514 lines
16 KiB
C++
514 lines
16 KiB
C++
/****************************************************************************
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* VCGLib o o *
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* Visual and Computer Graphics Library o o *
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* _ O _ *
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* Copyright(C) 2006 \/)\/ *
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* Visual Computing Lab /\/| *
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* ISTI - Italian National Research Council | *
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* \ *
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* All rights reserved. *
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* *
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* This program is free software; you can redistribute it and/or modify *
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* it under the terms of the GNU General Public License as published by *
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* the Free Software Foundation; either version 2 of the License, or *
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* (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, *
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* but WITHOUT ANY WARRANTY; without even the implied warranty of *
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
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* GNU General Public License (http://www.gnu.org/licenses/gpl.txt) *
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* for more details. *
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* *
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****************************************************************************/
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/****************************************************************************
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History
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$Log: not supported by cvs2svn $
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Revision 1.11 2007/07/12 11:02:06 andrenucci
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Scale in SingleFile mode changed, it have to be calcolated before draw.
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Revision 1.10 2007/07/10 07:48:41 cignoni
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changed a template >> into > >
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Revision 1.9 2007/07/10 06:58:31 cignoni
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added a missing typename
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Revision 1.8 2007/07/09 15:36:40 andrenucci
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fix bug with exporting of translate plans
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Revision 1.7 2007/06/13 09:17:14 andrenucci
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Fix problem with scale
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Revision 1.5 2007/05/29 10:09:29 cignoni
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Added a const (and reformatted)
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Revision 1.4 2007/05/21 13:22:40 cignoni
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Corrected gcc compiling issues
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Revision 1.3 2006/02/16 15:16:51 corsini
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Add reference plane support
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Revision 1.2 2006/02/15 15:40:06 corsini
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Decouple SVG properties and exporter for simmetry with the other exporter
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Revision 1.1 2006/02/13 16:18:09 corsini
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first working version
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****************************************************************************/
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#ifndef __VCG_LIB_EXPORTER_SVG
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#define __VCG_LIB_EXPORTER_SVG
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namespace vcg
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{
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namespace edge
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{
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namespace io
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{
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/**
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* SVG Properties.
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*
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* Support class to set the properties of the SVG exporter.
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*/
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class SVGProperties
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{
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// definitions
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public:
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//! Stroke colors.
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enum StrokeColor
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{
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BLACK, SILVER, GRAY, WHITE,
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MAROON, RED, PURPLE, FUCHSIA,
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GREEN, LIME, OLIVE, YELLOW,
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NAVY, BLUE, TEAL, AQUA
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};
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//! Stroke linecap types.
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enum StrokeLineCap
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{
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BUTT, ROUND, SQUARE
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};
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static const int DEFAULT_LINE_WIDTH=2;
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//in single-file export make the grid of sessiones
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int numCol;
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int numRow;
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// private data members
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private:
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// Line width.
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int lwidth;
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// Stroke color (see StrokeColor).
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std::string stroke_color;
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// Stroke linecap (see StrokeLineCap).
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std::string stroke_linecap;
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// Plane where to project the edge mesh.
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Plane3d proj;
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// Scale of rdrawing respect coordinates of mesh
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float scale;
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// Dimension of the drawing square
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Point2d ViewBox;
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int width,height; //Express in cm
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// Position of the drawing square
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Point2d position;
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//Text details
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bool showDetails;
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//Starting offset
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float Xmin, Ymin;
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Point2f* minPos;
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Point2f* maxPos;
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// construction
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public:
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SVGProperties()
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{
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lwidth = DEFAULT_LINE_WIDTH;
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const char * DEFAULT_LINE_COLOR = "black";
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const char * DEFAULT_LINE_CAP= "round";
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stroke_color = DEFAULT_LINE_COLOR;
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stroke_linecap = DEFAULT_LINE_CAP;
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// default projection plane (XZ plane)
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Point3d n(0.0, 1.0, 0.0);
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proj.SetDirection(n);
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proj.SetOffset(0.0);
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scale=0; //scale=0 it means expanded to the boards of the canvas
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ViewBox=Point2d(1000, 1000);
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position=Point2d(0, 0);
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width=10; //width of the windows
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height=10; //height of the windows
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showDetails=true;
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Xmin=0;
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Ymin=0;
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minPos= new Point2f(0,0);
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maxPos= new Point2f(0,0);
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}
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// public methods
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public:
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//! Set the line width.
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void setLineWidth(int width)
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{
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lwidth = width;
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}
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//! Set the stroke color.
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void setColor(enum StrokeColor color)
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{
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switch (color)
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{
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case BLACK : stroke_color = "black"; break;
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case SILVER : stroke_color = "silver"; break;
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case GRAY : stroke_color = "gray"; break;
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case WHITE : stroke_color = "white"; break;
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case MAROON : stroke_color = "maroon"; break;
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case RED : stroke_color = "red"; break;
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case PURPLE : stroke_color = "purple"; break;
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case FUCHSIA: stroke_color = "fuchsia"; break;
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case GREEN : stroke_color = "green"; break;
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case OLIVE : stroke_color = "olive"; break;
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case LIME : stroke_color = "lime"; break;
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case NAVY : stroke_color = "navy"; break;
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case TEAL : stroke_color = "teal"; break;
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case AQUA : stroke_color = "aqua"; break;
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default: assert(0);
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}
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}
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//! Set the line cap style.
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void setLineCap(enum StrokeLineCap linecap)
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{
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if (linecap == BUTT) stroke_linecap = "butt";
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else if (linecap == ROUND) stroke_linecap = "round";
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else if (linecap == SQUARE) stroke_linecap = "square";
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}
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void setPlane(double distance, const Point3d &direction)
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{
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proj.SetDirection(direction);
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proj.SetOffset(distance);
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}
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void setScale(float x){ scale=x; } //Define the scale between 2d coordinate and mesh
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void setViewBox(Point2d x) { ViewBox=x; }//Define the dimension of the square
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void setPosition(Point2d x) { position=x;}//Define the starting position of the canvas
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void setTextDetails(bool x){showDetails=x;}
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void setDimension(int width, int height){ this->width=width; this->height=height;}
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// accessors
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public:
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int lineWidth(){return lwidth;}
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const char * lineColor(){return stroke_color.c_str();}
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const char * lineCapStyle(){return stroke_linecap.c_str();}
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const Plane3d * projPlane(){return &proj;}
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float getScale(){return scale;}
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Point2d getViewBox(){return ViewBox;}
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Point2d getPosition(){return position;}
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int getWidth(){return width;}
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bool showTextDetails(){return showDetails;}
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int getHeight(){return height;}
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void setMinPoint(Point2f* p){
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minPos = p;
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}
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void setMaxPoint(Point2f* p){
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maxPos = p;
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}
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Point2f* getminPoint(){return (minPos);}
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Point2f* getmaxPoint(){return (maxPos);}
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};
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/**
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* SVG exporter.
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*
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* This exporter save a mesh of EdgeMesh type in the SVG format.
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* Most of the features of the SVG format are not supported.
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* The given EdgeMesh is saved as a set lines. The properties
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* of the SVG export can be set through the SVGProp class.
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*/
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template <class EdgeMeshType>
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class ExporterSVG
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{
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public:
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//! Save with the default SVG properties.
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static bool Save(EdgeMeshType *mp, const char *filename)
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{
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SVGProperties properties;
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return Save(mp, filename, properties);
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}
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static bool Save(std::vector<EdgeMeshType*> *vp, const char *filename, SVGProperties & pro){
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//Function that export a vector of EdgeMesh in an unic single SVG file.
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FILE * o = fopen(filename,"w");
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if (o==NULL)
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return false;
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int num = (*vp).size(); //number of square to draw
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WriteXmlHead(o,pro.getWidth(),pro.getHeight(),pro.getViewBox(),Point2d(0,0));
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float scale= pro.getScale();
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typename std::vector<EdgeMeshType*>::iterator it;
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int i=0;
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Point2f pmin(100000000.0f, 100000000.0f);
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Point2f pmax(-10000000.0f, -10000000.0f);
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for(it=(*vp).begin(); it!=(*vp).end(); it++){
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EdgeMeshType* ed;
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ed=(*it);
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Save(ed,o,pro, -2);
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Point2f* pmi=pro.getminPoint();
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Point2f* pma=pro.getmaxPoint();
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pmin[0]=min(pmin[0], pmi->X());
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pmin[1]=min(pmin[1], pmi->Y());
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pmax[0]=max(pmax[0], pma->X());
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pmax[1]=max(pmax[1], pma->Y());
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}
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float maxEdge=std::max(pmax[0]-pmin[0], pmax[1]-pmin[1]);
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float scl = (pro.getViewBox().V(0)/pro.numCol) /maxEdge ;
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pro.setScale(scl);
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pro.setMinPoint(new Point2f(pmin[0],pmin[1]));
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pro.setMaxPoint(new Point2f(pmax[0],pmax[1]));
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for(it=(*vp).begin(); it!=(*vp).end(); it++){
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EdgeMeshType* ed;
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ed=(*it);
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pro.setPosition(Point2d((pro.getViewBox().V(0)/pro.numCol)*i,40));
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int x=pro.getViewBox().V(0);
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int y=pro.getViewBox().V(1);
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/*
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fprintf(o, "<rect width= \" %d \" height= \" %d \" x=\"%d \" y=\" %d \" style= \" stroke-width:1; fill-opacity:0.0; stroke:rgb(0,0,0)\" /> \n",x/pro.numCol,y, (x/pro.numCol)*i, 40);
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*/
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Save(ed,o,pro, i);
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if(pro.showTextDetails()){
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fprintf(o,"<text x= \" %d \" y= \"30 \" font-family= \"Verdana \" font-size= \"30 \" >\n",(x/pro.numCol)*i);
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fprintf(o,"Slice num:%d </text>\n", i);}
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i++;
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}
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fprintf(o, "</svg>");
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fclose(o);
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return true;
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}
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//! Save with the given SVG properties.
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static bool Save(EdgeMeshType *mp, const char *filename, SVGProperties & props )
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{
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FILE * o = fopen(filename,"w");
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if (o==NULL)
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return false;
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WriteXmlHead(o, props.getWidth(),props.getHeight(), props.getViewBox(), props.getPosition());
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props.setPosition(Point2d(0,40));
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Save(mp, o, props, -1);
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fprintf(o, "</svg>");
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// final xml tags
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fclose(o);
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return true;
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}
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static void Save(EdgeMeshType *mp, FILE* o, SVGProperties props, int numSlice)
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{
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bool preCal=false;
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if(numSlice==-2) preCal=true;
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// build vector basis (n, v1, v2)
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Point3d p1(0.0,0.0,0.0);
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Point3d p2(1.0,0.0,0.0);
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Point3d p2less(-1.0,0.0,0.0);
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Point3d d = props.projPlane()->Direction() - p2;
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Point3d dless = props.projPlane()->Direction() - p2less;
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Point3d v1;
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if ((d.Norm() < 0.5)||(dless.Norm() <0.5))
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v1 = Point3d(0.0,0.0,1.0) - p1;
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else
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v1 = p2 - p1;
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v1.Normalize();
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Point3d v2 = v1 ^ props.projPlane()->Direction();
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//Global points
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std::vector< std::vector<Point2f> >* glb;
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std::vector<Point2f> pts;
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pts.clear();
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Point2f pmin(100000000.0f, 100000000.0f);
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Point2f pmax(-100000000.0f, -100000000.0f);
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Point3d bbMin;
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typename EdgeMeshType::EdgeIterator i;
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for (i = mp->edges.begin(); i != mp->edges.end(); ++i)
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{
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Point3<typename EdgeMeshType::ScalarType> p1;
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Point3<typename EdgeMeshType::ScalarType> p2;
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p1 = (*i).V(0)->P();
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p2 = (*i).V(1)->P();
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Point3d p1d(p1[0], p1[1], p1[2]);
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Point3d p2d(p2[0], p2[1], p2[2]);
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// Project the line on the reference plane
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Point3d p1proj = props.projPlane()->Projection(p1d);
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Point3d p2proj = props.projPlane()->Projection(p2d);
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// Convert the 3D coordinates of the line to the uv coordinates of the plane
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Point2f pt1(static_cast<float>(p1proj * v1), static_cast<float>(p1proj * v2));
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Point2f pt2(static_cast<float>(p2proj * v1), static_cast<float>(p2proj * v2));
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pts.push_back(pt1);
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pts.push_back(pt2);
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pmin[0]=math::Min(math::Min(pt1[0],pmin[0]), pt2[0]);
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pmin[1]=math::Min(math::Min(pt1[1],pmin[1]), pt2[1]);
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pmax[0]=math::Max(math::Max(pt1[0],pmax[0]), pt2[0]);
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pmax[1]=math::Max(math::Max(pt1[1],pmax[1]), pt2[1]);
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}
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//Point2f bbp(static_cast<float>(bbMin * v1), static_cast<float>(bbMin * v2));
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if(!preCal){
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float scale=props.getScale();
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// line settings
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Point2d pos=props.getPosition();
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fprintf(o, " <g stroke=\"%s\" stroke-linecap=\"%s\" > \n",
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props.lineColor(), props.lineCapStyle());
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float maxEdges= math::Max((pmax[0]-pmin[0]), (pmax[1]-pmin[1]));
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if (numSlice==0)
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Draw_proportions_scale(o,maxEdges, props);
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fprintf(o, "<svg id = \" %d \">\n", numSlice );
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int x=props.getViewBox().V(0);
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int y=props.getViewBox().V(1);
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if(numSlice>=0)
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fprintf(o, "<rect width= \" %d \" height= \" %d \" x=\"%d \" y=\" %d \" style= \" stroke-width:1; fill-opacity:0.0; stroke:rgb(0,0,0)\" /> \n",x/props.numCol,y, (x/props.numCol)*numSlice, 40);
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else
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fprintf(o, "<rect width= \" %d \" height= \" %d \" x=\"%d \" y=\" %d \" style= \" stroke-width:1; fill-opacity:0.0; stroke:rgb(0,0,0)\" /> \n",x/props.numCol,y, 0, 40);
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std::vector<Point2f>::iterator itPoints;
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for(itPoints = pts.begin(); itPoints != pts.end(); ++itPoints)
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{
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Point2f p1 = *itPoints;
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++itPoints;
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Point2f p2 = *itPoints;
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if(numSlice==-1){
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fprintf(o, " <line x1=\"%f\" y1=\"%f\" x2=\"%f\" y2=\"%f\" \n",
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pos.X()+((p1[0]-pmin[0]) * scale), pos.Y()+((p1[1]-pmin[1]) * scale),
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pos.X()+((p2[0]-pmin[0]) * scale), pos.Y()+((p2[1]-pmin[1]) * scale ));
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fprintf(o, " stroke-width = \"%d\" ",props.lineWidth());
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fprintf(o, "/>\n");
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}
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else{
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fprintf(o, " <line x1=\"%f\" y1=\"%f\" x2=\"%f\" y2=\"%f\" \n",
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pos.X()+((p1[0]-props.getminPoint()->X()) * scale), pos.Y()+((p1[1]-props.getminPoint()->Y()) * scale),
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pos.X()+((p2[0]-props.getminPoint()->X()) * scale), pos.Y()+((p2[1]-props.getminPoint()->Y()) * scale ));
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fprintf(o, " stroke-width = \"%d\" ",props.lineWidth());
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fprintf(o, "/>\n");}
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}
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fprintf(o, "</svg>");
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fprintf(o, " </g>\n");
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}
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else{
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Point2f* pmi=props.getminPoint();
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Point2f* pma=props.getmaxPoint();
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pmi->X()=pmin[0];
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pmi->Y()=pmin[1];
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pma->X()=pmax[0];
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pma->Y()=pmax[1];
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props.setMinPoint(pmi);
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props.setMaxPoint(pma);
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}
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}
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private:
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static void Draw_proportions_scale(FILE *o, float maxEdge,SVGProperties & prop){
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if(prop.showTextDetails()){
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int num_order=log10(maxEdge);
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int pox= pow(10.0, num_order);
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int assX=prop.getViewBox()[0];
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int assY=prop.getViewBox()[1];
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int nullAss=0;
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int OffsetXAs=50;
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float comput= OffsetXAs+(pox*prop.getScale());
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fprintf(o, " <line x1=\" %d \" y1=\" %d \" x2=\" %f \" y2=\" %d \" \n",(nullAss+OffsetXAs ),(assY+50),comput, (assY+50) );
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fprintf(o, " stroke-width = \"5\" ");
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fprintf(o, "/>\n");
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fprintf(o,"<text x= \" %d \" y= \" %d \" font-family= \"Verdana \" font-size= \"25 \" >",(nullAss+OffsetXAs), (assY+80));
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fprintf(o,"%d px -- Scale %f : 1 </text>", pox ,prop.getScale());
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}
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}
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static void WriteXmlHead(FILE *o,int width, int height, Point2d viewBox, Point2d position){
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int Vx=viewBox[0];
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int Vy=viewBox[1];
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// initial xml tags
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fprintf(o, "<?xml version=\"1.0\" encoding=\"UTF-8\" standalone=\"no\"?>\n");
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fprintf(o, "<!-- Created with vcg library -->\n");
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fprintf(o, "<svg width=\"%d cm\" height=\"%d cm\" viewBox=\"0 0 %d %d \" \n",width, height, Vx, Vy+100);
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fprintf(o, " xmlns:dc=\"http://purl.org/dc/elements/1.1/\" \n");
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fprintf(o, " xmlns:cc=\"http://web.resource.org/cc/\" \n");
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fprintf(o, " xmlns:rdf=\"http://www.w3.org/1999/02/22-rdf-syntax-ns#\" \n");
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fprintf(o, " xmlns:svg=\"http://www.w3.org/2000/svg\" \n");
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fprintf(o, " xmlns=\"http://www.w3.org/2000/svg\" \n");
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fprintf(o, " id=\"svg2\"> \n");
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fprintf(o, " <defs id=\"defs4\"/> \n");
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fprintf(o, " <metadata id=\"metadata7\"> \n");
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fprintf(o, " <rdf:RDF> \n");
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fprintf(o, " <cc:Work rdf:about=\"\"> \n");
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fprintf(o, " <dc:format>image/svg+xml</dc:format> \n");
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fprintf(o, " <dc:type rdf:resource=\"http://purl.org/dc/dcmitype/StillImage\" /> \n");
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fprintf(o, " </cc:Work> \n");
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fprintf(o, " </rdf:RDF> \n");
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fprintf(o, " </metadata> \n");
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}
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};
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}; // namespace io
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}; // namespace edge
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}; // namespace vcg
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#endif // __VCG_LIB_EXPORTER_SVG
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