1 | // =============================================================== // |
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2 | // // |
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3 | // File : ScrollSynchronizer.cxx // |
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4 | // Purpose : synchronize TREE_canvas scrolling // |
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5 | // // |
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6 | // Coded by Ralf Westram (coder@reallysoft.de) in October 2016 // |
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7 | // http://www.arb-home.de/ // |
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8 | // // |
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9 | // =============================================================== // |
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10 | |
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11 | #include "ScrollSynchronizer.h" |
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12 | |
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13 | #include <TreeDisplay.hxx> |
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14 | #include <awt_canvas.hxx> |
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15 | #include <map> |
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16 | |
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17 | #if defined(DUMP_SYNC) |
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18 | # define DUMP_ADD |
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19 | # define DUMP_SCROLL_DETECT |
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20 | #endif |
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21 | |
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22 | |
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23 | using namespace AW; |
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24 | using namespace std; |
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25 | |
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26 | inline GBDATA *trackable_species(const AW_click_cd *clickable) { |
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27 | if (!clickable) return NULL; |
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28 | |
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29 | ClickedType clicked = (ClickedType)clickable->get_cd2(); |
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30 | if (clicked == CL_SPECIES) return (GBDATA*)clickable->get_cd1(); // NDS list |
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31 | |
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32 | nt_assert(clicked == CL_NODE || clicked == CL_BRANCH); // unexpected clickable tracked! |
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33 | TreeNode *node = (TreeNode*)clickable->get_cd1(); |
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34 | return (node && node->is_leaf) ? node->gb_node : NULL; |
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35 | } |
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36 | |
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37 | class AW_trackSpecies_device: public AW_simple_device { |
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38 | SpeciesSet& species; |
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39 | |
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40 | void track() { |
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41 | GBDATA *gb_species = trackable_species(get_click_cd()); |
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42 | |
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43 | if (gb_species) { |
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44 | #if defined(DUMP_ADD) |
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45 | bool do_insert = species.find(gb_species) == species.end(); |
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46 | #else // NDEBUG |
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47 | bool do_insert = true; |
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48 | #endif |
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49 | if (do_insert) { |
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50 | #if defined(DUMP_ADD) |
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51 | const char *name = GBT_get_name(gb_species); |
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52 | fprintf(stderr, " - adding species #%zu '%s'\n", species.size(), name); |
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53 | #endif |
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54 | species.insert(gb_species); |
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55 | } |
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56 | } |
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57 | } |
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58 | |
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59 | public: |
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60 | AW_trackSpecies_device(AW_common *common_, SpeciesSet& species_) : |
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61 | AW_simple_device(common_), |
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62 | species(species_) |
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63 | {} |
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64 | |
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65 | AW_DEVICE_TYPE type() OVERRIDE { return AW_DEVICE_CLICK; } |
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66 | void specific_reset() OVERRIDE {} |
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67 | bool invisible_impl(const Position&, AW_bitset) OVERRIDE { return false; } |
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68 | |
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69 | bool line_impl(int, const LineVector& Line, AW_bitset filteri) OVERRIDE { |
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70 | bool drawflag = false; |
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71 | if (filteri & filter) { |
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72 | LineVector transLine = transform(Line); |
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73 | LineVector clippedLine; |
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74 | drawflag = clip(transLine, clippedLine); |
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75 | if (drawflag) track(); |
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76 | } |
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77 | return drawflag; |
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78 | } |
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79 | bool text_impl(int, const char*, const Position& pos, AW_pos, AW_bitset filteri, long int) OVERRIDE { |
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80 | bool drawflag = false; |
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81 | if (filteri & filter) { |
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82 | if (!is_outside_clip(transform(pos))) track(); |
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83 | } |
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84 | return drawflag; |
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85 | } |
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86 | }; |
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87 | |
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88 | |
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89 | |
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90 | SpeciesSetPtr MasterCanvas::track_displayed_species() { |
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91 | // clip_expose |
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92 | |
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93 | TREE_canvas *ntw = get_canvas(); |
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94 | AW_window *aww = ntw->aww; |
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95 | AW_common *common = aww->get_common(AW_MIDDLE_AREA); |
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96 | |
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97 | SpeciesSetPtr tracked = new SpeciesSet; |
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98 | |
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99 | AW_trackSpecies_device device(common, *tracked); |
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100 | |
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101 | device.set_filter(AW_TRACK); |
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102 | device.reset(); |
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103 | |
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104 | const AW_screen_area& rect = ntw->rect; |
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105 | |
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106 | device.set_top_clip_border(rect.t); |
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107 | device.set_bottom_clip_border(rect.b); |
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108 | device.set_left_clip_border(rect.l); |
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109 | device.set_right_clip_border(rect.r); |
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110 | |
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111 | { |
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112 | GB_transaction ta(ntw->gb_main); |
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113 | |
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114 | ntw->init_device(&device); |
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115 | ntw->gfx->show(&device); |
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116 | } |
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117 | |
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118 | return tracked; |
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119 | } |
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120 | |
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121 | typedef map< RefPtr<GBDATA>, Rectangle> SpeciesPositions; // world-coordinates |
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122 | |
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123 | class AW_trackPositions_device: public AW_simple_device { |
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124 | SpeciesSetPtr species; // @@@ elim (instead "mark" contained species to improve speed?) |
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125 | SpeciesPositions spos; |
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126 | |
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127 | void trackPosition(GBDATA *gb_species, const Rectangle& spec_area) { |
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128 | SpeciesPositions::iterator tracked = spos.find(gb_species); |
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129 | if (tracked == spos.end()) { // first track |
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130 | spos[gb_species] = spec_area; |
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131 | } |
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132 | else { |
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133 | tracked->second = bounding_box(tracked->second, spec_area); // combine areas |
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134 | } |
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135 | } |
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136 | void trackPosition(GBDATA *gb_species, const LineVector& spec_vec) { |
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137 | trackPosition(gb_species, Rectangle(spec_vec)); |
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138 | } |
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139 | void trackPosition(GBDATA *gb_species, const Position& spec_pos) { |
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140 | trackPosition(gb_species, Rectangle(spec_pos, ZeroVector)); |
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141 | } |
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142 | |
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143 | public: |
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144 | AW_trackPositions_device(AW_common *common_) : |
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145 | AW_simple_device(common_) |
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146 | { |
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147 | } |
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148 | |
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149 | void set_species(SpeciesSetPtr species_) { species = species_; } |
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150 | void forget_positions() { spos.clear(); } |
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151 | |
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152 | AW_DEVICE_TYPE type() OVERRIDE { return AW_DEVICE_SIZE; } |
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153 | void specific_reset() OVERRIDE {} |
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154 | bool invisible_impl(const Position&, AW_bitset) OVERRIDE { return false; } |
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155 | |
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156 | bool line_impl(int, const LineVector& Line, AW_bitset filteri) OVERRIDE { |
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157 | bool drawflag = false; |
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158 | if (filteri & filter) { |
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159 | GBDATA *gb_species = trackable_species(get_click_cd()); |
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160 | if (gb_species) { |
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161 | if (species->find(gb_species) != species->end()) { |
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162 | trackPosition(gb_species, Line); |
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163 | } |
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164 | } |
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165 | drawflag = true; |
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166 | } |
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167 | return drawflag; |
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168 | } |
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169 | bool text_impl(int, const char*, const Position& pos, AW_pos, AW_bitset filteri, long int) OVERRIDE { |
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170 | bool drawflag = false; |
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171 | if (filteri & filter) { |
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172 | GBDATA *gb_species = trackable_species(get_click_cd()); |
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173 | if (gb_species) { |
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174 | if (species->find(gb_species) != species->end()) { |
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175 | trackPosition(gb_species, pos); |
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176 | } |
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177 | } |
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178 | drawflag = true; |
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179 | } |
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180 | return drawflag; |
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181 | } |
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182 | |
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183 | const SpeciesPositions& get_tracked_positions() const { |
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184 | return spos; |
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185 | } |
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186 | }; |
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187 | |
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188 | struct cmp_Rectangles { |
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189 | bool operator()(const Rectangle &r1, const Rectangle &r2) const { |
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190 | double cmp = r1.top()-r2.top(); // upper first |
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191 | if (!cmp) { |
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192 | cmp = r1.bottom()-r2.bottom(); // smaller first |
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193 | if (!cmp) { |
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194 | cmp = r1.left()-r2.left(); // leftmost first |
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195 | if (!cmp) { |
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196 | cmp = r1.right()-r2.right(); // smaller first |
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197 | } |
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198 | } |
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199 | } |
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200 | return cmp<0.0; |
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201 | } |
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202 | }; |
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203 | |
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204 | typedef set<Rectangle, cmp_Rectangles> SortedPositions; // world-coordinates |
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205 | |
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206 | class SlaveCanvas_internal { |
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207 | SortedPositions pos; |
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208 | Vector viewport_size; |
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209 | Rectangle best_area; // wanted display area (world coordinates) |
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210 | |
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211 | public: |
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212 | |
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213 | void store_positions_sorted(const SpeciesPositions& spos) { |
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214 | pos.clear(); |
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215 | for (SpeciesPositions::const_iterator s = spos.begin(); s != spos.end(); ++s) { |
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216 | pos.insert(s->second); |
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217 | } |
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218 | } |
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219 | |
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220 | void announce_viewport_size(const Vector& viewport_size_) { |
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221 | viewport_size = viewport_size_; |
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222 | best_area = Rectangle(); |
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223 | } |
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224 | void calc_best_area(); |
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225 | Vector calc_best_scroll_delta(const Rectangle& viewport); |
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226 | }; |
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227 | |
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228 | void SlaveCanvas_internal::calc_best_area() { |
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229 | int best_count = -1; |
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230 | const int max_species = int(pos.size()); |
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231 | int rest = max_species; |
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232 | |
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233 | SortedPositions::const_iterator end = pos.end(); |
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234 | for (SortedPositions::const_iterator s1 = pos.begin(); rest>best_count && s1 != end; ++s1) { |
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235 | const Rectangle& r1 = *s1; |
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236 | |
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237 | Rectangle testedViewport(r1.upper_left_corner(), viewport_size); |
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238 | int count = 1; |
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239 | |
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240 | Rectangle contained_area = r1; // bounding box of all species displayable inside testedViewport |
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241 | |
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242 | SortedPositions::const_iterator s2 = s1; |
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243 | ++s2; |
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244 | for (; s2 != end; ++s2) { |
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245 | const Rectangle& r2 = *s2; |
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246 | if (r2.overlaps_with(testedViewport)) { |
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247 | ++count; |
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248 | contained_area = contained_area.bounding_box(r2); |
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249 | } |
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250 | } |
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251 | |
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252 | nt_assert(count>0); |
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253 | |
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254 | if (count>best_count) { |
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255 | best_count = count; |
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256 | best_area = contained_area; |
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257 | |
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258 | #if defined(DUMP_SCROLL_DETECT) |
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259 | fprintf(stderr, "Found %i species fitting into area ", count); |
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260 | AW_DUMP(contained_area); |
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261 | #endif |
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262 | } |
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263 | |
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264 | rest--; |
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265 | } |
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266 | } |
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267 | |
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268 | Vector SlaveCanvas_internal::calc_best_scroll_delta(const Rectangle& viewport) { |
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269 | // in and out are world-coordinates! |
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270 | if (best_area.valid()) { |
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271 | Vector shift(viewport.width()*-0.1, (best_area.height()-viewport.height())/2); |
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272 | Rectangle wanted_viewport = Rectangle(best_area.upper_left_corner() + shift, viewport.diagonal()); |
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273 | return wanted_viewport.upper_left_corner() - viewport.upper_left_corner(); |
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274 | } |
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275 | return ZeroVector; |
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276 | } |
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277 | |
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278 | void SlaveCanvas::track_display_positions() { |
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279 | TREE_canvas *ntw = get_canvas(); |
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280 | AW_common *common = ntw->aww->get_common(AW_MIDDLE_AREA); |
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281 | |
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282 | // @@@ use different algo (device) for radial and for other treeviews |
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283 | // below code fits non-radial slave-views: |
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284 | |
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285 | AW_trackPositions_device device(common); |
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286 | |
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287 | device.set_species(species); // @@@ move to device-ctor? |
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288 | device.forget_positions(); // @@@ not necessary if device is recreated for each tracking |
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289 | |
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290 | device.set_filter(AW_TRACK); |
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291 | device.reset(); // @@@ really needed? |
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292 | |
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293 | { |
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294 | GB_transaction ta(ntw->gb_main); |
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295 | |
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296 | ntw->init_device(&device); |
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297 | ntw->gfx->show(&device); |
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298 | } |
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299 | |
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300 | internal->store_positions_sorted(device.get_tracked_positions()); |
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301 | } |
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302 | |
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303 | void SlaveCanvas::calc_scroll_zoom() { |
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304 | TREE_canvas *ntw = get_canvas(); |
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305 | AW_device *device = ntw->aww->get_device(AW_MIDDLE_AREA); |
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306 | Rectangle viewport = device->rtransform(Rectangle(ntw->rect, INCLUSIVE_OUTLINE)); |
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307 | |
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308 | internal->announce_viewport_size(viewport.diagonal()); |
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309 | internal->calc_best_area(); |
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310 | } |
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311 | |
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312 | void SlaveCanvas::refresh_scroll_zoom() { |
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313 | #if defined(DUMP_SYNC) |
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314 | fprintf(stderr, "DEBUG: SlaveCanvas does refresh_scroll_zoom (idx=%i)\n", get_index()); |
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315 | #endif |
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316 | |
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317 | TREE_canvas *ntw = get_canvas(); |
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318 | AW_device *device = ntw->aww->get_device(AW_MIDDLE_AREA); |
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319 | Rectangle viewport = device->rtransform(Rectangle(ntw->rect, INCLUSIVE_OUTLINE)); |
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320 | Vector world_scroll(internal->calc_best_scroll_delta(viewport)); |
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321 | |
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322 | #if defined(DUMP_SCROLL_DETECT) |
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323 | AW_DUMP(viewport); |
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324 | AW_DUMP(world_scroll); |
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325 | #endif |
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326 | |
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327 | if (world_scroll.has_length()) { // skip scroll if (nearly) nothing happens |
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328 | Vector screen_scroll = device->transform(world_scroll); |
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329 | #if defined(DUMP_SCROLL_DETECT) |
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330 | AW_DUMP(screen_scroll); |
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331 | #endif |
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332 | ntw->scroll(screen_scroll); // @@@ scroll the canvas (should be done by caller, to avoid recalculation on slave-canvas-resize) |
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333 | } |
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334 | |
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335 | // get_canvas()->refresh(); |
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336 | } |
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337 | |
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338 | SlaveCanvas::SlaveCanvas() : |
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339 | last_master(NULL), |
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340 | last_master_change(0), |
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341 | need_SetUpdate(true), |
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342 | need_PositionTrack(true), |
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343 | need_ScrollZoom(true), |
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344 | need_Refresh(true) |
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345 | { |
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346 | internal = new SlaveCanvas_internal; |
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347 | } |
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348 | |
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349 | SlaveCanvas::~SlaveCanvas() { |
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350 | delete internal; |
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351 | } |
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352 | |
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353 | |
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