1 | #ifndef _VisibilityPreprocessingManager_H__
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2 | #define _VisibilityPreprocessingManager_H__
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3 |
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4 | #include <string>
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5 | using namespace std;
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6 |
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7 | #include "HierarchyInterface.h"
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8 | #include "VisibilityInfo.h"
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9 | #include "VisibilityVector3.h"
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10 |
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11 | namespace GtpVisibility {
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12 |
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13 | /**
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14 | This class defines an interface to the external visibility preprocessor.
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15 | It allows to export the static part of the scene to a file in the XML format
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16 | understood by the preprocessor. By default all the exported meshes are considered
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17 | as scene occluders, whereas occludees are formed by their bounding boxes,
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18 | and bounding boxes of the scene hierarchy.
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19 |
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20 | This class also allows to import the preprocessed data with PVS
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21 | information for the viewcells (note that the viewcells are either generated
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22 | automatically by the preprocessor or loaded from a polyhedral definition stored
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23 | in a file (see documentation for the Preprocessor class).
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24 | */
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25 |
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26 | class PreprocessingManager
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27 | {
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28 | public:
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29 |
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30 | /** Constructor taking a HierarchyInterface as argument.
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31 | The HierarchyInterface makes the PreprocessingManager independent from the actual
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32 | scene representation as long as it supports a required set of methods.
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33 | */
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34 | PreprocessingManager(HierarchyInterface *hierarchyInterface);
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35 |
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36 |
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37 | /**
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38 | Destructor which deletes all data describing static scene visibility.
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39 | */
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40 | virtual ~PreprocessingManager();
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41 |
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42 | /** Export the scene for visibility preprocessing. Exports the hierarchyInterface including
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43 | its bounding boxes + mesh data. Note that the bounding boxes can be used as occludees
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44 | by the extrenal preprocessor. The viewcell data will either be supplied directly to the
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45 | visibility preprocessing standalone module.
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46 |
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47 | @param filename name of the file to export.
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48 | @return true if the export was succesful.
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49 | */
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50 | virtual bool ExportScene(const string filename) = 0;
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51 |
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52 | /** Load preprocessed visibility information. The loaded data is matched with the current
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53 | scene graph. The topology of the current scene graph has to match with the loaded data.
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54 | There is also geometrical check of the bounding boxes. Once loading is succesful the
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55 | PreprocessingManager establishes links from its internal visibility representation
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56 | to the scene graph: no change of this part of the scene graph is allowed; this would
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57 | violate the static scene assumption!
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58 |
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59 | @param filename name of the file to load.
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60 | @return true if the loading was succesful.
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61 | */
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62 | virtual bool LoadPreprocessedData(const string filename) = 0;
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63 |
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64 | /**
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65 | Retrieve a PVS corresponding to the given spherical neighborhood of the point.
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66 | Typically the implementation of this method will firs locate all viewcells
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67 | intersecting the sphere using efficient logarithmic search enhanced with caching
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68 | the last query. Then it computes a union of the PVS for the found viewcells.
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69 |
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70 | @param point the center point of the spherical neighborhood
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71 |
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72 | @param radius the radius of the spherical neighborhood. Note that if radius==0 a
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73 | more efficient implementation of the method for this special case can be used.
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74 |
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75 | @param visibleNodes of not NULL
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76 | a set of visible hierarchy nodes is added to the visibleNodes container.
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77 | This set is formed of visible leafs or fully visible interior nodes.
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78 |
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79 | @param visibleMeshes if not NULL the set of visible meshes is
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80 | added to the container. Returns true if the corresponding PVS exists.
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81 | */
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82 | virtual bool GetPVS(const Vector3 &point,
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83 | const float radius,
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84 | NodeInfoContainer *visibleNodes,
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85 | MeshInfoContainer *visibleMeshes);
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86 |
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87 |
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88 |
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89 | /** Sets the scene traverser.
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90 | @remark the scene traverser is dependent on the type of hierarchyInterface the scene consists of.
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91 | */
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92 | virtual void SetSceneTraverser(HierarchyInterface *hierarchyInterface) {
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93 | mSceneTraverser = hierarchyInterface;
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94 | }
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95 |
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96 | protected:
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97 | /** Get checksum of the current occluder set in the scene graph. This method is used to check
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98 | if the preprocessed data matches the current scene graph
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99 | -> $$ could be moved to VisibilitySceneTraverser */
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100 | long GetOccluderChecksum() const {
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101 | return 0;
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102 | }
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103 |
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104 |
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105 | /** Get checksum of the current occludee set in the scene graph. This method is used to check
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106 | if the preprocessed data matches the current scene graph
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107 | -> $$ could be moved to VisibilitySceneTraverser */
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108 | long GetOccludeeChecksum() const {
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109 | return 0;
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110 | }
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111 |
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112 |
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113 | /**
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114 | Find viewcells intersecting a spherical neighborhood of a point.
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115 | Returns false if no viewcell was found.
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116 | */
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117 | virtual bool LocateViewCellIds(const Vector3 ¢er,
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118 | const float radius,
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119 | vector<int> *viewCellIds
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120 | ) = 0;
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121 |
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122 | /**
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123 | Add a PVS of the given viewcell to the already evaluated PVS by computing
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124 | a union with visibleNodes and visibleMeshes. Returns the number of added entries.
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125 | */
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126 | virtual int AddViewCellPVS(const int cellID,
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127 | NodeInfoContainer *visibleNodes,
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128 | MeshInfoContainer *visibleMeshes ) = 0;
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129 |
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130 | HierarchyInterface *mSceneTraverser;
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131 | };
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132 |
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133 | };
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134 |
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135 | #endif // VisibilityPreprocessingInterafce
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