }
  360. void ToolDialogImpl::on_btnLoadMode_clicked()
  361. {
  362. QString OpenFile, OpenFilePath;
  363. OpenFile = QFileDialog::getOpenFileName(this,
  364. "please choose an modes file",
  365. "C:\\VisionPlus_V3.0\\AI_Modes\\",
  366. "Modes Files(*.BHD);;All(*.*)");
  367. if (!OpenFile.isEmpty())
  368. {
  369. try
  370. {
  371. qWarning() << "API版本: " << GetCurrentVersion() ;
  372. int nGPU_ID = 0;
  373. int nBatchSize = 32;
  374. QByteArray ba = OpenFile.toLatin1(); // must
  375. char* modelPath = ba.data();
  376. m_pCls = CreateClsObjV3(modelPath, nGPU_ID, nBatchSize);
  377. if (m_pCls != nullptr)
  378. {
  379. ClsStatus status = m_pCls->getStatus();
  380. if (status == ClsStatus::Cls_Success)
  381. {
  382. }
  383. }
  384. else
  385. {
  386. qWarning() << modelPath << "error";
  387. return;
  388. }
  389. ReadImage(&m_Image, "C://class_3.bmp");
  390. hwndUnit->ShowImage(m_Image);
  391. hwndUnit->Refresh();
  392. }
  393. catch (...)
  394. {
  395. qWarning() << "Error";
  396. }
  397. }
  398. }
  399. void ToolDialogImpl::on_btnReadImg_clicked()
  400. {
  401. QString OpenFile, OpenFilePath;
  402. OpenFile = QFileDialog::getOpenFileName(this,
  403. "please choose an image file",
  404. "C:\\VisionPlus_V3.0\\DemoImage\\",
  405. "Image Files(*.jpg *.png *.bmp *.pgm *.pbm);;All(*.*)");
  406. if (!OpenFile.isEmpty())
  407. {
  408. try
  409. {
  410. ReadImage(&m_Image, OpenFile.toStdString().c_str());
  411. m_QImage.load(OpenFile);
  412. hwndUnit->ShowImage(m_Image);
  413. hwndUnit->Refresh();
  414. }
  415. catch (...)
  416. {
  417. qWarning() << "Error";
  418. }
  419. }
  420. }