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566 lines
21 KiB
566 lines
21 KiB
//C- -*- C++ -*-
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//C- -------------------------------------------------------------------
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//C- DjVuLibre-3.5
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//C- Copyright (c) 2002 Leon Bottou and Yann Le Cun.
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//C- Copyright (c) 2001 AT&T
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//C-
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//C- This software is subject to, and may be distributed under, the
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//C- GNU General Public License, Version 2. The license should have
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//C- accompanied the software or you may obtain a copy of the license
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//C- from the Free Software Foundation at http://www.fsf.org .
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//C-
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//C- This program is distributed in the hope that it will be useful,
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//C- but WITHOUT ANY WARRANTY; without even the implied warranty of
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//C- MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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//C- GNU General Public License for more details.
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//C-
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//C- DjVuLibre-3.5 is derived from the DjVu(r) Reference Library
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//C- distributed by Lizardtech Software. On July 19th 2002, Lizardtech
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//C- Software authorized us to replace the original DjVu(r) Reference
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//C- Library notice by the following text (see doc/lizard2002.djvu):
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//C-
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//C- ------------------------------------------------------------------
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//C- | DjVu (r) Reference Library (v. 3.5)
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//C- | Copyright (c) 1999-2001 LizardTech, Inc. All Rights Reserved.
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//C- | The DjVu Reference Library is protected by U.S. Pat. No.
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//C- | 6,058,214 and patents pending.
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//C- |
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//C- | This software is subject to, and may be distributed under, the
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//C- | GNU General Public License, Version 2. The license should have
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//C- | accompanied the software or you may obtain a copy of the license
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//C- | from the Free Software Foundation at http://www.fsf.org .
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//C- |
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//C- | The computer code originally released by LizardTech under this
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//C- | license and unmodified by other parties is deemed "the LIZARDTECH
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//C- | ORIGINAL CODE." Subject to any third party intellectual property
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//C- | claims, LizardTech grants recipient a worldwide, royalty-free,
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//C- | non-exclusive license to make, use, sell, or otherwise dispose of
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//C- | the LIZARDTECH ORIGINAL CODE or of programs derived from the
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//C- | LIZARDTECH ORIGINAL CODE in compliance with the terms of the GNU
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//C- | General Public License. This grant only confers the right to
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//C- | infringe patent claims underlying the LIZARDTECH ORIGINAL CODE to
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//C- | the extent such infringement is reasonably necessary to enable
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//C- | recipient to make, have made, practice, sell, or otherwise dispose
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//C- | of the LIZARDTECH ORIGINAL CODE (or portions thereof) and not to
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//C- | any greater extent that may be necessary to utilize further
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//C- | modifications or combinations.
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//C- |
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//C- | The LIZARDTECH ORIGINAL CODE is provided "AS IS" WITHOUT WARRANTY
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//C- | OF ANY KIND, EITHER EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED
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//C- | TO ANY WARRANTY OF NON-INFRINGEMENT, OR ANY IMPLIED WARRANTY OF
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//C- | MERCHANTABILITY OR FITNESS FOR A PARTICULAR PURPOSE.
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//C- +------------------------------------------------------------------
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//
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// $Id: GMapAreas.h,v 1.8 2003/11/07 22:08:21 leonb Exp $
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// $Name: release_3_5_15 $
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#ifndef _GMAPAREAS_H
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#define _GMAPAREAS_H
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#ifdef HAVE_CONFIG_H
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#include "config.h"
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#endif
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#if NEED_GNUG_PRAGMAS
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# pragma interface
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#endif
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#include "GSmartPointer.h"
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#include "GContainer.h"
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#include "GString.h"
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#include "GRect.h"
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#include "GURL.h"
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#ifdef HAVE_NAMESPACES
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namespace DJVU {
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# ifdef NOT_DEFINED // Just to fool emacs c++ mode
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}
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#endif
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#endif
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/** @name GMapAreas.h
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Files #"GMapAreas.h"# and #"GMapAreas.cpp"# implement base objects
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used by the plugin to display and manage hyperlinks and highlighted
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areas inside a \Ref{DjVuImage} page.
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The currently supported areas can be rectangular (\Ref{GMapRect}),
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elliptical (\Ref{GMapOval}) and polygonal (\Ref{GMapPoly}). Every
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map area besides the definition of its tqshape contains information
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about display style and optional {\bf URL}, which it may refer to.
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If this {\bf URL} is not empty then the map area will work like a
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hyperlink.
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The classes also implement some useful functions to ease tqgeometry
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manipulations
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@memo Definition of base map area classes
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@author Andrei Erofeev <eaf@geocities.com>
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@version
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#$Id: GMapAreas.h,v 1.8 2003/11/07 22:08:21 leonb Exp $# */
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//@{
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// ---------- GMAPAREA ---------
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/** This is the base object for all map areas. It defines some standard
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interface to access the geometrical properties of the areas and
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describes the area itsef:
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\begin{itemize}
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\item #url# If the optional #URL# is specified, the map area will
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also work as a hyperlink meaning that if you click it with
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your mouse pointer, the browser will be advised to load
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the page referenced by the #URL#.
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\item #target# Defines where the specified #URL# should be loaded
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\item #comment# This is a string displayed in a status line or in
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a popup window when the mouse pointer moves over the hyperlink
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area
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\item #border_type#, #border_color# and #border_width# describes
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how the area border should be drawn
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\item #area_color# describes how the area should be highlighted.
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\end{itemize}
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The map areas can be displayed using two different techniques, which
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can be combined together:
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\begin{itemize}
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\item Visible border. The border of a map area can be drawn in several
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different ways (like #XOR_BORDER# or #SHADOW_IN_BORDER#).
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It can be made always visible, or appearing only when the
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mouse pointer moves over the map area.
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\item Highlighted contents. Contents of rectangular map areas can
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also be highlighted with some given color.
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\end{itemize}
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*/
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class GMapArea : public GPEnabled
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{
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protected:
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GMapArea(void);
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public:
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// // Default creator.
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// static GP<GMapArea> create(void) {return new GMapArea();}
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/// Virtual destructor.
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virtual ~GMapArea();
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static const char MAPAREA_TAG [];
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static const char RECT_TAG [];
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static const char POLY_TAG [];
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static const char OVAL_TAG [];
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static const char NO_BORDER_TAG [];
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static const char XOR_BORDER_TAG [];
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static const char SOLID_BORDER_TAG [];
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static const char SHADOW_IN_BORDER_TAG [];
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static const char SHADOW_OUT_BORDER_TAG [];
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static const char SHADOW_EIN_BORDER_TAG [];
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static const char SHADOW_EOUT_BORDER_TAG [];
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static const char BORDER_AVIS_TAG [];
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static const char HILITE_TAG [];
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static const char URL_TAG [];
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static const char TARGET_SELF [];
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enum BorderType { NO_BORDER=0, XOR_BORDER=1, SOLID_BORDER=2,
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SHADOW_IN_BORDER=3, SHADOW_OUT_BORDER=4,
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SHADOW_EIN_BORDER=5, SHADOW_EOUT_BORDER=6 };
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enum Special_Hilite_Color{ NO_HILITE=0xFFFFFFFF, XOR_HILITE=0xFF000000};
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// Enumeration for reporting the type of map area. "MapUnknown" is reported
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// for objects of type GMapArea (there shouldn't be any).
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enum MapAreaType { UNKNOWN, RECT, OVAL, POLY };
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/** Optional URL which this map area can be associated with.
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If it's not empty then clicking this map area with the mouse
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will make the browser load the HTML page referenced by
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this #url#. Note: This may also be a relative URL, so the
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GURL class is not used. */
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GUTF8String url;
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/** The target for the #URL#. Standard targets are:
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\begin{itemize}
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\item #_blank# - Load the link in a new blank window
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\item #_self# - Load the link into the plugin window
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\item #_top# - Load the link into the top-level frame
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\end{itemize} */
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GUTF8String target;
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/** Comment (displayed in a status line or as a popup hint when
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the mouse pointer moves over the map area */
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GUTF8String comment;
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/** Border type. Defines how the map area border should be drawn
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\begin{itemize}
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\item #NO_BORDER# - No border drawn
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\item #XOR_BORDER# - The border is drawn using XOR method.
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\item #SOLID_BORDER# - The border is drawn as a solid line
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of a given color.
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\item #SHADOW_IN_BORDER# - Supported for \Ref{GMapRect} only.
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The map area area looks as if it was "pushed-in".
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\item #SHADOW_OUT_BORDER# - The opposite of #SHADOW_OUT_BORDER#
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\item #SHADOW_EIN_BORDER# - Also for \Ref{GMapRect} only.
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Is translated as "shadow etched in"
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\item #SHADOW_EOUT_BORDER# - The opposite of #SHADOW_EIN_BORDER#.
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\end{itemize} */
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BorderType border_type;
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/** If #TRUE#, the border will be made always visible. Otherwise
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it will be drawn when the mouse moves over the map area. */
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bool border_always_visible;
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/// Border color (when relevant) in #0x00RRGGBB# format
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unsigned long int border_color;
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/// Border width in pixels
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int border_width;
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/** Specified a color for highlighting the internal area of the map
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area. Will work with rectangular map areas only. The color is
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specified in \#00RRGGBB format. A special value of \#FFFFFFFF disables
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highlighting and \#FF000000 is for XOR highlighting. */
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unsigned long int hilite_color;
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/// Returns 1 if the given point is inside the hyperlink area
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bool is_point_inside(int x, int y) const;
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/// Returns xmin of the bounding rectangle
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int get_xmin(void) const;
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/// Returns ymin of the bounding rectangle
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int get_ymin(void) const;
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/** Returns xmax of the bounding rectangle. In other words, if #X# is
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a coordinate of the last point in the right direction, the
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function will return #X+1# */
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int get_xmax(void) const;
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/** Returns xmax of the bounding rectangle. In other words, if #Y# is
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a coordinate of the last point in the top direction, the
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function will return #Y+1# */
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int get_ymax(void) const;
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/// Returns the hyperlink bounding rectangle
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GRect get_bound_rect(void) const;
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/** Moves the hyperlink along the given vector. Is used by the
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hyperlinks editor. */
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void move(int dx, int dy);
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/** Resizes the hyperlink to fit new bounding rectangle while
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keeping the (xmin, ymin) points at rest. */
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void resize(int new_width, int new_height);
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/** Transforms the hyperlink to be within the specified rectangle */
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void transform(const GRect & grect);
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/** Checks if the object is OK. Especially useful with \Ref{GMapPoly}
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where edges may intersect. If there is a problem it returns a
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string describing it. */
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char const * const check_object(void);
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/** Stores the contents of the hyperlink object in a lisp-like format
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for saving into #ANTa# chunk (see \Ref{DjVuAnno}) */
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GUTF8String print(void);
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virtual GUTF8String get_xmltag(const int height) const=0;
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/// Virtual function returning the tqshape type.
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virtual MapAreaType const get_tqshape_type( void ) const { return UNKNOWN; };
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/// Virtual function returning the tqshape name.
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virtual char const * const get_tqshape_name(void) const=0;
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/// Virtual function generating a copy of this object
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virtual GP<GMapArea> get_copy(void) const=0;
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/// Virtual function generating a list of defining coordinates
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/// (default are the opposite corners of the enclosing rectangle)
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virtual void get_coords( GList<int> & CoordList ) const;
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/// Virtual function maps maparea from one area to another using mapper
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virtual void map(GRectMapper &mapper)=0;
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/// Virtual function unmaps maparea from one area to another using mapper
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virtual void unmap(GRectMapper &mapper)=0;
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protected:
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virtual int gma_get_xmin(void) const=0;
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virtual int gma_get_ymin(void) const=0;
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virtual int gma_get_xmax(void) const=0;
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virtual int gma_get_ymax(void) const=0;
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virtual void gma_move(int dx, int dy)=0;
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virtual void gma_resize(int new_width, int new_height)=0;
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virtual void gma_transform(const GRect & grect)=0;
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virtual bool gma_is_point_inside(const int x, const int y) const=0;
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virtual char const * const gma_check_object(void) const=0;
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virtual GUTF8String gma_print(void)=0;
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void clear_bounds(void) { bounds_initialized=0; }
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private:
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int xmin, xmax, ymin, ymax;
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bool bounds_initialized;
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void initialize_bounds(void);
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};
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// ---------- GMAPRECT ---------
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/** Implements rectangular map areas. This is the only kind of map areas
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supporting #SHADOW_IN_BORDER#, #SHADOW_OUT_BORDER#, #SHADOW_EIN_BORDER#
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and #SHADOW_EOUT_BORDER# types of border and area highlighting. */
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class GMapRect: public GMapArea
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{
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protected:
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GMapRect(void);
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GMapRect(const GRect & rect);
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public:
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/// Default creator.
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static GP<GMapRect> create(void) {return new GMapRect();}
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/// Create with the specified GRect.
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static GP<GMapRect> create(const GRect &rect) {return new GMapRect(rect);}
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virtual ~GMapRect();
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/// Returns the width of the rectangle
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int get_width(void) const { return xmax-xmin; }
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/// Returns the height of the rectangle
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int get_height(void) const { return ymax-ymin; }
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/// Changes the #GMapRect#'s tqgeometry
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GMapRect & operator=(const GRect & rect);
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/// Returns \Ref{GRect} describing the map area's rectangle
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operator GRect(void);
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virtual GUTF8String get_xmltag(const int height) const;
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/// Returns MapRect
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virtual MapAreaType const get_tqshape_type( void ) const { return RECT; };
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/// Returns #"rect"#
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virtual char const * const get_tqshape_name(void) const;
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/// Returns a copy of the rectangle
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virtual GP<GMapArea> get_copy(void) const;
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/// Virtual function maps rectangle from one area to another using mapper
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virtual void map(GRectMapper &mapper);
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/// Virtual function unmaps rectangle from one area to another using mapper
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virtual void unmap(GRectMapper &mapper);
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protected:
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int xmin, ymin, xmax, ymax;
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virtual int gma_get_xmin(void) const;
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virtual int gma_get_ymin(void) const;
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virtual int gma_get_xmax(void) const;
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virtual int gma_get_ymax(void) const;
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virtual void gma_move(int dx, int dy);
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virtual void gma_resize(int new_width, int new_height);
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virtual void gma_transform(const GRect & grect);
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virtual bool gma_is_point_inside(const int x, const int y) const;
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virtual char const * const gma_check_object(void) const;
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virtual GUTF8String gma_print(void);
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};
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// ---------- GMAPPOLY ---------
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/** Implements polygonal map areas. The only supported types of border
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are #NO_BORDER#, #XOR_BORDER# and #SOLID_BORDER#. Its contents can not
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be highlighted either. It's worth mentioning here that despite its
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name the polygon may be open, which basically makes it a broken line.
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This very specific mode is used by the hyperlink editor when creating
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the polygonal hyperlink. */
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class GMapPoly : public GMapArea
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{
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protected:
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GMapPoly(void);
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GMapPoly(const int * xx, const int * yy, int points, bool open=false);
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public:
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/// Default creator
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static GP<GMapPoly> create(void) {return new GMapPoly();}
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/// Create from specified coordinates.
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static GP<GMapPoly> create(
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const int xx[], const int yy[], const int points, const bool open=false)
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{return new GMapPoly(xx,yy,points,open);}
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/// Virtual destructor.
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virtual ~GMapPoly();
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/// Returns 1 if side #side# crosses the specified rectangle #rect#.
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bool does_side_cross_rect(const GRect & grect, int side);
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/// Returns the number of vertices in the polygon
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int get_points_num(void) const;
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/// Returns the number sides in the polygon
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int get_sides_num(void) const;
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/// Returns x coordinate of vertex number #i#
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int get_x(int i) const;
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/// Returns y coordinate of vertex number #i#
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int get_y(int i) const;
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/// Moves vertex #i# to position (#x#, #y#)
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void move_vertex(int i, int x, int y);
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/// Adds a new vertex and returns number of vertices in the polygon
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int add_vertex(int x, int y);
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/// Closes the polygon if it is not closed
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void close_poly();
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/// Optimizes the polygon
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void optimize_data(void);
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/// Checks validity of the polygon
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char const * const check_data(void);
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virtual GUTF8String get_xmltag(const int height) const;
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/// Returns MapPoly
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virtual MapAreaType const get_tqshape_type( void ) const { return POLY; };
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/// Returns #"poly"# all the time
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virtual char const * const get_tqshape_name(void) const;
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/// Returns a copy of the polygon
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virtual GP<GMapArea> get_copy(void) const;
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/// Virtual function generating a list of defining coordinates
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void get_coords( GList<int> & CoordList ) const;
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/// Virtual function maps polygon from one area to another using mapper
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virtual void map(GRectMapper &mapper);
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/// Virtual function unmaps polygon from one area to another using mapper
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virtual void unmap(GRectMapper &mapper);
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protected:
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virtual int gma_get_xmin(void) const;
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virtual int gma_get_ymin(void) const;
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virtual int gma_get_xmax(void) const;
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virtual int gma_get_ymax(void) const;
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virtual void gma_move(int dx, int dy);
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virtual void gma_resize(int new_width, int new_height);
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virtual void gma_transform(const GRect & grect);
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virtual bool gma_is_point_inside(const int x, const int y) const;
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virtual char const * const gma_check_object(void) const;
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virtual GUTF8String gma_print(void);
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private:
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bool open;
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int points, sides;
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GTArray<int> xx, yy;
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static int sign(int x);
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static bool is_projection_on_segment(int x, int y, int x1, int y1, int x2, int y2);
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static bool do_segments_intersect(int x11, int y11, int x12, int y12,
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int x21, int y21, int x22, int y22);
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static bool are_segments_parallel(int x11, int y11, int x12, int y12,
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int x21, int y21, int x22, int y22);
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};
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// ---------- GMAPOVAL ---------
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/** Implements elliptical map areas. The only supported types of border
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are #NO_BORDER#, #XOR_BORDER# and #SOLID_BORDER#. Its contents can not
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be highlighted either. */
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|
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class GMapOval: public GMapArea
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{
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protected:
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GMapOval(void);
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GMapOval(const GRect & rect);
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public:
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/// Default creator.
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static GP<GMapOval> create(void) {return new GMapOval();}
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/// Create from the specified GRect.
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static GP<GMapOval> create(const GRect &rect) {return new GMapOval(rect);}
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/// Virtual destructor.
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virtual ~GMapOval();
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/// Returns (xmax-xmin)/2
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int get_a(void) const;
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/// Returns (ymax-ymin)/2
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int get_b(void) const;
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/// Returns the lesser of \Ref{get_a}() and \Ref{get_b}()
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int get_rmin(void) const;
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/// Returns the greater of \Ref{get_a}() and \Ref{get_b}()
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int get_rmax(void) const;
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virtual GUTF8String get_xmltag(const int height) const;
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/// Returns MapOval
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virtual MapAreaType const get_tqshape_type( void ) const { return OVAL; };
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/// Returns #"oval"#
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virtual char const * const get_tqshape_name(void) const;
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/// Returns a copy of the oval
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virtual GP<GMapArea> get_copy(void) const;
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/// Virtual function maps oval from one area to another using mapper
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virtual void map(GRectMapper &mapper);
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/// Virtual function unmaps oval from one area to another using mapper
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virtual void unmap(GRectMapper &mapper);
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protected:
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virtual int gma_get_xmin(void) const;
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virtual int gma_get_ymin(void) const;
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virtual int gma_get_xmax(void) const;
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virtual int gma_get_ymax(void) const;
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virtual void gma_move(int dx, int dy);
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virtual void gma_resize(int new_width, int new_height);
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virtual void gma_transform(const GRect & grect);
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virtual bool gma_is_point_inside(const int x, const int y) const;
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virtual char const * const gma_check_object(void) const;
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virtual GUTF8String gma_print(void);
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private:
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int rmax, rmin;
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int a, b;
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int xf1, yf1, xf2, yf2;
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int xmin, ymin, xmax, ymax;
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void initialize(void);
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};
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inline
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GMapRect::operator GRect(void)
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{
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return GRect(xmin, ymin, xmax-xmin, ymax-ymin);
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}
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inline int
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GMapRect::gma_get_xmin(void) const { return xmin; }
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|
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inline int
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GMapRect::gma_get_ymin(void) const { return ymin; }
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|
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inline int
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GMapRect::gma_get_xmax(void) const { return xmax; }
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inline int
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GMapRect::gma_get_ymax(void) const { return ymax; }
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|
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inline char const * const
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GMapRect::gma_check_object(void) const{ return ""; }
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inline char const * const
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GMapRect::get_tqshape_name(void) const { return RECT_TAG; }
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|
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inline int
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GMapPoly::get_points_num(void) const { return points; }
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|
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inline int
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GMapPoly::get_sides_num(void) const { return sides; }
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|
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inline int
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GMapPoly::get_x(int i) const { return xx[i]; }
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|
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inline int
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GMapPoly::get_y(int i) const { return yy[i]; }
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|
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inline char const * const
|
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GMapPoly::get_tqshape_name(void) const { return POLY_TAG; }
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|
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inline int
|
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GMapOval::get_a(void) const { return a; }
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|
|
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inline int
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GMapOval::get_b(void) const { return b; }
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|
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inline int
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GMapOval::get_rmin(void) const { return rmin; }
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|
|
|
inline int
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GMapOval::get_rmax(void) const { return rmax; }
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|
|
|
inline int
|
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GMapOval::gma_get_xmin(void) const { return xmin; }
|
|
|
|
inline int
|
|
GMapOval::gma_get_ymin(void) const { return ymin; }
|
|
|
|
inline int
|
|
GMapOval::gma_get_xmax(void) const { return xmax; }
|
|
|
|
inline int
|
|
GMapOval::gma_get_ymax(void) const { return ymax; }
|
|
|
|
inline char const * const
|
|
GMapOval::get_tqshape_name(void) const { return OVAL_TAG; }
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|
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//@}
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|
|
#ifdef HAVE_NAMESPACES
|
|
}
|
|
# ifndef NOT_USING_DJVU_NAMESPACE
|
|
using namespace DJVU;
|
|
# endif
|
|
#endif
|
|
#endif
|