676 lines
21 KiB
C++
676 lines
21 KiB
C++
#include <stdio.h>
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#include "agg_basics.h"
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#include "agg_rendering_buffer.h"
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#include "agg_rasterizer_scanline_aa.h"
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#include "agg_scanline_u.h"
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#include "agg_scanline_p.h"
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#include "agg_scanline_bin.h"
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#include "agg_renderer_scanline.h"
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#include "agg_renderer_primitives.h"
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#include "agg_span_solid.h"
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#include "agg_conv_curve.h"
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#include "agg_conv_stroke.h"
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#include "agg_gsv_text.h"
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#include "agg_scanline_boolean_algebra.h"
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#include "agg_scanline_storage_aa.h"
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#include "agg_scanline_storage_bin.h"
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#include "platform/agg_platform_support.h"
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#include "ctrl/agg_slider_ctrl.h"
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#include "ctrl/agg_cbox_ctrl.h"
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#include "ctrl/agg_rbox_ctrl.h"
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#define AGG_BGR24
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//#define AGG_BGR96
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#include "pixel_formats.h"
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enum flip_y_e { flip_y = true };
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class spiral
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{
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public:
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spiral(double x, double y, double r1, double r2, double step, double start_angle=0) :
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m_x(x),
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m_y(y),
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m_r1(r1),
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m_r2(r2),
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m_step(step),
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m_start_angle(start_angle),
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m_angle(start_angle),
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m_da(agg::deg2rad(4.0)),
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m_dr(m_step / 90.0)
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{
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}
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void rewind(unsigned)
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{
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m_angle = m_start_angle;
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m_curr_r = m_r1;
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m_start = true;
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}
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unsigned vertex(double* x, double* y)
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{
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if(m_curr_r > m_r2) return agg::path_cmd_stop;
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*x = m_x + cos(m_angle) * m_curr_r;
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*y = m_y + sin(m_angle) * m_curr_r;
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m_curr_r += m_dr;
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m_angle += m_da;
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if(m_start)
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{
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m_start = false;
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return agg::path_cmd_move_to;
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}
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return agg::path_cmd_line_to;
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}
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private:
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double m_x;
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double m_y;
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double m_r1;
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double m_r2;
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double m_step;
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double m_start_angle;
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double m_angle;
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double m_curr_r;
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double m_da;
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double m_dr;
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bool m_start;
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};
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template<class Rasterizer, class Scanline>
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unsigned count_spans(Rasterizer& ras, Scanline& sl)
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{
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unsigned n = 0;
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if(ras.rewind_scanlines())
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{
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sl.reset(ras.min_x(), ras.max_x());
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while(ras.sweep_scanline(sl))
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{
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n += sl.num_spans();
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}
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}
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return n;
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}
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void make_gb_poly(agg::path_storage& ps);
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void make_arrows(agg::path_storage& ps);
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class the_application : public agg::platform_support
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{
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agg::rbox_ctrl<color_type> m_polygons;
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agg::rbox_ctrl<color_type> m_fill_rule;
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agg::rbox_ctrl<color_type> m_scanline_type;
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agg::rbox_ctrl<color_type> m_operation;
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double m_x;
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double m_y;
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public:
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the_application(agg::pix_format_e format, bool flip_y) :
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agg::platform_support(format, flip_y),
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m_polygons (5.0, 5.0, 5.0+205.0, 110.0, !flip_y),
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m_fill_rule (200, 5.0, 200+105.0, 50.0, !flip_y),
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m_scanline_type(300, 5.0, 300+115.0, 70.0, !flip_y),
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m_operation (535.0, 5.0, 535.0+115.0, 145.0, !flip_y)
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{
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m_operation.add_item("None");
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m_operation.add_item("OR");
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m_operation.add_item("AND");
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m_operation.add_item("XOR Linear");
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m_operation.add_item("XOR Saddle");
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m_operation.add_item("A-B");
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m_operation.add_item("B-A");
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m_operation.cur_item(2);
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add_ctrl(m_operation);
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m_operation.no_transform();
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m_fill_rule.add_item("Even-Odd");
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m_fill_rule.add_item("Non Zero");
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m_fill_rule.cur_item(1);
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add_ctrl(m_fill_rule);
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m_fill_rule.no_transform();
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m_scanline_type.add_item("scanline_p");
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m_scanline_type.add_item("scanline_u");
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m_scanline_type.add_item("scanline_bin");
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m_scanline_type.cur_item(1);
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add_ctrl(m_scanline_type);
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m_scanline_type.no_transform();
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m_polygons.add_item("Two Simple Paths");
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m_polygons.add_item("Closed Stroke");
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m_polygons.add_item("Great Britain and Arrows");
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m_polygons.add_item("Great Britain and Spiral");
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m_polygons.add_item("Spiral and Glyph");
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m_polygons.cur_item(3);
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add_ctrl(m_polygons);
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m_polygons.no_transform();
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}
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template<class Rasterizer>
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void render_scanline_boolean(Rasterizer& ras1, Rasterizer& ras2)
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{
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if(m_operation.cur_item() > 0)
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{
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agg::sbool_op_e op;
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switch(m_operation.cur_item())
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{
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case 1: op = agg::sbool_or; break;
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case 2: op = agg::sbool_and; break;
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case 3: op = agg::sbool_xor; break;
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case 4: op = agg::sbool_xor_saddle;break;
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case 5: op = agg::sbool_a_minus_b; break;
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case 6: op = agg::sbool_b_minus_a; break;
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}
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typedef agg::renderer_base<pixfmt> renderer_base;
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pixfmt pixf(rbuf_window());
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renderer_base rb(pixf);
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double t1 = 0.0;
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double t2 = 0.0;
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unsigned num_spans = 0;
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switch(m_scanline_type.cur_item())
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{
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case 0:
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{
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typedef agg::renderer_scanline_aa_solid<renderer_base> renderer_solid;
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typedef agg::scanline_p8 scanline_type;
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renderer_solid ren(rb);
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scanline_type sl;
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scanline_type sl1;
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scanline_type sl2;
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// The intermediate storage is used only to test the perfoprmance,
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// the short variant can be as follows:
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// ------------------------
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// ren.color(agg::rgba(0.5, 0.0, 0, 0.5));
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// agg::sbool_combine_shapes_aa(op, ras1, ras2, sl1, sl2, sl, ren);
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agg::scanline_storage_aa8 storage;
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agg::scanline_storage_aa8 storage1;
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agg::scanline_storage_aa8 storage2;
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agg::render_scanlines(ras1, sl, storage1);
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agg::render_scanlines(ras2, sl, storage2);
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start_timer();
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for(int i = 0; i < 10; i++)
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{
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agg::sbool_combine_shapes_aa(op, storage1, storage2, sl1, sl2, sl, storage);
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}
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t1 = elapsed_time() / 10.0;
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start_timer();
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ren.color(agg::rgba(0.5, 0.0, 0, 0.5));
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agg::render_scanlines(storage, sl, ren);
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t2 = elapsed_time();
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num_spans = count_spans(storage, sl);
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}
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break;
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case 1:
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{
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typedef agg::renderer_scanline_aa_solid<renderer_base> renderer_solid;
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typedef agg::scanline_u8 scanline_type;
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renderer_solid ren(rb);
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scanline_type sl;
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scanline_type sl1;
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scanline_type sl2;
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agg::scanline_storage_aa8 storage;
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agg::scanline_storage_aa8 storage1;
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agg::scanline_storage_aa8 storage2;
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agg::render_scanlines(ras1, sl, storage1);
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agg::render_scanlines(ras2, sl, storage2);
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start_timer();
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for(int i = 0; i < 10; i++)
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{
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agg::sbool_combine_shapes_aa(op, storage1, storage2, sl1, sl2, sl, storage);
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}
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t1 = elapsed_time() / 10.0;
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start_timer();
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ren.color(agg::rgba(0.5, 0.0, 0, 0.5));
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agg::render_scanlines(storage, sl, ren);
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t2 = elapsed_time();
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num_spans = count_spans(storage, sl);
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}
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break;
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case 2:
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{
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typedef agg::renderer_scanline_bin_solid<renderer_base> renderer_solid;
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typedef agg::scanline_bin scanline_type;
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renderer_solid ren(rb);
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scanline_type sl;
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scanline_type sl1;
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scanline_type sl2;
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agg::scanline_storage_bin storage;
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agg::scanline_storage_bin storage1;
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agg::scanline_storage_bin storage2;
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agg::render_scanlines(ras1, sl, storage1);
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agg::render_scanlines(ras2, sl, storage2);
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start_timer();
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for(int i = 0; i < 10; i++)
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{
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agg::sbool_combine_shapes_bin(op, storage1, storage2, sl1, sl2, sl, storage);
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}
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t1 = elapsed_time() / 10.0;
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start_timer();
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ren.color(agg::rgba(0.5, 0.0, 0, 0.5));
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agg::render_scanlines(storage, sl, ren);
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t2 = elapsed_time();
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num_spans = count_spans(storage, sl);
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}
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break;
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}
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char buf[100];
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sprintf(buf, "Combine=%.3fms\n\nRender=%.3fms\n\nnum_spans=%d", t1, t2, num_spans);
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agg::renderer_scanline_aa_solid<renderer_base> ren(rb);
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agg::scanline_p8 sl;
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agg::gsv_text txt;
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agg::conv_stroke<agg::gsv_text> txt_stroke(txt);
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txt_stroke.width(1.0);
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txt_stroke.line_cap(agg::round_cap);
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txt.size(8.0);
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txt.start_point(420, 40);
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txt.text(buf);
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ras1.add_path(txt_stroke);
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ren.color(agg::rgba(0.0, 0.0, 0.0));
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agg::render_scanlines(ras1, sl, ren);
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}
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}
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template<class Rasterizer>
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unsigned render_sbool(Rasterizer& ras1, Rasterizer& ras2)
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{
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pixfmt pf(rbuf_window());
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agg::renderer_base<pixfmt> rb(pf);
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agg::renderer_scanline_aa_solid<agg::renderer_base<pixfmt> > ren(rb);
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agg::scanline_p8 sl;
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ras1.filling_rule(m_fill_rule.cur_item() ? agg::fill_non_zero : agg::fill_even_odd);
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ras2.filling_rule(m_fill_rule.cur_item() ? agg::fill_non_zero : agg::fill_even_odd);
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switch(m_polygons.cur_item())
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{
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case 0:
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{
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//------------------------------------
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// Two simple paths
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//
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agg::path_storage ps1;
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agg::path_storage ps2;
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double x = m_x - initial_width()/2 + 100;
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double y = m_y - initial_height()/2 + 100;
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ps1.move_to(x+140, y+145);
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ps1.line_to(x+225, y+44);
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ps1.line_to(x+296, y+219);
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ps1.close_polygon();
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ps1.line_to(x+226, y+289);
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ps1.line_to(x+82, y+292);
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ps1.move_to(x+220, y+222);
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ps1.line_to(x+363, y+249);
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ps1.line_to(x+265, y+331);
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ps1.move_to(x+242, y+243);
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ps1.line_to(x+325, y+261);
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ps1.line_to(x+268, y+309);
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ps1.move_to(x+259, y+259);
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ps1.line_to(x+273, y+288);
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ps1.line_to(x+298, y+266);
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ps2.move_to(100+32, 100+77);
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ps2.line_to(100+473, 100+263);
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ps2.line_to(100+351, 100+290);
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ps2.line_to(100+354, 100+374);
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ras1.reset();
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ras1.add_path(ps1);
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ren.color(agg::rgba(0, 0, 0, 0.1));
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agg::render_scanlines(ras1, sl, ren);
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ras2.reset();
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ras2.add_path(ps2);
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ren.color(agg::rgba(0, 0.6, 0, 0.1));
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agg::render_scanlines(ras2, sl, ren);
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render_scanline_boolean(ras1, ras2);
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}
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break;
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case 1:
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{
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//------------------------------------
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// Closed stroke
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//
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agg::path_storage ps1;
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agg::path_storage ps2;
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agg::conv_stroke<agg::path_storage> stroke(ps2);
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stroke.width(15.0);
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double x = m_x - initial_width()/2 + 100;
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double y = m_y - initial_height()/2 + 100;
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ps1.move_to(x+140, y+145);
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ps1.line_to(x+225, y+44);
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ps1.line_to(x+296, y+219);
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ps1.close_polygon();
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ps1.line_to(x+226, y+289);
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ps1.line_to(x+82, y+292);
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ps1.move_to(x+220-50, y+222);
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ps1.line_to(x+363-50, y+249);
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ps1.line_to(x+265-50, y+331);
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ps1.close_polygon();
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ps2.move_to(100+32, 100+77);
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ps2.line_to(100+473, 100+263);
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ps2.line_to(100+351, 100+290);
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ps2.line_to(100+354, 100+374);
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ps2.close_polygon();
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ras1.reset();
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ras1.add_path(ps1);
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ren.color(agg::rgba(0, 0, 0, 0.1));
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agg::render_scanlines(ras1, sl, ren);
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ras2.reset();
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ras2.add_path(stroke);
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ren.color(agg::rgba(0, 0.6, 0, 0.1));
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agg::render_scanlines(ras2, sl, ren);
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render_scanline_boolean(ras1, ras2);
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}
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break;
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case 2:
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{
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//------------------------------------
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// Great Britain and Arrows
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//
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agg::path_storage gb_poly;
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agg::path_storage arrows;
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make_gb_poly(gb_poly);
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make_arrows(arrows);
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agg::trans_affine mtx1;
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agg::trans_affine mtx2;
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mtx1 *= agg::trans_affine_translation(-1150, -1150);
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mtx1 *= agg::trans_affine_scaling(2.0);
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mtx2 = mtx1;
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mtx2 *= agg::trans_affine_translation(m_x - initial_width()/2,
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m_y - initial_height()/2);
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agg::conv_transform<agg::path_storage> trans_gb_poly(gb_poly, mtx1);
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agg::conv_transform<agg::path_storage> trans_arrows(arrows, mtx2);
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ras2.add_path(trans_gb_poly);
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ren.color(agg::rgba(0.5, 0.5, 0, 0.1));
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agg::render_scanlines(ras2, sl, ren);
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agg::conv_stroke<agg::conv_transform<agg::path_storage> > stroke_gb_poly(trans_gb_poly);
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stroke_gb_poly.width(0.1);
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ras1.add_path(stroke_gb_poly);
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ren.color(agg::rgba(0, 0, 0));
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agg::render_scanlines(ras1, sl, ren);
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ras2.add_path(trans_arrows);
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ren.color(agg::rgba(0.0, 0.5, 0.5, 0.1));
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agg::render_scanlines(ras2, sl, ren);
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ras1.reset();
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ras1.add_path(trans_gb_poly);
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render_scanline_boolean(ras1, ras2);
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}
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break;
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case 3:
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{
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//------------------------------------
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// Great Britain and a Spiral
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//
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spiral sp(m_x, m_y, 10, 150, 30, 0.0);
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agg::conv_stroke<spiral> stroke(sp);
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stroke.width(15.0);
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agg::path_storage gb_poly;
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make_gb_poly(gb_poly);
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agg::trans_affine mtx;
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mtx *= agg::trans_affine_translation(-1150, -1150);
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mtx *= agg::trans_affine_scaling(2.0);
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mtx *= trans_affine_resizing();
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agg::conv_transform<agg::path_storage> trans_gb_poly(gb_poly, mtx);
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ras1.add_path(trans_gb_poly);
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ren.color(agg::rgba(0.5, 0.5, 0, 0.1));
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agg::render_scanlines(ras1, sl, ren);
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agg::conv_stroke<agg::conv_transform<agg::path_storage> > stroke_gb_poly(trans_gb_poly);
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stroke_gb_poly.width(0.1);
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ras1.reset();
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ras1.add_path(stroke_gb_poly);
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ren.color(agg::rgba(0, 0, 0));
|
|
agg::render_scanlines(ras1, sl, ren);
|
|
|
|
ras2.reset();
|
|
ras2.add_path(stroke);
|
|
ren.color(agg::rgba(0.0, 0.5, 0.5, 0.1));
|
|
agg::render_scanlines(ras2, sl, ren);
|
|
|
|
ras1.reset();
|
|
ras1.add_path(trans_gb_poly);
|
|
render_scanline_boolean(ras1, ras2);
|
|
}
|
|
break;
|
|
|
|
|
|
case 4:
|
|
{
|
|
//------------------------------------
|
|
// Spiral and glyph
|
|
//
|
|
spiral sp(m_x, m_y, 10, 150, 30, 0.0);
|
|
agg::conv_stroke<spiral> stroke(sp);
|
|
stroke.width(15.0);
|
|
|
|
agg::path_storage glyph;
|
|
glyph.move_to(28.47, 6.45);
|
|
glyph.curve3(21.58, 1.12, 19.82, 0.29);
|
|
glyph.curve3(17.19, -0.93, 14.21, -0.93);
|
|
glyph.curve3(9.57, -0.93, 6.57, 2.25);
|
|
glyph.curve3(3.56, 5.42, 3.56, 10.60);
|
|
glyph.curve3(3.56, 13.87, 5.03, 16.26);
|
|
glyph.curve3(7.03, 19.58, 11.99, 22.51);
|
|
glyph.curve3(16.94, 25.44, 28.47, 29.64);
|
|
glyph.line_to(28.47, 31.40);
|
|
glyph.curve3(28.47, 38.09, 26.34, 40.58);
|
|
glyph.curve3(24.22, 43.07, 20.17, 43.07);
|
|
glyph.curve3(17.09, 43.07, 15.28, 41.41);
|
|
glyph.curve3(13.43, 39.75, 13.43, 37.60);
|
|
glyph.line_to(13.53, 34.77);
|
|
glyph.curve3(13.53, 32.52, 12.38, 31.30);
|
|
glyph.curve3(11.23, 30.08, 9.38, 30.08);
|
|
glyph.curve3(7.57, 30.08, 6.42, 31.35);
|
|
glyph.curve3(5.27, 32.62, 5.27, 34.81);
|
|
glyph.curve3(5.27, 39.01, 9.57, 42.53);
|
|
glyph.curve3(13.87, 46.04, 21.63, 46.04);
|
|
glyph.curve3(27.59, 46.04, 31.40, 44.04);
|
|
glyph.curve3(34.28, 42.53, 35.64, 39.31);
|
|
glyph.curve3(36.52, 37.21, 36.52, 30.71);
|
|
glyph.line_to(36.52, 15.53);
|
|
glyph.curve3(36.52, 9.13, 36.77, 7.69);
|
|
glyph.curve3(37.01, 6.25, 37.57, 5.76);
|
|
glyph.curve3(38.13, 5.27, 38.87, 5.27);
|
|
glyph.curve3(39.65, 5.27, 40.23, 5.62);
|
|
glyph.curve3(41.26, 6.25, 44.19, 9.18);
|
|
glyph.line_to(44.19, 6.45);
|
|
glyph.curve3(38.72, -0.88, 33.74, -0.88);
|
|
glyph.curve3(31.35, -0.88, 29.93, 0.78);
|
|
glyph.curve3(28.52, 2.44, 28.47, 6.45);
|
|
glyph.close_polygon();
|
|
|
|
glyph.move_to(28.47, 9.62);
|
|
glyph.line_to(28.47, 26.66);
|
|
glyph.curve3(21.09, 23.73, 18.95, 22.51);
|
|
glyph.curve3(15.09, 20.36, 13.43, 18.02);
|
|
glyph.curve3(11.77, 15.67, 11.77, 12.89);
|
|
glyph.curve3(11.77, 9.38, 13.87, 7.06);
|
|
glyph.curve3(15.97, 4.74, 18.70, 4.74);
|
|
glyph.curve3(22.41, 4.74, 28.47, 9.62);
|
|
glyph.close_polygon();
|
|
|
|
agg::trans_affine mtx;
|
|
mtx *= agg::trans_affine_scaling(4.0);
|
|
mtx *= agg::trans_affine_translation(220, 200);
|
|
agg::conv_transform<agg::path_storage> trans(glyph, mtx);
|
|
agg::conv_curve<agg::conv_transform<agg::path_storage> > curve(trans);
|
|
|
|
ras1.reset();
|
|
ras1.add_path(stroke);
|
|
ren.color(agg::rgba(0, 0, 0, 0.1));
|
|
agg::render_scanlines(ras1, sl, ren);
|
|
|
|
ras2.reset();
|
|
ras2.add_path(curve);
|
|
ren.color(agg::rgba(0, 0.6, 0, 0.1));
|
|
agg::render_scanlines(ras2, sl, ren);
|
|
|
|
render_scanline_boolean(ras1, ras2);
|
|
}
|
|
break;
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
|
|
virtual void on_init()
|
|
{
|
|
m_x = width() / 2.0;
|
|
m_y = height() / 2.0;
|
|
}
|
|
|
|
virtual void on_draw()
|
|
{
|
|
typedef agg::renderer_base<pixfmt> base_ren_type;
|
|
typedef agg::renderer_scanline_aa_solid<base_ren_type> renderer_solid;
|
|
|
|
pixfmt pf(rbuf_window());
|
|
base_ren_type ren_base(pf);
|
|
renderer_solid ren_solid(ren_base);
|
|
ren_base.clear(agg::rgba(1,1,1));
|
|
|
|
agg::scanline_u8 sl;
|
|
agg::rasterizer_scanline_aa<> ras;
|
|
agg::rasterizer_scanline_aa<> ras2;
|
|
|
|
agg::render_ctrl(ras, sl, ren_base, m_polygons);
|
|
agg::render_ctrl(ras, sl, ren_base, m_fill_rule);
|
|
agg::render_ctrl(ras, sl, ren_base, m_scanline_type);
|
|
agg::render_ctrl(ras, sl, ren_base, m_operation);
|
|
|
|
render_sbool(ras, ras2);
|
|
|
|
}
|
|
|
|
|
|
|
|
|
|
virtual void on_mouse_button_down(int x, int y, unsigned flags)
|
|
{
|
|
if(flags & agg::mouse_left)
|
|
{
|
|
m_x = x;
|
|
m_y = y;
|
|
force_redraw();
|
|
}
|
|
|
|
if(flags & agg::mouse_right)
|
|
{
|
|
char buf[100];
|
|
sprintf(buf, "%d %d", x, y);
|
|
message(buf);
|
|
}
|
|
}
|
|
|
|
|
|
virtual void on_mouse_move(int x, int y, unsigned flags)
|
|
{
|
|
if(flags & agg::mouse_left)
|
|
{
|
|
m_x = x;
|
|
m_y = y;
|
|
force_redraw();
|
|
}
|
|
}
|
|
|
|
|
|
|
|
};
|
|
|
|
|
|
|
|
int agg_main(int argc, char* argv[])
|
|
{
|
|
the_application app(pix_format, flip_y);
|
|
app.caption("AGG Example. Scanline Boolean");
|
|
|
|
if(app.init(655, 520, agg::window_resize))
|
|
{
|
|
return app.run();
|
|
}
|
|
return 1;
|
|
}
|
|
|
|
|