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#ifndef __DPM_CASCADE__
#define __DPM_CASCADE__

#include "dpm_model.hpp"
#include "dpm_feature.hpp"
#include "dpm_convolution.hpp"

#include "opencv2/imgproc.hpp"
#include "opencv2/core.hpp"

#include <string>
#include <vector>

namespace cv
{
namespace dpm
{
/** @brief This class is the main process of DPM cascade
 */
class DPMCascade
{
    private:
        // pyramid level offset for covolution
        std::vector< int > convLevelOffset;
        // pyramid level offset for distance transform
        std::vector< int > dtLevelOffset;
        // convolution values
        std::vector< double > convValues;
        std::vector< double > pcaConvValues;
        // distance transform values
        std::vector< double > dtValues;
        std::vector< double > pcaDtValues;
        // distance transform argmax, x dimension
        std::vector< int > dtArgmaxX;
        std::vector< int > pcaDtArgmaxX;
        // distance transform argmax, y dimension
        std::vector< int > dtArgmaxY;
        std::vector< int > pcaDtArgmaxY;
        // half-width of distance transform window
        static const int halfWindowSize = 4;
        // the amount of temporary storage of cascade
        int tempStorageSize;
        // precomputed deformation costs
        std::vector< std::vector< double > > defCostCacheX;
        std::vector< std::vector< double > > defCostCacheY;
        // DPM cascade model
        CascadeModel model;
        // feature process
        Feature feature;
        // feature pyramid
        std::vector< Mat > pyramid;
        // projected (PCA) pyramid;
        std::vector< Mat > pcaPyramid;
        // number of positions in each pyramid level
        std::vector< int > featDimsProd;
        // convolution engine
        ConvolutionEngine convolutionEngine;

    public:
        // constructor
        DPMCascade () {}
        // destructor
        virtual ~DPMCascade () {}

        // load cascade mode and initialize cascade
        void loadCascadeModel(const std::string &modelPath);

        // compute feature pyramid and projected feature pyramid
        void computeFeatures(const Mat &im);

        // compute root PCA scores
        void computeRootPCAScores(std::vector< std::vector< Mat > > &rootScores);

        // lookup or compute the score of a part at a location
        double computePartScore(int plevel, int pId, int px, int py, bool isPCA, double defThreshold);

        // compute location scores
        void computeLocationScores(std::vector< std::vector< double > > &locctionScores);

        // initialization pre-allocate storage
        void initDPMCascade();

        // cascade process
        void process(std::vector< std::vector<double> > &detections);

        // detect object from image
        std::vector< std::vector<double> > detect(Mat &image);
};

/** @brief This class convolves root PCA feature pyramid
 * and root PCA filters in parallel using Intel Threading
 * Building Blocks (TBB)
 */
class ParalComputeRootPCAScores : public ParallelLoopBody
{
    public:
        // constructor
        ParalComputeRootPCAScores(const std::vector< Mat > &pcaPyramid, const Mat &filter,\
                int dim, std::vector< Mat > &scores);

        // parallel loop body
143
        void operator() (const Range &range) const CV_OVERRIDE;
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        ParalComputeRootPCAScores(const ParalComputeRootPCAScores &pComp);

    private:
        const std::vector< Mat > &pcaPyramid;
        const Mat &filter;
        int pcaDim;
        std::vector< Mat > &scores;
};
} // namespace dpm
} // namespace cv

#endif // __DPM_CASCADE_