test_haar.cpp 5.5 KB
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/*M///////////////////////////////////////////////////////////////////////////////////////
//
//  IMPORTANT: READ BEFORE DOWNLOADING, COPYING, INSTALLING OR USING.
//
//  By downloading, copying, installing or using the software you agree to this license.
//  If you do not agree to this license, do not download, install,
//  copy or use the software.
//
//
//                           License Agreement
//                For Open Source Computer Vision Library
//
// Copyright (C) 2010-2012, Institute Of Software Chinese Academy Of Science, all rights reserved.
// Copyright (C) 2010-2012, Advanced Micro Devices, Inc., all rights reserved.
// Third party copyrights are property of their respective owners.
//
// @Authors
//    Jia Haipeng, jiahaipeng95@gmail.com
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//    Sen Liu, swjutls1987@126.com
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//
// Redistribution and use in source and binary forms, with or without modification,
// are permitted provided that the following conditions are met:
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//   * Redistribution's of source code must retain the above copyright notice,
//     this list of conditions and the following disclaimer.
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//     and/or other oclMaterials provided with the distribution.
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//   * The name of the copyright holders may not be used to endorse or promote products
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// This software is provided by the copyright holders and contributors "as is" and
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//M*/

#include "opencv2/objdetect/objdetect.hpp"
#include "precomp.hpp"

#ifdef HAVE_OPENCL

using namespace cvtest;
using namespace testing;
using namespace std;
using namespace cv;
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extern string workdir;
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struct getRect
{
    Rect operator ()(const CvAvgComp &e) const
    {
        return e.rect;
    }
};
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PARAM_TEST_CASE(Haar, double, int)
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{
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    cv::ocl::OclCascadeClassifier cascade, nestedCascade;
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    cv::ocl::OclCascadeClassifierBuf cascadebuf;
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    cv::CascadeClassifier cpucascade, cpunestedCascade;

    double scale;
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    int flags;
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    virtual void SetUp()
    {
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        scale = GET_PARAM(0);
        flags = GET_PARAM(1);
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        string cascadeName = workdir + "../../data/haarcascades/haarcascade_frontalface_alt.xml";
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        if( (!cascade.load( cascadeName )) || (!cpucascade.load(cascadeName)) || (!cascadebuf.load( cascadeName )))
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        {
            cout << "ERROR: Could not load classifier cascade" << endl;
            return;
        }
    }
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};

////////////////////////////////faceDetect/////////////////////////////////////////////////
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TEST_P(Haar, FaceDetect)
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{
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    string imgName = workdir + "lena.jpg";
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    Mat img = imread( imgName, 1 );

    if(img.empty())
    {
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        std::cout << "Couldn't read " << imgName << std::endl;
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        return ;
    }

    vector<Rect> faces, oclfaces;

    Mat gray, smallImg(cvRound (img.rows / scale), cvRound(img.cols / scale), CV_8UC1 );
    MemStorage storage(cvCreateMemStorage(0));
    cvtColor( img, gray, CV_BGR2GRAY );
    resize( gray, smallImg, smallImg.size(), 0, 0, INTER_LINEAR );
    equalizeHist( smallImg, smallImg );

    cv::ocl::oclMat image;
    CvSeq *_objects;
    image.upload(smallImg);
    _objects = cascade.oclHaarDetectObjects( image, storage, 1.1,
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                   3, flags, Size(30, 30), Size(0, 0) );
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    vector<CvAvgComp> vecAvgComp;
    Seq<CvAvgComp>(_objects).copyTo(vecAvgComp);
    oclfaces.resize(vecAvgComp.size());
    std::transform(vecAvgComp.begin(), vecAvgComp.end(), oclfaces.begin(), getRect());

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    cpucascade.detectMultiScale( smallImg, faces,  1.1, 3,
                                 flags,
                                 Size(30, 30), Size(0, 0) );
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    EXPECT_EQ(faces.size(), oclfaces.size());
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}

TEST_P(Haar, FaceDetectUseBuf)
{
    string imgName = workdir + "lena.jpg";
    Mat img = imread( imgName, 1 );

    if(img.empty())
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    {
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        std::cout << "Couldn't read " << imgName << std::endl;
        return ;
    }
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    vector<Rect> faces, oclfaces;

    Mat gray, smallImg(cvRound (img.rows / scale), cvRound(img.cols / scale), CV_8UC1 );
    MemStorage storage(cvCreateMemStorage(0));
    cvtColor( img, gray, CV_BGR2GRAY );
    resize( gray, smallImg, smallImg.size(), 0, 0, INTER_LINEAR );
    equalizeHist( smallImg, smallImg );

    cv::ocl::oclMat image;
    image.upload(smallImg);

    cascadebuf.detectMultiScale( image, oclfaces,  1.1, 3,
                                 flags,
                                 Size(30, 30), Size(0, 0) );
    cascadebuf.release();

    cpucascade.detectMultiScale( smallImg, faces,  1.1, 3,
                                 flags,
                                 Size(30, 30), Size(0, 0) );
    EXPECT_EQ(faces.size(), oclfaces.size());
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}
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INSTANTIATE_TEST_CASE_P(FaceDetect, Haar,
    Combine(Values(1.0),
            Values(CV_HAAR_SCALE_IMAGE, 0)));

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#endif // HAVE_OPENCL