// // Copyright 2005-2007 Adobe Systems Incorporated // // Distributed under the Boost Software License, Version 1.0 // See accompanying file LICENSE_1_0.txt or copy at // http://www.boost.org/LICENSE_1_0.txt // #include #include #include // Example for convolve_rows() and convolve_cols() in the numeric extension using namespace boost::gil; // Models a Unary Function template // Models PixelValueConcept struct mandelbrot_fn { using point_t = boost::gil::point_t; using const_t = mandelbrot_fn; using value_type = P; using reference = value_type; using const_reference = value_type; using argument_type = point_t; using result_type = reference; static constexpr bool is_mutable =false; value_type _in_color,_out_color; point_t _img_size; static const int MAX_ITER=100; // max number of iterations mandelbrot_fn() {} mandelbrot_fn(const point_t& sz, const value_type& in_color, const value_type& out_color) : _in_color(in_color), _out_color(out_color), _img_size(sz) {} result_type operator()(const point_t& p) const { // normalize the coords to (-2..1, -1.5..1.5) // (actually make y -1.0..2 so it is asymmetric, so we can verify some view factory methods) double t=get_num_iter(point(p.x/(double)_img_size.x*3-2, p.y/(double)_img_size.y*3-1.0f));//1.5f)); t=pow(t,0.2); value_type ret; for (int k=0; k::value; ++k) ret[k]=(typename channel_type

::type)(_in_color[k]*t + _out_color[k]*(1-t)); return ret; } private: double get_num_iter(const point& p) const { point Z(0,0); for (int i=0; i(Z.x*Z.x - Z.y*Z.y + p.x, 2*Z.x*Z.y + p.y); if (Z.x*Z.x + Z.y*Z.y > 4) return i/(double)MAX_ITER; } return 0; } }; int main() { using deref_t = mandelbrot_fn; using point_t = deref_t::point_t; using locator_t = virtual_2d_locator; using my_virt_view_t = image_view; boost::function_requires>(); gil_function_requires>(); point_t dims(200,200); my_virt_view_t mandel(dims, locator_t(point_t(0,0), point_t(1,1), deref_t(dims, rgb8_pixel_t(255,0,255), rgb8_pixel_t(0,255,0)))); write_view("out-mandelbrot.jpg",mandel, jpeg_tag{}); return 0; }