Zadanie 11
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83
11/do_sprawdzenia/cpp/bin_gradient.cpp
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83
11/do_sprawdzenia/cpp/bin_gradient.cpp
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#include "bin_gradient.h"
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using namespace std;
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BinarizationGradient::BinarizationGradient(PNM* img) :
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Transformation(img)
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{
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}
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BinarizationGradient::BinarizationGradient(PNM* img, ImageViewer* iv) :
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Transformation(img, iv)
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{
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}
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PNM* BinarizationGradient::transform()
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{
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int width = image->width();
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int height = image->height();
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PNM* newImage = new PNM(width, height, QImage::Format_Mono);
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int numerator = 0;
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int denominator = 0;
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// Gx
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int Gx = 0;
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// Gy
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int Gy = 0;
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int G = 0;
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int T = 0;
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//PNM* newImage = new PNM(width, height, QImage::Format_Mono);
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for (int x = 0; x < width; x++)
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{
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for (int y = 0; y < height; y++)
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{
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Mode mode = Transformation::RepeatEdge;
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int I = qGray(getPixel(x, y, mode));
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// Get Gx and Gy
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Gx = qGray(getPixel(x + 1, y, mode)) - qGray(getPixel(x - 1, y, mode));
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Gy = qGray(getPixel(x, y + 1, mode)) - qGray(getPixel(x, y - 1, mode));
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if (Gx > Gy)
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{
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G = Gx;
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}
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else
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{
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G = Gy;
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}
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numerator += I * G;
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denominator += G;
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}
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}
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T = numerator / denominator;
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for (int x = 0; x < width; x++)
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{
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for (int y = 0; y < height; y++)
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{
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Mode mode = Transformation::RepeatEdge;
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QRgb pixel = getPixel(x, y, mode);
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int val = qGray(pixel);
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if (val < T)
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{
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newImage->setPixel(x, y, 0);
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}
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else
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{
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newImage->setPixel(x, y, 1);
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}
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}
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}
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return newImage;
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}
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93
11/do_sprawdzenia/cpp/hough.cpp
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93
11/do_sprawdzenia/cpp/hough.cpp
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#include "hough.h"
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#include "iostream"
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#include "conversion_grayscale.h"
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#include "edge_laplacian.h"
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Hough::Hough(PNM* img) :
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Transformation(img)
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{
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}
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Hough::Hough(PNM* img, ImageViewer* super) :
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Transformation(img, super)
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{
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}
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PNM* Hough::transform()
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{
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int width = image->width();
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int height = image->height();
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int theta_density = getParameter("theta_density").toInt();
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bool skip_edge = getParameter("skip_edge_detection").toBool();
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std::cout << "skip_edge: " << skip_edge << std::endl;
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int theta_size = 180 * theta_density;
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double max_ro = sqrt(pow(width, 2) + pow(height, 2));
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ConversionGrayscale* gray_scale = new ConversionGrayscale(image);
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image = gray_scale->transform();
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PNM* newImage = new PNM(theta_size, max_ro * 2 + 1, QImage::Format_Grayscale8);
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int new_image_width = newImage->width();
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int new_image_height = newImage->height();
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math::matrix<float> hough(new_image_width, new_image_height);
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if (skip_edge == false)
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{
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EdgeLaplacian *el = new EdgeLaplacian(image);
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el->setParameter("size", 7);
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image = el->transform();
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}
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for (int x = 0; x < new_image_width; x++)
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{
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for (int y = 0; y < new_image_height; y++)
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{
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hough[x][y] = 0;
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}
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}
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double theta = 0.0;
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double ro = 0;
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float max = 0;
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double max_z = 0;
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for (int i = 0; i < width; i++)
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{
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for (int j = 0; j < height; j++)
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{
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if (qGray(image->pixel(i, j)) > 0)
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{
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for (int k = 0; k < theta_size; k++)
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{
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theta = (k * M_PI) / (theta_density * 180);
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ro = i * cos(theta) + j * sin(theta);
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hough[k][ro + max_ro]++;
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}
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}
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}
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}
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max = hough.max();
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int z;
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for (int x = 0; x < new_image_width; x++)
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{
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for (int y = 0; y < new_image_height; y++)
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{
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z = hough[x][y] * (max / 255);
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newImage->setPixel(x, y, QColor(z, z, z).rgb());
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}
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}
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std::cout << "max_z: " << max_z << std::endl;
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return newImage;
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}
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91
11/do_sprawdzenia/cpp/hough_lines.cpp
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11/do_sprawdzenia/cpp/hough_lines.cpp
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#include "hough_lines.h"
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#include "bin_gradient.h"
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#include "edge_laplacian.h"
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#include "hough.h"
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#include <iostream>
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#include <Qt>
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#include <QPainter>
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HoughLines::HoughLines(PNM* img) :
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Transformation(img)
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{
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}
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HoughLines::HoughLines(PNM* img, ImageViewer* iv) :
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Transformation(img, iv)
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{
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}
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PNM* HoughLines::transform()
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{
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// Cut of value from the image;
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int threshold = getParameter("threshold").toInt();
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bool drawWholeLines = getParameter("draw_whole_lines").toBool();
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int theta_density = 3;
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PNM* newImage = new PNM(image->copy());
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EdgeLaplacian el(image);
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el.setParameter("size", 3);
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PNM* image_edge = el.transform();
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PNM* image_bin = BinarizationGradient(image_edge).transform();
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Hough h(image_edge);
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h.setParameter("theta_density", theta_density);
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h.setParameter("skip_edge_detection", true);
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PNM* image_hough = h.transform();
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int hough_width = image_hough->width();
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int hough_height = image_hough->height();
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int width = image_bin->width();
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int height = image_bin->height();
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QPainter qPainter (newImage);
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qPainter.setPen(Qt::red);
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for (int theta = 0; theta < hough_width; theta++)
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{
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for (int rho = 0; rho < hough_height; rho++)
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{
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int val = (int) qGray(image_hough->pixel(theta, rho));
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if (val > threshold)
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{
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double rtheta = ((double)theta / 3.0) * M_PI / 180.0;
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int rrho = rho - hough_height / 2;
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qPainter.drawLine(0, round(rrho / sin(rtheta)), width - 1, round((rrho - (width - 1) * cos(rtheta)) / sin(rtheta)));
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}
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}
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}
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int counter_pixels = 0;
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if (!drawWholeLines)
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{
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for (int x = 0; x < width; x++)
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{
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for (int y = 0; y < height; y++)
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{
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QRgb pixel = image_bin->pixel(x, y);
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if (qGray(pixel) == 0)
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{
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counter_pixels++;
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newImage->setPixel(x, y, image->pixel(x, y));
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}
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}
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}
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std::cout << "counter " << counter_pixels << std::endl;
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}
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return newImage;
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}
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BIN
11/do_sprawdzenia/cpp/image1.png
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BIN
11/do_sprawdzenia/cpp/image1.png
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Binary file not shown.
After Width: | Height: | Size: 7.3 KiB |
BIN
11/do_sprawdzenia/cpp/image2.png
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BIN
11/do_sprawdzenia/cpp/image2.png
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Binary file not shown.
After Width: | Height: | Size: 9.8 KiB |
@ -1,5 +1,5 @@
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#include "hough.h"
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#include "iostream"
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#include "conversion_grayscale.h"
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#include "edge_laplacian.h"
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@ -15,9 +15,79 @@ Hough::Hough(PNM* img, ImageViewer* super) :
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PNM* Hough::transform()
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{
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int thetaDensity = getParameter("theta_density").toInt();
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int width = image->width();
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int height = image->height();
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qDebug() << Q_FUNC_INFO << "Not implemented yet!";
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int theta_density = getParameter("theta_density").toInt();
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bool skip_edge = getParameter("skip_edge_detection").toBool();
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return 0;
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std::cout << "skip_edge: " << skip_edge << std::endl;
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int theta_size = 180 * theta_density;
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double max_ro = sqrt(pow(width, 2) + pow(height, 2));
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ConversionGrayscale* gray_scale = new ConversionGrayscale(image);
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image = gray_scale->transform();
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PNM* newImage = new PNM(theta_size, max_ro * 2 + 1, QImage::Format_Grayscale8);
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int new_image_width = newImage->width();
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int new_image_height = newImage->height();
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math::matrix<float> hough(new_image_width, new_image_height);
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if (skip_edge == false)
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{
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EdgeLaplacian *el = new EdgeLaplacian(image);
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el->setParameter("size", 7);
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image = el->transform();
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}
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for (int x = 0; x < new_image_width; x++)
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{
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for (int y = 0; y < new_image_height; y++)
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{
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hough[x][y] = 0;
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}
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}
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double theta = 0.0;
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double ro = 0;
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float max = 0;
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double max_z = 0;
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for (int i = 0; i < width; i++)
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{
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for (int j = 0; j < height; j++)
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{
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if (qGray(image->pixel(i, j)) > 0)
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{
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for (int k = 0; k < theta_size; k++)
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{
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theta = (k * M_PI) / (theta_density * 180);
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ro = i * cos(theta) + j * sin(theta);
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hough[k][ro + max_ro]++;
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}
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}
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}
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}
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max = hough.max();
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int z;
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for (int x = 0; x < new_image_width; x++)
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{
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for (int y = 0; y < new_image_height; y++)
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{
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z = hough[x][y] * (max / 255);
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newImage->setPixel(x, y, QColor(z, z, z).rgb());
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}
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}
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std::cout << "max_z: " << max_z << std::endl;
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return newImage;
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}
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@ -1,9 +1,10 @@
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#include "hough_lines.h"
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#include "bin_gradient.h"
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#include "edge_laplacian.h"
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#include "hough.h"
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#include "hough.h"
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#include <iostream>
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#include <Qt>
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#include <QPainter>
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HoughLines::HoughLines(PNM* img) :
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{
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}
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PNM* HoughLines::transform()
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{
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// Cut of value from the image;
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int threshold = getParameter("threshold").toInt();
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bool drawWholeLines = getParameter("draw_whole_lines").toBool();
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int theta_density = 3;
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PNM* newImage = new PNM(image->copy());
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qDebug() << Q_FUNC_INFO << "Not implemented yet!";
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EdgeLaplacian el(image);
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el.setParameter("size", 3);
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PNM* image_edge = el.transform();
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PNM* image_bin = BinarizationGradient(image_edge).transform();
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Hough h(image_edge);
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h.setParameter("theta_density", theta_density);
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h.setParameter("skip_edge_detection", true);
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PNM* image_hough = h.transform();
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int hough_width = image_hough->width();
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int hough_height = image_hough->height();
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int width = image_bin->width();
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int height = image_bin->height();
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QPainter qPainter (newImage);
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qPainter.setPen(Qt::red);
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for (int theta = 0; theta < hough_width; theta++)
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{
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for (int rho = 0; rho < hough_height; rho++)
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{
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int val = (int) qGray(image_hough->pixel(theta, rho));
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if (val > threshold)
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{
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double rtheta = ((double)theta / 3.0) * M_PI / 180.0;
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int rrho = rho - hough_height / 2;
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qPainter.drawLine(0, round(rrho / sin(rtheta)), width - 1, round((rrho - (width - 1) * cos(rtheta)) / sin(rtheta)));
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}
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}
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}
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int counter_pixels = 0;
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if (!drawWholeLines)
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{
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for (int x = 0; x < width; x++)
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{
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for (int y = 0; y < height; y++)
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{
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QRgb pixel = image_bin->pixel(x, y);
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if (qGray(pixel) == 0)
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{
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counter_pixels++;
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newImage->setPixel(x, y, image->pixel(x, y));
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}
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}
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}
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std::cout << "counter " << counter_pixels << std::endl;
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}
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return newImage;
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}
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