Add support for preserveAspectRatio for both SVG and bitmap input
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3 changed files with 102 additions and 12 deletions
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@ -21,6 +21,7 @@
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#include <iostream>
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#include <algorithm>
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#include <vector>
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#include <regex>
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#include <opencv2/opencv.hpp>
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#include "svg_import_util.h"
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#include "vec_core.h"
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@ -36,7 +37,7 @@ ImageVectorizer *gerbolyze::makeVectorizer(const std::string &name) {
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else if (name == "hex-grid")
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return new VoronoiVectorizer(HEXGRID, /* relax */ false);
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else if (name == "square-grid")
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return new VoronoiVectorizer(SQUAREGRID, /* relax */ true);
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return new VoronoiVectorizer(SQUAREGRID, /* relax */ false);
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else if (name == "binary-contours")
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return new OpenCVContoursVectorizer();
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else if (name == "dev-null")
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@ -189,6 +190,15 @@ void gerbolyze::VoronoiVectorizer::vectorize_image(cairo_t *cr, const pugi::xml_
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apply_cairo_transform_from_svg(cr, node.attribute("transform").value());
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cairo_translate(cr, x, y);
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double orig_rows = img.rows;
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double orig_cols = img.cols;
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double scale_x = (double)width / orig_cols;
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double scale_y = (double)height / orig_rows;
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double off_x = 0;
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double off_y = 0;
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handle_aspect_ratio(node.attribute("preserveAspectRatio").value(),
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scale_x, scale_y, off_x, off_y, orig_cols, orig_rows);
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/* Adjust minimum feature size given in mm and translate into px document units in our local coordinate system. */
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double f_x = min_feature_size_px, f_y = 0;
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cairo_device_to_user_distance(cr, &f_x, &f_y);
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@ -202,7 +212,7 @@ void gerbolyze::VoronoiVectorizer::vectorize_image(cairo_t *cr, const pugi::xml_
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grayscale interpolation. Larger values -> better grayscale resolution,
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larger cells. */
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double center_distance = min_feature_size_px * 2.0 * (1.0 / (1.0-grayscale_overhead));
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vector<d2p> *grid_centers = get_sampler(m_grid_type)(width, height, center_distance);
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vector<d2p> *grid_centers = get_sampler(m_grid_type)(scale_x * orig_cols, scale_y*orig_rows, center_distance);
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//vector<d2p> *grid_centers = sample_poisson_disc(width, height, min_feature_size_px * 2.0 * 2.0);
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//vector<d2p> *grid_centers = sample_hexgrid(width, height, center_distance);
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//vector<d2p> *grid_centers = sample_squaregrid(width, height, center_distance);
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@ -232,7 +242,9 @@ void gerbolyze::VoronoiVectorizer::vectorize_image(cairo_t *cr, const pugi::xml_
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/* Calculate voronoi diagram for the grid generated above. */
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jcv_diagram diagram;
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memset(&diagram, 0, sizeof(jcv_diagram));
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jcv_rect rect {{0.0, 0.0}, {width, height}};
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cerr << "adjusted scale " << scale_x << " " << scale_y << endl;
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cerr << "voronoi clip rect " << (scale_x * orig_cols) << " " << (scale_y * orig_rows) << endl;
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jcv_rect rect {{0.0, 0.0}, {scale_x * orig_cols, scale_y * orig_rows}};
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jcv_point *pts = reinterpret_cast<jcv_point *>(grid_centers->data()); /* hackety hack */
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jcv_diagram_generate(grid_centers->size(), pts, &rect, 0, &diagram);
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/* Relax points, i.e. wiggle them around a little bit to equalize differences between cell sizes a little bit. */
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@ -255,8 +267,8 @@ void gerbolyze::VoronoiVectorizer::vectorize_image(cairo_t *cr, const pugi::xml_
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const jcv_point center = sites[i].p;
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double pxd = (double)blurred.at<unsigned char>(
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(int)round(center.y / height * blurred.rows),
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(int)round(center.x / width * blurred.cols)) / 255.0;
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(int)round(center.y / (scale_y * orig_rows / blurred.rows)),
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(int)round(center.x / (scale_x * orig_cols / blurred.cols))) / 255.0;
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/* FIXME: This is a workaround for a memory corruption bug that happens with the square-grid setting. When using
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* square-grid on a fairly small test image, sometimes sites[i].index will be out of bounds here.
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*/
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@ -321,8 +333,8 @@ void gerbolyze::VoronoiVectorizer::vectorize_image(cairo_t *cr, const pugi::xml_
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* "step". */
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double x = e->pos[0].x;
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double y = e->pos[0].y;
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x = center.x + (x - center.x) * fill_factor;
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y = center.y + (y - center.y) * fill_factor;
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x = off_x + center.x + (x - center.x) * fill_factor;
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y = off_y + center.y + (y - center.y) * fill_factor;
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cairo_user_to_device(cr, &x, &y);
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cell_path.push_back({ (ClipperLib::cInt)round(x * clipper_scale), (ClipperLib::cInt)round(y * clipper_scale) });
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@ -331,8 +343,8 @@ void gerbolyze::VoronoiVectorizer::vectorize_image(cairo_t *cr, const pugi::xml_
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/* Emit endpoint of current edge */
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double x = e->pos[1].x;
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double y = e->pos[1].y;
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x = center.x + (x - center.x) * fill_factor;
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y = center.y + (y - center.y) * fill_factor;
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x = off_x + center.x + (x - center.x) * fill_factor;
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y = off_y + center.y + (y - center.y) * fill_factor;
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cairo_user_to_device(cr, &x, &y);
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cell_path.push_back({ (ClipperLib::cInt)round(x * clipper_scale), (ClipperLib::cInt)round(y * clipper_scale) });
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@ -379,6 +391,61 @@ void gerbolyze::VoronoiVectorizer::vectorize_image(cairo_t *cr, const pugi::xml_
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cairo_restore(cr);
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}
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void gerbolyze::handle_aspect_ratio(string spec, double &scale_x, double &scale_y, double &off_x, double &off_y, double cols, double rows) {
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if (spec.empty()) {
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spec = "xMidYMid meet";
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}
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auto idx = spec.find(" ");
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string par_align = spec;
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string par_meet = "meet";
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if (idx != string::npos) {
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par_align = spec.substr(0, idx);
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par_meet = spec.substr(idx+1);
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}
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if (par_align != "none") {
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double scale = scale_x;
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if (par_meet == "slice") {
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scale = std::max(scale_x, scale_y);
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} else {
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scale = std::min(scale_x, scale_y);
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}
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std::regex reg("x(Min|Mid|Max)Y(Min|Mid|Max)");
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std::smatch match;
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cerr << "data: " <<" "<< scale_x << "/" << scale_y << ": " << scale << endl;
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off_x = (scale_x - scale) * cols;
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off_y = (scale_y - scale) * rows;
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cerr << rows <<","<<cols<<" " << off_x << "," << off_y << endl;
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if (std::regex_match(par_align, match, reg)) {
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assert (match.size() == 3);
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if (match[1].str() == "Min") {
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off_x = 0;
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} else if (match[1].str() == "Mid") {
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off_x *= 0.5;
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}
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if (match[2].str() == "Min") {
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off_y = 0;
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} else if (match[2].str() == "Mid") {
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off_y *= 0.5;
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}
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} else {
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cerr << "Invalid preserveAspectRatio meetOrSlice value \"" << par_align << "\"" << endl;
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off_x *= 0.5;
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off_y *= 0.5;
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}
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scale_x = scale_y = scale;
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}
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cerr << "res: "<< off_x << "," << off_y << endl;
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}
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void gerbolyze::OpenCVContoursVectorizer::vectorize_image(cairo_t *cr, const pugi::xml_node &node, ClipperLib::Paths &clip_path, cairo_matrix_t &viewport_matrix, PolygonSink &sink, double min_feature_size_px) {
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double x, y, width, height;
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parse_img_meta(node, x, y, width, height);
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@ -391,6 +458,13 @@ void gerbolyze::OpenCVContoursVectorizer::vectorize_image(cairo_t *cr, const pug
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apply_cairo_transform_from_svg(cr, node.attribute("transform").value());
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cairo_translate(cr, x, y);
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double scale_x = (double)width / (double)img.cols;
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double scale_y = (double)height / (double)img.rows;
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double off_x = 0;
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double off_y = 0;
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handle_aspect_ratio(node.attribute("preserveAspectRatio").value(),
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scale_x, scale_y, off_x, off_y, img.cols, img.rows);
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draw_bg_rect(cr, width, height, clip_path, sink, viewport_matrix);
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vector<vector<cv::Point>> contours;
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@ -415,8 +489,8 @@ void gerbolyze::OpenCVContoursVectorizer::vectorize_image(cairo_t *cr, const pug
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ClipperLib::Path out;
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for (const auto &p : contours[i]) {
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double x = (double)p.x / (double)img.cols * (double)width;
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double y = (double)p.y / (double)img.rows * (double)height;
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double x = off_x + (double)p.x * scale_x;
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double y = off_y + (double)p.y * scale_y;
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cairo_user_to_device(cr, &x, &y);
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out.push_back({ (ClipperLib::cInt)round(x * clipper_scale), (ClipperLib::cInt)round(y * clipper_scale) });
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}
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