1 | #ifndef _OcclusionCullingSceneManager_H__
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2 | #define _OcclusionCullingSceneManager_H__
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3 |
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4 | #include "OgreSceneNode.h"
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5 | #include "OgreSceneManager.h"
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6 | #include "OgrePrerequisites.h"
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7 | #include "OgreSolidHalfBoundingBox.h"
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8 | #include <queue>
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9 |
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10 | using namespace std; |
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11 | |
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12 | namespace Ogre { |
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13 | /** |
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14 | This class implements the compare operator for the priority queue. |
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15 | a lower distance has a higher value in the queue |
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16 | */ |
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17 | template <typename T> class myless
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18 | {
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19 | public:
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20 | myless(Camera *cam) { mCamera = cam; } |
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21 | //bool operator() (HierarchyNode *v1, HierarchyNode *v2) const
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22 | bool operator() (T v1, T v2) const
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23 | {
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24 | return v1->getSquaredViewDepth(mCamera) > v2->getSquaredViewDepth(mCamera);
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25 | }
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26 | private:
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27 | Camera *mCamera;
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28 | };
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29 |
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30 | typedef pair<SceneNode *, HardwareOcclusionQuery *> query_pair;
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31 | typedef priority_queue<SceneNode *, vector<SceneNode *>, myless<vector<SceneNode *>::value_type> > PriorityQueue;
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32 | typedef queue<query_pair> QueryQueue;
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33 | /**
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34 | Class which implements a scene mangager which uses occlusion queries for culling occluded objects
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35 | */
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36 | class OcclusionCullingSceneManager : public SceneManager
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37 | {
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38 | public:
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39 | OcclusionCullingSceneManager();
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40 | ~OcclusionCullingSceneManager();
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41 |
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42 |
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43 | enum {RENDER_CULL_FRUSTUM, RENDER_STOP_AND_WAIT, RENDER_COHERENT, NUM_RENDERMODES};
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44 |
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45 | /** Overriden from SceneManager. Renders the scene with the specified algorithm |
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46 | /** |
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47 | The algorithm is one of |
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48 | RENDER_CULL_FRUSTUM: renders the scene with view frustum culling only |
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49 | RENDER_STOP_AND_WAIT: renders the scene with the hierarchical stop and wait algorithm |
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50 | RENDER_COHERENT: renders the scene with the coherent hierarchical algorithm |
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51 | */
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52 | void _renderVisibleObjects(void);
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53 | void _findVisibleObjects(Camera* cam, bool onlyShadowCasters);
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54 | void _updateSceneGraph(Camera* cam);
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55 |
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56 | protected:
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57 | enum {MODE_QUERY, MODE_RENDER};
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58 |
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59 | int isLeaf(SceneNode *node);
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60 | int countSceneNodes(SceneNode *node);
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61 | void renderZPass();
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62 | void traverseNode(SceneNode *node);
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63 | /** Renders current node */
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64 | void render(SceneNode *node);
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65 | /** Sets rendering mode, e.g. query mode or render mode*/
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66 | void setRenderingMode(int mode);
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67 |
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68 | /** Renders the scene with view frustum culling only. */ |
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69 | void renderCullFrustum(); |
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70 | /** Renders the scene with the hierarchical stop and wait algorithm. */ |
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71 | void renderStopAndWait(); |
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72 | /** Renders the scene with the coherent hierarchical algorithm and the query queye. */ |
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73 | void renderCoherentWithQueue();
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74 | /** Issue a occlusion query for this node. */
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75 | HardwareOcclusionQuery *issueOcclusionQuery(SceneNode *node, bool wasVisible);
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76 | /** Pulls up the visibility from the child nodes. */
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77 | void pullUpVisibility(SceneNode *node);
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78 | /** delete all previously defined occlusion queries */
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79 | void deleteQueries();
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80 | /** Renders bounding box of specified node.
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81 | @param the node which bounding box is to be rendered
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82 | */
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83 | void renderBoundingBox(SceneNode *node);
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84 | /** Returns one half of the bounding box.
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85 | @param the half of the bouding box
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86 | */
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87 | SolidHalfBoundingBox *getSolidHalfBoundingBox(int half);
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88 | /** sets the type of the algorithm
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89 | @param algorithm type
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90 | */
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91 | void setAlgorithmType(int type);
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92 |
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93 | int getAlgorithmType();
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94 |
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95 | // we use a priority queue rather than a renderstack
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96 | PriorityQueue *mDistanceQueue;
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97 |
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98 | unsigned int mFrameId;
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99 | unsigned int mVisibilityThreshold;
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100 | unsigned int mNumSceneNodes;
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101 | int mCurrentTestIdx;
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102 | int mQueryMode;
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103 |
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104 | std::vector<HardwareOcclusionQuery *> mOcclusionQueries;
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105 | // two halfes of a aabb
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106 | SolidHalfBoundingBox *mHalfBoundingBox[2];
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107 | int mAlgorithmType;
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108 | };
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109 |
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110 | }
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111 | #endif // OCCLUSIONCULLINGSCENEMANAGER_H |
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