/***************************************************************************** * * This file is part of Mapnik (c++ mapping toolkit) * * Copyright (C) 2014 Artem Pavlenko * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA * *****************************************************************************/ #if defined(SVG_RENDERER) // mapnik #include #include #include #include #include #include #include #include #include #include #include #include #include // boost #include namespace mapnik { namespace geometry { template struct coord_transformer { using calc_type = CalculationType; coord_transformer(view_transform const& tr, proj_transform const& prj_trans) : tr_(tr), prj_trans_(prj_trans) {} template inline bool apply(P1 const& p1, P2 & p2) const { using coordinate_type = typename boost::geometry::coordinate_type::type; calc_type x = boost::geometry::get<0>(p1); calc_type y = boost::geometry::get<1>(p1); calc_type z = 0.0; if (!prj_trans_.backward(x, y, z)) return false; tr_.forward(&x,&y); boost::geometry::set<0>(p2, safe_cast(x)); boost::geometry::set<1>(p2, safe_cast(y)); return true; } view_transform const& tr_; proj_transform const& prj_trans_; }; } // ns geometry struct symbol_type_dispatch { template bool operator()(Symbolizer const&) const { return false; } bool operator()(line_symbolizer const&) const { return true; } bool operator()(polygon_symbolizer const&) const { return true; } }; bool is_path_based(symbolizer const& sym) { return util::apply_visitor(symbol_type_dispatch(), sym); } template void generate_path_impl(OutputIterator & output_iterator, PathType const& path, svg::path_output_attributes const& path_attributes) { using path_dash_array_grammar = svg::svg_path_dash_array_grammar; using path_attributes_grammar = svg::svg_path_attributes_grammar; static const path_attributes_grammar attributes_grammar; static const path_dash_array_grammar dash_array_grammar; static const svg::svg_path_generator svg_path_grammer; boost::spirit::karma::lit_type lit; boost::spirit::karma::generate(output_iterator, lit("\n"), path_attributes); } template bool svg_renderer::process(rule::symbolizers const& syms, mapnik::feature_impl & feature, proj_transform const& prj_trans) { // svg renderer supports processing of multiple symbolizers. using trans_path_type = transform_path_adapter; bool process_path = false; // process each symbolizer to collect its (path) information. // path information (attributes from line_ and polygon_ symbolizers) // is collected with the path_attributes_ data member. for (auto const& sym : syms) { if (is_path_based(sym)) { process_path = true; } util::apply_visitor(symbolizer_dispatch>(*this, feature, prj_trans), sym); } if (process_path) { // generate path output for each geometry of the current feature. auto const& geom = feature.get_geometry(); path_type path; path.set_type(static_cast(mapnik::util::to_ds_type(geom))); geometry::to_path(geom, path); vertex_adapter va(path); trans_path_type trans_path(common_.t_, va, prj_trans); generate_path_impl(generator_.output_iterator_, trans_path, path_attributes_); // set the previously collected values back to their defaults // for the feature that will be processed next. path_attributes_.reset(); } return true; } template bool svg_renderer >::process(rule::symbolizers const& syms, mapnik::feature_impl & feature, proj_transform const& prj_trans); } #endif