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#include "test_precomp.hpp"
#include "opencv2/videoio/videoio_c.h"
#include <stdio.h>

using namespace cv;
using namespace std;

class CV_VideoPositioningTest: public cvtest::BaseTest
{
public:
    enum {PROGRESSIVE, RANDOM};

    CV_VideoPositioningTest();
    ~CV_VideoPositioningTest();
    virtual void run(int) = 0;

protected:
    vector <int> idx;
    void run_test(int method);

private:
    void generate_idx_seq(CvCapture *cap, int method);
};

class CV_VideoProgressivePositioningTest: public CV_VideoPositioningTest
{
public:
    CV_VideoProgressivePositioningTest() : CV_VideoPositioningTest() { }
    ~CV_VideoProgressivePositioningTest();
    void run(int);
};

class CV_VideoRandomPositioningTest: public CV_VideoPositioningTest
{
public:
    CV_VideoRandomPositioningTest(): CV_VideoPositioningTest() { }
    ~CV_VideoRandomPositioningTest();
    void run(int);
};

CV_VideoPositioningTest::CV_VideoPositioningTest() {}
CV_VideoPositioningTest::~CV_VideoPositioningTest() {}
CV_VideoProgressivePositioningTest::~CV_VideoProgressivePositioningTest() {}
CV_VideoRandomPositioningTest::~CV_VideoRandomPositioningTest() {}

void CV_VideoPositioningTest::generate_idx_seq(CvCapture* cap, int method)
{
    idx.clear();
    int N = (int)cvGetCaptureProperty(cap, CAP_PROP_FRAME_COUNT);
    switch(method)
    {
    case PROGRESSIVE:
        {
            int pos = 1, step = 20;
            do
            {
                idx.push_back(pos);
                pos += step;
            }
            while (pos <= N);
            break;
        }
    case RANDOM:
        {
            RNG rng(N);
            idx.clear();
            for( int i = 0; i < N-1; i++ )
                idx.push_back(rng.uniform(0, N));
            idx.push_back(N-1);
            std::swap(idx.at(rng.uniform(0, N-1)), idx.at(N-1));
            break;
        }
    default:break;
    }
}

void CV_VideoPositioningTest::run_test(int method)
{
    const string& src_dir = ts->get_data_path();

    ts->printf(cvtest::TS::LOG, "\n\nSource files directory: %s\n", (src_dir+"video/").c_str());

    const string ext[] = {"avi", "mov", "mp4", "mpg"};

    int n = (int)(sizeof(ext)/sizeof(ext[0]));

    int failed_videos = 0;

    for (int i = 0; i < n; ++i)
    {
        // skip random positioning test in plain mpegs
        if( method == RANDOM && ext[i] == "mpg" )
            continue;
        string file_path = src_dir + "video/big_buck_bunny." + ext[i];

        ts->printf(cvtest::TS::LOG, "\nReading video file in %s...\n", file_path.c_str());

        CvCapture* cap = cvCreateFileCapture(file_path.c_str());

        if (!cap)
        {
            ts->printf(cvtest::TS::LOG, "\nFile information (video %d): \n\nName: big_buck_bunny.%s\nFAILED\n\n", i+1, ext[i].c_str());
            ts->printf(cvtest::TS::LOG, "Error: cannot read source video file.\n");
            ts->set_failed_test_info(cvtest::TS::FAIL_INVALID_TEST_DATA);
            failed_videos++; continue;
        }

        cvSetCaptureProperty(cap, CAP_PROP_POS_FRAMES, 0);

        generate_idx_seq(cap, method);

        int N = (int)idx.size(), failed_frames = 0, failed_positions = 0, failed_iterations = 0;

        for (int j = 0; j < N; ++j)
        {
            bool flag = false;

            cvSetCaptureProperty(cap, CAP_PROP_POS_FRAMES, idx.at(j));

            /* IplImage* frame = cvRetrieveFrame(cap);

            if (!frame)
            {
                if (!failed_frames)
                {
                    ts->printf(cvtest::TS::LOG, "\nFile information (video %d): \n\nName: big_buck_bunny.%s\n", i+1, ext[i].c_str());
                }
                failed_frames++;
                ts->printf(cvtest::TS::LOG, "\nIteration: %d\n\nError: cannot read a frame with index %d.\n", j, idx.at(j));
                ts->set_failed_test_info(cvtest::TS::FAIL_EXCEPTION);
                flag = !flag;
            } */

            int val = (int)cvGetCaptureProperty(cap, CAP_PROP_POS_FRAMES);

            if (idx.at(j) != val)
            {
                if (!(failed_frames||failed_positions))
                {
                    ts->printf(cvtest::TS::LOG, "\nFile information (video %d): \n\nName: big_buck_bunny.%s\n", i+1, ext[i].c_str());
                }
                failed_positions++;
                if (!failed_frames)
                {
                    ts->printf(cvtest::TS::LOG, "\nIteration: %d\n", j);
                }
                ts->printf(cvtest::TS::LOG, "Required pos: %d\nReturned pos: %d\n", idx.at(j), val);
                ts->printf(cvtest::TS::LOG, "Error: required and returned positions are not matched.\n");
                ts->set_failed_test_info(cvtest::TS::FAIL_INVALID_OUTPUT);
                flag = true;
            }

            if (flag)
            {
                failed_iterations++;
                failed_videos++;
                break;
            }
        }

        cvReleaseCapture(&cap);
    }

    ts->printf(cvtest::TS::LOG, "\nSuccessfull experiments: %d (%d%%)\n", n-failed_videos, 100*(n-failed_videos)/n);
    ts->printf(cvtest::TS::LOG, "Failed experiments: %d (%d%%)\n", failed_videos, 100*failed_videos/n);
}

void CV_VideoProgressivePositioningTest::run(int)
{
    run_test(PROGRESSIVE);
}

void CV_VideoRandomPositioningTest::run(int)
{
    run_test(RANDOM);
}

#if BUILD_WITH_VIDEO_INPUT_SUPPORT && defined HAVE_FFMPEG
TEST (Videoio_Video, seek_progressive) { CV_VideoProgressivePositioningTest test; test.safe_run(); }
TEST (Videoio_Video, seek_random) { CV_VideoRandomPositioningTest test; test.safe_run(); }
#endif