1 | // This example was started by Guillaume Laurent. |
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2 | // It has become a place to dump code that tests parts of the |
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3 | // gnomemm canvas code. Little thought has been given to the |
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4 | // actual on-screen output. |
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5 | |
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6 | #include <libgnomecanvasmm.h> |
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7 | #include <libgnomecanvasmm/polygon.h> |
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8 | #include <iostream> |
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9 | #include <lemon/list_graph.h> |
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10 | |
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11 | class CanvasExample : public Gnome::Canvas::CanvasAA |
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12 | { |
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13 | typedef Gnome::Canvas::CanvasAA Parent; |
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14 | |
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15 | public: |
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16 | CanvasExample(double *, int); |
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17 | virtual ~CanvasExample(); |
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18 | |
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19 | private: |
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20 | |
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21 | ///Event handler function that handles dragging nodes of triangle |
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22 | bool event_handler(GdkEvent* e, int b); |
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23 | |
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24 | ///Event handler function that handles dragging triangle |
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25 | bool tri_mover(GdkEvent* e); |
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26 | |
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27 | ///Coordinates of Weight Point of tirangle |
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28 | Gnome::Art::Point * wp; |
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29 | ///Array of nodes of planefigure |
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30 | Gnome::Canvas::Ellipse ** nodes; |
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31 | ///Sides of planefigure |
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32 | Gnome::Canvas::Polygon * sides; |
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33 | ///Group of graphical elements of triangle |
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34 | Gnome::Canvas::Group triangle; |
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35 | |
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36 | ///Indicates whether the button of mouse is pressed or not |
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37 | bool isbutton; |
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38 | |
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39 | ///Number Of Elements - the number of nodes |
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40 | int noe; |
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41 | |
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42 | ///Array of coordinates |
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43 | double * coordinates; |
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44 | |
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45 | ///At this location was the mousebutton pressed. |
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46 | ///It helps to calculate the distance of dragging. |
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47 | double clicked_x, clicked_y; |
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48 | |
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49 | ///Remembers which Gnome::Canvas::Item was pressed. |
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50 | ///this variable is needed, because |
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51 | ///1. we cannot query the item at he cursor as fast as it could not cause a Segmentation Fault |
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52 | ///2. we would like to handle only ony item per movement, therefore quering it is not a working solution |
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53 | Gnome::Canvas::Item * active_item; |
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54 | |
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55 | |
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56 | }; |
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57 | |
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58 | ///When we click on the weight point we can drag the whole triangle. This function resolves it. |
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59 | bool CanvasExample::tri_mover(GdkEvent* e) |
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60 | { |
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61 | switch(e->type) |
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62 | { |
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63 | case GDK_BUTTON_PRESS: |
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64 | clicked_x=e->button.x; |
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65 | clicked_y=e->button.y; |
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66 | isbutton=true; |
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67 | break; |
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68 | case GDK_BUTTON_RELEASE: |
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69 | isbutton=false; |
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70 | active_item=NULL; |
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71 | break; |
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72 | case GDK_MOTION_NOTIFY: |
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73 | if(isbutton) |
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74 | { |
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75 | double dx=e->motion.x-clicked_x; |
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76 | double dy=e->motion.y-clicked_y; |
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77 | |
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78 | Gnome::Canvas::Points coos; |
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79 | |
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80 | for(int i=0;i<=noe;i++) |
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81 | { |
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82 | nodes[i]->move(dx,dy); |
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83 | |
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84 | double x=(coordinates[2*i]+=dx); |
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85 | double y=(coordinates[2*i+1]+=dy); |
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86 | |
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87 | if(i!=noe)coos.push_back(Gnome::Art::Point(x,y)); |
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88 | |
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89 | } |
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90 | |
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91 | clicked_x=e->motion.x; |
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92 | clicked_y=e->motion.y; |
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93 | |
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94 | sides->property_points().set_value(coos); |
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95 | } |
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96 | default: break; |
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97 | } |
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98 | return true; |
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99 | } |
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100 | |
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101 | ///This function moves only one node of triangle, |
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102 | ///but recalculate the location of wight point, |
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103 | ///and also redraw the sides of the planefigure. |
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104 | bool CanvasExample::event_handler(GdkEvent* e, int b) |
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105 | { |
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106 | switch(e->type) |
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107 | { |
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108 | case GDK_BUTTON_PRESS: |
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109 | clicked_x=e->button.x; |
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110 | clicked_y=e->button.y; |
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111 | active_item=(get_item_at(e->button.x, e->button.y)); |
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112 | isbutton=true; |
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113 | break; |
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114 | case GDK_BUTTON_RELEASE: |
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115 | isbutton=false; |
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116 | active_item=NULL; |
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117 | break; |
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118 | case GDK_MOTION_NOTIFY: |
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119 | if(isbutton) |
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120 | { |
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121 | //double x1, y1, x2, y2; |
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122 | //(get_item_at(e->motion.x, e->motion.y))->get_bounds(x1, y1, x2, y2); |
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123 | //printf("Item coos: %d %d %d %d\n", (int)x1, (int)y1, (int)x2, (int)y2); |
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124 | //printf("Mouse is moved! %d %d\n",(int)e->motion.x,(int)e->motion.y); |
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125 | double dx=e->motion.x-clicked_x; |
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126 | double dy=e->motion.y-clicked_y; |
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127 | active_item->move(dx, dy); |
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128 | |
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129 | coordinates[2*b]+=dx; |
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130 | coordinates[2*b+1]+=dy; |
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131 | |
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132 | Gnome::Canvas::Points coos; |
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133 | |
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134 | double x_wp=0; |
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135 | double y_wp=0; |
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136 | |
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137 | for(int i=0;i<noe;i++) |
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138 | { |
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139 | coos.push_back(Gnome::Art::Point(coordinates[2*i], coordinates[2*i+1])); |
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140 | |
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141 | x_wp+=coordinates[2*i]; |
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142 | y_wp+=coordinates[2*i+1]; |
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143 | } |
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144 | |
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145 | sides->property_points().set_value(coos); |
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146 | |
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147 | x_wp/=noe; |
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148 | y_wp/=noe; |
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149 | |
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150 | dx=x_wp-coordinates[noe*2]; |
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151 | dy=y_wp-coordinates[noe*2+1]; |
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152 | nodes[noe]->move(dx, dy); |
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153 | |
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154 | coordinates[noe*2]+=dx; |
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155 | coordinates[noe*2+1]+=dy; |
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156 | |
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157 | clicked_x=e->motion.x; |
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158 | clicked_y=e->motion.y; |
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159 | } |
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160 | default: break; |
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161 | } |
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162 | return true; |
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163 | } |
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164 | |
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165 | CanvasExample::CanvasExample(double * coosarray, int numofcoos):triangle(*(root()), 0, 0),isbutton(false),active_item(NULL) |
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166 | { |
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167 | noe=numofcoos/2; |
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168 | |
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169 | coordinates=new double [numofcoos+2]; |
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170 | |
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171 | double x_wp=0; |
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172 | double y_wp=0; |
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173 | |
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174 | Gnome::Canvas::Points coos; |
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175 | for(int i=0;i<numofcoos;i+=2) |
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176 | { |
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177 | coordinates[i]=coosarray[i]; |
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178 | coordinates[i+1]=coosarray[i+1]; |
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179 | coos.push_back(Gnome::Art::Point(coordinates[i], |
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180 | coordinates[i+1])); |
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181 | |
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182 | x_wp+=coordinates[i]; |
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183 | y_wp+=coordinates[i+1]; |
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184 | |
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185 | } |
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186 | |
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187 | sides=new Gnome::Canvas::Polygon(triangle, coos); |
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188 | *sides << Gnome::Canvas::Properties::outline_color("green"); |
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189 | sides->property_width_pixels().set_value(10); |
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190 | |
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191 | nodes=new Gnome::Canvas::Ellipse* [noe+1]; |
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192 | |
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193 | for(int i=0; i<noe;i++) |
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194 | { |
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195 | nodes[i]= new Gnome::Canvas::Ellipse(triangle, coos[i].get_x()-20, coos[i].get_y()-20, coos[i].get_x()+20, coos[i].get_y()+20); |
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196 | *(nodes[i]) << Gnome::Canvas::Properties::fill_color("blue"); |
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197 | *(nodes[i]) << Gnome::Canvas::Properties::outline_color("black"); |
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198 | (nodes[i])->signal_event().connect(sigc::bind(sigc::mem_fun(*this, &CanvasExample::event_handler),i)); |
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199 | } |
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200 | |
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201 | coordinates[numofcoos]=x_wp/noe; |
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202 | coordinates[numofcoos+1]=y_wp/noe; |
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203 | |
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204 | wp=new Gnome::Art::Point(coordinates[numofcoos],coordinates[numofcoos+1]); |
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205 | |
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206 | nodes[noe]= new Gnome::Canvas::Ellipse |
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207 | ( |
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208 | triangle, |
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209 | coordinates[numofcoos]-20, |
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210 | coordinates[numofcoos+1]-20, |
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211 | coordinates[numofcoos]+20, |
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212 | coordinates[numofcoos+1]+20 |
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213 | ); |
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214 | *(nodes[noe]) << Gnome::Canvas::Properties::fill_color("blue"); |
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215 | *(nodes[noe]) << Gnome::Canvas::Properties::outline_color("black"); |
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216 | (nodes[noe])->signal_event().connect(sigc::mem_fun(*this, &CanvasExample::tri_mover)); |
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217 | |
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218 | |
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219 | |
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220 | } |
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221 | |
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222 | CanvasExample::~CanvasExample() |
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223 | { |
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224 | } |
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225 | |
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226 | //MainWin: |
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227 | |
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228 | class MainWin : public Gtk::Window |
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229 | { |
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230 | public: |
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231 | MainWin(const std::string& title, double *, int); |
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232 | |
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233 | protected: |
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234 | //Member widgets: |
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235 | CanvasExample m_canvas; |
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236 | }; |
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237 | |
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238 | MainWin::MainWin(const std::string& title, double * coosarray, int noc):m_canvas(coosarray, noc) |
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239 | { |
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240 | set_title (title); |
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241 | add(m_canvas); |
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242 | set_default_size(900,600); |
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243 | |
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244 | show_all(); |
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245 | } |
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246 | |
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247 | //main(): |
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248 | |
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249 | int main(int argc, char *argv[]) |
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250 | { |
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251 | if((argc>=7)&& (argc%2) ) |
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252 | { |
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253 | double * coosarray=new double[argc]; |
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254 | |
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255 | for(int i=1;i<argc;i++) |
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256 | { |
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257 | coosarray[i-1]=atof(argv[i]); |
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258 | printf("%g%c",coosarray[i-1],i%2?' ':'\n'); |
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259 | } |
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260 | |
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261 | Gnome::Canvas::init(); |
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262 | Gtk::Main app(argc, argv); |
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263 | |
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264 | MainWin mainwin("Magic Triangle",coosarray,argc-1); |
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265 | app.run(mainwin); |
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266 | } |
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267 | |
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268 | return 0; |
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269 | } |
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