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169 lines
6.2 KiB
C++
169 lines
6.2 KiB
C++
#ifndef OPENMW_COMPONENTS_DETOURNAVIGATOR_TILECACHEDRECASTMESHMANAGER_H
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#define OPENMW_COMPONENTS_DETOURNAVIGATOR_TILECACHEDRECASTMESHMANAGER_H
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#include "areatype.hpp"
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#include "changetype.hpp"
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#include "commulativeaabb.hpp"
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#include "gettilespositions.hpp"
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#include "heightfieldshape.hpp"
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#include "objectid.hpp"
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#include "recastmesh.hpp"
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#include "recastmeshobject.hpp"
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#include "tileposition.hpp"
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#include "updateguard.hpp"
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#include "version.hpp"
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#include <boost/geometry/geometries/box.hpp>
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#include <boost/geometry/geometries/point.hpp>
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#include <boost/geometry/index/rtree.hpp>
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#include <LinearMath/btTransform.h>
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#include <osg/Vec2i>
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#include <map>
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#include <memory>
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#include <mutex>
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#include <optional>
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#include <unordered_map>
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namespace DetourNavigator
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{
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class RecastMesh;
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struct TileCachedRecastMeshManagerStats;
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class TileCachedRecastMeshManager
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{
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public:
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explicit TileCachedRecastMeshManager(const RecastSettings& settings);
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ScopedUpdateGuard makeUpdateGuard()
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{
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mMutex.lock();
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return ScopedUpdateGuard(&mUpdateGuard);
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}
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void setRange(const TilesPositionsRange& range, const UpdateGuard* guard);
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TilesPositionsRange getLimitedObjectsRange() const;
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void setWorldspace(ESM::RefId worldspace, const UpdateGuard* guard);
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bool addObject(ObjectId id, const CollisionShape& shape, const btTransform& transform, AreaType areaType,
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const UpdateGuard* guard);
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bool updateObject(ObjectId id, const btTransform& transform, AreaType areaType, const UpdateGuard* guard);
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void removeObject(ObjectId id, const UpdateGuard* guard);
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void addWater(const osg::Vec2i& cellPosition, int cellSize, float level, const UpdateGuard* guard);
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void removeWater(const osg::Vec2i& cellPosition, const UpdateGuard* guard);
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void addHeightfield(
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const osg::Vec2i& cellPosition, int cellSize, const HeightfieldShape& shape, const UpdateGuard* guard);
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void removeHeightfield(const osg::Vec2i& cellPosition, const UpdateGuard* guard);
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std::shared_ptr<RecastMesh> getMesh(ESM::RefId worldspace, const TilePosition& tilePosition);
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std::shared_ptr<RecastMesh> getCachedMesh(ESM::RefId worldspace, const TilePosition& tilePosition) const;
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std::shared_ptr<RecastMesh> getNewMesh(ESM::RefId worldspace, const TilePosition& tilePosition) const;
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std::size_t getRevision() const { return mRevision; }
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void reportNavMeshChange(const TilePosition& tilePosition, Version recastMeshVersion, Version navMeshVersion);
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void addChangedTile(const TilePosition& tilePosition, ChangeType changeType);
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std::map<osg::Vec2i, ChangeType> takeChangedTiles(const UpdateGuard* guard);
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TileCachedRecastMeshManagerStats getStats() const;
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private:
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struct Report
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{
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std::size_t mRevision;
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Version mNavMeshVersion;
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};
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struct ObjectData
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{
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RecastMeshObject mObject;
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TilesPositionsRange mRange;
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CommulativeAabb mAabb;
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std::size_t mGeneration = 0;
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std::size_t mRevision = 0;
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std::optional<Report> mLastNavMeshReportedChange;
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std::optional<Report> mLastNavMeshReport;
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};
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struct WaterData
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{
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Water mWater;
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std::optional<TilesPositionsRange> mRange;
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std::size_t mRevision;
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};
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struct HeightfieldData
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{
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int mCellSize;
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HeightfieldShape mShape;
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std::optional<TilesPositionsRange> mRange;
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std::size_t mRevision;
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};
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struct CachedTile
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{
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Version mVersion;
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std::shared_ptr<RecastMesh> mRecastMesh;
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};
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using IndexPoint = boost::geometry::model::point<int, 2, boost::geometry::cs::cartesian>;
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using IndexBox = boost::geometry::model::box<IndexPoint>;
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using ObjectIndexValue = std::pair<IndexBox, ObjectData*>;
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using WaterIndexValue = std::pair<IndexBox, std::map<osg::Vec2i, WaterData>::const_iterator>;
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using HeightfieldIndexValue = std::pair<IndexBox, std::map<osg::Vec2i, HeightfieldData>::const_iterator>;
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const RecastSettings& mSettings;
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TilesPositionsRange mRange;
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ESM::RefId mWorldspace;
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std::unordered_map<ObjectId, std::unique_ptr<ObjectData>> mObjects;
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boost::geometry::index::rtree<ObjectIndexValue, boost::geometry::index::quadratic<16>> mObjectIndex;
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std::map<osg::Vec2i, WaterData> mWater;
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std::map<osg::Vec2i, WaterData>::const_iterator mInfiniteWater = mWater.end();
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boost::geometry::index::rtree<WaterIndexValue, boost::geometry::index::linear<4>> mWaterIndex;
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std::map<osg::Vec2i, HeightfieldData> mHeightfields;
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std::map<osg::Vec2i, HeightfieldData>::const_iterator mInfiniteHeightfield = mHeightfields.end();
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boost::geometry::index::rtree<HeightfieldIndexValue, boost::geometry::index::linear<4>> mHeightfieldIndex;
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std::map<osg::Vec2i, ChangeType> mChangedTiles;
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std::map<TilePosition, CachedTile> mCache;
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std::size_t mGeneration = 0;
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std::size_t mRevision = 0;
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mutable std::mutex mMutex;
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UpdateGuard mUpdateGuard{ mMutex };
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inline static IndexPoint makeIndexPoint(const TilePosition& tilePosition);
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inline static IndexBox makeIndexBox(const TilesPositionsRange& range);
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inline static ObjectIndexValue makeObjectIndexValue(const TilesPositionsRange& range, ObjectData* data);
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inline static WaterIndexValue makeWaterIndexValue(
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const TilesPositionsRange& range, std::map<osg::Vec2i, WaterData>::const_iterator it);
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inline static HeightfieldIndexValue makeHeightfieldIndexValue(
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const TilesPositionsRange& range, std::map<osg::Vec2i, HeightfieldData>::const_iterator it);
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inline static auto makeIndexQuery(const TilePosition& tilePosition)
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-> decltype(boost::geometry::index::intersects(IndexBox()));
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inline std::shared_ptr<RecastMesh> makeMesh(const TilePosition& tilePosition) const;
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inline void addChangedTiles(const std::optional<TilesPositionsRange>& range, ChangeType changeType);
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};
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}
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#endif
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