]> rtime.felk.cvut.cz Git - hercules2020/kcf.git/blobdiff - main_vot.cpp
Remove debug printf
[hercules2020/kcf.git] / main_vot.cpp
index aceb03b3fde2960327d84cb3ee8f3cf2cd16a950..fe5fb78364c1b4bc4407310236d4654439650ac4 100644 (file)
@@ -2,6 +2,7 @@
 #include <getopt.h>
 #include <libgen.h>
 #include <unistd.h>
+#include <iomanip>
 
 #include "kcf.h"
 #include "vot.hpp"
 double calcAccuracy(std::string line, cv::Rect bb_rect, cv::Rect &groundtruth_rect)
 {
     std::vector<float> numbers;
-    std::istringstream s( line );
+    std::istringstream s(line);
     float x;
     char ch;
 
-    while (s >> x){
+    while (s >> x) {
         numbers.push_back(x);
         s >> ch;
     }
@@ -22,11 +23,11 @@ double calcAccuracy(std::string line, cv::Rect bb_rect, cv::Rect &groundtruth_re
     double y1 = std::min(numbers[1], std::min(numbers[3], std::min(numbers[5], numbers[7])));
     double y2 = std::max(numbers[1], std::max(numbers[3], std::max(numbers[5], numbers[7])));
 
-    groundtruth_rect = cv::Rect(x1, y1, x2-x1, y2-y1);
+    groundtruth_rect = cv::Rect(x1, y1, x2 - x1, y2 - y1);
 
     double rects_intersection = (groundtruth_rect & bb_rect).area();
     double rects_union = (groundtruth_rect | bb_rect).area();
-    double accuracy = rects_intersection/rects_union;
+    double accuracy = rects_intersection / rects_union;
 
     return accuracy;
 }
@@ -34,23 +35,25 @@ double calcAccuracy(std::string line, cv::Rect bb_rect, cv::Rect &groundtruth_re
 int main(int argc, char *argv[])
 {
     //load region, images and prepare for output
-    std::string region, images, output;
+    std::string region, images, output, video_out;
     int visualize_delay = -1, fit_size_x = -1, fit_size_y = -1;
     KCF_Tracker tracker;
+    cv::VideoWriter videoWriter;
 
     while (1) {
         int option_index = 0;
         static struct option long_options[] = {
             {"debug",     no_argument,       0,  'd' },
+            {"visual_debug", optional_argument,    0, 'p'},
             {"help",      no_argument,       0,  'h' },
             {"output",    required_argument, 0,  'o' },
+            {"video_out", optional_argument, 0,  'O' },
             {"visualize", optional_argument, 0,  'v' },
             {"fit",       optional_argument, 0,  'f' },
             {0,           0,                 0,  0 }
         };
 
-        int c = getopt_long(argc, argv, "dhv::f::o:",
-                        long_options, &option_index);
+        int c = getopt_long(argc, argv, "dp::hv::f::o:O::", long_options, &option_index);
         if (c == -1)
             break;
 
@@ -58,33 +61,50 @@ int main(int argc, char *argv[])
         case 'd':
             tracker.m_debug = true;
             break;
+        case 'p':
+            if (!optarg || *optarg == 'p')
+                tracker.m_visual_debug = KCF_Tracker::vd::PATCH;
+            else if (optarg && *optarg == 'r')
+                tracker.m_visual_debug = KCF_Tracker::vd::RESPONSE;
+            else {
+                fprintf(stderr, "Unknown visual debug mode: %c", *optarg);
+                return 1;
+            }
+            break;
         case 'h':
             std::cerr << "Usage: \n"
                       << argv[0] << " [options]\n"
                       << argv[0] << " [options] <directory>\n"
                       << argv[0] << " [options] <path/to/region.txt or groundtruth.txt> <path/to/images.txt> [path/to/output.txt]\n"
                       << "Options:\n"
-                      << " --visualize | -v[delay_ms]\n"
-                      << " --output    | -o <output.txt>\n"
-                      << " --debug     | -d\n"
-                      << " --fit       | -f[WxH]\n";
+                      << " --visualize    | -v[delay_ms]\n"
+                      << " --output       | -o <output.txt>\n"
+                      << " --fit          | -f[W[xH]]\n"
+                      << " --debug        | -d\n"
+                      << " --visual_debug | -p [p|r]\n";
             exit(0);
             break;
         case 'o':
             output = optarg;
             break;
+        case 'O':
+            video_out = optarg ? optarg : "./output.avi";
+            break;
         case 'v':
             visualize_delay = optarg ? atol(optarg) : 1;
             break;
         case 'f':
-            std::string sizes = optarg ? optarg : "128x128";
-            std::string delimiter = "x";
-            size_t pos = sizes.find(delimiter);
-            std::string first_argument = sizes.substr(0, pos);
-            sizes.erase(0, pos + delimiter.length());
-
-            fit_size_x = stol(first_argument);
-           fit_size_y = stol(sizes);
+            if (!optarg) {
+                fit_size_x = fit_size_y = 0;
+            } else {
+                char tail;
+                if (sscanf(optarg, "%d%c", &fit_size_x, &tail) == 1) {
+                    fit_size_y = fit_size_x;
+                } else if (sscanf(optarg, "%dx%d%c", &fit_size_x, &fit_size_y, &tail) != 2) {
+                    fprintf(stderr, "Cannot parse -f argument: %s\n", optarg);
+                    return 1;
+                }
+            }
             break;
         }
     }
@@ -135,17 +155,28 @@ int main(int argc, char *argv[])
     vot_io.outputBoundingBox(init_rect);
     vot_io.getNextImage(image);
 
+    if (!video_out.empty()) {
+        int codec = CV_FOURCC('M', 'J', 'P', 'G');  // select desired codec (must be available at runtime)
+        double fps = 25.0;                          // framerate of the created video stream
+        videoWriter.open(video_out, codec, fps, image.size(), true);
+    }
+
     tracker.init(image, init_rect, fit_size_x, fit_size_y);
 
+
     BBox_c bb;
     cv::Rect bb_rect;
     double avg_time = 0., sum_accuracy = 0.;
     int frames = 0;
+
+    std::cout << std::fixed << std::setprecision(2);
+
     while (vot_io.getNextImage(image) == 1){
         double time_profile_counter = cv::getCPUTickCount();
         tracker.track(image);
         time_profile_counter = cv::getCPUTickCount() - time_profile_counter;
-         std::cout << "  -> speed : " <<  time_profile_counter/((double)cvGetTickFrequency()*1000) << "ms. per frame";
+         std::cout << "  -> speed : " <<  time_profile_counter/((double)cvGetTickFrequency()*1000) << "ms per frame, "
+                      "response : " << tracker.getFilterResponse();
         avg_time += time_profile_counter/((double)cvGetTickFrequency()*1000);
         frames++;
 
@@ -167,22 +198,25 @@ int main(int argc, char *argv[])
 
         std::cout << std::endl;
 
-        if (visualize_delay >= 0) {
+        if (visualize_delay >= 0 || !video_out.empty()) {
             cv::Point pt(bb.cx, bb.cy);
             cv::Size size(bb.w, bb.h);
-            cv::RotatedRect rotatedRectangle(pt,size, bb.a);
+            cv::RotatedRect rotatedRectangle(pt, size, bb.a);
 
             cv::Point2f vertices[4];
             rotatedRectangle.points(vertices);
 
             for (int i = 0; i < 4; i++)
-                cv::line(image, vertices[i], vertices[(i+1)%4], cv::Scalar(0,255,0), 2);
-//             cv::rectangle(image, cv::Rect(bb.cx - bb.w/2., bb.cy - bb.h/2., bb.w, bb.h), CV_RGB(0,255,0), 2);
-            cv::putText(image, "Frame: " + std::to_string(frames) + " " + std::to_string(time_profile_counter/((double)cvGetTickFrequency()*1000)) + " ms.", cv::Point(0, image.rows-1), cv::FONT_HERSHEY_SIMPLEX, 1, cv::Scalar(0,255,0),2,cv::LINE_AA);
-            cv::imshow("output", image);
-            int ret = cv::waitKey(visualize_delay);
-            if (visualize_delay > 0 && ret != -1 && ret != 255)
-                break;
+                cv::line(image, vertices[i], vertices[(i + 1) % 4], cv::Scalar(0, 255, 0), 2);
+            if (visualize_delay >= 0) {
+                cv::imshow("KCF output", image);
+                int ret = cv::waitKey(visualize_delay);
+                if ((visualize_delay > 0 && ret != -1 && ret < 128) ||
+                        (visualize_delay == 0 && (ret == 27 /*esc*/ || ret == 'q')))
+                    break;
+            }
+            if (!video_out.empty())
+                videoWriter << image;
         }
 
 //        std::stringstream s;
@@ -206,11 +240,14 @@ int main(int argc, char *argv[])
 //        cv::imwrite(ss.c_str(), image, compression_params);
     }
 
-    std::cout << "Average processing speed " << avg_time/frames <<  "ms. (" << 1./(avg_time/frames)*1000 << " fps)" << std::endl;
+    std::cout << "Average processing speed: " << avg_time / frames << "ms (" << 1. / (avg_time / frames) * 1000 << " fps)";
     if (groundtruth_stream.is_open()) {
-        std::cout << "Average accuracy: " << sum_accuracy/frames << std::endl;
+        std::cout << "Average accuracy: " << sum_accuracy/frames << std::endl;
         groundtruth_stream.close();
     }
+    if (!video_out.empty())
+       videoWriter.release();
+    std::cout << std::endl;
 
     return EXIT_SUCCESS;
 }