[1073] | 1 | /* -*- C++ -*- |
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[1435] | 2 | * lemon/graph_to_eps.h - Part of LEMON, a generic C++ optimization library |
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[1073] | 3 | * |
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[1164] | 4 | * Copyright (C) 2005 Egervary Jeno Kombinatorikus Optimalizalasi Kutatocsoport |
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[1359] | 5 | * (Egervary Research Group on Combinatorial Optimization, EGRES). |
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[1073] | 6 | * |
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| 7 | * Permission to use, modify and distribute this software is granted |
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| 8 | * provided that this copyright notice appears in all copies. For |
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| 9 | * precise terms see the accompanying LICENSE file. |
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| 10 | * |
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| 11 | * This software is provided "AS IS" with no warranty of any kind, |
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| 12 | * express or implied, and with no claim as to its suitability for any |
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| 13 | * purpose. |
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| 14 | * |
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| 15 | */ |
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| 16 | |
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| 17 | #ifndef LEMON_GRAPH_TO_EPS_H |
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| 18 | #define LEMON_GRAPH_TO_EPS_H |
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| 19 | |
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[1108] | 20 | #include <sys/time.h> |
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| 21 | |
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[1073] | 22 | #include<iostream> |
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| 23 | #include<fstream> |
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| 24 | #include<sstream> |
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| 25 | #include<algorithm> |
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| 26 | #include<vector> |
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| 27 | |
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[1417] | 28 | #include <ctime> |
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| 29 | #include <cmath> |
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| 30 | |
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[1234] | 31 | #include<lemon/invalid.h> |
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[1073] | 32 | #include<lemon/xy.h> |
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| 33 | #include<lemon/maps.h> |
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| 34 | #include<lemon/bezier.h> |
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| 35 | |
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[1417] | 36 | |
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[1287] | 37 | ///\ingroup io_group |
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[1073] | 38 | ///\file |
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| 39 | ///\brief Simple graph drawer |
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| 40 | /// |
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| 41 | ///\author Alpar Juttner |
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| 42 | |
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| 43 | namespace lemon { |
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| 44 | |
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| 45 | ///Data structure representing RGB colors. |
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| 46 | |
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| 47 | ///Data structure representing RGB colors. |
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| 48 | ///\ingroup misc |
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| 49 | class Color |
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| 50 | { |
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| 51 | double _r,_g,_b; |
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| 52 | public: |
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| 53 | ///Default constructor |
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| 54 | Color() {} |
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| 55 | ///Constructor |
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| 56 | Color(double r,double g,double b) :_r(r),_g(g),_b(b) {}; |
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| 57 | ///Returns the red component |
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[1575] | 58 | double & red() {return _r;} |
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| 59 | ///Returns the red component |
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| 60 | const double & red() const {return _r;} |
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[1073] | 61 | ///Returns the green component |
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[1575] | 62 | double & green() {return _g;} |
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| 63 | ///Returns the green component |
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| 64 | const double & green() const {return _g;} |
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[1073] | 65 | ///Returns the blue component |
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[1575] | 66 | double & blue() {return _b;} |
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| 67 | ///Returns the blue component |
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| 68 | const double & blue() const {return _b;} |
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[1073] | 69 | ///Set the color components |
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| 70 | void set(double r,double g,double b) { _r=r;_g=g;_b=b; }; |
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| 71 | }; |
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[1178] | 72 | |
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| 73 | ///Maps <tt>int</tt>s to different \ref Color "Color"s |
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| 74 | |
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[1573] | 75 | ///This map assigns one of the predefined \ref Color "Color"s |
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[1178] | 76 | ///to each <tt>int</tt>. It is possible to change the colors as well as their |
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| 77 | ///number. The integer range is cyclically mapped to the provided set of colors. |
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| 78 | /// |
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| 79 | ///This is a true \ref concept::ReferenceMap "reference map", so you can also |
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| 80 | ///change the actual colors. |
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| 81 | |
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| 82 | class ColorSet : public MapBase<int,Color> |
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| 83 | { |
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| 84 | std::vector<Color> colors; |
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| 85 | public: |
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| 86 | ///Constructor |
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| 87 | |
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| 88 | ///Constructor |
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[1574] | 89 | ///\param have_white indicates whether white is |
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[1178] | 90 | ///amongst the provided color (\c true) or not (\c false). If it is true, |
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| 91 | ///white will be assigned to \c 0. |
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| 92 | ///\param num the number of the allocated colors. If it is \c 0 |
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| 93 | ///the default color configuration is set up (26 color plus the while). |
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| 94 | ///If \c num is less then 26/27 then the default color list is cut. Otherwise |
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| 95 | ///the color list is filled repeatedly with the default color list. |
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[1574] | 96 | ///(The colors can be changed later on.) |
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[1178] | 97 | ColorSet(bool have_white=false,int num=0) |
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| 98 | { |
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| 99 | do { |
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| 100 | if(have_white) colors.push_back(Color(1,1,1)); |
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| 101 | |
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| 102 | colors.push_back(Color(0,0,0)); |
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| 103 | colors.push_back(Color(1,0,0)); |
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| 104 | colors.push_back(Color(0,1,0)); |
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| 105 | colors.push_back(Color(0,0,1)); |
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| 106 | colors.push_back(Color(1,1,0)); |
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| 107 | colors.push_back(Color(1,0,1)); |
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| 108 | colors.push_back(Color(0,1,1)); |
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| 109 | |
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| 110 | colors.push_back(Color(.5,0,0)); |
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| 111 | colors.push_back(Color(0,.5,0)); |
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| 112 | colors.push_back(Color(0,0,.5)); |
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| 113 | colors.push_back(Color(.5,.5,0)); |
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| 114 | colors.push_back(Color(.5,0,.5)); |
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| 115 | colors.push_back(Color(0,.5,.5)); |
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| 116 | |
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| 117 | colors.push_back(Color(.5,.5,.5)); |
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| 118 | colors.push_back(Color(1,.5,.5)); |
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| 119 | colors.push_back(Color(.5,1,.5)); |
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| 120 | colors.push_back(Color(.5,.5,1)); |
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| 121 | colors.push_back(Color(1,1,.5)); |
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| 122 | colors.push_back(Color(1,.5,1)); |
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| 123 | colors.push_back(Color(.5,1,1)); |
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| 124 | |
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| 125 | colors.push_back(Color(1,.5,0)); |
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| 126 | colors.push_back(Color(.5,1,0)); |
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| 127 | colors.push_back(Color(1,0,.5)); |
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| 128 | colors.push_back(Color(0,1,.5)); |
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| 129 | colors.push_back(Color(0,.5,1)); |
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| 130 | colors.push_back(Color(.5,0,1)); |
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| 131 | } while(int(colors.size())<num); |
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| 132 | // colors.push_back(Color(1,1,1)); |
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| 133 | if(num>0) colors.resize(num); |
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| 134 | } |
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| 135 | ///\e |
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| 136 | Color &operator[](int i) |
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| 137 | { |
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| 138 | return colors[i%colors.size()]; |
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| 139 | } |
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| 140 | ///\e |
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| 141 | const Color &operator[](int i) const |
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| 142 | { |
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| 143 | return colors[i%colors.size()]; |
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| 144 | } |
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| 145 | ///\e |
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| 146 | void set(int i,const Color &c) |
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| 147 | { |
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| 148 | colors[i%colors.size()]=c; |
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| 149 | } |
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| 150 | ///Sets the number of the exiting colors. |
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| 151 | void resize(int s) { colors.resize(s);} |
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[1574] | 152 | ///Returns the number of the existing colors. |
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[1573] | 153 | std::size_t size() const { return colors.size();} |
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[1178] | 154 | }; |
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| 155 | |
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| 156 | ///Returns a visible distinct \ref Color |
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| 157 | |
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| 158 | ///Returns a \ref Color which is as different from the given parameter |
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| 159 | ///as it is possible. |
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| 160 | inline Color distantColor(const Color &c) |
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| 161 | { |
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[1575] | 162 | return Color(c.red()<.5?1:0,c.green()<.5?1:0,c.blue()<.5?1:0); |
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[1178] | 163 | } |
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| 164 | ///Returns black for light colors and white for the dark ones. |
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| 165 | |
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| 166 | ///Returns black for light colors and white for the dark ones. |
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| 167 | inline Color distantBW(const Color &c){ |
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[1575] | 168 | double v=(.2125*c.red()+.7154*c.green()+.0721*c.blue())<.5?1:0; |
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[1178] | 169 | return Color(v,v,v); |
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| 170 | } |
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| 171 | |
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[1673] | 172 | template<class MT> |
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| 173 | class _NegY { |
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| 174 | public: |
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| 175 | typedef typename MT::Key Key; |
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| 176 | typedef typename MT::Value Value; |
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| 177 | const MT ↦ |
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| 178 | int yscale; |
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| 179 | _NegY(const MT &m,bool b) : map(m), yscale(1-b*2) {} |
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| 180 | Value operator[](Key n) { return Value(map[n].x,map[n].y*yscale);} |
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| 181 | }; |
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| 182 | |
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[1073] | 183 | ///Default traits class of \ref GraphToEps |
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| 184 | |
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| 185 | ///Default traits class of \ref GraphToEps |
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| 186 | /// |
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| 187 | ///\c G is the type of the underlying graph. |
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| 188 | template<class G> |
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| 189 | struct DefaultGraphToEpsTraits |
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| 190 | { |
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| 191 | typedef G Graph; |
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| 192 | typedef typename Graph::Node Node; |
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| 193 | typedef typename Graph::NodeIt NodeIt; |
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| 194 | typedef typename Graph::Edge Edge; |
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| 195 | typedef typename Graph::EdgeIt EdgeIt; |
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| 196 | typedef typename Graph::InEdgeIt InEdgeIt; |
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| 197 | typedef typename Graph::OutEdgeIt OutEdgeIt; |
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| 198 | |
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| 199 | |
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| 200 | const Graph &g; |
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| 201 | |
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| 202 | std::ostream& os; |
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| 203 | |
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[1673] | 204 | typedef ConstMap<typename Graph::Node,xy<double> > CoordsMapType; |
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| 205 | CoordsMapType _coords; |
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[1073] | 206 | ConstMap<typename Graph::Node,double > _nodeSizes; |
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[1086] | 207 | ConstMap<typename Graph::Node,int > _nodeShapes; |
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[1073] | 208 | |
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| 209 | ConstMap<typename Graph::Node,Color > _nodeColors; |
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| 210 | ConstMap<typename Graph::Edge,Color > _edgeColors; |
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| 211 | |
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| 212 | ConstMap<typename Graph::Edge,double > _edgeWidths; |
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[1103] | 213 | |
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[1073] | 214 | double _edgeWidthScale; |
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| 215 | |
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| 216 | double _nodeScale; |
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| 217 | double _xBorder, _yBorder; |
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| 218 | double _scale; |
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| 219 | double _nodeBorderQuotient; |
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| 220 | |
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| 221 | bool _drawArrows; |
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| 222 | double _arrowLength, _arrowWidth; |
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| 223 | |
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| 224 | bool _showNodes, _showEdges; |
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| 225 | |
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| 226 | bool _enableParallel; |
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| 227 | double _parEdgeDist; |
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| 228 | |
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| 229 | bool _showNodeText; |
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| 230 | ConstMap<typename Graph::Node,bool > _nodeTexts; |
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| 231 | double _nodeTextSize; |
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| 232 | |
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[1085] | 233 | bool _showNodePsText; |
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| 234 | ConstMap<typename Graph::Node,bool > _nodePsTexts; |
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| 235 | char *_nodePsTextsPreamble; |
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| 236 | |
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[1073] | 237 | bool _undir; |
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| 238 | bool _pleaseRemoveOsStream; |
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[1103] | 239 | |
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| 240 | bool _scaleToA4; |
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[1108] | 241 | |
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| 242 | std::string _title; |
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| 243 | std::string _copyright; |
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[1178] | 244 | |
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| 245 | enum NodeTextColorType |
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| 246 | { DIST_COL=0, DIST_BW=1, CUST_COL=2, SAME_COL=3 } _nodeTextColorType; |
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| 247 | ConstMap<typename Graph::Node,Color > _nodeTextColors; |
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| 248 | |
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[1604] | 249 | bool _autoNodeScale; |
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| 250 | bool _autoEdgeWidthScale; |
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| 251 | |
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[1673] | 252 | bool _negY; |
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[1073] | 253 | ///Constructor |
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| 254 | |
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| 255 | ///Constructor |
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| 256 | ///\param _g is a reference to the graph to be printed |
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| 257 | ///\param _os is a reference to the output stream. |
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| 258 | ///\param _os is a reference to the output stream. |
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| 259 | ///\param _pros If it is \c true, then the \c ostream referenced by \c _os |
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| 260 | ///will be explicitly deallocated by the destructor. |
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| 261 | ///By default it is <tt>std::cout</tt> |
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| 262 | DefaultGraphToEpsTraits(const G &_g,std::ostream& _os=std::cout, |
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| 263 | bool _pros=false) : |
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| 264 | g(_g), os(_os), |
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[1086] | 265 | _coords(xy<double>(1,1)), _nodeSizes(1.0), _nodeShapes(0), |
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[1073] | 266 | _nodeColors(Color(1,1,1)), _edgeColors(Color(0,0,0)), |
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| 267 | _edgeWidths(1), _edgeWidthScale(0.3), |
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| 268 | _nodeScale(1.0), _xBorder(10), _yBorder(10), _scale(1.0), |
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| 269 | _nodeBorderQuotient(.1), |
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| 270 | _drawArrows(false), _arrowLength(1), _arrowWidth(0.3), |
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| 271 | _showNodes(true), _showEdges(true), |
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| 272 | _enableParallel(false), _parEdgeDist(1), |
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| 273 | _showNodeText(false), _nodeTexts(false), _nodeTextSize(1), |
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[1085] | 274 | _showNodePsText(false), _nodePsTexts(false), _nodePsTextsPreamble(0), |
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[1073] | 275 | _undir(false), |
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[1178] | 276 | _pleaseRemoveOsStream(_pros), _scaleToA4(false), |
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[1604] | 277 | _nodeTextColorType(SAME_COL), _nodeTextColors(Color(0,0,0)), |
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| 278 | _autoNodeScale(false), |
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[1673] | 279 | _autoEdgeWidthScale(false), |
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| 280 | _negY(false) |
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[1178] | 281 | {} |
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[1073] | 282 | }; |
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| 283 | |
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| 284 | ///Helper class to implement the named parameters of \ref graphToEps() |
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| 285 | |
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| 286 | ///Helper class to implement the named parameters of \ref graphToEps() |
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| 287 | ///\todo Is 'helper class' a good name for this? |
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| 288 | /// |
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[1103] | 289 | ///\todo Follow PostScript's DSC. |
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[1107] | 290 | /// Use own dictionary. |
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| 291 | ///\todo Useful new features. |
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| 292 | /// - Linestyles: dotted, dashed etc. |
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| 293 | /// - A second color and percent value for the lines. |
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[1073] | 294 | template<class T> class GraphToEps : public T |
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| 295 | { |
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[1234] | 296 | // Can't believe it is required by the C++ standard |
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| 297 | using T::g; |
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| 298 | using T::os; |
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| 299 | |
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| 300 | using T::_coords; |
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| 301 | using T::_nodeSizes; |
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| 302 | using T::_nodeShapes; |
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| 303 | using T::_nodeColors; |
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| 304 | using T::_edgeColors; |
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| 305 | using T::_edgeWidths; |
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| 306 | |
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| 307 | using T::_edgeWidthScale; |
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| 308 | using T::_nodeScale; |
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| 309 | using T::_xBorder; |
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| 310 | using T::_yBorder; |
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| 311 | using T::_scale; |
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| 312 | using T::_nodeBorderQuotient; |
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| 313 | |
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| 314 | using T::_drawArrows; |
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| 315 | using T::_arrowLength; |
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| 316 | using T::_arrowWidth; |
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| 317 | |
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| 318 | using T::_showNodes; |
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| 319 | using T::_showEdges; |
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| 320 | |
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| 321 | using T::_enableParallel; |
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| 322 | using T::_parEdgeDist; |
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| 323 | |
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| 324 | using T::_showNodeText; |
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| 325 | using T::_nodeTexts; |
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| 326 | using T::_nodeTextSize; |
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| 327 | |
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| 328 | using T::_showNodePsText; |
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| 329 | using T::_nodePsTexts; |
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| 330 | using T::_nodePsTextsPreamble; |
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| 331 | |
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| 332 | using T::_undir; |
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| 333 | using T::_pleaseRemoveOsStream; |
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| 334 | |
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| 335 | using T::_scaleToA4; |
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| 336 | |
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| 337 | using T::_title; |
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| 338 | using T::_copyright; |
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| 339 | |
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| 340 | using T::NodeTextColorType; |
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| 341 | using T::CUST_COL; |
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| 342 | using T::DIST_COL; |
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| 343 | using T::DIST_BW; |
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| 344 | using T::_nodeTextColorType; |
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| 345 | using T::_nodeTextColors; |
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[1604] | 346 | |
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| 347 | using T::_autoNodeScale; |
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| 348 | using T::_autoEdgeWidthScale; |
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| 349 | |
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[1234] | 350 | // dradnats ++C eht yb deriuqer si ti eveileb t'naC |
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| 351 | |
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[1073] | 352 | typedef typename T::Graph Graph; |
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| 353 | typedef typename Graph::Node Node; |
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| 354 | typedef typename Graph::NodeIt NodeIt; |
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| 355 | typedef typename Graph::Edge Edge; |
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| 356 | typedef typename Graph::EdgeIt EdgeIt; |
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| 357 | typedef typename Graph::InEdgeIt InEdgeIt; |
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| 358 | typedef typename Graph::OutEdgeIt OutEdgeIt; |
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| 359 | |
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[1494] | 360 | static const int INTERPOL_PREC; |
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| 361 | static const double A4HEIGHT; |
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| 362 | static const double A4WIDTH; |
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| 363 | static const double A4BORDER; |
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[1087] | 364 | |
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[1073] | 365 | bool dontPrint; |
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| 366 | |
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[1107] | 367 | public: |
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| 368 | ///Node shapes |
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| 369 | |
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| 370 | ///Node shapes |
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| 371 | /// |
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| 372 | enum NodeShapes { |
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| 373 | /// = 0 |
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| 374 | ///\image html nodeshape_0.png |
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| 375 | ///\image latex nodeshape_0.eps "CIRCLE shape (0)" width=2cm |
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| 376 | CIRCLE=0, |
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| 377 | /// = 1 |
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| 378 | ///\image html nodeshape_1.png |
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| 379 | ///\image latex nodeshape_1.eps "SQUARE shape (1)" width=2cm |
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| 380 | /// |
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| 381 | SQUARE=1, |
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| 382 | /// = 2 |
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| 383 | ///\image html nodeshape_2.png |
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| 384 | ///\image latex nodeshape_2.eps "DIAMOND shape (2)" width=2cm |
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| 385 | /// |
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| 386 | DIAMOND=2 |
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| 387 | }; |
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| 388 | |
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| 389 | private: |
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[1073] | 390 | class edgeLess { |
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| 391 | const Graph &g; |
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| 392 | public: |
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| 393 | edgeLess(const Graph &_g) : g(_g) {} |
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| 394 | bool operator()(Edge a,Edge b) const |
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| 395 | { |
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[1367] | 396 | Node ai=std::min(g.source(a),g.target(a)); |
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| 397 | Node aa=std::max(g.source(a),g.target(a)); |
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| 398 | Node bi=std::min(g.source(b),g.target(b)); |
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| 399 | Node ba=std::max(g.source(b),g.target(b)); |
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[1073] | 400 | return ai<bi || |
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| 401 | (ai==bi && (aa < ba || |
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| 402 | (aa==ba && ai==g.source(a) && bi==g.target(b)))); |
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| 403 | } |
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| 404 | }; |
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| 405 | bool isParallel(Edge e,Edge f) const |
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| 406 | { |
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[1234] | 407 | return (g.source(e)==g.source(f)&& |
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| 408 | g.target(e)==g.target(f)) || |
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| 409 | (g.source(e)==g.target(f)&& |
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| 410 | g.target(e)==g.source(f)); |
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[1073] | 411 | } |
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[1178] | 412 | template<class TT> |
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| 413 | static std::string psOut(const xy<TT> &p) |
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[1073] | 414 | { |
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| 415 | std::ostringstream os; |
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| 416 | os << p.x << ' ' << p.y; |
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| 417 | return os.str(); |
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| 418 | } |
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[1178] | 419 | static std::string psOut(const Color &c) |
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| 420 | { |
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| 421 | std::ostringstream os; |
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[1575] | 422 | os << c.red() << ' ' << c.green() << ' ' << c.blue(); |
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[1178] | 423 | return os.str(); |
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| 424 | } |
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[1073] | 425 | |
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| 426 | public: |
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| 427 | GraphToEps(const T &t) : T(t), dontPrint(false) {}; |
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| 428 | |
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| 429 | template<class X> struct CoordsTraits : public T { |
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[1673] | 430 | typedef X CoordsMapType; |
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[1073] | 431 | const X &_coords; |
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| 432 | CoordsTraits(const T &t,const X &x) : T(t), _coords(x) {} |
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| 433 | }; |
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| 434 | ///Sets the map of the node coordinates |
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| 435 | |
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| 436 | ///Sets the map of the node coordinates. |
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[1103] | 437 | ///\param x must be a node map with xy<double> or \ref xy "xy<int>" values. |
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[1073] | 438 | template<class X> GraphToEps<CoordsTraits<X> > coords(const X &x) { |
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| 439 | dontPrint=true; |
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| 440 | return GraphToEps<CoordsTraits<X> >(CoordsTraits<X>(*this,x)); |
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| 441 | } |
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| 442 | template<class X> struct NodeSizesTraits : public T { |
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| 443 | const X &_nodeSizes; |
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| 444 | NodeSizesTraits(const T &t,const X &x) : T(t), _nodeSizes(x) {} |
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| 445 | }; |
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| 446 | ///Sets the map of the node sizes |
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| 447 | |
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| 448 | ///Sets the map of the node sizes |
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| 449 | ///\param x must be a node map with \c double (or convertible) values. |
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| 450 | template<class X> GraphToEps<NodeSizesTraits<X> > nodeSizes(const X &x) |
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| 451 | { |
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| 452 | dontPrint=true; |
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| 453 | return GraphToEps<NodeSizesTraits<X> >(NodeSizesTraits<X>(*this,x)); |
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| 454 | } |
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[1086] | 455 | template<class X> struct NodeShapesTraits : public T { |
---|
| 456 | const X &_nodeShapes; |
---|
| 457 | NodeShapesTraits(const T &t,const X &x) : T(t), _nodeShapes(x) {} |
---|
| 458 | }; |
---|
| 459 | ///Sets the map of the node shapes |
---|
| 460 | |
---|
[1107] | 461 | ///Sets the map of the node shapes. |
---|
| 462 | ///The availabe shape values |
---|
| 463 | ///can be found in \ref NodeShapes "enum NodeShapes". |
---|
[1086] | 464 | ///\param x must be a node map with \c int (or convertible) values. |
---|
[1107] | 465 | ///\sa NodeShapes |
---|
[1086] | 466 | template<class X> GraphToEps<NodeShapesTraits<X> > nodeShapes(const X &x) |
---|
| 467 | { |
---|
| 468 | dontPrint=true; |
---|
| 469 | return GraphToEps<NodeShapesTraits<X> >(NodeShapesTraits<X>(*this,x)); |
---|
| 470 | } |
---|
[1073] | 471 | template<class X> struct NodeTextsTraits : public T { |
---|
| 472 | const X &_nodeTexts; |
---|
| 473 | NodeTextsTraits(const T &t,const X &x) : T(t), _nodeTexts(x) {} |
---|
| 474 | }; |
---|
| 475 | ///Sets the text printed on the nodes |
---|
| 476 | |
---|
| 477 | ///Sets the text printed on the nodes |
---|
| 478 | ///\param x must be a node map with type that can be pushed to a standard |
---|
| 479 | ///ostream. |
---|
| 480 | template<class X> GraphToEps<NodeTextsTraits<X> > nodeTexts(const X &x) |
---|
| 481 | { |
---|
| 482 | dontPrint=true; |
---|
| 483 | _showNodeText=true; |
---|
| 484 | return GraphToEps<NodeTextsTraits<X> >(NodeTextsTraits<X>(*this,x)); |
---|
| 485 | } |
---|
[1085] | 486 | template<class X> struct NodePsTextsTraits : public T { |
---|
| 487 | const X &_nodePsTexts; |
---|
| 488 | NodePsTextsTraits(const T &t,const X &x) : T(t), _nodePsTexts(x) {} |
---|
| 489 | }; |
---|
| 490 | ///Inserts a PostScript block to the nodes |
---|
| 491 | |
---|
| 492 | ///With this command it is possible to insert a verbatim PostScript |
---|
| 493 | ///block to the nodes. |
---|
| 494 | ///The PS current point will be moved to the centre of the node before |
---|
| 495 | ///the PostScript block inserted. |
---|
| 496 | /// |
---|
[1573] | 497 | ///Before and after the block a newline character is inserted so you |
---|
[1085] | 498 | ///don't have to bother with the separators. |
---|
| 499 | /// |
---|
| 500 | ///\param x must be a node map with type that can be pushed to a standard |
---|
| 501 | ///ostream. |
---|
| 502 | /// |
---|
| 503 | ///\sa nodePsTextsPreamble() |
---|
| 504 | ///\todo Offer the choise not to move to the centre but pass the coordinates |
---|
| 505 | ///to the Postscript block inserted. |
---|
| 506 | template<class X> GraphToEps<NodePsTextsTraits<X> > nodePsTexts(const X &x) |
---|
| 507 | { |
---|
| 508 | dontPrint=true; |
---|
| 509 | _showNodePsText=true; |
---|
| 510 | return GraphToEps<NodePsTextsTraits<X> >(NodePsTextsTraits<X>(*this,x)); |
---|
| 511 | } |
---|
| 512 | template<class X> struct EdgeWidthsTraits : public T { |
---|
[1073] | 513 | const X &_edgeWidths; |
---|
| 514 | EdgeWidthsTraits(const T &t,const X &x) : T(t), _edgeWidths(x) {} |
---|
| 515 | }; |
---|
| 516 | ///Sets the map of the edge widths |
---|
| 517 | |
---|
| 518 | ///Sets the map of the edge widths |
---|
| 519 | ///\param x must be a edge map with \c double (or convertible) values. |
---|
| 520 | template<class X> GraphToEps<EdgeWidthsTraits<X> > edgeWidths(const X &x) |
---|
| 521 | { |
---|
| 522 | dontPrint=true; |
---|
| 523 | return GraphToEps<EdgeWidthsTraits<X> >(EdgeWidthsTraits<X>(*this,x)); |
---|
| 524 | } |
---|
| 525 | |
---|
| 526 | template<class X> struct NodeColorsTraits : public T { |
---|
| 527 | const X &_nodeColors; |
---|
| 528 | NodeColorsTraits(const T &t,const X &x) : T(t), _nodeColors(x) {} |
---|
| 529 | }; |
---|
| 530 | ///Sets the map of the node colors |
---|
| 531 | |
---|
| 532 | ///Sets the map of the node colors |
---|
[1573] | 533 | ///\param x must be a node map with \ref Color values. |
---|
| 534 | /// |
---|
| 535 | ///\sa ColorSet |
---|
[1073] | 536 | template<class X> GraphToEps<NodeColorsTraits<X> > |
---|
| 537 | nodeColors(const X &x) |
---|
| 538 | { |
---|
| 539 | dontPrint=true; |
---|
| 540 | return GraphToEps<NodeColorsTraits<X> >(NodeColorsTraits<X>(*this,x)); |
---|
| 541 | } |
---|
[1178] | 542 | template<class X> struct NodeTextColorsTraits : public T { |
---|
| 543 | const X &_nodeTextColors; |
---|
| 544 | NodeTextColorsTraits(const T &t,const X &x) : T(t), _nodeTextColors(x) {} |
---|
| 545 | }; |
---|
| 546 | ///Sets the map of the node text colors |
---|
| 547 | |
---|
| 548 | ///Sets the map of the node text colors |
---|
| 549 | ///\param x must be a node map with \ref Color values. |
---|
[1573] | 550 | /// |
---|
| 551 | ///\sa ColorSet |
---|
[1178] | 552 | template<class X> GraphToEps<NodeTextColorsTraits<X> > |
---|
| 553 | nodeTextColors(const X &x) |
---|
| 554 | { |
---|
| 555 | dontPrint=true; |
---|
| 556 | _nodeTextColorType=CUST_COL; |
---|
| 557 | return GraphToEps<NodeTextColorsTraits<X> > |
---|
| 558 | (NodeTextColorsTraits<X>(*this,x)); |
---|
| 559 | } |
---|
[1073] | 560 | template<class X> struct EdgeColorsTraits : public T { |
---|
| 561 | const X &_edgeColors; |
---|
| 562 | EdgeColorsTraits(const T &t,const X &x) : T(t), _edgeColors(x) {} |
---|
| 563 | }; |
---|
| 564 | ///Sets the map of the edge colors |
---|
| 565 | |
---|
| 566 | ///Sets the map of the edge colors |
---|
| 567 | ///\param x must be a edge map with \ref Color values. |
---|
[1573] | 568 | /// |
---|
| 569 | ///\sa ColorSet |
---|
[1073] | 570 | template<class X> GraphToEps<EdgeColorsTraits<X> > |
---|
| 571 | edgeColors(const X &x) |
---|
| 572 | { |
---|
| 573 | dontPrint=true; |
---|
| 574 | return GraphToEps<EdgeColorsTraits<X> >(EdgeColorsTraits<X>(*this,x)); |
---|
| 575 | } |
---|
| 576 | ///Sets a global scale factor for node sizes |
---|
| 577 | |
---|
[1604] | 578 | ///Sets a global scale factor for node sizes. |
---|
| 579 | /// |
---|
| 580 | /// If nodeSizes() is not given, this function simply sets the node |
---|
| 581 | /// sizes to \c d. If nodeSizes() is given, but |
---|
| 582 | /// autoNodeScale() is not, then the node size given by |
---|
| 583 | /// nodeSizes() will be multiplied by the value \c d. |
---|
| 584 | /// If both nodeSizes() and autoNodeScale() are used, then the |
---|
| 585 | /// node sizes will be scaled in such a way that the greatest size will be |
---|
| 586 | /// equal to \c d. |
---|
| 587 | GraphToEps<T> &nodeScale(double d) {_nodeScale=d;return *this;} |
---|
| 588 | ///Turns on/off the automatic node width scaling. |
---|
| 589 | |
---|
| 590 | ///Turns on/off the automatic node width scaling. |
---|
[1073] | 591 | /// |
---|
[1604] | 592 | ///\sa nodeScale() |
---|
| 593 | /// |
---|
| 594 | GraphToEps<T> &autoNodeScale(bool b=true) { |
---|
| 595 | _autoNodeScale=b;return *this; |
---|
| 596 | } |
---|
[1673] | 597 | |
---|
| 598 | ///Negates the Y coordinates. |
---|
| 599 | |
---|
| 600 | ///Negates the Y coordinates. |
---|
| 601 | /// |
---|
| 602 | ///\todo More docs. |
---|
| 603 | /// |
---|
| 604 | GraphToEps<T> &negateY(bool b=true) { |
---|
| 605 | _negY=b;return *this; |
---|
| 606 | } |
---|
| 607 | |
---|
[1073] | 608 | ///Sets a global scale factor for edge widths |
---|
| 609 | |
---|
[1604] | 610 | /// Sets a global scale factor for edge widths. |
---|
[1073] | 611 | /// |
---|
[1604] | 612 | /// If edgeWidths() is not given, this function simply sets the edge |
---|
| 613 | /// widths to \c d. If edgeWidths() is given, but |
---|
| 614 | /// autoEdgeWidthScale() is not, then the edge withs given by |
---|
| 615 | /// edgeWidths() will be multiplied by the value \c d. |
---|
| 616 | /// If both edgeWidths() and autoEdgeWidthScale() are used, then the |
---|
| 617 | /// edge withs will be scaled in such a way that the greatest width will be |
---|
| 618 | /// equal to \c d. |
---|
[1073] | 619 | GraphToEps<T> &edgeWidthScale(double d) {_edgeWidthScale=d;return *this;} |
---|
[1604] | 620 | ///Turns on/off the automatic edge width scaling. |
---|
| 621 | |
---|
| 622 | ///Turns on/off the automatic edge width scaling. |
---|
| 623 | /// |
---|
| 624 | ///\sa edgeWidthScale() |
---|
| 625 | /// |
---|
| 626 | GraphToEps<T> &autoEdgeWidthScale(bool b=true) { |
---|
| 627 | _autoEdgeWidthScale=b;return *this; |
---|
| 628 | } |
---|
[1073] | 629 | ///Sets a global scale factor for the whole picture |
---|
| 630 | |
---|
| 631 | ///Sets a global scale factor for the whole picture |
---|
| 632 | /// |
---|
[1604] | 633 | |
---|
[1073] | 634 | GraphToEps<T> &scale(double d) {_scale=d;return *this;} |
---|
| 635 | ///Sets the width of the border around the picture |
---|
| 636 | |
---|
| 637 | ///Sets the width of the border around the picture |
---|
| 638 | /// |
---|
| 639 | GraphToEps<T> &border(double b) {_xBorder=_yBorder=b;return *this;} |
---|
| 640 | ///Sets the width of the border around the picture |
---|
| 641 | |
---|
| 642 | ///Sets the width of the border around the picture |
---|
| 643 | /// |
---|
| 644 | GraphToEps<T> &border(double x, double y) { |
---|
| 645 | _xBorder=x;_yBorder=y;return *this; |
---|
| 646 | } |
---|
| 647 | ///Sets whether to draw arrows |
---|
| 648 | |
---|
| 649 | ///Sets whether to draw arrows |
---|
| 650 | /// |
---|
| 651 | GraphToEps<T> &drawArrows(bool b=true) {_drawArrows=b;return *this;} |
---|
| 652 | ///Sets the length of the arrowheads |
---|
| 653 | |
---|
| 654 | ///Sets the length of the arrowheads |
---|
| 655 | /// |
---|
| 656 | GraphToEps<T> &arrowLength(double d) {_arrowLength*=d;return *this;} |
---|
| 657 | ///Sets the width of the arrowheads |
---|
| 658 | |
---|
| 659 | ///Sets the width of the arrowheads |
---|
| 660 | /// |
---|
| 661 | GraphToEps<T> &arrowWidth(double d) {_arrowWidth*=d;return *this;} |
---|
| 662 | |
---|
[1103] | 663 | ///Scales the drawing to fit to A4 page |
---|
| 664 | |
---|
| 665 | ///Scales the drawing to fit to A4 page |
---|
| 666 | /// |
---|
| 667 | GraphToEps<T> &scaleToA4() {_scaleToA4=true;return *this;} |
---|
| 668 | |
---|
[1073] | 669 | ///Enables parallel edges |
---|
| 670 | |
---|
| 671 | ///Enables parallel edges |
---|
| 672 | GraphToEps<T> &enableParallel(bool b=true) {_enableParallel=b;return *this;} |
---|
| 673 | |
---|
| 674 | ///Sets the distance |
---|
| 675 | |
---|
| 676 | ///Sets the distance |
---|
| 677 | /// |
---|
| 678 | GraphToEps<T> &parEdgeDist(double d) {_parEdgeDist*=d;return *this;} |
---|
| 679 | |
---|
| 680 | ///Hides the edges |
---|
| 681 | |
---|
| 682 | ///Hides the edges |
---|
| 683 | /// |
---|
| 684 | GraphToEps<T> &hideEdges(bool b=true) {_showEdges=!b;return *this;} |
---|
| 685 | ///Hides the nodes |
---|
| 686 | |
---|
| 687 | ///Hides the nodes |
---|
| 688 | /// |
---|
| 689 | GraphToEps<T> &hideNodes(bool b=true) {_showNodes=!b;return *this;} |
---|
| 690 | |
---|
| 691 | ///Sets the size of the node texts |
---|
| 692 | |
---|
| 693 | ///Sets the size of the node texts |
---|
| 694 | /// |
---|
| 695 | GraphToEps<T> &nodeTextSize(double d) {_nodeTextSize=d;return *this;} |
---|
[1178] | 696 | |
---|
| 697 | ///Sets the color of the node texts to be different from the node color |
---|
| 698 | |
---|
| 699 | ///Sets the color of the node texts to be as different from the node color |
---|
| 700 | ///as it is possible |
---|
[1573] | 701 | /// |
---|
[1178] | 702 | GraphToEps<T> &distantColorNodeTexts() |
---|
| 703 | {_nodeTextColorType=DIST_COL;return *this;} |
---|
| 704 | ///Sets the color of the node texts to be black or white and always visible. |
---|
| 705 | |
---|
| 706 | ///Sets the color of the node texts to be black or white according to |
---|
| 707 | ///which is more |
---|
| 708 | ///different from the node color |
---|
| 709 | /// |
---|
| 710 | GraphToEps<T> &distantBWNodeTexts() |
---|
| 711 | {_nodeTextColorType=DIST_BW;return *this;} |
---|
| 712 | |
---|
[1085] | 713 | ///Gives a preamble block for node Postscript block. |
---|
| 714 | |
---|
| 715 | ///Gives a preamble block for node Postscript block. |
---|
| 716 | /// |
---|
| 717 | ///\sa nodePsTexts() |
---|
| 718 | GraphToEps<T> & nodePsTextsPreamble(const char *str) { |
---|
[1234] | 719 | _nodePsTextsPreamble=str ;return *this; |
---|
[1085] | 720 | } |
---|
[1073] | 721 | ///Sets whether the the graph is undirected |
---|
| 722 | |
---|
| 723 | ///Sets whether the the graph is undirected |
---|
| 724 | /// |
---|
| 725 | GraphToEps<T> &undir(bool b=true) {_undir=b;return *this;} |
---|
| 726 | ///Sets whether the the graph is directed |
---|
| 727 | |
---|
| 728 | ///Sets whether the the graph is directed. |
---|
| 729 | ///Use it to show the undirected edges as a pair of directed ones. |
---|
| 730 | GraphToEps<T> &bidir(bool b=true) {_undir=!b;return *this;} |
---|
[1086] | 731 | |
---|
[1108] | 732 | ///Sets the title. |
---|
| 733 | |
---|
| 734 | ///Sets the title of the generated image, |
---|
| 735 | ///namely it inserts a <tt>%%Title:</tt> DSC field to the header of |
---|
| 736 | ///the EPS file. |
---|
| 737 | GraphToEps<T> &title(const std::string &t) {_title=t;return *this;} |
---|
| 738 | ///Sets the copyright statement. |
---|
| 739 | |
---|
| 740 | ///Sets the copyright statement of the generated image, |
---|
| 741 | ///namely it inserts a <tt>%%Copyright:</tt> DSC field to the header of |
---|
| 742 | ///the EPS file. |
---|
| 743 | ///\todo Multiline copyright notice could be supported. |
---|
| 744 | GraphToEps<T> ©right(const std::string &t) {_copyright=t;return *this;} |
---|
| 745 | |
---|
[1086] | 746 | protected: |
---|
| 747 | bool isInsideNode(xy<double> p, double r,int t) |
---|
| 748 | { |
---|
| 749 | switch(t) { |
---|
| 750 | case CIRCLE: |
---|
| 751 | return p.normSquare()<=r*r; |
---|
| 752 | case SQUARE: |
---|
| 753 | return p.x<=r&&p.x>=-r&&p.y<=r&&p.y>=-r; |
---|
[1088] | 754 | case DIAMOND: |
---|
| 755 | return p.x+p.y<=r && p.x-p.y<=r && -p.x+p.y<=r && -p.x-p.y<=r; |
---|
[1086] | 756 | } |
---|
| 757 | return false; |
---|
| 758 | } |
---|
| 759 | |
---|
| 760 | public: |
---|
[1091] | 761 | ~GraphToEps() { } |
---|
| 762 | |
---|
| 763 | ///Draws the graph. |
---|
| 764 | |
---|
| 765 | ///Like other functions using |
---|
| 766 | ///\ref named-templ-func-param "named template parameters", |
---|
| 767 | ///this function calles the algorithm itself, i.e. in this case |
---|
| 768 | ///it draws the graph. |
---|
| 769 | void run() { |
---|
[1073] | 770 | if(dontPrint) return; |
---|
| 771 | |
---|
[1673] | 772 | _NegY<typename T::CoordsMapType> mycoords(_coords,_negY); |
---|
| 773 | |
---|
[1073] | 774 | os << "%!PS-Adobe-2.0 EPSF-2.0\n"; |
---|
[1108] | 775 | if(_title.size()>0) os << "%%Title: " << _title << '\n'; |
---|
| 776 | if(_copyright.size()>0) os << "%%Copyright: " << _copyright << '\n'; |
---|
[1107] | 777 | // << "%%Copyright: XXXX\n" |
---|
[1575] | 778 | os << "%%Creator: LEMON, graphToEps()\n"; |
---|
[1108] | 779 | |
---|
| 780 | { |
---|
| 781 | char cbuf[50]; |
---|
| 782 | timeval tv; |
---|
| 783 | gettimeofday(&tv, 0); |
---|
| 784 | ctime_r(&tv.tv_sec,cbuf); |
---|
| 785 | os << "%%CreationDate: " << cbuf; |
---|
| 786 | } |
---|
[1604] | 787 | |
---|
| 788 | if (_autoEdgeWidthScale) { |
---|
| 789 | double max_w=0; |
---|
| 790 | for(EdgeIt e(g);e!=INVALID;++e) |
---|
| 791 | max_w=std::max(double(_edgeWidths[e]),max_w); |
---|
| 792 | ///\todo better 'epsilon' would be nice here. |
---|
| 793 | if(max_w>1e-9) { |
---|
| 794 | _edgeWidthScale/=max_w; |
---|
| 795 | } |
---|
| 796 | } |
---|
| 797 | |
---|
| 798 | if (_autoNodeScale) { |
---|
| 799 | double max_s=0; |
---|
| 800 | for(NodeIt n(g);n!=INVALID;++n) |
---|
| 801 | max_s=std::max(double(_nodeSizes[n]),max_s); |
---|
| 802 | ///\todo better 'epsilon' would be nice here. |
---|
| 803 | if(max_s>1e-9) { |
---|
| 804 | _nodeScale/=max_s; |
---|
| 805 | } |
---|
| 806 | } |
---|
| 807 | |
---|
| 808 | |
---|
[1073] | 809 | BoundingBox<double> bb; |
---|
[1494] | 810 | ///\bug: Chech whether the graph is empty. |
---|
[1073] | 811 | for(NodeIt n(g);n!=INVALID;++n) { |
---|
| 812 | double ns=_nodeSizes[n]*_nodeScale; |
---|
| 813 | xy<double> p(ns,ns); |
---|
[1673] | 814 | bb.add(p+mycoords[n]); |
---|
| 815 | bb.add(-p+mycoords[n]); |
---|
[1539] | 816 | } |
---|
| 817 | if (bb.empty()) { |
---|
| 818 | bb = BoundingBox<double>(xy<double>(0,0)); |
---|
| 819 | } |
---|
[1604] | 820 | |
---|
[1108] | 821 | if(_scaleToA4) |
---|
| 822 | os <<"%%BoundingBox: 0 0 596 842\n%%DocumentPaperSizes: a4\n"; |
---|
| 823 | else os << "%%BoundingBox: " |
---|
[1575] | 824 | << bb.left() * _scale - _xBorder << ' ' |
---|
| 825 | << bb.bottom() * _scale - _yBorder << ' ' |
---|
| 826 | << bb.right() * _scale + _xBorder << ' ' |
---|
| 827 | << bb.top() * _scale + _yBorder << '\n'; |
---|
[1108] | 828 | |
---|
[1107] | 829 | os << "%%EndComments\n"; |
---|
| 830 | |
---|
[1073] | 831 | //x1 y1 x2 y2 x3 y3 cr cg cb w |
---|
| 832 | os << "/lb { setlinewidth setrgbcolor newpath moveto\n" |
---|
| 833 | << " 4 2 roll 1 index 1 index curveto stroke } bind def\n"; |
---|
| 834 | os << "/l { setlinewidth setrgbcolor newpath moveto lineto stroke } bind def\n"; |
---|
[1086] | 835 | //x y r |
---|
[1073] | 836 | os << "/c { newpath dup 3 index add 2 index moveto 0 360 arc closepath } bind def\n"; |
---|
[1086] | 837 | //x y r |
---|
| 838 | os << "/sq { newpath 2 index 1 index add 2 index 2 index add moveto\n" |
---|
| 839 | << " 2 index 1 index sub 2 index 2 index add lineto\n" |
---|
| 840 | << " 2 index 1 index sub 2 index 2 index sub lineto\n" |
---|
| 841 | << " 2 index 1 index add 2 index 2 index sub lineto\n" |
---|
| 842 | << " closepath pop pop pop} bind def\n"; |
---|
[1088] | 843 | //x y r |
---|
| 844 | os << "/di { newpath 2 index 1 index add 2 index moveto\n" |
---|
| 845 | << " 2 index 2 index 2 index add lineto\n" |
---|
| 846 | << " 2 index 1 index sub 2 index lineto\n" |
---|
| 847 | << " 2 index 2 index 2 index sub lineto\n" |
---|
| 848 | << " closepath pop pop pop} bind def\n"; |
---|
[1073] | 849 | // x y r cr cg cb |
---|
[1089] | 850 | os << "/nc { 0 0 0 setrgbcolor 5 index 5 index 5 index c fill\n" |
---|
| 851 | << " setrgbcolor " << 1+_nodeBorderQuotient << " div c fill\n" |
---|
[1073] | 852 | << " } bind def\n"; |
---|
[1089] | 853 | os << "/nsq { 0 0 0 setrgbcolor 5 index 5 index 5 index sq fill\n" |
---|
| 854 | << " setrgbcolor " << 1+_nodeBorderQuotient << " div sq fill\n" |
---|
[1086] | 855 | << " } bind def\n"; |
---|
[1089] | 856 | os << "/ndi { 0 0 0 setrgbcolor 5 index 5 index 5 index di fill\n" |
---|
| 857 | << " setrgbcolor " << 1+_nodeBorderQuotient << " div di fill\n" |
---|
[1088] | 858 | << " } bind def\n"; |
---|
[1073] | 859 | os << "/arrl " << _arrowLength << " def\n"; |
---|
| 860 | os << "/arrw " << _arrowWidth << " def\n"; |
---|
| 861 | // l dx_norm dy_norm |
---|
| 862 | os << "/lrl { 2 index mul exch 2 index mul exch rlineto pop} bind def\n"; |
---|
| 863 | //len w dx_norm dy_norm x1 y1 cr cg cb |
---|
| 864 | os << "/arr { setrgbcolor /y1 exch def /x1 exch def /dy exch def /dx exch def\n" |
---|
| 865 | << " /w exch def /len exch def\n" |
---|
| 866 | // << " 0.1 setlinewidth x1 y1 moveto dx len mul dy len mul rlineto stroke" |
---|
| 867 | << " newpath x1 dy w 2 div mul add y1 dx w 2 div mul sub moveto\n" |
---|
| 868 | << " len w sub arrl sub dx dy lrl\n" |
---|
| 869 | << " arrw dy dx neg lrl\n" |
---|
| 870 | << " dx arrl w add mul dy w 2 div arrw add mul sub\n" |
---|
| 871 | << " dy arrl w add mul dx w 2 div arrw add mul add rlineto\n" |
---|
| 872 | << " dx arrl w add mul neg dy w 2 div arrw add mul sub\n" |
---|
| 873 | << " dy arrl w add mul neg dx w 2 div arrw add mul add rlineto\n" |
---|
| 874 | << " arrw dy dx neg lrl\n" |
---|
| 875 | << " len w sub arrl sub neg dx dy lrl\n" |
---|
| 876 | << " closepath fill } bind def\n"; |
---|
| 877 | os << "/cshow { 2 index 2 index moveto dup stringwidth pop\n" |
---|
| 878 | << " neg 2 div fosi .35 mul neg rmoveto show pop pop} def\n"; |
---|
| 879 | |
---|
| 880 | os << "\ngsave\n"; |
---|
[1103] | 881 | if(_scaleToA4) |
---|
| 882 | if(bb.height()>bb.width()) { |
---|
[1470] | 883 | double sc= std::min((A4HEIGHT-2*A4BORDER)/bb.height(), |
---|
[1103] | 884 | (A4WIDTH-2*A4BORDER)/bb.width()); |
---|
| 885 | os << ((A4WIDTH -2*A4BORDER)-sc*bb.width())/2 + A4BORDER << ' ' |
---|
| 886 | << ((A4HEIGHT-2*A4BORDER)-sc*bb.height())/2 + A4BORDER << " translate\n" |
---|
| 887 | << sc << " dup scale\n" |
---|
| 888 | << -bb.left() << ' ' << -bb.bottom() << " translate\n"; |
---|
| 889 | } |
---|
| 890 | else { |
---|
| 891 | //\todo Verify centering |
---|
[1470] | 892 | double sc= std::min((A4HEIGHT-2*A4BORDER)/bb.width(), |
---|
[1103] | 893 | (A4WIDTH-2*A4BORDER)/bb.height()); |
---|
| 894 | os << ((A4WIDTH -2*A4BORDER)-sc*bb.height())/2 + A4BORDER << ' ' |
---|
| 895 | << ((A4HEIGHT-2*A4BORDER)-sc*bb.width())/2 + A4BORDER << " translate\n" |
---|
| 896 | << sc << " dup scale\n90 rotate\n" |
---|
| 897 | << -bb.left() << ' ' << -bb.top() << " translate\n"; |
---|
| 898 | } |
---|
| 899 | else if(_scale!=1.0) os << _scale << " dup scale\n"; |
---|
[1073] | 900 | |
---|
[1085] | 901 | if(_showEdges) { |
---|
| 902 | os << "%Edges:\ngsave\n"; |
---|
[1073] | 903 | if(_enableParallel) { |
---|
| 904 | std::vector<Edge> el; |
---|
| 905 | for(EdgeIt e(g);e!=INVALID;++e) |
---|
[1178] | 906 | if((!_undir||g.source(e)<g.target(e))&&_edgeWidths[e]>0) |
---|
| 907 | el.push_back(e); |
---|
[1642] | 908 | std::sort(el.begin(),el.end(),edgeLess(g)); |
---|
[1073] | 909 | |
---|
| 910 | typename std::vector<Edge>::iterator j; |
---|
| 911 | for(typename std::vector<Edge>::iterator i=el.begin();i!=el.end();i=j) { |
---|
| 912 | for(j=i+1;j!=el.end()&&isParallel(*i,*j);++j) ; |
---|
| 913 | |
---|
| 914 | double sw=0; |
---|
| 915 | for(typename std::vector<Edge>::iterator e=i;e!=j;++e) |
---|
| 916 | sw+=_edgeWidths[*e]*_edgeWidthScale+_parEdgeDist; |
---|
| 917 | sw-=_parEdgeDist; |
---|
| 918 | sw/=-2.0; |
---|
[1673] | 919 | xy<double> dvec(mycoords[g.target(*i)]-mycoords[g.source(*i)]); |
---|
[1417] | 920 | double l=std::sqrt(dvec.normSquare()); |
---|
[1360] | 921 | ///\todo better 'epsilon' would be nice here. |
---|
[1366] | 922 | xy<double> d(dvec/std::max(l,1e-9)); |
---|
[1085] | 923 | xy<double> m; |
---|
[1673] | 924 | // m=xy<double>(mycoords[g.target(*i)]+mycoords[g.source(*i)])/2.0; |
---|
[1085] | 925 | |
---|
[1673] | 926 | // m=xy<double>(mycoords[g.source(*i)])+ |
---|
[1085] | 927 | // dvec*(double(_nodeSizes[g.source(*i)])/ |
---|
| 928 | // (_nodeSizes[g.source(*i)]+_nodeSizes[g.target(*i)])); |
---|
| 929 | |
---|
[1673] | 930 | m=xy<double>(mycoords[g.source(*i)])+ |
---|
[1085] | 931 | d*(l+_nodeSizes[g.source(*i)]-_nodeSizes[g.target(*i)])/2.0; |
---|
| 932 | |
---|
[1073] | 933 | for(typename std::vector<Edge>::iterator e=i;e!=j;++e) { |
---|
| 934 | sw+=_edgeWidths[*e]*_edgeWidthScale/2.0; |
---|
[1202] | 935 | xy<double> mm=m+rot90(d)*sw/.75; |
---|
[1073] | 936 | if(_drawArrows) { |
---|
[1086] | 937 | int node_shape; |
---|
[1673] | 938 | xy<double> s=mycoords[g.source(*e)]; |
---|
| 939 | xy<double> t=mycoords[g.target(*e)]; |
---|
[1073] | 940 | double rn=_nodeSizes[g.target(*e)]*_nodeScale; |
---|
[1086] | 941 | node_shape=_nodeShapes[g.target(*e)]; |
---|
[1085] | 942 | Bezier3 bez(s,mm,mm,t); |
---|
[1073] | 943 | double t1=0,t2=1; |
---|
[1087] | 944 | for(int i=0;i<INTERPOL_PREC;++i) |
---|
[1086] | 945 | if(isInsideNode(bez((t1+t2)/2)-t,rn,node_shape)) t2=(t1+t2)/2; |
---|
| 946 | else t1=(t1+t2)/2; |
---|
[1073] | 947 | xy<double> apoint=bez((t1+t2)/2); |
---|
[1086] | 948 | rn = _arrowLength+_edgeWidths[*e]*_edgeWidthScale; |
---|
[1073] | 949 | rn*=rn; |
---|
[1086] | 950 | t2=(t1+t2)/2;t1=0; |
---|
[1087] | 951 | for(int i=0;i<INTERPOL_PREC;++i) |
---|
[1086] | 952 | if((bez((t1+t2)/2)-apoint).normSquare()>rn) t1=(t1+t2)/2; |
---|
[1073] | 953 | else t2=(t1+t2)/2; |
---|
| 954 | xy<double> linend=bez((t1+t2)/2); |
---|
| 955 | bez=bez.before((t1+t2)/2); |
---|
[1086] | 956 | // rn=_nodeSizes[g.source(*e)]*_nodeScale; |
---|
| 957 | // node_shape=_nodeShapes[g.source(*e)]; |
---|
| 958 | // t1=0;t2=1; |
---|
[1087] | 959 | // for(int i=0;i<INTERPOL_PREC;++i) |
---|
[1086] | 960 | // if(isInsideNode(bez((t1+t2)/2)-t,rn,node_shape)) t1=(t1+t2)/2; |
---|
| 961 | // else t2=(t1+t2)/2; |
---|
| 962 | // bez=bez.after((t1+t2)/2); |
---|
[1073] | 963 | os << _edgeWidths[*e]*_edgeWidthScale << " setlinewidth " |
---|
[1575] | 964 | << _edgeColors[*e].red() << ' ' |
---|
| 965 | << _edgeColors[*e].green() << ' ' |
---|
| 966 | << _edgeColors[*e].blue() << " setrgbcolor newpath\n" |
---|
[1073] | 967 | << bez.p1.x << ' ' << bez.p1.y << " moveto\n" |
---|
| 968 | << bez.p2.x << ' ' << bez.p2.y << ' ' |
---|
| 969 | << bez.p3.x << ' ' << bez.p3.y << ' ' |
---|
| 970 | << bez.p4.x << ' ' << bez.p4.y << " curveto stroke\n"; |
---|
[1202] | 971 | xy<double> dd(rot90(linend-apoint)); |
---|
[1089] | 972 | dd*=(.5*_edgeWidths[*e]*_edgeWidthScale+_arrowWidth)/ |
---|
[1417] | 973 | std::sqrt(dd.normSquare()); |
---|
[1073] | 974 | os << "newpath " << psOut(apoint) << " moveto " |
---|
| 975 | << psOut(linend+dd) << " lineto " |
---|
| 976 | << psOut(linend-dd) << " lineto closepath fill\n"; |
---|
| 977 | } |
---|
| 978 | else { |
---|
[1673] | 979 | os << mycoords[g.source(*e)].x << ' ' |
---|
| 980 | << mycoords[g.source(*e)].y << ' ' |
---|
[1085] | 981 | << mm.x << ' ' << mm.y << ' ' |
---|
[1673] | 982 | << mycoords[g.target(*e)].x << ' ' |
---|
| 983 | << mycoords[g.target(*e)].y << ' ' |
---|
[1575] | 984 | << _edgeColors[*e].red() << ' ' |
---|
| 985 | << _edgeColors[*e].green() << ' ' |
---|
| 986 | << _edgeColors[*e].blue() << ' ' |
---|
[1073] | 987 | << _edgeWidths[*e]*_edgeWidthScale << " lb\n"; |
---|
| 988 | } |
---|
| 989 | sw+=_edgeWidths[*e]*_edgeWidthScale/2.0+_parEdgeDist; |
---|
| 990 | } |
---|
| 991 | } |
---|
| 992 | } |
---|
| 993 | else for(EdgeIt e(g);e!=INVALID;++e) |
---|
[1178] | 994 | if((!_undir||g.source(e)<g.target(e))&&_edgeWidths[e]>0) |
---|
[1073] | 995 | if(_drawArrows) { |
---|
[1673] | 996 | xy<double> d(mycoords[g.target(e)]-mycoords[g.source(e)]); |
---|
[1087] | 997 | double rn=_nodeSizes[g.target(e)]*_nodeScale; |
---|
| 998 | int node_shape=_nodeShapes[g.target(e)]; |
---|
| 999 | double t1=0,t2=1; |
---|
| 1000 | for(int i=0;i<INTERPOL_PREC;++i) |
---|
| 1001 | if(isInsideNode((-(t1+t2)/2)*d,rn,node_shape)) t1=(t1+t2)/2; |
---|
| 1002 | else t2=(t1+t2)/2; |
---|
[1073] | 1003 | double l=sqrt(d.normSquare()); |
---|
| 1004 | d/=l; |
---|
[1087] | 1005 | |
---|
| 1006 | os << l*(1-(t1+t2)/2) << ' ' |
---|
[1073] | 1007 | << _edgeWidths[e]*_edgeWidthScale << ' ' |
---|
| 1008 | << d.x << ' ' << d.y << ' ' |
---|
[1673] | 1009 | << mycoords[g.source(e)].x << ' ' |
---|
| 1010 | << mycoords[g.source(e)].y << ' ' |
---|
[1575] | 1011 | << _edgeColors[e].red() << ' ' |
---|
| 1012 | << _edgeColors[e].green() << ' ' |
---|
| 1013 | << _edgeColors[e].blue() << " arr\n"; |
---|
[1073] | 1014 | } |
---|
[1673] | 1015 | else os << mycoords[g.source(e)].x << ' ' |
---|
| 1016 | << mycoords[g.source(e)].y << ' ' |
---|
| 1017 | << mycoords[g.target(e)].x << ' ' |
---|
| 1018 | << mycoords[g.target(e)].y << ' ' |
---|
[1575] | 1019 | << _edgeColors[e].red() << ' ' |
---|
| 1020 | << _edgeColors[e].green() << ' ' |
---|
| 1021 | << _edgeColors[e].blue() << ' ' |
---|
[1073] | 1022 | << _edgeWidths[e]*_edgeWidthScale << " l\n"; |
---|
[1085] | 1023 | os << "grestore\n"; |
---|
| 1024 | } |
---|
| 1025 | if(_showNodes) { |
---|
| 1026 | os << "%Nodes:\ngsave\n"; |
---|
[1086] | 1027 | for(NodeIt n(g);n!=INVALID;++n) { |
---|
[1673] | 1028 | os << mycoords[n].x << ' ' << mycoords[n].y << ' ' |
---|
[1073] | 1029 | << _nodeSizes[n]*_nodeScale << ' ' |
---|
[1575] | 1030 | << _nodeColors[n].red() << ' ' |
---|
| 1031 | << _nodeColors[n].green() << ' ' |
---|
| 1032 | << _nodeColors[n].blue() << ' '; |
---|
[1086] | 1033 | switch(_nodeShapes[n]) { |
---|
| 1034 | case CIRCLE: |
---|
| 1035 | os<< "nc";break; |
---|
| 1036 | case SQUARE: |
---|
| 1037 | os<< "nsq";break; |
---|
[1088] | 1038 | case DIAMOND: |
---|
| 1039 | os<< "ndi";break; |
---|
[1086] | 1040 | } |
---|
| 1041 | os<<'\n'; |
---|
| 1042 | } |
---|
[1085] | 1043 | os << "grestore\n"; |
---|
| 1044 | } |
---|
[1073] | 1045 | if(_showNodeText) { |
---|
[1085] | 1046 | os << "%Node texts:\ngsave\n"; |
---|
[1073] | 1047 | os << "/fosi " << _nodeTextSize << " def\n"; |
---|
| 1048 | os << "(Helvetica) findfont fosi scalefont setfont\n"; |
---|
[1178] | 1049 | for(NodeIt n(g);n!=INVALID;++n) { |
---|
| 1050 | switch(_nodeTextColorType) { |
---|
| 1051 | case DIST_COL: |
---|
| 1052 | os << psOut(distantColor(_nodeColors[n])) << " setrgbcolor\n"; |
---|
| 1053 | break; |
---|
| 1054 | case DIST_BW: |
---|
| 1055 | os << psOut(distantBW(_nodeColors[n])) << " setrgbcolor\n"; |
---|
| 1056 | break; |
---|
| 1057 | case CUST_COL: |
---|
| 1058 | os << psOut(distantColor(_nodeTextColors[n])) << " setrgbcolor\n"; |
---|
| 1059 | break; |
---|
| 1060 | default: |
---|
| 1061 | os << "0 0 0 setrgbcolor\n"; |
---|
| 1062 | } |
---|
[1673] | 1063 | os << mycoords[n].x << ' ' << mycoords[n].y |
---|
[1073] | 1064 | << " (" << _nodeTexts[n] << ") cshow\n"; |
---|
[1178] | 1065 | } |
---|
[1085] | 1066 | os << "grestore\n"; |
---|
[1073] | 1067 | } |
---|
[1085] | 1068 | if(_showNodePsText) { |
---|
| 1069 | os << "%Node PS blocks:\ngsave\n"; |
---|
| 1070 | for(NodeIt n(g);n!=INVALID;++n) |
---|
[1673] | 1071 | os << mycoords[n].x << ' ' << mycoords[n].y |
---|
[1085] | 1072 | << " moveto\n" << _nodePsTexts[n] << "\n"; |
---|
| 1073 | os << "grestore\n"; |
---|
| 1074 | } |
---|
| 1075 | |
---|
[1103] | 1076 | os << "grestore\nshowpage\n"; |
---|
[1073] | 1077 | |
---|
| 1078 | //CleanUp: |
---|
| 1079 | if(_pleaseRemoveOsStream) {delete &os;} |
---|
| 1080 | } |
---|
| 1081 | }; |
---|
| 1082 | |
---|
[1494] | 1083 | template<class T> |
---|
| 1084 | const int GraphToEps<T>::INTERPOL_PREC = 20; |
---|
| 1085 | template<class T> |
---|
| 1086 | const double GraphToEps<T>::A4HEIGHT = 841.8897637795276; |
---|
| 1087 | template<class T> |
---|
| 1088 | const double GraphToEps<T>::A4WIDTH = 595.275590551181; |
---|
| 1089 | template<class T> |
---|
| 1090 | const double GraphToEps<T>::A4BORDER = 15; |
---|
| 1091 | |
---|
[1073] | 1092 | |
---|
| 1093 | ///Generates an EPS file from a graph |
---|
| 1094 | |
---|
[1287] | 1095 | ///\ingroup io_group |
---|
[1073] | 1096 | ///Generates an EPS file from a graph. |
---|
| 1097 | ///\param g is a reference to the graph to be printed |
---|
| 1098 | ///\param os is a reference to the output stream. |
---|
| 1099 | ///By default it is <tt>std::cout</tt> |
---|
| 1100 | /// |
---|
[1091] | 1101 | ///This function also has a lot of |
---|
| 1102 | ///\ref named-templ-func-param "named parameters", |
---|
[1073] | 1103 | ///they are declared as the members of class \ref GraphToEps. The following |
---|
| 1104 | ///example shows how to use these parameters. |
---|
| 1105 | ///\code |
---|
[1178] | 1106 | /// graphToEps(g,os).scale(10).coords(coords) |
---|
[1073] | 1107 | /// .nodeScale(2).nodeSizes(sizes) |
---|
[1091] | 1108 | /// .edgeWidthScale(.4).run(); |
---|
[1073] | 1109 | ///\endcode |
---|
[1091] | 1110 | ///\warning Don't forget to put the \ref GraphToEps::run() "run()" |
---|
| 1111 | ///to the end of the parameter list. |
---|
[1073] | 1112 | ///\sa GraphToEps |
---|
[1573] | 1113 | ///\sa graphToEps(G &g, const char *file_name) |
---|
[1073] | 1114 | template<class G> |
---|
| 1115 | GraphToEps<DefaultGraphToEpsTraits<G> > |
---|
| 1116 | graphToEps(G &g, std::ostream& os=std::cout) |
---|
| 1117 | { |
---|
| 1118 | return |
---|
| 1119 | GraphToEps<DefaultGraphToEpsTraits<G> >(DefaultGraphToEpsTraits<G>(g,os)); |
---|
| 1120 | } |
---|
| 1121 | |
---|
| 1122 | ///Generates an EPS file from a graph |
---|
| 1123 | |
---|
[1573] | 1124 | ///\ingroup io_group |
---|
[1073] | 1125 | ///This function does the same as |
---|
| 1126 | ///\ref graphToEps(G &g,std::ostream& os) |
---|
| 1127 | ///but it writes its output into the file \c file_name |
---|
| 1128 | ///instead of a stream. |
---|
| 1129 | ///\sa graphToEps(G &g, std::ostream& os) |
---|
| 1130 | template<class G> |
---|
| 1131 | GraphToEps<DefaultGraphToEpsTraits<G> > |
---|
[1107] | 1132 | graphToEps(G &g,const char *file_name) |
---|
[1073] | 1133 | { |
---|
| 1134 | return GraphToEps<DefaultGraphToEpsTraits<G> > |
---|
| 1135 | (DefaultGraphToEpsTraits<G>(g,*new std::ofstream(file_name),true)); |
---|
| 1136 | } |
---|
| 1137 | |
---|
| 1138 | } //END OF NAMESPACE LEMON |
---|
| 1139 | |
---|
| 1140 | #endif // LEMON_GRAPH_TO_EPS_H |
---|