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add method to fill soft cascade
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7290d8576d
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@ -494,9 +494,9 @@ class CV_EXPORTS SoftCascade
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{
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public:
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SoftCascade();
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SoftCascade( const string& filename );
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SoftCascade( const string& filename, const float minScale = 0.4f, const float maxScale = 5.f);
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virtual ~SoftCascade();
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bool load( const string& filename );
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bool load( const string& filename, const float minScale = 0.4f, const float maxScale = 5.f);
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virtual void detectMultiScale(const Mat& image, const std::vector<cv::Rect>& rois, std::vector<cv::Rect>& objects, double factor = 1.05, int step = 4, int rejectfactor = 1);
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@ -506,7 +506,15 @@ protected:
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// int stripSize, int yStep, double factor, vector<Rect>& candidates,
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// vector<int>& rejectLevels, vector<double>& levelWeights, bool outputRejectLevels=false);
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enum { BOOST = 0 };
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enum { FRAME_WIDTH = 640, FRAME_HEIGHT = 480, TOTAL_SCALES = 55, CLASSIFIERS = 5};
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enum
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{
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FRAME_WIDTH = 640,
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FRAME_HEIGHT = 480,
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TOTAL_SCALES = 55,
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CLASSIFIERS = 5,
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ORIG_OBJECT_WIDTH = 64,
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ORIG_OBJECT_HEIGHT = 128
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};
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private:
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struct Feature
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@ -41,9 +41,10 @@
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#include <precomp.hpp>
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#include <opencv2/objdetect/objdetect.hpp>
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#include <opencv2/core/core.hpp>
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#include <vector>
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#include <string>
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struct cv::SoftCascade::Filds
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{
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@ -53,6 +54,50 @@ struct cv::SoftCascade::Filds
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// cv::Mat magnitude;
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// double scaleFactor;
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// int windowStep;
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float minScale;
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float maxScale;
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int noctaves;
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bool fill(const FileNode &root, const float mins, const float maxs)
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{
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minScale = mins;
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maxScale = maxs;
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const char *SC_STAGE_TYPE = "stageType";
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const char *SC_FEATURE_TYPE = "featureType";
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const char *SC_BOOST = "BOOST";
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const char *SC_ICF = "ICF";
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const char *SC_NUM_OCTAVES = "octavesNum";
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const char* SC_CASCADES = "cascades";
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const char *SC_HEIGHT = "height";
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const char *SC_WIDTH = "width";
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const char *SC_MAX_DEPTH = "maxDepth";
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const char *SC_STAGES = "stages";
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const char *SC_STAGE_THRESHOLD = "stageThreshold";
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// only boost supported
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std::string stageTypeStr = (string)root[SC_STAGE_TYPE];
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CV_Assert(stageTypeStr == SC_BOOST);
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// only HOG-like integral channel features cupported
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string featureTypeStr = (string)root[SC_FEATURE_TYPE];
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CV_Assert(featureTypeStr == SC_ICF);
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noctaves = (int)root[SC_NUM_OCTAVES];
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CV_Assert(noctaves > 0);
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// const char *SC_WEAK_CLASSIFIERS = "weakClassifiers";
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// const char *SC_INTERNAL_NODES = "internalNodes";
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// const char *SC_LEAF_VALUES = "leafValues";
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// const char *SC_FEATURES = "features";
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// const char *SC_RECT = "rect";
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// const char *SC_STAGE_PARAMS = "stageParams";
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// const char *SC_FEATURE_PARAMS = "featureParams";
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// const char *SC_MAX_CAT_COUNT = "maxCatCount";
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return true;
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}
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};
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namespace {
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@ -161,18 +206,28 @@ struct Level {
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cv::SoftCascade::SoftCascade() : filds(0) {}
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cv::SoftCascade::SoftCascade( const string& filename )
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cv::SoftCascade::SoftCascade( const string& filename, const float minScale, const float maxScale)
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{
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filds = new Filds;
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load(filename);
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load(filename, minScale, maxScale);
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}
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cv::SoftCascade::~SoftCascade()
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{
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delete filds;
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}
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bool cv::SoftCascade::load( const string& filename )
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bool cv::SoftCascade::load( const string& filename, const float minScale, const float maxScale)
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{
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delete filds;
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filds = 0;
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cv::FileStorage fs(filename, FileStorage::READ);
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if (!fs.isOpened()) return false;
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filds = new Filds;
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if (!(*filds).fill(fs.getFirstTopLevelNode(), minScale, maxScale)) return false;
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////////////////
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// temp fixture
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Filds& flds = *filds;
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flds.octaves.push_back(0.5f);
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@ -182,12 +237,9 @@ bool cv::SoftCascade::load( const string& filename )
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flds.octaves.push_back(8.0f);
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// scales calculations
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int origObjectW = 64;
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int origObjectH = 128;
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float maxScale = 5.f, minScale = 0.4f;
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std::vector<Level> levels;
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pyrLevels(FRAME_WIDTH, FRAME_HEIGHT, origObjectW, origObjectH, TOTAL_SCALES, minScale, maxScale,levels);
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pyrLevels(FRAME_WIDTH, FRAME_HEIGHT, ORIG_OBJECT_WIDTH, ORIG_OBJECT_HEIGHT, TOTAL_SCALES, minScale, maxScale, levels);
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for (std::vector<Level>::iterator level = levels.begin(); level < levels.end(); ++level)
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{
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@ -198,11 +250,14 @@ bool cv::SoftCascade::load( const string& filename )
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float logAbsScale = fabs((*level).logFactor - logOctave);
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if(logAbsScale < minAbsLog)
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(*level).assign(*oct, origObjectW, origObjectH);
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(*level).assign(*oct, ORIG_OBJECT_WIDTH, ORIG_OBJECT_HEIGHT);
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}
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}
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// load cascade from xml
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// read(const FileNode &root)
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return true;
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}
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