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Testbed autozoom feature
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@ -74,6 +74,10 @@ Load data points from a file:
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```
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```
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build/testbed/p2t <filename> <center_x> <center_y> <zoom>
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build/testbed/p2t <filename> <center_x> <center_y> <zoom>
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```
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```
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Load data points from a file and automatically fit the geometry to the window:
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```
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build/testbed/p2t <filename>
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```
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Random distribution of points inside a constrained box:
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Random distribution of points inside a constrained box:
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```
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```
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build/testbed/p2t random <num_points> <box_radius> <zoom>
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build/testbed/p2t random <num_points> <box_radius> <zoom>
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@ -81,7 +85,8 @@ build/testbed/p2t random <num_points> <box_radius> <zoom>
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Examples:
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Examples:
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```
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```
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build/testbed/p2t testbed/data/dude.dat 350 500 3
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build/testbed/p2t testbed/data/dude.dat 350 500 3
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build/testbed/p2t testbed/data/nazca_monkey.dat 0 0 9
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build/testbed/p2t testbed/data/nazca_monkey.dat
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build/testbed/p2t random 10 100 5.0
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build/testbed/p2t random 10 100 5.0
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build/testbed/p2t random 1000 20000 0.025
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build/testbed/p2t random 1000 20000 0.025
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@ -40,10 +40,12 @@
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#include <fstream>
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#include <fstream>
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#include <iostream>
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#include <iostream>
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#include <iterator>
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#include <iterator>
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#include <limits>
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#include <list>
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#include <list>
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#include <numeric>
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#include <numeric>
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#include <sstream>
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#include <sstream>
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#include <string>
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#include <string>
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#include <utility>
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#include <vector>
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#include <vector>
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using namespace std;
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using namespace std;
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@ -51,6 +53,7 @@ using namespace p2t;
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bool ParseFile(string filename, vector<Point*>& out_polyline, vector<vector<Point*>>& out_holes,
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bool ParseFile(string filename, vector<Point*>& out_polyline, vector<vector<Point*>>& out_holes,
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vector<Point*>& out_steiner);
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vector<Point*>& out_steiner);
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std::pair<Point, Point> BoundingBox(const std::vector<Point*>& polyline);
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void GenerateRandomPointDistribution(size_t num_points, double min, double max,
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void GenerateRandomPointDistribution(size_t num_points, double min, double max,
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vector<Point*>& out_polyline,
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vector<Point*>& out_polyline,
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vector<vector<Point*>>& out_holes,
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vector<vector<Point*>>& out_holes,
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@ -73,6 +76,9 @@ const double rotations_per_tick = 0.2;
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constexpr int default_window_width = 800;
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constexpr int default_window_width = 800;
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constexpr int default_window_height = 600;
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constexpr int default_window_height = 600;
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/// Autozoom border (percentage)
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const double autozoom_border = 0.05;
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/// Screen center x
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/// Screen center x
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double cx = 0.0;
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double cx = 0.0;
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/// Screen center y
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/// Screen center y
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@ -109,16 +115,21 @@ int main(int argc, char* argv[])
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double max, min;
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double max, min;
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double zoom;
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double zoom;
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if (argc != 5) {
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if (argc != 2 && argc != 5) {
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cout << "-== USAGE ==-" << endl;
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cout << "-== USAGE ==-" << endl;
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cout << "Load Data File: p2t <filename> <center_x> <center_y> <zoom>" << endl;
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cout << "Load Data File: p2t <filename> <center_x> <center_y> <zoom>" << endl;
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cout << " Example: build/testbed/p2t testbed/data/dude.dat 350 500 3" << endl;
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cout << " Example: build/testbed/p2t testbed/data/dude.dat 350 500 3" << endl;
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cout << "Load Data File with Auto-Zoom: p2t <filename>" << endl;
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cout << " Example: build/testbed/p2t testbed/data/nazca_monkey.dat" << endl;
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cout << "Generate Random Polygon: p2t random <num_points> <box_radius> <zoom>" << endl;
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cout << "Generate Random Polygon: p2t random <num_points> <box_radius> <zoom>" << endl;
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cout << " Example: build/testbed/p2t random 100 1 500" << endl;
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cout << " Example: build/testbed/p2t random 100 1 500" << endl;
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return 1;
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return 1;
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}
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}
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if (string(argv[1]) == "random") {
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// If true, adjust the zoom settings to fit the input geometry to the window
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const bool autozoom = (argc == 2);
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if (!autozoom && string(argv[1]) == "random") {
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num_points = atoi(argv[2]);
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num_points = atoi(argv[2]);
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random_distribution = true;
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random_distribution = true;
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char* pEnd;
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char* pEnd;
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@ -128,10 +139,12 @@ int main(int argc, char* argv[])
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zoom = atof(argv[4]);
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zoom = atof(argv[4]);
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} else {
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} else {
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filename = string(argv[1]);
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filename = string(argv[1]);
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if (!autozoom) {
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cx = atof(argv[2]);
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cx = atof(argv[2]);
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cy = atof(argv[3]);
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cy = atof(argv[3]);
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zoom = atof(argv[4]);
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zoom = atof(argv[4]);
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}
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}
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}
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if (random_distribution) {
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if (random_distribution) {
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GenerateRandomPointDistribution(num_points, min, max, polyline, holes, steiner);
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GenerateRandomPointDistribution(num_points, min, max, polyline, holes, steiner);
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@ -142,6 +155,20 @@ int main(int argc, char* argv[])
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}
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}
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}
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}
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if (autozoom) {
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assert(0.0 <= autozoom_border && autozoom_border < 1.0);
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const auto bbox = BoundingBox(polyline);
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Point center = bbox.first + bbox.second;
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center *= 0.5;
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cx = center.x;
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cy = center.y;
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Point sides = bbox.second - bbox.first;
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zoom = 2.0 * (1.0 - autozoom_border) * std::min((double)default_window_width / sides.x, (double)default_window_height / sides.y);
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std::cout << "center_x = " << cx << std::endl;
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std::cout << "center_y = " << cy << std::endl;
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std::cout << "zoom = " << zoom << std::endl;
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}
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Init(default_window_width, default_window_height);
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Init(default_window_width, default_window_height);
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/*
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/*
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@ -269,6 +296,21 @@ bool ParseFile(string filename, vector<Point*>& out_polyline, vector<vector<Poin
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return true;
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return true;
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}
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}
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std::pair<Point, Point> BoundingBox(const std::vector<Point*>& polyline)
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{
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assert(polyline.size() > 0);
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using Scalar = decltype(p2t::Point::x);
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Point min(std::numeric_limits<Scalar>::max(), std::numeric_limits<Scalar>::max());
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Point max(std::numeric_limits<Scalar>::min(), std::numeric_limits<Scalar>::min());
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for (const Point* point : polyline) {
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min.x = std::min(min.x, point->x);
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min.y = std::min(min.y, point->y);
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max.x = std::max(max.x, point->x);
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max.y = std::max(max.y, point->y);
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}
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return std::make_pair(min, max);
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}
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void GenerateRandomPointDistribution(size_t num_points, double min, double max,
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void GenerateRandomPointDistribution(size_t num_points, double min, double max,
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vector<Point*>& out_polyline,
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vector<Point*>& out_polyline,
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vector<vector<Point*>>& out_holes, vector<Point*>& out_steiner)
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vector<vector<Point*>>& out_holes, vector<Point*>& out_steiner)
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