8f10fff8dc
Sink the 2D panel logic into FGPanelNode, simplifying renderer.cxx and a few other places. Also allows potential for unloading / paging of 2.5D panels in the future.
578 lines
15 KiB
C++
578 lines
15 KiB
C++
// panel.hxx - generic support classes for a 2D panel.
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//
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// Written by David Megginson, started January 2000.
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//
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// This program is free software; you can redistribute it and/or
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// modify it under the terms of the GNU General Public License as
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// published by the Free Software Foundation; either version 2 of the
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// License, or (at your option) any later version.
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//
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// This program is distributed in the hope that it will be useful, but
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// WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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// General Public License for more details.
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//
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// You should have received a copy of the GNU General Public License
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// along with this program; if not, write to the Free Software
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// Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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//
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// $Id$
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#ifndef __PANEL_HXX
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#define __PANEL_HXX
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#include <osg/ref_ptr>
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#include <osg/StateSet>
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#include <osg/Texture2D>
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#include <simgear/compiler.h>
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#include <simgear/props/props.hxx>
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#include <simgear/props/propertyObject.hxx>
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#include <simgear/structure/SGBinding.hxx>
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#include <simgear/math/interpolater.hxx>
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#include <simgear/timing/timestamp.hxx>
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#include <cmath>
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#include <vector>
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#include <map>
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#include <Main/fg_props.hxx>
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class FGPanelInstrument;
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class fntFont;
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class DCLGPS;
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class IntRect;
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////////////////////////////////////////////////////////////////////////
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// Texture management.
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////////////////////////////////////////////////////////////////////////
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/**
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* Texture manager (should migrate out into FGFS).
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*
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* This class ensures that no texture is loaded more than once.
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*/
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class FGTextureManager
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{
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public:
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static osg::Texture2D* createTexture(const std::string &relativePath,
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bool staticTexture = true);
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static void addTexture(const std::string &relativePath, osg::Texture2D* texture);
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private:
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static std::map<std::string,osg::ref_ptr<osg::Texture2D> > _textureMap;
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};
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/**
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* Cropped texture (should migrate out into FGFS).
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*
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* This structure wraps an SSG texture with cropping information.
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*/
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class FGCroppedTexture
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{
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public:
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FGCroppedTexture ();
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FGCroppedTexture (const std::string &path,
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float _minX = 0.0, float _minY = 0.0,
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float _maxX = 1.0, float _maxY = 1.0);
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virtual ~FGCroppedTexture ();
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virtual void setPath (const std::string &path) { _path = path; }
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virtual const std::string &getPath () const { return _path; }
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virtual osg::StateSet* getTexture ();
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virtual void setCrop (float minX, float minY, float maxX, float maxY) {
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_minX = minX; _minY = minY; _maxX = maxX; _maxY = maxY;
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}
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virtual float getMinX () const { return _minX; }
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virtual float getMinY () const { return _minY; }
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virtual float getMaxX () const { return _maxX; }
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virtual float getMaxY () const { return _maxY; }
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private:
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std::string _path;
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osg::ref_ptr<osg::StateSet> _texture;
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float _minX, _minY, _maxX, _maxY;
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};
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////////////////////////////////////////////////////////////////////////
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// Top-level panel.
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////////////////////////////////////////////////////////////////////////
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/**
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* Instrument panel class.
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*
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* The panel is a container that has a background texture and holds
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* zero or more instruments. The panel will order the instruments to
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* redraw themselves when necessary, and will pass mouse clicks on to
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* the appropriate instruments for processing.
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*/
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class FGPanel : public SGReferenced
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{
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public:
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FGPanel ();
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virtual ~FGPanel ();
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virtual void draw (osg::State& state);
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virtual void updateMouseDelay(double dt);
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// transfer pointer ownership!!!
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virtual void addInstrument (FGPanelInstrument * instrument);
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// Background texture.
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virtual void setBackground (osg::Texture2D* texture);
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// Background multiple textures.
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virtual void setMultiBackground (osg::Texture2D* texture, int idx);
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virtual void setWidth (int width) { _width = width; }
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virtual int getWidth () const { return _width; }
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// Full height of panel.
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virtual void setHeight (int height) { _height = height; }
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virtual int getHeight () const { return _height; }
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// X-offset
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virtual void setXOffset (int offset);
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virtual int getXOffset () const { return _x_offset->getIntValue(); }
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// Y-offset.
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virtual void setYOffset (int offset);
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virtual int getYOffset () const { return _y_offset->getIntValue(); }
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// View height.
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// virtual void setViewHeight (int height) { _view_height = height; }
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// virtual int getViewHeight () const { return _view_height; }
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/**
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* find the actual logical extend of the panel, including all instruments
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* and actions.
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*/
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void getLogicalExtent(int &x0, int& y0, int& x1, int &y1);
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// Handle a mouse click.
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virtual bool doMouseAction (int button, int updown, int x, int y);
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virtual bool doLocalMouseAction(int button, int updown, int x, int y);
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virtual void setDepthTest (bool enable);
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bool getAutohide(void) const { return _autohide; };
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void setAutohide(bool enable) { _autohide = enable; };
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double getAspectScale() const;
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private:
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void setupVirtualCockpit();
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void cleanupVirtualCockpit();
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mutable bool _mouseDown;
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mutable int _mouseButton, _mouseX, _mouseY;
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double _mouseActionRepeat;
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mutable FGPanelInstrument * _mouseInstrument;
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typedef std::vector<FGPanelInstrument *> instrument_list_type;
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int _width;
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int _height;
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// int _view_height;
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SGPropertyNode_ptr _x_offset;
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SGPropertyNode_ptr _y_offset;
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SGPropertyNode_ptr _jitter;
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SGPropertyNode_ptr _flipx;
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SGConstPropertyNode_ptr _xsize_node;
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SGConstPropertyNode_ptr _ysize_node;
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osg::ref_ptr<osg::StateSet> _bg;
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osg::ref_ptr<osg::StateSet> _mbg[8];
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// List of instruments in panel.
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instrument_list_type _instruments;
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bool _enable_depth_test;
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bool _autohide;
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SGPropObjBool _drawPanelHotspots;
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};
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////////////////////////////////////////////////////////////////////////
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// Actions
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////////////////////////////////////////////////////////////////////////
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/**
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* Class for user actions.
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*
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* The actions are command bindings, like bindings for the keyboard
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* or joystick, but they are tied to specific mouse actions in
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* rectangular areas of the panel.
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*/
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class FGPanelAction : public SGConditional
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{
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public:
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FGPanelAction ();
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FGPanelAction (int button, int x, int y, int w, int h, bool repeatable);
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virtual ~FGPanelAction ();
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// Getters.
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virtual int getButton () const { return _button; }
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virtual int getX () const { return _x; }
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virtual int getY () const { return _y; }
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virtual int getWidth () const { return _w; }
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virtual int getHeight () const { return _h; }
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// Setters.
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// transfer pointer ownership
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virtual void addBinding (SGBinding * binding, int updown);
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virtual void setButton (int button) { _button = button; }
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virtual void setX (int x) { _x = x; }
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virtual void setY (int y) { _y = y; }
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virtual void setWidth (int w) { _w = w; }
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virtual void setHeight (int h) { _h = h; }
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// Check whether we're in the area.
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virtual bool inArea (int button, int x, int y)
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{
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return (button == _button &&
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x >= _x &&
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x < _x + _w &&
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y >= _y &&
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y < _y + _h);
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}
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// Perform the action.
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virtual bool doAction (int updown);
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private:
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typedef std::vector<SGBinding *> binding_list_t;
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int _button;
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int _x;
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int _y;
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int _w;
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int _h;
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bool _repeatable;
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int _last_state;
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binding_list_t _bindings[2];
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};
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////////////////////////////////////////////////////////////////////////
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// Transformations.
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////////////////////////////////////////////////////////////////////////
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/**
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* A transformation for a layer.
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*/
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class FGPanelTransformation : public SGConditional
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{
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public:
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enum Type {
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XSHIFT,
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YSHIFT,
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ROTATION
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};
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FGPanelTransformation ();
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virtual ~FGPanelTransformation ();
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Type type;
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SGConstPropertyNode_ptr node;
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float min;
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float max;
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bool has_mod;
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float mod;
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float factor;
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float offset;
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SGInterpTable * table;
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};
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////////////////////////////////////////////////////////////////////////
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// Layers
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////////////////////////////////////////////////////////////////////////
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/**
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* A single layer of a multi-layered instrument.
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*
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* Each layer can be subject to a series of transformations based
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* on current FGFS instrument readings: for example, a texture
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* representing a needle can rotate to show the airspeed.
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*/
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class FGInstrumentLayer : public SGConditional
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{
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public:
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FGInstrumentLayer (int w = -1, int h = -1);
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virtual ~FGInstrumentLayer ();
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virtual void draw (osg::State& state) = 0;
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virtual void transform () const;
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virtual int getWidth () const { return _w; }
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virtual int getHeight () const { return _h; }
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virtual void setWidth (int w) { _w = w; }
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virtual void setHeight (int h) { _h = h; }
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// Transfer pointer ownership!!
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// DEPRECATED
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virtual void addTransformation (FGPanelTransformation * transformation);
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protected:
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int _w, _h;
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typedef std::vector<FGPanelTransformation *> transformation_list;
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transformation_list _transformations;
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};
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////////////////////////////////////////////////////////////////////////
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// Instruments.
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////////////////////////////////////////////////////////////////////////
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/**
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* Abstract base class for a panel instrument.
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*
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* A panel instrument consists of zero or more actions, associated
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* with mouse clicks in rectangular areas. Currently, the only
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* concrete class derived from this is FGLayeredInstrument, but others
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* may show up in the future (some complex instruments could be
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* entirely hand-coded, for example).
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*/
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class FGPanelInstrument : public SGConditional
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{
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public:
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FGPanelInstrument ();
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FGPanelInstrument (int x, int y, int w, int h);
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virtual ~FGPanelInstrument ();
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virtual void draw (osg::State& state) = 0;
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virtual void drawHotspots(osg::State& state);
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virtual void setPosition(int x, int y);
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virtual void setSize(int w, int h);
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virtual int getXPos () const;
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virtual int getYPos () const;
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virtual int getWidth () const;
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virtual int getHeight () const;
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// Coordinates relative to centre.
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// Transfer pointer ownership!!
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virtual void addAction (FGPanelAction * action);
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// Coordinates relative to centre.
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virtual bool doMouseAction (int button, int updown, int x, int y);
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void extendRect(IntRect& r) const;
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protected:
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int _x, _y, _w, _h;
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typedef std::vector<FGPanelAction *> action_list_type;
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action_list_type _actions;
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};
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/**
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* An instrument constructed of multiple layers.
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*
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* Each individual layer can be rotated or shifted to correspond
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* to internal FGFS instrument readings.
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*/
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class FGLayeredInstrument : public FGPanelInstrument
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{
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public:
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FGLayeredInstrument (int x, int y, int w, int h);
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virtual ~FGLayeredInstrument ();
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virtual void draw (osg::State& state);
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// Transfer pointer ownership!!
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virtual int addLayer (FGInstrumentLayer *layer);
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virtual int addLayer (const FGCroppedTexture &texture, int w = -1, int h = -1);
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// Transfer pointer ownership!!
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virtual void addTransformation (FGPanelTransformation * transformation);
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protected:
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typedef std::vector<FGInstrumentLayer *> layer_list;
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layer_list _layers;
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};
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/**
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* An empty-shell instrument that exists soley in
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* order to redirect commands from the panel to a
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* complex instrument inherited from SGSubsystem.
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*
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* Currently the only complex instrument is the KLN89,
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* which we've hardwired this to for now.
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*/
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class FGSpecialInstrument : public FGPanelInstrument
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{
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public:
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FGSpecialInstrument(DCLGPS* sb);
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//FGSpecialInstrument (int x, int y, int w, int h);
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virtual ~FGSpecialInstrument ();
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virtual void draw (osg::State& state);
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protected:
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DCLGPS* complex;
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};
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/**
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* An instrument layer containing a group of sublayers.
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*
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* This class is useful for gathering together a group of related
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* layers, either to hold in an external file or to work under
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* the same condition.
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*/
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class FGGroupLayer : public FGInstrumentLayer
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{
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public:
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FGGroupLayer ();
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virtual ~FGGroupLayer ();
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virtual void draw (osg::State& state);
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// transfer pointer ownership
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virtual void addLayer (FGInstrumentLayer * layer);
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protected:
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std::vector<FGInstrumentLayer *> _layers;
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};
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/**
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* A textured layer of an instrument.
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*
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* This is a layer holding a single texture. Normally, the texture's
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* backgound should be transparent so that lower layers and the panel
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* background can show through.
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*/
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class FGTexturedLayer : public FGInstrumentLayer
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{
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public:
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FGTexturedLayer (int w = -1, int h = -1) : FGInstrumentLayer(w, h) {}
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FGTexturedLayer (const FGCroppedTexture &texture, int w = -1, int h = -1);
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virtual ~FGTexturedLayer ();
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virtual void draw (osg::State& state);
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virtual void setTexture (const FGCroppedTexture &texture) {
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_texture = texture;
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}
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virtual const FGCroppedTexture &getTexture () const { return _texture; }
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virtual FGCroppedTexture *getTexture() { return &_texture; }
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void setEmissive(bool e) { _emissive = e; }
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private:
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FGCroppedTexture _texture;
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bool _emissive;
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};
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/**
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* A text layer of an instrument.
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*
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* This is a layer holding a string of static and/or generated text.
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* It is useful for instruments that have text displays, such as
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* a chronometer, GPS, or NavCom radio.
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*/
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class FGTextLayer : public FGInstrumentLayer
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{
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public:
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enum ChunkType {
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TEXT,
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TEXT_VALUE,
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DOUBLE_VALUE
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};
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class Chunk : public SGConditional
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{
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public:
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Chunk (const std::string &text, const std::string &fmt = "%s");
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Chunk (ChunkType type, const SGPropertyNode * node,
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const std::string &fmt = "", float mult = 1.0, float offs = 0.0,
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bool truncation = false);
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const char * getValue () const;
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private:
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ChunkType _type;
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std::string _text;
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SGConstPropertyNode_ptr _node;
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std::string _fmt;
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float _mult;
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float _offs;
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bool _trunc;
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mutable char _buf[1024];
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};
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FGTextLayer (int w = -1, int h = -1);
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virtual ~FGTextLayer ();
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virtual void draw (osg::State& state);
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// Transfer pointer!!
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virtual void addChunk (Chunk * chunk);
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virtual void setColor (float r, float g, float b);
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virtual void setPointSize (float size);
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virtual void setFontName ( const std::string &name );
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virtual void setFont (fntFont * font);
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private:
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void recalc_value () const;
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typedef std::vector<Chunk *> chunk_list;
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chunk_list _chunks;
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float _color[4];
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float _pointSize;
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mutable std::string _font_name;
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mutable std::string _value;
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mutable SGTimeStamp _then;
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mutable SGTimeStamp _now;
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};
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/**
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* A group layer that switches among its children.
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*
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* The first layer that passes its condition will be drawn, and
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* any following layers will be ignored.
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*/
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class FGSwitchLayer : public FGGroupLayer
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{
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public:
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// Transfer pointers!!
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FGSwitchLayer ();
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virtual void draw (osg::State& state);
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};
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#endif // __PANEL_HXX
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// end of panel.hxx
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