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203 lines
7.3 KiB
C++
203 lines
7.3 KiB
C++
#include "tilecachedrecastmeshmanager.hpp"
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#include "makenavmesh.hpp"
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#include "gettilespositions.hpp"
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#include "settingsutils.hpp"
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#include <algorithm>
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#include <vector>
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namespace DetourNavigator
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{
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TileCachedRecastMeshManager::TileCachedRecastMeshManager(const Settings& settings)
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: mSettings(settings)
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{}
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bool TileCachedRecastMeshManager::addObject(const ObjectId id, const CollisionShape& shape,
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const btTransform& transform, const AreaType areaType)
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{
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std::vector<TilePosition> tilesPositions;
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const auto border = getBorderSize(mSettings);
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{
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auto tiles = mTiles.lock();
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getTilesPositions(shape.getShape(), transform, mSettings, [&] (const TilePosition& tilePosition)
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{
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if (addTile(id, shape, transform, areaType, tilePosition, border, tiles.get()))
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tilesPositions.push_back(tilePosition);
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});
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}
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if (tilesPositions.empty())
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return false;
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std::sort(tilesPositions.begin(), tilesPositions.end());
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mObjectsTilesPositions.insert_or_assign(id, std::move(tilesPositions));
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++mRevision;
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return true;
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}
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std::optional<RemovedRecastMeshObject> TileCachedRecastMeshManager::removeObject(const ObjectId id)
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{
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const auto object = mObjectsTilesPositions.find(id);
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if (object == mObjectsTilesPositions.end())
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return std::nullopt;
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std::optional<RemovedRecastMeshObject> result;
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{
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auto tiles = mTiles.lock();
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for (const auto& tilePosition : object->second)
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{
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const auto removed = removeTile(id, tilePosition, tiles.get());
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if (removed && !result)
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result = removed;
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}
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}
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if (result)
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++mRevision;
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return result;
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}
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bool TileCachedRecastMeshManager::addWater(const osg::Vec2i& cellPosition, const int cellSize,
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const btTransform& transform)
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{
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const auto border = getBorderSize(mSettings);
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auto& tilesPositions = mWaterTilesPositions[cellPosition];
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bool result = false;
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if (cellSize == std::numeric_limits<int>::max())
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{
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const auto tiles = mTiles.lock();
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for (auto& tile : *tiles)
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{
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if (tile.second->addWater(cellPosition, cellSize, transform))
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{
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tilesPositions.push_back(tile.first);
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result = true;
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}
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}
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}
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else
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{
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getTilesPositions(cellSize, transform, mSettings, [&] (const TilePosition& tilePosition)
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{
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const auto tiles = mTiles.lock();
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auto tile = tiles->find(tilePosition);
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if (tile == tiles->end())
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{
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auto tileBounds = makeTileBounds(mSettings, tilePosition);
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tileBounds.mMin -= osg::Vec2f(border, border);
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tileBounds.mMax += osg::Vec2f(border, border);
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tile = tiles->insert(std::make_pair(tilePosition,
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std::make_shared<CachedRecastMeshManager>(mSettings, tileBounds, mTilesGeneration))).first;
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}
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if (tile->second->addWater(cellPosition, cellSize, transform))
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{
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tilesPositions.push_back(tilePosition);
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result = true;
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}
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});
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}
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if (result)
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++mRevision;
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return result;
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}
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std::optional<RecastMeshManager::Water> TileCachedRecastMeshManager::removeWater(const osg::Vec2i& cellPosition)
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{
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const auto object = mWaterTilesPositions.find(cellPosition);
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if (object == mWaterTilesPositions.end())
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return std::nullopt;
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std::optional<RecastMeshManager::Water> result;
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for (const auto& tilePosition : object->second)
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{
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const auto tiles = mTiles.lock();
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const auto tile = tiles->find(tilePosition);
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if (tile == tiles->end())
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continue;
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const auto tileResult = tile->second->removeWater(cellPosition);
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if (tile->second->isEmpty())
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{
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tiles->erase(tile);
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++mTilesGeneration;
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}
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if (tileResult && !result)
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result = tileResult;
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}
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if (result)
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++mRevision;
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return result;
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}
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std::shared_ptr<RecastMesh> TileCachedRecastMeshManager::getMesh(const TilePosition& tilePosition)
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{
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const auto manager = [&] () -> std::shared_ptr<CachedRecastMeshManager>
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{
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const auto tiles = mTiles.lock();
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const auto it = tiles->find(tilePosition);
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if (it == tiles->end())
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return nullptr;
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return it->second;
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} ();
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if (manager == nullptr)
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return nullptr;
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return manager->getMesh();
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}
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bool TileCachedRecastMeshManager::hasTile(const TilePosition& tilePosition)
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{
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return mTiles.lockConst()->count(tilePosition);
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}
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std::size_t TileCachedRecastMeshManager::getRevision() const
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{
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return mRevision;
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}
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void TileCachedRecastMeshManager::reportNavMeshChange(const TilePosition& tilePosition, Version recastMeshVersion, Version navMeshVersion)
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{
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const auto tiles = mTiles.lock();
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const auto it = tiles->find(tilePosition);
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if (it == tiles->end())
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return;
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it->second->reportNavMeshChange(recastMeshVersion, navMeshVersion);
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}
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bool TileCachedRecastMeshManager::addTile(const ObjectId id, const CollisionShape& shape,
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const btTransform& transform, const AreaType areaType, const TilePosition& tilePosition, float border,
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TilesMap& tiles)
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{
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auto tile = tiles.find(tilePosition);
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if (tile == tiles.end())
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{
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auto tileBounds = makeTileBounds(mSettings, tilePosition);
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tileBounds.mMin -= osg::Vec2f(border, border);
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tileBounds.mMax += osg::Vec2f(border, border);
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tile = tiles.insert(std::make_pair(
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tilePosition, std::make_shared<CachedRecastMeshManager>(mSettings, tileBounds, mTilesGeneration))).first;
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}
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return tile->second->addObject(id, shape, transform, areaType);
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}
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bool TileCachedRecastMeshManager::updateTile(const ObjectId id, const btTransform& transform,
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const AreaType areaType, const TilePosition& tilePosition, TilesMap& tiles)
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{
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const auto tile = tiles.find(tilePosition);
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return tile != tiles.end() && tile->second->updateObject(id, transform, areaType);
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}
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std::optional<RemovedRecastMeshObject> TileCachedRecastMeshManager::removeTile(const ObjectId id,
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const TilePosition& tilePosition, TilesMap& tiles)
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{
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const auto tile = tiles.find(tilePosition);
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if (tile == tiles.end())
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return std::optional<RemovedRecastMeshObject>();
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const auto tileResult = tile->second->removeObject(id);
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if (tile->second->isEmpty())
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{
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tiles.erase(tile);
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++mTilesGeneration;
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}
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return tileResult;
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}
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}
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