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/usr/include/agg2/ctrl/agg_ctrl.h is in libagg-dev 2.5+dfsg1-9.

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//----------------------------------------------------------------------------
// Anti-Grain Geometry (AGG) - Version 2.5
// A high quality rendering engine for C++
// Copyright (C) 2002-2006 Maxim Shemanarev
// Contact: mcseem@antigrain.com
//          mcseemagg@yahoo.com
//          http://antigrain.com
// 
// AGG is free software; you can redistribute it and/or
// modify it under the terms of the GNU General Public License
// as published by the Free Software Foundation; either version 2
// of the License, or (at your option) any later version.
// 
// AGG 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 General Public License for more details.
// 
// You should have received a copy of the GNU General Public License
// along with AGG; if not, write to the Free Software
// Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, 
// MA 02110-1301, USA.
//----------------------------------------------------------------------------

#ifndef AGG_CTRL_INCLUDED
#define AGG_CTRL_INCLUDED

#include "agg_trans_affine.h"
#include "agg_renderer_scanline.h"

namespace agg
{

    //--------------------------------------------------------------------ctrl
    class ctrl
    {
    public:
        //--------------------------------------------------------------------
        virtual ~ctrl() {}
        ctrl(double x1, double y1, double x2, double y2, bool flip_y) :
            m_x1(x1), m_y1(y1), m_x2(x2), m_y2(y2), 
            m_flip_y(flip_y),
            m_mtx(0)
        {
        }

        //--------------------------------------------------------------------
        virtual bool in_rect(double x, double y) const = 0;
        virtual bool on_mouse_button_down(double x, double y) = 0;
        virtual bool on_mouse_button_up(double x, double y) = 0;
        virtual bool on_mouse_move(double x, double y, bool button_flag) = 0;
        virtual bool on_arrow_keys(bool left, bool right, bool down, bool up) = 0;

        //--------------------------------------------------------------------
        void transform(const trans_affine& mtx) { m_mtx = &mtx; }
        void no_transform() { m_mtx = 0; }

        //--------------------------------------------------------------------
        void transform_xy(double* x, double* y) const
        {
            if(m_flip_y) *y = m_y1 + m_y2 - *y;
            if(m_mtx) m_mtx->transform(x, y);
        }

        //--------------------------------------------------------------------
        void inverse_transform_xy(double* x, double* y) const
        {
            if(m_mtx) m_mtx->inverse_transform(x, y);
            if(m_flip_y) *y = m_y1 + m_y2 - *y;
        }

        //--------------------------------------------------------------------
        double scale() const { return m_mtx ? m_mtx->scale() : 1.0; }

    private:
        ctrl(const ctrl&);
        const ctrl& operator = (const ctrl&);

    protected:
        double m_x1;
        double m_y1;
        double m_x2;
        double m_y2;

    private:
        bool m_flip_y;
        const trans_affine* m_mtx;
    };


    //--------------------------------------------------------------------
    template<class Rasterizer, class Scanline, class Renderer, class Ctrl> 
    void render_ctrl(Rasterizer& ras, Scanline& sl, Renderer& r, Ctrl& c)
    {
        unsigned i;
        for(i = 0; i < c.num_paths(); i++)
        {
            ras.reset();
            ras.add_path(c, i);
            render_scanlines_aa_solid(ras, sl, r, c.color(i));
        }
    }


    //--------------------------------------------------------------------
    template<class Rasterizer, class Scanline, class Renderer, class Ctrl> 
    void render_ctrl_rs(Rasterizer& ras, Scanline& sl, Renderer& r, Ctrl& c)
    {
        unsigned i;
        for(i = 0; i < c.num_paths(); i++)
        {
            ras.reset();
            ras.add_path(c, i);
            r.color(c.color(i));
            render_scanlines(ras, sl, r);
        }
    }


}


#endif