29 #include <opencv2/core/core_c.h>    37         if(!image.empty() && image.depth() == CV_8U)
    39                 if(image.channels()==3)
    41                         const unsigned char * data = image.data;
    42                         if(image.channels() == 3)
    44                                 qtemp = QImage(image.cols, image.rows, QImage::Format_RGB32);
    45                                 for(
int y = 0; y < image.rows; ++y, data += image.cols*image.elemSize())
    47                                         for(
int x = 0; x < image.cols; ++x)
    49                                                 QRgb * p = ((QRgb*)qtemp.scanLine (y)) + x;
    52                                                         *p = qRgb(data[x * image.channels()+2], data[x * image.channels()+1], data[x * image.channels()]);
    56                                                         *p = qRgb(data[x * image.channels()], data[x * image.channels()+1], data[x * image.channels()+2]);
    62                 else if(image.channels() == 1)
    65                         qtemp = QImage(image.data, image.cols, image.rows, image.cols, QImage::Format_Indexed8).copy();
    66                         QVector<QRgb> my_table;
    67                         for(
int i = 0; i < 256; i++) my_table.push_back(qRgb(i,i,i));
    68                         qtemp.setColorTable(my_table);
    72                         printf(
"Wrong image format, must have 1 or 3 channels\n");
    81         if(!image.isNull() && image.depth() == 32 && image.format() == QImage::Format_RGB32)
    85                 cvImage = cv::Mat(image.height(), image.width(), CV_8UC3);
    86                 unsigned char * data = cvImage.data;
    87                 for(
int y = 0; y < image.height(); ++y, data+=cvImage.cols*cvImage.elemSize())
    89                         for(
int x = 0; x < image.width(); ++x)
    91                                 QRgb rgb = image.pixel(x, y);
    92                                 data[x * channels+2] = qRed(rgb); 
    93                                 data[x * channels+1] = qGreen(rgb); 
    94                                 data[x * channels] = qBlue(rgb); 
   100                 printf(
"Failed to convert image : depth=%d(!=32) format=%d(!=%d)\n", image.depth(), image.format(), QImage::Format_RGB32);
   105 #if CV_MAJOR_VERSION < 3   109         if (image && image->depth == IPL_DEPTH_8U && cvGetSize(image).width>0)
   111                 const char * data = image->imageData;
   112                 qtemp= QImage(image->width, image->height,QImage::Format_RGB32);
   114                 for(
int y = 0; y < image->height; ++y, data +=image->widthStep )
   116                         for(
int x = 0; x < image->width; ++x)
   118                                 uint *p = (
uint*)qtemp.scanLine (y) + x;
   119                                 *p = qRgb(data[x * image->nChannels+2], data[x * image->nChannels+1],data[x * image->nChannels]);
   123         else if(image && image->depth != IPL_DEPTH_8U)
   125                 printf(
"Wrong iplImage format, must be 8_bits\n");
   133         IplImage * iplTmp = 0;
   134         if(!image.isNull() && image.depth() == 32 && image.format() == QImage::Format_RGB32)
   138                 iplTmp = cvCreateImage(cvSize(image.width(), image.height()), IPL_DEPTH_8U, channels);
   139                 char * data = iplTmp->imageData;
   140                 for(
int y = 0; y < image.height(); ++y, data+=iplTmp->widthStep)
   142                         for(
int x = 0; x < image.width(); ++x)
   144                                 QRgb rgb = image.pixel(x, y);
   145                                 data[x * channels+2] = qRed(rgb); 
   146                                 data[x * channels+1] = qGreen(rgb); 
   147                                 data[x * channels] = qBlue(rgb); 
   153                 printf(
"Failed to convert image : depth=%d(!=32) format=%d(!=%d)\n", image.depth(), image.format(), QImage::Format_RGB32);
 FINDOBJECT_EXP cv::Mat cvtQImage2CvMat(const QImage &image)
FINDOBJECT_EXP QImage cvtIplImage2QImage(const IplImage *image)
FINDOBJECT_EXP IplImage * cvtQImage2IplImage(const QImage &image)
FINDOBJECT_EXP QImage cvtCvMat2QImage(const cv::Mat &image, bool isBgr=true)